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Q8KVHF2W80VHF Booster

G-Way Solutions, LLC
VHF Booster - FCC ID Q8KVHF2W80 - G-Way Solutions, LLC
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Application Details

Equipment Class
B9B - Part 90 Class B Industrial Booster (non-SMR)
Date of Grant
Jan 22, 2015
Application Purpose
Original Equipment
Date of Application
Nov 09, 2014
Equipment Note
VHF Booster
Frequency Range
150.00000000 - 174.00000000
Company
G-Way Solutions, LLC
Country
United States

Documents & Files

Select a file to view

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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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 VHF, Bi‐Directional Amplifier BDA‐VHF‐33/33‐80‐20RU18 2 | Page TABLE OF CONTENTS PARAGRAPH PAGE NO BDA OVERVIEW and PART NUMBER DESCRIPTION (Table 1) 3 BDA BLOCK DIAGRAM DESCRIPTION 3 OPTIONAL EQUIPMENT OVERVIEW 3 BDA BLOCK DIAGRAM DRAWING (Figure 1) 4 ELECTRICAL SPECIFICATIONS 5 MECHANICAL SPECIFICATIONS 6 ENVIRONMENTAL CONDITIONS 6 BDA CONNECTIONS 7 RF EXPOSURE WARNING 7 MECHANICAL OUTLINE DRAWING (Figure 2 & 2a) 8 OPTIONAL BATTERY BACK-UP CONFIGUATION (Figure 3) 9 BDA INSTALLATION 10 BDA OPERATION 11 GAIN ADJUSTMENT/ LED DESCRIPTION (Figure 4) 12 DIAGNOSTICS GUIDE 13 3 | Page BDA OVERVIEW: The BDA assembly extends the coverage area of radio communications in buildings and RF shielded environments. The unit features low noise figure and wide dynamic range. It is based on a duplexed path configuration with sharp out of band attenuation allowing improved isolation between the receiving and transmitting paths. Due to significant size of the diplexers and/or High “Q” filters needed to achieve specified gain, the system is built as Amplifier 19” Drawer and external filters, assembled into a 19”, 20U cabinet. VHF Part Number Description: BDA-V(XXX)/(YYY) – 33/ 33-80-(ZZZ) V(XXX) (YYY) 33 33 80 (ZZZ) BDA High Band Center Frequency [MHZ] Low Band Center Frequency [MHZ] UL Composite Power [dbm] DL Composite Power [dbm] Gain Enclosure Table 1 BDA Block Diagram Description: Refer to Figure 1, on page 4 for the following discussion. The BDA Downlink path receives RF signals from the base station and amplifies and transmits them to the subscriber. The BDA Uplink path receives RF signals from the subscriber and amplifies and transmits them to the base station. The Uplink and Downlink occupy two distinct frequency bands. For example, a sample frequency band in VHF is as follows: 158-159 MHz for the Uplink and 154-156 MHz for the Downlink. Two diplexers isolate 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 – 31 dB of attenuation in 1 dB steps. The use of these controls is covered in the “OPERATION” section, page 10. Optional Equipment Overview: a) Visual Alarms All G-Wave BDAs feature visual alarms as a standard. LEDs are provided for UL and DL alarms, ALC UL and DL alarms as well as Power indicator. b) DC Input Power Option (S1) The BDA is equipped with both AC and DC voltage inputs for power operation. This gives the flexibility of powering the BDA with either an AC or DC source. If both sources are connected, the BDA will automatically select the stronger source for power. c) Remote Monitoring via 9-Pin Dry Contact Connector (RM9) A 9-Pin dry contact will be provided to hard wire into a building’s alarm system. Dry contact will provide alarms for ALC and amplifier failure. 4 | Page Block Diagram Drawing: Figure 1 1. First stage Internal Filter Downlink -This highly selective filter provides additional rejection for increased isolation. 2. Downlink LNA- Is a low noise amplifier which offers 26 db Gain and establishes the Noise Figure of the downlink path. 3. Internal Filter Downlink - This highly selective filter gives additional rejection for increased isolation. 4. Downlink Pre-amp - Is a low noise amplifier that drives the downlink MPA and offers 16dB Gain. 5. Downlink MPA - Is a medium power amplifier with an ALC circuit which offers 42dB Gain. 6. Low Pass Filter Downlink- This low pass filter provide a rejection of harmonics. 7. Output Diplexer – Has a low bandpass insertion loss and high selectivity for one distinct downlink/uplink frequency band. 8. First stage Internal Filter Uplink - This highly selective filter gives additional rejection for increased isolation. 9. Uplink LNA- Is a low noise amplifier which offers 26 db Gain and establishes the Noise Figure of the Uplink path. 10. Internal Filter Uplink - This highly selective filter gives additional rejection for increased isolation. 11. Uplink Pre-amp - Is a low noise amplifier that drives the Uplink MPA and offers 16dB Gain. 12. Uplink MPA - Is a medium power amplifier with an ALC circuit which offers 42dB Gain. 13. Low Pass Filter Downlink- This low pass filter provide a rejection of harmonics. 14. Input Diplexer – Has a low bandpass insertion loss and high selectivity for one distinct downlink/uplink frequency band. 5 | Page Electrical Specifications: BDA-VHF-33/33-80-20RU18 Specifications Typical Frequency Range : 138-174 MHz Bandwidth : 1-5 MHz Minimum passband separation : 2 MHz Pass band Gain @ min attenuation : 80 dB (Max.) Variable Step Attenuator Range (1-dB steps) : 0-31 dB Gain Flatness : ±1.5 dB (Typ.) Noise Figure @ +25⁰C at Max. gain : 5.5 dB (Max.) 5.0 dB (Typ.) 3rd Order Intercept point @ 2 tones +30dbm each : +54 dbm Composite Output Power : +33 dBm (Typ.) Output Power ALC Set : +33 dBm (Typ.) Input/ Output Impedance 50 Ohms VSWR (Input/Output) 1.5: 1 (Max.) Power Supply 110VAC/1.1 Amp; 240VAC/0.5 Amp 50 to 60 Hz 6 | Page Mechanical Specifications: Size : 40.0 x 21.0 x 22 inch RF Connectors : N-Type Female Weight : < 212 lb / (84 kg) approx. (Additional Filter Rack not included) Environmental Conditions: The unit is designed for indoor applications: Operating temperature: - 20°C to +50°C Storage temperature: - 40°C to +85°C FCC NOTE: The product has been tested and found to comply with the Booster requirements per FCC Part 90 This is a Class B device. IC NOTE: The product has been tested and found to comply with the Zone Enhancer requirements per RSS-131. 7 | Page BDA CONNECTIONS: The BDA AC power is accepted through a standard 3-wire male plug (IEC-320) with phase, neutral and ground leads. The AC power is wired to a high efficiency DC switching power supply which is CE and UL approved. The power supply runs the amplifiers and the Power On lamp. The metal enclosure of the BDA is connected to ground. An optional 9-pin D-Sub connector provides failure alarm output con…

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Cover Letter(s)

F-3741Tri-Band Antenna VHF, UHF, 764-960 Electrical Specifications Frequency Bands: Nominal Gain: [email protected]:1 VSWR* 138-174MHz 406-470MHz or450-512MHz 764-890MHz or806-960MHz Polarization Pattern Power Rating, Watts(Total) Nominal Impedance, Ohms Radome Color Lightning Protection Standard Termination Comprod Communications Ltd-Tel: 1-800-603-1454Fax: 1-800-554-1033 www.comprodcom.com Comprod Communications Ltd www.comprodcom.com F-3741 Unity Gain 150/450/700,800,900 0 dB 8 64 126 Vertical Omnidirectional 50 50 Polycarbonate Black DC Ground N Male •The F-3741Tri-Band antenna is designed to provide simultaneous coverage in the150, 450, and700, 800or900 bands. • A common application is to provide coverage in enclosed areas such as tunnels, subway stations, mines, etc. • The antenna employs a vertical radiating structure housed in a flame retardant polycarbonate radome. Mechanical Specifications Length, inches(mm) Diameter, Inches(mm) Min. Ground Plane Size, inches(mm) F-3741 11 .25(286.88 ) 0.65(16 .575) 14 " x 14 " • This antenna has been designed for mounting on a concrete surface. This antenna must be mounted on a concrete surface in order to meet full bandwidth specifications. •Supplied with pigtail and N-Male connector. • 14 " x 14 " Ground Plane mounting bracket Included with antenna *Operating Frequencies or frequency ranges must be specified when ordering. Yagi Antenna 291-70 138-174 MHz 3.5 dBd COMPROD 9 • Rugged two-element low gain yagi antenna with wide unidirectional characteristic. • Cardioid pattern offering some coverage to the rear of the antenna if needed. • Rugged design to withstand harsh environmental conditions. • Mounting hardware supplied will permit either vertical or horizontal polarization. • DC ground for lightning protection. Electrical Specifications 291-70 Frequency Range: 138-174 MHz Nominal Gain: 3.5 dBd Front-to-back ratio 15 dB Horizontal Beamwidth: (Ver Pol) 140º Vertical Beamwidth: (Ver. Pol.) 70º Bandwidth: 1.5:1 VSWR 3.75% of frequency Polarization: Vertical or Horizontal Pattern: Directional Power Rating: 350 Watts Nominal Impedance: 50 Ohms Lightning Protection: DC Ground Standard Termination: Type « N » Male Mechanical Specifications: 291-70 Length: (at 138 MHz) 54'' (1372mm) Width: 43.6'' (1107mm) Weight: 4.0 lbs. (1.8kg) Rated Wind Velocity: No ice 150 mph (241km/h) Rated Wind Velocity with 0.5'' (13mm) of ice 140 mph (225km/h) Lateral Thrust at 100 mph wind: 47 lbs. (21kg) Bending Moment: (100 mph) 113 ft/lbs. (15.6kg/m) Equiv. Flat Plate Area: 1.0 ft² (0.093m²) Mounting Hardware: 115-85 Clamp set

Cover Letter(s)

August 25, 2014. Agent Authorization Letter FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: LETTER OF AGENT AUTHORIZATION To Whom It May Concern: We, G-Way Microwave, hereby authorize Compliance Testing LLC to act on our behalf in all matters relating to application for equipment authorization, including the signing of all documents relating to these matters. We also hereby certify that no party to the application authorized hereunder is subject to the denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C.853(a). This authorization is valid until further written notice from the applicant. Sincerely, _______________________ Greg David - Technical Director 38 Leuning Street, S.Hackensack, NJ 07606 Tel: 201-343-6388

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\2014\p1480008-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT Form_SM revised.docx CB-7.2.1 – Technical Review RT Form FCC ID: Q8KVHF2W80 IC ID: 4901A-VHF2W80 CT Project: P1480008 From: Shawn McMillen Date: 10/23/2014 RTs FCC 1--The internal photos do not appear to show the internal structure of the radio portion. Please address. 10/27/14 G-Way: Ok, We will send you the internal pictures of the RF AMP. Please be advised that we will update the confidentiality letter. 10/30/14 G-Way: Internal photos and updated LT Conf. letter provided. 2--The user’s manual addresses a Yagi high gain antenna for use with this system however the 1.1310 addresses only a 0dBi gain antenna for RF exposure. In addition the separation distance for the yagi antenna is 60cm whereas the Omni antenna is <20cm but the gain of each antenna in terms of dBi are very similar. Please address. 10/27/14 G-Way: As far as I understand, there is no need for any antenna values in the RF exposure warning. We can just remove antenna values altogether and call it a day? Also, antenna factors are provided for example only, it doesn’t matter actually what the gain of the antennas are for the purpose of assessing BDA performance. 10/30/14 SM_ The MPE was calculated againt a maximum gain antenna of 5.65dBi whereas the User's manual references an 11.65dBi antenna. Both of these need to match up. Please address. 10/30/14 – G-Way: Will change. 10/31/14 – G-Way: Updated manual provided. 10/28/14_CT: the YAGI antenna listed on the antenna datasheet has been added to the FCC 1.1310 test report. 3--The Tune-up procedure should contain target power levels with the associated variances. 10/27/14 G-way: Will be updated. 10/30/14 G-Way: Provided in updated Users Manual. 10/30/14 SM_The User's manual is not considered a technical report and therefore the tune-up procedure should be a separate document. 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\2014\p1480008-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT Form_SM revised.docx 10/30/14 G-Way: We have never had to do a separate tune up procedure. The information would be identical. I can extract those pages, name it Tune Up Procedure and send it as a separate document if you like. It’s an exercise in futility but whatever it takes to get through this process. 10/31/14 – DW: Customer will provide separate doc shortly. 11/2/14 – G Way: Provided tune up procedure. 4--In the external photos file the front picture of the EUT is very blurry. Please consider retaking the photo. 10/27/14 G-Way: We will update the picture when we receive the units in house, I believe they were only released from your lab on Friday and have not yet received the units here. STILL WAITING FOR UNIT... 10/30/14 SM_ still needs to be addressed. 10/30/14 G-Way: Will be. 10/31/14 G-Way: Updated photos provided. 5--The output power of the EUT is rated at 36dBm per the user’s manual and other documents however the maximum power reported in the EMC report is 33dBm. Please address. 10/27/14 G-Way: 1dB compression point- is parameter of linearity of the amplifier. But I understand your point. 10/30/14 Sm_ needs to be addressed. 10/30/14 G-Way: This has already been addressed in the latest revision. Please advise what page you are referring to because I’m not sure what you’re talking about. 6--There does not appear to be any intermodulation data provided in the test report to demonstrate compliance to this requirement. 10/28/14_CT: Intermodulation data has been added to the test report. RTs IC 7--There are several line items missing information in the Industry Canada application. 10/28/14_CT: The CB 7.2.1 form has been updated. 8--RSS-102 does not address the higher gain Yagi antenna. 10/28/14_CT: the YAGI antenna listed on the antenna datasheet has been added to the RSS-102 test report. 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\2014\p1480008-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT Form_SM revised.docx 10/30/14 SM_The high gain antenna per the user’s manual has not been addressed. 10/31/14 – G-Way: Updated manual provided. 9—SM 11/3/14: they will require a label identifying if this is class A or B 11/6/14 – G-Way: Updated Label and Manual. Response by: Greg Corbin Submitted by: Date:

ID Label/Location Info

Labels Exemplary *The labels having adhesive back.

Operational Description

Installation and Operating Manual VHF, Bi‐Directional Amplifier BDA‐VHF‐33/33‐80‐20RU18 2 | Page TABLE OF CONTENTS PARAGRAPH PAGE NO BDA OVERVIEW and PART NUMBER DESCRIPTION (Table 1) 3 BDA BLOCK DIAGRAM DESCRIPTION 3 OPTIONAL EQUIPMENT OVERVIEW 3 BDA BLOCK DIAGRAM DRAWING (Figure 1) 4 ELECTRICAL SPECIFICATIONS 5 MECHANICAL SPECIFICATIONS 6 ENVIRONMENTAL CONDITIONS 6 BDA CONNECTIONS 7 RF EXPOSURE WARNING 7 MECHANICAL OUTLINE DRAWING (Figure 2 & 2a) 8 OPTIONAL BATTERY BACK-UP CONFIGUATION (Figure 3) 9 BDA INSTALLATION 10 BDA OPERATION 11 GAIN ADJUSTMENT/ LED DESCRIPTION (Figure 4) 12 DIAGNOSTICS GUIDE 13 3 | Page BDA OVERVIEW: The BDA assembly extends the coverage area of radio communications in buildings and RF shielded environments. The unit features low noise figure and wide dynamic range. It is based on a duplexed path configuration with sharp out of band attenuation allowing improved isolation between the receiving and transmitting paths. Due to significant size of the diplexers and/or High “Q” filters needed to achieve specified gain, the system is built as Amplifier 19” Drawer and external filters, assembled into a 19”, 20U cabinet. VHF Part Number Description: BDA-V(xxx)/(yyy) – 33/ 33-80-(zzz) V(xxx) (yyy) 33 33 80 (zzz) BDA High Band Center Frequency [MHZ] Low Band Center Frequency [MHZ] UL Composite Power [dbm] DL Composite Power [dbm] Gain Enclosure Table 1 BDA Block Diagram Description: Refer to Figure 1, on page 4 for the following discussion. The BDA Downlink path receives RF signals from the base station and amplifies and transmits them to the subscriber. The BDA Uplink path receives RF signals from the subscriber and amplifies and transmits them to the base station. The Uplink and Downlink occupy two distinct frequency bands. For example, a sample frequency band in VHF is as follows: 158-159 MHz for the Uplink and 154-156 MHz for the Downlink. Two diplexers isolate 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 – 31 dB of attenuation in 1 dB steps. The use of these controls is covered in the “OPERATION” section, page 10. Optional Equipment Overview: a) Visual Alarms All G-Wave BDAs feature visual alarms as a standard. LEDs are provided for UL and DL alarms, ALC UL and DL alarms as well as Power indicator. b) DC Input Power Option (S1) The BDA is equipped with both AC and DC voltage inputs for power operation. This gives the flexibility of powering the BDA with either an AC or DC source. If both sources are connected, the BDA will automatically select the stronger source for power. c) Remote Monitoring via 9-Pin Dry Contact Connector (RM9) A 9-Pin dry contact will be provided to hard wire into a building’s alarm system. Dry contact will provide alarms for ALC and amplifier failure. 4 | Page Block Diagram Drawing: Figure 1 1. First stage Internal Filter Downlink -This highly selective filter provides additional rejection for increased isolation. 2. Downlink LNA- Is a low noise amplifier which offers 26 db Gain and establishes the Noise Figure of the downlink path. 3. Internal Filter Downlink - This highly selective filter gives additional rejection for increased isolation. 4. Downlink Pre-amp - Is a low noise amplifier that drives the downlink MPA and offers 16dB Gain. 5. Downlink MPA - Is a medium power amplifier with an ALC circuit which offers 42dB Gain. 6. Low Pass Filter Downlink- This low pass filter provide a rejection of harmonics. 7. Output Diplexer – Has a low bandpass insertion loss and high selectivity for one distinct downlink/uplink frequency band. 8. First stage Internal Filter Uplink - This highly selective filter gives additional rejection for increased isolation. 9. Uplink LNA- Is a low noise amplifier which offers 26 db Gain and establishes the Noise Figure of the Uplink path. 10. Internal Filter Uplink - This highly selective filter gives additional rejection for increased isolation. 11. Uplink Pre-amp - Is a low noise amplifier that drives the Uplink MPA and offers 16dB Gain. 12. Uplink MPA - Is a medium power amplifier with an ALC circuit which offers 42dB Gain. 13. Low Pass Filter Downlink- This low pass filter provide a rejection of harmonics. 14. Input Diplexer – Has a low bandpass insertion loss and high selectivity for one distinct downlink/uplink frequency band. 5 | Page Electrical Specifications: BDA-VHF-33/33-80-20RU18 Specifications Typical Frequency Range : 138-174 MHz Bandwidth : 1-5 MHz Minimum passband separation : 2 MHz Pass band Gain @ min attenuation : 80 dB (Max.) Variable Step Attenuator Range (1-dB steps) : 0-31 dB Gain Flatness : ±1.5 dB (Typ.) Noise Figure @ +25⁰C at Max. gain : 5.5 dB (Max.) 5.0 dB (Typ.) 3rd Order Intercept point @ 2 tones +30dbm each : +54 dbm Power Output @ 1dB Compression : +36 dBm (Typ.) Composite Output Power : +33 dBm (Typ.) Output Power ALC Set : +33 dBm (Typ.) Input/ Output Impedance 50 Ohms VSWR (Input/Output) 1.5: 1 (Max.) Power Supply 110VAC/1.1 Amp; 240VAC/0.5 Amp 50 to 60 Hz 6 | Page Mechanical Specifications: Size : 40.0 x 21.0 x 22 inch RF Connectors : N-Type Female Weight : < 212 lb / (84 kg) approx. (Additional Filter Rack not included) Environmental Conditions: The unit is designed for indoor applications: Operating temperature: - 20°C to +50°C Storage temperature: - 40°C to +85°C 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 90 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. 7 | Page BDA CONNECTIONS: The BDA AC power is accepted through a standard 3-wire male plug (IEC-320) with phase, neutral and ground leads. The AC power is wired to a high efficiency DC switching power supply which is CE and UL approved. The power supply runs the amplifiers and the Power On lamp. The me…

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Parts List/Tune Up Info

BDA‐VHF‐33/33‐80‐20U18 BDA Tune Up Procedure: DO NOT APPLY A.C. POWER TO THE BDA UNTIL CABLES ARE CONNECTED TO BOTH PORTS OF THE BDA AND THE ANTENNAS. 1. Set the BDA Rack on the floor or mount on a wall (where applicable). Using appropriate screws and anchors, attach the BDA to the wall at the four mounting holes on the side flanges. (Special version not shown in this manual). 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 cable from the service antennas to the BDA connector labeled “MOBILE”. 4. See main Panel of the BDA and verify that both of the Uplink and Downlink attenuation is set to 31 dB via dial Attenuator. 5. Connect the AC power cord to the BDA and then to the power source. Verify that the “Power ON” lamp is illuminated. Installation of the BDA is now complete. To adjust the gain controls to suit the specific signal environment, refer to the next section of the manual. Note : For repeat installations of existing equipment, make sure the attenuation is positioned to its maximum setting (31 dB). After verification attenuation, follow the above steps starting with step 1. BDA Operation: Variable Step Attenuator BDA gain can be attenuated, for Uplink and Downlink separately, up to 31 dB in 1 dB steps using the variable step attenuator, see Figure 1. To adjust the attenuation up to 11 dB, use the dialer on the front panel. To adjust the attenuation up to 31 dB, set the thumbnail switch to +10 dB, and then dial in the remaining attenuation via the dialer. BDA gain may be determined by subtracting the attenuation value from the gain reported on the BDA Test Data Sheet for that side of the unit. The attenuators are labeled for Uplink and Downlink. Attenuation System GainAttenuator Position 0 80Both thumbnail switches down and the dialer on zero 5 75Both thumbnail switches down and the dialer on five 10 70Both thumbnail switches down and the dialer on ten 15 65One thumbnail switch up and the dialer on five 20 60One thumbnail switch up and the dialer on ten 25 55Two thumbnail switches up andthe dialer on five 31 49Two thumbnail switches up and the dialer on eleven Table 1 ALC (Automatic Level Control) To minimize intermodulation products, each amplifier in the BDA contains an ALC feedback loop. The ALC circuit senses the output power and limits it to the factory preset level of +33 dBm. The ALC function is integrated in each amplifier. A red indicator lamp located on each amplifier illuminates when output power exceeds the ALC set point. To establish proper operating gain on the Uplink and Downlink sides, start with the Downlink. Verify that the attenuation is set for 31 dB (minimum system gain). Observe the red indicator lamp on the Downlink amplifier. Units are shipped with maximum attenuation. Decrease attenuation one step at a time until the lamp is lit. Then, 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. Operation of the BDA at minimum attenuation with greater than ‐45 dBm average power incident on either BASE or MOBILE port can cause damage to the BDA. DOWNLINK Gain Adjust Dial Figure 1: Variable Gain Adjustment Access Figure 2 Visual Alarms DOWNLINK Gain Adjust Dial UPLINK Gain Adjust Dial

Test Report

p1480008_FCC_Part 90_Rev 4.0 Page 1 of 41 Test Report Prepared for: G-Way Microwave Models: GA-V139/152/2/33/80-R6U15 GA-V162/173/2/33/80-R6U15 Description: VHF Bi-Directional Amplifier for land-mobile radio systems. Used to amplify frequencies within RF shielded buildings. Serial Numbers: 14081001, 14081002 FCC ID: Q8KVHF2W80 To FCC Part 90 Date of Issue: December 10, 2014 On the behalf of the applicant: G-Wave Incorporated 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: p1480008 Greg Corbin 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. p1480008_FCC_Part 90_Rev 4.0 Page 2 of 41 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 September 5, 2014 Greg Corbin Original Document 2.0 October 23, 2014 Greg Corbin Added Intermodulation Test Data on pages 3.0 November 3, 2014 Greg Corbin Updated references on the Test Summary Table, Added Input plots for Occupied Bandwidth, Added section for Radiated Output Power, Added section for Noise Figure 4.0 December 4, 2014 Greg Corbin Added the following note “Not applicable for FCC certification” to all the data recorded below 150 MHz. p1480008_FCC_Part 90_Rev 4.0 Page 3 of 41 Table of Contents Description Page Standard Test Conditions and Engineering Practices 6 Test Result Summary 9 Authorized Frequency Band 10 Conducted Output Power and Amplifier Gain 13 Radiated Output Power 13 Conducted Spurious Emissions 14 Radiated Spurious Emissions 19 Emission Masks (Occupied Bandwidth) 20 Intermodulation 37 Noise Figure Test 40 Test Equipment Utilized 41 p1480008_FCC_Part 90_Rev 4.0 Page 4 of 41 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 p1480008_FCC_Part 90_Rev 4.0 Page 5 of 41 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. p1480008_FCC_Part 90_Rev 4.0 Page 6 of 41 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, or FCC Part 2 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) 24.6 – 28.7 38.9 – 45.9 963.8 – 972.4 Measurement results, unless otherwise noted, are worst-case measurements. p1480008_FCC_Part 90_Rev 4.0 Page 7 of 41 EUT Description Models: GA-V139/152/2/33/80-R6U15 GA-V162/173/2/33/80-R6U15 Description: VHF Bi-Directional Amplifier for land-mobile radio systems. Used to amplify frequencies within RF shielded buildings. Firmware: N/A Serial Number: 14081001, 14081002 Additional Information: The EUT is classified as a Class B industrial signal booster The EUT is a VHF Bi-directional Amplifier that operates from 138 – 174 MHz in both directions. It is used to amplify frequencies within RF shielded buildings for land mobile radio systems. The system uses modules which have 2 MHz wide bandpass filters with…

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Test Report

p1480008_FCC_Part 1.1310_Rev 4.0 Page 1 of 6 Test Report Prepared for: G-Way Microwave Models: GA-V139/152/2/33/80-R6U15 GA-V162/173/2/33/80-R6U15 Description: VHF Bi-Directional Amplifier for land-mobile radio systems. Used to amplify frequencies within RF shielded buildings. Serial Numbers: 14081001, 14081002 FCC ID: Q8KVHF2W80 To FCC Part 1.1310 Date of Issue: December 10, 2014 On the behalf of the applicant: G-Way Microwave 38 Leuning Street South Hackensack, NJ 07606 Att…

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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
39150 MHz - 174 MHz2.1 WF1E
Confidentiality
Long Term
Grant Notes
Power output listed is the composite for multi-channel operation. This transmitter operates as a remote unit as part of a system along with master unit components as described in this filing and excluding any other devices connected to the (downlink) output terminal of the master unit. This application covers only the system configuration with master unit connected to a base station in the downlink path; operations if any with master unit connected to antenna or amplifier in the downlink require separate equipment authorization. Antennas installed for each remote unit must provide a minimum 30 cm separation distance from all persons as described in this filing. The antenna(s) used for this transmitter must be fixed-mounted on (outdoor/indoor) permanent structures. RF exposure compliance is addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of 1.1307(b)(3).

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