FCC Part 97 Test Report

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1 Report No.: AGC FE09 Page 1 of 54 FCC Part 97 Test Report Report No.: AGC FE09 FCC ID : PODTH-9800 PRODUCT DESIGNATION : Mobile radio BRAND NAME : TYT MODEL NAME : TH-9800,TH-9800D,TH-7800,TH-7900 CLIENT : TYT ELECTRONICS CO., LTD DATE OF ISSUE : May 16, 2014 STANDARD(S) : FCC Part 97 Rules REPORT VERSION : V 1.0 Attestation of Global Compliance (Shenzhen) Co., Ltd CAUTION: This report shall not be reproduced except in full without the written permission of the test laboratory and shall not be quoted out of context.

2 Page 2 of 44 Report Revise Record Report Version Revise Time Issued Date Valid Version Notes V1.0 / May 16, 2014 Valid Original Report

3 VERIFICATION OF COMPLIANCE Page 3 of 44 Applicant: Manufacturer: TYT ELECTRONICS CO., LTD Block 39-1, Optoelectronics-information industry base, Nan an, quanzhou, Fujian TYT ELECTRONICS CO., LTD Block 39-1, Optoelectronics-information industry base, Nan an, quanzhou, Fujian Product Designation: Mobile radio Brand Name: Test Model: Series model: TYT TH-9800 TH-9800D,TH-7800,TH-7900 Difference description All the same except the model name and appearance Hardware Version: Software Version: N/A N/A Date of Test: May 12, 2014 to May 15, 2014 WE HEREBY CERTIFY THAT: The above equipment was tested by Shenzhen Attestation of Global Compliance Science & Technology Co., Ltd. The data evaluation, test procedures, and equipment configurations shown in this report were made in accordance with the procedures given in ANSI C 63.4:2003 and TIA/EIA 603. The sample tested as described in this report is in compliance with the FCC Rules Part 97. The test results of this report relate only to the tested sample identified in this report. Tested by Wall Huang May 16, 2014 Checked By Kidd Yang May 16, 2014 Authorized By Solger Zhang May 16, 2014

4 Page 4 of 44 TABLE OF CONTENTS 1. GENERAL INFORMATION PRODUCT DESCRIPTION TEST METHODOLOGY TEST FACILITY SPECIAL ACCESSORIES EQUIPMENT MODIFICATIONS SYSTEM TEST CONFIGURATION EUT CONFIGURATION EUT EXERCISE GENERAL TECHNICAL REQUIREMENTS CONFIGURATION OF TESTED SYSTEM SUMMARY OF TEST RESULTS DESCRIPTION OF TEST MODES CONDUCTED LIMITS PROVISIONS APPLICABLE MEASUREMENT PROCEDURE TEST SETUP BLOCK DIAGRAM TEST EQUIPMENT USED TEST RESULT PROVISIONS APPLICABLE MEASUREMENT PROCEDURE TEST SETUP BLOCK DIAGRAM TEST EQUIPMENT USED: TEST RESULT EMISSION BANDWIDTH PROVISIONS APPLICABLE MEASUREMENT PROCEDUR TEST SETUP BLOCK DIAGRAM MEASUREMENT EQUIPMENT USED: MEASUREMENT RESULT: UNWANTED RADIATION PROVISIONS APPLICABLE... 33

5 Page 5 of MEASUREMENT PROCEDURE TEST SETUP BLOCK DIAGRAM MEASUREMENT EQUIPMENT USED: MEASUREMENT RESULTS: MODULATION CHARACTERISTICS PROVISIONS APPLICABLE MEASUREMENT METHOD MEASUREMENT INSTRUMENTS MEASUREMENT RESULT MAXIMUMN TRANSMITTER POWER (CONDUCTED OUTPUT POWER) PROVISIONS APPLICABLE TEST PROCEDURE TEST INSTRUMENTS TEST CONFIGURATION TEST RESULT CONDUCT SPURIOUS PLOT APPENDIX PHOTOGRAPHS OF EUT TOTAL VIEW OF EUT... 48

6 1. GENERAL INFORMATION 1.1 PRODUCT DESCRIPTION Page 6 of 44 The EUT is a VHF FM MOBILE TRANSCEIVER designed for voice communication. It is designed by way of utilizing the FM modulation achieves the system operating. A major technical description of EUT is described as following: Communication Type Modulation Emission Type Emission Bandwidth Peak Frequency Deviation Audio Frequency Response Maximum Transmitter Power Output power Modification Antenna Designation Power Supply Limiting Voltage Operation Frequency Range and Channel Frequency Tolerance Voice / Tone only FM 11KфF3E 10.63KHz 1.88KHz 10.88dB 46.96dBm(Max) 50W( MHz /50-54 MHz / MHz)&40W( MHz) (It was fixed by the manufacturer, any individual can t arbitrarily change it) Detachable DC 13.8V by DC source DC 11.73~13.38V Frequency Range: MHz /50-54 MHz / MHz/ MHz Channel Separation: 12.5KHz Bottom Channel: MHz, MHz, MHz, MHz Middle Channel: MHz,52.000MHz, MHz, MHz Top Channel:29.875MHz, MHz, MHz, MHz 0.461ppm

7 Page 7 of RELATED SUBMITTAL(S) / GRANT (S) This submittal(s) (test report) is intended for AGC filing to comply with the FCC Part 97 requirements. 1.3 TEST METHODOLOGY The radiated emission testing was performed according to the procedures of ANSI C 63.4: 2003; TIA/EIA 603 and FCC CFR 47 Rules of , , , , , and TEST FACILITY The test site used to collect the radiated data is located on the address of Attestation of Global Compliance (Shenzhen) Co., Ltd. 2/F., Building 2, No.1-No.4, Chaxi Sanwei Technical Industrial Park, Gushu, Xixiang, Bao'an District, Shenzhen, Guangdong, China. The test site is constructed and calibrated to meet the FCC requirements in documents ANSI C63.4: 2003 and IC requirements in documents RS212. FCC register No.: SPECIAL ACCESSORIES Not available for this EUT intended for grant. 1.6 EQUIPMENT MODIFICATIONS Not available for this EUT intended for grant.

8 2. SYSTEM TEST CONFIGURATION 2.1 EUT CONFIGURATION Page 8 of 44 The EUT configuration for testing is installed on RF field strength measurement to meet the Commission s requirement and operating in a manner which intends to maximize its emission characteristics in a continuous normal application. 2.2 EUT EXERCISE The Transmitter was operated in the normal operating mode. The TX frequency was fixed which was for the purpose of the measurements. 2.3 GENERAL TECHNICAL REQUIREMENTS (1). Section : Conducted Limits (Not applicable) (2). Section : Frequency sharing requirements (3). Section : Authorized emission types (4). Section : Emissions standards (5). Section : RTTY and data emission codes (6). Section : SS emissions types (7). Section : Transmitter power standards (8). Section : Certification of external RF power amplifiers (9). Section : Standards for certification of external RF power amplifiers (10).Section : Modulation characteristic 2.4 CONFIGURATION OF TESTED SYSTEM Fig. 2-1 Configuration of Tested System EUT Table 2-1 Equipment Used in Tested System Item Equipment Model No. FCC ID Note 1 Mobile radio TH-9800 X24TH9800 EUT

9 3. SUMMARY OF TEST RESULTS Page 9 of 44 FCC Rules Description Of Test Result Conducted Emission N/A Modulation characteristics Compliant Frequency sharing requirements Compliant Authorized emission types Compliant Emissions standards Compliant SS emissions types N/A Certification of external RF power amplifiers N/A Standards for certification of external RF Power amplifiers N/A

10 4. DESCRIPTION OF TEST MODES RF TEST MODES Page 10 of 44 The EUT (UHF FM MOBILE TRANSCEIVER&VHF FM MOBILE TRANSCEIVER) has been tested under normal operating condition. (The top channel, the middle channel and the bottom channel) are chosen for testing at each channel separation. No. TEST MODES CHANNEL SEPARATION 1 Low Channel 12.5 KHz 2 Middle Channel 12.5 KHz 3 High Channel 12.5 KHz EMC TEST MODES No. TEST MODES 1 Standby Mode + (Charging) Note: Only the result of the worst case was recorded in the report.

11 Page 11 of CONDUCTED LIMITS 5.1 PROVISIONS APPLICABLE For an intentional radiator that is designed to be connected to the public utility (AC) power line, the, the radio frequency voltage that is conducted back onto the AC power line on any frequencies within the band 150 KHz to 30 MHz shall not exceed the limits in the following table, as measured using a 50uH/50 ohms line impedance stabilization network (LISN). Compliance with the provisions of this paragraph shall be based on the measurement of the radio frequency voltage between each power line and ground at the power terminal. The lower limit applies at the boundary between the frequencies ranges. Frequency of Emission (MHz) Conducted Limit(dBuV) Quasi-Peak Average to 56 * 56 to 46 * * Decreases with the logarithm of the frequency. 5.2 MEASUREMENT PROCEDURE (1) The equipment was set up as per the test configuration to simulate typical actual usage per the user s manual. When the EUT is a tabletop system, a wooden table with a height of 0.8 meters is used and is placed on the ground plane as per ANSI C63.4 (see Test Facility for the dimensions of the ground plane used). When the EUT is a floor-standing equipment, it is placed on the ground plane which has a 3-12 mm non-conductive covering to insulate the EUT from the ground plane. (2) Support equipment, if needed, was placed as per ANSI C63.4. (3) All I/O cables were positioned to simulate typical actual usage as per ANSI C63.4. (4) The EUT received power through a Line Impedance Stabilization Network (LISN) which supplied power source and was grounded to the ground plane. (5) All support equipments received AC power from a second LISN, if any. (6) The EUT test program was started. Emissions were measured on each current carrying line of the EUT using a spectrum Analyzer / Receiver connected to the LISN powering the EUT. The LISN has two monitoring points: Line 1 (Hot Side) and Line 2 (Neutral Side). Two scans were taken: one with Line 1 connected to Analyzer / Receiver and Line 2 connected to a 50 ohm load; the second scan had Line 1 connected to a 50 ohm load and Line 2 connected to the Analyzer / Receiver. (7) Analyzer / Receiver scanned from 150 KHz to 30MHz for emissions in each of the test modes. During the above scans, the emissions were maximized by cable manipulation.

12 Page 12 of TEST SETUP BLOCK DIAGRAM Vert. reference plane EMI receiver EUT LISN Reference ground plane 5.4 TEST EQUIPMENT USED Conducted Emission Test Site Name of Equipment Manufacturer Model Serial Number Cal. Date Cal. Due TEST RECEIVER R&S ESCI N/A 07/18/ /17/2013 LISN R&S ESH3-Z5 N/A 07/18/ /17/2013

13 5.5 TEST RESULT Note:Not applicable for this EUT. Page 13 of 44

14 6. FREQUENCY TOLERANCE 6.1 PROVISIONS APPLICABLE Page 14 of 44 a). According to FCC Part 2 Section (a)(1), the frequency stability shall be measured with variation of ambient temperature from 30 to +60 centigrade. b). According to FCC Part 2 Section (d)(2), for battery powered equipment, the frequency stability shall be measured with reducing primary supply voltage to the battery operating end point, which is specified by the manufacturer. 6.2 MEASUREMENT PROCEDURE Frequency stability versus environmental temperature 1. Setup the configuration per figure 1 for frequencies measurement inside an environment chamber, Install new battery in the EUT. 2. Turn on EUT and set SA center frequency to the EUT radiated frequency. Set SA Resolution Bandwidth to 1KHz and Video Resolution Bandwidth to 1KHz and Frequency Span to 50KHz.Record this frequency as reference frequency. 3. Set the temperature of chamber to 50. Allow sufficient time (approximately 30 min) for the temperature of the chamber to stabilize. While maintaining a constant temperature inside the chamber, turn the EUT on and measure the EUT operating frequency. 4. Repeat step 2 with a 10 decreased per stage until the lowest temperature -30 is measured, record all measured frequencies on each temperature step Frequency stability versus input voltage 1. Setup the configuration per figure 1 for frequencies measured at temperature if it is within 15 to 25. Otherwise, an environment chamber set for a temperature of 20 shall be used. The EUT shall be powered by DC 13.8V 2. Set SA center frequency to the EUT radiated frequency. Set SA Resolution Bandwidth to 1 KHz and Video Resolution Bandwidth to 1KHz. Record this frequency as reference frequency. 3. Supply the EUT primary voltage at the operating end point which is specified by manufacturer and record the frequency.

15 6.3 TEST SETUP BLOCK DIAGRAM Page 15 of 44 Temperature Chamber Spectrum analyzer Or Receiver RF Attenuator EUT Variable DC power supply Figure TEST EQUIPMENT USED: NAME OF EQUIPMENT MANUFACTURER MODEL SERIAL NUMBER Cal. Date Cal. Due Receiver R&S ESCI N/A 07/18/ /17/2013 Climate Chamber EXPERY TN-400 N/A 07/18/ /17/2013

16 6.5 TEST RESULT 6.5.1Frequency bands: mhz (1) Frequency stability versus input voltage (Supply nominal voltage is13.8v) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Page 16 of 44

17 Page 17 of 44 (2) Frequency stability versus input voltage(battery limiting voltage is 11.73V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

18 Page 18 of 44 (3) Frequency stability versus input voltage (Battery Fully Charged voltage is 15.87V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC 15.87V DC 15.87V DC 15.87V DC 15.87V DC 15.87V DC 15.87V DC 15.87V DC 15.87V DC 15.87V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

19 6.5.2Frequency bands:50-54mhz (1) Frequency stability versus input voltage (Supply nominal voltage is13.8v) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Page 19 of 44

20 Page 20 of 44 (2) Frequency stability versus input voltage(battery limiting voltage is 11.73V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

21 Page 21 of 44 (3) Frequency stability versus input voltage (Battery Fully Charged voltage is 15.87V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

22 6.5.3Frequency bands: mhz (1) Frequency stability versus input voltage (Supply nominal voltage is13.8v) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Page 22 of 44

23 Page 23 of 44 (2) Frequency stability versus input voltage(battery limiting voltage is 11.73V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

24 Page 24 of 44 (3) Frequency stability versus input voltage (Battery Fully Charged voltage is 15.87V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

25 6.5.4Frequency bands: mhz (1) Frequency stability versus input voltage (Supply nominal voltage is13.8v) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Page 25 of 44

26 Page 26 of 44 (2) Frequency stability versus input voltage(battery limiting voltage is 11.73V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

27 Page 27 of 44 (3) Frequency stability versus input voltage (Battery Fully Charged voltage is 15.87V) Bottom 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Middle 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V Top 12.5 KHz Channel Separation Reference Frequency: MHz Limit: 2.5ppm 50 DC V DC V DC V DC V DC V DC V DC V DC V DC V

28 7. EMISSION BANDWIDTH 7.1 PROVISIONS APPLICABLE According to FCC Part 97 Section : The authorized bandwidth shall be 100 KHz Page 28 of MEASUREMENT PROCEDUR 1). The EUT was placed on a turn table which is 0.8m above ground plane. 2). The EUT was modulated by 2.5 KHz Sine wave audio signal, The level of the audio signal employed is 16 db greater than that necessary to produce 50% of rated system deviation. Rated system deviation is 2.5 khz (12.5 khz channel spacing). 3). Set SPA Center Frequency = fundamental frequency, RBW=VBW= 300 Hz, Span =50 KHz. 4). Set SPA Max hold. Mark peak, -26 db. 7.3 TEST SETUP BLOCK DIAGRAM 3m Spectrum Analyzer Turntable EUT 0.8m 1m to 4m Ground Plane Coaxial Cable 7.4 MEASUREMENT EQUIPMENT USED: NAME OF EQUIPMENT MANUFACTURER SPECTRUM ANALYZER MODULATION ANALYZER MODEL SERIAL NUMBER Cal. Date Cal. Due AGILENT E4440A US /18/ /17/2013 HP 8920B 3104A /18/ /17/2013 BROADBAND ANT. A.H. SAS A /08/ /07/2013

29 7.5 MEASUREMENT RESULT: Page 29 of db Bandwidth Measurement Result 12.5 KHz Channel Separation Operating Frequency Test Data Limits Result MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass Occupied bandwidth of Middle Channel 12.5 KHz Channel Separation

30 Page 30 of db Bandwidth Measurement Result 12.5 KHz Channel Separation Operating Frequency Test Data Limits Result MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass Occupied bandwidth of Middle Channel 12.5 KHz Channel Separation

31 Page 31 of db Bandwidth Measurement Result 12.5 KHz Channel Separation Operating Frequency Test Data Limits Result MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass Occupied bandwidth of Middle Channel 12.5 KHz Channel Separation

32 Page 32 of db Bandwidth Measurement Result 12.5 KHz Channel Separation Operating Frequency Test Data Limits Result MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass MHz KHz 100 KHz Pass Occupied bandwidth of Middle Channel 12.5 KHz Channel Separation

33 8.1 PROVISIONS APPLICABLE 8. UNWANTED RADIATION Page 33 of 44 (1) No amateur station transmission shall occupy more bandwidth than necessary bandwidth for the information rate and emission type being transmitted, in accordance with good amateur practice. (2) Emissions resulting from modulation must be confined to the band or segment available to the control operator. Emissions outside the necessary bandwidth must not cause splatter or key click interference to operations on adjacent frequencies. (3) The mean power of any spurious emissions from a station transmitter or external RF power amplifier transmitting on a frequency between MHz must be at least 60dB below the mean power of the fundamental. For a transmitter having a mean power of 25W or less, the mean power of any spurious emission supplied to the antenna transmission line must not exceed 25 uw and must be at least 40dB below the mean power of the fundamental emission, but need not be reduced below the power of 10uW. 8.2 MEASUREMENT PROCEDURE (1)On a test site, the EUT shall be placed on a turntable, and in the position closest to the normal use as declared by the user. (2)The test antenna shall be oriented initially for vertical polarization located 3m from the EUT to correspond to the transmitter. (3)The output of the antenna shall be connected to the measuring receiver and either a peak or quasi-peak detector was used for the measurement as indicated on the report. The detector selection is based on how close the emission level was approaching the limit. (4)The transmitter shall be switched on; if possible, without the modulation and the measurement receiver shall be tuned to the frequency of the transmitter under test. (5)The test antenna shall be raised and lowered through the specified range of height until the measuring receiver detects a maximum signal level. (6)The transmitter shall than be rotated through 360 in the horizontal plane, until the maximum signal level is detected by the measuring receiver. (7)The test antenna shall be raised and lowered again through the specified range of height until the measuring receiver detects a maximum signal level. (8)The maximum signal level detected by the measuring receiver shall be noted. (9)The measurement shall be repeated with the test antenna set to horizontal polarization. (10) Replace the antenna with a proper Antenna (substitution antenna). (11)The substitution antenna shall be oriented for vertical polarization and, if necessary, the length of the substitution antenna shall be adjusted to correspond to the frequency of transmitting. (12)The substitution antenna shall be connected to a calibrated signal generator. (13)If necessary, the input attenuator setting of the measuring receiver shall be adjusted in order to increase the sensitivity of the measuring receiver. (14)The test antenna shall be raised and lowered through the specified range of the height to ensure that the maximum signal is received. (15)The input signal to substitution antenna shall be adjusted to the level that produces a level detected by

34 Page 34 of 44 the measuring receiver, that is equal to the level noted while the transmitter radiated power was measured, corrected for the change of input attenuation setting of the measuring receiver. (16)The input level to the substitution antenna shall be recorded as power level in dbm, corrected for any change of input attenuator setting of the measuring receiver. (17)The measurement shall be repeated with the test antenna and the substitution antenna oriented for horizontal polarization. 8.3 TEST SETUP BLOCK DIAGRAM 3m Spectrum Analyzer Turntable EUT 1.5m 1m to 4m Ground Plane Coaxial Cable

35 SUBSTITUTION METHOD: (Radiated Emissions) Page 35 of 44 Radiated Below 1GHz Ground Plane D: distance D: 3 meter Antenna 1.4m 1.5m Turntable Signal Generator Substituted Biconical or LP Biconical or LP Spectrum analyzer / Radiated Above 1 GHz Ground plane Antenna mast D: distance 3 meters 1-4 meter 1.5m Signal Generator Turn table Substituted Horn antenna Horn antenna Spectrum analyzer/pre-amp

36 Page 36 of MEASUREMENT EQUIPMENT USED: NAME OF SERIAL MANUFACTURER MODEL EQUIPMENT NUMBER Cal. Date Cal. Due SPECTRUM ANALYZER AGILENT E4440A US /18/ /17/2013 HORN ANT. EM EM-AH /21/ /20/2013 BROADBAND ANT. A.H. SAS A /08/ /07/2013 AMPLIFIER EM EM /18/ /17/2013 POSITIONING CONTROLLER MF MF-7802 MF MEASUREMENT RESULTS: Measurement Result for 12.5 KHz Channel Separation Limit is at least 60dB below the mean power of the fundamental. For a transmitter having a mean power of 25W or less, the mean power of any spurious emissions supplied to the antenna transmission line must not exceed 25uW and must be at least 40dB below the mean power of the fundamental emission. Frequency Reading level Bottom Channel Antenna S.G. Cable loss Correction Emission level Limit Margin (MHz) (dbuv) Polarization (dbm) (db) (db) (dbm) (dbc) (db) Frequency Reading level Middle Channel Antenna S.G. Cable loss Correction Emission level Limit Margin (MHz) (dbuv) Polarization (dbm) (db) (db) (dbm) (dbc) (db) Frequency Reading level Top Channel Antenna S.G. Cable loss Correction Emission level Limit Margin (MHz) (dbuv) Polarization (dbm) (db) (db) (dbm) (dbc) (db) Notes: -- means that the emission level is too low to be measured or at least 20 db down than the limit.

37 9. MODULATION CHARACTERISTICS 9.1 PROVISIONS APPLICABLE Page 37 of 44 According to CFR 47 section (a), for Voice Modulation Communication Equipment, the frequency response of the audio modulation circuit over a range of 100 to 5000Hz shall be measured. 9.2 MEASUREMENT METHOD Modulation Limit (1). Configure the EUT as shown in figure 1, adjust the audio input for 60% of rated system deviation at 1KHz using this level as a reference (0dB) and vary the input level from 20 to +20dB. Record the frequency deviation obtained as a function of the input level. (2). Repeat step 1 with input frequency changing to 300, 1000, 1500 and 3000Hz in sequence Audio Frequency Response (1). Configure the EUT as shown in figure 1. (2). Adjust the audio input for 20% of rated system deviation at 1 KHz using this level as a reference (0 db). (3). Vary the Audio frequency from 100 Hz to 10 KHz and record the frequency deviation. (4). Audio Frequency Response = 20log10 (Deviation of test frequency/deviation of 1 KHz reference). EUT 20dB Att. or Ant. Coupler Modulation Analyzer Synthesizer/ Function Generator Figure 1: Modulation characteristic measurement configuration 9.3 MEASUREMENT INSTRUMENTS NAME OF EQUIPMENT MANUFACTURER MODEL SERIAL NUMBER Cal. Date Cal. Due Modulation Analyzer HP 8920B 3104A /18/ /17/2013 NOTE: 8920B can generate audio modulation frequency.

38 9.4 MEASUREMENT RESULT (A). MODULATION LIMIT: Middle 12.5 KHz Channel Separations Page 38 of 44 Modulation Peak Freq. Peak Freq. Peak Freq. Peak Freq. Level Deviation Deviation Deviation Deviation (db) At 300 Hz At 1000 Hz At 1500 Hz At 3000 Hz

39 (B). AUDIO FREQUENCY RESPONSE: Middle 12.5 KHz Channel Separations Page 39 of 44 Frequency (Hz) Deviation (KHz) Audio Frequency Response(dB)

40 Page 40 of 44 Frequency Response of Middle Channel

41 Page 41 of MAXIMUMN TRANSMITTER POWER (CONDUCTED OUTPUT POWER) 10.1 PROVISIONS APPLICABLE Per FCC and : No station may transmit with a transmitter power exceeding 1.5 kw PEP TEST PROCEDURE The RF output of Two-way Radio was conducted to a spectrum analyzer through an appropriate attenuator TEST INSTRUMENTS NAME OF EQUIPMENT MANUFACTURER MODEL SERIAL NUMBER Cal. Date Cal. Due SPECTRUM ANALYZER AGILENT E4440A US /18/ /17/ TEST CONFIGURATION 10.5 TEST RESULT The maximum Conducted Power (CP) is W for 12.5 KHz Channel Separation Calculation Formula: CP = R + A + L * Note: CP: The final Conducted Power R : The reading value from spectrum analyzer A : The attenuation value of the used attenuator L : The loss of all connection cables Frequency bands: mhz Conducted Power Measurement Results Channel Separation Channel Measurement Result (dbm) For 46.99dBm(50W) Bottom(28.025MHz) KHz Middle(28.850MHz) Top (29.700MHz) 46.93

42 Frequency bands:50-54mhz Channel Separation 12.5 KHz Conducted Power Measurement Results Channel Page 42 of 44 Measurement Result (dbm) For 46.99dBm(50W) Bottom(50.025MHz) Middle(52.000MHz) Top (53.975MHz) Frequency bands: mhz Conducted Power Measurement Results Channel Separation Channel Measurement Result (dbm) For 46.99dBm(50W) Bottom( MHz) KHz Middle( MHz) Top ( MHz) Frequency bands: mhz Conducted Power Measurement Results Channel Separation Channel Measurement Result (dbm) For 46.02dBm(40W) Bottom( MHz) KHz Middle( MHz) Top ( MHz) 45.99

43 10.6 CONDUCT SPURIOUS PLOT Page 43 of 44 Conducted Spurious Emission MHz With 12.5 KHz Channel Separation 30MHz-1GHz Conduct Spurious Emission With 12.5 KHz Channel Separation 1GHz-12.75GHz

44 Page 44 of 44 Conducted Spurious Emission MHz With 12.5 KHz Channel Separation 30MHz-1GHz Conduct Spurious Emission With 12.5 KHz Channel Separation 1GHz-12.75GHz

45 Page 45 of 44 Conducted Spurious Emission With 12.5 KHz Channel Separation 30MHz-1GHz Conduct Spurious Emission With 12.5 KHz Channel Separation 1GHz-12.75GHz

46 Page 46 of 44 Conducted Spurious Emission With 12.5 KHz Channel Separation 30MHz-1GHz Conduct Spurious Emission With 12.5 KHz Channel Separation 1GHz-12.75GHz

47 APPENDIX 1 PHOTOGRAPHS OF TEST SETUP FCC RADIATED EMISSION TEST SETUP Page 47 of 44

48 APPENDIX 2 PHOTOGRAPHS OF EUT TOTAL VIEW OF EUT Page 48 of 44 TOP VIEW OF EUT

49 Page 49 of 44 BOTTOM VIEW OF EUT FRONT VIEW OF EUT

50 Page 50 of 44

51 BACK VIEW OF EUT Page 51 of 44 LEFT VIEW OF EUT

52 RIGHT VIEW OF EUT Page 52 of 44 OPEN VIEW OF EUT-1

53 OPEN VIEW OF EUT-2 Page 53 of 44 OPEN VIEW OF EUT-3

54 Page 54 of 44

55 INTERNAL VIEW OF EUT-1 Page 55 of 44 INTERNAL VIEW OF EUT-2

56 Page 56 of 44

57 INTERNAL VIEW OF EUT-3 Page 57 of 44 INTERNAL VIEW OF EUT-4

58 INTERNAL VIEW OF EUT-5 Page 58 of 44 OPEN VIEW OF EUT (microphone)

59 INTERNAL VIEW OF EUT-1 Page 59 of 44 INTERNAL VIEW OF EUT END OF REPORT----

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