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SNY-GP850Acellular telephone booster amplifier

Pacifica International
cellular telephone booster amplifier - FCC ID SNY-GP850A - Pacifica International
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Mar 10, 2005
Application Purpose
Original Equipment
Date of Application
Nov 28, 2004
Equipment Note
cellular telephone booster amplifier
Frequency Range
1850.00000000 - 1910.00000000
Company
Pacifica International
Country
United States

Documents & Files

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Users Manual

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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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RF Exposure Info

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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

GEL Report File PI_01-2004 User Manual FCC ID SNY-GP850A Glen Ellen Laboratories 1 November 20, 2004 User Manual Model Numbers GP850A, G850A and P1900A Farsight GP850A 12 VDC Antenna Cell phone Cellular adapter Antenna cable Automobile 1. Install the booster either under the dash board or under seat so you can easily access to the ON/OFF and Hi/Lo band switches. Avoid direct sunlight to the unit. 2. Be sure the booster ON/OFF switch is at the OFF position and the HI/LO switch is at LO position. Plug the cigarette lighter adapter to the car cigarette lighter plug and the other end of the adapter cable to the booster DC jack input marked “12VDC”. 3. Connect the antenna cable with the TNC male connector to the booster TNC female connector marked “ANTENNA”. Screw the connector until it is tight and firm. Then place the antenna on the car roof top. 4. Connect the cell phone antenna adapter with the TNC male to the booster antenna TNC female connector input marked “PHONE” and the other end to the phone. 5. Turn the ON/OFF switch to the ON position. Observe the signal bar on the cell phone. It should be either the same or increase by one or two bars. If it decreases, switch the HI/LO switch to HI position. If the signal bar is still low, re-check the installation again. Note: Typically signal bar will change within 10-20 sec. Notes: If a roof mount antenna is used, it should be located near the center of the roof to optimize the antenna performance. If a glass mount antenna is used, it should be located according to the manufacturer’s recommendation. Typically it will be located near the top of the rear window. Antennas should be located at least a 12” from obstructions and other radiating elements. GEL Report File PI_01-2004 User Manual FCC ID SNY-GP850A Glen Ellen Laboratories 2 November 20, 2004 Boat 1. Install the booster in a dry area where the water can not get to the unit. It can be in the instrument console or anywhere nearby. To minimize the signal loss from the phone to the booster, the cell phone adapter cable should not be longer 6 feet. Avoid direct sunlight to the unit. 2. Be sure the booster ON/OFF switch is in the OFF position and the HI/LO switch is at LO position. Plug the cigarette lighter adapter cable to the cigarette lighter plug or any 12 DC voltage source and the other end of the adapter cable to the booster DC jack input marked “12VDC”. 3. Connect the antenna cable with the TNC male connector to the booster TNC female connector marked “ANTENNA”. Be sure that it is tight and firm. 4. Install the antenna according to the manufacturer instructions. The antenna should be located at the highest point in the boat and should be clear of obstructions or other radiating elements. The cable length between antenna and the booster should be as short as possible to minimize the cable loss. 5. Connect the cell phone antenna adapter with the TNC male to the booster antenna TNC female connector input marked “PHONE” and the other end to the phone. 6. Turn the ON/OFF switch to the ON position. Observe the signal bar on the cell phone. It should be either the same or increase by one or two bars. If it decreases, switch the HI/LO switch to HI position. If the signal bar is still low, re-check the installation again. Note: Typically signal bar will change within 10-20 sec. GEL Report File PI_01-2004 User Manual FCC ID SNY-GP850A Glen Ellen Laboratories 3 November 20, 2004 Home or Office: A high directivity antenna is recommended. Many will use a Yagi antenna since the position between office or home and the base station tower is fixed. The 12V DC adapter for home use will connected to the booster in this case (sold separately). The cable length between antenna and the booster should be as short as possible to minimize the cable loss. 1. Install the booster in a dry and convenient area where you can easily access to the ON/OFF and HI/LO band switches. Avoid direct sunlight to the unit. 2. Be sure the booster ON/OFF switch is at the OFF position and the HI/LO switch is at LO position. 3. Connect the antenna cable with the TNC male connector to the booster TNC female connector marked “ANTENNA”. Screw the connector until it is tight and firm. 4. Install the antenna according to manufacturer installation guide. 5. Connect the cell phone antenna adapter with the TNC male to the booster antenna TNC female connector input marked “PHONE” and the other end to the phone. 6. Turn the ON/OFF switch to the ON position. Observe the signal bar on the cell phone. It should be either the same or increase by one or two bars. If it decreases, switch the HI/LO switch to HI position. If the signal bar is still low , re-check the installation again. Note: Typically signal bar will change within 10-20 sec. 7. If the Yagi antenna is used, rotate the antenna till the signal bar is at the maximum FCC User Manual Statement WARNING! This product is designed to be used with an external antenna with a maximum gain of 3 dBi or less. The use of an antenna of a higher gain is strictly prohibited and violates FCC regulations. Changes or modifications not expressly approved by the manufacturer may void the user's authority to operate the equipment. NOTICE: During transmitter operation, a minimum distance of 50cm (20 in.) shall be maintained between the antenna and personnel, in order to meet the maximum permissible exposure (MPE) limits in section 1.1310 of FCC Rules.

Users Manual

GEL Report File PI_01-2004User ManualFCC ID SNY-GP850A Glen Ellen Laboratories1January 25, 2005 User Manual Model Numbers GP850A, G850A and P1900A Farsight GP 850A 12 VDC Antenna Cell phone Cellular adapter Antenna cable Automobile 1. Install the booster either under the dashboard or under seat so you can easily access to the ON/OFF and Hi/Lo band switches. Avoid direct sunlight to the unit. 2. Be sure the booster ON/OFF switch is at the OFF position and the HI/LO switch is at LO position. Plug the cigarette lighter adapter to the car cigarette lighter plug and the other end of the adapter cable to the booster DC jack input marked “12VDC”. 3. Connect the antenna cable with the TNC male connector to the booster TNC female connector marked “ANTENNA”. Screw the connector till that it’s tight and firm. Then place the antenna on the car rooftop. 4. Connect the cell phone antenna adapter with the TNC male to the booster antenna TNC female connector input marked “PHONE” and the other end to the phone. 5. Turn the ON/OFF switch to the ON position. Observe the signal bar on the cell phone. It should be either the same or increase by one or two bars. If it decreases, switch the HI/LO switch to HI position. If the signal bar is still low, re-check the installation again. Note: Typically signal bar will change within 10-20 sec. Notes: If a roof mount antenna is used, it should be located near the center of the roof to optimize the antenna performance. If a glass mount antenna is used, it should be located according to the manufacturer’s recommendation. Typically it will be located near the top of the rear window. Antennas should be located at least a 12” from obstructions and other radiating elements. GEL Report File PI_01-2004User ManualFCC ID SNY-GP850A Glen Ellen Laboratories2January 25, 2005 Boat 1. Install the booster in the dry area where the water can not get to the unit. It can be in the instrument console or anywhere near by. To minimize the signal loss from the phone to the booster, the cell phone adapter cable should not be longer 6 feet. Avoid direct sunlight to the unit. 2. Be sure the booster ON/OFF switch is in the OFF position and the HI/LO switch is at LO position. Plug the cigarette lighter adapter cable to the cigarette lighter plug or any 12 DC voltage source and the other end of the adapter cable to the booster DC jack input marked “12VDC”. 3. Connect the antenna cable with the TNC male connector to the booster TNC female connector marked “ANTENNA”. Be sure that it’s tight and firm. 4. Install the antenna according to the manufacturer instruction. A whip marine antenna is typically used on a boat. The antenna should be located at the highest point in the boat and should be clear from obstructions or other radiating elements. The cable length between antenna and the booster should be as short as possible to minimize the cable loss. 5. Connect the cell phone antenna adapter with the TNC male to the booster antenna TNC female connector input marked “PHONE” and the other end to the phone. 6. Turn the ON/OFF switch to the ON position. Observe the signal bar on the cell phone. It should be either the same or increase by one or two bars. If it decreases, switch the HI/LO switch to HI position. If the signal bar is still low, re-check the installation again. Note: Typically signal bar will change within 10-20 sec. GEL Report File PI_01-2004User ManualFCC ID SNY-GP850A Glen Ellen Laboratories3January 25, 2005 Home or Office : The 12V DC adapter for home use will connect to the booster in this case (sold separately). The cable length between antenna and the booster should be as short as possible to minimize the cable loss. 1. Install the booster in a dry and convenient area where you can easily access to the ON/OFF and HI/LO band switches. Avoid direct sunlight to the unit. 2. Be sure the booster ON/OFF switch is at the OFF position and the HI/LO switch is at LO position. 3. Connect the antenna cable with the TNC male connector to the booster TNC female connector marked “ANTENNA”. Screw the connector till that it’s tight and firm. 4. Install the antenna according to manufacturer installation guide. 5. Connect the cell phone antenna adapter with the TNC male to the booster antenna TNC female connector input marked “PHONE” and the other end to the phone. 6. Turn the ON/OFF switch to the ON position. Observe the signal bar on the cell phone. It should be either the same or increase by one or two bars. If it decreases, switch the HI/LO switch to HI position. If the signal bar is still low, re-check the installation again. Note: Typically signal bar will change within 10-20 sec. Recommended antennas: These are the applicable antennas for GP850A, G850A and P1900A. Manufacturer: Antenna Specialists (www.antennaspecialists.com) Model numbers: APDM928.1T (2 dBi), APDM5920U (2 dBi), ASP-1890 (2 dBi), ASP-1810 (2 dBi) and ASPR1910 (2 dBi), GEL Report File PI_01-2004User ManualFCC ID SNY-GP850A Glen Ellen Laboratories4January 25, 2005 FCC User Manual Statement WARNING! This product is designed to be used with an external antenna with a maximum gain of 3 dBi or less. The use of an antenna of a higher gain is strictly prohibited and violates FCC regulations. Changes or modifications not expressly approved by the manufacturer may void the user's authority to operate the equipment. NOTICE: During transmitter operation, a minimum distance of 50cm (20 in.) shall be maintained between the antenna and personnel, in order to meet the maximum permissible exposure (MPE) limits in section 1.1310 of FCC Rules.

Cover Letter(s)

Pacifica International, LLC 1479 Georgia Court Rohnert Park, CA 94948 November 20, 2004 To Whom It May Concern: Pacifica International would like the following submitted exhibits treated as confidential material: 1. Schematic of the GP850A booster amplifier 2. Block Diagram of the GP850A 3. Operational Description of GP850A 4. Parts List/Tune Up information of GP850A We feel that the design of GP850 has a major advantage over competitors. We are also in the process of submitting for a U.S. patent. We appreciate your consideration in this matter very much. Sincerely yours, Udom Vanich Director of Product Development Pacifica International, LLC Phone: 707-588-9345 Fax: 707-996-2803 Email: [email protected]

External Photos

GEL Report File PI_01-2004External PhotographsFCC ID SNY-GP850A Glen Ellen LaboratoriesOctober 27, 2004 Output end of unit Input end showing controls available to user GEL Report File PI_01-2004External PhotographsFCC ID SNY-GP850A Glen Ellen Laboratories2October 27, 2004 Top view of assembled unit

ID Label/Location Info

GEL Report File PI_01-2004FCC ID Label TextFCC ID SNY-GP850A Glen Ellen LaboratoriesOctober 27, 2004 FCC ID Label

ID Label/Location Info

GEL Report File PI_01-2004FCC ID Label LocationFCC ID SNY-GP850A Glen Ellen LaboratoriesOctober 27, 2004 Location of the FCC ID Label backside of the unit

Internal Photos

GEL Report File PI_01-2004Internal PhotographsFCC ID SNY-GP850A Glen Ellen LaboratoriesOctober 27, 2004 View of top of PC board View of backside of PC board GEL Report File PI_01-2004Internal PhotographsFCC ID SNY-GP850A Glen Ellen Laboratories2October 27, 2004 View of inside of aluminum housing parts

RF Exposure Info

Pacifica International, LLC 1479 Georgia CourtRohnert Park, CA 94928 Tel 707-318-6166Fax 707-588-9345 udom@pacifica_international.com January 25, 2005 To: Stan Lyles FCC Application Processing Branch Re:FCC ID SNY-GP850A Applicant:Pacifica International Correspondence Reference Number: 28328 731 Confirmation Number:EA529430 This is in response to your questions in correspondence reference # 28328 on 1/12/05. 1) Please submit out power measurements for Part 22 ERP and Part 24 EIRP. The recommended 3 dBi antenna is configured and specified as follows: 800 MHz Cellular band: The antenna gain = 3 dBi, 0.77 dBd The GP850A output power measurement at 836 MHz = 34.6 dBm Effective radiated power (ERP) at antenna = 35.37 dBd (3.44W) Effective isotropic radiated power (EIRP) at antenna = 37.51 (5.64W) 1900 MHz PCS band: The antenna gain = 3 dBi, 0.77 dBd The GP850A output power measurement at 1850 MHz = 33.3 dBm Effective radiated power (ERP) at antenna = 34.07 dBd (2.55W) Effective isotropic radiated power (EIRP) at antenna = 36.21 (4.18W) 2) Form731 has 3W for 800MHz-band - MPE evaluation must account for maximum output power listed on Form731 - please revise. RF power and Human Exposure Analysis as per 47CFR§1.1310 (revised 1/17/05) guidelines: For transmitters operating in the 824-849 MHz range, paragraph 1.1310 Table 1 limits maximum permissible exposure (MPE) to f/1500 mW/cm 2 for uncontrolled environments and f/300 mW/cm 2 for controlled environments. Therefore for the 824-894 MHz: The MPE of the uncontrolled environment = 849/1500 = 0.566 mW/cm 2 GEL Report File PI_01-2004FCC ID SNY-GP850A Glen Ellen Laboratories2January 25, 2005 The MPE of the controlled environment = 849/300 = 2.83 mW/cm 2 . For transmitters operating in the 1850-1910 MHz range, paragraph 1.1310 Table 1 limits maximum permissible exposure (MPE) to 1 mW/cm 2 for uncontrolled environments and 5 mW/cm 2 for controlled environments. We will use the uncontrolled environment specification as the worst case specification. The far field on-axis power flux density (W/m 2 ) is calculated using the following formula: S = G P T / 4πR 2 Where: S= Power density (mW/cm 2 ) G= Power gain of the antenna in the direction of interest relative to an isotropic radiator P T = Power input to the antenna (Watts) R= Distance to the center of radiation of the antenna (cm) RF power and Human Exposure Calculations of the GP850A booster The following are the calculations of RF power radiated from the 3W booster model GP850A with the 3 dBi antenna. Users may have some concern with the 3W booster in the 800 MHz cellular band and the 1900 MHz PCS band. Using the far field power flux density calculation: S = G x P t / (4π R 2 ) Where: S = power density (W/cm 2 ) at 50 cm G = Antenna gain = 3 dBi or 10 3/10 = 1.995 P t = Maximum output power from the booster in Watts For 800 MHz cellular band, P t = 34.77 dBm or 3W For 1900 MHz PCS band, P t = 33.3 dBm or 2.133W R = 50 cm or the distance from the antenna to human. The antenna is externally mounted on the car roof. GEL Report File PI_01-2004FCC ID SNY-GP850A Glen Ellen Laboratories3January 25, 2005 Calculations for 800 MHz Cellular Power density (W/cm 2 ) = (1.995 x 3) / (4x 3.14 x 50 x 50) = 0.19W/cm 2 Calculations for 1900 MHz PCS Power density (W/cm 2 ) = (1.995 x 2.133) / (4x 3.14 x 50 x 50) = 0.136W/cm 2 Human Exposure Calculations Description 800 MHz Cellular band 1900 MHz PCS band Maximum output power of the amplifier in dBm (in Watts) 34.77 dBm (3W)33.3 dBm (2.133W) Antenna Gain in dBi (linear gain)3 dBi (1.995)3 dBi (1.995) Operational Frequency824-849 MHz1850-1910MHz Minimum distance (Controlled): From radiating source for personnel aware of radio frequency equipment and who are able to limit their exposure time. (Installation Technicians) 50 cm50 cm Minimum distance (Uncontrolled): From radiating source for personnel unaware of radio frequency equipment and who are not able to limit their exposure time. (General Public) 50 cm50 cm Calculated Maximum RF Power Density from GA850A: 0.19 mW/cm 2 0.136 mW/cm 2 Maximum Permissible Exposure (MPE) in the uncontrolled environment 6 min average exposure: 0.556 mW/cm 2 1 mW/cm 2 Complies with MPE Limits:YesYes The following instructions will be placed in the User/Installation Manual instructing installers and users to maintain the minimum MPE distances during operation of the EUT: "NOTICE: During transmitter operation, a minimum distance of 50cm shall be maintained between the antenna and personnel, in order to meet the maximum permissible exposure (MPE) limits in section 1.1310 of FCC Rules." GEL Report File PI_01-2004FCC ID SNY-GP850A Glen Ellen Laboratories4January 25, 2005 3) Per 47 CFR 2.1091(d)(2) 30 min. time-averaging is not applicable for devices such as this operating in uncontrolled exposure conditions. Please revise MPE evaluation accordingly. The 30 min. time averaging was removed from the MPE table. Please see the table above. 4) As FCC ID records show for similar devices, in accordance with 47 CFR 1.1307, 2.1091, and OET 65 Suppl. C, Part 22/24 800/1900MHz devices with ERP greater than 1.5W@f<1.5GHz or 3W@f>1.5GHz are requested to perform RF exposure routine evaluation MPE testing or computer modeling. MPE estimation, e.g., per OET 65 eqn 3 is requested for devices operating in mobile RF exposure conditions and for rule parts listed in 2.1091(c) with power less than the categorical exclusion levels listed in that rule section. In this filing EMC report pp 36-39 contains 800MHz-band MPE estimation info for 3dBi antenna gain and 2.858W. This gives 3.48W ERP making device subject to MPE test or computer modeling, as described above. Note that this ERP level may change if amplifier will always be used with connecting cables having some amount of attenuation, in which case filing and device user instructions should include applicable cable and antenna details and specifications. Please revise MPE evaluation accordingly The table above revises th…

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Test Report

TEST REPORT FOR FCC PART 15 COMPLIANCE FOR PACIFICA INTERNATIONAL Pacifica International Booster Amplifier Model Numbers GP850A, G850A and P1900A Prepared by Daniel C. Swann November 20, 2004 FCC Part 22 Subpart H FCC Part 24 Subpart E FCC ID SNY-GP850A GEL Report File PI_01-2004 GLEN ELLEN LABORATORIES 1876 London Ranch Road Glen Ellen, CA 95442 707 996 8533 GEL Report File PI_01-2004 FCC ID SNY-GP850A Glen Ellen Laboratories 2November 20, 2004 MEASUREMENT/TECHNICAL REPORT Pacifica International Booster Amplifier Model Numbers GP850A, G850A, and P1900A FCC ID SNY-GP850A This report concerns:An Original Equipment Grant Equipment type:amplifier Product Description:Cellular Telephone Booster Amplifier FCC Rule Part47CFR Parts 2, 22H, 24E Frequency RangeRated RF power outputEmissions Designator 824-849 MHz2 WattsF1D, GXW, DXW 1850-1940 MHz3 WattsGXW, DXW Deferred grant requested:no Request for confidentiality:yes Transition rules per 15.37:no Report prepared by:Daniel C. Swann Glen Ellen Laboratories 1876 London Ranch Road Glen Ellen, CA 95442 (707) 996-8533 (707) 996-2803 fax [email protected] Measurements Certified by:Daniel C. Swann Date 11/20/04 GEL Report File: GEL Report File PI_01-2004 GEL Report File PI_01-2004 FCC ID SNY-GP850A Glen Ellen Laboratories 3November 20, 2004 TABLE OF CONTENTS 1GENERAL INFORMATION 1.1Product Description 1.2Tested System Details 1.3Test Methodology 1.4Test Facility 2PRODUCT LABELING AND MANUAL STATEMENT 2.1Product Labeling 2.2FCC Statement in User Manual 3SYSTEM TEST CONFIGURATION 3.1Justification 3.2EUT Operating Conditions 3.3Special Accessories 3.4Equipment Modifications 3.5Configurations of Tested System Figure 3.5.1Unintentional Radiated Emissions Test Setup Figure 3.5.2Conducted Emissions Test Setup Figure 3.5.399% Occupied Power BW Test Setup Figure 3.5.4RF Output Power and Intermodulation Test Setup 4RADIATED AND CONDUCTED EMISSIONS DATA 4.1Unintentional Radiated Emissions Data 4.2Conducted Emissions Data 4.399% Occupied Power BW Data 4.4RF Output Power and Intermodulation 4.5Field Strength Calculation for Unintentional Radiated Emissions 5HUMAN EXPOSURE ANALYSIS IN ACCORDANCE WITH 47CFR1.1310 5.1Guidelines 5.2Calculations This report contains 33 pages, and may be reproduced in full only. GEL Report File PI_01-2004 FCC ID SNY-GP850A Glen Ellen Laboratories 4November 20, 2004 1GENERAL INFORMATION 1.1Product Description The purpose of the GP850A Booster Amplifier is to boost the output power of a 0.5 watts handheld cellular phone to the maximum FCC allowed output power of 3 watts for the 800 MHz cellular band and 2 watts of the 1900 MHz PCS band. The GP850A mechanical design consists of a PCB board mounted to a finned heat sink aluminum extrusion, with the voltage regulators directly mounted to the extrusion. The bottom of the unit and the two ends, are covered with aluminum plates. The aluminum parts are painted, except for the areas of the extrusion, bottom cover and end plates that contact each other. Signal input and outputs are made with TNC connectors located on the end plates. The DC jack power connector is located on the input end of the housing, with the center at +V. The controls available to the user are the On / Off switch, and a High Band / Low Band Channel switch, located on the input end of the housing. Please see the product photographs attachment for pictures of the assembled, and disassembled, unit. The product will be marketed under three Model Numbers, utilizing the same PC board, but not loading part of the circuitry for two of the models. The operation of the units is the same, with the unused part of the circuit terminated in 50 Ohms. GP850Athe unit tested for this report, both high and low band circuits G850A the 800 MHz cellular band only, without the 1900 MHz PCS band circuitry P1900Athe 1900 MHz PCS band, without the 800 MHz cellular band circuitry The amplifier is bi-directional, but only the uplink output was tested. The downlink output was not tested because it is directly connected to the phone with an RF coax cable. The receive signal of this amplifier is a very low signal level and it operates in the -50 dBm or less region with a gain of the LNA (low noise amplifier) approx. 10 dB. GEL Report File PI_01-2004 FCC ID SNY-GP850A Glen Ellen Laboratories 5November 20, 2004 1.2Tested System Details Equipment under Test:Pacifica International Model Numbers GP850A, G850A, and P1900A. FCC ID: SNY-GP850A Manufacturer and applicant: Pacifica International 1479 Georgia Court Rohnert Park, CA 94928 GP850A Specifications UplinkDownlink Frequency:824-849 MHz (800 cellular) 1850-1910 MHz (1900 PCS) Frequency:869-894 MHz (800 cellular) 1930-1990 MHz (1900 PCS) Output power:3W max.(800 cellular) 2W max (1900 PCS) Input max power:0.5W (800 cellular) 0.2W (1900 PCS) Input max power:0 dBm NF:NANF:6 dB typical Gain:6-10 dB (800 cellular) 8-12 dB (1900 PCS) Gain:7-12 dB (800 cellular) 6-12 dB (1900 PCS) Tx-Rx isolation:35 dB minTx-Rx isolation:35 dB min Type of emissions: GXW (GSM) F1D (AMPS) DXW (TDMA/NADC) Power supply:11-20V DC Current consumption: 2 A max Standby current: < 600 mA Storage temperatures:-10 to +80C Operating temperatures:-10 to +50C In line fuse3A Connector type:TNC female Weight:1 lb Dimension: 1.25”x 4.5”x 3.75” Tested by:Daniel Swann Glen Ellen Laboratories 1876 London Ranch Road Glen Ellen, CA 95442 (707) 996-8533 [email protected] GEL Report File PI_01-2004 FCC ID SNY-GP850A Glen Ellen Laboratories 6November 20, 2004 1.3Test Methodology The radiated tests were performed in accordance with 47CFR Parts 2, 22, 24, ANSI C63.4- 2001, CISPR 22, EN55022, CISPR 16. See Figure 3.1 and the photographs for details of the test setup. Radiated testing was performed at an antenna to EUT distance of 3 meters. 1.4Test Facility The facility is located near the town of Glen Ellen, California, at the street address of 1876 London Ranch Road. The open field test site consists of a 10 by 20 meter area of galvanized hardware clot…

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Test Report

GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 1 October 27, 2004 99% Occupied Power Bandwidth Plots Pacifica International Booster Amplifier Model Number GP850A Please Note: FM is modulated with a 2.5 kHz sinewave +/- 8 kHz peak frequency deviation GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 2 October 27, 2004 Carrier Frequency 824.0 MHz, Modulation TDMA, Input Carrier Frequency 824.0 MHz, Modulation TDMA, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 3 October 27, 2004 Carrier Frequency 836.0 MHz, Modulation TDMA, Input Carrier Frequency 836.0 MHz, Modulation TDMA, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 4 October 27, 2004 Carrier Frequency 849.0 MHz, Modulation TDMA, Input Carrier Frequency 849.0 MHz, Modulation TDMA, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 5 October 27, 2004 Carrier Frequency 824.0 MHz, Modulation GSM, Input Carrier Frequency 824.0 MHz, Modulation GSM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 6 October 27, 2004 Carrier Frequency 836.0 MHz, Modulation GSM, Input Carrier Frequency 836.0 MHz, Modulation GSM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 7 October 27, 2004 Carrier Frequency 849.0 MHz, Modulation GSM, Input Carrier Frequency 849.0 MHz, Modulation GSM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 8 October 27, 2004 Carrier Frequency 824.0 MHz, Modulation FM, Input Carrier Frequency 824.0 MHz, Modulation FM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 9 October 27, 2004 Carrier Frequency 836.0 MHz, Modulation FM, Input Carrier Frequency 836.0 MHz, Modulation FM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 10 October 27, 2004 Carrier Frequency 849.0 MHz, Modulation FM, Input Carrier Frequency 849.0 MHz, Modulation FM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 11 October 27, 2004 Carrier Frequency 1.850.0 MHz, Modulation TDMA, Input Carrier Frequency 1.850.0 MHz, Modulation TDMA, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 12 October 27, 2004 Carrier Frequency 1.880.0 MHz, Modulation TDMA, Input Carrier Frequency 1.880.0 MHz, Modulation TDMA, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 13 October 27, 2004 Carrier Frequency 1.910.0 MHz, Modulation TDMA, Input Carrier Frequency 1.910.0 MHz, Modulation TDMA, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 14 October 27, 2004 Carrier Frequency 1.850.0 MHz, Modulation GSM, Input Carrier Frequency 1.850.0 MHz, Modulation GSM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 15 October 27, 2004 Carrier Frequency 1.880.0 MHz, Modulation GSM, Input Carrier Frequency 1.880.0 MHz, Modulation GSM, Output GEL Report File PI_01-2004 99% Occupied Bandwidth Plots FCC ID SNY-GP850A Glen Ellen Laboratories 16 October 27, 2004 Carrier Frequency 1.910.0 MHz, Modulation GSM, Input Carrier Frequency 1.910.0 MHz, Modulation GSM, Output

Test Report

TEST REPORT FOR FCC PART 15 COMPLIANCE FOR PACIFICA INTERNATIONAL Pacifica International Booster Amplifier Model Numbers GP850A, G850A and P1900A Prepared by Daniel C. Swann December 11, 2004 FCC Part 22 Subpart H FCC Part 24 Subpart E FCC ID SNY-GP850A GEL Report File PI_01-2004 GLEN ELLEN LABORATORIES 1876 London Ranch Road Glen Ellen, CA 95442 707 996 8533 GEL Report File PI_01-2004 FCC ID SNY-GP850A Glen Ellen Laboratories 2 December 11, 2004 MEASUREMENT/TECHNICAL REPORT Pacifica International Booster Amplifier Model Numbers GP850A, G850A, and P1900A FCC ID SNY-GP850A This report concerns: An Original Equipment Grant Equipment type: amplifier Product Description: Cellular Telephone Booster Amplifier FCC Rule Part 47CFR Parts 2, 22H, 24E Frequency Range Rated RF power output Emissions Designator 824-849 MHz 3 Watts F1D, GXW, DXW, F9W 1850-1940 MHz 2 Watts GXW, DXW, F9W Deferred grant requested: no Request for confidentiality: yes Transition rules per 15.37: no Report prepared by: Daniel C. Swann Glen Ellen Laboratories 1876 London Ranch Road Glen Ellen, CA 95442 (707) 996-8533 (707) 996-2803 fax [email protected] Measurements Certified by: Daniel C. Swann Date 12/11/04 GEL Report File: GEL Report File PI_01-2004 GEL Report File PI_01-2004 FCC ID SNY-GP850A Glen Ellen Laboratories 3 December 11, 2004 TABLE OF CONTENTS 1 GENERAL INFORMATION 1.1 Product Description 1.2 Tested System Details 1.3 Test Methodology 1.4 Test Facility 2 PRODUCT LABELING AND MANUAL STATEMENT 2.1 Product Labeling 2.2 FCC Statement in User Manual 3 SYSTEM TEST CONFIGURATION 3.1 Justification 3.2 EUT Operating Conditions 3.3 Special Accessories 3.4 Equipment Modifications 3.5 Configurations of Tested System Figure 3.5.1 Unintentional Radiate…

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Contact Information

Applicant

Udom Vanich
[email protected]707-5889345Fax: 707-996-2803

Test Firm

Glen Ellen LaboratoriesDaniel Swann
[email protected]707-996-8533Fax: 707-996-2803

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
524E1.85 GHz - 1.91 GHz1.175 WDXWAmp
Confidentiality
Long Term