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KJA504830202800 Mhz Signal Booster for tunnels

Aerocomm Inc
800 Mhz Signal Booster for tunnels - FCC ID KJA504830202 - Aerocomm Inc
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Jul 04, 2000
Application Purpose
Original Equipment
Date of Application
Jun 05, 2000
Equipment Note
800 Mhz Signal Booster for tunnels
Frequency Range
821.00000000 - 824.00000000
Company
Aerocomm Inc
Country
United States

Documents & Files

Select a file to view

Users Manual

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Block Diagram

Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Parts List/Tune Up Info

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Schematics

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

8 Channel Bi-Directional Booster Amplifier 50289-BDA Operations, Installation and Maintenance Instruction Manual Model 50289-BDA ALL INFORMATION CONTAINED IN THIS DOCUMENT IS PROPRIETARY TO AeroComm, Inc. AND SHALL NOT RELEASED, DISCLOSED, USED, OR DUPLICATED FOR ANY PURPOSE OTHER THAN EVALUATION, INSPECTION, OR MAINTENANCE OF EQUIPMENT DELINEATED HEREIN. AEROCOMM UNCONDITIONALLY GUARANTEES THE MERCHANDISE PROVIDED AGAINST DEFECTS OF ANY KIND INCLUDING, WITHOUT LIMITATION, DEFECTS IN OPERATION, DESIGN, MATERIALS, AND WORKMANSHIP FOR TWO YEARS FROM THE DATE OF DELIVERY. AEROCOMM IS NOT RESPONSIBLE FOR ANY EQUIPMENT REPAIRED OR ALTERED BY PERSONS NOT AUTHORIZED BY AEROCOMM OR NOT IN ACCORDANCE WITH INSTRUCTIONS FURNISHED BY AEROCOMM. AEROCOMM. IS NOT RESPONSIBLE FOR EQUIPMENT RENDERED DEFECTIVE AS A RESULT OF MISUSE, IMPROPER REPAIR, OR ABNORMAL CONDITIONS OF OPERATION, NOR DOES AEROCOMM ASSUME ANY LIABILITY FOR ANY CONSEQUENTIAL DAMAGE CAUSED BY SUCH EQUIPMENT. SERVICE CONTRACTS OR CUSTOMER ASSISTANCE AGREEMENTS ARE AVAILABLE FOR AEROCOMM. PRODUCTS THAT REQUIRE MAINTENANCE AND/OR REPAIR. AEROCOMM ALSO HAS SERVICE AND CONSULTATION CONTRACTS FOR ENTIRE SYSTEM CONFIGURATIONS. 800MHz Bi-directional Booster Amplifier 50289-BDA 50289-BDA USE OR DISCLOSURE OF DATA CONTAINED ON THIS PAGE IS SUBJECT TO THE RESTRICTION ON THE TITLE PAGE OF THIS MANUAL 3 800MHz BDA Model 50289-BDA Specifications Frequency Range: 806-824MHz, 851-869MHz Pre-selectors: 819-824MHz, 864-869MHz Talk-Out, Outband: 821-823MHz Talk-In, Inband: 866-869MHz Channel Spacing: 25kHz Channel Bandwidth: 15kHz Phase Noise: 10kHz - - 90dBc/Hz RF Frequency Accuracy: Signal exactly Adjacent Channel Selectivity: 70dB @ + 17.5kHz RF Output Power (to cable): +31dBm per carrier RF Output Power (to antenna): +25dBm per carrier Variation of Output Power with Input Level: +0, -1dB Max Passband Ripple (full band): 2dB Max Passband Ripple (100Khz segment): 0.1dB Amplifier Input Port Burnout (no damage I/O segment): @-15dBm Amplifier Output Damage (no damages): open/short Reliability: 50K hours minimum Intermodulation/Crossmodulation Distortion: -60dBc Channel to Channel Isolation: -70dBc -90dBm Input Output +31dBm (High Band) Output +25dBm (Low Band) Duty Cycle: Continuous RF Spurious Output (0.5-800MHz, 1-2.5GHz): -60dBc RF Spurious Output (800-1000MHz): -85dBc max Operating Temperature Range: -20Β°C to +60Β°C System Noise Figure: <9dB Input/Output Impedance: 50 ohms nominal Input/Output VSWR: 1.5:1, worst case Input/Output Connectors at top of cabinet: Type N Female Input Power: 110vac Passband Group Delay: 220 microseconds Alternate Power Source, battery Backup: +12vdc @ 56 amps (High Band) +12vdc @ 38 amps (Low Band) Operation Conditions: Unconditionally stable Time-out timer 1 sec to 99 minutes and 59 seconds Annunciating LEDs: Power PLL Lock Detect Status – Key On Fault Enclosure: NEMA 12 72”Hx24”Wx24”D Number of Enclosures: 2 (1 High Band/1 Low Band) Weight: <650 lbs each 50289-BDA USE OR DISCLOSURE OF DATA CONTAINED ON THIS PAGE IS SUBJECT TO THE RESTRICTION ON THE TITLE PAGE OF THIS MANUAL 4 800MHz BDA Model 50289-BDA Specifications Continue: DC Power Supply: No. per enclosure: High Band: 3 (1 Dual Chassis/ 1 Single) Low Band: 2 (1 Dual Chassis) Input: 105-125 VAC, 50-400Hz, single phase Output (each supply): 12 VDC+/- 0.5V @20 amps Operating Temperature: -20Β°C to +70Β°C Battery Charger: Type: Multi-Stage (Bulk/Absorption/Float) DC Output: 13.8-14.8Vdc (depending on setting) AC Input: 95-125 VAC Charging Rate: Bulk Charge: 40 amps max. Absorption: 5 amps max. Float: 0.05 amps Battery: Optionally Provided or User Supplied Specifications dependant on required UPS cycle System Load: 95 amp/hr Software: Title: 800MHz-Linc (50486-09-01) Version: 1.0 Operator, User Functions: Time-out Timer (set time interval) Mode (Keyed or Continuous) Technician Functions: Set Attenuation Set Frequency Set RSSI Attack Peripheral Requirements: Optionally provided or User supplied: Operating System (requirements): Window 95, Windows 98, or Windows NT 4.0 (or higher) Computer or Laptop (requirements): 486DX66Mhz (minimum) Communication, Serial Port (requirements): 4800 baud, N8+1 (8 bits, no parity) 50289-BDA USE OR DISCLOSURE OF DATA CONTAINED ON THIS PAGE IS SUBJECT TO THE RESTRICTION ON THE TITLE PAGE OF THIS MANUAL 5 TABLE OF CONTENTS SECTION I INSTALLATION...............................................................................................................9 INTRODUCTION..............................................................................................................................9 DETAILED INSTALLATION INSTRUCTIONS...............................................................................9 MECHANICAL INSTALLATION OF THE CABINETS....................................................................9 AC POWER CONNECTION............................................................................................................10 SETTING THE THERMOSTATS....................................................................................................10 CONNECT EXTERNAL RF CABLING...........................................................................................11 INSTALLING POWER SUPPLIES & BATTERY CHARGER.........................................................11 INSTALLING THE POWER AMPLIFIER.......................................................................................15 INSTALLING THE IF CHANNEL MODULES................................................................................16 INTERNAL RF CABLE INSTALLATION.......................................................................................18 IF MODULE CABLING........................................................................................................................18 DUPLEXER CABLING.........................................................................................................................19 DUPLEXER CABLING (CONTINUED).............…

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External Photos

Figure 1: External Photo: Front view For additional photos see the Users manual ( 800Mhz.pdf)

ID Label/Location Info

Figure 1: Label information 1 of 4 Figure 2: Label Information 2 of 4 Figure 3: Label Information 3 of 4 Figure 4: Label Information 4 of 4

Internal Photos

Figure 1: Power Supply Figure 2: Power Supply back Panel Figure 3: Power Supply Trace side of PCB Figure 4: Power supply: Component Side of PCB Figure 5: PLL module component side Figure 6: PLL module back side Figure 7: PLL OSC Board, Component Side Figure 8:PLL OSC Board Trace side Figure 9:LNA picutire 1 of 3: Component side Figure 10: LNA Picture 2 of 3: Component Side Figure 11: LNA Picture 3 of 3 : component side Figure 12: Amp combiner component side Figure 13: Amp Combiner; Trace side Figure 14: Duplexer component side Figure 15: Duplexer trace side

Operational Description

Operational description Please see pages 3,4,11 and 33 of the Users manual( 800MHZ.pdf)

Parts List/Tune Up Info

Tune Up Procedures Please see page 55 of the Users manual ( 800MHZ.pdf)

Schematics

The Following Diagrams are for both FCC ID: KJA 504830202 and KJA504830203 Figure 1: Diagram 90 Mhz AGC I.F. 1 of 6 Figure 2: 90 MHz AGC I.F. 2 of 6 Figure 3: 90 Mhz AGC IF 3 of 6 Figure 4: 90 Mhz AGC IF 4 of 6 Figure 5: 90 Mhz AGC IF 5 of 6 Figure 6: 90 Mhz AGC IF 6 of 6 Figure 7: 20 Watt power amp 1 of 4 Figure 8: 20 watt power amp 2 of 4 Figure 9: 20 watt power amp 3 of 4 Figure 10: 20 watt amp 4 of 4 Figure 11: 6 watt power amp 1 of 4 Figure 12: 6 watt power amp 2 of 4 Figure 13: 6 watt amp 3 of 4 Figure 14: 6 watt amp 4 of 4 Figure 15: IF PLL 1 of 6 Figure 16: IF PLL 2 of 6 Figure 17: IF PLL 3 of 6 Figure 18: If Pll 4 of 6 Figure 19: IF Pll 5 of 6 Figure 20: IF PLL 6 of 6

Test Report

Client: AeroComm, Inc. Report #: 9200-02-A Model: 504830202 Issue Date: 5/22/00 Page 2 of 31 Table of Contents Exhibit Title Page Cover Page 1 Table of Contents 2 I Engineering Statements 3 II Measurement Instrument List 5 III EUT Information and Data 6 IV Block Diagram 10 V EUT Configuration and Cables 11 VI Conducted Data 12 VII Radiated Data (Per Section 2.1053) 13 VIII Data for CFR 47 Part 2.1041 14 IX Compliance Information 31 Client: AeroComm, Inc. Report #: 9200-02-A Model: 504830202 Issue Date: 5/22/00 Page 3 of 31 Exhibit I Engineering Statements This report has been prepared on behalf of AeroComm, Inc. to certify a Private Land Mobile Radio Service Bi- directional Signal Booster. The test was performed for above said device under Parts 2 and Part 90 of the FCC Rules and Regulations. The test results found in this test report relate only to the items tested. EQUIPMENT UNDER TEST: 8 Channel Programmable Bi-Directional Signal Booster Model: 504830202 FCC ID: KJA504830202 APPLICABLE RULES: CFR 47 Part 2.1033 (c); 2.1046, 90.209, 90.219 EQUIPMENT CATEGORY: Non- Broadcast amplifier MEASUREMENT LOCATION: F-Squared Laboratories in Damascus, MD. Site description and attenuation data are on file with the FCC's Sampling and Measurement Branch at the FCC Laboratory in Columbia, MD. MEASUREMENT PROCEDURE: All measurements were performed according to the 1992 version of ANSI C63.4. A list of the measurement equipment can be found in Exhibit II. Client: AeroComm, Inc. Report #: 9200-02-A Model: 504830202 Issue Date: 5/22/00 Page 4 of 31 Client: AeroComm, Inc. Report #: 9200-02-A Model: 504830202 Issue Date: 5/22/00 Page 5 of 31 Exhibit II List of Measurement Instrumentation Equipment Type Manufacturer Model # Serial # Cal. Due Date Receiver Systems Rohde & Schwarz ESMI DE23119 Feb. 2000 LISN #1 Solar 8012-50-R-24-BNC 910488 Jan. 2000 LISN #2 Solar 8012-50-R-24-BNC 933201 Jan. 2000 Biconical Antenna Compliance Design Inc. B100 383 Jan. 2000 Biconical Antenna Compliance Design Inc. B200 292 Jan. 2000 Biconical Antenna Compliance Design Inc. B300 318 Jan. 2000 Horn Antenna Antenna Research Associates DRG-118/A 1105 Feb. 2000 Antenna Mast Compliance Design Inc. M100 NA NA Turntable F 2 Laboratories Site 1 NA NA Isolator #1* UTE Microwave Inc. CT-1059-OT U6049 ** Isolator #2* UTE Microwave Inc. CT-1059-OT U6050 ** Combiner* Mini-Circuits ZESC-2-11 15542 ** RF Signal Generator#1 Giga-Tronics 6061A 9637902 Jan. 2000 RF Signal Generator#2 HP E4420B-1E5 US38220249 July 2000 RF Signal Generator#3 Marconi 2024 1151131019 April 2001 Amplifier HP 8447f 3113A04704 July 2000 Data Logger Honeywell DRS-4505 88137287001 Jan 2000 Spectrum Analyzer HP 8391A 3149A07546 Feb. 2000 DMM Wavetek 10XL 981103749 Jan 2000 * Note 1: Customer Provided Equipment **Note2: Calibrated with the Rohde & Schwarz receiver and the HP and Gigatronics Signal Generators Note: All Equipment was in calibration at the time of test. Client: AeroComm, Inc. Report #: 9200-02-A Model: 504830202 Issue Date: 5/22/00 Page 6 of 31 Exhibit III Equipment Under Test Information and Data TEST ITEM CONDITION: The equipment to be tested was received in good condition. TESTING ALGORITHM: The EUT was driven with a –60 to –50 dBm input signal level. The worst case emissions are recorded in the data tables. CONDUCTED EMISSION TESTING: The EUT was placed on a 0.1 meter high, non-conductive pallet. Power was provided to the EUT through a LISN bonded to a 3 X 2 meter ground plane. The LISN and peripherals were supplied power through a filtered AC power source. The output of the LISN was connected to the input of the receiver and emissions in the range 450kHz to 30 MHz were measured. The measurements were recorded using the quasi-peak values, and the resolution bandwidth during testing was 9kHz. All data for conducted emissions is found in Exhibit VI. RADIATED EMISSIONS: SPURIOUS EMISSIONS TESTING The EUT was tested at a distance of 3 meters. The emissions were maximized by rotating the table and raising/lowering the antenna mounted on a 4 meter mast. Cable and peripheral positions were also varied to produce maximum emissions. Both horizontal and vertical field components were measured. The output of the antenna was connected to the input of the receiver and emissions were measured in the range 30MHz to 8.5 GHz. The measured values up to 1GHz with a resolution bandwidth of 120KHz are quasi-peak readings made at 3 meters. Emissions from 1 GHz to 8.6 GHz were measured with a resolution bandwidth of 1 MHz and placed in the average detector mode. All data for radiated spurious emissions is found in Exhibit VII. RADIATED SPURIOUS EMISSION ANTENNA PORT TESTING: The EUT was tested near the spectrum analyzer and source signal generators with the shortest available length cables to insure correct data collection. The output of the EUT was connected to the EMI receiver input port and the emissions were measured as shown in Exhibit VII. Client: AeroComm, Inc. Report #: 9200-02-A Model: 504830202 Issue Date: 5/22/00 Page 7 of 31 INTERMODULATION DISTORTION AND EMISSIONS MASK TESTING: The EUT was tested by the use of 3 signal generators, 2 combiners, and 3 isolators in line with each signal generator. The output of the EUT was connected to the receiver and the emissions were measured as shown in Exhibit VIII. CALCULATION OF DATA #1: RADIATED EMISSIONS - The antenna factors (including cable losses) of the biconical antennas were used along with the pre-amplifier gain, which were entered into the memory of the receiver. The receiver uses these values to correct the reading for amplitude automatically. The field strength reading taken directly from the receiver and compared to the FCC limits in dBuV/m. The following equation is used to convert to uV/m: E uV/m = antilog(E dBuV/m /20) SAMPLE OF FIELD STRENGTH CALCULATION: Ea =Va + AF + Ae + (-AG) Where Ea = Field Strength(dBuV/m) Va= 20 x log10 (Measure RF voltage, uV) Ae= Cable Loss Factor, dB AG= Amplifier Gain, dB AF= Anten…

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Test Setup Photos

Figure 1: Radiated Emissions Test Photo Figure 2: Conducted Emissions Photo

Contact Information

Applicant

Lee Masoiam(President)
301 540-0700Fax: 301 540-5743

Technical Contact

F-Squared laboratoriesDale E Royston
[email protected]301-253-4500

9890-A Main Street Β· Damascus, Maryland Β· United States

Non-Technical Contact

F- Squared LaboratoriesKaren Worthington
[email protected]301-253-4500

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
190821 MHz - 824 MHz500.00 mWF3E0E-10 Amp

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