
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
FM TRANSCEIVER FT-1802M OPERATING MANUAL VERTEX STANDARD CO., LTD. 4-8-8 Nakameguro, Meguro-Ku, Tokyo 153-8644, Japan VERTEX STANDARD US Headquarters 10900 Walker Street, Cypress, CA 90630, U.S.A. YAESU EUROPE B.V. P.O. Box 75525, 1118 ZN Schiphol, The Netherlands YAESU UK LTD. Unit 12, Sun Valley Business Park, Winnall Close Winchester, Hampshire, SO23 0LB, U.K. VERTEX STANDARD HK LTD. Unit 5, 20/F., Seaview Centre, 139-141 Hoi Bun Road, Kwun Tong, Kowloon, Hong Kong Contents 1FT-1802M OPERATING MANUAL The Yaesu FT-1802M is a deluxe, rugged FM mobile transceiver providing high power output and outstanding receiver performance for the 144 MHz Amateur band. Included in the FT-1802M’s feature complement are: 50 Watts of power output, with selection of four power levels for every operating situa- tion. Expanded receiver coverage: 136-174 MHz. Keyboard entry of operating frequencies from the microphone. Excellent protection from receiver intermodulation distortion, thanks to Yaesu’s renowned Advanced Track Tuning front end. 221 memories which can store repeater shifts, odd repeater shifts, CTCSS/DCS tones, and 6-character Alpha-Numeric labels for easy channel recognition. 10 NOAA Weather Broadcast Channels, with Weather Alert. Built-in CTCSS and DCS Encoder/Decoder circuits. The Smart Search TM feature, which automatically sweeps a band and loads active fre- quencies into dedicated memory banks, is ideal for identifying active repeaters when visiting a city for the first time. Extensive Menu system, which allows customization of a number of transceiver perfor- mance characteristics. The Yaesu-exclusive multi-function LCD display. Additional features include a transmit Time-Out-Timer (TOT), Automatic Power-Off (APO), Automatic Repeater Shift (ARS), plus provision for reduction of the Tx deviation in areas of high channel congestion. And an RF Squelch circuit allows the owner to set the squelch to open at a programmable setting of the S-Meter, thus reducing guesswork in setting the squelch threshold. Congratulations on your purchase of the FT-1802M! Whether this is your first rig, or if Yaesu equipment is already the backbone of your station, the Vertex Standard organization is committed to ensuring your enjoyment of this high-performance transceiver, which should provide you with many years of satisfying operation. Our dealer network and technical sup- port personnel stand behind every product we sell, and we invite you to contact us should you require technical advice or assistance. We recommend that you read this manual in its entirety prior to installing the FT-1802M, so that you fully understand the capabilities of your new transceiver. INTRODUCTION 2FT-1802M OPERATING MANUAL General Frequency Range:Tx 144 - 146 MHz or 144 - 148 MHz Rx 144 - 146 MHz or 136 - 174 MHz Channel Step:5/10/12.5/15/20/25/50/100 kHz Standard Repeater Shift:±600 kHz Frequency Stability:Better than ±10 ppm [–4 °F to +140 °F (–20 °C to +60 °C)] Modes of Emission:F2/F3 Antenna Impedance:50 Ohms, unbalanced Supply voltage:13.8 V DC ±15%, negative ground Current Consumption (typical): Rx: less than 0.7 A, less than 0.3 A (squelched) Tx: 10 A (50 W) /7 A (25 W) /5 A (10 W) /4 A (5 W) Operating Temperature Range: –4° F to +140° F (–20° C to +60° C) Case Size (WxHxD):5.5” x 1.6” x 5.7” (140 x 40 x 146 mm) (w/o knobs) Weight (Approx.):2.6 lb (1.2 kg) Transmitter Output Power:50 W/25 W/10 W/5 W Modulation Type:Variable Reactance Maximum Deviation:±5 kHz/±2.5 kHz Spurious Radiation:Better than –60 dB Microphone Impedance:2000 Ohms Receiver Circuit Type:Double Conversion Superheterodyne Ifs:21.7 MHz & 450 kHz Sensitivity (for 12dB SINAD): Better than 0.2 μV Selectivity (–6/–60dB):12 kHz/28 kHz IF Rejection:Better than 70 dB Image Rejection:Better than 70 dB Maximum AF Output:3 W into 4 Ohms @10 % THD Specifications subject to change without notice or obligation. Specifications guaranteed only within Amateur band. SPECIFICATIONS 3FT-1802M OPERATING MANUAL SUPPLIED ACCESSORIES Microphone MH-48A6J...................................................................................................... 1 Mobile Mounting Bracket MMB-36.................................................................................. 1 DC Power Cord w/Fuse (T9021715).................................................................................. 1 Spare Fuse 15 A (Q0000081) ............................................................................................. 2 Operating Manual...............................................................................................................1 Warranty Card..................................................................................................................... 1 OPTIONAL ACCESSORIES High-Power External SpeakerMLS-100 AC Power SupplyFP-1023 (25 A: USA only) AC Power SupplyFP-1025A (25 A) AC Power SupplyFP-1030A (35 A) ACCESSORY & OPTIONS 4FT-1802M OPERATING MANUAL This chapter describes the installation procedure for integrating the FT-1802M into a typi- cal amateur radio station. It is presumed that you possess technical knowledge and concep- tual understanding consistent with your status as a licensed radio amateur. Please take some extra time to make certain that the important safety and technical requirements detailed in this chapter are followed closely. PRELIMINARY INSPECTION Inspect the transceiver visually immediately upon opening the packing carton. Confirm that all controls and switches work freely, and inspect the cabinet for any damage. Gently shake the transceiver to verify that no internal components have been shaken loose due to rough handling during shipping. If any evidence of damage is discovered, document it thoroughly and contact the shipping company (or your local dealer, if the unit was purchased over-the-counter) so as to get instructions regarding the prompt resolution of the damage situation. Be certain to save the shipping carton, especially if there ar…
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September 30, 2005 Federal Communications Commission Authorization and Evaluation Division, 7435 Oakland Mills Road Columbia, MD 21046 USA Re: FT-1802M (FCC ID: K6620233X40) Gentlemen: The scanner receiver equipment meets the requirements of the FCC Rules, 15.121(a). Compliance is achieved through the following methods: The scanner receiver in this equipment is incapable of tuning, or readily being altered, by the User to operate within the frequency bands allocated to the Domestic Public Cellular Telecommunications Service in Part 22. Blocking of the cellular frequencies is implemented in the firmware of the unit’s main control central processing unit (CPU). Coverage of 824 – 849 MHz and 869 – 894 MHz is completely blocked, since it is done in the microprocessor, and cannot be re-enabled by any user-accessible procedure, including diode, resistor, or jumper changes, nor by connection of any external device such as a personal computer, nor by installation of any “special” enabling semiconductor device. Sincerely, Vertex Standard Co., Ltd. Mr. Moto Kurihara Group Leader of Engineering Division
September 30, 2005 Federal Communications Commission EQUIPMENT APPROVAL SERVICES P. O. Box 358315 Pittsburgh, PA 15251-5315 Attention: Authorization and Evaluation Division Reference: FT-1802M (FCC ID: K6620233X40) Pursuant to Sections 0.457 (d)(1)(ii) and 0.459 of the Commission’s Rules, the Applicant hereby requires confidential treatment of some of the information accompanying this Application, as listed below: ・ Block Diagram ・ Schematics These materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457 (d)(1)(ii), disclosure of the Application and all accompanying documentation will not be made before the date of Grant for this Application. Sincerely, Vertex Standard Co., Ltd. Mr. Moto Kurihara Group Leader of Engineering Division
FCC ID: K6620233X40 IC ID: 511B-20233X40 Vertex Standard Co., Ltd. Front view Rear view FCC ID: K6620233X40 IC ID: 511B-20233X40 Vertex Standard Co., Ltd. Top view Bottom view FCC ID: K6620233X40 IC ID: 511B-20233X40 Vertex Standard Co., Ltd. Left side view Right side view FCC ID: K6620233X40 IC ID: 511B-20233X40 Vertex Standard Co., Ltd. Microphone DC Cable
FT-1802M LABEL DRAWINGLABELDRAWING Vertex Standard Co., Ltd.VertexStandardCo.,Ltd. ID / Part 15.19 and CAUTION drawings ID drawing Part 15.19 and CAUTION drawings Label location FT-1802M VERTEX STANDARD CO., LTD. MADE IN JAPAN IC: 511B-20233X40 FCC ID: K6620233X40 4909959000000 SER NO. 00000000
1 FCC ID: K6620233X40/IC ID: 511B-20233X40 FT-1802MSemi-Conductor Parts List Address Parts Code Device NameDescriptionTYP VAL MAIN-UNIT D 1001 G2070634 Diode1SS400 TE61 D 1002 G2070596 DiodeHVC350B-TRF D 1003 Q9000721 Surge Absorber P6KA18 D 1004 G2070584 DiodeHSC277TRF D 1005 G2070584 DiodeHSC277TRF D 1006 G2070596 DiodeHVC350B-TRF D 1007 G2070596 DiodeHVC350B-TRF D 1008 G2070174 DiodeDAN222 TL D 1009 G2070178 DiodeDA221 TL D 1010 G2070612 DiodeDAN235E TL D 1011 G2070178 DiodeDA221 TL D 1012 G2070174 DiodeDAN222 TL D 1013 G2070178 DiodeDA221 TL D 1014 G2070174 DiodeDAN222 TL D 1015 G2070998 Zener DiodeEDZ TE-61 5.1B D 1016 G2070178 DiodeDA221 TL D 1017 G2070596 DiodeHVC350B-TRF D 1018 G2070826 DiodeXB15A709A0HR D 1019 G2070826 DiodeXB15A709A0HR D 1020 G2070128 DiodeRLS135 TE-11 D 1021 G2070596 DiodeHVC350B-TRF D 1022 G2070076 Diode1SS321 TE85R D 1023 G2070634 Diode1SS400 TE61 D 1024 G2070596 DiodeHVC350B-TRF D 1025 G2070596 DiodeHVC350B-TRF D 1026 G2070634 Diode1SS400 TE61 D 1028 G2070128 DiodeRLS135 TE-11 D 1029 G2070174 DiodeDAN222 TL D 1030 G2070634 Diode1SS400 TE61 Q 1001 G3341548E Transistor2SC4154-T11-1E Q 1003 G3070075 TransistorDTC144EE TL Q 1004 G3070075 TransistorDTC144EE TL Q 1005 G1094009 ICLM2902PWR Q 1006 G1094010 ICLM2904PWR Q 1007 G3117748R Transistor2SA1774 TL R Q 1008 G3705628 FET2SJ562-TD Q 1009 G3352318I Transistor2SC5231C9-TL Q 1010 G3353748 Transistor2SC5374-TL Q 1011 G1092545 ICMB15A01PFV1-G-BND-EF Q 1012 G3341548E Transistor2SC4154-T11-1E Q 1013 G3070075 TransistorDTC144EE TL Q 1014 G3070075 TransistorDTC144EE TL Q 1015 G1093164 ICKIA7808API Q 1016 G1093652 ICS-812C50AUA-C3E-T2 Q 1017 G3353748 Transistor2SC5374-TL Q 1018 G3070075 TransistorDTC144EE TL Q 1019 G3070075 TransistorDTC144EE TL Q 1020 G3070075 TransistorDTC144EE TL Q 1021 G3341548E Transistor2SC4154-T11-1E Q 1022 G3070075 TransistorDTC144EE TL Q 1023 G3353748 Transistor2SC5374-TL Q 1024 G3117748R Transistor2SA1774 TL R Q 1025 G3070335 TransistorFMMTL718TA Vertex Standard Co.,Ltd. 2 FCC ID: K6620233X40/IC ID: 511B-20233X40 FT-1802MSemi-Conductor Parts List Address Parts Code Device NameDescriptionTYP VAL Q 1026 G3352268E Transistor2SC5226-5-TL Q 1027 G3117748R Transistor2SA1774 TL R Q 1028 G1094024 ICNJM2591V-TE1 Q 1029 G3117748R Transistor2SA1774 TL R Q 1030 G1094220 PWR-MODULE RA60H1317M1 Q 1031 G3070075 TransistorDTC144EE TL Q 1032 G3344008D Transistor2SC4400-4-TL Q 1033 G3341548E Transistor2SC4154-T11-1E Q 1034 G3703648Q FET2SJ364-Q(TX) Q 1035 G1092241 ICLA4425A Q 1036 G3703648Q FET2SJ364-Q(TX) Q 1037 G4802968 FET3SK296ZQ-TL Q 1038 G1094010 ICLM2904PWR Q 1039 G3703477 FET2SJ347 TE85R Q 1040 G3070075 TransistorDTC144EE TL Q 1041 G3703648Q FET2SJ364-Q(TX) Q 1042 G3703648Q FET2SJ364-Q(TX) Q 1043 G1093033 ICM62364FP 600D Q 1044 G1094010 ICLM2904PWR Q 1045 G4802968 FET3SK296ZQ-TL Q 1046 G3341548E Transistor2SC4154-T11-1E Q 1047 G3341548E Transistor2SC4154-T11-1E Q 1048 G1093866 ICCD4094BPWR Q 1049 G1094009 ICLM2902PWR Q 1050 G1094010 ICLM2904PWR Q 1051 G3346178R Transistor2SC4617 TL R Q 1052 G3070075 TransistorDTC144EE TL CNTL-UNIT D 2001 G2070178 DiodeDA221 TL D 2002 G2071104 LEDSML-512WWT86 D 2003 G2071104 LEDSML-512WWT86 D 2004 G2071104 LEDSML-512WWT86 D 2005 G2071104 LEDSML-512WWT86 D 2006 G2071104 LEDSML-512WWT86 D 2007 G2071104 LEDSML-512WWT86 D 2008 G2071104 LEDSML-512WWT86 D 2009 G2071104 LEDSML-512WWT86 D 2010 G2071104 LEDSML-512WWT86 D 2011 G2070634 Diode1SS400 TE61 D 2012 G2070634 Diode1SS400 TE61 D 2013 G2071104 LEDSML-512WWT86 D 2014 G2071104 LEDSML-512WWT86 D 2015 G2071104 LEDSML-512WWT86 D 2016 G2070634 Diode1SS400 TE61 D 2017 G2070634 Diode1SS400 TE61 D 2018 G2070634 Diode1SS400 TE61 D 2019 G2070634 Diode1SS400 TE61 D 2020 G2070634 Diode1SS400 TE61 D 2022 G2070634 Diode1SS400 TE61 D 2023 G2070174 DiodeDAN222 TL D 2025 G2070178 DiodeDA221 TL D 2026 G2070634 Diode1SS400 TE61 D 2027 G2071078 Zener Diode015AZ3.3X-TPH3 DS2001 G6090169 LCDAH023N A15A015X Vertex Standard Co.,Ltd. 3 FCC ID: K6620233X40/IC ID: 511B-20233X40 FT-1802MSemi-Conductor Parts List Address Parts Code Device NameDescriptionTYP VAL Q 2002 G1093813 ICHD64F2266TF13 Q 2003 G3353748 Transistor2SC5374-TL Q 2004 G3070102 TransistorDTC143ZE TL Q 2005 G3070265 TransistorCPH6202-TL Q 2006 G1093876 ICBR24L64F-WE2 Q 2007 G3346178R Transistor2SC4617 TL R Q 2008 G3346178R Transistor2SC4617 TL R Q 2010 G1093652 ICS-812C50AUA-C3E-T2 Q 2011 G1094121 ICBD4830FVE-TR Q 2012 G3070102 TransistorDTC143ZE TL Q 2013 G3346178R Transistor2SC4617 TL R Vertex Standard Co.,Ltd.
APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 REPORT #: V\VERTEX\2091UT5\2091UT5TestReport.doc TABLE OF CONTENTS TABLE OF CONTENTS LIST APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 TEST REPORT CONTAINING: PAGE 1......TEST PROCEDURE PAGE 2......TEST PROCEDURE & CIRCUIT DESCRIPTION PAGE 3......RADIATION INTERFERENCE TEST DATA PAGE 4......38 dB Rejection Ratio EXHIBITS CONTAINING: CONFIDENTIALITY REQUEST LETTER STATEMENT PER 15.121(a) BLOCK DIAGRAMS SCHEMATICS INSTRUCTION MANUAL SAMPLE OF FCC ID LABEL AND SKETCH OF LOCATION RADIATED TEST SETUP PHOTOGRAPH EXTERNAL PHOTOS INTERNAL PHOTOS CIRCUIT DESCRIPTION APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 REPORT #: V\VERTEX\2091UT5\2091UT5TestReport.doc Page 1 of 4 APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 TEST EQUIPMENT LIST Device Manufacturer Model Serial Number Cal/Char Date Due Date 3/10-Meter OATS TEI N/A N/A Listed 3/27/04 3/26/07 3-Meter OATS TEI N/A N/A Listed 1/13/03 1/12/06 Biconnical Antenna Eaton 94455-1 1057 CAL 3/18/03 3/18/05 Biconnical Antenna Eaton 94455-1 1096 CAL 8/17/04 8/17/06 Biconnical Antenna Electro- Metrics BIA-25 1171 CAL 4/29/05 4/29/07 Blue Tower Quasi-Peak Adapter HP 85650A 2811A01279 CAL 4/13/05 4/13/07 Blue Tower RF Preselector HP 85685A 2926A00983 CAL 8/3/05 8/3/07 Blue Tower Spectrum Analyzer HP 8568B 2928A04729 2848A18049 CAL 4/13/05 4/13/07 LISN Electro- Metrics ANS-25/2 2604 CAL 8/27/04 8/27/06 LISN Electro- Metrics EM-7820 2682 CAL 4/28/05 4/28/07 Log- Periodic Antenna Eaton 96005 1243 CAL 5/8/03 5/8/05 APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 REPORT #: V\VERTEX\2091UT5\2091UT5TestReport.doc Page 2 of 4 TEST PROCEDURE GENERAL: This report shall NOT be reproduced except in full without the written approval of TIMCO ENGINEERING, INC. RADIATION INTERFERENCE: The test procedure used was ANSI STANDARD C63.4-2003 using a HEWLETT PACKARD spectrum analyzer with a preselector. The bandwidth of the spectrum analyzer was 100 kHz with an appropriate sweep speed. The analyzer was calibrated in dB above a microvolt at the output of the antenna. The resolution bandwidth was 100KHz and the video bandwidth was 300KHz. The ambient temperature of the UUT was 80oC with a humidity of 76%. FORMULA OF CONVERSION FACTORS: The Field Strength at 3m was established by adding the meter reading of the spectrum analyzer (which is set to read in units of dBuV) to the antenna correction factor supplied by the antenna manufacturer. The antenna correction factors are stated in terms of dB. The gain of the Preselector was accounted for in the Spectrum Analyzer Meter Reading. Example: Freq (MHz) METER READING + ACF = FS 33 20 dBuV + 10.36 dB = 30.36 dBuV/m @ 3m ANSI STANDARD C63.4-2003 10.1.7 MEASUREMENT PROCEDURES: The unit under test was placed on a table 80 cm high and with dimensions of 1m by 1.5m. The table used for radiated measurements is capable of continuous rotation. When an emission was found, the table was rotated to produce the maximum signal strength. At this point, the antenna was raised and lowered from 1m to 4m. The antenna was placed in both the horizontal and vertical planes. APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 REPORT #: V\VERTEX\2091UT5\2091UT5TestReport.doc Page 3 of 4 APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 NAME OF TEST: RADIATION INTERFERENCE RULES PART NUMBER: 15.109 REQUIREMENTS: 30 to 80 MHz: 40.0 dBuV/M @ 3 METERS 88 to 216 MHz: 43.5 dBuV/M 216 to 960 MHz: 46.0 dBuV/M ABOVE 960 MHz: 54.0 dBuV/M TEST RESULTS: A search was made of the spectrum from 30 to 1000 MHz and the measurements indicate that the unit DOES meet the FCC requirements. TEST DATA: Tuned Frequency MHz Emission Frequency MHz Meter Reading dBuV Ant. Pol Coax Loss dB Correction Factor dB Field Strength dBuV/m Margin dB 136.0 114.30 10.9 V 0.66 14.95 26.51 16.99 136.0 114.30 11.0 H 0.66 14.84 26.50 17.00 136.0 342.90 11.7 H 1.14 15.13 27.97 18.03 136.0 457.20 10.7 H 1.26 17.32 29.28 16.72 136.0 571.50 10.4 H 1.51 19.32 31.23 14.77 155.0 133.30 10.8 H 0.68 13.10 24.58 18.92 155.0 133.30 10.9 V 0.68 13.14 24.72 18.78 155.0 399.90 12.0 H 1.20 16.10 29.30 16.70 155.0 399.90 12.2 V 1.20 16.00 29.40 16.60 155.0 666.50 10.5 H 1.67 20.73 32.90 13.10 174.0 152.30 10.1 V 0.71 14.34 25.15 18.35 174.0 152.30 10.3 H 0.71 14.17 25.18 18.32 174.0 456.90 10.5 V 1.26 16.87 28.63 17.37 174.0 456.90 11.9 H 1.26 17.31 30.47 15.53 174.0 609.20 10.4 V 1.61 18.60 30.61 15.39 174.0 761.50 11.2 V 1.82 20.39 33.41 12.59 SAMPLE CALCULATION: FSdBuV/m = MR (dBuV) + ACFdB. TEST PROCEDURE: ANSI STANDARD C63.4-2003 using a Hewlett Packard Model 8566B spectrum analyzer, a Hewlett Packard Model 85685A Preselector, a Hewlett Packard Model 85650A Quasi-Peak adapter, an Electro-Metric Dipole Kit, and an Eaton Model 94455-1 Biconical Antenna. The bandwidth of spectrum analyzer was 100 kHz with an appropriate sweep speed. When an emission was found, the table was rotated to produce the maximum signal strength. The antenna was placed in both the horizontal and vertical planes and the worse case emissions were reported. The receiver was put into the coherent mode by placing an antenna driven by a signal generator off site. The UUT was tested in 3 orthogonal planes. PERFORMED BY: JOSEPH SCOGLIO DATE: OCTOBER 26, 2005 APPLICANT: VERTEX STANDARD CO., LTD. FCC ID: K6620233X40 NAME OF TEST: 38dB REJECTION RATIO RULES PART NUMBER: 15.121(b) REQUIREMENTS: 38dB REJECTION RATIO TO SENSITIVITY OF THE RECEIVER. TEST SET-UP TEST PROCEDURE: The reference sensitivity was measured in accordance with TIA/EIA-603; a. Equipment connected as illustrated b. A standard signal was applied to the receiver input terminals. c. Receiver output audio output was adjusted for rated output. d. The RF Signal generator was adjusted to the lowest level to produce a 12dB SINAD without the audio output dropping more than 3dB. Make note of sensitivity level. e. This was done across the different bands to establish a reference lev…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15B | 136 MHz - 174 MHz | - |
BLUETOOTH MICROPHONE
Equipment Class
DTS - Digital Transmission System
VHF FM Marine Transceiver
Equipment Class
CXX - Communications Rcvr for use w/ licensed Tx and CBs
VHF FM Marine Transceiver
Equipment Class
CXX - Communications Rcvr for use w/ licensed Tx and CBs
VHF FM Marine Transceiver
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Airband Radio Transceiver
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face