
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Welcome to the world of Midland electronics Congratulations on your purchase of a high quality MIDLANDproduct. Your 2-way radio represents state-of-the-art high-techengineering and is designed for GMRS (General Mobile RadioService) operation. It is a quality piece of electronic equipment, skill-fully constructed with the finest components. The circuitry is all solid-state and mounted on a rugged printed circuit board. Your two-wayradio is designed for reliable and trouble-free performance for yearsto come.Features- 36 GMRS/FRS Channels - 121 Privacy Codes (38 CTCSS / 83 DCS)- VOX- Selectable Call Alert - NOAA Weather Scan- NOAA Weather Radio- NOAA Weather Alert - Scan Function- Monitor Function- Roger Beep Tone- Silent Operation- Key Pad Lock- Power High / Low Settings- Speaker / Microphone Jacks- Battery Meter / Battery Low Indicator This device complies with Part 15 of the FCC Rules. Operation issubject to the following two conditions: (1) this device does not causeharmful interference, and (2) this radio must accept any interferencethat may cause undesired operation.To maintain compliance with FCC’s RF exposure guidelines, forbody-worn operation, this radio has been tested and meets the FCC RFexposure guidelines when used with Midland Radio Corp. accessoriessupplied or designated for this product. Use of other accessories maynot ensure compliance with FCC RF exposure guidelines. IMPORTANT NOTICE, FCC LICENSE REQUIRED FOR GMRS OPERATION(Only Applicable for GMRS Radio Use in the United States)The radios operates on GMRS (General Mobile Radio Service) frequencieswhich require an FCC (Federal Communications Commission) license. You mustbe licensed prior to operating on channels 1 - 7 or 15 - 22, which comprise theGMRS channels of the radios. Serious penalties could result from unlicensed useof GMRS channels, in violation of FCC rules, as stipulated in theCommunications Acts Sections 501 and 502 (amended).You will be issued a call sign by the FCC which should be used for stationidentification when operating the radio on GMRS channels. You should alsocooperate by engaging in permissible transmissions only, avoiding channelinterference with other GMRS users, and being prudent with the length of yourtransmission time.To obtain a license or ask questions about the license application, contact theFCC at 1-888-CALL FCC or go to the FCC's website: http://www .fcc.gov and request form 605 . Exposure To Radio Frequency EnergyYour Midland radio is designed to comply with the following national andinternational standards and guidelines regarding exposure of human beings toradio frequency electromagnetic energy:- United States Federal Communications Commission, Code of Federal Regulations: 47 CFR part 2 sub-part J - American National Standards Institute (ANSI)/Institute of Electrical & Electronic Engineers (IEEE) C95. 1-1992 - Institute of Electrical and Electronic Engineers (IEEE) C95. 1-1999 Edition- National Council on Radiation Protection and Measurements (NCRP) of the United States, Report 86, 1986 - International Commission on Non-lonizing Radiation Protection (ICNIRP) 1998 To control your exposure and ensure compliance with the general population oruncontrolled environment exposure limits, transmit no more than 50% of thetime. The radio generates measurable RF energy exposure only whentransmitting. IMPORTANT: Changes or modifications to this unit not expressly approved by MIDLAND RADIO CORP. could void your right to operate this unit. Your radio is set up to transmit a regulated signal on anassigned frequency. It is against the law to alter or adjust the settingsinside the COMMUNICATOR to exceed those limitations. Any adjustmentto your radio must be made by qualified technicians. LCD DISPLA Y 1. KEY LOCK ICON – Indicates KEY LOCK mode is on. 2. VOX ICON – Indicates when VOX mode is active. 3. NOAA WEATHER (WX) BAND ICON – Indicates when the radio is in Weather Band mode. 4. CHANNEL NUMBER – Changes from 1~36 on GMRS/FRS band (1~10 on WXband). 5. PRIVACY CODE – Indicates Privacy Code selected by user (ct, dc, oF, and1~83). It can only be set in Ch 1~22. 6. BATTERY METER – Indicates the battery level. 7. RECEIVE (RX) ICON – Indicates radio is receiving a transmission. 8. TRANSMIT (TX) ICON – Indicates radio is transmitting a signal. 9. TRANSMIT POWER LEVEL ICON – Indicates TX Power setting (H/L). 10. PRIVACY CODE ICON – Indicates Privacy Code setting (CTCSS/DCS). 1 CONTR OLS 11. POWER/VOLUME KNOB – Turn clock- wise to turn the power on and increasethe volume level. Turn counter-clockwiseto decrease the volume level and turnthe power off. 12. PTT Button – Press and hold to transmit voice communication. 13. CALL/LOCK Button – Press to send a CALL ALERT signal. Press and hold toturn KEY LOCK on/off. 14. MIC – Built-in microphone. 15. SPEAKER – Built-in speaker. 16. ANTENNA17. EXTERNAL SPEAKER/MIC/CHG JACK 18. MENU Button – Press momentarily to access Menu mode. 19. MONITOR/SCAN Button – Press to enter SCAN mode. Press and hold toenter MONITOR mode. 20. UP/WX SCAN s and DOWN t Buttons – Make adjustments in MENU mode. Press and hold the UP button for5 seconds to activate the NOAAWeather Scan function. 18 17 16 14 1312 11 76 32 15 19 4 5 8 9 10 BA T TER Y INS T ALLA TION Your radio operates with either a NiMH battery pack or optional 3 AAAalkaline batteries. The belt clip should be removed (see below) toease installation or removal of the batteries. To install the batteries:1. With the back of the radio facing you, remove the belt clip (see diagram below) for easy access, then remove the Battery Cover bypressing down on the top center and sliding it down from the radio. 2. Insert 3 AAA batteries observing the polarity as shown. Installing the batteries incorrectly will prevent the unit from operating or maydamage the unit. 3. Return the Battery Cover by sliding it up on the radio. Replace the belt clip, making sure it locks into place. BATTERYCOMPARTMENT BATTERYCOMPARTMENTCOVER Press here and push down…
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Midland Radio Corporation 5900 Parretta Drive, Kansas City, Missouri United States 64120 Date: July 21, 2014 Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID: MMALXT600P Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: Exhibit Type File Name Schematics Diagram(s) CONF APPENDIX_LXT600_Schemetics.PDF Block diagram CONF APPENDIX_LXT600_Block diagram.PDF Operation description CONF APPENDIX_LXT600_Operation description.PDF The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, Jeff Brame
www.kes.co.kr Model No.: LXT600 Page 1 of 4 EUT External photographs www.kes.co.kr Model No.: LXT600 Page 2 of 4 www.kes.co.kr Model No.: LXT600 Page 3 of 4 www.kes.co.kr Model No.: LXT600 Page 4 of 4 N/A
Label and Location Model No.: LXT600P Page 1 of 1 Model:LXT600 FCC ID: MMALXT600P IC: 3690A-LXT600P MIDLAND RADIO CORPORATION MADE IN CHINA
www.kes.co.kr Model No.: LXT600 Page 1 of 2 EUT Internal photographs www.kes.co.kr Model No.: LXT600 Page 2 of 2 Helical Antenna
GLOBAL LINK CORP. LTD. LXT600P Series - Bill of Material Dwg. No. : LXT600P-BOM-M-05 Rev. Date: 09/03/14 US$1 = HKD7.79 & RMB7.79C133 CHIP CAPACITOR 0805 X5R ±10% 10UF/10V (05) 1 PA-LXT12-B0004 17-Jun-13 C1 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C10 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C104 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C11 CHIP CAPACITOR 0402 X7R +/- 10% 0.1UF (X7R) 1 PA-LXT12-B0011 7-Jan-14 C115 CHIP CAPACITOR 0402 NPO ±0.25PF 3P 1 C118 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C12 CHIP CAPACITOR 0603 Y5V 1UF 1 C121 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C122 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C125 CHIP CAPACITOR 0402 X7R +/- 10% 0.001UF 1 C13 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C131 Elect capacitor 220UF/6.3v (5x11) KR3-6.3V221MA 1 C14 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C140 CHIP CAPACITOR 0402 Y5V 1UF (02) 1 C142 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C144 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C145 CHIP CAPACITOR 0402 X7R +/- 10% 0.001UF 1 C148 CHIP CAPACITOR 0402 NPO ±0.25PF 5P 1 PA-LXT12-B0007 29-Jul-13 C15 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C16 CHIP CAPACITOR 0603 Y5V 1UF 1 C162 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C166 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C17 CHIP CAPACITOR 0603 NPO ±0.25PF 6P(03) 1 PA-LXT12-B0014 9-Mar-14 C172 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C173 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C174 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C177 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C178 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C179 CHIP CAPACITOR 0402 X7R +/- 10% 470P(X7R) 1 PA-LXT12-B0011 7-Jan-14 C17A CHIP CAPACITOR 0402 NPO ±0.25PF 1.5P 1 PA-LXT12-B0004 17-Jun-13 C18 CHIP CAPACITOR 0603 Y5V 2.2UF 1 PA-LXT12-B0011 7-Jan-14 C182 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C19 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C2 CHIP CAPACITOR 0603 NPO ±5% 100P(0603) 1 PA-LXT12-B0011 7-Jan-14 C20 CHIP CAPACITOR 0402 Y5V 0.1UF 1 C207 CHIP CAPACITOR 0402 NPO ±5% 100P 1 PA-LXT12-B0004 17-Jun-13 C208 CHIP CAPACITOR 0402 NPO ±5% 33P 1 C209 CHIP CAPACITOR 0402 NPO ±5% 33P 1 C21 CHIP CAPACITOR 0402 NPO ±0.25PF 7P 1 C213 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C22 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C223 CHIP CAPACITOR 0402 NPO ±5% 18P 1 PA-LXT12-B0004 17-Jun-13 C223A CHIP CAPACITOR 0402 NPO ±0.25PF 3P 1 PA-LXT12-B0004 17-Jun-13 C223B CHIP CAPACITOR 0402 NPO ±0.25PF 3P 1 PA-LXT12-B0004 17-Jun-13 C224 CHIP CAPACITOR 0402 NPO ±5% 18P 1 PA-LXT12-B0004 17-Jun-13 C224A CHIP CAPACITOR 0402 NPO ±5% 10P 1 PA-LXT12-B0014 9-Mar-14 C224B CHIP CAPACITOR 0402 NPO ±5% 10P 1 PA-LXT12-B0014 9-Mar-14 C23 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C24 CHIP CAPACITOR 0402 Y5V 0.1UF 1 C25 CHIP CAPACITOR 0402 Y5V 0.1UF 1 C26 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C27 CHIP CAPACITOR 0402 NPO ±5% 12P 1 PA-LXT12-B0011 7-Jan-14 C28 CHIP CAPACITOR 0603 Y5V 1UF 1 C29 CHIP CAPACITOR 0402 Y5V 0.1UF 1 PA-LXT12-B0004 17-Jun-13 C3 CHIP CAPACITOR 0402 X7R +/- 10% 0.001UF 1 C30 CHIP CAPACITOR 0603 NPO ±0.25PF 6P(03) 1 C304 CHIP CAPACITOR 0402 NPO ±0.25PF 3P 1 PA-LXT12-B0007 29-Jul-13 C31 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C32 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C33 CHIP CAPACITOR 0805 X5R ±10% 10UF/10V (05) 1 PA-LXT12-B0004 17-Jun-13 C35 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C36 CHIP CAPACITOR 0402 NPO ±0.25PF 6P 1 PA-LXT12-B0011 7-Jan-14 C37 CHIP CAPACITOR 0402 NPO ±0.25PF 6P 1 C39 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C3A CHIP CAPACITOR 0603 NPO ±0.25PF 4P(03) 1 C4 CHIP CAPACITOR 0402 NPO ±0.25PF 6P 1 PA-LXT12-B0011 7-Jan-14 C40 CHIP CAPACITOR 0402 NPO ±5% 100P 1 PA-LXT12-B0011 7-Jan-14 C41 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C42 CHIP CAPACITOR 0402 NPO ±5% 100P 1 Remark ECO Ref.No Q'ty Description Items Global Link Corporation Confidential Proprietary page1/5 GLOBAL LINK CORP. LTD. LXT600P Series - Bill of Material Dwg. No. : LXT600P-BOM-M-05 Rev. Date: 09/03/14 Remark ECO Ref.No Q'ty Description Items C43 Elect capacitor 220UF/6.3v (5x11) KR3-6.3V221MA 1 C44 CHIP CAPACITOR 0402 X7R +/- 10% 0.0018UF 1 PA-LXT12-B0014 9-Mar-14 C45 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C46 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C47 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C48 CHIP CAPACITOR 0805 X5R ±10% 10UF/10V (05) 1 PA-LXT12-B0004 17-Jun-13 C49 CHIP CAPACITOR 0402 X7R +/- 10% 0.01UF 1 C5 CHIP CAPACITOR 0402 NPO ±5% 100P 1 PA-LXT12-B0004 17-Jun-13 C50 CHIP CAPACITOR 0603 X7R ±10% 1UF (03 X7R) 1 C51 CHIP CAPACITOR 0402 Y5V 0.1UF 1 C52 CHIP CAPACITOR 0402 Y5V 0.1UF 1 C53 CHIP CAPACITOR 0402 Y5V 0.1UF 1 C54 CHIP CAPACITOR 0402 X7R +/- 10% 470P(X7R) 1 PA-LXT12-B0011 7-Jan-14 C55 CHIP CAPACITOR 0402 X7R +/- 10% 0.1UF (X7R) 1 PA-LXT12-B0004 17-Jun-13 C56 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C57 CHIP CAPACITOR 0402 X7R +/- 10% 0.01UF 1 PA-LXT12-B0014 9-Mar-14 C6 CHIP CAPACITOR 0603 NPO ±0.25PF 9P(03) 1 PA-LXT12-B0014 9-Mar-14 C60 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C61 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C62 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C64 CHIP CAPACITOR 0402 NPO ±0.25PF 7P 1 C67 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C68 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C7 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C70 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C73 CHIP CAPACITOR 0402 X7R +/- 10% 0.01UF 1 PA-LXT12-B0004 17-Jun-13 C74 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C76 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C77 CHIP CAPACITOR 0402 X7R +/- 10% 0.01UF 1 C8 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C80 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C81 CHIP CAPACITOR 0402 NPO ±0.25PF 4P 1 PA-LXT12-B0007 29-Jul-13 C85 CHIP CAPACITOR 0402 Y5V 0.1UF 1 C9 CHIP CAPACITOR 0603 NPO ±0.25PF 10P(03) 1 PA-LXT12-B0004 17-Jun-13 C90 CHIP CAPACITOR 0402 Y5V 0.1UF 1 PA-LXT12-B0004 17-Jun-13 C95 CHIP CAPACITOR 0402 NPO ±5% 100P 1 C98 CHIP CAPACITOR 0402 Y5V 0.1UF 1 CMIC1 Condensor Mic F9745AP342-98 (RoHS) 1 CPU1 IC CPU (Flash) WT56F216 1 CT1 6pF 3mm dia Trimmer Cap STC3M06-T1 1 D1 Chip Diode Switching KDS114E 1 D13 Chip Diode Switching KDS114E 1 D2 SMT Rectifier Diode GN1G-RTK/P 1 D4 Chip Diode Switching KDS114E 1 PA-LXT12-B0011 7-Jan-14 D5 Chip Diode Switching KDS114E 1 D6 SMT Rectifier Diode GN1G-RTK/P 1 D7 Chip Diode Switching KDS114E 1 PA-LXT12-B0011 7-Jan-14 IC1 Analog Radio IC BK4813 1 PA-LXT12-B…
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1) Go to RX squelch alignment mode by press and holding the Menu button then turn on the radio. 2) LCD become sequential on display such as belows. Press the Menu button to change each step. Display Default value and Press the Up or Down button to align if necessory each step. 8. If JS2 is short to GND, Alignment mode is enable. If JS2 is open to GND, Alignment mode is disable. 7. CPU version display by press and holding the Down button then turn on the radio. 1) Set the unit at channel 1.(462.5625MHz) Press the PTT button so the unit will be in transmit mode. 2)Adjust CT1 trimmer until Fc +/- 200Hz. 4. Maximum Audio Deviation ; No need to alignment. 1) Go to TX power alignment mode by press and holding the Call button then turn on the radio. 3. Transmitter Output Power 2) Set the unit on low power. Press the PTT button so the unit will be in transmit mode. 3) Adjust RV1 semi-volume until 500mW +/- 100mW 1) Set the power supply at Vdc. Set the unit at ch 1.(462.5625MHz) LXT600 Alignment Procedure 2014. 07. 09 1. VCO Alignment ; No need to alignment. 2. Transmitter Frequency Alignment 2) LCD become on display such as belows. Press the Up or Down button to align if necessory each step. Display Default value ① GMRS Maximum Deviation Alignment td 0b Test frequency ; 462.5625MHz ① WX Squelch Alignment W 0F Test frequency ; 162.550MHz ② GMRS Squelch Alignment gr 0d Test frequency ; 462.7125MHz 6. Memory clear by press and holding the Up button then turn on the radio. 5. Receiver Squelch Alignment
Date: 2014-07-28 Test Laboratory: KES Co., Ltd. Sytem verification_450_HSL DUT: Dipole 450 MHz; Type: D450V3; Serial: D450V3 - SN:1084 Communication System: CW; Frequency: 450 MHz;Duty Cycle: 1:1 Medium parameters used: f = 450 MHz; σ = 0.833 mho/m; ε r = 42.7; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY4 (High Precision Assessment) DASY4 Configuration: • Probe: EX3DV4 - SN3879; ConvF(10.09, 10.09, 10.09); Calibrated: 2013-11-29 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Electronics: DAE4 Sn1344; Calibrated: 2013-11-21 • Phantom: ELI v5.0_2013_01_23; Type: QDOVA002AA; Serial: TP:1190 • Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Flat-Section_HSL_450/Area Scan (31x201x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (interpolated) = 1.12 mW/g Flat-Section_HSL_450/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 37.8 V/m; Power Drift = 0.067 dB Peak SAR (extrapolated) = 1.56 W/kg SAR(1 g) = 1.11 mW/g; SAR(10 g) = 0.781 mW/g Maximum value of SAR (measured) = 1.19 mW/g Date: 2014-07-29 Test Laboratory: KES Co., Ltd. Sytem verification_450_MSL DUT: Dipole 450 MHz; Type: D450V3; Serial: D450V3 - SN:1084 Communication System: CW; Frequency: 450 MHz;Duty Cycle: 1:1 Medium parameters used: f = 450 MHz; σ = 0.901 mho/m; ε r = 56.5; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY4 (High Precision Assessment) DASY4 Configuration: • Probe: EX3DV4 - SN3879; ConvF(10.8, 10.8, 10.8); Calibrated: 2013-11-29 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Electronics: DAE4 Sn1344; Calibrated: 2013-11-21 • Phantom: ELI v5.0_2013_01_23; Type: QDOVA002AA; Serial: TP:1190 • Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Flat-Section_MSL_450/Area Scan (31x201x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (interpolated) = 0.972 mW/g Flat-Section_MSL_450/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 33.3 V/m; Power Drift = -0.008 dB Peak SAR (extrapolated) = 1.51 W/kg SAR(1 g) = 1.04 mW/g; SAR(10 g) = 0.715 mW/g Maximum value of SAR (measured) = 1.11 mW/g Date: 2014-07-28 Test Laboratory: KES Co., Ltd. Face_GMRS_Analog_25mm Gap_462.6375 DUT: LXT600P; Type: Bar; Serial: N/A Communication System: CW; Frequency: 462.637 MHz;Duty Cycle: 1:1 Medium parameters used (interpolated): f = 462.637 MHz; σ = 0.851 mho/m; ε r = 42.4; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY4 (High Precision Assessment) DASY4 Configuration: • Probe: EX3DV4 - SN3879; ConvF(10.09, 10.09, 10.09); Calibrated: 2013-11-29 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Electronics: DAE4 Sn1344; Calibrated: 2013-11-21 • Phantom: ELI v5.0_2013_01_23; Type: QDOVA002AA; Serial: TP:1190 • Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Face_GMRS_Analog_25mm Gap_462.6375/Area Scan (61x131x1): Measurement grid: dx=15mm, dy=15mm Info: Interpolated medium parameters used for SAR evaluation. Maximum value of SAR (interpolated) = 0.687 mW/g Face_GMRS_Analog_25mm Gap_462.6375/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 30.0 V/m; Power Drift = -0.117 dB Peak SAR (extrapolated) = 0.758 W/kg SAR(1 g) = 0.630 mW/g; SAR(10 g) = 0.482 mW/g Info: Interpolated medium parameters used for SAR evaluation. Maximum value of SAR (measured) = 0.670 mW/g Date: 2014-07-28 Test Laboratory: KES Co., Ltd. Face_FRS_Analog_25mm Gap_467.6375 DUT: LXT600P; Type: Bar; Serial: N/A Communication System: CW; Frequency: 467.637 MHz;Duty Cycle: 1:1 Medium parameters used (interpolated): f = 467.637 MHz; σ = 0.854 mho/m; ε r = 42.4; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY4 (High Precision Assessment) DASY4 Configuration: • Probe: EX3DV4 - SN3879; ConvF(10.09, 10.09, 10.09); Calibrated: 2013-11-29 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Electronics: DAE4 Sn1344; Calibrated: 2013-11-21 • Phantom: ELI v5.0_2013_01_23; Type: QDOVA002AA; Serial: TP:1190 • Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Face_FRS_Analog_25mm Gap_467.6375/Area Scan (61x131x1): Measurement grid: dx=15mm, dy=15mm Info: Interpolated medium parameters used for SAR evaluation. Maximum value of SAR (interpolated) = 0.544 mW/g Face_FRS_Analog_25mm Gap_467.6375/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 25.8 V/m; Power Drift = -0.149 dB Peak SAR (extrapolated) = 0.689 W/kg SAR(1 g) = 0.519 mW/g; SAR(10 g) = 0.392 mW/g Info: Interpolated medium parameters used for SAR evaluation. Maximum value of SAR (measured) = 0.545 mW/g Date: 2014-07-29 Test Laboratory: KES Co., Ltd. Body_GMRS_Analog_Touch_462.6375 DUT: LXT600P; Type: Bar; Serial: N/A Communication System: CW; Frequency: 462.637 MHz;Duty Cycle: 1:1 Medium parameters used (interpolated): f = 462.637 MHz; σ = 0.91 mho/m; ε r = 56.4; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY4 (High Precision Assessment) DASY4 Configuration: • Probe: EX3DV4 - SN3879; ConvF(10.8, 10.8, 10.8); Calibrated: 2013-11-29 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Electronics: DAE4 Sn1344; Calibrated: 2013-11-21 • Phantom: ELI v5.0_2013_01_23; Type: QDOVA002AA; Serial: TP:1190 • Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Body_GMRS_Analog_Touch_462.6375/Area Scan (61x131x1): Measurement grid: dx=15mm, dy=15mm Info: Interpolated medium parameters used for SAR evaluation. Maximum value of SAR (interpolated) = 1.27 mW/g Body_GMRS_Analog_Touch_462.6375/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 38.4 V/m; Power Drift = -0.101 dB Peak SAR (extrapolated) = 1.53 W/kg SAR(1 g) = 1.16 mW/g; SAR(10 g) = 0.863 mW/g Info: Interpolated medium parameters used for SAR evaluation. Maximum value of SAR (measured) = 1.23 mW/g Date: …
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KES Co., Ltd. C-3701, Simin-daero 365-40l, Dongan-gu, Anyang-si, Gyeonggi-do, 431-716, Korea Tel: +82-31-425-6200 / Fax: +82-31-424-0450 www.kes.co.kr Test report No.: KES-SR-14T0008 Page (2 ) of (20) This report shall not be reproduced except in full, without the written approval of KES Co., Ltd. The test results in the report only apply to the tested sample. KES-P-5101-14 Rev. 1 KES A4 Revision history Revision Date of issue Test report No. Description - 2014.09.02 KES-SR-14T0008 Initial KES Co., Ltd. C-3701, Simin-daero 365-40l, Dongan-gu, Anyang-si, Gyeonggi-do, 431-716, Korea Tel: +82-31-425-6200 / Fax: +82-31-424-0450 www.kes.co.kr Test report No.: KES-SR-14T0008 Page (3 ) of (20) This report shall not be reproduced except in full, without the written approval of KES Co., Ltd. The test results in the report only apply to the tested sample. KES-P-5101-14 Rev. 1 KES A4 TABLE OF CONTENTS 1. General information ................................................................................................................................................... 4 1.1. EUT description ........................................................................................................................................ 4 1.2. Short description of the equipment under test(EUT) ................................................................................. 4 1.3. Highest SAR summary .............................................................................................................................. 4 1.4. Guidance applied ....................................................................................................................................... 5 1.5. Test conditions ........................................................................................................................................... 5 1.6. SAR definition ........................................................................................................................................... 5 1.7. Accessories of EUT ................................................................................................................................... 6 2. SAR measurement system .......................................................................................................................................... 7 2.1. Robot ......................................................................................................................................................... 8 2.2. Probe.......................................................................................................................................................... 8 2.3. Data Acquisition Electronics (DAE) ......................................................................................................... 9 2.4. Phantoms ................................................................................................................................................... 9 2.5. Device holder .......................................................................................................................................... 10 3. SAR measurement procedure ................................................................................................................................... 11 4. Tissue simulating liquids .......................................................................................................................................... 13 5. System verification ................................................................................................................................................... 14 5.1. Procedure ................................................................................................................................................. 14 5.2. System verification .................................................................................................................................. 14 6. RF exposure limits ................................................................................................................................................... 15 7. Test results summary ................................................................................................................................................ 16 7.1. RF conducted power ................................................................................................................................ 16 7.1.1. Power measurement procedures ...................................................................................................... 16 7.1.2. RF conducted power ....................................................................................................................... 16 7.1.2. Target power and Tune-up limits .................................................................................................... 16 7.2. SAR results .............................................................................................................................................. 17 7.2.1. SAR measurement results ............................................................................................................... 17 7.2.2. Justification for extended SAR dipole calibrations ......................................................................... 17 8. Measurement equipments ......................................................................................................................................... 18 9. Measurement Uncertainty ........................................................................................................................................ 19 Appendix list ..................................................................................................................................................................... 20 Appendix A. DASY4 report ...................................................................................................…
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KES Co., Ltd. C-3701, Simin-daero 365-40l, Dongan-gu, Anyang-si, Gyeonggi-do, 431-716, Korea Tel: +82-31-425-6200 / Fax: +82-31-424-0450 www.kes.co.kr Test report No.: KES-RF-14T0043 Page (2 ) of (32) This report shall not be reproduced except in full, without the written approval of KES Co., Ltd. The test results in the report only apply to the tested sample. KES-P-5101-14 Rev.1 KES A4 Revision history Revision Date of issue Test report No. Description - 2014.09.02 KES-RF-14T0043 Initial KES Co., Ltd. C-3701, Simin-daero 365-40l, Dongan-gu, Anyang-si, Gyeonggi-do, 431-716, Korea Tel: +82-31-425-6200 / Fax: +82-31-424-0450 www.kes.co.kr Test report No.: KES-RF-14T0043 Page (3 ) of (32) This report shall not be reproduced except in full, without the written approval of KES Co., Ltd. The test results in the report only apply to the tested sample. KES-P-5101-14 Rev.1 KES A4 TABLE OF CONTENTS 1. General information ........................................................................................................................ 4 1.1 EUT description ............................................................................................................................... 4 1.2 Information about variant model ................................................................................................... 4 1.3 Device modifications ........................................................................................................................ 4 1.4 Test facility ........................................................................................................................................ 4 1.5 Laboratory accreditations and listings ........................................................................................... 4 1.6 Conclusion of worst-case for each mode of representative channel respectively ....................... 5 2.0 Summary of tests .............................................................................................................................. 7 2.1 Test data ............................................................................................................................................ 8 2.1.1 RF output power and radiated spurious emission ....................................................................... 8 2.1.2 Modulation limiting .................................................................................................................. 16 2.1.3 Audio frequency response ........................................................................................................ 19 2.1.4 Low-pass filter response ........................................................................................................... 21 2.1.5 Occupied bandwidth and emission mask ................................................................................. 23 2.1.6 Frequency stability ..............…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 3 | 95B | 467.5625 MHz - 467.7125 MHz | 86.00 mW | 11K0F3E | 1.399 ppm |

Wireless Bluetooth Microphone
Equipment Class
JAB - Part 15 Class B Digital Device
GMRS Radio
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Transceiver
Equipment Class
DTS - Digital Transmission System
BUSINESS BAND TWO-WAY RADIO
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
GMRS RADIO
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face