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(1ٟtw_fqiyk{~dfEpz|&Ŷʺ̼ΨҴmM[|%a|#8`a?*Ȑ]D%cNw&ݕpJ!i! , =ɤ|7(j%amɦ3wF,cHC( Kb^%5Mw-f7.\LM᷹{_u'WmQ~rv@jyYZg?²ĴƸʬ׼սߺ][!z :h7 a w BƏ5^8! , =ɤ|7ٚuqpc 79[^Lp%LFͫ/Bۯ;NtX]lg^G<gqZxVzd|S}btôȾb޾ ilṆ*pb+<! , =ɤ|7YIk˹@N#6ZvdtE'yVJ49W5]oY ^j,gϻ>~Xxbiwv úľ˵ι©ոÿp ;gcfg_fw_upd_resp.shtml  / Advanced Power Monitor - Firmware Update Response
gindex.shtml  / } Emergency Web Interface

Monitor

Emergency Web Interface

The Web interface file system is missing or has been corrupted.

This page enables the application and file system to be restored by uploading the current firmware package.

Note that depending on the speed of the connection, it can take several minutes for the upload to complete and be confirmed.

 

NOTE:

If you happen to get a connection timeout message, do not click the retry button. Instead, wait for about a minute and then re-display the System Status page to confirm that the update actually completed OK.

 

Firmware Update

Select the .FFP file to upload to the unit.

 

gstyle.css  /10G"body { background-color: #EDEDFF; font-family: Verdana, Arial, Helvetica, sans-serif; font-size: 100%; padding: 0px; } #contentdiv { line-height: 1.5; background-color: #EDEDFF; width: 591px; } #contentdiv p { font-size: .8em; } h1, h2, h3, h4 { margin: 0 0 3px; color: #333333; } h3 { margin-top: 10px; } h4 { text-decoration: underline; } p { margin: 0px 0px 10px; } #footer { width: 591px; height: 40px; background-color: #1344A0; text-align: center; font-size: 10px; margin-top: 20px; color: #fff; } HP Tdd\dddd2 hd2 p ddx2 N<,|2 N<, 2'<PQdexy()<=PP <,  $pxpDXH`hP  ,4,8"@,HXdpXdp4@PW|j`* P `W8 };` 7]jC*i`V Y@ X J@] u x `   l   `>  "B  YT ~W iMMiTiGaBLep,X,,, ,P,@,؁-8(-@-lX-p-З--h---x-Ȏ.p~,.p{D.X.p.<.x.8x.w.x.v/t /r0/$q@/TmT/Tm Jh/Pix/Pi8dJKH/ G FoPoP  `<<<<<<<<<PPPPAB??@@ @,@8@@@L@ 0`xNNNOONNABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/G~G~G~G~G~G~G~G~G~G~ G~ G~ public@@ZZZ(ZYYZ!B c0@P`p)Jk1s2R"RBrb9{ZӜb$C4 dtDTjK( ōS6r&0vfVF[z8׼HXhx@a(#8َHi +ZJzjqP 3:*˿yX;l|L\",<` A* hI~n^N>2.Qp:Yxʱ -No0 P%@Fpg`ڳ=^"25BRwbVr˥nO, 4$ftGd$TDۧ_~<&6WfvvF4VLm/ș鉊DXeHx'h8(}\?؛uJTZ7jz *:.lMͪɍ&|ld\EL<, >]|ߛُn6~UNt^.> #(-27@?0C0 ALM_SnmpSysStat(0x%04X)System RestartSYS=%s, RX=%s, TXPWR=%s, TXVSWR=%s TempString usage = %d ALM_SnmpRxTxStat(0x%04X)Ant isolation testPWR=%s(%s)ISOL=%s(%s); VCO=%sOFFON; RX=%sRx port; ILOSS=%s(%s); VSWR=%s(%s); TX=%s%2d/%02d/%02d, Customer=%s Site=%s ALM_SendSmtpMsg() - Retry SMTP_send() ALM_SmtpPortRxTx(%d, %d, 0x%02x) stat=0x%02x, flags=0x%02x, clrd=%d, send=%d Rx Port, Multiple Alarms, PWR=%s, ISOL=%s Tx Port %d - %s, Multiple Alarms, , ILOSS=%s, VSWR=%s new_stat=0x%02x ALM_SmtpChanMsg(%d, 0x%02x) Rx Port, chan %d - Tx Port %d - %s, Chan %d - %s, %s, Ant Isolation Test, , ILOSS=%s(%s), VSWR=%s(%s) ALM_SmtpRxTxStat(0x%04X) ALM_SmtpSysStat() System Restart System Summary, SYS=%s, RX=%s, TXPWR=%s, TXVSWR=%s, VCO=%sLDTA01@%&$ CAM_Detect: none! ERROR - File "%s" already existsw ERROR - Cannot create file "%s" ;This file was generated at %02d:%02d on %d %s %d%02d [%s] %s=%l %d.%d.%d.%d 0x%08lx 0x?? [%s %d] %s=%d %s=0x%02x %s=%s %s=%lu %s=%d,%d,%s %s=%u,%d,%d,%d,%d ERROR at line %d, [%s] {%s} = {%s}[%s] {%s} = {%s} CFG_ParseFile() - Failed to open TMP_OUT.TXT Verifying config file %s ... ERROR - File "%s" cannot be opened ERROR - Parsing error near line %d. No config settings saved. Processing config file... ERROR - Processing error near line %d. Config settings only partially saved. SUCCESS - Config settings applied.0123456789 no number invalid section number [%d, %d] section number not expected invalid item name [%d,%s] string too long Wrong ModelName invalid unsigned number-0123456789 invalid signed number invalid ip address invalid bitmap wrong format invalid section no comma between arraySystemAntIsolationRxChannelTxChannelHistoryCamUnitSiteNameCustomerNameModelNameSerialUsername1Password1Username2Password2IpGatewayIpNetmaskIpDhcpMgrIpAddressMgrTcpPortMgrUdpPortMgr2IpAddressMgr2TcpPortMgr2UdpPortMgrUseTcp4StatMaxTrafficPeriodAlarmConfigPacketControlRxAlarmDelayTxAlarmDelayConfigFlagsAveragingRateSmtpSummEnabledSmtpDetailEnabledSmtpSrvrIpSmtpSrvrPortSmtpUsernameSmtpPasswordSmtpFromAddrSmtpToAddr1SmtpToAddr2SmtpToAddr3SmtpToAddr4SnmpEnabledSnmpMgrIpSnmpMgrPortSnmpMgr2IpSnmpMgr2PortPortReferenceFwdCouplingLossRevCouplingLossFeederLossVswrCalValueRxSubsysGainRxPostGainControlFlagsFrequencyMinLossSubSysGainMeasPeriodTimeOfDayMonthDowFlagsChannelIdBandwidthThresholdMinPowerMaxPowerModulationBtxRefPowerMaxInsLossMaxVswrPwrPeriodTxPwrResRxPwrResVswrResPwrFlagsPwrResolutionExtAlm1ExtAlm2ExtAlm3ExtAlm4ChanAlarm1ChanAlarm2ChanAlarm3ChanAlarm4ChanAlarm5ChanAlarm6ChanAlarm7ChanAlarm8ChanAlarm9ChanAlarm10 (%u) RF_ChanActive[%u]=0x%02x, HIST_Chgd=0x%04x, HIST_ChgdChan[%u]=0x%02x RF_ChanActive[%u]=0x%02x, HIST_Chgd=0x%04x, HIST_ChgdChan[%u]=0x%02x 5V rail = %2.1fV Temperature = %d Date is: %d/%d/%d%02d A:\*. Renaming "%s" files to "%s"... Renaming %s to %s - ERROR %d! %d files renamed VCO %d offset = %d Hz VCO %d offset = %d Hz Ethernet CFG 0x%02x Disabled HW Testmode = %s (Link %s) Power Hist Cfg: Period = %s RxRes = %s TxRes = %s VswrRes = %s Flags = 0x%02X Config flags = 0x%02X Alarm configuration byte = %d Enabled Disabled VCO alarm = %s Tx Power alarm = %s Tx VSWR alarm = %s Rx Power alarm = %s Login timeout = %d minutesMEDIUMFASTSLOW???? Sample averaging = %sCMD_FinishPacket - Send==true CMD_SendStat() - Malloc FAILED!Traffic packet len = %d CMD_SendTraffic - Use UDP CMD_SendTraffic - Use Serial ??.?? %5.2f OFF %d.%5luCMD_SendCfg: Socket not available %1c%04x%16sV2.1Cfg packet len = %d CMD_SendStat: Socket not available %1c%04x%04x%03x%02x%03x%03x%03x%4u%02xStat packet len = %d CMD_SendStat - Use UDP CMD_SendStat - Error from UDPIF_SendData() Mgr-1 CMD_SendStat - Error from UDPIF_SendData() Mgr-2 CMD_SendStat - Use TCP CMD_SendStat - Error from socket_SendData() Mgr-1 CMD_SendStat - Error from socket_SendData() Mgr-2 CMD_SendStat - Use Serial CMD_ProcessAlmStatChanges(): Triggering Status packet. Time is: %d:%02d:%02d Logged out! Rx Alarm delay period = %d Sec Tx Alarm delay period = %d Sec Alarm debounce values = %u (Rx), %u (Tx) Continuous signal reporting period = %u Sec 20MHz Ref tuning = %5u Slope correction = %d%% Level Offsets - Start End Fwd Rev Rx %10.5f %10.5f %5d %5d %5d No level calibration points set! Traffic packets = Status packets = M2M Mode = ATE Mode = Rx & Isolation functions = 8 (C) Copyright 2005-2013, RF Industries -  All configuration data set to DEFAULTS.  ERROR! Invalid Hardware Band number - %d! Not Set ! WARNING - Serial number not yet programmed! 0123456789.-<-110 <-%3d < +%2d < 0 ??.? %3d.%1d-%3d.%1d +%2d.%1d 0.0 Port Ant Reference FwdCpl RevCpl AntFdr frl vcf flags Port Ant Reference FwdCpl RevCpl AntFdr Tx-%d %*s %s %s 0x%02x Rx Subsystem Gain(Loss) =%s, Post Gain(Loss) =%s %.2fversion/info.txtVersion file not presentInvalid Version file  Not logged in - Command error ? + Command processed Format error Command not valid Command not available on this hardware SMS command password error SMS command processed Press any key to continue   = %s > Min Freq = %f, Max Freq = %f Press to Start, to pause or to Cancel, '+' & '-' changes scan rate > %f, Fwd=%5.1f, Rev=%5.1f, Rx=%5.1f OK Lock FAIL - VCO1 = %f %s, VCO2 = %f %s, VCO3 = %f %s Lock FAIL - VCO1 = %f %s, VCO2 = %f %s Paused, press '<' or '>' to single step or any other key to continue - Resumed %f Summary over freq range of %f to %f MHz: Count=%d, Max Fwd=%5.1f >%5.1f=%d, Max Rev=%5.1f >%5.1f=%d, Max Rx=%5.1f >%5.1f=%d VCO1 fails = %lu, VCO2 fails = %lu, VCO3 fails = %lu VCO1 fails = %lu, VCO2 fails = %lu %s, %d, %d, %d, %d, %dPress any key to toggle setting, press to accept it: VCO alarm Tx Power alarm Tx VSWR alarm Rx Power alarm NOTE: Restart the unit to apply any change in this setting! Enter '1' or '2' to select the VCO, Use the '+' & '-' keys to increment or decrement the VCO offset, stores the current setting, discards any change. > Original offsets restored. VCO%c=%3d Timeout! Current level %d Username = %s Enter new name or to retain current > Command ignored NO changes made. Username not changed. ERROR - Maximum length is %d characters. Enter new password or to retain current > Password not changed. Re-enter the new password to confirm > Entries do not match. ERROR - This Username is already in use at a different login level. Username updated. Password updated. Enter new settings, or just press to keep the current setting: current value is ERROR: Enter 0 or a multiple of 0.00625 MHz between %3.5f and %3.5f MHz Modulation Type ( %-9s > ERROR - Invalid freq - %sAuto %d %d channels configured"%*s" Username > Password > Logged in at level %d Invalid login ERROR: The specified CAM unit is not present. CAM_SendCommand: FAILInactiveActive PTT-%d is %s TFS Start = 0x%08lx %08X - Forcing recheck of CRCs...PASS. FAIL! Formatting TFS ... Ready to receive a new file system. Ready to receive a new file. This test requires a loopback connection for CAM comms on the alarm connector. Press to proceed, to cancela1b2c3d4e5f6g7h8i9j0K1L2M3N4O5P6Q7R8S9T0u1v2w3x4y5z6 Received string - "%s" CAM Comms test PASSEDFAILEDEnabled: %s Addr1: %u.%u.%u.%u Port1: %u Addr2: %u.%u.%u.%u Port2: %u Summary: %s Detail: %s Addr: %u.%u.%u.%u Port: %u User: %s Pswd: %s From: %s Dest1: %s Dest2: %s Dest3: %s Dest4: %s Physical Address: %02X:%02X:%02X:%02X:%02X:%02X DHCP: %s IP Address: %u.%u.%u.%u Subnet Mask: %u.%u.%u.%u Default Gateway: %u.%u.%u.%u Current Address: %d.%d.%d.%d Current Mask: %d.%d.%d.%d Current Gateway: %d.%d.%d.%d Manager-1 Address: %u.%u.%u.%u Manager-1 TCP Port: %u Manager-1 UDP Port: %u Manager-2 Address: %u.%u.%u.%u Manager-2 TCP Port: %u Manager-2 UDP Port: %u Manager use TCP: %s Model = Serial No. GUI Version = %s Customer Name = Site Name = ID = %u Hardware revision = %d Hardware band = %d CPU revision code = 0x%04X Serial Flash ID = 0x%04X EEPROM = %lu Packets suspend = Scanning = Current channel = WDT reset count = Heap/Stack CollisionsWEB_CLI_Buff Malloc failsCMD_StrBuff Malloc fails Struct sizes RxCfg,TxCfg = %d,%d RF_Status[] size = %d EEP/FLASH used Cfg, HistPtrs, FlashHist = %d, %d, %ld/%ld Eep_CamCfg = 0x%04x ERROR: Enter a value between %3.1f and %3.1f Channel enabled (Y or N), Isolation Test enabled (Y or N), > ERROR: Enter 'L' or 'R' CALIBRATE (Interactive calibration) DEBUG DUMP {CPU | EEPROM | RAM} [ []] DEBUG RAM FILE {ADD | DELETE | LIST} RESET EEPROM RLOSS {nn.n} (calcs VSWR) SET ALMCFG (directly sets value) SET AVG {FAST | MED | SLOW} SET CFG SET ENET {ON | OFF} SET FREQS {RX | TX} {freq1 freq2 .... freqn} SET HWTEST {ON | OFF} SET ID {0..65535} SET LOGIN {3 | 4} [ ] SET MODEL SET OFFSET {VCO1 | VCO2 | VCO} {-20..20} (1.25KHz steps) SET REF [{0..45285}] SET {RX/ | TX/} (adds BW config) SET SERIAL SHOW A2D SHOW ALMCFG/ (adds ALMCFG value) SHOW AVG SHOW CAL & SHOW CAL/ SHOW CFG SHOW CONFIG/ (adds BW value) SHOW ID/ (adds additional info) SHOW LOGINS SHOW STATUS/ (adds additional info) SHOW TEMP SHOW VOLTS TEST {ALM | OFF | RX | TX | TXF | TXR} [nn]} TFS {ADD | COMPRESS | DELETE | DIR | FORMAT | UPLOAD |VERIFY | VIEW} TSTMODE, TSTMODE0 VSWR {nn.n} (calcs Return Loss) ~DOWNLOAD ~GETCFG ~GETSTAT ~GETTX %*d%*sRXCAM Date format = dd/mm/yymm/dd/yy Antenna Isolation Measurement Channel Frequency ON/OFF Period Gain MinLossON Rx 0 %s %s %-9s Channel Channel ID Frequency BW Mod ON/OFF Thresh MinPwr MaxPwr Channel Channel ID Frequency Mod ON/OFF Thresh MinPwr MaxPwr Rx %2d %*s Channel Channel ID Frequency BW Mod ON/OFF Thresh MinPwr MaxPwr RefPwr MaxIL MaxVSWR CAM Channel Channel ID Frequency Mod ON/OFF Thresh MinPwr MaxPwr RefPwr MaxIL MaxVSWR CAM Tx %2d-%d --- Channel Alarm Module %d Ext Alarm I/P Input ID Enabled AlmState NO YES Ext%2d-%d %*s %s %s Alarm No. TxPort Channel AlarmFunction RelayMode InputFunction --%2d CAM%2d-%-2d %s %2s %-10s %-10s %s CAM-%2d, Model=%s, Serial=%s, Ver=%d.%d, H/W Rev=%d, Extra=%s X4 X3 X2 X1 C10 C9 C8 C7 C6 C5 C4 C3 C2 C1 Relays: 1 0 Inputs: Rly Pol: I/P Pol: Temp=%d, TempOffsTx=%d, TempOffsRx=%d Last Fwd readings - Raw=%dmV -> dBm=%5.1f, dBmComp=%5.1f, dbmFreq=%5.1f Last Rev readings - Raw=%dmV -> dBm=%5.1f, dBmComp=%5.1f, dbmFreq=%5.1f Transmit frequency MHz (0=OFF), Channel ID, Detection threshold power dBm, Minimum acceptable power dBm, Maximum acceptable power dBm, ERROR - Maximum acceptable power is LESS than Minimum. Configuration not changed. Ins Loss Reference power dBm, Maximum insertion loss dB, Maximum acceptable VSWR value, ERROR: Enter a value between %5.2f and %5.2f Receive frequency MHz (0=OFF), Minimum Ant Isolation Loss, Automatic Test Repetition value, current value is ERROR: Enter a value between 0 and %2d 0123456789: This will overwrite any previously backed up Restore data! Are you sure? (YES/NO) > Use the '1'..'0' keys to lower or raise the control voltage. cancels the changes, stores the new setting. > %5u %5u Reference control value is now %d Antenna reference, "%*s" Reverse coupling loss, Antenna feeder loss, Antenna feeder return loss, Coupler compensation value, %s%s 0x%02x %c Compensation flags value, ERROR: Enter a value between 0 and 255 %s%s %3u %c Rx subsystem gain(loss), Rx post gain(loss), Forward coupling loss, Hardware band = %d 0123456789/ This will change the serial port speed. Are you sure? (YES/NO) > The new serial baud rate will be activated now. All status data re-initialised. All History data will be erased. History data erased! All EEPROM data will be reset. Erasing EEPROM ... EEPROM erased! Restarting ... This will restart the system. Restarting ...A:\*.* SD Card file system contents %10lu %u%s%llu%s files totalling bytes %d Files currently in use?* ERROR - Cannot open file %s Error getting file length for %s Ready to send an existing file. Use XModem protocol only. This will erase all data from the SD Card! Formatting in progress, do not turn off ... SD Card formatting completed OK. SD Card formatting FAILED. Deleting... %s %d files deleted. SD Card is working OK. SD Card is not usable, Error No.%d. Volume label = %s Error No.%d reading volume label Volume OEM = %s Error No.%d reading volume OEM Drive size = %12llu bytes Bytes used = %12llu Bytes free = %12llu Bytes bad = %12llu Error No.%d reading drive usage details. Files open = %d%02d%02d%02d%02d.CFG Configuration saved to file "%s" Please specify one of the following CFG file names:*.CFG ERROR - Make sure at least Rx-1 frequency is configured ERROR - Make sure at least Tx-1 frequency is configured ERROR - Make sure at least Rx-1 and Tx-1 frequencies are configured This will erase all applicable level calibration settings. Slope Calibration - Apply %2.1fdBm at %sMHz to Forward port 1. Press when ready pwr1=%d, pwr2=%d, corr=%f Tx Offsets Calibration - freq=%lu, raw=%d, fwd=%d, offset=%d Apply %2.1fdBm at %sMHz to Reverse port 1. freq=%lu, raw=%d, rev=%d, offset=%d Rx Offsets Calibration - Apply %2.1fdBm at %sMHz to Receive port. freq=%lu, raw=%d, rx=%d, offset=%d VSWR of %5.2f => Return loss of %5.2f dB Summary alarm status - TxPwr RxPwr VSWR VCO 5V Summ-Alarm Status = 0x%04X Channel Channel ID Frequency Power Loss VSWR VCO ActFwd ActRevAntenna Isol Pending%c%c%c %s No Tx or Rx channels are configured! Return loss of %5.2f dB => VSWR of %5.2f Sorry, there is no valid Restore data present Restore data was last saved on %d/%d/20%02d at %d:%02d All of the current configuration settings will be replaced with this data! This will also erase all recorded History! This will overwrite the current firmware! Rebooting ... Preparing for upload ... Ready to receive a new application. The system will now reboot. Please wait about a minute before reconnecting ... Rebooting after upload... This will restore configuration to factory defaults. All configuration data set to DEFAULTS.CALIBRATECONFIGDATEDEBUGDEFAULTDOWNLOADUPLOADFFSFILEHELP/?/HISTHIST/LOGINLOGOUTLOGOFFRESETRESTARTRESTORERLOSSSETSHOWSTARTSTATUSSTATUS/TESTTFSTFS/TSTMODETSTMODE/TSTMODE0TSTMODE0/TIME~GETSTAT~SETID~DOWNLOAD~GETTR~GETTXALLBOTHSAVEDUMPWRITERAMSERIALCGIBUFFADDACTDELETEDELDIRFORMATSENDVIEWVIEWHEXLISTDIAGSEEPROMALMCFGALMDELAYATEMODEAVGBAUDCFGCUSTCUSTOMERFREQSHWBANDHWTESTID/IPM2MMANAGERMGRMODELNAMEOFFSETPERIODPORTPORT/PWRHISTREFRX/RXFUNC/SERIAL/!/SITESMTPSNMPTRAFFICTX/A2DALMCFG/CALCAL/CAM/CONFIG/IP/PORTSPORTS/PTTRFSMTP/TEMPVOLTSALMCCOMMSLOGNLCISMOOTHSPURTXFTXRVCOICPVCOLNSVCOPWRVCOSCOPYVERIFYCPUEEPFLASHSFLASHMEDCHANDEFDFLTEXTPOLRBOOTSERDISABLEENABLEADDRADDRESSDHCPGATEWAYGWMASKNETMASKADDR1TCP1UDP1ADDR2TCP2UDP2USETCPVCO1VCO2VCOFLAGSRESDEST1DEST2DEST3DEST4DETAILFROMPSWDSUMMUSERPORT1PORT212-112-612-18123-1123-6123-18 %08X - %02X Max CGI Buff used = %d %04X - EEPROM address %04X was %02X, now %02X Blocks of 'unused' RAM Address Length (bytes) 0x%08X %6lu (0x%06X) I2CEEP_WriteChar(): Error - Addr = %lu, Data = %u I2CEEP_WriteBlock(): Error - Addr = %lu EEPROM = 64K EEPROM = 2K Trying EEPROM = 64K Trying EEPROM = 2KOK%2d/%02d/%02d %s, %2d:%02d:%02d, Date,Time,Type,??????????????? SYS CFG , %s, %s, 0x%02x, %u, %u, 0x%02x, %u %s, %s, %u, %u Rx-%2d CFG , %s, %s, 0x%02x Tx%d-%2d CFG , %s, Date,Time,Type,Reference,Values,Description SYS STAT, , , SYS=%s, RX=%s, TXPWR=%s, TXVSWR=%s RX STAT, Rx-%d, %s, PWR=%s ISOL=%sTX STAT, Tx%d-%d, %s;; ILOSS=%s; VSWR=%sDate,Time,Port,Channel,Type,dBm,VSWR,On/Off Rx, %2d, PWR , %s,, %sTx%d, %2d, PWR , %s,, %s, 0x%02x Tx%d, %2d, VSWR,, %s,SYS RESTART, , , ERROR - Invalid History record type 999999HSTPWR%02d%02d%02d HIST_FindEarliestFile: "%s" .HST.PWR HIST_FfsDeleteEarliest(): %d files deleted. HIST_OpenDateFile: File not found - %s %02d%02d%02d.%s HIST_GetDateFile: returning - %s HIST_OpenDateFile: No more files - %s SD Card not present or failed to initialise. HIST_ReadRecordFfs: TERMINATE HIST_GetRecord(a) - Invalid header, type=0x%04x ! Flash = 0x%08x - %02x HIST_FindPrevSflash() - Invalid len_prev = %u HIST_GetRecord(b) - Invalid header, type=0x%04x ! HIST_RecoverLevels(): DISABLED HIST_RecoverLevels(): Invalid Date/Time HIST_RecoverLevels(): No history available HIST_RecoverLevels(): Chan %u, Isol=%d HIST_RecoverLevels(): Chan %u, Pwr=%d HIST_RecoverLevels(): Chan %u, VSWR=%u HIST_RecoverLevels(): Invalid channel for VSWR=%u HIST_RecoverLevels(): Invalid record type=%u HIST_RecoverLevels(): HIST_RECOVERY_PERIOD exhausted HIST_RecoverLevels(): %u channels recovered HIST_RecoverLevels(): No more history available000000.* History pointers corrupted. Re-initialising History storage... Deleting history files ...*.HST*.PWR %d history files deleted. HIST_MakeSpace - idx_start=%08lX, idx_end=%08lX HIST_MakeSpace - used=%08lX (%ld), adjusted_used=%08lX (%ld), avail=%08lX, start=%08lX, new start=%08lX - FAIL!! HIST_WriteRecordToSflash - HIST_MakeSpace() failed, clearing history..., new start=%08lX Sector to be erased = %08lX idx_curr_ptrs = 0x%04x Recirculating SFLASH pointer storage in EEPROM - %04X HIST_WriteRecordToSflash - Testing sector %d, ERASINGCLEANa+ HIST_WriteRecordToFfs: Error creating file %s HIST_WriteRecordToFfs: type=0x%04X, len=%d HIST_FfsWrite(): Calling ffs_reinit() HIST_WriteRecordToFfs: Error writing file %s HIST_FfsWrite(): Creating more room... HIST_WritePwrStat(): Logging chan 0, force=%s,true 1, 2, Setting User defaults...Not definednoreply@localhost Setting Factory defaults... MAIN_RfCheckPeriod=%d, active_chans=%d, cycle_time=%d Alm Debounce counts Rx/Tx = %d/%d FULL EEPROM initialisation. CheckA=0x%02x, Check5=0x%02x Incompatible old application! Re-initialising EEPROM... AppCode=0x%02x Updating EEPROM data storage format. Please wait...APM7487 Version 3 to 4, Stage 1... DONE! Version 3 to 4, Stage 2 DONE! Version 3 to 4, Stage 2a... Version 4 to 5... Version 5 to 6... Version 6 to 7... Version 7 to 8... Version 8 to 9, Stage 1... Version 8 to 9, Stage 2... Unhandled EEPROM Version - %u! Re-initialising History storage... Memory card initialised f_chdrive() failed! f_initvolume() failed! f_enterFS() failed! f_init() failed! Hardware pins, Timer, SIO initialised Reset button is LOW WDT initialised A2D initialised I2CEEP initialised ERROR! - Hardware Revision is 0 ERROR! - EEPROM is not 64KB SFLASH initialised Setting full factory defaults... Waiting for reset button to be released... ALARM initialised MAIN_RestoreFromEep() done DAC initialised Initialising memory card... Attempting to re-format... SUCCESS FAIL Trying again... No memory card detected!TXP Verifying TFS... TFS error! Copying emergency TFS... Failed to copy emergency TFS! ETHERNET initialised Ethernet MAC address has not been set, Ethernet is disabled!  WARNING - I2C EEPROM faulty!  WARNING - Serial FlASH faulty or incompatible type! WDT check FAIL RTC check FAIL History initialised Setting factory default config...MAIN: Copying file system to final location... DONE! MAIN: Restarting... I2C EEPROM interface FAILED - Size is %s RTC check OK 12.525FM12.5P25P1LSMP25P2FM25DMRMOTOTRBOTETRA1-2021-4041-6061-801-8010 Sec30 Sec1 Min5 Min15 Min30 Min1 Hour0.2 dB0.3 dB0.5 dB1.0 dB2.0 dB5 %10 %20 %10 Min45 Min3 Hours6 Hours12 Hours1 Day3 Days1 WeekMinutes0;15;30;45;602 Hours0;30;60;90;120Hours0;1;2;3;4;5;60;6;12;18;24Days0;1;2;30;1;2;3;4;5;6;72 Weeks0;2;4;6;8;10;12;144 WeeksWeeks0;1;2;3;43 MonthsMonths6 Months1 Year0;2;4;6;8;10;12Max/Min PwrUtilisationMax Pwr (1 chan)Min Pwr (1 chan)Max/Min VSWRMax VSWR (1 chan)Min VSWR (1 chan)Active LowActive HighNormalN/RN/OPTT LowPTT HighAPM8286APM3852APM4050APM1317APM8796 The saved Restore data is corrupted. Do want to attempt the restore anyway? (YES/NO) > Recovering %u bytes of Restore data... Saving %u bytes of Restore data...Lock FAIL %d, VcoCount=%d, Fail=%c%c%c Tx readings ignored, PTT changed during readings Tx readings ignored, chan %d! pwr1=%d, Pwr3=%dSFLASH_SectorErase() - 0x%08lx 1st Verify failed! SFLASH_SectorErase() - 0x%08lx 2nd Verify failed!  login> CAL> >* 0xHeap & Stack collision, %08x+%04x>%08x FLASH file system contents %10d %s %d%s%d%sTFS_Open() - MAX_OPEN_FILES exceeded! TFS_Open() - NULL filename(1)! TFS_Open() - NULL filename(2)! ~~TFS_Open() - <%s> Header CRC error! TFS_Open() - <%s> File CRC error! TFS_Open() - <%s> Not found! TFS_Verify() - Write failed %d TFS_Verify() - file_ptr is NULL %d TFS_Verify() - Header error %d TFS_Verify() - No files %-25s= %u0123456789./html/info.shtmlPOST: Timer expired AJAX: Timer expired WEB_CGI_Buff overflow! Size=%d \x%02x< %.1f> %.1f%s dB;%c%.1f;%.1f;%.6f;%.1f;%.1fTx Port %d;%s;%.0f;%.0f;0ChannelRx %s;%s;%.0f;%.0f;0Tx Port %d;%s;%.1f;%.1f;0Tx port %d;%s;0.0;100.0;0Rx %s;%s;0.0;100.0;0Tx%d-%d;%s;%.0f;%.0f;%d;%sRx-%d;%s;%.0f;%.0f;%d;%s;%.1f;%.1f;%.2f;%.2f;%.1f;%.2fweb_eventlogdata(): No more records available web_histpwrdata(): No more records available cgi_m_cliNot enough parameters!quit~~consol.txt cgi_m_cli(): MALLOC FailedMalloc Failedcgi_m_cli(): param "c" not found Parameter is not "c"!deleteloadsavedwnloads1c2view/html/cfg_cfgfiles.shtmlcgi_stat_camMore than one parameter!Invalid CAM value!/html/stat_cam.shtmlFirst parameter is not "m"!cgi_histeventlog/html/hist_eventlog.shtmlInvalid log type value!First parameter is not "t"!cgi_histeventperiod~~histpwrchan.txtInvalid period value!cgi_histeventperiod(): param "p" not found Parameter is not "p"!cgi_histpwrchanInvalid port number!cgi_histpwrchan(): param "p" not found First parameter is not "p"!Invalid channel value!cgi_histpwrchan(): param "c" not found Second parameter is not "c"!Invalid chart period value!cgi_histpwrchan(): param "d" not found Third parameter is not "d"!Invalid hist_type value!cgi_histpwrchan(): param "h" not found Fourth parameter is not "h"!cgi_hist_pwrchartcgi_hist_pwrchart(): param "p" not found cgi_hist_pwrchart(): param "c" not found Invalid chart period!cgi_hist_pwrchart(): param "d" not found cgi_hist_pwrchart(): param "m" not found Fourth parameter is not "m"!Invalid chart mode!~~pwrdata.txtcgi_hist_pwrchart(): param "h" not found Fifth parameter is not "h"!cgi_cal_ccshowNo parameters!/html/cal_cc.shtmlInvalid number of parameters!cgi_cfg_servicecgi_cfg_service(): "p" not found First parameter not "p"!cgi_cfg_service(): "ch=" not found Second parameter not "ch"!~~service.txtcgi_stat_rxchans/html/stat_rxchans.shtmlcgi_stat_txport/html/stat_txport.shtmlcgi_cfg_camInvalid CAM address!/html/cfg_cam.shtmlToo many parameters!cgi_cfg_cam(): first param not "cam"-%s First parameter is not "cam"!cgi_cfg_cam(): invalid cam No.%d (%s) Invalid CAM ID!cgi_cal_rxport/html/cal_rxport.shtmlcgi_cfg_rxisol/html/cfg_rxisol.shtmlcgi_cfg_hist/html/cfg_hist.shtml~~isoldata.txtcgi_cal_ccapplyInvalid port value!Out of range ccv value (%s)!/html/cal_txport.shtmlSecond parameter is not "v"!cgi_cal_txportcgi_cal_txport(): first param not "port"-%s First parameter is not "port"!cgi_cal_txport(): invalid port No.%d cgi_cal_txport(): chan number >= 20 cgi_alm_rxchanscgi_alm_rxchans(): first param not "port"-%s cgi_alm_rxchans(): invalid port No.%d cgi_alm_rxchans(): chan number >= 20 /html/alm_rxchans.shtmlcgi_cfg_rxchanscgi_cfg_rxchans(): invalid port No.%d (%s) -1;cgi_cfg_rxchans(): chan number >= 20 (%d) /html/cfg_rxchans.shtmlcgi_cfg_rtccgi_cfg_rtc(): param=[%s] fixed val=[%s] cgi_cfg_rtc(): date format value invalid=%d 00cgi_cfg_rtc(): Unhandled case /html/cfg_rtc.shtmlcgi_cfg_systemalm/html/cfg_systemalm.shtmlcgi_cfg_alarms/html/cfg_alarms.shtmlcgi_cfg_txportalmcgi_cfg_txportalm(): first param not "port"-%s cgi_cfg_txportalm(): invalid port No.%d cgi_cfg_txportalm(): chan number >= 20 /html/cfg_txportalm.shtmlcgi_cfg_txportchcgi_cfg_txportch(): first param not "port"-%s cgi_cfg_txportch(): invalid port No.%d (%s) cgi_cfg_txportch(): chan number >= 20 /html/cfg_txportch.shtmlcgi_cfg_userdata/html/cfg_userdata.shtmlcgi_cfg_userdata() WEB_CGI_Error or no parameters cgi_cfg_access/html/cfg_access.shtmlRFIDSPbasedRepeatercgi_cfg_mgrif/html/cfg_mgrif.shtmlcgi_cfg_commsemailsnmp/html/cfg_comms.shtmlPOST: uri=[%s] Error - No POST result message!Content-Type: text/plainmultipart/form-databoundary=POST:%d Unhandled Content-Length: POST:%d content type = PLAINTEXT POST:%d content type = MULTIPART POST:%d content type = UNHANDLED /404.htmlfirmware-- POST:%d Part boundary not found /html/welcome.html content-disposition: form-dataPOST:%d FormType "%s" not handled filename="POST:%d "%s" not found EmptyPOST: Full FilePathName=%s APM_FSASM_FStfs_dumpERROR - Unhandled TFS File NameBINAPM_MAINASM_MAINCONTROLLERERROR - Unhandled BIN File NameFFPAPM_ASM_ERROR - Unhandled FFP File NameERROR - Unhandled File ExtensionERROR - Unhandled file typeERROR - File already existsERROR - Could not create fileERROR - Unhandled Form TypePOST: Name=%s, Ext=%s, Formtype= %d, state=%d Application successfully uploaded. The system will now restart.

Please wait a minute or so before re-connecting.Application verify failed. Previous application still active.File system successfully uploaded, please wait a minute.

You may need to clear your browser's cache to view changed pages.GUI file system verify failed. Previous file system still present.ERROR - Invalid firmware package. No changes have been saved.Application verify failed. No changes have been saved. app_bytes=%u, byte_count=%u, count=%d WEB_ProcessFileData() - TFS Verified OK Firmware package successfully uploaded. The system will now restart.

Please wait a couple of minutes before re-connecting.

You may need to clear your browser's cache to view changed pages.WEB_ProcessFileData() - TFS Verify FAILED GUI file system verify failed. No changes have been saved.Error writing file.File successfully uploaded.POST: %s, Processed %d Packets, %d Bytes POST: Finished! POST:%d PostState processing error \'"!~!%d!'%s'); formError.push( formArray.push(

Firmware Update Status

 

%s

 

'%s','%u','%s','%d',2.1Not set!'dd/mm',%d/%d/%d%02d'mm/dd',%d:%02d:%02d'%s, %s','%s','%s','%s','%s','%s','%s','%s','%s','%s'); formColour.push('','','','','','','','','','%s','%s','%s','%s','%s','%s','%s',' ','%c'); showrx=%c;'%s','%u','%s','%s','%s','%s','%d','%d','%s (Link %s)','0x%04X',64KB2KB'0x%04X', '%s','%s','%s','%u','%u','0x%02X','%d, %d, %d, %d','%d','%4.2fV',None ErrMsg='%s() - %s';'','%d','%s','%s','%d','%s','','','%s','');'%d','%s','Ext%d-%d','%s','%s',Tx Port %d - %sTx%d-%d, %sAlarm not in use'CAM%d-%d','%s','%s','%s','%s',''); formColour.push('','','','','','%c','','','','%c','%c','Tx%d-%d',NoYes'%s','%s','%s MHz','%s W','%s dBm','%s dB','%s:1','','','','','','','','',''); formStatus.push('%d',''); formColour.push('','','','','','','','','%c','%c','%c','%c','Rx-%d','','','','','','','','','','%c','%02X:%02X:%02X:%02X:%02X:%02X','%u','%s','%s
'%u');%d/%d/%02d'%d','%d','%02d','%d','%02d','%02d');'%s','%s','%s','%s', encKeys.push('%s','%s MHz',Test Pending< %.1f dB> %.1f dB%s dB'%s'); formColour.push('','','','','','%c');' n/a'); formColour.push('','','','','','');'%.1f dB','%.1f dB',;%s formDefaults.push(0,'OFF',%d, formLimits.push('%s','0','%s',''%s','%s','%u','%s','%s','%u','%u','%u','%u','%s');'Ext%d-%d','CAM%d-%d','%s','%s','%d;Alarm not in use;Tx Port %d - %s'%d','%d P%dChans=' MHzTx%d-%d, %s%s, %s';'Disabled','Enabled', formDefaults.push('Not defined','OFF','%d','%d','%s'); port='%d'; cams.splice(0,11); cams.push(0);false is_asm=%s; is_k2=%s; asm=%s; Antenna System Monitor Chans='%d;Tx%d-%d, %s MHz, %s'%s','%dTx%d-%d, %s MHz, %s is_alm=%s;'0;Rx 1-20;Rx 21-40;Rx 41-60;Rx 61-80;Antenna Isolation;All Channels',Rx-%d, %s MHz, %s;All Ports & Channels','0;Rx 1-20;Rx 21-40;Rx 41-60;Rx 61-80', ChartCfg.push('Rx','Hours',-110,-80,'dBm'); ChartCfg.push('Tx','Hours',30,50,'dBm');'%s','%s MHz', formDefaults.push('%s','%2d-%d',' ---','%u','%u'); encUsernames.push('%s'); encPasswords.push('%s'); encKeys.push( c_fwupdmsgs_systemh_rxpwrcharts_rxchansh_rxpwrfiles_commsc_rxportcalc_commsc_rxchansc_txchansc_alarmsc_accesss_logins_overviews_txportc_userdatac_txportchc_portc_txportalmc_systemalmc_showrxc_rtcc_txportcalc_servicec_cca_rxchansc_mgrifh_txpwrchartc_hists_rxisolc_rxisolh_txpwrfiles_camc_camc_cam_numsidebarframes_infos_emergencym_cfgfilesh_eventlog/html/cfg_comms.cgi/html/cfg_mgrif.cgi/html/cfg_alarms.cgi/html/cfg_access.cgi/html/cfg_userdata.cgi/html/cfg_restart.cgi/html/stat_txport.cgi/html/stat_rxchans.cgi/html/cfg_txportch.cgi/html/cfg_rxchans.cgi/html/cfg_txportalm.cgi/html/alm_rxchans.cgi/html/cfg_systemalm.cgi/html/cfg_rtc.cgi/html/cal_txport.cgi/html/cal_rxport.cgi/html/cfg_service.cgi/html/cal_ccapply.cgi/html/cal_ccshow.cgi/html/hist_pwrchart.cgi/html/cfg_hist.cgi/html/stat_rxisol.cgi/html/cfg_rxisol.cgi/html/hist_pwrchan.cgi/html/hist_eventlogperiod.cgi/html/hist_eventlog.cgi/html/cfg_cam.cgi/html/stat_cam.cgi/html/cfg_cfgfiles_action.cgi/html/m_cli.cgi~~histall.txt~~histpwrdata.txt~~histpwrdata.csv~~eventlog.csv~~eventlog.txt~~viewcfg.txt Size = %lu Send timed outSend CancelledXfer Cancelled1K - Activate the TRANSFER/SEND FILE (Binary) menu items, - Select the relevant file, - If presented with the option, select %sXMODEM protocol, - Press OK and/or SEND. To cancel an upload: - Send one or more CTRL-D characters, OR - Disconnect the terminal session. XMDM: Too many errors or timeout Upload completed.Not SOH/EOT Waiting for Xmodem packet (Ctrl-D to cancel) ...Bad ChecksumBad SeqWrong SeqDup PacketSUNMONTUEWEDTHUFRISATJANFEBMARAPRMAYJUNJULAUGSEPOCTNOVDECdhcp_option: dhcp->options_out_len + 2 + option_len <= DHCP_OPTIONS_LENdhcp_option_byte: dhcp->options_out_len < DHCP_OPTIONS_LENdhcp_option_trailer: dhcp != NULLdhcp_option_trailer: dhcp->msg_out != NULL dhcp_option_trailer: dhcp->options_out_len < DHCP_OPTIONS_LEN dhcp_option_short: dhcp->options_out_len + 2 <= DHCP_OPTIONS_LENdhcp_option_long: dhcp->options_out_len + 4 <= DHCP_OPTIONS_LENdhcp_stop: netif != NULLreply wasn't freeddhcp_create_msg: netif != NULLdhcp_create_msg: dhcp != NULLdhcp_create_msg: dhcp->p_out == NULLdhcp_create_msg: dhcp->msg_out == NULLdhcp_create_msg: check that first pbuf can hold struct dhcp_msgdhcp_delete_msg: dhcp != NULLdhcp_delete_msg: dhcp->p_out != NULLdhcp_delete_msg: dhcp->msg_out != NULLnetif != NULLdhcp != NULLnetif already has a struct dhcp setpbuf p_out wasn't freeddhcp_bind: netif != NULLdhcp_bind: dhcp != NULLlen == 4len >= decode_lenlen % 4 == 0len == 1check decode_idxoption already decodeddecode_len % 4 == 0invalid decode_lenmem_malloc: !lfree->usedmem_malloc: allocated memory not above ram_end.mem_malloc: allocated memory properly aligned.mem_malloc: sanity check alignmentmem_trim: legal memorymem_trim can only shrink memorymem_free: sanity check alignmentmem_free: legal memorymem_free: mem->usedplug_holes: mem >= ramplug_holes: mem < ram_endplug_holes: mem->used == 0plug_holes: mem->next <= MEM_SIZE_ALIGNEDmemp_free: mem properly alignedmemp_malloc: type < MEMP_MAXmemp_malloc: memp properly alignedNo init function given(h != NULL) && (t != NULL) (programmer violates API)p->tot_len == p->len (of last pbuf in chain)p->next == NULLincrement_magnitude <= p->lenbad pbuf typepbuf_alloced_custom: bad pbuf layerpbuf_take: invalid bufpbuf_take: invalid dataptrpbuf_take: invalid pbufdid not copy all datapbuf_copy_partial: invalid bufpbuf_copy_partial: invalid dataptrpbuf_copy: target not big enough to hold sourcep_to != NULLoffset_to <= p_to->lenoffset_from <= p_from->lenpbuf_copy() does not allow packet queues! pbuf_free: sane typepbuf_free: p->ref > 0pc->custom_free_function != NULLp->tot_len == p->len + q->tot_lenp->tot_len == p->lenpbuf_realloc: p != NULLpbuf_realloc: sane p->typegrow < max_u16_tpbuf_realloc: q != NULLmem_trim returned q == NULLpbuf_alloc: bad pbuf layercheck p->payload + p->len does not overflow pbufPBUF_POOL_BUFSIZE must be bigger than MEM_ALIGNMENTrem_len < max_u16_tpbuf_alloc: pbuf q->payload properly alignedpbuf_alloc: pbuf->payload properly alignedpbuf_alloc: erroneous typepbuf_copy failedMEMUDP_PCBTCP_PCBTCP_PCB_LISTENTCP_SEGREASSDATAFRAG_PBUFSYS_TIMEOUTPBUF_REF/ROMPBUF_POOLnew_rcv_ann_wnd <= 0xfffftcp_recved: len would wrap rcv_wnd unsent segments leakingunacked segments leakingooseq segments leakingtcp_slowtmr: active pcb->state != CLOSED tcp_slowtmr: active pcb->state != LISTEN tcp_slowtmr: active pcb->state != TIME-WAIT tcp_slowtmr: middle tcp != tcp_active_pcbstcp_slowtmr: first pcb == tcp_active_pcbstcp_slowtmr: TIME-WAIT pcb->state == TIME-WAITtcp_slowtmr: middle tcp != tcp_tw_pcbstcp_slowtmr: first pcb == tcp_tw_pcbstcp_connect: can only connect from state CLOSEDtcp_listen: pcb already connectedtcp_bind: can only bind in state CLOSED tcp_abandon(): 1 pcb=%08xdon't call tcp_abort/tcp_abandon for listen-pcbs tcp_abandon(): 2 tcp_abandon(): 3pcb->flags & TF_RXCLOSEDSYN_SENTSYN_RCVDESTABLISHEDFIN_WAIT_1FIN_WAIT_2CLOSE_WAITCLOSINGLAST_ACKTIME_WAITpcb->snd_queuelen >= pbuf_clen(next->p)tcp_receive: valid queue lengthinseg.p != NULLinsane offset!pbuf too short!pbuf_header failedtcp_receive: segment not trimmed correctly to rcv_wnd tcp_receive: segment not trimmed correctly to ooseq queue tcp_receive: tcplen > rcv_wnd tcp_receive: ooseq tcplen > rcv_wnd tcp_input: active pcb->state != CLOSEDtcp_input: active pcb->state != TIME-WAITtcp_input: active pcb->state != LISTENtcp_input: pcb->next != pcb (before cache) tcp_input(): pcb=%08xtcp_input: pcb->next != pcb (after cache)tcp_input: TIME-WAIT pcb->state == TIME-WAITtcp_input: pcb->state != CLOSEDpcb->snd_queuelen > 0pcb->accept != NULLpcb->refused_data == NULLneed unchained pbufcheck that first pbuf can hold struct tcp_hdrRST not expected here!seg->tcphdr not alignedtcp_enqueue_flags: need either TCP_SYN or TCP_FIN in flags (programmer violates API)tcp_enqueue_flags: check that first pbuf can hold optlentcp_enqueue_flags: invalid segment lengthtcp_enqueue_flags: invalid queue lengthtcp_write: arg == NULL (programmer violates API)tcp_write: pbufs on queue => at least one queue non-emptytcp_write: no pbufs on queue => both queues emptyunsent_oversize mismatch (pcb vs. last_unsent)inconsistend oversize vs. lenunsent_oversize mismatch (pcb->unsent is NULL)tcp_write: check that first pbuf can hold the complete seglenoversize == 0prev_seg != NULLtcp_write: cannot concatenate when pcb->unsent is emptytcp_write: valid queue lengthrebind == 0check that first pbuf can hold struct udp_hdrpbuf_header failed p->payload == iphdrthis needs a pbuf in one piece!pcr != NULLsanity check linked listprev != iprprev->next == iprpbufs_freed + clen <= 0xffffip_reass_pbufcount >= clencheck fragments don't overlapno previous fragment, this must be the first fragment!sanity checkvalidate_datagram:next_pbuf!=NULLvalidate_datagram:datagram end!=datagram lencheck that first pbuf can hold icmp messageicmp_input: moving p->payload to ip header failed check that first pbuf can hold struct the ICMP headericmp_input: copying to new pbuf failed icmp_input: restoring original p->payload failed Can't move over header in packetp->ref == 1check that first pbuf can hold struct ip_hdr pbuf_alloc FAIL FrameAbort socket_open: Out of memory socket_SendData: adding more data socket_SendData: pcb not NULL socket_SendData: socket opening socket_SendData: socket open FAIL socket_abort: ss->state=%d, ss->pcb->state=%d, pcb->state = %d socket_connected: ss->state = %d, pcb->state = %d, refusing connection , closing connection , processing connection socket send_data: error %d len %d socket_sent: ss->state = %d, pcb->state = %d, len=%d, bytes2send=%d, no more data , send more data socket_abort: pcb->state = %d socket_abort(): 1-pcb=%08xsocket_poll: ss->state = %d, pcb->state = %d socket_poll: closing connection - no (more) data to send. socket_err: pcb->state = %d telnet_accept: Out of memory send_data: error %d len %d state == ETHARP_STATE_PENDING || state == ETHARP_STATE_STABLEarp_table[i].q == NULLi < ARP_TABLE_SIZEarp_table[i].state == ETHARP_STATE_EMPTYeth_ret != NULL && ip_ret != NULLnetif->hwaddr_len must be the same as ETHARP_HWADDR_LEN for etharp!netif->hwaddr_len == ETHARP_HWADDR_LENcheck that first pbuf can hold struct etharp_hdrarp_table[i].state == PENDING or STABLEq != NULLno packet queues allowed!hs->left did not fit into u16_t!Data size did not fit into u16_t!***UNKNOWN TAG %s***/404.htmGET POST /index.shtml/index.ssi/index.shtm/index.html/index.htm.shtm.ssi.xmlContent-type: text/html Cache-Control: max-age=36000 Content-type: text/html Cache-Control: no-cache Expires: -1 Content-type: image/gif Cache-Control: max-age=36000 Content-type: image/png Cache-Control: max-age=36000 Content-type: image/jpeg Cache-Control: max-age=36000 Content-type: image/bmp Cache-Control: max-age=36000 Content-type: image/x-icon Cache-Control: max-age=36000 Content-type: application/octet-stream Content-type: application/x-javascript Cache-Control: max-age=36000 Content-type: application/x-javascript Cache-Control: max-age=36000 Content-Encoding: gzip Content-type: audio/x-pn-realaudio Content-type: text/css Cache-Control: max-age=36000 Content-type: application/x-shockwave-flash Content-type: text/xml Content-type: application/msexcel Cache-Control: no-cache Expires: -1 Content-Disposition: attachment; filename=pwrdata.csv Content-type: application/octet-stream Cache-Control: no-cache Expires: -1 Content-Disposition: attachment Content-type: text/plain Cache-Control: no-cache Expires: -1 HTTP/1.1 200 OK HTTP/1.1 404 File not found Server: lwIP/1.3.0 (http://www.sics.se/~adam/lwip/)

404: The requested file cannot be found.

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The block diagram below provides an overview of the system interfaces.


     


For further information or help with this product contact your nearest RFI sales Office or through the following:

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ghtml/alm_rxchans.shtml : : ,wa Advanced Power Monitor - Rx Channel Alarms Configuration

Configuration - Rx  , Alarms

Customer Name -  
Site Name -  
Rx Antenna Reference -  

       

Chan No. Channel ID Frequency Min Pwr Max Pwr
   There are no configured channels to display!
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm
   dBm  dBm

       

ghtml/cal_cc.shtml :  Advanced Power Monitor - Tx Port Coupler Compensation

VSWR Calibration - Tx Port  

This page sets the VSWR Calibration value. The procedure is as follows:
  1. Disable transmissions from all transmitters connected to this Tx Port.
  2. Connect a high power termination to the Coupler output.
  3. Enable transmissions from the transmitter to be used to perform the VSWR Calibration.
  4. Select a Tx Channel from the drop-down list to match the frequency of the above transmitter.
  5. Click the "Refresh" button several times to ensure you have stable forward and reverse power readings.
  6. Press the "Apply" button to store the new VSWR Calibration value.

 Select Tx Channel for Measurement

 

Reported Fwd Pwr Reported Rev Pwr
 dBm  dBm

       

ghtml/cal_rxport.shtml : Lt^7汓 Advanced Power Monitor - Rx Port Calibration

Calibration - Rx Port

Customer Name -  
Site Name -  

Setting Value
Rx Subsystem Gain(Loss)  dB
Rx Post Gain(Loss)  dB

       

ghtml/cal_txport.shtml : xDBk Advanced Power Monitor - Tx Port Calibration

Calibration - Tx Port  

Customer Name -  
Site Name -  
Tx Antenna Reference -  

Tx Port   Losses
Forward Coupling  dB
Reverse Coupling  dB
Antenna Feeder  dB
VSWR Calibration  Enabled     

       

ghtml/cfg_access.shtml : "r Advanced Power Monitor - Access Management

Maintenance - Access Management

Customer Name -  
Site Name -  

Access level UserName Password Confirm Password Password Strength
View Status only  
View Status and Modify Settings  

            

ghtml/cfg_cam.shtml : U6t#b2 Advanced Power Monitor - Channel Alarm Module Configuration

Configuration - Channel Alarm Module  

Customer Name -  
Site Name -  

       

External Alarm Input No. Input ID Enabled Alarm State

Alarm No. Port Channel Alm Func Rly Mode I/P Func

        
ghtml/cfg_cfgfiles.shtml : ,Pd(_ Advanced Power Monitor - Config File Maintenance

Maintenance - Configuration Files

Customer Name -  
Site Name -  

Upload a new Configuration file

   Note that the filename must have a .CFG extension.

  

     

Manage existing Configuration files

   

 

 

 

 

Save current Configuration to file

Enter a name for the new Configuration file, then click Save:

   Note that the filename will have a .CFG extension.

.CFG        

ghtml/cfg_comms.shtml : 97pyN} Advanced Power Monitor - Communications Configuration

Configuration - Communications

Customer Name -  
Site Name -  

Ethernet
Setting Value
DHCP   Enabled
IP Address
Subnet Mask
Gateway
NOTE: After saving new values for any of the above settings, the system must be restarted to activate them.
The Restart option is under the Maintenance menu.
Email
Setting Value
Messages to send Summary system status       Detailed channel status
SMTP Server Address
SMTP Server Listening Port
SMTP Server Login Username
SMTP Server Login Password   Reveal
From Email Address
Destination Email Addresses


SNMP
Setting Value
Send Alarm Notifications (Traps) Enabled
  Primary   Secondary
SNMP Manager IP Address
SNMP Manager Listening Port

       

ghtml/cfg_fw_update.html : = [! Antenna System Monitor - Firmware Update

Maintenance - Firmware Update

Select the .FFP file to upload to the system.

         

     

ghtml/cfg_fw_upd_resp.shtml : 2Jm Antenna System Monitor - Firmware Update Response
ghtml/cfg_hist.shtml : :9 Advanced Power Monitor - History Configuration

Configuration - History

Customer Name -  
Site Name -  

Setting Value
Recover 'Last Recorded' Status values after power loss   Enabled
Tx Power Logging   Enabled
VSWR Level Logging   Enabled
Logging Interval
Tx Power Logging Resolution
VSWR Level Logging Resolution

       

ghtml/cfg_mgrif.shtml : vq;ݛ Advanced Power Monitor - Manager Interface Maintenance

Maintenance - Manager Interface

Customer Name -  
Site Name -  

Setting Value
Auto Status Packets   Enabled
Auto Traffic Packets   Enabled
Max Traffic Period
Manager   Primary   Secondary
  Manager Address
  Manager TCP Port
  Manager UDP Port
  Manager Use TCP for Status Packets   Enabled

       

ghtml/cfg_restart.html : S Antenna System Monitor - Restart

Maintenance - Restart

This will restart the unit with the currently saved settings.

After restarting, close this browser tab or window, wait for about 1 minute, then re-enter the unit's IP address to return to the login page.

 

     

ghtml/cfg_rtc.shtml : zl? Advanced Power Monitor - Date & Time Maintenance

Maintenance - Date & Time

Customer Name -  
Site Name -  

Setting Value
Date Format mm/dd/yy     dd/mm/yy
Date (/yy) / /
Time (hh:mm:ss) : :     Pause

     

ghtml/cfg_rxchans.shtml : b;vI] Advanced Power Monitor - Rx Channel Configuration

Configuration - Rx  , Channels

Customer Name -  
Site Name -  
Tx Antenna Reference -  


       

Chan No. Channel ID ON Frequency BW Modulation Threshold Pwr
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm

        
ghtml/cfg_rxisol.shtml : CN,w Advanced Power Monitor - Antenna Isolation Configuration

Configuration - Antenna Isolation

Customer Name -  
Site Name -  

Setting Value
Automatic Isolation Test   Enabled
Test Frequency  MHz
Automatic Test Repetition Period
Tx Reverse Coupling Loss (Nominal)  
Tx Feeder Loss (Nominal)  
Rx Subsystem Gain(Loss)  
Rx Post Gain(Loss)  
Minimum Isolation Loss (Alarm level)  dB

       

ghtml/cfg_service.shtml : 5o椬 Antenna System Monitor

Service Mode

Customer Name -  
Site Name -  

 Select Tx Port
 

 Select Tx Channel
 

Fwd Pwr
-.-- W

dBm

Watts

BTx Pwr
-.-- W

dBm

Watts

VSWR
-.--:1

Ant VSWR

Ant RL (dB)

RevPwr (dBm)

RevPwr (Watts)

Combiner I.L.
-.- dB

   

ghtml/cfg_system.shtml : k Advanced Power Monitor - System Configuration

Configuration - System

Customer Name -  
Site Name -  

Setting Value
Date (mm/dd/yy)
Time (hh:mm:ss)
Auto Status Packets   Enabled
Auto Traffic Packets   Enabled
Max Traffic Period

   

ghtml/cfg_systemalm.shtml : 'UWU Antenna System Monitor - Alarm Configuration

Configuration - System Alarms

Customer Name -  
Site Name -  

Setting Value
VCO alarms   Enabled
Tx Power alarms   Enabled
Tx VSWR alarms   Enabled
Tx alarm delay  Seconds

       

ghtml/cfg_txportalm.shtml : TB* Advanced Power Monitor - Tx Port 1 Alarms Configuration

Configuration - Tx Port   Alarms

Customer Name -  
Site Name -  
Tx Antenna Reference -  

       

Chan No. Channel ID Frequency Min Pwr Max Pwr Max I.L. Max VSWR CAM
   There are no configured channels to display!
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1
   dBm  dBm  dB :1

       

ghtml/cfg_txportch.shtml : d ,R= Advanced Power Monitor - Tx Port Channel Configuration

Configuration - Tx Port   Channels

Customer Name -  
Site Name -  
Tx Antenna Reference -  

Calibrated Tx Port   Coupling Losses
Forward  
Reverse  

       

Chan No. Channel ID ON Frequency BW Modulation Threshold Pwr
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm
 MHz  kHz  dBm

        
ghtml/cfg_userdata.shtml :  { Advanced Power Monitor - User Data Configuration

Configuration - User Data

Customer Name -  
Site Name -  

Setting Value
Customer Name
Site Name
Tx Port 1 Antenna Reference
Tx Port 2 Antenna Reference
Tx Port 3 Antenna Reference
Tx Port 4 Antenna Reference

       

ghtml/frame.shtml : (OL{ Advanced Power Monitor ghtml/help/about_hlp.htm : f

About

 

There is no help associated with this page.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

ghtml/help/alm_rxchans_hlp.htm : 8 /$5

Rx Alarms Configuration Help

 

Min & Max Power:

Sets the power level limits for alarming of the monitored Rx channels. A signal detected outside these limits will result in an alarm.

Note that setting Min Pwr to -120 dBm will disable low level alarms. However, setting Min Pwr between -120 dBm and the system's minimum measurable level (for example -110 dBm) may result in undefined alarm behaviour for Rx levels in this region.

NOTES:

  • For any text field, the allowable limits for that field (Model dependent) are displayed when the cursor is hovered over it.
  • Alarms will only be raised for signals where the Received Power level exceeds the Threshold Power set on the Channel Configuration pages.

Defaults:

Clicking this button enters the factory default values for the Channel alarm settings which are:

Min Power -110.0 dBm

Max Power -75.0 dBm

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current system configuration. In this case, just select the relevant Configuration/Alarms/Rx Channels menu item again to re-display the current configuration.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

NOTE: Whenever any configuration changes are applied, the alarm status for affected channels is re-initialised.

 

ghtml/help/cal_cc_hlp.htm : 

Tx Port VSWR Calibration Help

 

This page is used to set up the VSWR Calibration algorithm which compensates for certain characteristics of the coupler. It does not calibrate the Forward and Reverse coupling factors which must be entered manually.

Caution:

  • Before starting the VSWR Calibration process, ensure the unit is installed and connected as described in the User's Manual and that all transmitters connected to the coupler being calibrated are disabled.
  • The high power termination must have an appropriate power rating and should have a VSWR of 1.1:1 or better. Use a high quality cable to connect the load to the coupler and keep the length as short as practicable.
  • When choosing a transmitter for the VSWR Calibration process, use a transmitter frequency near the centre of your operating frequency range.

Note that if the Forward power or Reverse power readings are out of range, the "Apply" button will be greyed out.

  •  Fwd & Rev Pwr:

    The result of the last signal power level measurements in dBm.

    To update to the latest measurements, click the Refresh button.

  •  Cancel:

    Exits the VSWR Calibration page without saving any changes and returns to the Tx Port Calibration page.

  •  Apply:

    This applies the new VSWR Calibration algorithm. Use the Enable setting on the Tx Port Calibration page to control usage of the algorithm in VSWR calculations.

ghtml/help/cal_rxport_hlp.htm : ! oGV

Rx Port Calibration Help

 

This page is used for calibrating the Rx Port Gain(Loss) settings.



Rx Subsystem Gain(Loss):

This item defines the Gain or Loss between the Antenna and the Base Station receiver which is common to both the system and the Base Station.

This value is used in the calculation of the Antenna Isolation loss.

Rx Post Gain(Loss):

Defines any additional Gain or Loss not in the Base Station Rx path.

This value is used both in the calculation of the Antenna Isolation loss and also to correct the reported Rx Channel levels so they match what the Base Station receiver sees.

NOTE: For both above items, Gain is a positive number, Loss is negative.

 

Defaults:

Clicking this button enters the factory default values which are:

Rx Subsystem Gain(Loss) - 0.0 dB

Rx Post Gain(Loss) - 0.0 dB

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current saved settings. In this case, just click on the relevant Calibration/Rx Port menu item to re-display the current settings.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

NOTE: Whenever any configuration changes are applied, the alarm status of all the Rx Channels is re-initialised.

ghtml/help/cal_txport_hlp.htm : u_/i

Tx Port Calibration Help

 

This page is used for calibrating the Port VSWR & Loss settings and the Channel BTx Power levels.

Note that only channels that have a frequency configured, and which have been enabled will be displayed
.

 

Tx Port Losses:

  •  Forward Coupling:

    The combined loss of the Forward power coupler and connecting cable for this Tx Port. This value is used to calculate the reported power level for channels on this Port.

  •  Reverse Coupling:

    The combined loss of the Reverse Power coupler and connecting cable for this Tx Port. This value is used to calculate the reverse power level for channels on this Port and hence the VSWR figure.

  •  Antenna Feeder:

    The loss of the Antenna Feeder cable for this Port. This value is used to adjust the calculated Fwd and Rev Power levels so that the calculated VSWR figure represents that present at the Antenna.

  •  VSWR Calibration:
    NOTE:
    This feature is not required when using SP3855-4440-DFF1RU and SP7496-4440-DFF1RU Dual Directional Couplers. Leave the Enabled checkbox un-ticked when using these coupler models.

    A VSWR Calibration algorithm may be used to enhance the accuracy of the calculated Antenna VSWR figures when significant Antenna feeder losses are present. The algorithm is only used in the VSWR calculations if the Enabled checkbox is ticked.

    Click the Calibrate... button to open a new page to allow the unit to calibrate the algorithm. Be sure to read the user documentation and help page before applying the calibration.

    NOTE:

    Before clicking the Calibrate button, make sure to Apply any changes that have been made anywhere on this page. If this is not done, unsaved changes will be lost.

Reported Pwr:

The Forward and Reverse power levels (in dBm) from the most recent measurement. These will be updated even if the Tx forward power is below the configured threshold level.

These values can be updated to the latest measured values at any time by clicking the Refresh button.

BTx Pwr:

This is the Base Tx Output Power that will be used to calculate Combiner Insertion Loss. It should indicate the Power Level expected at the input of the Combiner.

You can either manually enter a value or use the Capture button to copy the currently Reported Power to this field.

Capture Btx Pwr:

Copies the Reported Power value to the BTx Pwr field.

Refresh:

Click this button to update the Reported Pwr status information with the most recent measurements.

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current saved settings. In this case, just click on the relevant Calibration/Tx Port menu item to re-display the current settings.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

If successfully saved, the Reported Power values are adjusted to any new Port Loss values.

NOTE: Whenever any configuration changes are applied, the alarm status of all the channels for the port are re-initialised.

ghtml/help/cfg_access_hlp.htm : (UwK

Access Management Help

 

There are two levels of access available to users of the system:

View Status only:

These are the UserName and Password to be used by users that may only view Status pages. Users logged in with these credentials will not be able to view or change any Configuration settings.

View Status and Modify Settings:

The UserName and Password to be used by users that are to have access to the Configuration, Calibration and Maintenance settings as well as the Status pages.

Notes:

  •  UserNames and Passwords may contain up to 16 characters each.
  •  Passwords are case sensitive, but UserNames are not.
  •  Passwords must meet a Password Strength value of at least 50 to be accepted.

Tips for strong passwords:

  1. Make your password 8 characters or more.
  2. Use mixed case letters (upper and lower case).
  3. Use more than one number.
  4. Use special characters (!,@,#,$,%,^,&,*,?,_,~).

Discard Changes:

Click this button to restore the values to those present when the page was last redisplayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current unit configuration. In this case, just click on the Maintenance/User Management menu item to re-display the current configuration.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

 

ghtml/help/cfg_cam_hlp.htm : k/ x 

Channel Alarm Module Configuration Help

 

Up to 10 Channel Alarm Modules (CAM) may be attached to an APMASM system. Each CAM unit provides for up to 10 individual channel alarm outputs and PTT inputs, as well as 4 external alarm inputs.

 

External Alarm Inputs:

These rows configure up to 4 external alarm inputs.

  •  Input ID:

    A description for the external alarm signal. Up to 16 characters may be entered.

  •  Enabled:

    If the input is Enabled, an alarm condition will result in a System FAULT summary alarm, together with an indication on the System Status page. Its status will also be displayed on the CAM Status page.

    If the input is not enabled, any changes in its status will be ignored.

  •  Alarm State:

    Select the input state (LOW or HIGH) that signals an alarm condition.

Alarm No.:

These 10 rows configure the individual channel alarm outputs and PTT input settings.

  •  Port:

    Either select the Tx Port for the desired channel, or select "Alarm not in use" to disable this alarm.

  •  Channel:

    Having selected the Tx Port, select the channel to be assigned to this CAM alarm.

  •  Alarm Func:

    The following options are available:

     Normal - The alarm relay is controlled by the channel alarm status.

     Inactive - The alarm relay is forced to its Inactive state for testing.

     Active - The alarm relay is forced to its Active state for testing.

  •  Rly Mode:

    The Relay Mode may be either Normally Released (N/R), i.e. it Operates when an alarm is present, or Normally Operated (N/O) - it Releases for an alarm condition.

  •  I/P Func:

    This selects the channel specific input function, this is intended for use with a PTT signal from the transmitter. The following options are available:

     Disabled - The input is not used.

     PTT Low - An active LOW PTT signal is used.

     PTT High - An active HIGH PTT signal is used.

    When the PTT input is enabled, it is used instead of the Threshold Power level (Configured on the Tx Port Channel Configuration page) to determine that a Tx Carrier is expected to be present. Thus, even if a transmitter produces no output at all, an alarm condition can still be determined.

    Note that the Tx Threshold level is still used to determine when to update the combiner Insertion Loss measurement. The Insertion Loss measurement (on the Tx Port Status page) will only be updated if the Tx power level measurement exceeds the Threshold Power level.

Defaults:

Clicking this button restores the factory default values which are:

External Alarms

Input ID - "Not defined"

Enabled - Not enabled

Alarm State - Active Low

Channel Alarms

Port - Alarm not in use

Channel - Alarm not in use

Alm Func - Normal

Rly Mode - N/R (Normally Released)

I/P Func - Disabled

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Apply:

This will save and activate the values entered.

 

ghtml/help/cfg_cfgfiles_hlp.htm : B%0

Configuration Files Maintenance Help

The system may be fully configured by loading a configuration file (.CFG extension). Similarly, the current configuration may be saved to a configuration file.

The configuration file format is similar to a Windows INI file, consisting of Section Names enclosed in square brackets, and multiple name=value items within each Section. When loading a configuration, only the Sections and items required need be included in the file. Any unwanted items or Section may be commented out with a semicolon (;) character as the first character on a line.

The easiest way to produce a configuration file, is to get the system to generate one, and then modify that.

The Configuration Files Maintenance page is divided into three main sections:

Upload a new Configuration file:

Enter or Browse the file path for the required Configuration file, then click the Send button to start the upload.

Note that Configuration filenames must have the .CFG extension, the name part must be no more than 8 characters long and the name must use only the following characters a-z A-Z 0-9 ! # $ % & ( ) - @ _ { } ~ Note that the space character may also not be used.

Manage existing Configuration files:

The list box displays the Configuration files currently present on the system.

Select the required file, and then click one of the following buttons:

View:

Displays the selected file in a new window or tab.

Download:

Opens the Browser's "File Download" or "Save As" dialogue so you can specify where to save a copy of the selected file.

Apply:

Applies the configuration settings from the selected file.

The results will be displayed in an information box when completed.

Delete:

Deletes the selected file from the system.

Save current Configuration to file:

Either enter a name for the file to be generated, or leave it blank for the system to automatically generate a Date & Time based name. Refer to Upload a new Configuration file above for valid filename characters.

When the file has been generated it will be added into the list box.

 

ghtml/help/cfg_comms_hlp.htm : "f[?

Communications Configuration Help

 

Ethernet

DHCP:

If enabled, the unit will attempt to get its IP Address, Subnet Mask and Gateway settings from a DHCP server. If no DHCP server is found, the configured settings will be used.

Note however that if a DHCP server subsequently becomes active, the settings provided by it will then become active.

If not enabled, the configured settings will always be used.

IP Address:

The IP address for this unit.

Subnet Mask:

The network address mask to be used.

Gateway:

The address of the network gateway to be used.

Email

Test Email:

This button will save all the current settings on this page and then send a Summary system status email (not a detailed channel status) as a check on the email configuration.

The button is only enabled when a valid set of Email settings is present.

To assist with identifying potential problems with SMTP configuration, the transactions with the server may be displayed using a TELNET Command Line Interface (CLI) session. Login to the system via a TELNET client, then, when the Test Email button is clicked, the transactions with the SMTP server will be displayed. Refer to the CLI manual TEST SMTP command if more details are required.

Messages to send:

Summary system status:

Enables emails for Summary status changes.

Detailed channel status:

Enables emails for individual channel status changes. If mutiple channel status changes for the same port have occurred, a port summary status change message will be sent instead of individual messages for each channel.

Note that emails will only be sent if one or both of these settings are enabled.

SMTP Server IP Address:

The IP address of a SMTP server that can process mail messages for the required destination email addresses.

Note that SMTP servers that require an encrypted connection cannot be used. This excludes the use of public servers such as Gmail and Hotmail. You also need to avoid relaying of SMTP messages from one external domain to another external domain. Most SMTP servers will reject relay attempts.

SMTP Server Listening Port:

The port number that the SMTP server listens on. This will normally be port 25 for a non-authenticated connection or port 587 for an authenticated connection.

SMTP Server Login Username & Password:

If the SMTP server requires login authentication, these are the Username and Password to be used.

Note that only unsecure login is supported. Many public email hosts require a secure login, which is currently not supported by the system.

Where the SMTP server does not require a login, typically when the server is within an already authenticated environment, the Username and Password are not required to be configured, or will be ignored.

From Email Address:

The email address that will appear in the message 'From:' field. Since this can be used as a reply address, it would normally be a non existent or unmonitored address.

Note that some SMTP servers will check that the "From" address is for a valid domain handled by that server.

Destination Email Addresses:

Up to four email addresses that all alarm change messages will be sent to.

Notes:

  • The SMTP Server Login UserName and the From & Destination Email Addresses may contain up to 32 characters each.
  • The SMTP Server Login Password may contain up to 16 characters.

SNMP:

Test SNMP:

This button will save all the current settings on this page and then send a System Status SNMP Notification as a check on the SNMP configuration.

The button is only enabled when a valid set of SNMP settings is present.

Send Alarm Notifications (Traps):

SNMP Notifications (previously known as Traps) will only be sent if this setting is enabled.

SNMP Manager IP Address:

The IP address(es) of one or two SNMP Managers that the alarm change Notifications are to be sent to.

SNMP Manager Listening Port:

The port number(s) that the above SNMP Managers listen on. These will normally be port 162.

Defaults:

Clicking this button enters the factory default values for the Communications settings which are:

Ethernet:

DHCP - Disabled

IP Address - 192.168.1.200

Subnet Mask - 255.255.255.0

Gateway - 192.168.1.254

Email:

Send Alarm Emails - Disabled

SMTP Server Address - 0.0.0.0

SMTP Server Listening Port - 25

From Email Address - noreply@localhost

Destination Email Addresses - Empty

SNMP:

Send Alarm Notifications (Traps) - Disabled

SNMP Manager IP Address - 0.0.0.0

SNMP Manager Listening Port - 162

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after a Save attempt, these values may not match the current repeater configuration. In this case, just select the Configure/Communications menu item again to re-display the current configuration.

Save:

This will attempt to save the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

Note that unlike the other configuration pages, this will not Activate (or Apply) the new Ethernet interface settings. Any changes to the Ethernet settings can only be activated by restarting the unit, either by cycling the power, or through the Maintenance/Restart menu item.

Note that Email and SNMP settings will always become active as soon as they are Saved.

 

ghtml/help/cfg_fw_update_hlp.htm : D?~G

Firmware Update Help

 

Firmware upgrades are normally supplied as a .FFP file (Firmware & File system Package).

Enter or Browse the file path of the system firmware update file, then click the Send button to start the update.

Depending on the speed of the connection, it can take several minutes for the file upload to complete and be confirmed.

After waiting for about a minute, re-display the System Status page to confirm that the update completed successfully.

If the update process is interrupted or unsuccessful for any reason, the unit will restart with the previous firmware.

 

NOTES:

  • You may need to clear your browser's cache to view changed pages.
  • If you happen to get a connection timeout message, do not click the retry button. Instead, wait for a minute or so and then re-display the System Status page to confirm that the update actually completed OK.

ghtml/help/cfg_hist_hlp.htm : 9`Z

History Configuration Help

 

This page configures the Tx power level history logging.

 

Recover 'Last Recorded' Status values after power loss:

Using logged history events, it is possible to recover the previously displayed status page measurement values after the system has lost power, or been restarted.

When enabled, all history logging types are also automatically enabled.

NOTE: When recovering previous status data, a maximum of 24 hours of history is scanned. Values updated less than the configured Logging Interval before the restart may not have been logged as yet, and hence cannot be restored.

Tx Power Logging:

This setting Enables or Disables the Tx power level logging.

VSWR Level Logging:

This setting Enables or Disables the Tx power level logging.

NOTE: Disabling any of the above logging options will not affect any data already captured.

 

Logging Interval:

This sets the interval between history logging snapshots. For example, if set to 10 Sec, a snaphot of all current levels (as enabled) is taken and saved every 10 seconds.

Tx Power Logging Resolution:

If the difference between the current power level and the last power level logged is less than this value, a new record will not be written to the history data files.

VSWR Level Logging Resolution:

If the difference between the current VSWR level and the last VSWR level logged is less than this percentage, a new record will not be written to the history data files.

NOTE: Higher values for the Resolution settings will make it less likely that a new data record will be required. This may greatly increase the total period of time for which data can be retained.

Defaults:

Clicking this button enters the factory default values which are:

Recover 'Last Recorded' Status values after power loss - Enabled (This also enables the other logging options)

Logging Interval - 10 Sec

Tx Power Logging Resolution - 0.5 dB

VSWR Level Logging Resolution - 10%

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Save:

This will save the values entered.

 

ghtml/help/cfg_mgrif_hlp.htm : nlcn

Manager Interface Help

 

The Configuration and Status of multiple units may be remotely managed by a PC based Manager application.

Normally the Manager application will control the settings on this page, but, using this page it is possible to manually configure or overide these settings.

Auto Status Packets:

This controls the automatic sending of Status Change packets to the Manager application. If enabled, any change in alarm status results in a Status Change packet.

This setting will be ignored if the Manager Address is set to "0.0.0.0".

Auto Traffic Packets:

This controls the automatic sending of Tx Traffic data packets to the Manager application. If enabled, any change in detected Tx carrier presence results in a Traffic packet. In addition, if any Tx carrier remains ON or OFF for "Max Traffic Period" seconds, a STILL-ON or STILL-OFF Traffic packet is sent.

This setting will be ignored if the Manager Address is set to "0.0.0.0".

Max Traffic Period:

This controls the automatic sending of the STILL-ON and STILL-OFF traffic data packets as detailed above.

Manager Address:

The IP address(es) for one or two Manager applications. If no Manager application is being used both addresses should be 0.0.0.0.

Manager TCP Port:

The port number for TCP communications to the Manager application(s).

Manager UDP Port:

The port number for UDP communications to the Manager application(s).

Manager Use TCP for Status Packets:

The default communications protocol for Status change and Traffic data packets is UDP. If TCP is required for Status packets, this setting should be enabled. This setting is common to both Manager interfaces.

Note This option should only be activated if essential for networking reasons. The UDP protocol is strongly preferred, as the protocol and processing overheads are significantly lower and packets can be sent at a higher rate. Note also that Traffic data packets will always use the UDP protocol.

Defaults:

Clicking this button enters the factory default values for the Communications settings which are:

Auto Status Packets - Disabled

Auto Traffic Packets - Disabled

Max Traffic Period - 60

Manager Address - 0.0.0.0

Manager TCP Port - 9123

Manager UDP Port - 9124

Manager Use TCP for Status Packets - Disabled

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after a Save attempt, these values may not match the current unit configuration. In this case, just select the Maintenance/Manager Interface menu item again to re-display the current configuration.

Save:

This will attempt to save the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

 

ghtml/help/cfg_restart_hlp.htm : r

Restart Help

 

The unit will normally only need to be restarted to activate new Communications settings.

 

ghtml/help/cfg_rtc_hlp.htm : KWx

Date & Time Help

 

Date Format:

Select the date format to be used.

Date & Time:

The internally maintained real time clock Date and Time values may be adjusted using these fields.

Pause:

Click Pause to suspend automatic updating of the displayed time.


ghtml/help/cfg_rxchans_hlp.htm : )А$

Rx Channel Configuration Help

 

Chan No.:

The system channel designator.

Channel ID:

A description for the channel. Up to 16 characters may be entered.

ON:

This controls the scanning of the channel. If checked, scanning is enabled, otherwise it is not included in the scanning cycle. This allows the channel to remain configured, but to be temporarily removed from the scanning cycle.

Frequency:

The centre frequency for the channel. The frequency must be a multiple of 0.00625 MHz.

Modulation:

Selects the Modulation Type and channel bandwidth. This may cause some adjustments to be applied to reported measurements to improve their accuracy. The channel bandwidth applied for each modulation type is:

FM12.5 - 12.5 kHz
P25P1 - 12.5 kHz
LSM - 12.5 kHz
P25P2 - 12.5 kHz
FM25 - 25 kHz
DMR - 12.5 kHz
MOTOTRBO - 12.5 kHz
TETRA - 25 kHz

Threshold Pwr:

The minimum received power level for which channel measurements and alarm status will be updated. If the detected power level is below this value the signal will be considered as not present. The default value of -120 dBm will ensure that measurements will always be updated.

Note that although the threshold can be set -120 dBm, the minimum level that can actually be reported may be above that level. For example, you may still see a reported level of "<-110 dBm" for levels below -110 dBm.

Add Row:

When the configuration page is loaded, only configured channels are displayed. To configure a new channel, click the Add Row button to display the next available unconfigured channel. Up to 20 channels may be configured for each Rx group.

Remove Selected Rows:

Clicking this button will return the selected rows to their default settings and remove them from the display. Rows are selected by clicking the checkbox at the left of the row. Clicking the checkbox in the title bar will select all the rows. Note that the first row is always displayed.

NOTES:

  •  For any text field, the allowable limits for that field (Model dependent) are displayed when the cursor is hovered over it.

Defaults:

Clicking this button reduces the display to only the first channel and enters the factory default values for the Channel configuration settings. To only restore specific channels to defaults, select them, and then use the Remove Selected Rows button followed by the Add Row button. The default settings are:

Channel ID - "Not Defined"

ON - OFF

Frequency - OFF

BW - 25 kHz

Threshold Pwr - -120 dBm

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current system configuration. In this case, just select the relevant Configuration/Channels/Rx Channels menu item again to re-display the current configuration.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

NOTE: Whenever any configuration changes are applied, the alarm status for affected channels is re-initialised.

 

ghtml/help/cfg_rxisol_hlp.htm : s G

Antenna Isolation Configuration Help

 

This page configures the Antenna isolation loss measurement.

 

Automatic Isolation Test:

Enables or Disables the regular automatic test cycle.

Test Frequency:

The channel frequency at which the test is conducted. This would ideally be set to an unused channel at the site. Alternatively, setting it to a low usage channel will minimise the chance of a false low isolation reading due to channel activity.

Automatic Test Repetition Period:

Selects the interval between the regular automatic test cycles.

Tx Reverse Coupling and Feeder Loss:

These values are presented for information only. They are the averaged values for all the Tx Ports that have channels configured against them. Together with the Rx Subsystem Gain and Post Gain values, these are used to calculate the Antenna Isolation loss.

Rx Subsystem Gain(Loss) and Rx Post Gain(Loss):

These values are also presented for information only, their values are configured on the Calibration/Rx Port page and explained on the associated Help page. Together with the Tx Reverse Coupling and Feeder Loss values, these values are used to calculate the Antenna Isolation loss.

Minimum Isolation Loss:

A calculated antenna isolation loss value below this value will activate the isolation loss alarm on the Antenna Isolation Status and System Status pages. This alarm is combined into the Rx Power Summary alarm.

Note that the Isolation Loss alarm condition needs to be present for the Rx alarm delay period as configured on the System Alarms Configuration page.

Defaults:

Clicking this button enters the factory default values which are:

Automatic Isolation Test - Disabled

Test Frequency - OFF

Automatic Test Repetition Period - 1 Hour

Minimum Isolation Loss - 40.0 dB

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Save:

This will save the values entered.

 

ghtml/help/cfg_service_hlp.htm : M8GX

Service Mode Help

 

The Service Mode essentially implements a real time Tx Power meter. The current Tx Power and Combiner Insertion Loss for the selected Tx Channel are continuously updated once the Start button has been activated.

Select Tx Port:

Select the Port on which the Tx Channel is to be monitored.

Select Tx Channel:

Select the Tx Channel to be monitored.

Note that only channels that have a frequency configured, and which have been enabled will be available for selection.

Fwd Pwr:

The Forward power level currently being measured for the selected channel. Select between dBm or Watts.

Btx Pwr:

The Btx reference power level for the selected channel. This is the value calibrated as Btx Pwr on the relevant Tx Port Calibration page. Select between dBm or Watts.

Rev Pwr:

Select between VSWR, Return Loss or Reverse power in dBm or Watts. The displayed value is the last valid measurement result. That is, made when a valid forward power level was last present.

Note: VSWR and Return Loss are calculated to represent the values at the Antenna, using the Antenna Feeder Loss entered on the Tx Port Calibration page. The Reverse Power values however, are the actual levels at the directional coupler.

Combiner I.L.:

The displayed value is the last valid measurement result. That is, made when a valid forward power level was last present.

Start/Stop:

This Starts or Stops the continuously updating measurements.

The Power and Combiner Insertion Loss measurements assume that the Port Coupling losses and the Channel BTx Power have been previously calibrated.

Note that when Service Mode is running, the unit will not be scanning any other configured channels. Clicking the Stop button, navigating to another page within the site, or closing the browser window/tab will restore the unit's normal scanning operation.

ghtml/help/cfg_systemalm_hlp.shtml : &]0d

System Alarm Configuration Help

 

These settings allow various alarm categories to be disabled.

Note that disabling an alarm category only suppresses activation of the relevant alarm relays. For example if Tx Power alarms are disabled, the Tx Power alarm relay, and the Summary alarm relay will not activate when the Tx Forward power level is outside the configured limits. However, the alarm status LEDS will continue to operate normally, and the user interface will still display the relevant alarms.

 

VCO:

A VCO alarm is raised when any of the VCOs fails to lock.

Tx Power:

This alarm occurs when the Forward Power level for a Tx channel is outside the configured Min & Max power alarm limits or when the Combiner Insertion Loss exceeds the configured alarm limit.

Tx VSWR:

This alarm occurs when the VSWR for a Tx channel is greater than the configured limit.

Tx alarm delay:

This setting defines the length of time (in seconds) for which the alarm must be continously present or restored before the change in alarm status is recognised.

Defaults:

This will enable all alarm categories. The alarm delay period will be set to 15 Seconds

 

ghtml/help/cfg_txportalm_hlp.htm : ;]uY

Tx Port Alarms Configuration Help

 

Min & Max Power:

Sets the power level limits for alarming of the monitored Tx channels. A signal detected outside these limits will result in an alarm.

Note that Min Pwr should normally be set to a level above the configured Threshold Power (Tx Port Channels Configuration page). If Min Pwr is set below the Threshold level, a Low level alarm will never be generated.

Note however that if a Channel Alarm Module (CAM) is being used with the PTT input active, the Threshold Power level is ignored and a Low level alarm can still be generated even if Min Pwr is below the configured Threshold.

Max Ins Loss:

Sets the Maximum allowable Combiner Insertion Loss calculated using the Forward Power level and the stored BTx Power level.

Max VSWR:

Sets the VSWR alarm limit.

CAM:

If one or more Channel Alarm Modules (CAM) are present, this column displays the associated module and alarm output (if any) for this channel.

NOTES:

  •  For any text field, the allowable limits for that field (Model dependent) are displayed when the cursor is hovered over it.
  •  Alarms will only be raised for signals where the Forward Power level exceeds the Threshold Power set on the Channel Configuration pages.

Defaults:

Clicking this button enters the factory default values for the Channel alarm settings which are:

Min Power - +42 dBm

Max Power - +49 dBm

Max Ins Loss - 1.0 dB

Max VSWR - 1.50

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current system configuration. In this case, just select the relevant Configuration/Alarms/Tx Port menu item again to re-display the current configuration.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

NOTE: Whenever any configuration changes are applied, the alarm status for affected channels is re-initialised.

 

ghtml/help/cfg_txportch_hlp.htm : Q

Tx Port Channel Configuration Help

 

Chan No.:

The system channel designator.

Channel ID:

A description for the channel. Up to 16 characters may be entered.

ON:

This controls the scanning of the channel. If checked, scanning is enabled, otherwise it is not included in the scanning cycle. This allows the channel to remain configured, but to be temporarily removed from the scanning cycle.

Frequency:

The centre frequency for the channel. The frequency must be a multiple of 0.00625 MHz.

Modulation:

Selects the Modulation Type and channel bandwidth. This may cause some adjustments to be applied to reported measurements to improve their accuracy. The channel bandwidth applied for each modulation type is:

FM12.5 - 12.5 kHz
P25P1 - 12.5 kHz
LSM - 12.5 kHz
P25P2 - 12.5 kHz
FM25 - 25 kHz
DMR - 12.5 kHz
MOTOTRBO - 12.5 kHz
TETRA - 25 kHz

Threshold Pwr:

The minimum forward power level for which channel measurements and alarm status will be updated. If the detected power level is below this value the signal will be considered as not present.

Add Row:

When the configuration page is loaded, only configured channels are displayed. To configure a new channel, click the Add Row button to display the next available unconfigured channel. Up to 20 channels may be configured for each Tx port.

Remove Selected Rows:

Clicking this button will return the selected rows to their default settings and remove them from the display. Rows are selected by clicking the checkbox at the left of the row. Clicking the checkbox in the title bar will select all the rows. Note that the first row is always displayed.

NOTES:

  •  For any text field, the allowable limits for that field (Model dependent) are displayed when the cursor is hovered over it.

Defaults:

Clicking this button reduces the display to only the first channel and enters the factory default values for the Channel configuration settings. To only restore specific channels to defaults, select them, and then use the Remove Selected Rows button followed by the Add Row button. The default settings are:

Channel ID - "Not Defined"

ON - OFF

Frequency - OFF

BW - 25 kHz

Threshold Pwr - -5 dBm

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current system configuration. In this case, just select the relevant Configuration/Channels/Tx Port menu item again to re-display the current configuration.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

NOTE: Whenever any configuration changes are applied, the alarm status for affected channels is re-initialised.

 

ghtml/help/cfg_userdata_hlp.htm : * Hr

User Data Configuration Help

 

On this page you can enter descriptive texts for Customer Name, Site Name and each of the Ports. Up to 16 characters may be entered for each of these names.

Defaults:

Clicking this sets all of the descriptions to "Not Defined"

Discard Changes:

Click this button to restore the values to those present when the page was last re-displayed.

Note that if invalid values are being displayed after an Apply attempt, these values may not match the current system configuration. In this case, just select the Configure/User Data menu item again to re-display the current configuration.

Apply:

This will attempt to save and activate the values entered. If any out of range values are present, nothing will be saved and the problem settings will be highlighted with a red background.

 

ghtml/help/hist_eventlog_hlp.htm : Ymh

Event Log Help

 

The stored alarm event log data may be viewed or downloaded as Comma Separated Variables (CSV) data records.

 

Select Period:

Select the period of time (working back from the current date & time) to be viewed or downloaded.

NOTE: For K2 or later systems, if there is a a time period of more than 100 days between stored data records, the older records will not be retrieved.

Download:

Use this button to open a "File Download" or "Save As" dialog for saving the CSV data file.

View:

This will open a new browser Tab or Window in which the data records are displayed.

It is not recommended to use this option for large sets of data.

NOTE: If Downloading or Viewing a large amount of data, be aware that channel scanning is suspended until the data transfer is complete.

 

ghtml/help/hist_rxpwrchart_hlp.htm : Is

Rx Power History Chart Help

 

This page presents a graphical display of logged Rx power level data.

 

Select Rx Group:

Select the Rx Group for which the data is to be displayed.

Select Rx Channel:

Select the Rx Channel for which the data is to be displayed.

Select Period:

Select the period of time to be used. The period works back from the current time.

For the single channel Min Pwr and Max Pwr modes the maximum 'X' axis value (the right hand edge of the graph) is the current Date/Time. The data to the left will be progressively further back in history.

NOTE: For K2 or later systems, if there is a time gap of more than 100 days between stored data records, the older records will not be retrieved.

Select Data Mode:

Max/Min Pwr - Displays the Maximum and Minimum Rx Power levels recorded within the selected Period for each of the 20 channels of the selected Group. Only samples that exceed the configured threshold level are used.

Utilisation - Displays the percentage of time for which the recorded power level samples exceeded the configured threshold level within the selected Period. Data is displayed for each of the 20 channels of the selected Group.

The Max Pwr (1 chan) and Min Pwr (1 chan) modes display variations in Max and Min recorded power levels for a single selected channel over the selected period. Since the graph is only able to display approximately 200 data points, each point will normally represent multiple captured Rx level samples. Multiple samples are combined to present the plotted data value as follows:

Maximum - Only the sample with the maximum level is used. If all Rx level samples are below the configured threshold level, the point will not display.

Minimum - If one or more Rx level samples are present, the lowest value of those is used. If all Rx level samples are below the configured threshold level, the point will not display.

If no Rx level sample was recorded within the time interval covering a point, the older point's value will be displayed.

Display:

This will refresh the display using the selected settings.

Note - This button will be disabled if the Rx Group/Rx Channel selection includes no Enabled channels.

Note - This button will be disabled if the Rx Group selection includes no Enabled channels.

Note - The minimum and maximum 'Y' axis display values for the Power level graphs are automatically scaled for the channel or group being displayed, based on the Min & Max Pwr alarm settings that have been set in the Configuration/Alarm settings/Rx Group pages.

Note - The minimum and maximum 'Y' axis display values for the Max/Min Power level graph are automatically scaled for the group being displayed, based on the Min & Max Pwr alarm settings that have been set in the Configuration/Alarm settings/Rx Group pages.

 

ghtml/help/hist_rxpwrfile_hlp.htm : ! R@Y

Rx Power History File Help

 

The complete stored Rx power level history data may be viewed or downloaded as Comma Separated Variables (CSV) data records.

 

Select Rx Group:

Select Rx Channel:

Select the Rx Group and then the Channel for which the data is to be viewed or downloaded.

Select Rx Group includes two additonal options to specify Antenna Isolation values or all Channels (which includes Antenna Isolation as well).

Select Period:

Select the period of time (working back from the current date & time) to be downloaded.

NOTE: For K2 or later systems, if there is a a time gap of more than 100 days between stored data records, the older records will not be retrieved.

Download:

Use this button to open a "File Download" or "Save As" dialog for saving the CSV data file.

View:

This will open a new browser Tab or Window in which the data records are displayed.

It is not recommended to use this option for large sets of data.

 

ghtml/help/hist_txpwrchart_hlp.htm : CDP +

Tx Power History Chart Help

 

This page presents a graphical display of logged Tx power and VSWR level data.

 

Select Tx Port:

Select the Tx Port for which the data is to be displayed.

Select Tx Channel:

Select the Tx Channel for which the data is to be displayed.

Select Period:

Select the period of time to be used. The period works back from the current time.

For the single channel Min Pwr and Max Pwr modes the maximum 'X' axis value (the right hand edge of the graph) is the current Date/Time. The data to the left will be progressively further back in history.

NOTE: For K2 or later systems, if there is a a time gap of more than 100 days between stored data records, the older records will not be retrieved.

Select Data Mode:

Max/Min Pwr - Displays the Maximum and Minimum Tx Power levels recorded within the selected Period for each of the 20 channels of the selected Port. Only samples that exceed the configured threshold level are used.

Max/Min VSWR - Displays the Maximum and Minimum VSWR levels recorded within the selected Period for each of the 20 channels of the selected Port.

Utilisation - Displays the percentage of time for which the recorded power level samples exceeded the configured threshold level within the selected Period. Data is displayed for each of the 20 channels of the selected Port.

The Max Pwr (1 chan) and Min Pwr (1 chan) modes display variations in Max and Min recorded power levels for a single selected channel over the selected period. Since the graph is only able to display approximately 200 data points, each point will normally represent multiple captured Tx level samples. Multiple samples are combined to present the plotted data value as follows:.

Maximum - Only the sample with the maximum level is used. If all Tx level samples are below the configured threshold level, the point will not display.

Minimum - If one or more Tx level samples are present, the lowest value of those is used. If all Tx level samples are below the configured threshold level, the point will not display.

If no Tx level sample was recorded within the time interval covering a point, the older point's value will be displayed.

The Max VSWR (1 chan) and Min VSWR (1 chan) modes display variations in Max and Min recorded VSWR levels for a single selected channel over the selected period. Since the graph is only able to display approximately 200 data points, each point will normally represent multiple captured VSWR samples. Multiple samples are combined to present the plotted data value as follows:.

Maximum - Only the sample with the maximum value is used.

Minimum - Only the sample with the minimum value is used.

If no VSWR measurement record was recorded within the time interval covering a point, the older point's value will be displayed.

Display:

This will refresh the display using the selected settings.

Note - This button will be disabled if the Tx Port/Tx Channel selection includes no Enabled channels.

Note - This button will be disabled if the Tx Port selection includes no Enabled channels.

Note - The minimum and maximum 'Y' axis display values for the Power level graphs are automatically scaled for the channel or port being displayed, based on the Min & Max Pwr alarm settings that have been set in the Configuration/Alarm settings/Tx Port pages.

Note - For the VSWR graphs the maximum 'Y' axis display value is determined from the values being displayed, but is limited to a maximum value of 5.0:1.

Note - The minimum and maximum 'Y' axis display values for the Max/Min Power level graph are automatically scaled for the port being displayed, based on the Min & Max Pwr alarm settings that have been set in the Configuration/Alarm settings/Tx Port pages.

Note - For the VSWR graph the maximum 'Y' axis display value is determined from the values being displayed, but is limited to a maximum value of 5.0:1.

 

ghtml/help/hist_txpwrfile_hlp.htm : zKT4

Tx Power History File Help

 

The complete stored Tx power level and VSWR level history data may be viewed or downloaded as Comma Separated Variables (CSV) data records.

 

Select Tx Port:

Select Tx Channel:

Select the Tx Port and then the Channel for which the data is to be viewed or downloaded.

Select Tx Port includes an option to specify all Ports and Channels.

Select Period:

Select the period of time (working back from the current date & time) to be downloaded.

NOTE: For K2 or later systems, if there is a a time gap of more than 100 days between stored data records, the older records will not be retrieved.

Download:

Use this button to open a "File Download" or "Save As" dialog for saving the CSV data file.

View:

This will open a new browser Tab or Window in which the data records are displayed.

It is not recommended to use this option for large sets of data.

 

ghtml/help/null_hlp.htm :  m8

 

ghtml/help/overview_hlp.htm : %5?

System Overview Help

 

This page displays an Overview of the unit status. Clicking the title of a Group will display the relevant details page.

For the System, the overall summary alarm status is displayed, for each Group, the following items are displayed:


Tx Antenna Reference:

The user defined description for a Tx Port.

Channel Count:

The number of channels that have been configured within the Group.

Alarm Status:

The Fail or OK summary status for the Group.

Refresh:

Reloads the page, updating the status information.

 

ghtml/help/stat_cam_hlp.htm : ]uHH

Channel Alarm Module Status Help

 

This page reports the CAM unit status.

 

External Alarm Inputs:

Status:

Displays the highlighted FAIL or OK status of the external alarm input. If the alarm is disabled, only the text "Disabled" is displayed.

Channel Alarms:

Alm O/P Status:

Displays the highlighted Active or Inactive status of the alarm output. If an alarm is not in use, the output status will not be highlighted.

I/P Status:

Displays the Inactive or highlighted Active status of the PTT input. The current input status is always displayed, even for "not in use" alarms.

Refresh:

Updates the CAM unit status display.

 

 

ghtml/help/stat_comms_hlp.htm : DlS\

Communications Status Help

 

This page reports the current Communications settings.

 

Ethernet

MAC Address:

The physical MAC address of the unit.

DHCP:

If the stored value is enabled, the unit will attempt to get its IP Address, Subnet Mask and Gateway settings from a DHCP server. If a DHCP server cannot be found, the stored settings will be used and the Currently In Use status will show as disabled.

Note however that if a DHCP server subsequently becomes active, the settings provided by it will then become active.

If disabled, the stored values will be used unconditionally.

IP Address:

The Stored and Currently In Use IP address values.

Subnet Mask:

The Stored and Currently In Use network address mask values.

Gateway:

The Stored and Currently In Use gateway address values.

Stored Value:

These are the values stored in the system's non-volatile memory. When the unit is started or re-started, these settings (where applicable) will be used if DHCP is disabled, or a DHCP server is not accessible.

Currently In Use:

Where applicable, these are the values that are actually in use at present.

Email

Summary system status messages:

Detailed channel status messages:

Shows the types of messages enabled.

Emails will only be sent if one or both of these settings are enabled.

SMTP Server IP Address:

The IP address of a SMTP server that can process mail messages for the required destination email addresses.

SMTP Server Listening Port:

The port number that the SMTP server listens on. This will normally be port 25.

From Email Address:

The email address that will appear in the message 'From:' field. Since this can be used as a reply address, it would normally be a non existent address.

Destination Email Address(es):

Up to four email addresses that all alarm change messages will be sent to.

SNMP:

Send Alarm Notifications (Traps):

SNMP Notifications (previously known as Traps) will only be sent if this setting is enabled.

SNMP Manager IP Address:

The IP addresses of one or two SNMP Managers that the alarm change Notifications are to be sent to.

SNMP Manager Listening Port:

The port numbers that the two SNMP Managers listen on. These will normally be port 162.

 

ghtml/help/stat_rxchans_hlp.htm :  `A[g

Rx Channels Status Help

 

This page reports the current Rx channel monitoring status.

 

Chan No.:

The system channel designator.

Channel ID:

The user configured description for the channel.

ON:

The configured channel scanning On/Off status. If this is OFF, the measurements for this channel will not update.

Frequency:

The configured frequency of the channel.

Act:

The green LED indicates the status of the reported power level as follows:

ON - The level was above the configured threshold during the most recent measurement, hence the reported value is up to date.

OFF - The level was below the configured threshold during the most recent measurement, hence the reported value is that of a previous sample.

Not present - The channel is not currently Enabled.

Last recorded Power above threshold:

The result of the last valid received signal power level measurement in dBm. This will only be updated if the Rx power is above the configured threshold level.

Auto Refresh:

Check this box to enable an automatic status update every 5 seconds.

Refresh:

Click this button to update the channel status information immediately.

 

ghtml/help/stat_rxisol_hlp.htm : x>@$o

Antenna Isolation Status Help

 

This page displays the results of the Antenna isolation loss measurement.

 

Automatic Isolation Test:

If this is Disabled, the status can only be updated by clicking the Test Now button.

Test Frequency:

The channel frequency at which the test is conducted.

Calculated Tx-Rx Isolation:

The calculated antenna isolation loss value.

This will be highlighted in Red if the value is below the configured alarm value.

Test Now:

Performs a single isolation test.

The system alarm status is updated immediately, without waiting for the configured Rx alarm delay period.

 

ghtml/help/stat_system_hlp.shtml : (U 7

System Status Help

 
This page reports the current system Settings and Alarm Summary. The items reported are as follows:

Model:

The model designator of this unit.

Unit ID:

This field reports the unique ID number that has been assigned by the remote Manager application (If being used). If the unit is not managed through the Manager application, this will normally be 0.

Firmware version:

The version of the firmware.

GUI version:

The version of the Graphical User Interface file system.

Hardware Revision:

The hardware revision status of the unit. In the future, higher hardware revision levels may add additional capabilities.

Unit Serial Number:

The Serial number of this unit.

Date, Time:

The Date and Time as maintained by the on-board real time clock. Refreshing the page will update this information.

Fault Summary:

This is the overall system alarm summary status. It will be active if any of the alarms below it are active.

Tx Power:

This alarm will activate if any of the Tx channels is detecting a forward power level outside its configured Min/Max power levels or a Combiner Insertion Loss above the configured alarm limit.

Tx VSWR:

This alarm will activate if any of the Tx channels is detecting a VSWR level above its configured Max VSWR level.

VCO:

If any of the unit's VCOs is experiencing lock failures, this alarm will activate.

Internal Supply Rails:

If any of the unit's internal supply rail voltages goes out of limits, this alarm will activate.

CAM External Alarms:

If one or more Channel Alarm Modules (CAM) are present, and at least one of their External Alarm inputs is enabled, this row indicates the summary alarm status.

Refresh:

Updates the Alarm status and the Date/Time fields.

 

ghtml/help/stat_txport_hlp.htm : !0

Tx Port Status Help

 

This page reports the current Tx channel monitoring status.

 

Chan No.:

The system channel designator.

Channel ID:

The user configured description for the channel.

ON:

The configured channel scanning On/Off status. If this is OFF, the measurements for this channel will not update.

Frequency:

The configured frequency of the channel.

Act:

The green Activity LED indicates the status of the reported levels as follows:

ON - The Tx power level was above the configured threshold during the most recent measurement, hence the reported values are up to date.

OFF - The Tx power level was below the configured threshold during the most recent measurement, hence the reported values apply to a previous sample.

Not present - The channel is not currently Enabled.

Power:

The result of the last valid signal power level measurement in Watts and dBm. This will only be updated if the Tx power is above the configured threshold level.

Ins Loss:

The last measured Combiner Insertion Loss value. This value is the difference between the current power level (as above) and the stored BTx power level.

VSWR:

This is the VSWR recorded when the last valid power level measurement occurred.

Notes:
  • For the VSWR value to be updated, the Tx forward power must be high enough to allow reliable measurement of the reverse power and hence return loss. This means the actual forward power level at the Tx port connector must be -17 dBm or higher.

  • VSWR is calculated to represent the value at the Antenna, using the Antenna Feeder Loss entered on the Tx Port Calibration page.
  • Auto Refresh:

    Check this box to enable an automatic status update every 5 seconds.

    Refresh:

    Click this button to update the channel status information immediately.

     

    ghtml/hist_eventlog.shtml : new Advanced Power Monitor

    Alarm Event Log

    Customer Name -  
    Site Name -  

     Select Period
     

              

    ghtml/hist_rxpwrchart.shtml : "5vp Advanced Power Monitor

    Rx Power History Chart

    Customer Name -  
    Site Name -  

     Select Rx Group
     

     Select Rx Channel
     

     Select Period
     

     Select Data Mode
     


     Error initialising charting package!

       

    ghtml/hist_rxpwrfile.shtml : 5út  Advanced Power Monitor

    Rx Power History File

    Customer Name -  
    Site Name -  

     Select Rx Group
     

     Select Rx Channel
     

     Select Period
     

              

    ghtml/hist_txpwrchart.shtml : Q:u~3 Advanced Power Monitor

    Tx Power History Chart

    Customer Name -  
    Site Name -  

     Select Tx Port
     

     Select Tx Channel
     

     Select Period
     

     Select Data Mode
     


     Error initialising charting package!

       

    ghtml/hist_txpwrfile.shtml : WP Advanced Power Monitor

    Tx Power History File

    Customer Name -  
    Site Name -  

     Select Tx Port
     

     Select Tx Channel
     

     Select Period
     

              

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    Command Line Interface

    Console Output

    Command:

       

    ghtml/overview.shtml : &$C Advanced Power Monitor - System Overview

    Monitor

    Model - 

    System Overview

    Customer Name -  
    Site Name -  

     Group Tx Antenna Reference Channel Count Alarm Status
     Tx Port 1
     Tx Port 2
     Tx Port 3
     Tx Port 4
     System

       

    ghtml/sidebar.shtml : @`H Advanced Power Monitor RF Industries

          

    ghtml/stat_almsumm.shtml :  Antenna System Monitor - Alarm Summary

    Alarm Summary

    Alarm Status
    Fault Summary  
    Tx Power  
    Tx VSWR  
    Rx Power  
    VCO  
    Internal 5V  

     

    ghtml/stat_cam.shtml : }z Advanced Power Monitor - Channel Alarm Module Status

    Status - Channel Alarm Module  

    Customer Name -  
    Site Name -  

    External Alarm Input No. Input ID Status
         
         
         
         

    Alarm No. Port Channel Alm O/P Status I/P Status
             
             
             
             
             
             
             
             
             
             

       

    ghtml/stat_comms.shtml : .Hv  Antenna System Monitor - Communications Status

    Status - Communications

    Customer Name -  
    Site Name -  

    Ethernet
    Setting Stored Value Currently In Use
    MAC Address    
    DHCP    
    IP Address    
    Subnet Mask    
    Gateway    
    Email
    Setting Stored Value
    Summary system status messages  
    Detailed channel status messages  
    SMTP Server IP Address  
    SMTP Server Listening Port  
    From Email Address  
    Destination Email Address(es)  
    SNMP
    Setting Stored Value
    Send Alarm Notifications (Traps)  
    Primary Secondary
    SNMP Manager IP Address    
    SNMP Manager Listening Port    
    ghtml/stat_rxchans.shtml : *F7 Advanced Power Monitor - Rx Port Status

    Status - Rx Channels 

    Customer Name -  
    Site Name -  
    Tx Antenna Reference -  

    Auto Refresh                     

    Chan No.
    Channel ID
    ON
    Freq
    Act
    Last recorded Power above threshold
       There are no configured channels to display!
             
             
             
             
             
             
             
             
             
             
             
             
             
             
             
             
             
             
             
             

       

    ghtml/stat_rxisol.shtml :  N Advanced Power Monitor - Antenna Isolation Status

    Status - Antenna Isolation

    Customer Name -  
    Site Name -  

    Settings

    Setting Value
    Automatic Isolation Test  
    Test Frequency  
    Automatic Test Repetition Period  

     

    Status

    Calculated Tx-Rx Isolation  

       

    ghtml/stat_system.shtml : !b Advanced Power Monitor - System Status

    Status - System

    Customer Name -  
    Site Name -  

    Settings

    Setting Value
    Model  
    Unit ID  
    Firmware Version  
    GUI Version  
    Hardware Revision  
    Unit Serial Number  
    Date (/yy), Time (hh:mm:ss)  

     

    Alarm Summary

    Alarm Status
    Fault Summary  
    Tx Power  
    Tx VSWR  
    VCO  
    Internal Supply Rails  

       

    ghtml/stat_txport.shtml : *7@+6 Advanced Power Monitor - Tx Port Status

    Status - Tx Port 

    Customer Name -  
    Site Name -  
    Tx Antenna Reference -  

    Auto Refresh                     

    Chan No.
    Channel ID
    ON
    Freq
    Last recorded activity above threshold
    Act
    Power    
    Ins Loss
    VSWR
       There are no configured channels to display!