vertex yaesu ft 897 service repair manual
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vertex yaesu ft 897 service repair manualServicing this equipment requires expertise in handling surface-mount chip components. Attempts by non-qualified persons to service this equipment may result in permanent damage not covered by the warranty, and may be illegal in some countries. Two PCB layout diagrams are provided for each double-sided circuit board in the Transceiver. Each side of is referred to by the type of the majority of components installed on that side (leaded or chip-only). In most cases one side has only chip components, and the other has either a mixture of both chip and leaded components (trimmers, coils, electrolytic capacitors, ICs, etc.), or leaded components only. While we believe the technical information in this manual to be correct, VERTEX STANDARD assumes no liability for damage that may occur as a result of typographical or other errors that may be present. Your cooperation in pointing out any inconsistencies in the technical information would be appreciated. Noise Blanker Circuit A portion of the 2nd IF signal is amplified by Noise Blanker Amplifiers Q1075 and Q1079 (both BB305CEW) on the MAIN Unit, and then rectified by D1064 (1SS372). This output is applied to the Noise Blanker Controllers, Q1093 (2SC4154E) and Q1099 (2SA1602A), which a yield Blanking signal according to the timing of the incoming noise pulses. Then Blanking signal controls the Noise Blanker Gate D1066 (BAS316), to slice out the impulse noise from the signal. AGC Circuit The AGC circuit consists of D1061 (1SS372), transistor Q1090 (2SC4154E), and associated parts on the MAIN Unit. Output from the AGC circuit is fed back to the IF AGC circuit that controls the gain of the IF amplifier FETs. Operating Manual PDF presentation brochure for Yaesu FT 897 (FT-897 FT897): Yaesu. FT-897 brochure PDF Service Manual with schematics for Yaesu FT 897 (FT-897 FT897): Yaesu.http://adventglobal.com/EditorImages/digital-communications-laboratory-manual.xml
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Browse Books Site Directory Site Language: English Change Language English Change Language Quick navigation Home Books Audiobooks Documents, active Collapse section Rate Useful 100 100 found this document useful, Mark this document as useful Not useful 0 0 found this document not useful, Mark this document as not useful Collapse section Share Share on Facebook, opens a new window Facebook Share on Twitter, opens a new window Twitter Share on LinkedIn, opens a new window LinkedIn Copy Link to clipboard Copy Link Share with Email, opens mail client Email. Page Count: 85 ALL MODE TransceiverInternational DivisionWinchester, Hampshire, SO23 0LB, U.K. Technical SupplementIntroduction. Servicing this equipment requires expertise in handling surface-mount chip components. Attempts by non-qualifiedTwo PCB layout diagrams are provided for each double-sided circuit board in the Transceiver. Each side of is referredIn most cases one side hasWhile we believe the technical information in this manual to be correct, VERTEX STANDARD assumes no liabilityYour cooperation in pointingContents. Specifications. 2. Block Diagram. 5. Circuit Description. 7. Alignment. 10. MAIN Unit. 21. PLL Unit. 53. PA Unit. 59. PANEL Unit. 73. MIC Unit. 81. VR Unit. 82. BATT-CONN Unit. 83. REF Unit. 84General. Frequency Range. Emission Modes. Synthesizer Steps (Min.). Antenna Impedance. Operating Temp. Range. Frequency Stability. Supply Voltage. Current Consumption. Case Size (W x H x D). Weight (Approx.). Receive. Transmit:FNB-78 (Ni-MH Battery Pack): 13.2 V (Option). Squelched: 600 mA (Approx.). Receive: 1 A. Transmit: 22 ATransmitter. Modulation Types. FM Maximum Deviation. Spurious Radiation. Carrier Suppression. Opp. Sideband Suppression. SSB Frequency Response. Microphone Impedance:Receiver. Circuit Type. Intermediate Frequencies. Sensitivity. Squelch Sensitivity. Image Rejection. IF Rejection. AF Output. AF Output Impedance.http://dissanna.com/temp/fckeditor/digital-concepts-6_1-megapixel-camera-manual.xml Superheterodyne (WFM)Specifications are subject to change without notice, and are guaranteed within the amateur bandsBATT-CONN UnitNote:The FT-897 internal assembly consists of the MAIN. Unit, PLL Unit, PA Unit, Panel Unit, BATT-CONN Unit. REF Unit, MIC Unit, and the VR Unit. Receive Signal Circuitry. RF Stages. Signals between 0.1 and 56 MHz received at the antenna terminal pass through a low-pass filter, selectedThe filtered receiving signal passes, through one of theReceived 430 MHz signals, after passing through aC3210, C3219, C3223, and C3319, are passed throughThen the signals are fed toReceived 145 MHz signals, after passing through aC3200, C3203, C3220, and C3221, are passed through aC3176, C3179, and C3191, and a directional coupler, to. Then the signals are fedC3200, C3203, C3220, and C3221, are passed throughC3176, C3179, and C3191, and a directional coupler, to. D3020 (both UM9957F). Then it is fed to the Wide-FM. IF IC Q1058 (CXA1611N) on the MAIN Unit. The 1st mixer on the MAIN Unit consists of quad MOS. FET Q1128 (SPN5001), where the receiving signal isMHz) passes through monolithic crystal filter (MCF)The resulting output signal (455 kHz) is applied to theNoise Blanker Circuit. A portion of the 2nd IF signal is amplified by Noise. Blanker Amplifiers Q1075 and Q1079 (both. BB305CEW) on the MAIN Unit, and then rectified by. D1064 (1SS372). This output is applied to the Noise. Blanker Controllers, Q1093 (2SC4154E) and Q1099Then Blanking signal controls the Noise Blanker Gate D1066AGC Circuit. The AGC circuit consists of D1061 (1SS372), transistor Q1090 (2SC4154E), and associated parts on the. MAIN Unit. Output from the AGC circuit is fed back toOn FM, the 2nd IF signal passes through the bufferThe demodulated audio signal at Q1080 passes through a low-pass filterC1345), then proceeds to the Audio Amplifier Circuit. The squelch circuit selectively amplifies the noise component of the demodulator output using the filter amplifier inside the FM IF IC and an active band-pass filter consisting of an externally attached resistor and capacitor. Signal detection is performed by D1057 (DA221).The demodulated audioAM Demodulator Circuit. The 2nd IF AM signal passes through buffer amplifiers Q1088 and Q1081 (both BB305CEW) to the AM demodulator D1055 (BAS316), yielding demodulated audio signal which is applied to the Audio Amplifier Circuit. Audio Amplifier Circuit. The demodulated audio signal is passed through AFQ1105 (TDA2003H) which drives the internal or external speaker to a maximum output of approximately 2.5. Watts. AM Modulator Circuit. As in the SSB modulator circuit, a carrier signal appropriate to the transmitting mode (AM) from the CARDDS Unit and an audio signal from the microphone areThe control signal from Mode Switch IC Q1003This voltage is applied to IC Q1071 via D1059 (BAS316), causing the balanced modulator to lose balance. The restored carrier signal and modulated signal are then fed to the TX mixer viaFM Modulator Circuit. The output (audio signal) from the electronic volumeThe filtered audio signal is applied to the FM modulator circuit,The FM modulator circuitX1002 (22.7767 MHz). Transmit Signal Circuitry. Microphone Amplifier Circuit. The audio signal from microphone jack on the MIC. Unit is amplified by audio amplifier Q1109 (2SC4154E)SSB Modulator Circuit. The output (audio signal) from the electronic volumeMHz 2nd IF signal utilizing the 2nd local signal (68.875. MHz). The 2nd IF signal is fed through the 2nd IF filter. XF1004 which strips away unwanted mixer products, thenThe transmit signal is passed through a low-pass filter (1.8-29.7. MHz), a high-pass filter (50-54 MHz), a band-pass filterALC Circuit.http://marc-wessely.com/images/comdial-8024s-manual.pdf The output from the directional coupler is routed fromThe ALC circuit consists of an op-amp circuit for amplifying the forward and reflected voltage, a time-constant. ALC amplifier, and a transmit signal control circuit onJ1001 on the MAIN Unit is added with a DC control voltage and is then applied to op-amp IC Q1111 (NJM2902V). The reflected voltage is added with a DC control voltageIn the event of high SWR conditions (SWR 3:1 or more),The ALC amplifier magnifies the forward wave output via transistor Q1009 (2SC4154). This output thenFET Q1061 (BB304CDW) of the 2nd IF amplifier circuit, to prevent the TX output from exceeding the presetPLL Frequency Synthesizer. The PLL Frequency Synthesizer consists mainly of theMaster Reference Oscillator Circuit. The master reference oscillator uses a Crystal Oscillator (oscillation frequency: 22.625 MHz) composed of. Q5001 (2SC4400-4), X5001, TC5001, C5001, and. R5005. The reference oscillator signal passes through aCAR-DDS Circuit REF-DDS Circuit. DDS ICs Q1062 (AD9835BRU), and Q2016The reference oscillationDDS Units is applied to each DDS IC after amplificationMHz for the REF DDS.VCO output is buffer-amplified by Q2011 (2SC5374)The 2nd LO circuit is a Hartley-type overtone oscillator circuit (frequency: 67.875 MHz) composed of Q1052PLL Circuit. The PLL circuit is a frequency mixing type composedThe VCO consists of five circuits (VCO1, VCO2, VCO3, VCO4 and. VCO5), with a frequency range of 68.430-538.330 MHzVCO1-VCO5 consist mainly of FETs Q2004. Q2005, and Q2006 (all 2SK210GR); transistors Q2009HVC362), D2007 (1SV282), D2008 (1SV281), and. D2009 (1SV286); and coils T2001-T2003, L2010, andQ2003, Q2012, and Q2013 (all DTC124EU) to switchThe 68.430-538.330 MHz VCO signal is buffer-amplified by Q2023 (UPC1688G), and fed to PLL IC Q2021Q2021 after it passes through a low-pass filter composedIntroduction and Precautions. Required Test Equipment. The following procedures cover adjustments that areWe recommend that servicing be performed by authorized Vertex Standard service technicians, experiencedIf a fault is suspected, contact the selling dealer forAuthorized Vertex StandardThose who do undertake any of the following alignments are cautioned to proceed at their own risk. Problems caused by unauthorized attempts at realignment areAlso, Vertex StandardUnder no circumstances should any alignment be attempted unless the normal function and operation of theThe following test equipment (and thorough familiarity with its correct use) is necessary for complete realignment. Most steps do not require all of the equipment listed,Do not attempt to perform only a single step unless it isDC Ammeter. RF Millivoltmeter. AC Voltmeter. Signal Generator with calibrated output. Spectrum Analyzer good to at least 1 GHz. Frequency CounterIn-Line Wattmeter (200 watts, 50-Ohm). Linear Detector. RF Coupler. A 50-ohm RF Dummy load and in-line wattmeter mustCorrect alignment is not possible with an antenna. After completing one step, read the following step toIf not, remove the test equipment (except dummyCorrect 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. When the transceiver is broughtWhenever possible, alignments should be made withAlso, the test equipment must be thoroughly warmed upNote:Signal levels in dB referred to in this procedure areLocal Oscillator Adjustment. PLL Adjustment. Reference Frequency AdjustmentVCO VCV AdjustmentThen confirm thatAdjust T2001. Confirm. Adjust T2002. Confirm. Adjust T2003. Confirm. Adjust L2010. Confirm. Adjust L2011. Confirm. For. At least 0.8V. At least 0.8V. At least 0.8V. At least 0.8V. At least 0.8VPLL UnlockExciter Stage Idling CurrentIdling Current Adjustment. TX IF Adjustment. Before alignment, set the mode to CW and tune theConnect the. RF millivoltmeter to TP1033, and terminate J1002Pre-Driver Stage Idling CurrentDriver Stage Idling CurrentFM TX IF AdjustmentConnect the. RF millivoltmeter to TP1033 and leave J1002 terminated into a 50-Ohm dummy load.T1023, and T1021 alternately for maximum indication on the RF millivoltmeter.Adjust L1049 for a reading of 68.3300. Carrier Balance AdjustmentJ1002 into a 50-Ohm dummy load and connect a spectrum analyzer or a RF millivoltmeter at this point.Adjust VR1005 for maxi-mum carrierT1013, T1012, and T1011 alternately for maximumUHF TX BPF AdjustmentTC1004, TC1003 and TC1002 alternately for maximum indication on the spectrum analyzer.RX Adjustment. The PA Unit must be connected during RX adjustments. The signal generator should not be connected to J1003RX IF Adjustment. Connect the signal generator to the antenna connector,SSB IF AdjustmentT1030, T1035, T1036, T1037, T1034 and T1029Several passes may be necessary, as the adjustments inter-react to some degree. FM IF AdjustmentAir-Band Reception AdjustmentVHF Band AlignmentW-FM Reception AdjustmentImage Rejection Trap AdjustmentInject an RF signal from the signal generator at 68.330Noise Blanker AdjustmentTune the transceiver to 51.995 MHz and inject an RF signal from theT1031 for minimum indication on the DC voltmeterPower Amplifier AdjustmentDirectional Coupler Balance AdjustmentSet the mode to CW, and connect the DC voltmeter toPower meter.Battery Indicator Alignment. Software Menu AlignmentBATT-A indicator. The antenna connector should be connected to aAF-gain knob. RF-gain knob:CW Keyer:Fully clockwise. Fully counterclockwise. Off. High. Auto. On. Off. OffIn the alignment procedures, each alignment parameter is selected by rotating the MAIN dial.RX Gain AdjustmentTune the transceiver to the 1.8. MHz band. Select “HF1RXG” in the menu by rotating. Inject an RFThe output levels of the signal generator at each frequency are shownMenu FrequencySSB S-Meter AdjustmentFM S-Meter AdjustmentFM Center Meter AdjustmentSelect menuSelect menuFM Squelch AdjustmentSelect menuSelect menu item. Power Supply Voltage Display AdjustmentOver-current Protection AdjustmentSelect menu item “18: HF1-IC.”. Tune the transceiver to the 1.8 MHz band and key theAdjust thisIn case the power is not within the specified tolerance,In case the power is not within the specified tolerance,W) of transmission power. W). In case the transmission power is not within the. W) of transmission power. In case the power is not within the specified tolerance,W) of transmission power.In case the power is not within the specified tolerance,W). In case the transmission power is not within theTX Gain AdjustmentInject a 1 mV audio signal at aMHz, 21 MHz, and 50 MHz bands, respectively.Reverse ALC AdjustmentMHz, 21 MHz, and 50 MHz bands, respectively.Carrier Level AdjustmentSelect menu item “60: AM-CAR.”. Inject a 1.5 mV audio signal at a frequency of 1 kHzAM modulation on the oscilloscope. ALC Meter AdjustmentNow, a value which the microprocessor computes willFM Modulation AdjustmentSelect menuFM linear detector.Key the transceiver with DTMF signal input (press any DTMF keySSB Carrier Point AdjustmentSelect menuMIC jack.ATAS control voltage confirmationThis completes the internal alignment routine for allMAIN UnitNote:Parts LayoutParts LayoutParts ListPCB with Components. PCB with Components. PCB with Components. PCB with Components. PCB with Components. PCB with Components. PCB with Components. PCB with Components. PCB with Components. PCB with Components. Printed Circuit BoardNote:Circuit Diagram. Parts Layout. Side AParts ListPrinted Circuit BoardPA UnitNote:Parts LayoutParts LayoutParts ListPrinted Circuit BoardPANEL UnitNote:Parts LayoutParts LayoutParts ListPrinted Circuit BoardCircuit Diagram. Parts Layout. Side A. Side B. Parts ListPrinted Circuit BoardCircuit Diagram. Parts Layout. Side A. Side B. Parts ListPrinted Circuit BoardCircuit Diagram. Parts Layout. Side A. Side B. Parts ListPrinted Circuit BoardCircuit Diagram. Parts Layout. Side A. Side BPrinted Circuit BoardNo portion of this manualFile Type Extension: pdf. PDF Version: 1.4. Linearized: Yes. Encryption: Standard V1.2 (40-bit). User Access: Print, Fill forms, Extract, Assemble, Print high-res. Create Date: 2002:10:28 15:37:02Z. Page Count: 85. Creation Date: 2002:10:28 15:37:02Z. Author: manual. Producer: Acrobat PDFWriter 5.0 Windows NT. Creator: manual. Has XFA: No. NOTICE This listing complies with all eBay rules and regulations. The item is either in the public domain, we own resale rights to it, or we are the publishers and sole copyright holders. No trademarks, copyrights, or eBay rules have been violated in this listing. This product fully conforms to eBay compilation and international media policy.Super high amount of views. 40 sold, 4 available. More Super high amount of views. 40 sold, 4 available. You are the light of the world. Unit 12, Sun Valley Business Park, Winnall Close Winchester, Hampshire, SO23 0LB, U.K. FT-897 O Page 2 PERATING ANUAL. The 20 Watt power output sup- adequate ventilation around the cabinet of the FT-897. The plied by the FT-897, combined with the directivity of a beam cooling system of the transceiver must be free to draw cool. FT-897 O Page 14 PERATING. FT-897 O Page 15 PERATING. FT-897 O Page 16 PERATING. FT-897 O Page 17 PERATING. When shut- 3.5 MHz 18 MHz BAND ting down, please turn off the POWER switch on the FT- 897 before turning off the MAIN switch on the FP-30. See pages 54, 57, By default, the FT-897 begins operation in the “fine tun- and 59 for details.FT-897 O Page 23 PERATING ANUAL. This allows you to set up a higher or lower listening pitch, if you prefer such as compared to the default passband response. See page 55. FT-897 O Page 24 PERATING ANUAL. Do not activate this filter in the CW mode, as incoming CW signals will be notched out of the audio passband. FT-897 O Page 26 PERATING ANUAL. FT-897 O Page 28 PERATING ANUAL. Each operator’s voice pattern is different, so try several settings to find the one which is best for your voice. FT-897 O Page 29 PERATING ANUAL. FT-897 O Page 31 PERATING ANUAL. In this situation, you will observe the “TEN” indicator on the display. If FT-897 O Page 32 PERATING ANUAL. FT-897 O Page 33 PERATING ANUAL. It is a newer, more advanced tone system that is tion via the Menu mode. FT-897 O Page 35 PERATING ANUAL. If not, new setting and exit.For BPSK work, the in- 9600 bps packet, and setup is similar to that described pre- jection does not matter, but for QPSK the two working sta- viously for SSB-based modes. The “TUNE” icon will then disappear from the LCD, and you will be ready for operation. FT-897 O Page 40 PERATING ANUAL. Do not set up. It simply sends a signal to the microprocessor that an indepen- dent Transmit frequency is being stored on the same chan- nel as a previously-stored Receive frequency. FT-897 O Page 42 PERATING ANUAL. The receiver’s audio output and S-meter are dis- abled when using the Spectrum Scope. FT-897 O Page 45 PERATING ANUAL. FT-897 O Page 48 PERATING ANUAL. For example, on a DX- pedition, the FT-897 beacon might be activated on a 50 MHz frequency, to alert DXers as to possible band openings. For example, the dis- play may be configured to show a different color accord-ing. FT-897 O Page 52 PERATING ANUAL. FT-897 O Page 53 PERATING ANUAL. FT-897 O Page 54 PERATING ANUAL. DIG (USER-L or USER-U) mode operation.FT-897 O Page 57 PERATING ANUAL. The CT-62 has a built-in level converter, allowing direct connection from the. Now turn the “source” radio off. 7. Remove the clone cable. Channel and operating data for both radios are now identical. They both may be turned on now for normal operation. FT-897 O Page 63 PERATING ANUAL. Operation is subject to the following two conditions; (1) this device may not cause harmful interference, and (2) this device must accept any interference including interference that may cause undesired operation. 16 But Gift Checks FabJob Guide to Become a Professional Photographer Jennifer James Visit www.fabjob.com Contents How to Use This Guide.3 About the Author.8 1. Introduction.9 1.1 Welcome.9 By Lyz Cordon It includes FabJob Guide to Become a Cleaning Business Owner Brenna Pearce Visit www.fabjob.com Contents 1. 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