
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
CSI Bi-Directional Amplifier Table Of Contents Product Registration/Certification Information................ 1 Safety Guidelines.......................................................... 1 Product Information....................................................... 2 Pin-Out Chart ................................................... 2 LED Indicators .................................................. 2 Mechanical Outline Drawing ............................. 3 Installation..................................................................... 4 Important Safety Information.......................................... 5 Performance Adjustment...............................................6-17 View Menu Series............................................ 7-11 View Menu Flow Diagram................................. 7 Edit Menu Series .............................................12-17 Edit Menu Flow Diagram.................................. 12 Troubleshooting............................................................. 18 Product Warranty.......................................................... 19 - 1 - The serial number may be found on the label on the rear panel of the unit. For your convenience, note this number below. Retain this manual, along with proof of purchase, to serve as a permanent record of your purchase for future reference or in the event of theft. Product Certification/Registration Information Safety Guidelines The general safety information in this guideline applies to both operat- ing and service personnel. Specific warnings and cautions will be found in other parts of this manual where they apply, but may not appear in this summary. Failure to comply with these precautions or specific warnings elsewhere in the manual violates safety standards of design, manufacture, and intended use of equipment. Cellular Specialties, Inc. assumes no liability for the customer’s failure to comply with these requirements. Grounding This amplifier system is designed to operate from 120 Vac @ 1.3A maxpower and should always be operated with the ground wire properly connected. Do not remove or otherwise alter the grounding lug on the power cord. Explosive Atmospheres This product has an integral circuit breaker, which may cause an electrical flash if the breaker should reset. To avoid explosion or fire, do not operate this product in the presence of flammable gases or fumes. Lightning Danger Do not install or make adjustments to this unit during an electrical storm. No User Serviceable Parts Inside HAZARDOUS VOLTAGES ARE PRESENT WHEN THE COVER IS REMOVED. Opening the chassis will void your warranty. If you suspect a malfunction with this product, call your dealer or the Cellular Specialties Support Line at (603) 626-6677. DISCLAIMER: All information and statements contained herein are accurate to the best of the knowledge of Cellular Specialties, Inc. (CSI), but Cellular Specialties makes no warranty with respect there to, including without limitation any results which may be obtained from the products described herein or the infringement by such products of any proprietary rights of any persons. Use or application of such information or statements is at the users sole risk, without any liability on the part of Cellular Specialties, Inc. Nothing herein shall be construed as license or of recommendation for use, which infringes upon any proprietary rights of any person. Product material and specifications are subject to change without notice. Specialties’ standard terms of sale and the specific terms of any particular sale. MODEL NUMBERSERIAL NUMBERDATE OF PURCHASE POINT OF SALE COMPANY - 2 - Product Description Cellular Specialties, Inc. (CSI) developed the LCD Model Bi-Directional Amplifier (BDA) for use in enclosed structures where sufficient signal from local cell sites to operate cell phones was unavailable within the building. It is necessary that sufficient signal be available on the roof of the structure. The BDA is connected to an external antenna, usually on the roof, and to one or more internal antennas placed strategically throughout the area where phone service is desired. The external antenna is usually a directional type such as a “yagi”. Internal antennas are usually omnidirectional, although various other types may be used for certain installations. The BDA amplifies both the “uplink” (phone to tower) and “downlink” (tower to phone) signals thus facilitating communications to and from the local cell site. There are seven amplification stages on the downlink and seven on the uplink for a total of +62 to +80 dB nominal gain for each link. Gain can be set using the LCD display and select/up/down switches. There are also LED indicators on the top cover for power overload and gain reduction to prevent oscillation. An automatic amplifier safety shutdown circuit is also incorporated that will disable the transmit- ters should the uplink or downlink overloads be reached to prevent excessive intermodulation and oscillation. The amplifier will periodically attempt to recover from this condition. The BDA is equipped with an interface connector (RJ-15) designed for use with an optional remote monitor. A second Connector (RJ-11) is used for remote monitoring and shutdown. The RJ-11 pin-out is listed here. •Pins 3 & 4 will toggle from open to closed with faults. •Pin 1 (5 Volts) can be tied to Pin 5 to shut the unit down. LED Indicators Warning:The unit has sensed instability due to insufficient isolation between the inside antenna and the outside antenna, and has reduced the gain of the amplifier. This is done to prevent oscilla- tion, which can interfere with the handsets in the covered area and/or the wireless service provider’s base station. Fault:The gain of the unit has been reduced to a minimum in order (Red) to prevent very strong input signals from overloading the amplifier. The amplifier will attempt to recover from this condi- tion, initially at fifteen second intervals and then at four-…
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21 June 2006 Federal Communications Commission Office of Engineering and Technology 7435 Oakland Mills Rd. Columbia, MD 21046 Subject: Request for Confidentiality Dear Sir or Madam: Cellular Specialties, Inc. respectfully requests that the schematic diagrams, block diagram, and circuit descriptions submitted with the application for certification under FCC ID NVRCSI510-AP be withheld from public disclosure. This request is made under the provisions of Section 0.457 (d) of the Commission’s rules and Section 0.552 (b) (4) of the Freedom of Information Act. This product has been developed at considerable expense, and disclosure of this information would place Cellular Specialties, Inc. at a competitive disadvantage. Thank you for your attention to this matter. Sincerely yours, Burt Salkins Burt Salkins Director of Engineering
MODEL 510 DUAL Bi-DIRECTIONAL AMPLIFIER FCC ID LABEL FCC ID NVRCSI510-AP IC: 4307A-510AP This device complies with parts 22 and/or 24 and part 2 of the FCC rules and Industry Canada specification RSS-131.
June 21, 2006 Mr. Scott Wentworth Retlif Laboratories 101 New Boston Rd. Goffstown, NH 03045 Re: Adjustment of the Model 510-AF/PF In-building Amplifier in the Field The CSI Model 510-AF/PF In-Building Amplifier offers only adjustment of gain (below its factory-set maximum gain level) to the technician during installation and maintenance activities. This adjustment is dependent on the physical environment in which the amplifier is to be installed and is described in the Installation and Users Manual. This is the only adjustment accessible without opening the amplifier. Frequency response and gain thresholds are factory set and in no circumstance are they to be adjusted in the field. Regards, Burt Salkins Burt Salkins Director of Engineering
Evaluation of the CSI Model 510-AP BDA For Compliance with FCC Guidelines For Human Exposure to Radio Frequency Electromagnetic Fields 22 June 2006 General The CSI Model 510-AP Bi-directional amplifier is considered to be a dual-band “mobile” device operating in both the Cellular Service authorized under subpart H of part 22 and in the Personal Communication Service authorized under part 24. As such, the equipment is required to be evaluated for RF exposure if operated below 1.5 GHz with an effective radiated power (ERP) of 1.5 watts or more or if operated above 1.5 GHz with an effective radiated power (ERP) of 3.0 watts or more, as defined in 2.1091 of FCC rules. Downlink For the downlink portion of the Model 510-AP BDA, the maximum rated output power is +26dbm (398 mW) in the Cellular Band (<1.5 GHz) and 21 dBm (126 mW) in the PCS band (>1.5 GHz). As stated in the Model 510-AP Manual, the maximum authorized indoor antenna gain is 3 dBi, corresponding to a typical Multi-Band Omni-Directional antenna. The Table below shows the results of the calculated ERP for both cases, neglecting cable losses. Frequency Power Out Ant Gain EIRP ERP Limit 869-894 MHz 26 dBm 3 dBi 29 dBm 485 mW 1.5 W 1930-1990 MHz 21 dBm 3 dBi 24 dBm 153 mW 3.0 W In both the above cases the ERP is well below the allowable limits excluding the downlink from routine evaluation. The Cautions in the Model 510-AP manual clearly define the antenna selection and installation criteria in order to maintain a minimum 20-centimeter separation. Uplink For the downlink portion of the Model 510-AP BDA, the maximum rated output power is +26dbm (398 mW) in the Cellular Band (<1.5 GHz) and 21 dBm (126 mW) in the PCS band (>1.5 GHz). As stated in the Model 510-AP Manual, the maximum authorized outdoor antenna gain is 11 dBi, corresponding to a typical Multi-Element Yagi- Directional antenna. The Table below shows the results of the calculated ERP for both cases, neglecting cable losses. Frequency Power Out Ant Gain EIRP ERP Limit 824-849 MHz 26 dBm 11 dBi 37 dBm 3050 mW 1.5 W 1850-1910 MHz 21 dBm 11 dBi 32 dBm 966 mW 3.0 W As shown in the above table, only the Cellular (824-849) exceeds the allowable limit and must be evaluated for minimum separation distances in order to comply with the exposure limits of 1.1310 of the FCC rules. Using the guidelines in FCC OET Bulletin 65 and Supplement C, the power density at a reasonable distance from the maximum gain antenna was calculated. The minimum safe distance was also determined based on the uncontrolled exposure limits defined in Table 1B of FCC rules 1.1311. The following assumptions are made concerning these calculations: Po = 398 mw average Cable Loss = 0 dB Ant Gain = 11 dBi Frequency = 836.5 MHz + 12.5 MHz Main Beam (worst-case) Rooftop 100% reflection Reasonable Distance = 4 feet (120 cm) Therefore, from OET Bulletin 65, S = (PG)/4πR 2 or S = EIRP/4πR 2 For 100% reflection, a doubling of the field strength can be expected. The above equation can be modified to, S = (2) 2 PG/4πR 2 = EIRP/πR 2 Solving for S at a distance of 4 feet (120 cm) gives, S = (398) (12.6)/ π (120) 2 = 0.11 mw/cm 2 From FCC rules 1.1311, Table 1B, the allowable limit for uncontrolled exposure is f(MHz) / 1500. At 836.5 MHz this corresponds to a level of 0.56 mw/cm 2 . The calculated value of 0.11 is below the limit of 0.56 thereby showing compliance under worst-case operating conditions. When the above equation is solved for minimum separation at the exposure limit, R = √(398) (12.6)/ π (0.54) = 54 cm (1.8 feet). As in the case of the downlink, the Cautions in the Model 510-AP manual clearly define the antenna selection and installation criteria in order to maintain a conservative 4-foot separation.
Test Report No. R-4609N-1 FCC ID: NVRCSI510-AP REPORT OF MEASUREMENTS FOR CELLULAR SPECIALTIES, INC. DUAL BAND BIDIRECTIONAL AMPLIFIER MODEL: CSI-BDA51062-C/P FCC ID: NVRCSI510-AP Test Report No. R-4609N-1 FCC ID: NVRCSI510-AP CERTIFICATION APPLICATION Applicant/Manufacturer: Cellular Specialties 670 North Commercial Street Manchester, NH 03101 Equipment under Test (EUT): The EUT is a Dual Band Bidirectional Amplifier used to amplify cellular signals in the Cellular & PCS bands. Model: CSI-BDA51062-C/P FCC ID Number: FCC ID: NVRCSI510-AP Applicable Test Standard: FCC Parts 2, 22, Subpart E & 24, Subpart H Device Classification: Mobile EUT Frequency Range PCS Band: Uplink: 1850MHz TO 1910MHz Downlink: 1930MHz TO 1990MHz EUT Frequency Range Cellular Band: Uplink: 824MHz TO 849MHz Downlink: 869MHz TO 894MHz Power Output Rating Based Cellular Band Uplink: 396mW on max input single channel Cellular Band Downlink: 398mW (For Certification Grant): PCS Band Uplink: 125mW PCS Band Downlink: 126mW Modulation Type: CDMA, TDMA, FM (covers GSM and F1D) RF Exposure + Antenna Installation: See Attached Installation/Users Manual and MPE Evaluation Power Ratings Per Channel: See Power Per Channel Test Data Measurements Required by FCC: See Report Section 1 (Summary of Test Program) and the following Test Report Data Attachments: -RF Power Output -Intermodulation Characteristics (Two-Tone) -Occupied Bandwidth -Spurious Emissions at Antenna Terminals -Effective Radiated Power of Spurious Radiation -Frequency Stability Test Report No. R-4609N-1 FCC ID: NVRCSI510-AP SECTION 1 SUMMARY OF TEST PROGRAM INTERMODULATION CHARACTERISTICS (TWO TONE) Measurement Procedure: Two signals were injected, in turn, to each uplink and downlink frequency band via a two way power combiner. Testing was performed at both the low band edge and high band edge of each pass band. The output of each signal generator was adjusted so that the two output fundamental frequencies were equal in magnitude. Testing was performed for TDMA, CDMA and FM (Covers GSM and F1D) Modulation types. At the maximum specified input power levels all intermodulation products were at -13dBm or below for each modulation. See attached test data. OCCUPIED BANDWIDTH Measurement Procedure: For Occupied Bandwidth, measurements were made to compare the input signal to the output signal. The signal generator output was connected to the spectrum analyzer. A TDMA modulation signal was then applied to the carrier. Waveforms were then noted on an X-Y plot. Next, the signal generator was connected to the EUT and the output of the EUT was connected to the spectrum analyzer. The output waveform after amplification was then compared to the original input signal to ensure that no significant differences occurred between the input signal and the amplified signal. Testing was performed at two frequencies within each passband (uplink and downlink). Testing was repeated for CDMA and FM (Covers GSM and F1D) Modulation Types. See Occupied Bandwidth Data. An explanation of the data is as follows: There are two signals superimposed on each plot, one signal is the waveform before modulation, the other is the modulated carrier. In each case the center of the grid shows a narrowband signal projecting out from the center of the modulation envelope. This signal is actually the stored unmodulated signal. Test Report No. R-4609N-1 FCC ID: NVRCSI510-AP SPURIOUS EMISSIONS AT ANTENNA TERMINALS Measurement Procedure: The signal generator output was connected in turn to the uplink and downlink input ports of the EUT. The input power level was at the maximum level which was ascertained during the Power Output test. A spectrum analyzer was connected to the output of the EUT. The input test frequencies used were three frequencies within each passband (uplink and downlink). The level of any spurious emission was recorded. Testing was performed in the frequency range of 30MHz to 20GHz. Testing was performed for TDMA, CDMA and FM modulation types. The spurious emissions limit is -13dBm as specified in FCC Parts 22 & 24. All emissions were below the specified -13dBm limit. See attached test data. EFFECTIVE RADIATED POWER OF SPURIOUS RADIATION Measurement Procedure: The test sample was placed on a 80cm high wooden test stand which was located 3 meters from the test antenna on an FCC listed test site. A signal generator was connected to the input of the amplifier. The signal generator output was set to provide the input power level necessary to achieve maximum output power of the amplifier at 3 frequencies within each passband (uplink and downlink). The effective radiated power of each out of band spurious emission was measured using the substitution method specified in TIA/EIA-603. The frequency range of the test was 30MHz – 20GHz. The limit for out of band spurious emissions is -13dBm as specified in Parts 22 & 24. All emissions were below the specified -13dBm limit. See attached test data. RF POWER OUTPUT A signal generator was connected in turn to the uplink and downlink input ports of the test sample. The signal generator was set to maximum input rating and the amplifier was operating at maximum gain. The maximum single channel output power for both the uplink and downlink was measured with a spectrum analyzer connected to the output port. The maximum measured output power in the cellular band frequency ranges of 824MHz to 849MHz (uplink) and 869MHz to 894MHz (downlink) was 26dBm (398mW) and the maximum measured output power in the PCS frequency ranges of 1850MHz to 1910MHz (uplink) and 1930MHz to 1990MHz (downlink) was 21dBm (126mW) which matched the manufacturer’s rated output power. See attached test data. FREQUENCY STABILITY MEASUREMENTS As the test sample is designed to amplify input signals from a cellular network and contains no frequency determining components frequency stability measurements were not required/performed. Test Report No. R-4609N-1 FCC ID: NVRCSI510-AP SECTION 2 EQUIPMENT LI…
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Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 FCC Part 2Cellular Specialties, Inc. Dual Band Bidirectional Amplifier CC060002 CSI-BDA51062-C/P Data Sheet 1 of 96 Amps Band - TDMA - DownlinkAmplifying input signal RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation Characteristics Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Cellular Specialties, Inc. Paragraph: 2.1047 FCC Part 2 Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 Amplifying input signalAmps Band - TDMA - Downlink Data Sheet 2 of 96 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation Characteristics Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Paragraph: 2.1047 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsAmplifying input signalFCC Part 2Cellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 Amps Band - TDMA - Downlink Data Sheet 3 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Paragraph: 2.1047 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 Amplifying input signalAmps Band - TDMA - DownlinkFCC Part 2 Data Sheet 4 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 FCC Part 2CSI-BDA51062-C/P CC060002 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier Amplifying input signalAmps Band - TDMA - Downlink Data Sheet 5 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 FCC Part 2 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 Data Sheet 6 of 96 Amplifying input signalAmps Band - TDMA - Downlink Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2Amplifying input signalAmps Band - TDMA - Downlink Data Sheet 7 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2Amplifying input signalAmps Band - TDMA - Downlink Data Sheet 8 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Data Sheet 9 of 96 Amps Band - CDMA - DownlinkAmplifying input signalFCC Part 2CSI-BDA51062-C/P CC060002 Cellular Specialties, Inc. Dual Band Bidirectional Amplifier Intermodulation Characteristics EMISSIONS DATA SHEE T RETLIF TESTING LABORATORIES Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Data Sheet 10 of 96 Amps Band - CDMA - DownlinkAmplifying input signalFCC Part 2 Paragraph: 2.1047 CSI-BDA51062-C/P CC060002 Cellular Specialties, Inc. Dual Band Bidirectional Amplifier Intermodulation Characteristics EMISSIONS DATA SHEE T RETLIF TESTING LABORATORIES Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Data Sheet 11 of 96 Amps Band - CDMA - DownlinkAmplifying input signal Paragraph: 2.1047 FCC Part 2CSI-BDA51062-C/P CC060002 Cellular Specialties, Inc. Dual Band Bidirectional Amplifier Intermodulation Characteristics EMISSIONS DATA SHEE T RETLIF TESTING LABORATORIES Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Data Sheet 12 of 96 Amps Band - CDMA - DownlinkAmplifying input signalFCC Part 2 Paragraph: 2.1047 CSI-BDA51062-C/P CC060002 Cellular Specialties, Inc. Dual Band Bidirectional Amplifier Intermodulation Characteristics EMISSIONS DATA SHEE T RETLIF TESTING LABORATORIES Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Data Sheet 13 of 96 Amps Band - CDMA - DownlinkAmplifying input signalFCC Part 2CSI-BDA51062-C/P CC060002 Cellular Specialties, Inc. Dual Band Bidirectional Amplifier Intermodulation Characteristics EMISSIONS DATA SHEE T RETLIF TESTING LABORATORIES Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Data Sheet 14 of 96 Amps Band - CDMA - DownlinkAmplifying input signalFCC Part 2CSI-BDA51062-C/P CC060002 Cellular Specialties, Inc. Dual Band Bidirectional Amplifier Intermodulation Characteristics EMISSIONS DATA SHE…
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Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation Characteristics Data Sheet 22 of 96 Amps Band - FM - DownlinkAmplifying input signalCellular Specialties, Inc. Dual Band Bidirectional Amplifier CC060002 CSI-BDA51062-C/PFCC Part 2 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsAmplifying input signalAmps Band - FM - Downlink Data Sheet 23 of 96 FCC Part 2 Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 Cellular Specialties, Inc. Paragraph: 2.1047 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Amps Band - TDMA - Uplink Data Sheet 24 of 96 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsAmplifying input signalFCC Part 2Cellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 Paragraph: 2.1047 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Amps Band - TDMA - UplinkFCC Part 2 Data Sheet 25 of 96 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 Amplifying input signal Paragraph: 2.1047 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Amplifying input signalAmps Band - TDMA - Uplink Data Sheet 26 of 96 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier FCC Part 2CSI-BDA51062-C/P CC060002 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 CSI-BDA51062-C/P CC060002 Data Sheet 27 of 96 Amplifying input signalAmps Band - TDMA - Uplink RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier FCC Part 2 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode: R-4609N-1 Amplifying input signalAmps Band - TDMA - Uplink Data Sheet 28 of 96 CSI-BDA51062-C/P CC060002 FCC Part 2 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 Amplifying input signalAmps Band - TDMA - Uplink Data Sheet 29 of 96 CSI-BDA51062-C/P CC060002 FCC Part 2 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2Amplifying input signalAmps Band - TDMA - Uplink Data Sheet 30 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2 Paragraph: 2.1047 Amplifying input signalAmps Band - TDMA - Uplink Data Sheet 31 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2 Paragraph: 2.1047 Amplifying input signalAmps Band -CDMA - Uplink Data Sheet 32 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2 Paragraph: 2.1047 Amplifying input signalAmps Band -CDMA - Uplink Data Sheet 33 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2Amplifying input signalAmps Band -CDMA - Uplink Data Sheet 34 of 96 Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation CharacteristicsCellular Specialties, Inc. Dual Band Bidirectional Amplifier CSI-BDA51062-C/P CC060002 FCC Part 2Amplifying input signalAmps Band -CDMA - Uplink Data Sheet 35 of…
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Test Method:Customer: Test Sample: Job No: R-4609N-1 Model No: Serial No: Technician: M.Seamans Test Specification: Paragraph: 2.1047 Date: 8/16/2006 Operating Mode:Notes: R-4609N-1 FCC Part 2Cellular Specialties, Inc. Dual Band Bidirectional Amplifier CC060002 CSI-BDA51062-C/P Data Sheet 43 of 96 Amps Band -FM - UplinkAmplifying input signal RETLIF TESTING LABORATORIES EMISSIONS DATA SHEE T Intermodulation Characteristics Test Method:Customer: Test Sample: Job No: R-…
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101 New Boston Road · Goffstown, New Hampshire · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 12 | 24E | 1.93 GHz - 1.99 GHz | 126.00 mW | GXW | Amp |

700/800 MHZ DUAL BAND INDUSTRIAL BOOSTER
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
AWS Repeater
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
The Co-Pilot Beacon C4
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
THE CO-PILOT BEACON P4
Equipment Class
PCB - PCS Licensed Transmitter
The Co-Pilot Beacon
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter