
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Installation and Operating Manual BDA-UHF-36/36-80-R UHF Band Bi-Directional Amplifier 2 | Page Table of Contents SAFETY OPERATION INSTRUCTIONS ................................................................................. 3 OVERVIEW ................................................................................................................................ 4 FCC NOTE .................................................................................................................................. 4 IC NOTE ...................................................................................................................................... 4 MANUFACTURER’S NOTE ..................................................................................................... 4 RF EXPOSURE WARNING ....................................................................................................... 4 ELECTRICAL SPECIFICATIONS ............................................................................................ 6 MECHANICAL SPECIFICATIONS .......................................................................................... 6 ENVIRONMENTAL CONDITIONS ......................................................................................... 6 MECHANICAL OUTLINE......................................................................................................... 8 CONNECTIONS ......................................................................................................................... 9 AVAILABLE, OPTIONAL FEATURES ................................................................................. 10 ALARM CONDITIONS ............................................................................................................ 11 VARIABLE GAIN ADJUSTMENT AND LED INDICATORS ............................................. 12 INSTALLATION ...................................................................................................................... 13 OPERATION ............................................................................................................................. 14 DIAGNOSTICS GUIDE ........................................................................................................... 15 ANTENNA SEPERATION ....................................................................................................... 15 APPENDIX 1 ............................................................................................................................. 16 APPENDIX 2 ............................................................................................................................. 18 3 | Page SAFETY OPERATION INSTRUCTIONS BEFORE USE Review this manual and insure that all conditions are compatible with the amplifier's specifica tions. Safe operation may be impaired if this equipment is not used as intended. GENERAL DESCRIPTION This sy mbol is marked in the manual and denotes important sa fety operation instructions. Please read carefully before continuing. This equipment is suitable for a wide variety of sci entific, industrial, laboratory and communication applications where high levels of electromagnetic Radio Frequency (RF) energy are required. Therefore, the output of the amplifier must be terminated to an appropriate load, such as a high power attenuator, dummy load, a communication or radiation antenna. User must insure that radiated energy do not violate regulatory levels of electromagnetic interference. PROTECTIVE GROUND This sy mbol is marked on the equipment and denotes protective ground terminal. This amplifier includes protective ground terminal. The equipment shouldn't be used if this protection is impaired. The supplied power cord must be used along with an uninterrupted external power source . HAZARDOUS LINE AND RF VOLTAGES This symbol is marked on the equipment where dangerous voltages are present. Use extreme ca ution. Both RF input and output connectors should be terminated prior to the application of the external AC source. Otherwise, contact with the RF output center pin can be dangerous. Place the amplifier in the OFF position prior to connecting and disconnect ing RF output load. ELECTROSTATIC DISCHARGE (ESD) This sy mbol is marked on the equipment where ESD sensitive device s are present. Do not handle without the proper protection. MAINTENANCE Maintenance, repair and calib ration must be performed by qualified personnel only. Contact with the internal amplifier co mponents maybe dangerous even when the equipment is in the OFF position. CAUTION This denotes a condition that may cause damage to the Amplifier if procedure is not correct ly performed. Do not proceed until the indicated conditions are met. FORCED AIR COOLING Do not block the inlet and outlet of the internal cooling blowers. Otherwise damage may result to the amplifier. 4 | Page OVERVIEW The BDA assembly enhances the coverage area of radio communications in buildings and RF shielded environments. The BDA has dual RF paths (Down-Link / Up-Link) to improve coverage in two distinct frequency bands. The unit features low noise figure and wide dynamic range. It is based on a dual duplexed path configuration with sharp out of band attenuation allowing improved isolation between the receiving and transmitting paths. BDA-UHF-36/36-80-R provides up to 36 dBm composite power and has up to 80 dB gain. FCC NOTE This is a Class B device. The product has been tested and found to comply with the Booster requirements per FCC Part 90. IC NOTE The product has been tested and found to comply with the Industry Canada (IC) RF Exposure Requirements, pursuant to IC RSS-131. MANUFACTURER’S 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 output signal is re-radiated and can cause interference to adjacent band users. This p…
Text truncated - open the document above for the full version.
April 13, 2015 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, FCC ID: Q8KUHF3680R, 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
FCC Confidential Authorization April 13, 2015 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID# Q8KUHF3680R: In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, G-Way Microwave, hereby requests long-term confidential treatment of information accompanying this application as outlined below: • Schematics • Block Diagram • Parts List- Bill of Materials (BOM) • Internal Photos The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Sincerely, _______________________ Greg David - Technical Director 38 Leuning Street, S.Hackensack, NJ 07606 Tel: 201-343-6388
Form: CB-7.2.1 Issued by: QM Issue Date: 9/22/2011 Page 1 of 2 Revised by: QM-JS Revised Date: 6/23/2014 L:\Project\2015\p1540002-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT Form.docx CB-7.2.1 – Technical Review RT Form FCC ID: Q8KUHF3680AB, Q8KUHF3680N, Q8KUHF3680R IC ID: 4901A-UHF3680AB, 4901A-UHF3680N, 4901A-UHF3680R CT Project: P1540002 From: Shawn McMillen Date: RTs 06-15-2015 1. There is a request for long term confidentiality for internal photos. This is normally held short term by can request, under special conditions, for long term. See below if this requirement is met. The internal photos and/or user’s manual exhibits may be given Long-Term Confidentiality under the following special conditions: a) Internal photos 1. May be held confidential if the circuit board or internal components are not accessible to users. For example, it is acceptable if the circuit board is enclosed in epoxy. 2. Also, it is acceptable if the device is not accessible to the public, for example, a device mounted on the top of a large tower (or in a fenced enclosure) such that it is only serviceable by professional designated technicians under a Non-Disclosure Agreement (NDA). All sales for these devices must be under a NDA restricting the disclosure of the propriety information, including internal photos. DW: I have informed client in the past and they insist on submitting it as is since FCC/IC has not corrected them yet. SM: Please have the client provide an explanation per above to determine if long term confidentiality of internal photos can be established. Client: please upload as before. 2. The antenna data sheets provided show a Yagi antenna with the frequency range 380- 400MHz. Since this is not a range the EUT is seeking approval for this antenna should be removed. Client: Remove the yagi from file. 3. The MPE calculations were based off a 0dBi gain antenna however the manufacturer issued the antenna data sheets for this product. The MPE needs to be recalculated to address the higher gain antennas being used with the product. Greg: The MPE calculations are based on the Manufacturer’s rated output + 20 % which is the worst case operating conditions. The mfr rated output is 36 dBm. The FCC Limit is 37 dBM ERP. Even if the mfr uses a higher gain antenna they have to back the power down to stay within the Form: CB-7.2.1 Issued by: QM Issue Date: 9/22/2011 Page 2 of 2 Revised by: QM-JS Revised Date: 6/23/2014 L:\Project\2015\p1540002-GWave Inc\TCB Folder\RT's\CB-7.2.1 - Technical Review RT Form.docx FCC limit. SM: The user’s manual does not have the correct separation distance per the MPE calculations Clent: Corrected 6/25/15 4. On page 6 of the EMC reports additional hosts are listed however each host should represent one ID. Greg: References to additional hosts have been removed. CT - Response by: Submitted by: Date:
UHF-430-70-500 93011882 490-512 500 22
UHF-430-70-470 93011881
Labels Exemplary *The labels having adhesive back.
15 | Page OPERATION Refer to Figure 4 & 5 for adjustment access location, connectors and labels. Variable Step Attenuator BDA gain that indicated in the spec can be reduced by up to 30 dB in 2 dB steps using the variable step attenuator. Gain adjustment is made with rotary switches located on the front panel of the BDA enclosure. Arrows on the shafts of these switches point to the value of attenuation selected. BDA gain can 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 . 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, as indicated in the specification. ALC function is located in each power amplifier. A red LED indicator located on the Front main panel (see figure 5) illuminates when output power meets or exceeds the ALC preset point. To establish proper operating gain on the Uplink and Downlink sides, start with the Downlink. Observe the red LED indicator on the Downlink amplifier. Units are shipping with maximum attenuation. Decrease attenuation one step at a time until the red LED is lit. Then, using the Downlink step attenuator, increase the attenuation until the red LED goes off. Repeat the process for the Uplink, and then repeat the process for the second band. This setup should be done under RF signal transmit for either path the level indicator is accurate to +/- 0.4 dB of the ALC set point. Verify the downlink in-building signal strength and the uplink signal strength at donor antenna meets requirements. Reduce the gain if needed. Note: Operation of BDA-UHF-36/36-80-AB at maximum gain with greater than -30 dBm average power incidents on the MOBILE or BASE ports could cause damage to the BDA.
BDAUHF 36/3680R –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 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. 2. Ensure that the isolation between the base station antenna and the mobile antenna should be at least 12 dB higher than the BDA gain (Use the higher of the Uplink and Downlink gains reported on the BDA test data sheet). Isolation less than this value can cause gain ripple across the band. Isolation equal to or less than the BDA gain will give rise to oscillations which will saturate the amplifiers and possibly cause damage to the BDA. 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 30 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 (30 dB). After verification attenuation, follow the above steps starting with step 1. Refer to Figure 1 for adjustment access location, connectors and labels . Variable Step Attenuator BDA gain that indicated in the spec can be reduced by up to 30 dB in 2 dB steps using the variable step attenuator. Gain adjustment is made with rotary switches located on the front panel of the BDA enclosure. Arrows on the shafts of these switches point to the value of attenuation selected. BDA gain can 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 . 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, as indicated in the specification. ALC function is located in each power amplifier. A red LED indicator located on the Front main panel (see figure 1) illuminates when output power meets or exceeds the ALC preset point. To establish proper operating gain on the Uplink and Downlink sides, start with the Downlink. Observe the red LED indicator on the Downlink amplifier. Units are shipping with maximum attenuation. Decrease attenuation one step at a time until the red LED is lit. Then, using the Downlink step attenuator, increase the attenuation until the red LED goes off. Repeat the process for the Uplink, and then repeat the process for the second band. This setup should be done under RF signal transmit for either path the level indicator is accurate to +/- 0.4 dB of the ALC set point. Verify the downlink in-building signal strength and the uplink signal strength at donor antenna meets requirements. Reduce the gain if needed. Note: Operation of BDA-UHF-36/36-80-R at maximum gain with greater than -30 dBm average power incidents on the MOBILE or BASE ports could cause damage to the BDA. Figure 1: Variable Gain Adjustment and Visual Alarms
p1540002R_FCC_Part 1.1310_Rev 1.0 Page 1 of 6 Test Report Prepared for: G-Way Microwave Model: BDA-UHF-36/36-80-R Description: Bi-Directional amplifier (BDA), amplify DL an UL frequencies in the UHF band. The max composite power of this BDA is 36 dbm and has up to 80db gain, come within a rack enclosure Serial Number: 15031003 FCC ID: Q8KUHF3680R To FCC Part 1.1310 Date of Issue: June 10, 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) 343-6388 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: p1540002R 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 p1540002R_FCC_Part 1.1310_Rev 1.0 Page 2 of 6 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 June 3, 2015 Greg Corbin Original Document p1540002R_FCC_Part 1.1310_Rev 1.0 Page 3 of 6 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 p1540002R_FCC_Part 1.1310_Rev 1.0 Page 4 of 6 EUT Description Model: BDA-UHF-36/36-80-R Description: Bi-Directional amplifier (BDA), amplify DL an UL frequencies in the UHF band. The max composite power of this BDA is 36 dbm and has up to 80db gain, come within a rack enclosure Firmware: N/A Serial Number: 15031003 Additional Information: The EUT is classified as a Class B industrial signal booster The EUT is a UHF Bi-directional Amplifier that operates from 406.1 – 430, and 450 – 512 MHz in both directions. EUT Operation during Tests The EUT was tested under normal operating conditions with the front panel attenuators set to 0 dB for all measurements. MPE calculations were performed at the manufacturer’s rated output of +36 dBm using an antenna with 0 dBi gain. MPE calculations were performed at the manufacturer’s rated output of +36 dBm +20% using an antenna with 0 dBi gain. p1540002R_FCC_Part 1.1310_Rev 1.0 Page 5 of 6 MPE Evaluation This is a Fixed device used in an 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 Uplink Output Power set to manufacturer’s (Mfr) rated output power (+36 dBm) using an antenna with 0 dBi gain Test Frequency, MHz 406.1 Power, Mfr rated, mW (P) 3981 Antenna Gain Isotropic 0 dBi Antenna Gain Numeric (G) 1 Distance (R) 20 cm 푆= 푃∗퐺 4휋푟 2 Power Density (S) mw/cm 2 Power mW (P) Numeric Gain (G) Distance (r 2 ) cm 0.792 3981 1 20 Power Density (S) = 0.792 mw/cm 2 Limit =(from above table) = 0.271 mw/cm 2 With the output power set to manufacturer rated output power (+36 dBm) using a 0 dBi antenna, the EUT does not meet the power density requirements at 20 cm, so the minimum safe distance was calculated below. Minimum Safe Distance Evaluation Test Data Uplink Output Power set to manufacturer’s (Mfr) rated output power (+36 dBm) using an antenna with 0 dBi gain Test Frequency, MHz 406.1 Power, Mfr rated, mW (P) 3981 Antenna Gain Isotropic 0 dBi Antenna Gain Numeric (G) 1 Limit (L) 0.271 R=√(PG/4πL) Distance (R) cm Power mW (P) Numeric Gain (G) Limit (L) 34.2 3981 1 0.271 With the output power set to the manufacturer’s (Mfr) rated output power (+36 dBm) using an antenna with 0 dBi gain, the minimum safe distance is 34.2 cm. p1540002R_FCC_Part 1.1310_Rev 1.0 Page 6 of 6 MPE Evaluation This is a Fixed device used in an 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 Uplink Output Power set to manufacturer’s (Mfr) rated output power (+36 dBm) + 20 % using an antenna with 0 dBi gain Test Frequency, MHz 406.1 Power, Mfr rated, mW (P) 3981 Power, Mfr rated + 20%, mW (P) 4777.2 mw (3981 + 20% ) Antenna Gain Isotropic 0 dBi Antenna Gain Numeric (G) 1 Distance (R) 20 cm 푆= 푃∗퐺 4휋푟 2 Power Density (S) mw/cm 2 Power mW (P) Numeric Gain (G) Distance (r 2 ) cm 0.950 4772.2 1 20 Power Density (S) = 0.950 mw/cm 2 Limit =(from above table) = 0.271 mw/cm 2 With the Uplink output power set to manufacturer rated output power (+36 dBm) + 20 % using a 0 dBi antenna, the EUT does not meet the power density requirements at 20 cm, so the minimum safe distance was calculated below. Minimum Safe Distance Evaluation Test Data Uplink Output Power set to manufacturer’s (Mfr) rated output power (+36 dBm) + 20 % using an antenna with 0 dBi gain Test Frequency, MHz 406.1 Power, Mfr rated, mW (P) 3981 Power, Mfr rated + 20%, mW (P) 4777.2 mw (3981 + 20% ) Antenna Gain Isotropic 0 dBi Antenna Gain Numeric (G) 1 Limit (L) 0.271 R=√(PG/4πL) Distance (R) cm Power mW (P) Numeric Gain (G) Limit (L) 37.5 4777.2 1 0.271 With the Uplink Output Power set to the manufacturer’s (Mfr) rated output power (+36 dBm) + 20 % using an antenna with 0 dBi gain, the minimum safe distance is 37.5 cm. END OF TEST REPORT
p1540002R_Annex A _Rev 1.0 Page 1 of 5 Annex A Authorized Frequency Band p1540002R_Annex A _Rev 1.0 Page 2 of 5 407 MHz 416 MHz p1540002R_Annex A _Rev 1.0 Page 3 of 5 420 MHz 429 MHz p1540002R_Annex A _Rev 1.0 Page 4 of 5 451 MHz 460 MHz p1540002R_Annex A _Rev 1.0 Page 5 of 5 502 MHz 511 MHz
p1540002R_Annex B_Rev 1.0 Page 1 of 9 Annex B Conducted Spurious Emissions p1540002R_Annex B_Rev 1.0 Page 2 of 9 1 - 6 GHz_407 MHz 1 - 6 GHz_416 MHz p1540002R_Annex B_Rev 1.0 Page 3 of 9 1 - 6 GHz_420 MHz 1 - 6 GHz_429 MHz 1 - 6 GHz_451 MHz p1540002R_Annex B_Rev 1.0 Page 4 of 9 1 - 6 GHz_460 MHz 1 - 6 GHz_502 MHz p1540002R_Annex B_Rev 1.0 Page 5 of 9 1 - 6 GHz_511 MHz 30 - 1000 MHz_407 MHz p1540002R_Annex B_Rev 1.0 Page 6 of 9 30 - 1000 MHz_416 MHz 30 - 1000 MHz_420 MHz p1540002R_Annex B_Rev 1.0 Page 7 of 9 30 - 1000 MHz_429 MHz 30 - 1000 MHz_451 MHz p1540002R_Annex B_Rev 1.0 Page 8 of 9 30 - 1000 MHz_460 MHz 30 - 1000 MHz_502 MHz p1540002R_Annex B_Rev 1.0 Page 9 of 9 30 - 1000 MHz_511 MHz
p1540002R_Annex C _Rev 1.0 Page 1 of 45 Annex C Emission Masks p1540002R_Annex C _Rev 1.0 Page 2 of 45 Mask B_407 MHz_Input Mask B_407 MHz_Output p1540002R_Annex C _Rev 1.0 Page 3 of 45 Mask B_407 MHz_Ref Mask B_416 MHz_Input p1540002R_Annex C _Rev 1.0 Page 4 of 45 Mask B_416 MHz_Output Mask B_416 MHz_Ref p1540002R_Annex C _Rev 1.0 Page 5 of 45 Mask B_420 MHz_ Input Mask B_420 MHz_Output p1540002R_Annex C _Rev 1.0 Page 6 of 45 Mask B_420 MHz_Ref Mask B_429 MHz_ Input p1540002R_Annex C _Rev 1.0 Page 7 of 45 Mask B_429 MHz_Output Mask B_429 MHz_Ref p1540002R_Annex C _Rev 1.0 Page 8 of 45 Mask B_451 MHz_ Input Mask B_451 MHz_Output p1540002R_Annex C _Rev 1.0 Page 9 of 45 Mask B_451 MHz_Ref Mask B_460 MHz_ Input p1540002R_Annex C _Rev 1.0 Page 10 of 45 Mask B_460 MHz_Output Mask B_460 MHz_Ref p1540002R_Annex C _Rev 1.0 Page 11 of 45 Mask B_501 MHz_ Input Mask B_501 MHz_Output p1540002R_Annex C _Rev 1.0 Page 12 of 45 Mask B_501 MHz_Ref Mask B_511 MHz_ Input p1540002R_Annex C _Rev 1.0 Page 13 of 45 Mask B_511 MHz_Output Mask B_511 MHz_Ref p1540002R_Annex C _Rev 1.0 Page 14 of 45 Mask D_407 MHz_ C4FM Input Mask D_407 MHz_ C4FM Output p1540002R_Annex C _Rev 1.0 Page 15 of 45 Mask D_407 MHz_ Input Mask D_407 MHz_ Output p1540002R_Annex C _Rev 1.0 Page 16 of 45 Mask D_407 MHz_Ref Mask D_416 MHz_ C4FM Input p1540002R_Annex C _Rev 1.0 Page 17 of 45 Mask D_416 MHz_ C4FM Output Mask D_416 MHz_ Input p1540002R_Annex C _Rev 1.0 Page 18 of 45 Mask D_416 MHz_ Output Mask D_416 MHz_ Ref p1540002R_Annex C _Rev 1.0 Page 19 of 45 Mask D_420 MHz_ C4FM Input Mask D_420 MHz_ C4FM Output p1540002R_Annex C _Rev 1.0 Page 20 of 45 Mask D_420 MHz_ Input Mask D_420 MHz_ Output p1540002R_Annex C _Rev 1.0 Page 21 of 45 Mask D_420 MHz_ Ref Mask D_429 MHz_ C4FM Input p1540002R_Annex C _Rev 1.0 Page 22 of 45 Mask D_429 MHz_ C4FM Output Mask D_429 MHz_ Input p1540002R_Annex C _Rev 1.0 Page 23 of 45 Mask D_429 MHz_ Output Mask D_429 MHz_ Ref p1540002R_Annex C _Rev 1.0 Page 24 of 45 Mask D_451 MHz_ C4FM Input Mask D_451 MHz_ C4FM Output p1540002R_Annex C _Rev 1.0 Page 25 of 45 Mask D_451 MHz_ Input Mask D_451 MHz_ Output p1540002R_Annex C _Rev 1.0 Page 26 of 45 Mask D_451 MHz_ Ref Mask D_460 MHz_ C4FM Input p1540002R_Annex C _Rev 1.0 Page 27 of 45 Mask D_460 MHz_ C4FM Output Mask D_460 MHz_ Input p1540002R_Annex C _Rev 1.0 Page 28 of 45 Mask D_460 MHz_ Output Mask D_460 MHz_ Ref p1540002R_Annex C _Rev 1.0 Page 29 of 45 Mask D_501 MHz_ C4FM Input Mask D_501 MHz_ C4FM Output p1540002R_Annex C _Rev 1.0 Page 30 of 45 Mask D_501 MHz_ Input Mask D_501 MHz_ Output p1540002R_Annex C _Rev 1.0 Page 31 of 45 Mask D_501 MHz_ Ref Mask D_511 MHz_ C4FM Input p1540002R_Annex C _Rev 1.0 Page 32 of 45 Mask D_511 MHz_ C4FM Output Mask D_511 MHz_ Input p1540002R_Annex C _Rev 1.0 Page 33 of 45 Mask D_511 MHz_ Output Mask D_511 MHz_ Ref p1540002R_Annex C _Rev 1.0 Page 34 of 45 Mask E_407 MHz_Input Mask E_407 MHz_Output p1540002R_Annex C _Rev 1.0 Page 35 of 45 Mask E_407 MHz_Ref Mask E_416 MHz_Input p1540002R_Annex C _Rev 1.0 Page 36 of 45 Mask E_416 MHz_Output Mask E_416 MHz_Ref p1540002R_Annex C _Rev 1.0 Page 37 of 45 Mask E_420 MHz_Input Mask E_420 MHz_Output p1540002R_Annex C _Rev 1.0 Page 38 of 45 Mask E_420 MHz_Ref Mask E_429 MHz_Input p1540002R_Annex C _Rev 1.0 Page 39 of 45 Mask E_429 MHz_Output Mask E_429 MHz_Ref p1540002R_Annex C _Rev 1.0 Page 40 of 45 Mask E_451 MHz_Input Mask E_451 MHz_Output p1540002R_Annex C _Rev 1.0 Page 41 of 45 Mask E_451 MHz_Ref Mask E_460 MHz_Input p1540002R_Annex C _Rev 1.0 Page 42 of 45 Mask E_460 MHz_Output Mask E_460 MHz_Ref p1540002R_Annex C _Rev 1.0 Page 43 of 45 Mask E_501 MHz_Input Mask E_501 MHz_Output p1540002R_Annex C _Rev 1.0 Page 44 of 45 Mask E_501 MHz_Ref Mask E_511 MHz_Input p1540002R_Annex C _Rev 1.0 Page 45 of 45 Mask E_511 MHz_Output Mask E_511 MHz_Ref
p1540002R_Annex D _Rev 1.0 Page 1 of 5 Annex D Intermodulation p1540002R_Annex D _Rev 1.0 Page 2 of 5 407 MHz 416 MHz p1540002R_Annex D _Rev 1.0 Page 3 of 5 420 MHz 429 MHz p1540002R_Annex D _Rev 1.0 Page 4 of 5 451 MHz 460 MHz p1540002R_Annex D _Rev 1.0 Page 5 of 5 502 MHz 511 MHz
p1540002R_FCC_Part 90_Rev 4.0 Page 1 of 17 Test Report Prepared for: G-Way Microwave Model: BDA-UHF-36/36-80-R Description: Bi-Directional amplifier (BDA), amplify DL an UL frequencies in the UHF band. The max composite power of this BDA is 36 dbm and has up to 80db gain, come within a rack enclosure Serial Number: 15031003 FCC ID: Q8KUHF3680R To FCC Part 90 Date of Issue: July 9, 2015 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) 343-6388 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: p1540002R 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. p1540002R_FCC_Part 90_Rev 4.0 Page 2 of 17 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 September 5, 2014 Greg Corbin Original Document 2.0 June 15, 2015 Greg Corbin Removed radiated emission test data that does not apply to this enclosure from the table on page 13 3.0 June 17, 2015 Greg Corbin Removed references to other enclosures on page 6. 4.0 July 9, 2015 Greg Corbin Removed statement referring to “additional cavity filters” from the description on page 6. Added a table to the bottom of page 6 describing which test frequency was applied to each port. Removed extra radiated test photos that do not apply to this enclosure. p1540002R_FCC_Part 90_Rev 4.0 Page 3 of 17 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 10 Conducted Spurious Emissions 11 Radiated Spurious Emissions 12 Emission Masks (Occupied Bandwidth) 14 Intermodulation 15 Noise Figure Test 16 Test Equipment Utilized 17 p1540002R_FCC_Part 90_Rev 4.0 Page 4 of 17 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 p1540002R_FCC_Part 90_Rev 4.0 Page 5 of 17 The Applicant has been cautioned as to the fol…
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| # | Rule Parts | Frequency Range | Power Output | Emission |
|---|---|---|---|---|
| 9 | 9 | 450 MHz - 512 MHz | 3.467 W | 4K00F1E |

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