FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. CALAMP WIRELESS NETWORKS INC./
  3. EOTMCUA5R

EOTMCUA5R

CALAMP WIRELESS NETWORKS INC.
TNB - Licensed Non-Broadcast Station Transmitter - FCC ID EOTMCUA5R - CALAMP WIRELESS NETWORKS INC.
Click to zoom

Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Sep 20, 1999
Application Purpose
Original Equipment
Date of Application
May 02, 1999
Frequency Range
132.00000000 - 174.00000000
Company
CALAMP WIRELESS NETWORKS INC.
Country
United States

Documents & Files

Select a file to view

Users Manual

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗

Operational Description

↗

Parts List/Tune Up Info

↗

Schematics

↗

Test Report

↗
↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

External Photos

MCUA5R - ENGINEERING REPORT-Annex CPage 1 of 3 04\30\99 156-90001-100 Dataradio  FCC submission Annex C : Photos RULE PART NUMBER:2.1033 (c)(11, 12) 1. Label identification and place : right side, the closest lateral side from antenna connector. MCUA5R - ENGINEERING REPORT-Annex CPage 2 of 3 156-90001-100 Dataradio  FCC submission 2. Internal Photos assemblymid-internal views internal top-bottom view. MCUA5R - ENGINEERING REPORT-Annex CPage 3 of 3 156-90001-100 Dataradio  FCC submission 3. External views. front viewtop- right side view rear-left view (BW)

ID Label/Location Info

Annex C : Photos RULE PART NUMBER:2.1033 (c)(11, 12) 1. Label identification and place : right side, the closest lateral side from antenna connector.

Internal Photos

1. Internal Photos assembly mid-internal views internal top-bottom view.

Operational Description

MCUA5R - ENGINEERING REPORT-Annex APage 1 of 14 04\30\99 156-90001-100 Dataradio  FCC submission Annex A:Operational Description of Circuitry RULE PART NUMBER:2.1033 (c)(10) 1PURPOSE This report has been prepared to support the application for FCC Certification Per Code Of Federal Regulations, Title 47, Parts 2 And 90 for the MCUA5R radio-modem comprised of the JDT Model 242- 3422-xxx Transceiver and Dataradio 210-3315-xxx Modem. The report presents necessary information concerning electrical circuit description, measured performance and physical construction and configuration. Also parts 4 and 5 present active circuit devices functions for Transceiver and, accordingly, for Modem. 2DL-3422 TRANSCEIVER The main subassemblies of this transceiver are the RF board, VCO board, TCXO and modem assembly. A block diagram of the transceiver is located in Figure 2. The VCO board is enclosed by a metal shield and soldered directly to the RF board. The VCO is not serviceable. The DL-3422 has a reference oscillator stability of ±2.5 PPM. The TCXO (Temperature Compensated Crystal Oscillator) is soldered directly to the RF board. The TCXO is not serviceable. 2.1 SYNTHESIZER The synthesizer output signal is produced by a VCO (voltage controlled oscillator). The VCO frequency is controlled by a DC voltage produced by the phase detector in U811. The phase detector senses the phase and frequency of the two input signals and causes the VCO control voltage to increase or decrease if they are not the same. The VCO is then "locked" on frequency. Programming of the synthesizer provides the data necessary for the internal prescaler and counters. One input signal is the reference frequency. This frequency is produced by the reference oscillator (TCXO). The other input signal is the VCO frequency. VOLTAGE-CONTROLLED OSCILLATOR Oscillator (Q872) The VCO is formed by Q872, several capacitors and varactor diodes, and air wound inductor L872. It oscillates at the transmit frequency in transmit mode and first injection frequency in the receive mode (132-174 MHz in transmit and 153.45 - 195.45 MHz in receive). Biasing of Q872 is provided by R873, R874 and R876. An AC voltage divider formed by C872, C874 and C875 initiates and maintains oscillation and also matches Q872 to the tank circuit. air wound inductor L872 is grounded at one end to provide shunt inductance to the tank circuit. Frequency Control and Modulation The VCO frequency is controlled by a DC voltage across varactor diodes CR852, CR853, and CR854. As voltage across a reverse-biased varactor diode increases, its capacitance decreases. Therefore, VCO frequency increases as the control voltage increases. CR852/CR853 and CR854 are paralleled varactors to divide the capacitance and improve linearity. The varactors CR852/CR853 are biased at - MCUA5R - ENGINEERING REPORT-Annex APage 2 of 14 156-90001-100 Dataradio  FCC submission 2.0V so the control line voltage can operate closer to ground. CR854 is pin shifted in when transmitting to increase the VCO gain in transmit. The control line is isolated from tank circuit RF by choke L852/L853. The amount of frequency change produced by CR852/CR853/CR854/ is controlled by series capacitor C854. The -2.0V applied to the VCO is derived from the 14.85 MHz TCXO frequency that is amplified by Q902, rectified by CR902 and filtered by C912, C917, C918 and C920 on the RF board. The VCO frequency is modulated using a similar method. The transmit audio/data signal from J201, pin 6 is applied across varactor diode CR861 which varies the VCO frequency at an audio rate. Series capacitors C855/C856 set the amount of deviation produced along with CR862 and C865. R863 provides a DC ground on the anodes of CR861/CR862, and isolation is provided by R862, and C863. The DC voltage across CR862 provides compensation to keep modulation relatively flat over the entire bandwidth of the VCO. This compensation is required because modulation tends to increase as the VCO frequency gets higher (capacitance of CR852/CR853/CR855 gets lower). CR862 also balances the modulation signals applied to the VCO and TCXO. The D/A Converter U911 can be programmed to apply a compensating voltage to CR862 to adjust the modulation sensitivity between the TCXO and VCO. The DC voltage applied across CR862 comes from the modulation adjust control R827 on the RF board. R826 applies a DC biasing voltage to CR86. C821 provides DC blocking. RF isolation is provided by C865, and R862. VCO AND REFERENCE OSCILLATOR MODULATION Both the VCO and reference oscillator (TCXO) are modulated in order to achieve the required frequency response. If only the VCO was modulated, the phase detector in U811 would sense the frequency change and increase or decrease the VCO control voltage to counteract the change (especially at the lower audio frequencies). If only the reference oscillator frequency is modulated, the VCO frequency would not change fast enough (especially at the higher audio frequencies). Modulating both VCO and reference oscillators produces a flat audio response. Potentiometer R827 sets the VCO modulation sensitivity so that it is equal to the reference oscillator modulation sensitivity. CASCADE AMPLIFIERS/VCO (Q871/Q872) The output signal on the collector of Q871 is coupled to buffer amplifier Q872 which forms a cascade amplifier. This is a shared-bias amplifier which provides oscillation, amplification and isolation from the stages which follow. The signal is coupled and matched from the collector of Q872 through inductors and capacitors and a T-pad to amplifier Q882. AMPLIFIER (Q882) Q882 provides final amplification of the VCO signal. Biasing of Q882 is provided by Q881 and several resistors. Matching to the transmitter and receive first injection is provided by L891 and C892. A 6dB T-pad is used to isolate the transmitter and receive first injection. VOLTAGE FILTER (Q901) Q901 on the RF board is a capacitance multiplier to provide filtering of the 8.6V supply to the…

Text truncated - open the document above for the full version.

Parts List/Tune Up Info

MCUA5R - ENGINEERING REPORT-Annex APage 1 of 3 04\30\99 156-90001-100 Dataradio  FCC submission 4. DL-3422 ACTIVE CIRCUITS DESCRIPTION DesignatorFunctionJEDEC or Vendor Type CR561Antenna switchMMBV3401 CR562Antenna switchMMBV3401 CR591Directional couplerMMBD701LT CR592Directional couplerMMBD701LT CR851Pin shift diodeMMBV3401 CR852RectifierMMBV609 CR853RectifierMMBV609 CR861VaractorBB535E7908 CR862VaractorBB535E7908 CR901VaractorBB535E7908 CR902RectifierBAV99LT1 Q101Tx enableMUN5213T1 Q102Tx enableMUN2114T1 Q121Rx enableMUN5213T1 Q122Rx enableMUN5213T1 Q123Rx enableMUN2114T1 Q124Soft key up controlPZT2222AT1 Q1315 volt shutdownMUN5213T1 Q171Pin shiftMUN5213T1 Q172Pin shiftMUN2114T1 Q501RF bufferMSA-2111 Q511RF driverNE85633 Q531Power controlPZT2222AT1 Q801Constant voltage sourceMSD1819A-RT1 Q841Pin shiftMUN5213T1 Q842Pin shiftMUN2114T1 Q871VCO bufferNE85619-T1 Q872OscillatorNE85619-T1 Q881Bias regulatorMSB1218A-AT1 Q882AmplifierNE85633 Q901Capacitance multiplierMSD1819A-RT1 Q902AmplifierMMBT918LT1 U111ASoft key up controlLMC660AMI U111BSoft key up controlLMC660AMI U111CPower controlLMC660AMI U111DSoft key up controlLMC660AMI U131Voltage regulatorTK11900MTL U141Voltage regulatorTK11900MTL U531RF power moduleM57732 U581AV-fwd ampMC33172DT U581BV-rev ampMC33172DT U811SynthesizerSA7025DK-T Y801TCXO14.85 / 17.5 MHz MCUA5R - ENGINEERING REPORT-Annex APage 2 of 3 156-90001-100 Dataradio  FCC submission 5.INTEGRA R 210-3315-XXX ACTIVE CIRCUITS DESCRIPTION DesignatorfunctionType D1DIODE, HOT CARRIER, SOT-23MMBD301LT1 D2DIODE, HOT CARRIER, SOT-23MMBD301LT1 D3DIODE, SOT-23BAV99LT1 D4DIODE, SOT-23BAV99LT1 D5DIODE, SOT-23BAV99LT1 D6DIODE,RECTF,1A/100V1N4001 DS1LED,3MM,BICOLOR,RED/GREEN SMT 591-3001-102 DS2LED,3MM,BICOLOR,RED/GREEN SMT 591-3001-102 DS3LED,3MM,BICOLOR,RED/GREEN SMT 591-3001-102 DS4LED,3MM,BICOLOR,RED/GREEN SMT 591-3001-102 Q1TRANSISTOR, GENERAL PURPOSE,SOT-23 MMBT3904LT1 Q2TRANSISTOR, GENERAL PURPOSE,SOT-23 MMBT3904LT1 Q3TRANSISTOR, GENERAL PURPOSE,SOT-23 MMBT3904LT1 Q4TRANSISTOR, GENERAL PURPOSE,SOT-23 MMBT3904LT1 U1QUAD, OP-AMP , -40/+85 SO-14TLC2274ID U2HEX INVERTER CMOS74HC04AD U3QUAD OP-AMPLMC6484AIM U48 BIT A/D,-40/+85C SO-20WADC0838CIWM U5POTENTIOMETER 4 DIGITALAD8403AR50 U6TEMPERATURE SENSOR,SOT-23LM50CIM3 U7DUAL OP-AMP,-40/+85 S0-8TLC2272ID U8ANALOG MULTIPLEXERS/ DEMULTIPLEXERS SOIC 16 MC74HC4053D U9QUAD, OP-AMP , -40/+85 SO-14TLC2274ID U10FILTER, LINEAR PHASE LOW PASS S0-8 LTC1069-7 U11REGULATOR,MICROPOWER VOLTAGE ,S0-8 LP2951CD U12REGULATOR,LOW DROPOUT,Q PACKAGE LT1129IQ-5 U13DUAL MONOSTABLE, SOIC74HC4538AD U14QUAD NAND GATE74HC00AD U15CONVERTER RS-232ADM223AR U16 ( TO BE PROGRAMMED) CPLD 64 MACROCELLPZ5064-I12A44 U17MICROPROCESSOR ,10MHzZ8401510FEC U18RAM,CMOS,32K x 8, -40/=85, SOP-28TC55257DFI-85L or TC55257DFL- 85L (SCREENED -40 +85) U19RESET CIRCUIT, -40+85 ,S0-8MC33064D-5 U20HEX OR GATE,CMOS74VHC32AD U21MICROPROCESSOR ,10MHzZ84C1510FEC /Z8401510FEC U22 (TO BE PROGRAMMED) EPROM, FLASH 1 MEGABIT, -40/+85 PLCC AT29C010A-90J1 X1XTAL, FPX SERIES 19.6608 MHzFPX196-20PF MCUA5R - ENGINEERING REPORT-Annex APage 3 of 3 156-90001-100 Dataradio  FCC submission 9. Tune-up procedure Ref: FCC Part 2 paragraph 2. 1033(c)(9) 1. Connect the transceiver to be aligned to a DC power source. A DC current meter capable of measuring at least 2.5 Amps should be connect in line with the DC source. Connect the output of the transceiver through a watt meter and into a 50 ohm dummy load. 2. Load the synthesizer with the center channel frequency. 3. Key the transmitter and make certain that the supply voltage at the RF board is 13.3 VDC. (Do not transmit for extended periods of time. ) 4. Adjust R535 clockwise for 5.0 Watts of output power. 5. Check the power levels on the low and the high frequencies for 5.0 Watts +/- 1 Watt.

Schematics

MCUA5R - ENGINEERING REPORT-Annex B Page 1 of 6 04\30\99 156-90001-100 Dataradio  FCC submission Annex B: SchematicsRULE PART NUMBER: 2.1033 (c)(10) ContentsIntegra R Modem/loader ............................pag 2-5DL3422 Transceiver...................................pag 6 MCUA5R - ENGINEERING REPORT-Annex B Page 2 of 6 156-90001-100 Dataradio  FCC submission 78 U22AT29C010 A0 12 A1 11 A2 10 A3 9 A4 8 A5 7 A6 6 A7 5 A8 27 A9 26 A10 23 A11 25 A12 4 A13 28 A14 29 CE 22 OE 24 O0 13 O1 14 O2 15 O3 17 O4 18 O5 19 O6 20 O7 21 - 1 A16 2 VCC 32 A15 3 WE 31 - 30 GND 16 U20A 74VHC32 12 3 U2B 74VHC04 34 C5633PF C60 33PF R78 10K R77 100K C62104 R75 47K U19 MC33064D-5 RST 1 IN 2 GND 4 U1784015 A0 6 A1 5 A2 4 A3 3 A4 2 A5 1 A6 100 A7 99 A8 98 A9 97 A10 96 A11 95 A12 94 A13 93 A14 92 A15 91 D0 89 D1 88 D2 87 D3 86 D4 85 D5 84 D6 83 D7 82 PA0 29 PA1 28 PA2 27 PA3 26 PA4 25 PA5 24 PA6 23 PA7 22 PB0 53 PB1 54 PB2 55 PB3 56 PB4 57 PB5 58 PB6 59 PB7 60 W/RDYA 30 SYNA 31 RXDA 32 RXCA 33 TXCA 34 TXDA 35 DTRA 36 RTSA 37 CTSA 38 DCDA 39 W/RDYB 52 SYNCB 51 RXDB 50 RXCB 49 TXCB 48 TXDB 47 DTRB 46 RTSB 45 CTSB 44 DCDB 43 WDOUT 73 A7RF 70 ICT 40 ICT 42 RFSH 7 M1 8 RST 9 BSREQ 10 WAIT 11 BUSACK 12 WR 13 RD 14 IORQ 15 MREQ 17 HALT 18 INT 19 NMI 63 EV 67 XTAL1 65 XTAL2 66 CKOUT 68 CKIN 69 ARDY 20 ASTB 21 BRDY 62 BSTB 61 CK0 81 CK1 80 CK2 79 CK3 78 TO0 74 TO1 75 TO2 76 TO3 77 IEO 71 IEI 72 5V 41 5V 90 GND 16 GND 64 U18 55C256 A0 10 A1 9 A2 8 A3 7 A4 6 A5 5 A6 4 A7 3 A8 25 A9 24 A10 21 A11 23 A12 2 A13 26 A14 1 CE 20 OE 22 WE 27 O0 11 O1 12 O2 13 O3 15 O4 16 O5 17 O6 18 O7 19 VCC 28 GND 14 R76 47K P1 HEADER 8 12345678 R73 100K R80 100K R81 100K R79 100K R74 470K U2F 74VHC04 13 12 X1 19.6608MHZ 14 U16 PZ5064_PLCC 332-90804-000 PLL_LOCK 37 NC 1 NC 5 A 33 B 32 NC 44 PREAMB 36 INV 34 SCRAM_EN 24 TXD 25 NC 8 NC 7 NC 9 CK128 4 RXS 31 RX_EN 20 NC 2 NC 6 DATA_CK 21 RXD 28 TXA 29 SLICER 17 FILTER_CK 18 EDGE 40 VDD 15 VDD 23 VDD 35 VDD 3 GND 10 GND 22 GND 30 GND 42 NC 11 CK0 19 CK 43 NC 41 RXC 27 TXC 26 GMSK 39 NC 16 NC 14 NC 13 NC 38 NC 12 U20B 74VHC32 45 6 U2184015 OR 84C15 A0 6 A1 5 A2 4 A3 3 A4 2 A5 1 A6 100 A7 99 A8 98 A9 97 A10 96 A11 95 A12 94 A13 93 A14 92 A15 91 D0 89 D1 88 D2 87 D3 86 D4 85 D5 84 D6 83 D7 82 PA0 29 PA1 28 PA2 27 PA3 26 PA4 25 PA5 24 PA6 23 PA7 22 PB0 53 PB1 54 PB2 55 PB3 56 PB4 57 PB5 58 PB6 59 PB7 60 W/RDYA 30 SYNA 31 RXDA 32 RXCA 33 TXCA 34 TXDA 35 DTRA 36 RTSA 37 CTSA 38 DCDA 39 W/RDYB 52 SYNCB 51 RXDB 50 RXCB 49 TXCB 48 TXDB 47 DTRB 46 RTSB 45 CTSB 44 DCDB 43 WDOUT 73 A7RF 70 CSO 40 CSI 42 RFSH 7 M1 8 RST 9 BSREQ 10 WAIT 11 BUSACK 12 WR 13 RD 14 IORQ 15 MREQ 17 HALT 18 INT 19 NMI 63 EV 67 XTAL1 65 XTAL2 66 CKOUT 68 CKIN 69 ARDY 20 ASTB 21 BRDY 62 BSTB 61 CK0 81 CK1 80 CK2 79 CK3 78 TO0 74 TO1 75 TO2 76 TO3 77 IEO 71 IEI 72 5V 41 5V 90 GND 16 GND 64 TP3TP4TP2 D6 A1 D4 A5 A13 A3 A2 D0 A4 A11 D5 A1 A1 A14 D4 D3 D5 A9 A3 D5 D3D7 A12 A7 A10 A3 D2 D4 D5 A4 A1 A8 D1 D0 D0 A11 A6 A9 A2 A0 A7 A3 D7 D2 A8 A6 A12 A4 A10 D7 A6 A9 D6D1 A13A5 A0 A0 D6 A8 A5 D4 D2 D1 A13 A5 A12 A14 A14 D7D2 A6 A2A7 D3 A11 A2 D3 A7 D6 A0 D1 A4A10 D0 \A7 +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V LOCK LED-1LED-2LED-3LED-4LED-5LED-6LED-7LED-8 RXD-2 TXD-2DCD-2 OUT1OUT2 A/D-OUTPUT A/D-SELECTFAST_PEAK_DETECT TXD-1DTR-1 RX-CNT CD DCD-1 \NMI \SLEEPCLOCK SYNTH_ENABLE RADIO-CLOCKTP-CNT RXD-1 DATA RTS-1 CTS-1 RS232-CNTDIGIPOT_SELECT RX_EN1 TX_EN1DIAG_ENABLERADIO-DATA RXS FILTER_CKSLICERTXA_MOD \M1 \RST \IORQ CKIN \INT PREAMB \M1 \RST \IORQ \INT CKIN CK0 IEO \MREQ \MREQ INV A CKIN B IEO PREAMBINVAB CK0 CK0 PLL_LOCK PLL_LOCK GMSK GMSK \RD \WR \RD\WR REV DESCRIPTION DATE DATARADIO INC. DraftDesignDesign P/N SIZE B SHEET CheckDOC/N REV DATE No reproduction or distributionwithout approval.This information is the property ofDATARADIO INC. and is confidentialNOTES: (Unless otherwise specified) 12345 ABCDEF GH 1235 ABCDEF GH LEVEL C.LAMBERTD.NGUYEN 1/4 INTEGRA - RLOGIC BOARD 1 PRODUCTION 981111 (3) (2) (4) (4)(4) (4) (4) (2,4)(3)(4) (3) (2) (3)(3)(3)(3)(3)(3)(3)(3) (3) (3) (3) (2,4)(2,4)(4) (3) (3)(3)(3) (3) (3) CTS-3+5VDTR-3 RXD-3 RTS-3 TXD-3DCD-3 GND (4) (4) (4)(4) (4)(4) COPYRIGHT C 1985-97 : DATARADIO INC. (2) 981111 (2)(2)(2) 4 215-03315-001 MCUA5R - ENGINEERING REPORT-Annex B Page 3 of 6 156-90001-100 Dataradio  FCC submission R24 6.8K U5E AD8403_50K AGND1 21 AGND2 1 AGND3 17 AGND4 5 DGND 9 VDD 16 RS 15 SHDN 10 SDI 12 CLK 14 CS 11 SDO 13 R54 1K U1C TLC2274 10 9 8 - + U3D LMC6484 1213 14 -+ U3C LMC6484 10 9 8 -+ U1D TLC2274 1213 14 4 11 - + +- D1 MBD301 13 Q2 MMBT3904 3 1 2 Q1 MMBT3904 3 1 2 U9D TLC2274 1213 14 -+ U9A TLC2274 32 1 -+ C34 224 35V_A + R17 10K R27 10K R22 470K R968K R710K R8 470K R58 100K R61 100K R10220K C7 104 R33 220K TP1 C8 224 35V_A + C29 104 C28 102 R6 10K U3B LMC6484 56 7 -+ C5 103 U1B TLC2274 56 7 -+ R2 10K R410K R13 220K R16470K R12 470K U1A TLC2274 32 1 -+ C25 102 R14 68K U8A74HC4053D X0 12 X1 13 A 11 X 14 R32 220K U10 LTC1069-7 GND 1 V+ 2 VIN 4 CLK 5 V- 7 VOUT 8 GND 3 GND 6 R53 1K R1118K U9B TLC2274 56 7 4 11 - + +- U3A LMC6484 32 1 4 11 - + +- U5DAD8403_50K 7 8 6 B4 A4 W4 C9 220PF U5CAD8403_50K 20 18 19 B3 A3 W3 U5B AD8403_50K 3 4 2 B2 W2 A2 C23 470PF U8B74HC4053D Y0 2 Y1 1 B 10 Y 15 D2 MBD301 13 C1 224 35V_A + R18 10K R28 10K R48 10K R49 10K R110K +5V_SW +2.5V +5V_SW +2.5V +5V_SW +5V_SW +2.5V +5V_SW +2.5V +2.5V +2.5V +2.5V +5V_SW +2.5V +5V_SW +5V_SW +5V_SW +5V_SW +2.5V RXA FAST_PEAK_DETECT NEG_PEAK RX_TP POS_PEAK RXS SLICER TXA_MOD FILTER_CK DATA CLOCK DIGIPOT_SELECT TXA TX_EN1 REV DESCRIPTION DATE DATARADIO INC. DraftDesign P/N SIZE B CheckDOC/N DATE No reproduction or distributionwithout approval.This information is the property ofDATARADIO INC. and is confidential 12345 ABCDEF GH 12345 ABCDEF GH LEVEL COPYRIGHT C 1985-97 : DATARADIO INC. INTEGRA - R 2/4 Design D.NGUYEN 1 PRODUCTION 981111 (1) (3) (4) (4) (1) (1) (1) (1) (1) (1) (1) (1) SHEET (4) (4) 981111 215-03315-001 C.LAMBERT MCUA5R - ENGINEERING REPORT-Annex B Page 4 of 6 156-90001-100 Dataradio  FCC submission U14B 74HC00 45 6 U14C 74…

Text truncated - open the document above for the full version.

Test Report

Engineering Report in Support of Certification FCC Form 731 for MCUA5R radiomodem Subject:Compliance of Radio Modem with Respect to FCC Rules & Regulations Parts 2 and 90 Certification FCC Form 731 Equipment:VHF Radio Modem FCC Id:EOTMCUA5R Applicant:Dataradio Incorporated 5500 Royal Mount Ave., Suite 200 Town of Mount Royal, H4P 1H7 Quebec, Canada April 30,1999 Dataradio Inc MCUA5R - ENGINEERING REPORT-bodyPage 2 of 43 156-90001-100 Dataradio  FCC submission Johnson Data Telemetry Corporation Waseca, Minnesota ENGINEERING STATEMENT OF MARK CHRISTENSEN The application consisting of the attached engineering exhibit and associated FCC form 731, has been prepared in support of a request for Type Acceptance for the Johnson Data Telemetry (JDT) DL-3422, 132-174 MHz Transceiver with the Data Radio 3315(Integra) Modem. The Transceiver mated with the Integra Modem will be identified by the part number INA22XY0T where X represents range and Y represents IF bandwidth (see below for part#). The model name is MCUA5R. The Transceiver/Modem will be identified by the FCC number EOTMCUA5R. The transceiver operates pursuant to Part(s) 90 and 15 of the Rules and Regulations. EXISTING CONDITIONS The units utilized for these type acceptance measurements were obtained from the pilot-production. The transceiver is designed to operate on frequencies ranging from 132.000 MHz to 174.000 MHz. The frequency tolerance of the transceiver is .00025% or 2.5 parts per million. The frequency stability of the transceiver is controlled by a temperature compensated crystal oscillator (TCXO) operating at 14.85 MHz for Range 4 and 17.5 MHz for range 6. Range 4 operates in the frequency range 132-150 MHz. Range 6 operates in the frequency range 150-174 MHz. PROPOSED CONDITIONS It is proposed to Type Accept the MCUA5R, 132-174 MHz Transceiver/Modem for operation in the band of frequencies previously outlined. The applicant anticipates marketing the device for use in wireless transmission of data. PERFORMANCE MEASUREMENTS All Type Acceptance measurements were conducted in accordance with the Rules and Regulations Section 2.1041of Pike & Fischer Inc., CD ROM revision 9/28/98. Equipment performance measurements were made in the engineering laboratory and on the FCC certified Open Area Test Site at the Transcrypt International / E.F. Johnson Radio Products located at 299 Johnson Avenue in Waseca, Minnesota. All measurements were made and recorded by myself or under my direction. The performance measurements were made between Jan 28, 1999 and Feb 8,1999 except for Field Strength of Spurious Radiation that was made on Apr 28,1999. CONCLUSION Given the results of the measurements contained herein, the applicant requests that Type Acceptance be granted for the INB22XY0T, 132-174 MHz Transceiver/Modem as tested for data communications. 4/28/99 Mark Christensen Director of Engineering, Johnson Data Telemetry Part Number X Freq Range Y IF Bandwidth 4132-150 MHz112.5 KHz 6150-174 MHz325 KHz MCUA5R - ENGINEERING REPORT-bodyPage 3 of 43 156-90001-100 Dataradio  FCC submission QUALIFICATIONS OF ENGINEERING PERSONNEL (2.911) NAME:Allen Frederick TITLE:Certified Technologist TECHNICAL EDUCATION:Bachelor of Science Degree in Electronic Engineering Technology (1998) from Mankato State University TECHNICAL EXPERIENCE:2 years experience in analog and radio frequency communications NAME:Constantin Pintilei TITLE:R&D Test Engineer TECHNICAL EDUCATION: Bachelor of Science Degree in Radiotechnique Electronic Engineering (1993) from Technical University of Iasi, Romania TECHNICAL EXPERIENCE:5 years experience in radio frequency measurements MCUA5R - ENGINEERING REPORT-bodyPage 4 of 43 156-90001-100 Dataradio  FCC submission Contents CONTENTS ...................................................................................................................................................... 4 ENGINEERING SUMMARY......................................................................................................................... 5 GENERAL INFORMATION ......................................................................................................................... 6 FCC SUBMISSION INFORMATION ..................................................................................................................... 6 M ANUFACTURER ’ S DATA ................................................................................................................................6 P RODUCT ’ S GENERAL SPECIFICATIONS ............................................................................................................ 6 INFORMATION FOR CERTIFICATION ...................................................................................................7 1. Name of Applicant:................................................................................................................................. 7 2. FCC Identifier ........................................................................................................................................ 7 3. Instruction book...................................................................................................................................... 7 .4 Types of emission ................................................................................................................................... 7 5. Frequency range .................................................................................................................................... 7 6. Range of operating power levels ............................................................................................................ 7 7. Maximum Power rating......................................................................................................................... 8 8. DC voltages and currents into final amplifier........................................................................................ 8 9. Tune-up procedure .....…

Text truncated - open the document above for the full version.

Test Report

MCUA5R - Reply 8835- supplementary dataPage 1 of 3 07\23\99 156-90001-101 Dataradio FCC submission NAME OF TEST:Transmitter Rated Power Output RULE PART NUMBER:2.1033 (c)(6)(7) and 2.1046 (a) TEST RESULTS:See results below TEST CONDITIONS:Standard Test Conditions, 25 C UUT:MCUA5R, s/n XXXX- prototype serial, comprised of two boards: MCU 3315 (Dataradio 210-03315-0xx) s/n L5- prototype modem board DL 3422 (JDT 242-3422-430)-s/n 10791 transceiver board TEST EQUIPMENT:50 Ohms RF load , Coaxial Dynamics model 4050- 50Watt Digital Voltmeter, Fluke Model 87III Digital Ammeter, Fluke Model 87III DC Power Source, ASTRON Model VS 20 M Power Meter, Coaxial Dynamics model 81050 PERFORMED BY: DATE: 07/22/99 Constantin Pintilei TEST SET-UP: TEST RESULTS: Frequency (MHz) DC Voltage at Final (VDC) DC Current into Final (ADC) DC Power into Final (W) RF Power Output (W) 150.00013.31.5520.615.0 13.30.8611.441.0 TRANSMITTER UNDER TEST POWER METER 50 OHM LOAD POWER SUPPLY DIGITAL MULTIMETERS MCUA5R - Reply 8835- supplementary dataPage 2 of 3 07\23\99 156-90001-101 Dataradio FCC submission NAME OF TEST:Low-pass filter frequency response data RULE PART NUMBER:90.210 b, as requested TEST RESULTS:See results below TEST CONDITIONS:Standard Test Conditions, 25 C TEST PROCEDURE:TIA/EIA - 603, 2.2.15 UUT:MCUA5R, s/n XXXX- prototype serial, comprised of two boards: MCU 3315 (Dataradio 210-03315-0xx) s/n L3- prototype modem board DL 3422 (JDT 242-3422-430)-s/n 10791 transceiver board LOW-PASS FILTER: Linear Technology LTC 1069-7 TEST EQUIPMENT:Dynamic Signal Analyzer HP model 35660A 50 Ohms RF load , Coaxial Dynamics model 4050 - 50Watt Plotter HP Color Pro model 7440A PERFORMED BY: DATE:07/22/99 Constantin Pintilei TEST SET-UP: Modem bitrate 19200 bps, Filter clock frequency -196.606 kHz TEST RESULTS: 1000 Hz reference level: -0.69 dB @ 1024 Hz -3dB cutoff frequency : -3.696 dB @ 7.872 kHz -44 dB @ 15.57 kHz TRANSMITTER UNDER TEST RF LOAD50 OHM LOAD BASEBAND GENERATOR BASEBAND SPECTRUM ANLYZER PLOTTER PC TO KEY TX DYNAMIC SIGNAL ANALYZER MCUA5R - Reply 8835- supplementary dataPage 3 of 3 07\23\99 156-90001-101 Dataradio FCC submission

Contact Information

Applicant

Russell Cook(Director of Engineer)
[email protected]612-642-2127

Technical Contact

Dataradio Inc.Constantin Pintilei
[email protected]514-737-0020

suite 2200 · Mount-Royal, Quebec · Canada

Test Firm

E. F. Johnson Co.John Oblak
[email protected]507-835-6222Fax: 507-835-8356

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
290.21132 MHz - 174 MHz5 W9K30F1D2.5 ppm

Other Applications from CALAMP WIRELESS NETWORKS INC.

2.5 GHz Wireless Broadband Route - FCC ID EOT-1409123000 - CALAMP WIRELESS NETWORKS INC.
EOT-1409123000

2.5 GHz Wireless Broadband Route

May 15, 2011

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
700MHz Band SDR Exciter for BDP4 digital base station - FCC ID EOTBDP4-EXCT769 - CALAMP WIRELESS NETWORKS INC.
EOTBDP4-EXCT769

700MHz Band SDR Exciter for BDP4 digital base station

Sep 29, 2010

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
UHF HIGH SDR Exciter for BDP4 digital base station - FCC ID EOTBDP4-EXCT438 - CALAMP WIRELESS NETWORKS INC.
EOTBDP4-EXCT438

UHF HIGH SDR Exciter for BDP4 digital base station

Jun 03, 2010

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
UHF LOW SDR Exciter for BDP4 digital base station - FCC ID EOTBDP4-EXCT403 - CALAMP WIRELESS NETWORKS INC.
EOTBDP4-EXCT403

UHF LOW SDR Exciter for BDP4 digital base station

Jun 02, 2010

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
900 MHz Broadband Base Station - FCC ID EOT-1409290100 - CALAMP WIRELESS NETWORKS INC.
EOT-1409290100

900 MHz Broadband Base Station

May 09, 2010

Equipment Class

DTS - Digital Transmission System