
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Consumer signal booster user manual Content What is included ............................................................................ 4 1 HOW IT WORKS ..................................................................................... 4 2 TOOL REQUIRED .................................................................................... 4 3 HOW TO INSTALL YOUR NEW CELLULAR BOOSTER (for Vehicle installations) ................................................................................................ 5 3.1 Outside antenna: ......................................................................... 5 3.2 Wireless vehicle installations: ...................................................... 5 3.3 Inside antenna: ............................................................................ 6 3.4 Feeder .......................................................................................... 6 3.5 Power supply ................................................................................ 6 3.6 Install note: .................................................................................. 6 4 HOW TO INSTALL YOUR NEW CELLULAR BOOSTER (for Fixed Installations) ................................................................................................ 7 4.1 Overview ...................................................................................... 7 4.2 Plan the layout of your system .................................................... 9 4.3 Check for Signal Strength ............................................................. 9 4.4 Run coaxial cable....................................................................... 10 4.5 Install the Donor (Outdoor) antenna ........................................ 11 4.6 Install the Server (Indoor) antenna .......................................... 11 4.7 Install your cellular booster ...................................................... 12 4.8 Power up your cellular booster ................................................ 12 4.9 Check the Cellular Booster Status ............................................. 13 5 UNDERSTAND THE PORTS, MGC DIP SWITCH, LED STATUS ............... 14 5.1 Repeater ports .......................................................................... 14 5.2 LED status .................................................................................. 14 5.3 Device connect .......................................................................... 15 6 Authorized Kitting Options ................................................................ 16 6.1 Donor (Outdoor) default antenna for vehicle installations ...... 16 6.2 Donor (Outdoor) antenna for fixed installations ...................... 17 6.3 Server (Indoor) default antenna for vehicle installations ......... 17 6.4 Server (Indoor) antenna for fixed installations ......................... 18 6.5 Antenna Kitting Options for vehicle installations ..................... 18 Outdoor default Antenna & Cable Kit Options ................................ 18 Indoor default Antenna & Cable Kit Options ................................... 18 6.6 Antenna Kitting Options for fixed installations ......................... 18 Outdoor Antenna & Cable Kit Options ............................................ 18 Indoor Antenna & Cable Kit Options ............................................... 19 7 TROUBLESHOOTING ........................................................................... 20 8 FREQUENTLY ASKED QUESTIONS ....................................................... 22 9 FCC RF Exposure Statement ............................................................... 24 10 Warning ........................................................................................... 24 11 Specification .................................................................................... 25 WHAT IS INCLUDED 1. Booster C27G‐CPAL‐AB‐C 2. Outdoor Magnet Mount 5dbi Whip Antenna 3. Indoor Sticker Mount Panel 3dbi Mobile Antenna 4. DC Power Adapter 1 HOW IT WORKS The cellular booster provides reliable two‐way cellular coverage by improving signal strength in homes, buildings, offices, and other areas where cellular reception is weak or unreliable. The system amplifies the signal from the nearest cellular tower and retransmits at a higher power level within a local area. This manual provides simple installation instructions that will have your cellular booster kit running in record time. 2 TOOL REQUIRED Phillips Screwdriver Drill Cellular Phone (to check signal strength) 3 HOW TO INSTALL YOUR NEW CELLULAR BOOSTER (for Vehicle installations) 3.1 Outside antenna: Adopt the car magnetic antenna or chuch antenna. Function: receive the signal from the base station, through the feeder to booster. Meanwhile transmit back the signal to the base station after enlarge the signal. 3.2 Wireless vehicle installations: Generally, hidden inside the corner nearby the power supply Function: two-way, full-duplex amplifier the inside &outside signal of the car, and the maximum uplink is to 2W. 3.3 Inside antenna: Adopt the car magnetic antenna or chuch antenna. Function: Transmit the enlarger signals to the mobile phone, and receive the uplink car phone signal to booster. 3.4 Feeder When install, hide it in the decoration materials or pads. Function: Connect the feeder, antenna, and mobile phone seat. 3.5 Power supply Adopt the9V-12V power supply, and it is extremely convenient for direct feed by the car power, also we support the car charger. 3.6 Install note: When install, try to separate the inside &outside antenna to the max straight distance, and make the inside and outside antenna could not mutual see (also don't mutual see each other through the roof skylight) 4 HOW TO INSTALL YOUR NEW CELLULAR BOOSTER (for Fixed Installations) 4.1 Overview This guide will help you properly install your cellular booster kit. It is important to read through all of the installation steps before installing your equipment. …
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SHENZHEN HUAPTEC CO., LTD Add.: 5th FL, E BLDG, Sogood Science Park, Sanwei Community, Hangkong Road, Xixiang, Bao'an, Shenzhen, Guangdong, China 518102 Tel: +86-0755-29921615 29921635 Fax: +86-755-29921165 October 21, 2014 Attestation for Huaptec Signal Booster: FCC ID: OWWC27G-CPAL-AB-C Signal Boosters certificated under FCC ID OWWC27G-CPAL-AB-C are manufactured and tested to ensure FCC compliance: (1) Since this s not a provider-specific booster, licensee consent is not required. (2) NPS and other compliance/safeguard features have been implemented (3) NPS and other compliance/safeguard features are defaulted to “ON” configuration (in operation) (4) NPS and other compliance/safeguard features cannot be field reconfigured, disabled or removed (5) Consumer booster is not user programmable, does not need fine tuning or adjustment, does not require professional installation (6) Future software upgrade will not cause non-compliance Sincerely Pengfei Li Managing Director
SHENZHEN HUAPTEC CO., LTD Add.: 5th FL, E BLDG, Sogood Science Park, Sanwei Community, Hangkong Road, Xixiang, Bao'an, Shenzhen, Guangdong, China 518102 Tel: +86-0755-29921615 29921635 Fax: +86-755-29921165 Agent Authorization Letter 26, Sep, 2014 Compliance Testing LLC 1724 S. Nevada Way Mesa, AZ 85204 RE: LETTER OF AGENT AUTHORIZATION To Whom It May Concern: We, the undersigned, hereby authorize (Brett Gassaway & 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). Sincerely, Pengfei Li Product Manager 5 th FL, E BLOG, Sogood Science Park, Hangkong Road, Xixiang, Bao’an, Shenzhen, China 518102 +86 15989859015 [email protected]
The antenna kitting options for model C27G-CPAL-AB-C signal booster were done for 18 Outside Antenna kit options and 26 Inside Antenna kit options. The order of the attached calculations is as follows: Outside Antenna kit Options Inside Antenna kit Options 1 Kit 11‐10050 1 Kit 5‐0 2 Kit 10‐100400 2 Kit 100‐1550 3 Kit 10‐7550 3 Kit 100‐30400 4 Kit 10‐10050 4 Kit 100‐5050 5 Kit 9‐5050 5 Kit 100‐7550 6 Kit 9‐75400 6 Kit 102‐7550‐50 7 Kit 9‐100400 7 Kit 103‐7550‐75 8 Kit 9‐7550 8 Kit 114‐7550‐50 9 Kit 9‐10050 9 Kit 100‐10050 10 Kit 5‐30400 10 Kit 100‐30400 11 Kit 5‐3050 11 Kit 100‐50400 12 Kit 5‐50400 12 Kit 100‐75400 13 Kit 5‐5050 13 Kit 3‐0350 14 Kit 5‐75400 14 Kit 3‐1550 15 Kit 5‐100400 15 Kit 3‐30400 16 Kit 5‐7550 16 Kit 3‐5050 17 Kit 5‐10050 17 Kit 3‐7550 18 Kit 66‐295‐0 18 Kit 3‐10050 19 Kit 3‐30400 20 Kit 3‐50400 21 Kit 3‐75400 22 Kit 3‐100400 23 Kit 32‐50400‐50 24 Kit 33‐50400‐75 25 Kit 34‐50400‐50 26 Kit 3‐0 Outside Antenna kit Options Final Output Power Limited to 30 dBm EIRP in all Frequency Bands Uplink Frequency(MHz) 704‐716 776‐787 824‐849 1710‐1755 1850‐1910 Uplink Output Power(dBm) 23.2 22.49 21.03 22.91 22.06 1. Yagi 11dbi Antenna with 100' 5D N male Kit numbers: 11‐10050 Antenna Gain (dBi) 11 11 11 11 11 Coax Cable Loss (dB) 5 5 5 8 8 Final Gain Less Loss (dB) 6 6 6 3 3 Final Output Power (dBm EIRP) 29.2 28.49 27.03 25.91 25.06 2. Panel 10dbi Antenna with 100' 400 N male Kit numbers:11‐100400 Antenna Gain (dBi) 10 10 10 10 10 Coax Cable Loss (dB) 3.9 3.9 3.9 6.2 6.2 Final Gain Less Loss (dB) 6.1 6.1 6.1 3.8 3.8 Final Output Power (dBm EIRP) 29.3 28.59 27.13 26.71 25.86 3. Panel 10dbi Antenna with 75' 5D N male Kit numbers:11‐7550 Antenna Gain (dBi) 10 10 10 10 10 Coax Cable Loss (dB) 4.2 4.2 4.2 5.7 5.7 Final Gain Less Loss (dB) 5.8 5.8 5.8 4.3 4.3 Final Output Power (dBm EIRP) 29 28.29 26.83 27.21 26.36 4. Panel 10dbi Antenna with 100' 5D N male Kit numbers:11‐10050 Antenna Gain (dBi) 10 10 10 10 10 Coax Cable Loss (dB) 5 5 5 8 8 Final Gain Less Loss (dB) 5 5 5 2 2 Final Output Power (dBm EIRP) 28.2 27.49 26.03 24.91 24.06 5. Yagi 9dbi Antenna with 50' 5D N male Kit numbers:9‐5050 Antenna Gain (dBi) 9 9 9 9 9 Coax Cable Loss (dB) 2.8 2.8 2.8 3.8 3.8 Final Gain Less Loss (dB) 6.2 6.2 6.2 5.2 5.2 Final Output Power (dBm EIRP) 29.4 28.69 27.23 28.11 27.26 6. Yagi 9dbi Antenna with 75' 400 N male Kit numbers:9‐75400 Antenna Gain (dBi) 9 9 9 9 9 Coax Cable Loss (dB) 3 3 3 5 5 Final Gain Less Loss (dB) 6 6 6 4 4 Final Output Power (dBm EIRP) 29.2 28.49 27.03 26.91 26.06 7. Yagi 9dbi Antenna with 100' 400 N male Kit numbers:9‐100400 Antenna Gain (dBi) 9 9 9 9 9 Coax Cable Loss (dB) 3.9 3.9 3.9 6.2 6.2 Final Gain Less Loss (dB) 5.1 5.1 5.1 2.8 2.8 Final Output Power (dBm EIRP) 28.3 27.59 26.13 25.71 24.86 8. Yagi 9dbi Antenna with 75' 5D N male Kit numbers:9‐7550 Antenna Gain (dBi) 9 9 9 9 9 Coax Cable Loss (dB) 4.2 4.2 4.2 5.7 5.7 Final Gain Less Loss (dB) 4.8 4.8 4.8 3.3 3.3 Final Output Power (dBm EIRP) 28 27.29 25.83 26.21 25.36 9. Yagi 9dbi Antenna with 100' 5D N male Kit numbers:9‐10050 Antenna Gain (dBi) 9 9 9 9 9 Coax Cable Loss (dB) 5 5 5 8 8 Final Gain Less Loss (dB) 4 4 4 1 1 Final Output Power (dBm EIRP) 27.2 26.49 25.03 23.91 23.06 10. Omni 5dbi Antenna with 30' 400 N male Kit numbers:5‐30400 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 1.1 1.1 1.1 1.8 1.8 Final Gain Less Loss (dB) 3.9 3.9 3.9 3.2 3.2 Final Output Power (dBm EIRP) 27.1 26.39 24.93 26.11 25.26 11. Omni 5dbi Antenna with 30' 5D N male Kit numbers:5‐3050 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 1.8 1.8 1.8 2.7 2.7 Final Gain Less Loss (dB) 3.2 3.2 3.2 2.3 2.3 Final Output Power (dBm EIRP) 26.4 25.69 24.23 25.21 24.36 12. Omni 5dbi Antenna with 50' 400 N male Kit numbers:5‐50400 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 2 2 2 3 3 Final Gain Less Loss (dB) 3 3 3 2 2 Final Output Power (dBm EIRP) 26.2 25.49 24.03 24.91 24.06 13. Omni 5dbi Antenna with 50' 5D N male Kit numbers:5‐5050 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 2.8 2.8 2.8 3.8 3.8 Final Gain Less Loss (dB) 2.2 2.2 2.2 1.2 1.2 Final Output Power (dBm EIRP) 25.4 24.69 23.23 24.11 23.26 14. Omni 5dbi Antenna with 75' 400 N male Kit numbers:5‐75400 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 3 3 3 5 5 Final Gain Less Loss (dB) 2 2 2 0 0 Final Output Power (dBm EIRP) 25.2 24.49 23.03 22.91 22.06 15. Omni 5dbi Antenna with 100' 400 N male Kit numbers:5‐10400 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 3.9 3.9 3.9 6.2 6.2 Final Gain Less Loss (dB) 1.1 1.1 1.1 ‐1.2 ‐1.2 Final Output Power (dBm EIRP) 24.3 23.59 22.13 21.71 20.86 16. Omni 5dbi Antenna with 75' 5D N male Kit numbers:5‐7550 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 4.2 4.2 4.2 5.7 5.7 Final Gain Less Loss (dB) 0.8 0.8 0.8 ‐0.7 ‐0.7 Final Output Power (dBm EIRP) 24 23.29 21.83 22.21 21.36 17. Omni 5dbi Antenna with 100' 5D N male Kit numbers:5‐10050 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 5 5 5 8 8 Final Gain Less Loss (dB) 0 0 0 ‐3 ‐3 Final Output Power (dBm EIRP) 23.2 22.49 21.03 19.91 19.06 18. Whip 5dbi Antenna Kit numbers:66‐295‐0 Antenna Gain (dBi) 5 5 5 5 5 Coax Cable Loss (dB) 5 5 5 8 8 Final Gain Less Loss (dB) 0 0 0 ‐3 ‐3 Final Output Power (dBm EIRP) 23.2 22.49 21.03 19.91 19.06 Inside Antenna kit Options Uplink Frequency(MHz) 704‐716 776‐787 824‐849 1710‐1755 1850‐1910 Measured Uplink Gain(dB) 45.9 45.39 43.13 44.61 44.26 MSCL Minimum (dB) 16.5 17.0 18.0 24.0 24.0 1.5' Separation Distance Path Loss (dB) 22.7 23.5 24.1 30.4 31.2 Polarity Loss (dB) 3.0 3.0 3.0 3.0 3.0 Max Antenna Gain with Coax Loss (dB) 9.2 9.5 9.1 9.4 10.2 1. Whip 5dbi Antenna Kit numbers: 5‐0 Antenna Gain (dBi) 5.0 5.0 5.0 5.0 5.0 Coax Cable Loss (dB) 0.0 0.0 0.0 0.0 0.0 Final Gain Less Loss (dB) 5.0 5.0 5.0 5.0 5.0 Margin (dB) ‐4.2 ‐4.5 ‐4.1 ‐4.4 ‐5.2 2. Panel 10dbi Antenna with 15' 5D N male Kit numbers:100‐1550 Antenna Gain (dBi) 10 10 10 10 10 Coax Cable Loss (dB) 1.1 1.1 1.1 1.6 1.6 Final Gain Less Loss (dB) 8.9 8.9 8.9 8.4 8.4 Margin (dB) ‐0.26 …
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SHENZHEN HUAPTEC CO., LTD Add.: 5th FL, E BLDG, Sogood Science Park, Sanwei Community, Hangkong Road, Xixiang, Bao'an, Shenzhen, Guangdong, China 518102 Tel: +86-0755-29921615 29921635 Fax: +86-755-29921165 Long Term Confidentiality Request Letter 26, Sep, 2014 Compliance Testing LLC 1724 S. Nevada Way Mesa, AZ 85204 RE: CONFIDENTIALITY REQUEST FOR (C27G-CPAL-AB-C, FCC ID: OWWC27G-CPAL-AB-C) To Whom It May Concern: This letter serves as an official request for confidentiality under sections 0.457 and 0.459 of CFR 47. We have requested that the following documents required to be submitted with this application be permanently withheld from public review. Block Diagram Schematics Theory of Operation Tune Up Procedure Parts List/BOM These documents contain detailed system and equipment descriptions and related information about the product, which manufacturer/applicant considers to be proprietary, confidential, and a custom design and otherwise, would not release to the general public. Since this design is a basis from which future technological products will evolve, manufacturer/applicant feels that this information would be of benefit to its competitors, and that the disclosure of the information in these documents would give our competitors an unfair advantage in the market. Please contact me if there is any information you may need. Sincerely, Pengfei Li Product Mananger 5 th FL, E BLOG, Sogood Science Park, Hangkong Road, Xixiang, Bao’an, Shenzhen, China 518102 +86-15989859015 [email protected]
Form: CB-7.2.1 Issued by: QM Issue Date: 9/22/2011 Page 1 of 1 Revised by: QM-JS Revised Date: 6/23/2014 L:\Project\2014\p1480004-Huaptec\TCB Folder\RT's\CB-7.2.1 - Technical Review RT Form.docx CB-7.2.1 – Technical Review RT Form FCC ID: OWWC27G-CPAL-AB-C IC ID: CT Project: P1480008 From: Shawn McMillen Date: 11/06/2014 1--The internal photos show that this EUT uses RF shields however there is no internal photo demonstrating this with the shields installed. 11/11/14 – Hauptec provided. 2--Please note that the MPE needs to be calculated at a separation distance of 20.0cm not 20.3cm. 11/11/14 – Hauptec provided. 3--Please note that the conducted spurious emission >1GHz are relative to a 1MHz RBW however a lower RBW can be used as long as the power is integrated over 1MHz. Please see conducted band edge plot in the EMC report. CT (Mike G): The 300 kHz and 3 MHz frequency spans are included in the OOBE test procedure to verify compliance to the OOBE limits, both within the 1st 100KHz/1MHz from the band edge, where specific rules permit narrower RBWs to be used (i.e. 1% emissions bandwidth), and outside the 1st 100KHz/1MHz (i.e. up to 300kHz/3MHz) from the band edge, where the RBW must use 100 kHz or 1 MHz to comply with the regulatory OOBE limits. CT - Response by: Submitted by: Date:
1. The MSCL Calculations for Fixed Installations The following formulas were used to calculate MSCL with a 6’ foot path loss and a 45 degree polarity mismatch between the inside antenna and the mobile device: Path Loss =36.6+20Lg(F MHz)+20Lg(D miles ) dB Polarity Loss=10Lg(E 1 /E 2 ) 2 =10Lg((E 1 /E 1 sin(45 deg )) 2 =20Lg((1/sin(45 deg ))=3.0 dB Where: E 1 =Maximum Possible Magnitude of the Electric Field form the Mobile Device E 2 =Magnitude of the electric field from the Mobil Device with a 45deg polarity mismatch=E 1 Sin(τ) MSCL= Path Loss + Polarity Loss –Antenna Gain with Coax Loss dB The results of the calculations are shown in the following table: Uplink Frequency(MHz) 707.0 781.5 836.5 1732.5 1880.0 Path Loss (dB) 34.7 35.6 36.2 42.5 43.2 Polarity Loss (dB) 3.0 3.0 3.0 3.0 3.0 Antenna Gain with Coax Loss(dB) 1.5 1.5 1.5 2.5 2.5 MSCL (dB) 36.2 37.1 37.7 43.0 43.7 2. The MSCL Calculations for Vehicle Installations The following formulas were used to calculate MSCL with a 1.5’ foot path loss and a 45 degree polarity mismatch between the inside antenna and the mobile device: Path Loss =36.6+20Lg(F MHz)+20Lg(D miles ) dB Polarity Loss=10Lg(E 1 /E 2 ) 2 =10Lg((E 1 /E 1 sin(45 deg )) 2 =20Lg((1/sin(45 deg ))=3.0 dB Where: E 1 =Maximum Possible Magnitude of the Electric Field form the Mobile Device E 2 =Magnitude of the electric field from the Mobil Device with a 45deg polarity mismatch=E 1 Sin(τ) E 2 E 1 τ=45deg E 2 E 1 τ=45deg MSCL= Path Loss + Polarity Loss –Antenna Gain with Coax Loss dB The results of the calculations are shown in the following table: Uplink Frequency(MHz) 707.0 781.5 836.5 1732.5 1880.0 Path Loss (dB) 22.7 23.5 24.1 30.4 31.2 Polarity Loss (dB) 3.0 3.0 3.0 3.0 3.0 Antenna Gain with Coax Loss(dB) ‐2.5 ‐2.0 ‐3.5 ‐3.5 ‐3.5 MSCL (dB) 28.2 28.5 30.6 37.0 37.7
To Whom It May Concern: The MPE calculations for model C27G-CPAL-AB-C signal booster were done for each frequency band: 700 MHz Band 17, 700 MHz Band 13, 800 MHz, 1700/2100 MHz , and 1900 MHz . For each band two calculations were done. These included the different possibilities of antennas that may be connected to this signal booster: fixed outside and inside antennas. The order of the attached calculations is as follows: 700 MHz band 17: 1. Fixed Outside Antenna: Yagi 11dbi 2. Inside Antenna: Panel 10dbi 700 MHz band 13: 1. Fixed Outside Antenna: Yagi 11dbi 2. Inside Antenna: Panel 10dbi 800 MHz band: 3. Fixed Outside Antenna: Yagi 11dbi 4. Inside Antenna: Panel 10dbi 1700/2100 MHz band: 3. Fixed Outside Antenna: Yagi 11dbi 4. Inside Antenna: Panel 10dbi 1900 MHz band: 5. Fixed Outside Antenna: Yagi 11dbi 6. Inside Antenna: Panel 10dbi A booster’s uplink power must not exceed 1 watt equivalent isotropic radiated power (EIRP) for each band of operation. Composite downlink power must not exceed 0.05 watt EIRP for each band of operation (20.21(e)(8)(i)(D)). The following formula was used to calculate equivalent isotropic radiated power: EIRP=Power Out (Watts) *Antenna Gain (non-log)*Coax loss (non-log) The power density (mW/cm 2 ) is calculated using the following formula: Calculated Power Density = 1000*EIRP (Watts)/(4*π*(Distance from Antenna (cm) 2 )) Yagi 11dbi with 30' 400 N male Input Data Frequency MHz 704 Pout Watts 0.21 Ant. Gain dBi 11 Coax Loss dB 0.85 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 10.15 Distance From Antenna In Inches 8 EIRP (Watts) 2.16 FCC Power Density Limit (mw/cm 2 ) 0.47 Calculated Power Density (mw/cm 2 ) 0.4178 Reference Data Pout dBm 23.2 Antenna Gain (non‐log) 12.59 Coax Loss(non‐log) 0.82 General FCC Limit (mw/cm 2 ) f/1500 Panel 10dbi with 3' 5D N Male Input Data Frequency MHz 734 Pout Watts 0.00 Ant. Gain dBi 10 Coax Loss dB 0.2 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 9.8 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 0.49 Calculated Power Density (mw/cm 2 ) 0.00609 Reference Data Pout dBm 5.19 Antenna Gain (non‐log) 10.00 Coax Loss(non‐log) 0.95 General FCC Limit (mw/cm 2 ) f/1500 Yagi 11dbi with 30' 400 N male Input Data Frequency MHz 777 Pout Watts 0.18 Ant. Gain dBi 11 Coax Loss dB 0.9 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 10.1 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 0.52 Calculated Power Density (mw/cm 2 ) 0.35077 Reference Data Pout dBm 22.49 Antenna Gain (non‐log) 12.59 Coax Loss(non‐log) 0.81 General FCC Limit (mw/cm 2 ) f/1500 Panel 10dbi with 3' 5D N Male Input Data Frequency MHz 746 Pout Watts 0.003048 Ant. Gain dBi 10 Coax Loss dB 0.2 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 1.98 Distance From Antenna In Inches 8 EIRP (Watts) 0.009550 FCC Power Density Limit (mw/cm 2 ) 0.50 Calculated Power Density (mw/cm 2 ) 0.00563 Reference Data Pout dBm 4.84 Antenna Gain (non‐log) 10.00 Coax Loss(non‐log) 0.95 General FCC Limit (mw/cm 2 ) f/1500 Yagi 11dbi with 30' 400 N male Input Data Frequency MHz 824 Pout Watts 0.13 Ant. Gain dBi 11 Coax Loss dB 1.1 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 9.9 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 0.55 Calculated Power Density (mw/cm 2 ) 0.23934 Reference Data Pout dBm 21.03 Antenna Gain (non‐log) 12.58925412 Coax Loss(non‐log) 0.78 General FCC Limit (mw/cm 2 ) f/1500 Panel 10dbi with 3' 5D N Male Input Data Frequency MHz 869 Pout Watts 0.00 Ant. Gain dBi 10 Coax Loss dB 0.2 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 9.8 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 0.58 Calculated Power Density (mw/cm 2 ) 0.003828 Reference Data Pout dBm 3.17 Antenna Gain (non‐log) 10.00 Coax Loss(non‐log) 0.95 General FCC Limit (mw/cm 2 ) f/1500 Yagi 11dbi with 30' 400 N male Input Data Frequency MHz 1710 Pout Watts 0.20 Ant. Gain dBi 11 Coax Loss dB 1.4 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 9.6 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.344364 Reference Data Pout dBm 22.91 Antenna Gain (non‐log) 12.59 Coax Loss(non‐log) 0.72 General FCC Limit (mw/cm 2 ) 1 Panel 10dbi with 3' 5D N Male Input Data Frequency MHz 2110 Pout Watts 0.002618 Ant. Gain dBi 10 Coax Loss dB 0.5 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 9.5 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.004508 Reference Data Pout dBm 4.18 Antenna Gain (non‐log) 10.00 Coax Loss(non‐log) 0.89 General FCC Limit (mw/cm 2 ) 1 Yagi 11dbi with 30' 400 N male Input Data Frequency MHz 1850 Pout Watts 0.16 Ant. Gain dBi 11 Coax Loss dB 1.6 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 9.4 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.270407 Reference Data Pout dBm 22.06 Antenna Gain (non‐log) 12.58925412 Coax Loss(non‐log) 0.69 General FCC Limit (mw/cm 2 ) 1 Panel 10dbi with 3' 5D N Male Input Data Frequency MHz 1930 Pout Watts 0.000933 Ant. Gain dBi 10 Coax Loss dB 0.3 Distance From Antenna In cm 20 Results Of Calculations Ant.Gain less Coax Loss dBi 9.7 Distance From Antenna In Inches 8 EIRP (Watts) 0.01 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.001683 Reference Data Pout dBm ‐0.3 Antenna Gain (non‐log) 10.00 Coax Loss(non‐log) 0.93 General FCC Limit (mw/cm 2 ) 1
p1480004_FCC_Part 20_Rev 2.0 Page 1 of 151 Test Report Prepared for: Shenzhen Huaptec Co., Ltd Model: C27G-CPAL-AB-C Description: Quint Band Signal Booster FCC ID: OWWC27G-CPAL-AB-C To FCC Part 20 Date of Issue: December 3, 2014 On the behalf of the applicant: Shenzhen Huaptec Co., Ltd. 5 th FL, E BLDG, Sogood Science Park Hangkong Road Xixiang, Bao'an Shenzhen 518102 China To the attention of: Yanwei Wang, General Manager Ph: 86-755-61196866 Email: [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: p1480004 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. p1480004_FCC_Part 20_Rev 2.0 Page 1 of 151 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 October 17, 2014 Mike Graffeo Original Document 2.0 December 2, 2014 Mike Graffeo Updated variable gain tables with new MSCL p1480004_FCC_Part 20_Rev 2.0 Page 2 of 151 Table of Contents Description Page Standard Test Conditions and Engineering Practices 4 Test Result Summary 5 Authorized Frequency Band 6 Maximum Power and Gain 13 Intermodulation 15 Out-of-Band Emissions 21 Conducted Spurious Emissions 55 Noise Limits 78 Uplink Inactivity 89 Variable Gain 93 Occupied Bandwidth 99 Oscillation Detection 130 Radiated Spurious 148 Test Equipment Utilized 151 p1480004_FCC_Part 20_Rev 2.0 Page 3 of 151 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 p1480004_FCC_Part 20_Rev 2.0 Page 4 of 151 Test and Measurement Data Sub-part 2.1033(c)(14): All tests and measurement data shown were performed in accordance with FCC Rules and Regulations, Part 2, Subpart J and the following individual Parts: 20.21 in conjunction with latest version of KDB 935210, which shows compliance to FCC Parts 22, 24, and 27 Standard Test Conditions and Engineering Practices Except as noted herein, the following conditions and procedures were observed during the testing: In accordance with ANSI/C63.4-2009, 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) 24.9 – 31.0 33.5 – 63.0 985.5 - 943.0 Measurement results, unless otherwise noted, are worst-case measurements. EUT Description Model: C27G-CPAL-AB-C Description: Quint Band Signal Booster Firmware: N/A Software: N/A Additional Information: The EUT is a mobile, bi-directional amplifier for the boosting of cellular phone signals and data communication devices. The following frequency bands and emission types are utilized. Frequency Band (MHz) Uplink 704 - 716 776 - 787 824 - 849 1850 – 1910 1710 - 1755 Downlink 734 - 746 746 - 757 869 - 894 1930 - 1990 2110 - 2155 Modulation Type LTE GSM, CDMA, EDGE, HSPA. EVDO, LTE CDMA, HSPA, LTE, EDGE, EVDO Emission Designators CDMA HSPA LTE EVDO EDGE GSM F9W F9W G7D F9W G7W GXW The modulation types and emission designators listed in the tables represent the modulations that the cell phone providers use for each frequency band. GSM, CDMA, and WCDMA represent all the modulation types (phase and amplitude or a combination thereof) utilized within the industry. EDGE, HSPA, LTE etc. are all protocols or multiplexing techniques using the base modulations. EUT Operation during Tests The EUT was in a normal operating condition. Several customer units were utilized during testing. p1480004_FCC_Part 20_Rev 2.0 Page 5 of 151 Test Result Summary Specification Test Name Pass, Fail, N/A Comments 20.21(e)(3) Authorized Frequency Band Pass 20.21(e)(8)(i)(B) 20.21(e)(8)(i)(C) 20.21(e)(8)(i)(D) Maximum Power and Gain Pass 20.21(e)(8)(i)(F) Intermodulation Pass 20.21(e)(8)(i)(E) Out-of-Band Emissions Pass 2.1051 22.917(a) 24.238(a) 27.53(c,e,f,g) Conducted Spurious Emissions Pass 20.21(e)(8)(i)(A) 20.21(e)(8)(I) Noise Limits Pass 20.21(e)(8)(i)(I) Uplink Inactivity Pass 20.21(e)(8)(i)(C)(1) 20.21(e)(8)(i)(H) 20.21(e)(8)(i)(C)(2)(iii) Variable Gain Pass 2.1049 Occupied Bandwidth Pass 20.21(e)(8)(ii)(A) Oscillation Detection Pass 2.1053 Radiated Spurious Pass 20.21(e)(8)(i)(B) Spectrum Block Filtering N/A This only applies to devices utilizing spectrum block filtering p1480004_FCC_Part 20_Rev 2.0 Page 6 of 151 Authorized Frequency Band Name of Test: Authorized Frequency Band Engineer: Mike Graffeo Test Equipment Utilized: i00379 and i00405 Test Date: 10/9/14 Test Procedure The EUT was connected to a spectrum analyzer throu…
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| # | Rule Parts | Frequency Range | Power Output | Emission |
|---|---|---|---|---|
| 4 | 24E | 1.93 GHz - 1.99 GHz | 1.00 mW | GXW |

Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Zorida Ace 3S
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Zorida Ace 5S
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Wideband Consumer Signal Booster
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Hiboost Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)