Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Page 1 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-700A FCC ID: 2AZ38US7B IC: 34113-CA7B Page 2 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-700V FCC ID: 2AZ38US7B IC: 34113-CA7B Page 3 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-700D FCC ID: 2AZ38US7B IC: 34113-CA7B Page 4 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-850 FCC ID: 2AZ38US7B IC: 34113-CA7B Page 5 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-1700 FCC ID: 2AZ38US7B IC: 34113-CA7B Page 6 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-1900 FCC ID: 2AZ38US7B IC: 34113-CA7B Page 7 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-7819V FCC ID: 2AZ38US7B IC: 34113-CA7B Page 8 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-7819A FCC ID: 2AZ38US7B IC: 34113-CA7B Page 9 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-US4G FCC ID: 2AZ38US7B IC: 34113-CA7B Page 10 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-US5B FCC ID: 2AZ38US7B IC: 34113-CA7B Page 11 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-US7B FCC ID: 2AZ38US7B IC: 34113-CA7B Page 12 of 12 LABEL AND LOCATION Material: tagboard Glue: adhesive sticker Front color: black Label color: Matt silver (Size: L: 6.0cm x W: 3.0cm) Label Location Cell Phone Signal Booster Model: TB-ECA8SD FCC ID: 2AZ38US7B IC: 34113-CA7B
RF Exposure Evaluation For Shenzhen Tongwei Electronics Co. Ltd Cell Phone Signal Booster Test Model: TB-700A Additional Model No.: Please Refer to Page 6 Prepared for : Shenzhen Tongwei Electronics Co. Ltd Address : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Prepared by : SHENZHEN STS TEST SERVICES CO.,LTD. Address : 101, Building B, Zhuoke Science Park, No.190 Chongqing Road, ZhanChengShequ, Fuhai Sub-District, Bao’an District, Shenzhen, Guang Dong, China Date of receipt of test sample : April 01, 2025 Number of tested samples : 2 Sample No. : A250324163-1, A250324163-2 Serial number : Prototype Date of Test : April 01, 2025 ~ Sept. 21, 2025 Date of Report : Sept. 21, 2025 Page 2 of 11 Report No.: STS2509134H01 RF Exposure Evaluation Report Reference No. ................. : STS2509134H01 Date of Issue .................................. : Sept. 21, 2025 Testing Laboratory Name ............ : SHENZHEN STS TEST SERVICES CO.,LTD. Address ........................................... : 101, Building B, Zhuoke Science Park, No.190 Chongqing Road, ZhanChengShequ, Fuhai Sub-District, Bao’an District, Shenzhen, Guang Dong, China Testing Location/ Procedure ........... : Full application of Harmonised standards ■ Partial application of Harmonised standards □ Other standard testing method □ Applicant’s Name.......................... : Shenzhen Tongwei Electronics Co. Ltd Address ........................................... : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Test Specification Standard ......................................... : FCC CFR 47 part1 1.1310 FCC CFR 47 part2 2.1091 The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the Shenzhen STS Test Services Co., Ltd. Test Item Description. .................. : EUT Cell Phone Signal Booster Trade Mark ..................................... : N/A Test Model ...................................... : TB-700A Ratings ............................................ : For AC Adapter: Input: 100-240V~50/60Hz 0.8A Output: 12V2A Result ............................................ : PASS Testing Engineer : (Lenon Hou) Technical Manager : (Skylar Li) Authorized Signatory : (Bovey Yang) Page 3 of 11 Report No.: STS2509134H01 RF Exposure Evaluation EUT......................................... : Cell Phone Signal Booster Test Model........................... : TB-700A Applicant............................... : Shenzhen Tongwei Electronics Co. Ltd Address.................................. : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Telephone............................... : / Fax.......................................... : / Manufacturer....................... : Shenzhen Tongwei Electronics Co. Ltd Address................................... : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Telephone............................... : / Fax.......................................... : / Factory....................... : Shenzhen Tongwei Electronics Co. Ltd Address................................... : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Telephone............................... : / Fax.......................................... : / Test Result PASS The test report merely corresponds to the test sample. It is not permitted to copy extracts of these test result without the written permission of the test laboratory. Test Report No. : STS2509134H01 Sept. 24, 2025 Date of issue Page 4 of 11 Report No.: STS2509134H01 Revision History Report Version Issue Date Revision Content Revised By 000 Sept. 21, 2025 Initial Issue --- Page 5 of 11 Report No.: STS2509134H01 TABLE OF CONTENTS Description Page 1. Product Information........................................................................................................................................ 6 2. Evaluation Method .......................................................................................................................................... 7 3. Limit .................................................................................................................................................................... 7 4. MPE Calculation Method ............................................................................................................................... 8 5. Antenna Information ....................................................................................................................................... 8 6. Conducted Power .......................................................................................................................................... 10 7. Manufacturing Tolerance ............................................................................................................................ 10 8. Measurement Results .................................................................................................................................. 11 9. Conclusion ...................................................................................................................................................... 11 10. Description of Test Facility ...................................................................................................................... 11 Page 6 of 11 Report No.: STS2509134H01 1. Product Information EUT : Cell Phone Signal Booster Equipment Type : Fixed Wideband Consumer Zone Enhancers Test Model : TB-700A Additional Model No. : TB-700V, TB-700D, TB-850, TB-1700, TB-1900, TB-7819V, TB-7819A, TB-US4G, TB-US5B, TB-US7B, TB-ECA8SD Model Declaration : These models only differ in name and color…
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FCC TEST REPORT FOR Shenzhen Tongwei Electronics Co. Ltd Cell Phone Signal Booster Test Model: TB-700A Additional Model No.: Please Refer to Page 6 Prepared for : Shenzhen Tongwei Electronics Co. Ltd Address : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Prepared by : SHENZHEN STS TEST SERVICES CO.,LTD. Address : 101, Building B, Zhuoke Science Park, No.190 Chongqing Road, ZhanChengShequ, Fuhai Sub-District, Bao’an District, Shenzhen, Guang Dong, China Date of receipt of test sample : April 01, 2025 Number of tested samples : 2 Samples No. : A250324163-1, A250324163-2 Serial number : Prototype Date of Test : April 01, 2025 ~ Sept. 21, 2025 Date of Report : Sept. 21, 2025 Page 2 of 115 Report No.: STS2509134W01 TEST REPORT FCC CFR 47 PART 20.21 Report Reference No. : STS2509134W01 Date of Issue : Sept. 21, 2025 Testing Laboratory Name : SHENZHEN STS TEST SERVICES CO.,LTD. Address : 101, Building B, Zhuoke Science Park, No.190 Chongqing Road, ZhanChengShequ, Fuhai Sub-District, Bao’an District, Shenzhen, Guang Dong, China Testing Location/ Procedure : Full application of Harmonised standards ■ Partial application of Harmonised standards □ Other standard testing method □ Applicant’s Name : Shenzhen Tongwei Electronics Co. Ltd Address : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Test Specification Standard : FCC CFR Title 47 Part 20.21 This device described above has been tested by STS, the test results show that the equipment under test (EUT) is in compliance with the FCC requirements. And it is applicable only to the tested sample identified in the report. The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the Shenzhen STS Test Services Co., Ltd. Test Item Description. : EUT Cell Phone Signal Booster Trade Mark : N/A Test Model : TB-700A Ratings : For AC Adapter: Input: 100-240V~50/60Hz 0.8A Output: 12V2A Result : PASS Testing Engineer : (Lenon Hou) Technical Manager : (Skylar Li) Authorized Signatory : (Bovey Yang) Page 3 of 115 Report No.: STS2509134W01 TEST REPORT Test Report No. : STS2509134W01 Sept. 21, 2025 Date of issue Page 4 of 115 Report No.: STS2509134W01 Test Result PASS The test report merely corresponds to the test sample. It is not permitted to copy extracts of these test result without the written permission of the test laboratory. Test Model........................... : TB-700A EUT......................................... : Cell Phone Signal Booster Applicant............................... : Shenzhen Tongwei Electronics Co. Ltd Address.................................. : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Telephone............................... : / Fax.......................................... : / Manufacturer........................ : Shenzhen Tongwei Electronics Co. Ltd Address................................... : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Telephone............................... : / Fax.......................................... : / Factory................................... : Shenzhen Tongwei Electronics Co. Ltd Address................................... : 501, Bld. 16, Lihao Ind, Park, No.78 Ainan Rd, Longdong Community, Baolong Str, Longgang Distr, Shenzhen, China Telephone............................... : / Fax.......................................... : / Page 5 of 115 Report No.: STS2509134W01 Revision History Revision Issue Date Revisions Revised By 000 Sept. 21, 2025 Initial Issue --- Page 6 of 115 Report No.: STS2509134W01 TABLE OF CONTENTS Description Page 1.GENERAL INFORMATION ...................................................................................................................................... 7 1.1 Description of Device (EUT) ...................................................................................................... 7 1.2 Support equipment List ........................................................................................................... 10 1.3 External I/O Cable ..................................................................................................................... 10 1.4 Description of Test Facility ...................................................................................................... 10 1.5 Statement of the Measurement Uncertainty ........................................................................... 10 1.6 Measurement Uncertainty ........................................................................................................ 11 1.7 Operation Band ........................................................................................................................ 11 2. TEST METHODOLOGY ....................................................................................................................................... 12 2.1 EUT Configuration .................................................................................................................... 12 2.2 General Test Procedures ......................................................................................................... 12 3. SYSTEM TEST CONFIGURATION ...................................................................................................................... 13 3.1 Justification13 3.2 EUT Exercise Software ............................................................................................................ 13 3.3 Special Accessories ................................................................................................................. 13 3.4 Block Diagram/Schematics ...................................................................................................... 13 3…
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Page 58 of 115 Report No.: STS2509134W01 AWS Band Pre AGC, DL AWS Band AGC+10dB, DL 6.7 Out of Band Emission 6.7.1 Applicable Standard According to § 20.21(e)(8)(i)(E) Out of Band Emission Limits: Booster out of band emissions (OOBE) shall be at least 6 dB below the FCC's mobile emission limits for the supported bands of operation. Compliance to OOBE limits will utilize high peak-to-average CMRS signal types. For B2:Per FCC §24.238 the power of any emission outside of the authorized operating frequency ranges must be attenuated below the transmitting power (P) by a factor of at least 43 + 10log(P) dB. For B4: Per §27.53(h): For operations in the 1710–1755 MHz and 2110–2155 MHz bands, the power of any emission outside a licensee’s frequency block shall be attenuated below the transmitter power (P) by at least 43 + 10 log10(P) dB. For B5:Per FCC §22.917 the power of any emission outside of the authorized operating frequency ranges must be attenuated below the transmitting power (P) by a factor of at least 43 + 10log(P) dB. For B12: Per §27.53 (g): For operations in the 698–746 MHz band, the power of any emission outside a licensee's frequency band(s) of operation shall be attenuated below the transmitter power (P) within the licensed band(s) of operation, measured in watts, by at least 43 + 10 log (P) dB. For B13: Per §27.53 (c): For operations in the 776-788 MHz band, the power of any emission outside the licensee's frequency band(s) of operation shall be attenuated below the transmitter power (P) within the licensed band(s) of operation, measured in watts, in accordance with the following: On any frequency outside the 776-788 MHz band, the power of any emission shall be attenuated outside the band below the transmitter power (P) by at least 43 + 10 log (P) dB. Calculation: Limit (dBm) =[P-43 + 10 log (P)] - 6= -19 dBm Page 59 of 115 Report No.: STS2509134W01 6.7.2 Test Procedure According to section 7.5 of KDB 935210 D03 Signal Booster Measurement v04r04: a) Connect the EUT to the test equipment as shown in Figure 1. Begin with the uplink output (donor) port connected to the spectrum analyzer. b) Configure the signal generator for the appropriate operation for all uplink and downlink bands: 1) GSM: 0.2 MHz from upper and lower band edges. 2) LTE (5 MHz): 2.5 MHz from upper and lower band edges. 3) CDMA: 1.25 MHz from upper and lower band edges, except for cellular band as follows (only the upper and lower frequencies need to be tested): 824.88 MHz, 845.73 MHz, 836.52 MHz, 848.10 MHz, 869.88 MHz, 890.73 MHz, 881.52 MHz, 893.10 MHz. NOTE 1–Alternative test modulation types: • CDMA (alternative 1.25 MHz AWGN) • LTE 5 MHz (alternative W-CDMA or 4.1 MHz AWGN) NOTE 2–For LTE, the signal generator should use the uplink and downlink signal types for these modulations in uplink and downlink tests, respectively. LTE shall use 5 MHz signal, 25 resource blocks transmitting. NOTE 3–When using an AWGN test signal, the bandwidth shall be the measured 99% OBW. c) Set the signal generator amplitude to the maximum power level prior to AGC similar to 7.2.2e) to7.2.2f) of the power measurement procedures for the appropriate modulations. d) Set RBW = measurement bandwidth specified in the applicable rule section for the supported frequency band (see Appendix A for cross-reference to applicable rule section). e) NOTE 3–Within 300 kHz and 3 MHz away from band edge, if smaller RBW is used (i.e., RBW < 100 kHz or 1 MHz, for above and below 1 GHz, respectively), per Parts 24 and 27 the smaller RBW is applicable only for frequencies within 100 kHz or 1 MHz (for above and below 1 GHz, respectively) away from the band edge. f) Set VBW = 3 RBW. g) Select the power averaging (rms) detector. h) Sweep time = auto-couple. i) Set the analyzer start frequency to the upper band/block edge frequency and the stop frequency to the upper band/block edge frequency plus: 300 kHz (when operational frequency is < 1 GHz), or 3 MHz (when operational frequency is ≥ 1 GHz). j) Trace average at least 100 traces in power averaging (i.e., rms) mode. k) Use peak marker function to find the maximum power level. l) Capture the spectrum analyzer trace of the power level for inclusion in the test report. m) Increase the signal generator amplitude in 2 dB steps until the maximum input level per 5.5 is reached. Affirm that the EUT maintains compliance with the OOBE limits. The test report shall include either a statement describing that the device complies at 10 dB above AGC or at the 5.5 power levels, or a table showing compliance at the additional input power(s) required. n) Reset the analyzer start frequency to the lower band/block edge frequency minus: 300 kHz (when operational frequency is < 1 GHz), or 3 MHz (when operational frequency is ≥ 1 GHz), and the stop frequency to the lower band/block edge frequency, then repeat 7.5i) to 7.5l). Repeat 7.5b) through 7.5m) for each uplink and downlink operational band. Page 60 of 115 Report No.: STS2509134W01 6.7.3 Test data Temperature 23.6°C Humidity 52.3% Test Engineer Nick Peng Test Mode Transmitting Test Graphs-Uplink-GSM Lower 700 Band UL-GSM Left Side Pre AGC Lower 700 Band UL-GSM Left Side AGC+10dB Lower 700 Band UL-GSM Right Side Pre AGC Lower 700 Band UL-GSM Right Side AGC+10dB Upper 700 Band UL-GSM Left Side Pre AGC Upper 700 Band UL-GSM Left Side AGC+10dB Page 61 of 115 Report No.: STS2509134W01 Upper 700 Band UL-GSM Right Side Pre AGC Upper 700 Band UL-GSM Right Side AGC+10dB Cellular Band UL-GSM Left Side Pre AGC Cellular Band UL-GSM Left Side AGC+10dB Cellular Band UL-GSM Right Side Pre AGC Cellular Band UL-GSM Right Side AGC+10dB Page 62 of 115 Report No.: STS2509134W01 PCS Band UL-GSM Left Side Pre AGC PCS Band UL-GSM Left Side AGC+5.5dB PCS Band UL-GSM Right Side Pre AGC PCS Band UL-GSM Right Side AGC+10dB AWS Band UL-GSM Left Side Pre AGC AWS Band UL-GSM Left Side AGC+10dB Page 63 of 115 Report No.: STS2509134W01 AWS Band UL-GSM Right Side Pre AGC AWS Band UL-GSM Right Side AGC+10…
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Page 85 of 115 Report No.: STS2509134W01 9) Use the peak marker function to identify the highest amplitude level over each of the measured frequency ranges. Record the frequency and amplitude and capture a plot for inclusion in the test report. e) Repeat 7.6b) through 7.6d) for each supported frequency band of operation. 6.8.4 Test data Test Graphs-Lower 700 Band Uplink Temperature 23.6°C Humidity 52.3% Test Engineer Nick Peng Test Mode Transmitting Page 86 of 115 Report No.: STS2509134W01 Test Graphs-Lower 700 Band Downlink Page 87 of 115 Report No.: STS2509134W01 Test Graphs-Upper 700 Band Uplink Page 88 of 115 Report No.: STS2509134W01 Test Graphs-Upper 700 Band Downlink Page 89 of 115 Report No.: STS2509134W01 Test Graphs-Cellular Band Uplink Page 90 of 115 Report No.: STS2509134W01 Test Graphs-Cellular Band Downlink-GSM Page 91 of 115 Report No.: STS2509134W01 Test Graphs-PCS Band Uplink Page 92 of 115 Report No.: STS2509134W01 Test Graphs-PCS Band Downlink Page 93 of 115 Report No.: STS2509134W01 Test Graphs-AWS Band Uplink Page 94 of 115 Report No.: STS2509134W01 Test Graphs-AWS Band Downlink Page 95 of 115 Report No.: STS2509134W01 6.9 Uplink Inactivity 6.9.1 Applicable Standard According to §20.21(e)(8)(i)(I) Uplink Inactivity: When a consumer booster is not serving an active device connection after 5 minutes the uplink noise power shall not exceed −70 dBm/MHz. 6.9.2 Test Procedure According to section 7.8 of KDB 935210 D03 Signal Booster Measurement v04r04: a. Connect the EUT to the test equipment as shown in Figure 1 with the uplink output (donor) port connected to the spectrum analyzer. b. Select the power averaging (rms) detector. c. d. Set the center frequency of the spectrum analyzer to the center of the uplink operational band. e. Set the span for 0 Hz with a single sweep time for a minimum of 330 seconds. f. Start to capture a new trace using MAX HOLD. g. After approximately 15 seconds, turn on the EUT power. h. After the full spectrum analyzer trace is complete, place a MARKER on the leading edge of the pulse, then use the DELTA MARKER METHOD to measure the time until the uplink becomes inactive. i. Affirm that the noise level is below the uplink inactivity noise power limit, as specified by the rules. j. Capture the plot for inclusion in the test report. k. Measure noise using procedures in 7.7.1a) to 7.7.1f). Repeat 7.8d) through 7.8k) for all operational uplink bands. Page 96 of 115 Report No.: STS2509134W01 6.9.3 Test Data Uplink Inactivity Operation Band Measured (s) Limit (s) Result Lower 700 Band 32.80 300.0 PASS Upper 700 Band 25.60 300.0 PASS Cellular Band 23.60 300.0 PASS PCS Band 26.40 300.0 PASS AWS Band 27.20 300.0 PASS Temperature 23.6°C Humidity 52.3% Test Engineer Nick Peng Test Mode Transmitting Page 97 of 115 Report No.: STS2509134W01 Test Graphs Lower 700 Band Upper 700 Band Cellular Band PCS Band AWS Band Page 98 of 115 Report No.: STS2509134W01 6.10 Occupied Bandwidth 6.10.1 Applicable Standard According to §2.1049 Measurements required: Occupied bandwidth. This measurement is required to compare the consistency of the output signal relative to the input signal, and to satisfy the requirements of Section 2.1049. 6.10.2 Test Procedure According to section 7.10 of KDB 935210 D03 Signal Booster Measurement v04r04: a) Connect the test equipment as shown in Figure 10 to firstly measure the characteristics of the test signals produced by the signal generator. b) Set VBW ≥ 3 RBW. c) Set the center frequency of the spectrum analyzer to the center of the operational band. The span will be adjusted for each modulation type and OBW as necessary for accurately viewing the signals. d) Set the signal generator for power level to match the values obtained from the tests of 7.2. e) Set the signal generator modulation type for GSM with a PRBS pattern and allow the trace on the signal generator to stabilize adjusting the span as necessary. f) Set the spectrum analyzer RBW for 1% to 5% of the EBW. g) Capture the spectrum analyzer trace for inclusion in the test report. h) Repeat 7.10c) to 7.10g) for CDMA and W-CDMA modulation, adjusting the span as necessary. AWGN or LTE may be used in place of W-CDMA, as an option. i) Repeat 7.10c) to 7.10h) for all uplink and downlink operational bands. j) Connect the test equipment as shown in Figure 10, with the uplink output (donor) port connected to the spectrum analyzer, and the server port connected to the signal generator. k) Repeat 7.10c) to 7.10i) with this EUT uplink path test setup. l) Connect the test equipment as shown in Figure 10, with the downlink output (server) port connected to the spectrum analyzer, and the donor port connected to the signal generator. m) Repeat 7.10c) to 7.10i) with this EUT downlink path test setup. Figure 10 – Test setup for measuring characteristics of test signals used for subsequent EUT occupied bandwidth testing Page 99 of 115 Report No.: STS2509134W01 6.10.3 Test data Operation Band Signal Type Input OBW (MHz) Output OBW (MHz) Uplink Lower 700 Band GSM 0.244 0.244 CDMA 1.2738 1.2657 LTE 4.2552 4.2462 Upper 700 Band GSM 0.247 0.248 CDMA 1.2636 1.2650 LTE 4.2863 4.2565 Cellular Band GSM 0.247 0.245 CDMA 1.2651 1.2628 LTE 4.2569 4.2651 PCS Band GSM 0.245 0.245 CDMA 1.2657 1.2598 LTE 4.2477 4.2679 AWS Band GSM 0.244 0.246 CDMA 1.2663 1.2665 LTE 4.2663 4.2326 Downlink Lower 700 Band GSM 0.242 0.249 CDMA 1.2625 1.2603 LTE 4.2385 4.2508 Upper 700 Band GSM 0.245 0.246 CDMA 1.2663 1.2659 LTE 4.2268 4.2552 Cellular Band GSM 0.245 0.247 CDMA 1.2619 1.2669 LTE 4.2376 4.2612 PCS Band GSM 0.247 0.243 CDMA 1.2677 1.2613 LTE 4.2491 4.2638 AWS Band GSM 0.246 0.247 CDMA 1.2683 1.2632 LTE 4.2713 4.2845 Temperature 23.6°C Humidity 52.3% Test Engineer Nick Peng Test Mode Transmitting Page 100 of 115 Report No.: STS2509134W01 Test Graphs GSM-Lower 700 Band UL Input GSM-Lower 700 Band UL Output GSM-Lower 700 Band DL Input GSM-Lower 700 Band DL Output GSM-Upper 700 Band UL Input GSM-Upper 700 Band UL Output Page…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 27 | 698 MHz - 716 MHz | 67.00 mW | GXW | Amp |
| 2 | 27 | 698 MHz - 716 MHz | 67.00 mW | G7W | Amp |
| 3 | 27 | 698 MHz - 716 MHz | 67.00 mW | F9W | Amp |
| 4 | 27 | 698 MHz - 716 MHz | 67.00 mW | G7D | Amp |
| 5 | 27 | 698 MHz - 716 MHz | 67.00 mW | W7D | Amp |
| 6 | 27 | 728 MHz - 746 MHz | 12.00 mW | GXW | Amp |
| 7 | 27 | 728 MHz - 746 MHz | 12.00 mW | G7W | Amp |
| 8 | 27 | 728 MHz - 746 MHz | 12.00 mW | F9W | Amp |
| 9 | 27 | 728 MHz - 746 MHz | 12.00 mW | G7D | Amp |
| 1 | 27 | 728 MHz - 746 MHz | 12.00 mW | W7D | Amp |
| 11 | 27 | 776 MHz - 787 MHz | 78.00 mW | GXW | Amp |
| 12 | 27 | 776 MHz - 787 MHz | 78.00 mW | G7W | Amp |
| 13 | 27 | 776 MHz - 787 MHz | 78.00 mW | F9W | Amp |
| 14 | 27 | 776 MHz - 787 MHz | 78.00 mW | G7D | Amp |
| 15 | 27 | 776 MHz - 787 MHz | 78.00 mW | W7D | Amp |
| 16 | 27 | 746 MHz - 757 MHz | 12.00 mW | GXW | Amp |
| 17 | 27 | 746 MHz - 757 MHz | 12.00 mW | G7W | Amp |
| 18 | 27 | 746 MHz - 757 MHz | 12.00 mW | F9W | Amp |
| 19 | 27 | 746 MHz - 757 MHz | 12.00 mW | G7D | Amp |
| 2 | 27 | 746 MHz - 757 MHz | 12.00 mW | W7D | Amp |
| 21 | 22H | 824 MHz - 849 MHz | 98.00 mW | GXW | Amp |
| 22 | 22H | 824 MHz - 849 MHz | 98.00 mW | G7W | Amp |
| 23 | 22H | 824 MHz - 849 MHz | 98.00 mW | F9W | Amp |
| 24 | 22H | 824 MHz - 849 MHz | 98.00 mW | G7D | Amp |
| 25 | 22H | 824 MHz - 849 MHz | 98.00 mW | W7D | Amp |
| 26 | 22H | 869 MHz - 894 MHz | 12.00 mW | GXW | Amp |
| 27 | 22H | 869 MHz - 894 MHz | 12.00 mW | G7W | Amp |
| 28 | 22H | 869 MHz - 894 MHz | 12.00 mW | F9W | Amp |
| 29 | 22H | 869 MHz - 894 MHz | 12.00 mW | G7D | Amp |
| 3 | 22H | 869 MHz - 894 MHz | 12.00 mW | W7D | Amp |
| 31 | 24E | 1.85 GHz - 1.92 GHz | 163.00 mW | GXW | Amp |
| 32 | 24E | 1.85 GHz - 1.92 GHz | 163.00 mW | G7W | Amp |
| 33 | 24E | 1.85 GHz - 1.92 GHz | 163.00 mW | F9W | Amp |
| 34 | 24E | 1.85 GHz - 1.92 GHz | 163.00 mW | G7D | Amp |
| 35 | 24E | 1.85 GHz - 1.92 GHz | 163.00 mW | W7D | Amp |
| 36 | 24E | 1.93 GHz - 2.00 GHz | 27.00 mW | GXW | Amp |
| 37 | 24E | 1.93 GHz - 2.00 GHz | 27.00 mW | G7W | Amp |
| 38 | 24E | 1.93 GHz - 2.00 GHz | 27.00 mW | F9W | Amp |
| 39 | 24E | 1.93 GHz - 2.00 GHz | 27.00 mW | G7D | Amp |
| 4 | 24E | 1.93 GHz - 2.00 GHz | 27.00 mW | W7D | Amp |
| 41 | 27 | 1.71 GHz - 1.78 GHz | 190.00 mW | GXW | Amp |
| 42 | 27 | 1.71 GHz - 1.78 GHz | 190.00 mW | G7W | Amp |
| 43 | 27 | 1.71 GHz - 1.78 GHz | 190.00 mW | F9W | Amp |
| 44 | 27 | 1.71 GHz - 1.78 GHz | 190.00 mW | G7D | Amp |
| 45 | 27 | 1.71 GHz - 1.78 GHz | 190.00 mW | W7D | Amp |
| 46 | 27 | 2.11 GHz - 2.20 GHz | 23.00 mW | GXW | Amp |
| 47 | 27 | 2.11 GHz - 2.20 GHz | 23.00 mW | G7W | Amp |
| 48 | 27 | 2.11 GHz - 2.20 GHz | 23.00 mW | F9W | Amp |
| 49 | 27 | 2.11 GHz - 2.20 GHz | 23.00 mW | G7D | Amp |
| 5 | 27 | 2.11 GHz - 2.20 GHz | 23.00 mW | W7D | Amp |