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Q8KCELLPCS2W80NRigBooster PRO, Dual Band Outdoor BDA

G-Way Solutions, LLC
RigBooster PRO, Dual Band Outdoor BDA - FCC ID Q8KCELLPCS2W80N - G-Way Solutions, LLC
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Application Details

Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
Date of Grant
Mar 28, 2015
Application Purpose
Original Equipment
Date of Application
Mar 28, 2015
Equipment Note
RigBooster PRO, Dual Band Outdoor BDA
Frequency Range
1930.00000000 - 1990.00000000
Company
G-Way Solutions, LLC
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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Operational Description

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Parts List/Tune Up Info

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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

Installation and Operating Manual RigBooster PRO, Dual Band Outdoor BDA BDA‐CELLAB/PCSF‐2/2W‐80‐OCA1 Page | 2 TABLE OF CONTENTS PARAGRAPH PAGE NO BDA OVERVIEW 3 BDA BLOCK DIAGRAM DESCRIPTION 3 OPTIONAL EQUIPMENT OVERVIEW 3 BDA BLOCK DIAGRAM DRAWING (Figure 1) 4 ELECTRICAL SPECIFICATIONS 5 FREQUENCY RANGES (Table 1) 6 MECHANICAL SPECIFICATIONS 7 ENVIRONMENTAL CONDITIONS 7 RF EXPOSURE WARNING 7 BDA CONNECTIONS 8 MECHANICAL OUTLINE DRAWING (Figure 3) 9 CONTROL PANEL CONFIGURATION (Figure 4) 10 BDA OPERATION 11 BDA INSTALLATION 12 DIAGNOSTICS GUIDE 13 Page | 3 BDA OVERVIEW: The BDA assembly enhances the coverage area of radio communications in buildings and RF shielded environments. The unit features low noise figure and wide dynamic range. It is a multi-block system, based on a dual-duplexed (quadruplexer) path configuration with sharp out of band attenuation allowing improved isolation between the receiving and transmitting paths, plus Cellular and PCS paths. BDA CIRCUIT DESCRIPTION: Refer to Figure 1 for the following discussion. The BDA-CELLAB/PCSF-2/2W-80-OCA1 Downlink path receives RF signals from the base station, amplifies the signal and transmits the signal, without changing the frequency, into a Distributed Antenna System at the direction of the mobiles. The signal travels over a DAS medium that then dissipates the signal to the Mobile subscribers. The BDA-CELLAB/PCSF-2/2W-80-OCA1Uplink path receives RF signals at the Mobile side from the DAS system, then amplifies it, and transmits the amplified signal (without changing the without changing the frequency) to the base station. This Dual Band BDA supports two Uplink and two Downlink, CELL AB and PSC Full occupy distinct dedicated frequency bands. For CELL AB Band, the frequency allocations are as follows: Uplink: 824-849 MHz Downlink: 869-894 MHz For PCS Full Band, the frequency allocations are as follows: Uplink: 1850-1910 MHz Downlink: 1930-1990 MHz The Quad-duplexer isolates the paths and route each signal to the proper amplifying channel. An Automatic Level Control (ALC) allows for output power limiting. A variable step attenuator gives 0 – 30 dB of attenuation in 2 dB steps. The use of these controls is covered in the “OPERATION” section, later in this document.. OPTIONAL OSCILLATION DETECTS INDICATION: For an added precaution against oscillations from insignificant antenna separation; a LED indication is inserted into the BDA’s path. This indication will warn the user to insert additional manual attenuation to eliminate the oscillation. Page | 4 Figure 1 BDA BLOCK DIAGRAM 1. Input Base Quadruplexer – Features low insertion loss and separates UL from DL paths for CELL and PCS bands. 2. Downlink CELL LNA/Pre-Amp – Low noise figure amplifier with high linearity 3. Selector Filter CELL DL – Features high selectivity and provides required isolation at maximum gain. 4. Linear Power Amplifier CELL DL – includes ALC circuitry . 5. Output Mobile Quadruplexer – Features low insertion loss and separates UL from DL paths for CELL and PCS bands. 6. Uplink CELL LNA/Pre-Amp – Low noise figure amplifier with high linearity 7. Selector Filter CELL UL – Features high selectivity and provides required isolation at maximum gain. 8. Linear Power Amplifier CELL UL – includes ALC circuitry . 9. Downlink PCS LNA/Pre-Amp – Low noise figure amplifier with high linearity 10. Selector Filter PCS DL – Features high selectivity and provides required isolation at maximum gain. 11. Linear Power Amplifier PCS DL – includes ALC circuitry. 12. Uplink PCS LNA/Pre-Amp – Low noise figure amplifier with high linearity 13. Selector Filter PCS UL – Features high selectivity and provides required isolation at maximum gain. 14. Linear Power Amplifier PCS UL – includes ALC circuitry. Page | 5 ELECTRICAL SPECIFICATIONS: Frequency Range : UL CELL AB 824-849 MHz : UL PCS 1850-1910 MHz : DL CELL AB 869-894 MHz : DL PCS 1930-1990 MHz Pass Band Gain @ normal operation : 80 dB (Min.) Variable Step Attenuator Range : 0-30 dB (2-dB steps) Pass band Ripple : ±1.5 dB (Typ.) Noise Figure @+25ºC at max gain : 5.0 dB (Max.) 3rd Order Intercept point Uplink : +46 dBm (Typ.) Downlink : +46 dBm (Typ.) Output Power @ 1dB Compression Uplink : +34 dBm (Typ.) Downlink : +34 dBm (Typ.) Output Power ALC Set Point Uplink : +27 dBm ±1 dB Downlink : +27 dBm ±1 dB Isolation between Up/Down Link : 100 dB (Min.) Input/ Output Impedance : 50 Ohms VSWR (Input/Output) : 1.5: 1 (Max.). Power Supply : 110VAC/0.8 Amp : 240VAC/0.4 Amp : 50 to 60 Hz Page | 6 By adding an additional filter this BDA can support the following bands: Table 1 Frequency Band Downlink Frequency Ranges Uplink Frequency Ranges CELL AB 869-894 MHz 824-869 MHz CELL A 869-880 MHz 824-835 MHz CELL B 880-894 MHz 835-849 MHz PCS FULL 1930-1990 MHz 1850-1910 MHz PCS A 1930-1945 MHz 1850-1865 MHz PCS B 1950-1965 MHz 1870-1885 MHz PCS C 1975-1990 MHz 1895-1910 MHz PCS C-1 1982.5-1990 MHz 1902.5-1910 MHz PCS C-2 1975-1982.5 MHz 1895-1902.5 MHz PCS C-3 1975-1980 MHz 1895-1900 MHz PCS C-4 1980-1985 MHz 1900-1905 MHz PCS C-5 1985-1990 MHz 1905-1910 MHZ PCS D 1945-1950 MHz 1865-1870 MHz PCS E 1965-1970 MHz 1885-1890 MHz PCS F 1970-1975 MHz 1890-1895 MHz Page | 7 MECHANICAL SPECIFICATIONS: Size : 16.0 x 16.0 x 11.2 inch (406 x 406 x 284.5 mm) Weight : 35 Lbs. (16.0kg.) approx. ENVIRONMENTAL CONDITIONS: The unit is designed for outdoor applications: Operating temperature: -45ºC to +60ºC Storage temperature: -50ºC to +90ºC FCC NOTE: The Federal Communications Commission (FCC) has tested this product and found it to comply with their RF Exposure Requirements, pursuant to FCC Part 22 and 24. IC NOTE: The Industry Canada (IC) has tested this product and found it to comply with their RF Exposure Requirements, pursuant to IC RSS-131. NOTE: The Manufacturer’s rated output power of this equipment is for single carrier operation. For situations when multiple carrier signals are present, the rating would have to be reduced by 3.5 dB, especially where the ou…

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Cover Letter(s)

Wide Band Log Periodic YAGI Antenna Model #: TDJ-800/2500YG Radiation Pattern: E-Plane H-Plane Specifications Model TDJ-800/2500YG Frequency Range (MHz) 800-960 1710-2500 Gain (dBi) 9.5 11 Vertical Plane Polarization 60º 50º Horizontal Plane Polarization 80º 60º VSWR ≤ 1.5 : 1 Fr ont-to-Back Ratio (dB) ≥ 20 Impendence (Ω) 50 Polarization Vertical Maximum Power (W) 100 Connector N-Female Antenna Dimensions (mm) 330 x 215 x 65 Mast Mount Diameter (mm) 40 - 50 Weight (Kg) 1.1

Cover Letter(s)

Form: CB-7.2.1 Issued by: QM Issue Date: 9/22/2011 Page 1 of 3 Revised by: QM-JS Revised Date: 6/23/2014 L:\Project\2015\p1510014-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT FormP1510014.docx CB-7.2.1 – Technical Review RT Form FCC ID: Q8KCELLPCS2W80N IC ID: 4901A-CELLPCS2W80N CT Project: P1510014 From: Shawn McMillen Date: 3/9/15 1--The following note is in the user’s manual however this rule part does not apply to this product. The Federal Communications Commission (FCC) has tested this product and found it to comply with their RF Exposure Requirements, pursuant to FCC Part 27. G-Wave –Removed. 2--The RF exposure information provided in the user’s manual is incorrect. For fixed installations the separation distance cannot be less that 20cm. Also the separation distances in the user’s manual are not consistent with the MPE calculations for distances. G-Wave -3/24/15 – Revised Manual provided. 3--The block diagram provided is illegible when zoomed in for a finer detail. G-Wave – 3/11/15 – Fixed. 4--Please note that licensed devices should be placed at 1m above the ground plane for radiated emissions. The test setup photos show a distance greater than 1m. GC – 3/11/15 - The wrong test photo was selected. The correct test set-up photos have been provided. 5--On page 69 of the EMC report there is a plot that does not contain any information. 824-849 MHz Band Input. GC – the plot has been corrected. Form: CB-7.2.1 Issued by: QM Issue Date: 9/22/2011 Page 2 of 3 Revised by: QM-JS Revised Date: 6/23/2014 L:\Project\2015\p1510014-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT FormP1510014.docx 6--On page 100 and 101 there are two plots which are identical. I believe the intermodulation plot for the downlink mid band is missing or has the wrong information. GC – 3/11/15 –Plot has been corrected. Data for the midband was recorded and left out of test report in error. 7--Please provide justification why the power levels of the two WCDMA signals for the intermodulation test are 3dB apart in amplitude. See the plot on the bottom of page 104 in the EMC report. Also the following plot to that one appears to have the levels set differently as well. GC – 3/11/15 - The input powers were set to be even in amplitude. The gain changes approximately 3 dB at the frequencies tested, accounting for most of the difference in the amplitude of the 2 signals. 8--The output rating in the user’s manual is inconsistent with the test report provided. GC – 3/11/15 –G-wave to address 9--The test setup photo for the IC portion of the this application contains an EUT that is inconsistent with the filing. Also note that there are no radiation emission tests required for RSS-131 yet there is a radiated test setup photo provided. At minimum a conducted test setup photo should be provided. GC –3/11/15 – The radiated photos have been removed from the filing folder. Diana – Please remove the 2 radiated emissions test set-up photos document 10--Please note that two RSS-131 test reports have been provided with this application. DW: 3/10/15 - Removed obsolete one. 11-- cannot locate the IC representative letter. DW: 3/10/15 - Located and put in folder. 12--Please note that the RF evaluation provided for RSS-102 should be for general public not controlled occupational. GC – 3/11/15 - RSS-102 has been corrected to show compliance to general public (uncontrolled environment) limits. Diana – The RSS-102 report is now Rev 4 Note: The FCC 1.1310 RF Exposure report has been revised to Rev 4. Form: CB-7.2.1 Issued by: QM Issue Date: 9/22/2011 Page 3 of 3 Revised by: QM-JS Revised Date: 6/23/2014 L:\Project\2015\p1510014-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT FormP1510014.docx CT - Response by: Greg Corbin Submitted by: Date:

Operational Description

OUTDOOR BDA INSTALLATION PROCEDURE IMPORTANT: DO NOT APPLY A.C. OR DC POWER TO THE BDA UNTIL CABLES ARE CONNECTED TO BOTH PORTS OF THE BDA AND THE ANTENNAS. 1. Mount the BDA on the wall with the RF connectors pointing DOWN. Using appropriate screws and anchors, attach the BDA to the wall at the six mounting holes on the side flanges. 2. Ensure that the isolation between the donor antenna and the service antenna is at least 12 dB greater than the BDA gain. (Use the higher of the Uplink and Downlink gains reported on the BDA test data sheet). 3. Connect the cable from the donor antenna to the BDA connector labeled “BASE” and the cables from the service antennas to the BDA connector labeled “MOBILE”. 4. Verify that the Uplink and Downlink attenuation is positioned to its maximum setting (30 dB). 5. Connect the AC power cord to the BDA and then to the power source. Turn the power switch to the ‘ON’ position. Verify that the “Power On” indicator is lit. *NOTE: Due to the inconsistency of generators in the field, G-Wave recommends the use of a Power Line Conditioner on the AC source. Installation of the BDA is now complete. To adjust the gain controls to suit the specific signal environment, refer to “OPERATING PROCEDURE”. Note: For repeat installations of existing equipment, make sure the attenuation is positioned to its maximum setting (30 dB). After verification of attenuation, follow the above steps starting with step 1. *OPERATING PROCEDURE* To establish proper operating gain on the Uplink and Downlink sides, start with the Downlink. Verify that the attenuator is set the maximum position of 30 dB. Observe the red indicator lamp on the Downlink amplifier. Decrease attenuation one step at a time until the lamp is lit. Then, using the Downlink step attenuator, increase the attenuation until the lamp goes off. Repeat the process for the Uplink. The level indicator is accurate to +/- 0.4 dB of the ALC set point. Note: Operation of the BDA in the alarm condition will void the warranty, and output power should be immediately reduced using the variable step attenuator. Operation of BDA-CELLAB/PCSF-33/33-80-OCMG at Maximum Gain with greater than -43 dBm average power incident on the MOBILE or BASE ports can cause damage to the BDA. *Oscillation Detect LED INDICATOR When the oscillation LED is illuminated, immediately reduce the gain using the variable step attenuators. (Start by increasing the Uplink variable attenuator and balance gain indifference with the Downlink variable attenuator.) -------------------------------------------------------------------------------------------------------------------------

Parts List/Tune Up Info

OUTDOOR BDA INSTALLATION PROCEDURE IMPORTANT: DO NOT APPLY A.C. OR DC POWER TO THE BDA UNTIL CABLES ARE CONNECTED TO BOTH PORTS OF THE BDA AND THE ANTENNAS. 1. Mount the BDA on the wall with the RF connectors pointing DOWN. Using appropriate screws and anchors, attach the BDA to the wall at the six mounting holes on the side flanges. 2. Ensure that the isolation between the donor antenna and the service antenna is at least 12 dB greater than the BDA gain. (Use the higher of the Uplink and Downlink gains reported on the BDA test data sheet). 3. Connect the cable from the donor antenna to the BDA connector labeled “BASE” and the cables from the service antennas to the BDA connector labeled “MOBILE”. 4. Verify that the Uplink and Downlink attenuation is positioned to its maximum setting (30 dB). 5. Connect the AC power cord to the BDA and then to the power source. Turn the power switch to the ‘ON’ position. Verify that the “Power On” indicator is lit. *NOTE: Due to the inconsistency of generators in the field, G-Wave recommends the use of a Power Line Conditioner on the AC source. Installation of the BDA is now complete. To adjust the gain controls to suit the specific signal environment, refer to “OPERATING PROCEDURE”. Note: For repeat installations of existing equipment, make sure the attenuation is positioned to its maximum setting (30 dB). After verification of attenuation, follow the above steps starting with step 1. *OPERATING PROCEDURE* To establish proper operating gain on the Uplink and Downlink sides, start with the Downlink. Verify that the attenuator is set the maximum position of 30 dB. Observe the red indicator lamp on the Downlink amplifier. Decrease attenuation one step at a time until the lamp is lit. Then, using the Downlink step attenuator, increase the attenuation until the lamp goes off. Repeat the process for the Uplink. The level indicator is accurate to +/- 0.4 dB of the ALC set point. Note: Operation of the BDA in the alarm condition will void the warranty, and output power should be immediately reduced using the variable step attenuator. Operation of BDA-CELLAB/PCSF-33/33-80-OCMG at Maximum Gain with greater than -43 dBm average power incident on the MOBILE or BASE ports can cause damage to the BDA. *Oscillation Detect LED INDICATOR When the oscillation LED is illuminated, immediately reduce the gain using the variable step attenuators. (Start by increasing the Uplink variable attenuator and balance gain indifference with the Downlink variable attenuator.) -------------------------------------------------------------------------------------------------------------------------

RF Exposure Info

p1510014_FCC_Part 1.1310_Rev 4.0 Page 1 of 11 Test Report Prepared for: G-Way Microwave Model: BDA-CELLAB/PCSF-2/2W-80-OCA1 Description: RigBooster PRO, Dual Band Outdoor BDA FCC ID: Q8KCELLPCS2W80N To FCC Part 1.1310 Date of Issue: March 24, 2015 On the behalf of the applicant: G-Way Microwave 38 Leuning Street South Hackensack, NJ 07606 Attention of: Gregory Tsvika Blekher, Project Engineer Ph: (201) 343-3140 E-Mail: [email protected] Prepared By Compliance Testing, LLC 1724 S. Nevada Way Mesa, AZ 85204 (480) 926-3100 phone / (480) 926-3598 fax www.compliancetesting.com Project No: p1510012 Mike Graffeo Project Test Engineer This report may not be reproduced, except in full, without written permission from Compliance Testing All results contained herein relate only to the sample tested p1510014_FCC_Part 1.1310_Rev 4.0 Page 2 of 11 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 2/20/15 Mike Graffeo Original Document 2.0 3/3/2015 Greg Corbin Updated report to match EIRP and antenna data 3.0 3/11/2015 Greg Corbin Recalculated RF Exposure to general population limits 4.0 3/24/2015 Greg Corbin Removed limit table for Controlled Use on pg. 8, Changed Output Power from radiated to conducted and calculated new values on pages 4 – 11. p1510014_FCC_Part 1.1310_Rev 4.0 Page 3 of 11 ILAC / A2LA Compliance Testing, LLC, has been accredited in accordance with the recognized International Standard ISO/IEC 17025:2005. This accreditation demonstrates technical competence for a defined scope and the operation of a laboratory quality management system (refer joint ISO-ILAC-IAF Communiqué dated January 2009) The tests results contained within this test report all fall within our scope of accreditation, unless below Please refer to http://www.compliancetesting.com/labscope.html for current scope of accreditation. Testing Certificate Number: 2152.01 FCC Site Reg. #349717 IC Site Reg. #2044A-2 Non-accredited tests contained in this report: N/A EUT Description Model: BDA-CELLAB/PCSF-2/2W-80-OCA1 Description: RigBooster PRO, Dual Band Outdoor BDA Additional Information: The EUT is a Part 20 dual band industrial bi-directional amplifier. The manufacturer specified 3 different antennas for this device. The antenna with the highest gain was used in the RF Exposure calculations. Antenna Type Frequency Range (MHz) Gain (dBi) Directional Wall Mount 698 - 960 7 1700 - 2700 10 Wide Band High Gain Ceiling 698 - 960 2 1700 - 2700 5 Wide Band Log Periodic Yagi 698 - 960 9.5 1700 - 2700 11 p1510014_FCC_Part 1.1310_Rev 4.0 Page 4 of 11 MPE Evaluation for 836.5 MHz This is a Fixed device evaluated to general population (Uncontrolled Exposure) environment. Limits Uncontrolled Exposure 47 CFR 1.1310 Table 1, (B) 0.3-1.234 MHz: Limit [mW/cm²] = 100 1.34-30 MHz: Limit [mW/cm²] = (180/f²) 30-300 MHz: Limit [mW/cm²] = 0.2 300-1500 MHz: Limit [mW/cm²] = f/1500 1500-100,000 MHz Limit [mW/cm²] = 1.0 Test Data Test Frequency, MHz 836.5 Power, Conducted, mW (P) 506.9 Antenna Gain Isotropic 9.5dBi Antenna Gain Numeric (G) 8.91 Antenna Type Yagi Distance (R) 20 cm 푆= 푃∗퐺 4휋푟 2 Power Density (S) mw/cm 2 Power mW (P) Numeric Gain (G) Distance (r) cm 0.898 506.9 8.91 20 Power Density (S) =0.898 Limit =(from above table) = 0.558 The EUT does not meet the power spectral density requirements at 20 cm with the YAGI antenna, so the minimum safe distance was calculated on the next page. p1510014_FCC_Part 1.1310_Rev 4.0 Page 5 of 11 Minimum Safe Distance Evaluation for 836.5 MHz This is a Fixed device evaluated to general population (Uncontrolled Exposure) environment. Limits Uncontrolled Exposure 47 CFR 1.1310 Table 1, (B) 0.3-1.234 MHz: Limit [mW/cm²] = 100 1.34-30 MHz: Limit [mW/cm²] = (180/f²) 30-300 MHz: Limit [mW/cm²] = 0.2 300-1500 MHz: Limit [mW/cm²] = f/1500 1500-100,000 MHz Limit [mW/cm²] = 1.0 Test Data Test Data for Yagi Antenna Test Frequency, MHz 836.5 Power, Conducted, mW (P) 506.9 Antenna Gain Isotropic 9.5 dBi Antenna Gain Numeric (G) 8.91 Limit (L) 0.558 R=√(PG/4πL) Distance (R) cm Power mW (P) Numeric Gain (G) Limit (L) 25.4 506.9 8.91 0.558 The minimum safe distance with the YAGI antenna is 25.4 cm at 836.5 MHz p1510014_FCC_Part 1.1310_Rev 4.0 Page 6 of 11 MPE Evaluation for 881.50 MHz This is a Fixed device evaluated to general population (Uncontrolled Exposure) environment. Limits Uncontrolled Exposure 47 CFR 1.1310 Table 1, (B) 0.3-1.234 MHz: Limit [mW/cm²] = 100 1.34-30 MHz: Limit [mW/cm²] = (180/f²) 30-300 MHz: Limit [mW/cm²] = 0.2 300-1500 MHz: Limit [mW/cm²] = f/1500 1500-100,000 MHz Limit [mW/cm²] = 1.0 Test Data Test Frequency, MHz 881.50 Power, Conducted, mW (P) 490.9 Antenna Gain Isotropic 9.5dBi Antenna Gain Numeric (G) 8.91 Antenna Type Yagi Distance (R) 20 cm 푆= 푃∗퐺 4휋푟 2 Power Density (S) mw/cm 2 Power mW (P) Numeric Gain (G) Distance (r) cm 0.870 490.9 8.91 20 Power Density (S) = 0.870 Limit =(from above table) = 0.588 The EUT does not meet the power spectral density requirements at 20 cm with the YAGI antenna, so the minimum safe distance was calculated on the next page. p1510014_FCC_Part 1.1310_Rev 4.0 Page 7 of 11 Minimum Safe Distance Evaluation for 881.50 MHz This is a Fixed device evaluated to general population (Uncontrolled Exposure) environment. Limits Uncontrolled Exposure 47 CFR 1.1310 Table 1, (B) 0.3-1.234 MHz: Limit [mW/cm²] = 100 1.34-30 MHz: Limit [mW/cm²] = (180/f²) 30-300 MHz: Limit [mW/cm²] = 0.2 300-1500 MHz: Limit [mW/cm²] = f/1500 1500-100,000 MHz Limit [mW/cm²] = 1.0 Test Data Test Data for Yagi Antenna Test Frequency, MHz 881.50 Power, Conducted, mW (P) 490.9 Antenna Gain Isotropic 9.5 dBi Antenna Gain Numeric (G) 8.91 Limit (L) 0.588 R=√(PG/4πL) Distance (R) cm Power mW (P) Numeric Gain (G) Limit (L) 24.3 490.9 8.91 0.588 The minimum safe distance with the YAGI antenna is 24.3 cm at 881.5 MHz p1510014_FCC_Part 1.1310_Rev 4.0 Page 8 of 11 MPE Evaluation for 1880 MHz This is a Fixed device evaluated to general population (Uncontrolled Exposure) env…

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Test Report

p1510014_FCC_Part 20_Rev 3.0 Page 1 of 106 Test Report Prepared for: G-Way Microwave Model: BDA-CELLAB/PCSF-2/2W-80-OCA1 Description: RigBooster PRO, Dual Band Outdoor BDA FCC ID: Q8KCELLPCS2W80N To FCC Part 20 Date of Issue: March 13, 2015 On the behalf of the applicant: G-Way Microwave 38 Leuning Street South Hackensack, NJ 07606 Attention of: Gregory Tsvika Blekher, Project Engineer Ph: (201) 343-3140 E-Mail: [email protected] Prepared By Compliance Testing, LLC 1724 S. Nevada Way Mesa, AZ 85204 (480) 926-3100 phone / (480) 926-3598 fax www.compliancetesting.com Project No: p1510014 Mike Graffeo Project Test Engineer This report may not be reproduced, except in full, without written permission from Compliance Testing All results contained herein relate only to the sample tested p1510014_FCC_Part 20_Rev 3.0 Page 2 of 106 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 February 20, 2015 Mike Graffeo Original Document 2.0 March 4, 2015 Greg Corbin Corrected typo’s and copy/paste errors throughout report while performing internal review of the project. 3.0 March 11, 2015 Greg Corbin Corrected plot on page 69 and 100. p1510014_FCC_Part 20_Rev 3.0 Page 3 of 106 Table of Contents Description Page Standard Test Conditions and Engineering Practices 6 Test Result Summary 8 Authorized Frequency Band 9 Conducted Output Power and Amplifier Gain 12 Conducted Spurious Emissions 17 Radiated Spurious Emissions 54 Occupied Bandwidth 56 Intermodulation 93 Test Equipment Utilized 106 p1510014_FCC_Part 20_Rev 3.0 Page 4 of 106 ILAC / A2LA Compliance Testing, LLC, has been accredited in accordance with the recognized International Standard ISO/IEC 17025:2005. This accreditation demonstrates technical competence for a defined scope and the operation of a laboratory quality management system (refer joint ISO-ILAC-IAF Communiqué dated January 2009) The tests results contained within this test report all fall within our scope of accreditation, unless noted below. Please refer to http://www.compliancetesting.com/labscope.html for current scope of accreditation. Testing Certificate Number: 2152.01 FCC Site Reg. #349717 IC Site Reg. #2044A-2 Non-accredited tests contained in this report: N/A p1510014_FCC_Part 20_Rev 3.0 Page 5 of 106 The Applicant has been cautioned as to the following: 15.21: Information to the User The user’s manual or instruction manual for an intentional radiator shall caution the user that changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. 15.27(a): Special Accessories Equipment marketed to a consumer must be capable of complying with the necessary regulations in the configuration in which the equipment is marketed. Where special accessories, such as shielded cables and/or special connectors are required to enable an unintentional or intentional radiator to comply with the emission limits in this part, the equipment must be marketed with, i.e. shipped and sold with, those special accessories. However, in lieu of shipping or packaging the special accessories with the unintentional or intentional radiator, the responsible party may employ other methods of ensuring that the special accessories are provided to the consumer, without an additional charge. Information detailing any alternative method used to supply the special accessories for a grant of equipment authorization or retained in the verification records, as appropriate. The party responsible for the equipment, as detailed in § 2.909 of this chapter, shall ensure that these special accessories are provided with the equipment. The instruction manual for such devices shall include appropriate instructions on the first page of text concerned with the installation of the device that these special accessories must be used with the device. It is the responsibility of the user to use the needed special accessories supplied with the equipment. p1510014_FCC_Part 20_Rev 3.0 Page 6 of 106 Test and Measurement Data All tests and measurement data shown were performed in accordance with FCC Rules and Regulations Part 90.219, KDB 935210 D03 Booster, and FCC Part 2, Part 20.21, Part 22, Part 24, and C63-26D13 where appropriate. Standard Test Conditions and Engineering Practices Except as noted herein, the following conditions and procedures were observed during the testing. In accordance with ANSI/TIA 603C, and unless otherwise indicated in the specific measurement results, the ambient temperature of the actual EUT was maintained within the range of 10° to 40°C (50° to 104°F) unless the particular equipment requirements specify testing over a different temperature range. Also, unless otherwise indicated, the humidity levels were in the range of 10% to 90% relative humidity. Environmental Conditions Temp (ºC) Humidity (%) Pressure (mbar) 23.0 – 29.4 23.3 – 38.1 960.8 – 968.5 Measurement results, unless otherwise noted, are worst-case measurements. EUT Description Model: BDA-CELLAB/PCSF-2/2W-80-OCA1 Description: RigBooster PRO, Dual Band Outdoor BDA Firmware: N/A Software: N/A Additional Information: N/A p1510014_FCC_Part 20_Rev 3.0 Page 7 of 106 The signal booster uses the following frequency bands. The emission designators listed are representative emission designators used by transmitters whose signal is amplified by this booster. Frequency Band (MHz) Uplink 824 - 849 1850 - 1910 Downlink 869 - 894 1930 - 1990 Modulation Type GSM, CDMA, EDGE, HSPA. EVDO, LTE Emission Designators CDMA HSPA LTE EVDO EDGE GSM F9W F9W G7D F9W G7W GXW EUT Operation during Tests The output power was set to the maximum level available for all the tests, when applicable. AGC Threshold Several tests reference the AGC Threshold level. The AGC Threshold was measured as follows:  Connect a signal generator to the input of the EUT.  Connect a spectrum analyzer to the output of the EUT using appropriate attenuation.  While monitoring the output o…

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Test Setup Photos

Test Setup Photos FCC ID: Q8KCELLPCS2W80N RF Conducted RF Radiated (30MHz to 1GHz) RF Radiated (testing above 1GHz)

Contact Information

Applicant

Sharon David(Marketing Director)
[email protected]201-343-6388Fax: 201-343-6390

Test Firm

Compliance Testing, LLCMichael Schafer
[email protected]480-926-3100Fax: 480 926 3598

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
1624E1.93 GHz - 1.99 GHz464.00 mWGXW
Confidentiality
Long Term
Grant Notes
Booster. Power output listed is conducted. The antenna(s) used for this transmitting device must be professionally installed to provide a separation distance of at least 26 cm from all persons. Installers and end-users must be provided with antenna installation instructions and transmitting device operating conditions for satisfying RF exposure compliance.

Other Applications from G-Way Solutions, LLC

Booster - FCC ID Q8KUHF3680AB - G-Way Solutions, LLC
Q8KUHF3680AB

Booster

Jul 17, 2015

Equipment Class

B9B - Part 90 Class B Industrial Booster (non-SMR)
Booster - FCC ID Q8KUHF3680R - G-Way Solutions, LLC
Q8KUHF3680R

Booster

Jul 17, 2015

Equipment Class

B9B - Part 90 Class B Industrial Booster (non-SMR)
Booster - FCC ID Q8KUHF3680N - G-Way Solutions, LLC
Q8KUHF3680N

Booster

Jul 17, 2015

Equipment Class

B9B - Part 90 Class B Industrial Booster (non-SMR)
Dual Band Bi-Directional Amplifier - FCC ID Q8KCELLPCS3380AB - G-Way Solutions, LLC
Q8KCELLPCS3380AB

Dual Band Bi-Directional Amplifier

Mar 28, 2015

Equipment Class

B2I - Part 20 Industrial Booster (CMRS)
RigBooster PRO II, Dual Band Outdoor BDA - FCC ID Q8KCELLPCS3380N - G-Way Solutions, LLC
Q8KCELLPCS3380N

RigBooster PRO II, Dual Band Outdoor BDA

Mar 28, 2015

Equipment Class

B2I - Part 20 Industrial Booster (CMRS)