FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

Β© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Yaesu Musen Co., Ltd./
  3. K66VX-3200V

K66VX-3200VVHF Transceiver

Yaesu Musen Co., Ltd.
VHF Transceiver - FCC ID K66VX-3200V - Yaesu Musen Co., Ltd.
Click to zoom

Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Aug 07, 2002
Application Purpose
Original Equipment
Date of Application
Jun 16, 2002
Equipment Note
VHF Transceiver
Frequency Range
148.00000000 - 174.00000000
Company
Yaesu Musen Co., Ltd.
Country
Japan

Documents & Files

Select a file to view

Users Manual

β†—

Attestation Statements

β†—

Cover Letter(s)

β†—
β†—

External Photos

β†—

ID Label/Location Info

β†—

Internal Photos

β†—

Operational Description

β†—

Parts List/Tune Up Info

β†—
β†—

Test Report

β†—

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

VX-3200 OPERATING MANUAL VERTEX STANDARD CO., LTD. 4-8-8 Nakameguro, Meguro-Ku, Tokyo 153-8644, Japan VERTEX STANDARD US Headquarters 17210 Edwards Rd., Cerritos, CA 90703, U.S.A. International Division 8350 N.W. 52nd Terrace, Suite 201, Miami, FL 33166, 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 VX-3200 OPERATING MANUAL VX-3200 OPERATING MANUAL Congratulations! You now have at your fingertips a valuable communications tool: a VERTEX STAN- DARD two-way radio! Rugged, reliable and easy to use, your VERTEX STANDARD radio will keep you in constant touch with your colleagues for years to come, with negligible maintenance downtime. Please take a few minutes to read this manual carefully. The information presented here will allow you to derive maximum performance from your radio, in case ques- tions arise later on. We’re glad you joined the VERTEX STANDARD team. Call on us anytime, because communications is our business. Let us help you get your message across. NOTICE ! There are no owner-serviceable parts inside the transceiver. All service jobs must be referred to an authorized VERTEX STANDARD Service Represen- tative. Consult your Authorized VERTEX STANDARD Dealer for installa- tion of optional accessories. SAFETY/WARNING INFORMATION WARNING - DO NOT operate the VX-3200 radio when any person(s) (by- standers) outside the vehicle are within the distances shown in the chart at the bottom of this section. Safety Training information: Antennas used for this transmitter must not exceed an antenna gain of 0 dBd. The radio must be used in vehicle-mount configurations with a maximum op- erating duty factor not exceeding 25%, in typical Push-to-Talk configurations. This radio is restricted to occupational use, work related operations only where the radio operator must have the knowledge to control the exposure condi- tions of its passengers and bystanders by maintaining the minimum separa- tion distance shown below. Failure to observe these restrictions will result in exceeding the FCC RF ex- posure limits. Antenna Installation: For rear deck trunk installation, the antenna must be located at least the fol- lowing distance away from rear-seat passengers in order to comply with the FCC RF exposure requirements. For roof top installations, the antenna must be placed in the center of the roof. Radiated Frequency and Distance VX-3200V 3.27 Feet ( 0.997 m ) VX-3200 OPERATING MANUALPage 1 The VX-3200 Series are full-featured FM transceivers designed for flexible mobile and base station business communications in the VHF or Land Mobile bands. These transceiver are designed for reliable business communications in a wide vari- ety of applications with a wide range of operating capability provided by their lead- ing-edge design. The 128-channel memories can each be programmed with an 8-character channel name. Important channel frequency data is stored in EEPROM and flash memory on the CPU, and is easily programmable by dealers using a personal computer and the VER- TEX STANDARD VPL-1 Programming Cable and CE52 Software. The pages which follow will detail the many advanced features provided on the VX- 3200 transceiver. After reading this manual, you may wish to consult with your Net- work Administrator regarding precise details of the configuration of this equipment for use in your application VX-3200 OPERATING MANUALPage 2 CONTROLS & CONNECTORS Front Panel Important! - All buttons located on the Front Panel are Programmable Function ( PF ) Buttons, configured according to your network requirements and programmed by your VERTEX STANDARD dealer. The instructions below a typically-config- ured radio. VOL/PWR Knob Turn this control clockwise to turn the radio on and to increase the volume. Turn it counterclockwise into the click-stop to turn the radio off. BUSY/TX Indicator Indicate transceiver Transmit/Receive Status Steady Red:Transmitting in progress Steady Green:Busy Channel Blinking Green:Tone Squelch in defeated condition LCD (Liquid Crystal Display) The display includes an 8-character alpha-numeric section showing Group and Channel names, status and identity information, and error messages. VX-3200 OPERATING MANUALPage 3 [ q ] / [ p ] Buttons (Programmable Function Buttons) Pressing either button changes the current channel (and displayed channel num- ber or name). Holding a button for more than 1/2 second causes the function to repeat. Microphone Jack Connect the microphone plug to this jack. [A] Button (Programmable Function Button) This button can be set up for special applications, such as High/Low power se- lection, Monitor, Talk-Around, etc, as determined by your network requirements and programmed by your VERTEX STANDARD dealer. [s]/[r] Buttons (Programmable Function Buttons) Pressing either button changes the current group (and displayed group number or name). Holding a button for more than 1/2 second causes the function to repeat. [P1] - [P4] Buttons (Programmable Function Buttons) These buttons can be set up for special applications, such as High/Low power selection, Monitor, Talk-Around, etc, as determined by your network require- ments and programmed by your VERTEX STANDARD dealer. CONTROLS & CONNECTORS Current Group on β€œScan” List LCD Icons & Indicators 8-Character Alpha-Numeric Display Transmission in progress, (follows Red BUSY/TX in- dicator). Busy Channel (follows Green BUSY/TX indicator). Talk-Around Enabled Low TX Power Horn Function Activate :Home System/Group :Priority Group VX-3200 OPERATING MANUALPage 4 Rear Panel Antenna Socket The 50-Ohm coaxial feedline to the antenna must be connected here, using a type-M (PL-259) plug. 13.6V DC Cable Pigtail with Connector The supplied DC power cable must be connected to this 2-pin connector. Use only the supp…

Text truncated - open the document above for the full version.

Cover Letter(s)

VX-3200 OPERATING MANUAL This device complies with Part 15 of the FCC rules. Operation is subject to the condition that this device does not cause harmful interference. OPTIONAL ACCESSORIES FVP-25Encryption/DTMF Pager Unit FP-1023AExternal Power Supply MLS-100Mobile Loudspeaker (12 W Peak Power) LF-1Line Filter MH-700DDTMF Back-lit Microphone MH-25A8JMicrophone Availability of accessories may vary; some accessories are supplied standard per local requirements, others may be unavailable in some regions. Check with your VERTEX STANDARD Dealer for changes to this list. Part 15.21: Changes or modifications to this device not expressly ap- proved by Vertex Standard could void the user’s authorization to oper- ate this device.

External Photos

FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Front view Rear view FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Left view Right view FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Top view Bottom view FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Microphone DC Power Cable

ID Label/Location Info

66 3030 3232 1 6 1 6 4 - R 1 4 - R 1 4 - R 1 4 - R 1 CANADA: ‒–‒–‒–‒@‒–‒–‒–‒@‒–‒–‒–‒–CANADA: ‒–‒–‒–‒@‒–‒–‒–‒@‒–‒–‒–‒– FCC ID:K66FT-8900MFCC ID:K66FT-8900M FT-8900MFT-8900M VERTEX STANDARD CO.,LTD.VERTEX STANDARD CO.,LTD.MADE IN JAPANMADE IN JAPAN SER. NO. 00000000SER. NO. 00000000 788026084890788026084890 PROHIBITED UNDER FCC RULES AND FEDERAL LAW.PROHIBITED UNDER FCC RULES AND FEDERAL LAW. WARNING:MODIFICATION OF THIS DEVICE TO RECEIVEWARNING:MODIFICATION OF THIS DEVICE TO RECEIVE CELLULAR RADIOTELEPHONE SERVICE SIGNALS ISCELLULAR RADIOTELEPHONE SERVICE SIGNALS IS 3 5 3 5 4040 22 RR 22 CC FCC LABEL LOCATION BOTTOM SIDE 4909959000000 SER. NO. 00000000 MADE IN JAPANMADE IN JAPANVERTEX STANDARD CO.,LTD.VERTEX STANDARD CO.,LTD. VX-3200VVX-3200V FCC ID:K66VX-3200VFCC ID:K66VX-3200V 38.5 1 8 . 5 22 RR CANADA:CANADA: F C C L a b e l F C C L a b e l 1 4 . 5 1 4 . 5 3 8 . 5 3 8 . 5 101018.518.5

Internal Photos

FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Side-A of RF-UNIT with shield cases Side-A of RF-UNIT without shield cases FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Side-B of RF-UNIT Inside front of panel with PWB FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Inside front of panel without PWB Side-A of PANEL-UNIT with LCD FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Side-A of PANEL-UNIT without LCD Side-B of PANEL-UNIT FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Front of LCD Back of LCD FCC ID: K66VX-3200V Vertex Standard Co., Ltd. Inside of chassis Inside of microphone

Operational Description

FCC ID: K66VX-3200V Circuit Description 1/3 Vertex Standard Co., Ltd. VX-3200V Circuit Description 1. Overview The VX-3200V is a VHF/FM mobile transceiver designed to operate in the frequency range of 148 to 174MHz. 2. Circuit Configuration by Frequency The receiver is a double-conversion superheterodyne with a first intermediate frequency(IF) of 44.25MHz and a second IF of 450kHz. Incoming signals from the antenna are mixed with the local signal from PLL to produce the first IF of 44.25MHz. This is then mixed with the 44.25MHz second local oscillator (using the 14.6MHz reference crystal) output to produce the 450kHz second IF. This is detected to give the demodulated signal. The transmit signal frequency is generated by PLL VCO, and modulated by the signal from the microphone. It is then amplified and sent to the antenna. 3. Receive Signal Path Incoming RF signals from the antenna connector are delivered to the RF Unit. RF signals pass through a low-pass filter (LPF) antenna switching network consisting of coils L1001, L1003, and L1005, capacitors C1004, C1008, C1009, and C1011, and antenna switching diodes D1005, D1007, and D1031, for delivery to the receiver front end. Signals within the frequency range of the transceiver are then passed through a varactor-tuned bandpass filter consisting of L1009, and L1014 before RF amplification by Q1011 (2SC3356). The amplified RF is then band-pass filtered again by varactor-tuned resonators L1026, and L1027 to ensure pure in-band input to 1st mixer Q1038 (GN2011-Q). Buffered output from the VCO Unit is amplified by Q1021 (2SC5107) and low- pass filtered by L1030 / L1031 and C1178 / C1180 / C1182, to provide a pure 1st local signal between 192.25 and 218.25MHz to the 1st mixer. The 44.25MHz 1st mixer product then passes through dual monolithic crystal filters XF1001 and XF1002 (+/- 5.5 kHz BW), and is amplified by Q1029 (2SC4215Y) and delivered to the input of the FM IF subsystem IC Q1028 (TA31136FN). This IC contains the 2nd mixer, 2nd local oscillator, limiter amplifier, FM detector, noise amplifier, and squelch gates. The 2nd LO in the IF-IC is produced from crystal X1001 (14.600MHz) and the 1st IF is converted to 450kHz by the 2nd mixer and stripped of unwanted components by ceramic filter CF1001 or CF1002. After passing through a limiter amplifier, the signal is demodulated by the FM detector CD1001 (CDBC450CX24). Detected audio from Q1029 is applied to Q2016(AK2345) and audio low-pass filter. After volume adjustment by Q2014(M62364FP), the audio signal is amplified by the AF power amplifier Q1509 (TDA2003H) and passed to speaker jack. FCC ID: K66VX-3200V Circuit Description 2/3 Vertex Standard Co., Ltd. 4. Transmit Signal Path Voice audio from the microphone is delivered via the Mic (Jack) Unit to the PANEL Unit, after passing through amplifier Q2022 (NJM2902V), Mic gain- volume Q2014 (M62364FP) pre-emphasisQ2015 (NJM2902V), and limiter (IDC instantaneous deviation control), is adjusted for optimum deviation level and delivered to the next stage. Voice input from the microphone CTCSS, and DCS audio are modulated by the VCO , and the reference frequency oscillator of the synthesizer. Synthesizer output, after passing through diode switch D1022 (1SS321), is amplified by driver Q1025 (2SC5415E) / Q1026 (2SC5107-O) and power module Q1039 (RA60H1317M) to obtain full RF output. The RF energy then passes through antenna switch D1005 / D1007 / D1031 and a low-pass filter circuit and finally to the antenna connector. RF output power from the final amplifier is sampled by CM coupler and is rectified by D1011,D1012(HSM88AS2). The resulting DC is fed through Automatic Power Controller Q1003 (NJM2902V), to transmitter RF amplifier and thus the power output. Generation of spurious products by the transmitter is minimized by the fundamental carrier frequency being equal to the final transmitting frequency, modulated directly in the transmit VCO. Additional harmonic suppression is provided by a low-pass filter consisting of L1001, L1003, L1004, L1027, C1004, C1009, C1011, C1151, and C1152, resulting in more than 60dB of harmonic suppression prior to delivery to the RF energy to the antenna. 5 PLL Frequency Synthesizer 5 PLL Frequency Synthesizer5 PLL Frequency Synthesizer 5 PLL Frequency Synthesizer PLL frequency synthesizer consists of the VCO Q1013 (2SK508-K52:RX) and Q1015 (2SC5107-O:TX), VCO buffers Q1018 (2SC5107-O), Q1020 (2SC5107-O), Q1021 (2SC5107-O), PLL subsystem IC Q1023 (MA15A02PFV1) and 14.6MHz reference crystal X1001. The frequency stability is +/- 2.5ppm within temperature range of –30 to +60 degree. The output of the 14.6MHz reference is applied to pin 1 of the PLL IC. While receiving, VCO Q1013 oscillates between 405.75 and 445.75MHz according to the transceiver version and the programmed receiving frequency. The VCO generates 192.25 to 218.25MHz for providing to the first local signal. In TX, the VCO generates 148 to 174MHz. The output of the VCO is amplified by the Q1020 and routed to the pin 8 of the PLL IC. Also the output of the VCO is amplified by the Q1021 and routed first local /Power Module according to D1022. The PLL IC consists of a prescaler, fractional divider, reference divider and phase comparator and charge pump. This PLL IC is fractional-N type synthesizer and performs in the 40 or 50kHz reference signal, which is eighth of the channel step (5 or 6.25kHz). The input signal from pin 1 and 8 of the PLL IC is divided down to the 20kHz and compared at phase comparator. The pulsed output signal of the phase comparator is applied to the charge pump and transformed into DC signal in the loop filter. The DC signal is applied to the pin 1 of the VCO and locked to keep the VCO frequency constant. PLL data is output from DCS_E (pin100), CLOCK (pin2) and PLL_E (pin98) of the microprocessor Q2013. The data are input to PLL IC when the channel is changed or when transmission is changed to reception and vice versa. A PLL lock condition is…

Text truncated - open the document above for the full version.

Parts List/Tune Up Info

FCC ID: K66VX-3200V Component Applications Address Device nameDescriptionApplication BR008050* D 1001 DiodeRLS135 TE-11RF Limiting RF-UNITD 1002 DiodeBAS316RF Limiting D 1003 DiodeDSA3A1Reverse Voltage Protection D 1004 DiodeP6KA18Reverse Voltage Protection D 1005 DiodeUM9957F/TRAntenna Switch D 1006 DiodeBAS316APC Switch D 1007 DiodeUM9957F/TRAntenna Switch D 1008 Varactor DiodeHVU306A5TRFBPF Tune D 1009 DiodeBAS316APC D 1010 Varactor DiodeHVU306A5TRFBPF Tune D 1011 DiodeHSM88AS TRPower Detector D 1012 DiodeHSM88AS TRPower Detector D 1013 Varactor DiodeHVU306A5TRFRX VCO D 1014 Varactor DiodeHVU306A5TRFRX VCO D 1015 Varactor DiodeHVU306A5TRFTX VCO D 1016 Varactor DiodeHVU306A5TRFTX VCO D 1017 Varactor Diode1SV214 TPHTX MOD D 1018 Varactor DiodeHVU306A5TRFBPF Tune D 1019 Varactor DiodeHVU306A5TRFBPF Tune D 1020 Varactor DiodeHVU300A-TRTemp. Control for PLL REF D 1021 DiodeBAS316Un Lock D 1022 Diode1SS321 TE85RTx/Rx RF Switch D 1023 Varactor DiodeHVU359TRFTemp. Control for PLL REF D 1024 DiodeMC2848-T11-12nd IF Filter Switch D 1025 DiodeHZM5.6NB2 TRProtection D 1026 DiodeMC2848-T11-12nd IF Filter Switch D 1027 DiodeBAS316Temp. Control for TX Driver D 1028 DiodeHZU5ALL-TRSW D 1029 Varactor DiodeHVU359TRFTX MOD D 1030 DiodeHZM5.6NB2 TR5V Regulator D 1031 DiodeUM9957F/TRAntenna Switch D 1032 Varactor DiodeHVU306A5TRFRX VCO D 1033 Varactor DiodeHVU306A5TRFRX VCO D 1501 DiodeMC2850-T11-1Protection D 1502 DiodeMC2850-T11-1Protection D 1503 DiodeMC2850-T11-1Protection D 1504 DiodeBAS316External PTT D 1505 DiodeD1F20-4063Protection D 1506 DiodeMC2850-T11-1SQ Noise Detector D 1507 DiodeMC2850-T11-1SQ Noise Detector D 1508 not used Q 1001 Transistor2SC4154-T11-1EClock Triple Q 1002 Transistor2SC4154-T11-1ETemperature Switch Q 1003 ICNJM2902VAPC COMP Q 1004 Transistor2SB1201S-TL9V Regulator Q 1005 ICMM1216ENRE9V Regulator Q 1006 TransistorRT1N241M-T11-1TX Power Control Q 1007 Transistor2SC4154-T11-1EVCO 9V Ripple Filter Q 1008 ICDTB123EK T146Rx 9V Switch Q 1009 Transistor2SB1132 T100 RTX 9V Switch Q 1010 TransistorIMH6A T108TX/Rx Switch Q 1011 Transistor2SC3356-T2B R25RF Amplifier Q 1012 TransistorRT1N241M-T11-1MOD Mute Switch Q 1013 Transistor2SK508-T2B K52RX Voltage Control Oscillator Q 1014 Transistor2SC4154-T11-1ETemperature Switch Q 1015 Transistor2SC5107-O(TE85R)TX Voltage Control Oscillator Q 1016 TransistorRT1N241M-T11-1RX VCO Switch Q 1017 TransistorIMH6A T108TX VCO Switch Q 1018 Transistor2SC5107-O(TE85R)Buff AMP Q 1019 ICM5223AGP 600CAF Modulation Q 1020 Transistor2SC5107-O(TE85R)Buff AMP Q 1021 Transistor2SC5107-O(TE85R)Buff AMP Q 1023 ICMB15A02PFV1-G-BND-EFPLL Subsystem Q 1024 ICNJM78L05UA TE15V Regulator Q 1025 Transistor2SC5415E-TDTX Driver AMP Q 1026 Transistor2SC5107-O(TE85R)TX Driver AMP Q 1027 Transistor2SC4116GR TE85RReference Oscillator Q 1028 ICTA31136FN(EL)IF Subsystem Q 1029 Transistor2SC4215Y TE85RIF AMP Q 1030 TransistorRT1N241M-T11-1Wide/Narrow Switch Q 1031 Transistor2SA1602A-T11-1FRX Wide/Narrow Switch Q 1032 TransistorRT1N241M-T11-1Temperature Switch Q 1033 TransistorRT1N241M-T11-1TX Power Control Q 1034 Transistor2SC4154-T11-1ERipple Filter Q 1035 Transistor2SA1162GR TE85RCharge Pomp Q 1036 Transistor2SC2712GR TE85RCharge Pomp Q 1037 Transistor2SC4215Y TE85RIF AMP Q 1038 ICGN2011-Q(TX)Mixer Q 1039 ICRA60H1317MRF Power MODULE Q 1040 Transistor2SC4215Y TE85RMIXER 5V Ripple Filter Q 1501 Transistor2SC4154-T11-1E5V Regulator Q 1502 TransistorRT1N241M-T11-1SB Switch Q 1503 ICNJM2902V-TE1AF AMP/SQL Q 1504 Transistor2SD1368CB TLH_A/IG Switch Q 1505 Transistor2SC4116GR TE85RH_A/IG Switch Q 1506 TransistorRT1N241M-T11-1IG Switch Q 1507 TransistorRT1N241M-T11-1H_A Switch Q 1508 TransistorPDTC114TEAF Mute Q 1509 ICTDA2003HAF Power AMP Q 1510 TransistorPDTC114TESQL Switch Q 1511 Transistor2SB1301-T2 ZQAF Power AMP Switch Q 1512 TransistorRT1N241M-T11-1AF Power AMP Switch Q 1513 Not Used Q 1514 Not Used Q 1515 FET2SJ125D-T12-1DAF Mute VX-3200V COMPONENT APPLICATION Vertex Standard Co., Ltd. FCC ID: K66VX-3200V Component Applications Address Device nameDescriptionApplication VX-3200V COMPONENT APPLICATION Q 1518 FETRT1N241M-T11-1AF Mute BR007630* D 2001 DiodeDA221Protector PANEL-UNI TD 2002 DiodeDA221Protector D 2003 DiodeDA221Reset D 2004 LEDBRPG1211CRX/TX LED D 2005 DiodeDA221Protector D 2006 LEDTLOU262Back Light LED D 2007 DiodeMA2S111Protector D 2008 LEDTLOU262Back Light LED D 2009 DiodeDA221PSK Detector D 2010 DiodeMA2S111Protector D 2011 DiodeMC2846Protector D 2012 DiodeDA221Protector D 2013 DiodeDA221DCS Detector D 2014 DiodeMA2S111Switch D 2015 DiodeMA2S111KEY Matrix Switch D 2016 DiodeMA2S111KEY Matrix Switch D 2017 DiodeMA2S111KEY Matrix Switch D 2018 Not Used D 2019 Not Used D 2020 Not Used D 2021 Not Used D 2022 Not Used D 2023 Not Used D 2024 Not Used D 2025 Not Used D 2026 Not Used D 2027 DiodeMA2S111KEY Matrix Switch D 2028 DiodeMA2S111KEY Matrix Switch D 2029 DiodeMA2S111KEY Matrix Switch D 2030 DiodeMA2S111KEY Matrix Switch D 2031 DiodeMA2S111KEY Matrix Switch D 2032 DiodeMA2S111KEY Matrix Switch Q 2001 Transistor2SC4617RESET Switch Q 2002 Transistor2SC4617RXD Switch Q 2003 TransistorS-80735SNPower Down Q 2004 Transistor2SC4617RESET Q 2005 Transistor2SC4617TXD Switch Q 2006 TransistorNJM78L05UA5V Regulator Q 2007 Transistor2SC4617Clock Shift Q 2008 TransistorRT1N241MLAMP LED Drive Q 2009 TransistorRT1P441USEL Switch Q 2010 TransistorRT1N241MRX LED Drive Q 2011 ICS-93C56AMFN-TBProgrammable Data Store Q 2012 Not Used Q 2013 ICLC87F72C8A-F5N19 Microprocessor Q 2014 ICM62364FP 600DD/A Converter Q 2015 ICNJM2902VAF AMP/Pre-Emphasis/PSK Detect Q 2016 ICIC AK2345(TAPE)Base Band IC Q 2017 ICIC LA8630MCompander Q 2019 TransistorPDTC144EECompander Switch Q 2020 Transistor2SC4617DCS Encode Q 2021 ICNJM2902VDCS Decode Detect/DCS Encode Filter/ D/A Converter Reference Q 2022 ICNJM2902VDTMF Encode/AF AMP/De-Emphasis Q 2024 ICBU4066BFAnalog Switch Q 2025 TransistorRT1N241MTX LED Drive Vertex Standard Co., Ltd.

Parts List/Tune Up Info

FCC ID: K66VX-3200V Alignment 1/6 Vertex Standard Co., Ltd. VX-3200V Alignment Introduction The VX-3200V is carefully aligned at the factory for the specified performance across the frequency range specified for each version. Realignment should therefore not be necessary except in the event of a component failure, or altering version type. All component replacement and service should be performed only by an authorized Vertex Standard representative,or the warranty policy may be void. The following procedures cover the sometimes critical and tedious adjustments that are not normally required once the transceiver has left the factory. However, if damage occurs and some parts subsequently are placed, realignment may be required. If a sudden problem occurs during normal operation, it is likely due to component failure; realignment should not be done until after the faulty component has been replaced. We recommend that servicing be performed only by authorized Vertex Standard service technicians who are experienced with the circuitry and fully equipped for repair and alignment. Therefore, if a fault is suspected, contact the dealer from whom the transceiver was purchased for instructions regarding repair. Authorized Vertex Standard service technicians realign all circuits and make complete performance checks to ensure compliance with factory specifications after replacing any faulty components. Those who do undertake any of the following alignments are cautioned to proceed at their own risk. Problems caused by unauthorized attempts at realignment are not covered by the warranty policy. Also, Vertex Standard reserves the right to change circuits and alignment procedures in the interest of improved performance, without notifying owners. Under no circumstances should any alignment be attempted unless the normal function and operation of the transceiver are clearly understood, the cause of the malfunction has been clearly pinpointed and any faulty components replaced, and realignment determined to be absolutely necessary. The following test equipment (and thorough familiarity with its correct use) is necessary for complete realignment. Correction of problems caused by misalignment resulting from use of improper test equipment is not covered under the warranty policy. While most steps do not require all of the equipment listed, the interactions of some adjustments may require that more complex adjustments be performed afterwards. Do not attempt to perform only a single step unless it is clearly isolated electrically from all other steps. Have all test equipment ready before beginning, and follow all of the steps in a section in the order presented. Required Test Equipment ˆ RF Signal Generator with calibrated output level at 1000MHz ˆ Deviation Meter (linear detector) ˆ In-line Wattmeter with 5% accuracy at 1000MHz ˆ 50- Ω RF Dummy Load with power rating 100W at 1000MHz ˆ 4- Ω AF Dummy Load FCC ID: K66VX-3200V Alignment 2/6 Vertex Standard Co., Ltd. ˆ Regulated DC Power Supply (standard 13.8V DC, 15A) ˆ Frequency Counter with 0.1ppm accuracy at 1000MHz ˆ AC Voltmeter ˆ DC Voltmeter ˆ VHF Sampling Coupler ˆ IBM PC / compatible Computer ˆ Oscilloscope ˆ Vertex Standard VPL-1 Connection Cable & Alignment program Alignment Preparation & Precautions A 50- Ω RF Dummy Load and in-line wattmeter must be connected to the main antenna jack in all procedures that call for transmission, except where specified otherwise. Correct alignment is not possible with an antenna. After completing one step, read the following step to determine whether the same test equipment will be required. If not, remove the test equipment (except dummy load and wattmeter, in connected) before proceeding. Correct alignment requires that the ambient temperature be the same as that of the transceiver and test equipment, and that this temperature be held constant between 20 and 30 Β° C (68 ∼ 86 Β° F). When the transceiver is brought into the shop from hot or cold air, it should be allowed time to come to room temperature before alignment. Whenever possible, alignments should be made with oscillator shields and circuit boards firmly affixed in place. Also, the test equipment must be thoroughly warmed up before beginning. Note: Note: Note: Note: Signal levels in dB referred to in the alignment procedure are based on 0dB ΞΌ EMF = 0.5 ΞΌ V. Setup the test equipment as shown for transceiver alignment,apply 13.8V DC power to the transceiver. Refer to the drawings above for Alignment Points. VPL-1 cable J1502 Data port VX-3200 In-Line Wattmeter RF sampling coupler Deviation meter Frequency counter 50ohm Dummy Load 13.8Vdc power supply Signal generator Antenna Port Oscilloscope AF Generator Sinad Meter 4ohm Dummy Personal Computer See Fig 2 FCC ID: K66VX-3200V Alignment 3/6 Vertex Standard Co., Ltd. (Fig 2 : J1502 connection for the modulation adjustment) The transceiver must be programmed for use in the intended system before alignment is attempted. The RF parameters are loaded from the file during the alignment process. [Important] [Important][Important] [Important] In order to facilitate alignment over the complete switching range of the equipment it is In order to facilitate alignment over the complete switching range of the equipment it isIn order to facilitate alignment over the complete switching range of the equipment it is In order to facilitate alignment over the complete switching range of the equipment it is recommended that the channel data in the transceiver is preset as the chart below. recommended that the channel data in the transceiver is preset as the chart below.recommended that the channel data in the transceiver is preset as the chart below. recommended that the channel data in the transceiver is preset as the chart below. Table.1 RF Ch. List Frequency(Simplex) RF Ch. listCh. Space Ver. AVer. C Ch #1 Wide147.100162.100MID Frequency(Wide) [use in the SVC47] Ch #2 Narrow147.100162.100MID Frequency(Narrow) [use in the SVC47 ] Ch …

Text truncated - open the document above for the full version.

Test Report

FCC ID: K66VX-3200V MFA p0260003, d0260021 Date: June 17, 2002 Federal Communications Commission Via: Electronic Filing Attention: Authorization & Evaluation Division Applicant: Vertex Standard Co., Ltd. Equipment: VX-3200V FCC ID: K66VX-3200V FCC Rules: 2, 15, 22.531, 22.561, 74.402, 90, 90.210 and Confidentiality Gentlemen: On behalf of the Applicant, enclosed please find Application Form 731, Engineering Test Report and all pertinent documentation, the whole for approval of the referenced equipment as shown. Filing fees are attached. We trust the same is in order. Should you need any further information, kindly contact the writer who is authorized to act as agent. Sincerely yours, Morton Flom, P. Eng. enclosure(s) cc: Applicant MF/jmm FCC ID: K66VX-3200V MFA p0260003, d0260021 LIST OF EXHIBITS (FCCCERTIFICATION(TRANSMITTERS) - REVISED 9/28/98) APPLICANT: Vertex Standard Co., Ltd. FCC ID: K66VX-3200V BY APPLICANT: 1. LETTER OF AUTHORIZATION x 2. IDENTIFICATION DRAWINGS, 2.1033(c)(11) xLABEL xLOCATION OF LABEL xCOMPLIANCE STATEMENT xLOCATION OF COMPLIANCE STATEMENT 3. PHOTOGRAPHS, 2.1033(c)(12) x 4. DOCUMENTATION: 2.1033(c) x (3) USER MANUAL x (9) TUNE UP INFO x (10) SCHEMATIC DIAGRAM x (10) CIRCUIT DESCRIPTION x BLOCK DIAGRAM x PARTS LIST x ACTIVE DEVICES x 5. PART 90.203(e) & (g) ATTESTATION x 6. MPE REPORT x 7. REQUEST FOR CONFIDENTIALITY x BY M.F.A. INC. A. TESTIMONIAL & STATEMENT OF CERTIFICATION B. STATEMENT OF QUALIFICATIONS FCC ID: K66VX-3200V MFA p0260003, d0260021 TRANSMITTER CERTIFICATION of FCC ID: K66VX-3200V MODEL: VX-3200V to FEDERAL COMMUNICATIONS COMMISSION Rule Part(s) 2, 15, 22.531, 22.561, 74.402, 90, 90.210 and Confidentiality DATE OF REPORT: June 14, 2002 ON THE BEHALF OF THE APPLICANT: Vertex Standard Co., Ltd. AT THE REQUEST OF : P.O. UPS 6/6/2002 Vertex Standard USA Inc. 10900 Walker Street Cypress, CA 90630 Attention of: Mikio Maruya, Executive Vice President (800) 255-9237; FAX: (800) 477-9237 (714) 827-7600; FAX: -8100 [email protected] SUPERVISED BY: Morton Flom, P. Eng. FCC ID: K66VX-3200V MFA p0260003, d0260021 THE APPLICANT HAS BEEN CAUTIONED AS TO THE FOLLOWING: 15.21 INFORMATION TO USER. The users manual or instruction manual for an intentional radiator shall caution the user that changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. 15.27(a) SPECIAL ACCESSORIES. Equipment marketed to a consumer must be capable of complying with the necessary regulations in the configuration in which the equipment is marketed. Where special accessories, such as shielded cables and/or special connectors are required to enable an unintentional or intentional radiator to comply with the emission limits in this part, the equipment must be marketed with, i.e. shipped and sold with, those special accessories. However, in lieu of shipping or packaging the special accessories with the unintentional or intentional radiator, the responsible party may employ other methods of ensuring that the special accessories are provided to the consumer, without additional charge. Information detailing any alternative method used to supply the special accessories for a grant of equipment authorization or retained in the verification records, as appropriate. The party responsible for the equipment, as detailed in Β§ 2.909 of this chapter, shall ensure that these special accessories are provided with the equipment. The instruction manual for such devices shall include appropriate instructions on the first page of text concerned with the ins…

Text truncated - open the document above for the full version.

Contact Information

Applicant

Masatoshi Muraishi(Engineering Division)
[email protected]81-3-6410-8121Fax: 81-3-5753-5123

Technical Contact

M. Flom Associates, IncMorton Flom
[email protected]480 926 3100

3356 N. San Marcos Pl., Suite 107 Β· Chandler, Arizona Β· United States

Non-Technical Contact

M. Flom Associates, Inc.Morton Flom
[email protected]480 926 3100

Test Firm

M. Flom Associates, Inc.Morton Flom
[email protected]480-926-3100Fax: 480-926-3598

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
222,74,9148 MHz - 174 MHz50 W16K0F3E2.5 ppm
Confidentiality
Long Term

Other Applications from Yaesu Musen Co., Ltd.

K660E180X10

BLUETOOTH MICROPHONE

Dec 01, 2025

Equipment Class

DTS - Digital Transmission System
VHF FM Marine Transceiver - FCC ID K6630673Y3D - Yaesu Musen Co., Ltd.
K6630673Y3D

VHF FM Marine Transceiver

Aug 01, 2024

Equipment Class

CXX - Communications Rcvr for use w/ licensed Tx and CBs
VHF FM Marine Transceiver - FCC ID K6630653Y3D - Yaesu Musen Co., Ltd.
K6630653Y3D

VHF FM Marine Transceiver

Aug 01, 2024

Equipment Class

CXX - Communications Rcvr for use w/ licensed Tx and CBs
VHF FM Marine Transceiver - FCC ID K6630683X30 - Yaesu Musen Co., Ltd.
K6630683X30

VHF FM Marine Transceiver

Jan 10, 2023

Equipment Class

TNF - Licensed Non-Broadcast Transmitter Held to Face
Airband Radio Transceiver - FCC ID K6650033X30 - Yaesu Musen Co., Ltd.
K6650033X30

Airband Radio Transceiver

Nov 18, 2020

Equipment Class

TNF - Licensed Non-Broadcast Transmitter Held to Face