FT-7900R/E. Dual Band FM Transceiver. Technical Supplement. Introduction. Contents. Important Note. FT-7900R/E Technical Supplement

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1 VERTEX STNDRD CO., LTD Nakameguro, Meguro-Ku, Tokyo , Japan VERTEX STNDRD Dual and FM Transceiver US Headquarters Walker Street, Cypress, C 90630, U.S.. YESU UK LTD. FT-7900R/E Unit 12, Sun Valley usiness Park, Winnall Close Winchester, Hampshire, SO23 0L, U.K. VERTEX STNDRD HK LTD. Technical Supplement Unit , 13F., Millennium City 2, 378 Kwun Tong Road, Kwun Tong, Kowloon, Hong Kong VERTEX STNDRD (USTRLI) PTY., LTD. Tally Ho usiness Park, 10 Wesley Court, East urwood, VIC, VERTEX STNDRD CO., LTD. EH016M93 Introduction This manual provides technical information necessary for servicing the FT-7900R/E Transceiver. Servicing this equipment requires expertise in handling surface-mount chip components. ttempts 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 PC layout diagrams are provided for each double-sided circuit board in the transceiver. Each side of thr board 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. Important Note The transceiver was assembled using Pb (lead) free solder, based on the RoHS specification. Only lead-free solder (lloy Composition: Sn-3.0g-0.5Cu) should be used for repairs performed on this apparatus. The solder stated above utilizes the alloy composition required for compliance with the lead-free specification, and any solder with the above alloy composition may be used. Contents Specifications Exploded View & Miscellaneous Parts lock Diagram... C-1 Circuit Description... D-1 lignment... E-1 oard Unit (Schematics, Layouts & Parts) MIN Unit... F-1 PNEL Unit... G-1 Unit... H-1

2 Specifications General Frequency Range: RX: MHz, MHz (US: Cellular locked) TX: MHz or MHz, MHz or MHz Channel Steps: 5/10/12.5/15/20/25/50/ khz Modes of Emission: F3E, F2D, F2 ntenna Impedance: 50 Ohms, unbalanced (ntenna Duplexer built-in) Frequency Stability: ±5 14 F ~ +140 F ( 10 C ~ +60 C) Operating Temperature Range: 4 F ~ +140 F ( 20 C ~ +60 C) Supply Voltage: 13.8 VDC (±15 %), negative ground Current Consumption (pprox.): RX: 0.5 (Squelched) TX: 8.5 (144 MHz, 50 W) 9 (430 MHz, 45 W) Case Size (W x H x D): 5.5 x 1.6 x 6.6 (140 x 41.5 x 168 mm) (w/o knobs & connectors) Weight (pprox.): 2.2 lb. (1 kg) Transmitter Output Power: Modulation Type: Maximum Deviation: Spurious Radiation: Microphone Impedance: DT Jack Impedance: 50/20/10/5 W (144 MHz) 45/20/10/5 W (430 MHz) Variable Reactance ±5 khz, ±2.5 khz t least 60 d below 2 kω 10 kω Receiver Circuit Type: Intermediate Frequencies: Sensitivity: Squelch Sensitivity: Selectivity ( 6d/ 60d): Maximum F Output: F Output Impedance: Double-conversion superheterodyne MHz/450 khz 0.8 µv (TYP) for 10 d SN ( MHz, M) 0.2 µv for 12 d SIND ( MHz, FM) 0.25 µv for 12 d SIND ( MHz, FM) 0.3 µv (TYP) for 12 d SIND ( MHz, FM) 0.25 µv (TYP) for 12 d SIND ( MHz, FM) 0.8 µv (TYP) for 10 d SN ( MHz, M) 0.25 µv for 12 d SIND ( MHz, FM) 0.2 µv for 12 d SIND ( MHz, FM) 0.4 µv (TYP) for 12 d SIND ( MHz, FM) 0.8 µv (TYP) for 12 d SIND ( MHz, FM) (US: Cellular locked) etter than 0.16 µv 12 khz/30 khz 2 8 Ω for 10% THD 4-16 Ω Specifications are subject to change without notice, and are guaranteed within the 144 and 430 MHz amateur bands only. Frequency ranges will vary according to transceiver version; check with your dealer. -1

3 Exploded View & Miscellaneous Parts R LEL SCREW LIST ➀ ➆ ➀ ➀ No. VXSTD P/N ➀ U DESCRIPTION OVL HED SCREW M2.6X8 QTY. 8 ➁ ➂ ➃ ➄ ➅ ➆ U U03302 TPTITE SCREW M3X8NI SEMS SCREW SM3X10NI 17 4 U U INDING HED SCREW M3X8NI TPTITE SCREW M3X R HIMERON TPE U U TPTITE SCREW M2X16 OVL HED SCREW M2.6X6 5 6 M SPEKER ➆ ➀ ➀ ➆ ➀ ➀ ➀ R HOLDER VXSTD P/N CS CSE (W/ NYLON NET) ➆ R LEL T (US, EXP, US) T (CE) WIRE SSY T WIRE SSY SUPPLIED CCESSORIES DESCRIPTION 43X001 Q MIC MH-486J FUSE 15 (x2 pcs, US, EXP, US Version) Q T FUSE 15 (x2 pcs, CE Version) DC CLE (US, EXP, US Version) T DC CLE (CE Version) ➁ R RUER SHEET ➁ ➁ ➂ ➂ ➂ ➁ MIN UNIT ➁ ➁ ➂ ➁ ➁ ➁ ➁ ➁ ➁ ➁ R (x2 pcs) GROUND PLTE ➁ ➁ ➁ ➁ M FN ➄ ➄ ➄ R02668 SSIS ➄ R RUER R COIL SPRING S FN GURD R RELESE KNO ➃ PNEL UNIT ➃ T CT CLE R REFLECTOR SHEET ➆ R DIFFUSER SHEET P CONNECTOR (US) ➅ R LCD HOLDER ➅ ➆ ➅ R LCD SPCER ➅ ➅ R SU PNEL R RER PNEL SSY (W/ COIL SPRING, RELESE KNO) R RUER KNO P CONNECTOR (CE, EXP, US) S WSHER (CE, EXP, US) T WIRE SSY R FRONT PNEL SSY (W/ WINDOW, DOULE FCE TPE) UNIT P CONNECTOR R KNO Q ROTRY ENCODER (W/ HEX NUT*, WSHER*) R KNO R INTER CONNECTOR R KNO R ENCODER KNO * * R LIGHT GUIDE Non-designated parts are available only as part of a designated assembly. G LCD -1

4 Exploded View & Miscellaneous Parts Note -2

5 lock Diagram C-1

6 lock Diagram Note C-2

7 Circuit Description VHF Reception The incoming VHF signal is passed through a low-pass filter network, antenna switching diodes D1074 (RLS135), D1075 (RLS135) and D1015 (HVC131), and another lowpass filter network to the RF amplifier Q8 (3SK296ZQ). The amplified RF signal is passed through a varactor controlled bandpass filter consisting of L1017, L1018, and D1010, D1011, and D1012 (all HVC365), then applied to the first mixer Q9 (3SK296ZQ) along with the first local signal from the PLL circuit. The first local signal is generated between MHz and MHz, depending on the receiving frequency, by the VHF VCO, which consists of Q1076 (2SC5374) and varactor diodes D1049 (HVC365), D1050 (HVC131), D1051 (HVC365), and D1052 (HVC362). UHF Reception The incoming UHF signal is passed through a low-pass filter network, antenna switching diodes D1077 (M4P1250) and D1018 (RLS135), D1019 (RLS135), and D1084 (HS77), and another low-pass filter network to the RF amplifier Q1 (3SK296ZQ). The amplified RF signal is passed through a varactor-controlled band-pass filter consisting of L6 and L7, and D2, D3, and D4 (all HVC350), then applied to the first mixer Q2 (3SK296ZQ) along with the first local signal from the PLL circuit. The first local signal is generated between MHz and MHz, depending on the receiving frequency, by the UHF VCO, which consists of Q1072 (2SC5006) and varactor diodes D1046 (HVC375) and D1047 (HVC350). IF and udio Circuits The MHz first IF signal is applied to the monolithic crystal filter XF1 which strips away unwanted mixer products, and the IF signal is applied to the first IF amplifier Q1016 (2SC4400). The amplified first IF signal is then delivered to the FM IF subsystem IC Q1023 (T31136FN), which contains the second mixer, limiter amplifier, noise amplifier, and FM detector. The 44.6 MHz second local signal is derived from MHz crystal X2, the frequency of which is multiplied by four at Q1022 (2SC4400), producing the 450 khz second IF signal when mixed with the first IF signal within Q1023 (T31136FN). The 450 khz second IF signal is applied to the ceramic filter CF1 which strips away all but the desired shignal, and then passes through the limiter amplifier within Q1023 (T31136FN) to the ceramic discriminator CD1 which removes any amplitude variations in the 450 khz IF signal before detection of speech. The detected audio passes through the de-emphasis network, a low-pass filter consisting of Q1028 (NJM2902V) and associated circuitry, and a high-pass filter consisting of Q1028 (NJM2902V) and associated circuitry. The filtered audio signal is passed through the audio volume control IC Q1034 (M51132FP) which adjusts the audio sensitivity to compensate for audio level variations, then delivered to the audio switch Q1036 (DTC144EE). Squelch Control When no carrier received, noise at the output of the detector stage in Q1023 (T31136FN) is amplified and bandpass filtered by the noise amp section of Q1023 (T31136FN). The resulting DC voltage is applied to pin 2 of main CPU Q1065 (M3826EFGP), which compares the squelch threshold level to that which set by the front panel SQL knob. While no carrier is received, pin 53 of Q1065 (M3826EFGP) remains low, to disable audio output from the speaker. Transmit Signal Path The speech signal from the microphone passes through the MIC jack J2001 to F amplifier Q2011 (NJM2904V) on the PNEL unit. The amplified speech signal is subjected to amplitude limiting by Q1040 (NJM2902V) on the MIN unit. The speech signal then passes through low-pass filter network Q1040 (NJM2902V) and band switch Q1039 (U4066CFV) to the VHF VCO or UHF VCO. VHF Transmit Signal Path The adjusted speech signal from Q1040 (NJM2902V) is delivered to VHF VCO Q1076 (2SC5374) which frequency modulates the transmitting VCO made up of D1049 (HVC365). The modulated transmit signal passes through buffer amplifiers Q1077 and Q1078 (both 2SC5374). The amplified transmit signal is then applied to the Pre-Drive amplifier Q1084 (RQ0004PXDQS) and Driver amplifier Q1086 (RD07MVS1), then finally amplified by Power amplifier Q1087 (RD70HVF1) up to 50 Watts. This threestage power amplifier s gain is controlled by the PC circuit. The 50 Watt RF signal passes through high-pass filter and low-pass filter network, antenna switch D1072 and D1073 (both L709CER), and another low-pass filter network, and then is delivered to the NT jack. D-1

8 Circuit Description UHF Transmit Signal Path PTT Circuit The adjusted speech signal from Q1040 (NJM2902V) is delivered to UHF VCO Q1072 (2SC5006) which frequency modulates the transmitting VCO made up of D1046 (HVC375). The modulated transmit signal passes through buffer amplifiers Q1073, Q1074, and Q1075 (all 2SC5006). The filtered transmit signal is then applied to the Pre-Drive amplifier Q1084 (RQ0004PXDQS) and Driver amplifier Q1086 (RD07MVS1), then finally amplified by Power amplifier Q1087 (RD70HVF1) up to 40 Watts. This three-stage power amplifier s gain is controlled by the PC circuit. The 40 Watt RF signal passes through high-pass filter and low-pass filter networks, antenna switch D1077 (M4P1250), and another low-pass filter network, and then is delivered to the NT jack. When the PTT switch is pressed, pin 8 of sub CPU Q2001 (M38223) goes high, which send the PTT command to main CPU Q1065 (M3826EFGP). When the CPU receives the PTT command, it engages Q1057 (UM8N) and Q1058 (IMT17), which activates the Tx circuit. TX PC Circuit portion of the power amplifier output is rectified by D1070 and D1071 (UHF: D1078 and D1079, all M2S728), then delivered to PC Q1081 (NJM2904V), as a DC voltage which is proportional to the output level of the power amplifier. The PC Q1081 (NJM2904V) compares the rectified DC voltage from the power amplifier and the reference voltage from the main CPU Q1065 (M3826EFGP), to produce a control voltage, which regulates supply voltage to the Pre-Drive amplifier Q1084 (RQ0004PXDQS), Drive amplifier Q1086 (RD07MVS1) and Power amplifier Q1087 (RD70HVF1), so as to maintain stable output power under varying antenna loading conditions. D-2 PLL Circuit portion of the output from the VCO Q1076 (2SC5374) and Q1072 (2SC5006), passes through the programmable divider section of the PLL IC Q1070 (M1502PFV1), which divides the VCO frequency according to the frequency dividing data that is associated with the current frequency input from the main CPU Q1065 (M3826EFGP). It is then sent to the phase comparator. The MHz frequency of the reference oscillator circuit derived from X2 is divided by the reference frequency divider section of Q1070 (M1502PFV1) into 4250 or 3400 parts to become 5 khz or 6.25 khz comparative reference frequencies, which are utilized by the phase comparator. The phase comparator section of Q1070 (M1502PFV1) compares the phase between the frequency-divided oscillation frequency of the VCO circuit and the comparative frequency and its output is a pulse corresponding to the phase difference. This pulse is integrated by the charge pump and loop filter of Q1070 (M1502PFV1) into a control voltage (VCV) to control the oscillation frequency of the VCOs.

9 lignment Introduction and Precautions Required Test Equipment The FT-7900R/E has been carefully aligned at the factory for the specified performance across the 144 MHz and 430 MHz amateur bands. Realignment should therefore not be necessary except in the event of a component failure. ll component replacement and service should be performed only by an authorized Vertex Standard representative, or the warranty policy may be voided. 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. 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 are replaced, 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. uthorized 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. lso, Vertex Standard must reserve 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 the need for realignment determined to be absolutely necessary. Regulated DC Power Supply: adjustable from 11.5 to 16 VDC, 10 RF Signal Generator with calibrated output level at 500 MHz Frequency Counter: ±0.1 ppm accuracy at 500 MHz F Signal Generator SIND Meter Oscilloscope Spectrum nalyzer Deviation Meter (linear detector) F Millivoltmeter F Dummy Load: 8-Ohm, 5 W DC Voltmeter: high impedance Inline Wattmeter with accuracy at 500 MHz 50-Ohm non-reactive Dummy Load: 50 watts at 500 MHz VHF/UHF Sampling Coupler Set up the test equipment as shown below, and apply 13.8 VDC power to the transceiver. SIND Meter 8-ohm Dummy Load Power Supply 13.8 VDC RF Signal Generator RF Sampling Coupler Inline Wattmeter 50-ohm Dummy Load EXT SP Frequency Counter Deviation Meter Pin 5 F Signal Generator E-1

10 lignment lignment Preparation & Precautions PLL Reference Frequency dummy load and inline 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. fter 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, if connected) before proceeding. 1. Rotate the DIL knob to set the display to 4006, then set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 2. Press the [ND(SET)] key while pressing and holding in the [ (L)] key, if needed, to set the lignment parameter to -0 REF.xxH. 3. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding the [ (L)] key, if needed, so that the counter frequency reading is MHz (± Hz). Correct alignment requires that the ambient temperature in the repair shop be the same as that of the transceiver and test equipment, and that this temperature be held constant between 20 C and 30 C. When the transceiver is brought into the shop from hot or cold air it should be allowed some time for thermal equalization with the environment before alignment. If possible, alignments should be made with oscillator shields and circuit boards firmly affixed in place. lso, the test equipment must be thoroughly warmed up before beginning. Notes: Signal levels in d referred to in alignment are based on 0 dµ = 0.5 µv (closed circuit). Entering the lignment mode lignment of the FT-7900R/E is performed using a frontpanel software-based procedure. To perform alignment of the transceiver, it must first be placed in the lignment Mode, in which the adjustments will be made and then stored into memory. To enter the lignment mode: 1. Press and hold in the [MHz(PRI)] key while turning the radio on. 2. Rotate the DIL konb so select menu F-8 NOR/. 3. Press and hold in the [ND(SET)] key for 1/2 second. The radio is turned off automatically, and then switched on again afterwards. 4. Press and hold in the [PWR( )] switch for 1/2 second to turn the radio off. 5. Press and hold in the [V/M(MW)] key while turning the radio on. The display will be show in the illustration at the right. 6. Press and hold in the [PWR( )] switch for 1/2 second to turn the radio off. 7. Press and hold in the [MHz(PRI)] key and the Hyper Memory [5] key while turning the radio on. 8. Press the front panel keys in the following sequence. [MHz(PRI)] [TONE(HM/RV)] [LOW(CC)] [ND(SET)] [V/M(MW)] [SCN(SEL)] [S.S(RTS)] 9. Press and hold in the [ (L)] key to cause -0 REF.xxH to appear on the display, this signifies that the transceiver is now in the lignment mode. E-2 RF Front-end Tuning 1. Connect the DC voltmeter to TP1010 on the MIN Unit, then inject a MHz signal at a level of +10 dµ (with 1 khz khz deviation) from the RF Signal Generator. 2. Rotate the DIL knob to set the display to Press the [ND(SET)] key while pressing and holding the [ (L)] key to set the lignment parameter to -1 TUN.xxH. 4. djust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the DC voltmeter reaches maximum deflection. The FT-7900R/E s RF Front-end has a broad bandwidth. 5. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Inject a MHz signal at a level of +10 dµ (with 1 khz khz deviation) from the RF Signal Generator. 7. djust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the DC voltmeter reaches maximum deflection. s in the previous section, be sure to set the DIL knob for the center of the band prior to making this adjustment. TP1010 MIN UNIT TEST POINTS

11 lignment TX Power Output 1. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 2. Press the [ND(SET)] key while pressing and holding in the [ (L)] key to set the lignment parameter to -2 PWR.xxH. 3. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the wattmeter reading is 5 Watts (±0.5 Watt). 4. Press the [LOW(CC)] key to increase the Transmit Power Level to MID2. 5. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the wattmeter reading is 10 Watts (±0.5 Watt). 6. Press the [LOW(CC)] key to increase the Transmit Power Level to MID1. 7. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the wattmeter reading is 20 Watts (±0.5 Watt). 8. Press the [LOW(CC)] key to increase the Transmit Power Level to HIGH. 9. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the wattmeter reading is 45 Watts (±0.5 Watt). 10. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 11. Press the PTT switch to activate the transmitter, and adjust the DIL knob while press and holding the [ (L)] key, as needed, so that the wattmeter reading is 5 Watts (±0.5 Watt). 12. Press the [LOW(CC)] key to increase the Transmit Power Level to MID Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the wattmeter reading is 10 Watts (±0.5 Watt). 14. Press the [LOW(CC)] key to increase the Transmit Power Level to MID Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the wattmeter reading is 20 Watts (±0.5 Watt). 16. Press the [LOW(CC)] key to increase the Transmit Power Level to HIGH. 17. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the wattmeter reading is 50 Watts (±0.5 Watt). TX Deviation 1. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 2. Press the [ND(SET)] key while pressing and holding in the [ (L)] key to set the lignment parameter to -3 DEV.xxH. 3. Inject a 1 khz audio tone at a level of 80 mv ( 20 dm) from the udio Generator. 4. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the deviation meter reading is 4.5 khz (±0.2 khz). 5. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 6. Press the PTT switch to activate the transmitter, and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the deviation meter reading is 4.5 khz (±0.2 khz). E-3

12 lignment DCS TX Deviation CTCSS TX Deviation 1. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 2. ctivate the DCS with a 023 DCS code. 1) Press the [TONE(REV)] key until DCS appears on the display. 2) Press and hold in the [ND(SET)] key for 1/2 second to enter the Set mode. 3) Rotate the DIL knob to select Menu #9 (DCS.COD). 4) Press the [ND(SET)] key to enable adjustment of the selected Menu Item. 5) Rotate the DIL knob to select DCS ) Press and hold in the [ND(SET)] key for 1/2 second to save the DCS code. 3. Press the [ND(SET)] key while pressing and holding in the [ (L)] key to set the lignment parameter to -4 DSC.xxH. 4. Press the PTT switch to activate the transmitter (with no microphone input), and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the deviation meter reading is between 0.50 khz and 0.60 khz. 5. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 6. ctivate the DCS with a 023 DCS code. 1) Press the [TONE(REV)] key until DCS appears on the display. 2) Press and hold in the [ND(SET)] key for 1/2 second to enter the Set mode. 3) Rotate the DIL knob to select Menu #9 (DCS.COD). 4) Press the [ND(SET)] key to enable adjustment of the selected Menu Item. 5) Rotate the DIL knob to select DCS ) Press and hold in the [ND(SET)] key for 1/2 second to save the DCS code. 7. Press the PTT switch to activate the transmitter (with no microphone input), and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the deviation meter reading is between 0.50 khz and 0.60 khz. 1. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 2. ctivate the CTCSS Encoder with a Hz tone. 1) Press the [TONE(REV)] key until ENC DEC appears on the display. 2) Press and hold in the [ND(SET)] key for 1/2 second to enter the Set mode. 3) Rotate the DIL knob to select Menu #44 (TN FRQ). 4) Press the [ND(SET)] key to enable adjustment of the selected Menu Item. 5) Rotate the DIL knob to select.0hz. 6) Press and hold in the [ND(SET)] key for 1/2 second to save the CTCSS tone. 3. Press the [ND(SET)] key while press and holding the [ (L)] key to set the lignment parameter to 5 CTC.xxH. 4. Press the PTT switch to activate the transmitter (with no microphone input), and adjust the DIL knob while pressing and holding in the [ ( L )] key, if needed, so that the deviation meter reading is between 0.65 khz and 0.75 khz. 5. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Set the Transmit Power Level to LOW by pressing the [LOW(CC)] key repeatedly. 6. ctivate the CTCSS Encoder with a Hz tone. 1) Press the [TONE(REV)] key until ENC DEC appears on the display. 2) Press and hold in the [ND(SET)] key for 1/2 second to enter the Set mode. 3) Rotate the DIL knob to select Menu #44 (TN FRQ). 4) Press the [ND(SET)] key to enable adjustment of the selected Menu Item. 5) Rotate the DIL knob to select.0hz. 6) Press and hold in the [ND(SET)] key for 1/2 second to save the CTCSS tone. 7. Press the PTT switch to activate the transmitter (with no microphone input), and adjust the DIL knob while pressing and holding in the [ (L)] key, if needed, so that the deviation meter reading is between 0.65 khz and 0.75 khz. E-4

13 lignment Center Meter Sensitivity DC Voltmeter 1. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Press the [ND(SET)] key while press and holding the [ (L)] key to set the lignment parameter to 6 CNTL/V. 3. Inject a 1 khz audio tone at a level of +10 dµ from the udio Generator. 4. Press the [LOW(CC)] key while press and holding the [ (L)] key. 1. Set the power supply voltage to 13.8 VDC. 2. Press the [ND(SET)] key while pressing and holding in the [ (L)] key to set the lignment parameter to -8 T SC. 3. Press the [SCN(SEL)] key. S-Meter Sensitivity 1. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Press the [ND(SET)] key while press and holding the [ (L)] key to set the lignment parameter to 7 SM L/V. 3. Inject a MHz signal at a level of 5 dµ (with 1 khz khz deviation) from the RF Signal Generator. 4. Press the [LOW(CC)] key while pressing and holding in the [ (L)] key. 5. Increase the RF Signal Generator output level to +23 dµ. 6. Press the [V/M(MW)] key while pressing and holding in the [ (L)] key. 7. Press the [ND(SET)] key, then rotate the DIL knob to set the display to Inject a MHz signal at a level of 5 dµ (with 1 khz khz deviation) from the RF Signal Generator. 9. Press the [LOW(CC)] key while pressing and holding in the [ (L)] key. 10. Increase the RF Signal Generator output level to +23 dµ. 11. Press the [V/M(MW)] key while pressing and holding in the [ (L)] key. To close the lignment mode 1. Press and hold in the [PWR( )] switch for 1/2 second to turn the radio off. 2. Press and hold in the [MHz(PRI)] key while turning the radio on. 3. Rotate the DIL konb so select menu F-8 NOR/. 4. Press and hold in the [ND(SET)] key for 1/2 second. The radio is turned off automatically, and then switched on again afterwards with normal operation. E-5

14 lignment Note E-6

15 MIN Unit (Lot. 1 ~ 115) 1.42 V M: 2.03 V 0V M: 3.74 V [+15.5 dµ] [+1.4 dµ] [+18.8 dµ] 1.10 V [ 4.3 dµ] 2.00 V 2.00 V Q1034 Pin 2: 8.33 V Pin 14: 8.40 V Pin 15: 3.57 V Pin 16: 3.27 V Circuit Diagram 1.48 V 0 ~ 4.90 V 2.00 V 0.50 V 8.57 V 0.81 V V 1.10 V M: 3.35 V 1.78 V 2.33 V 7.00 V 0.30 V MHz (+21.6 dµ) [+21.0 dµ] 0.69 V 1.37 V MHz (+12.3 dµ) [+11.6 dµ] 2.33 V 1.78 V 4.75 V 8.56 V 0.83 V 4.94 V 0.13 V 2.22 V [+15.9 dµ] 1.56 V 0.82 V (+15.8 dµ) MHz (+23.4 dµ) [+22.6 dµ] 0.71 V 1.40 V Q1023 Pin 1: 4.79 V Pin 4: 4.81 V Pin 8: 0.65 V Pin 10: 4.81 V 4.94 V 2.01 V 1.91 V 2.00 V 2.09 V 5.83 V 0.97 V 2.22 V 0.23 V 0.98 V 0.15 V 1.23 V 0.11 V 0.68 V 4.98 V 0.91 V 0.43 V 0.93 V 8.83 V (+0.8 dµ) 4.72 V 0.69 V ( 6.2 dµ) 8.13 V 4.86 V 0.70 V 0.32 V 1.89 V 1.89 V 1.88 V 2.92 V 8.53 V 8.80 V 8.82 V 8.86 V 0.71 V 8.65 V 0.78 V 8.87 V 8.86 V 0.71 V 8.70 V 4.69 V 8.17 V V ( 8.6 dµ) [ 9.2 dµ] 4.98 V 4.90 V V 5.65 V 8.95 V 4.98 V 4.86 V 4.97 V V 5.00 V (3.55 V) [3.30 V] 0.70 V 0.12 V (12.60 V) [12.54 V] 5.00 V 4.95 V 4.56 V (12.73 V) [12.76 V] 4.67 V (3.25 V) [3.62 V] (11.45 V) [11.23 V] 6.68 V 5.00 V (xxx): Freq. = MHz [xxx]: Freq. = MHz (xxx): Freq. = MHz [xxx]: Freq. = MHz F-1

16 MIN Unit (Lot. 1 ~ 115) Note F-2

17 MIN Unit (Lot. 1 ~ 115) Parts Layout (Side ) M3826EFGP (Q1065) U2090FS (Q1059) U4066CFV (Q1039) M51132FP (Q1034) NJM2902V (Q1040) M15022PFV1 (Q1070) RD70HVF1 (Q1087) C D E F G H I 1 T31136FN (Q1023) 2 2S1774 (FR) (Q1069) 2S1301 (ZQ) (Q1043) L4425 (Q1035) 3 2SC4400 (RT4) (Q1016) RQ0004PXDQS (PX) (Q1084) IMT17 (T17) (Q1058) 2SC4617 (R) (Q1019, 1020, 1029, 1030, 1047, 1064, 1071) 2SC5006 (24) (Q3, 1013, 1014, 1074, 1075) 2SC5277 (D2) (Q1012) 4 DT144EE (16) (Q1056, 1062) NJM78L05 (8C) (Q1046) 5 2SC5374 (N) (Q1078) RD07MVS1 (Q1086) DTC144EE (26) (Q1037, 1038, 1054, 1068) UM8N (8) (Q1055, 1057, 1063) 6 7 D221 (K) (D1040) DN222 (N) (D1022, 1063) F-3

18 MIN Unit (Lot. 1 ~ 115) Parts Layout (Side ) a b c d e f g h i 2S1201S (Q1044) NJM2902V (Q1028, 1031) NJM2904V (Q1081) 1 2 T2456 (Q1053) 2SC4400 (RT4) (Q1022) 2SD1664 (D) (Q1085) 3SK296ZQ (ZQ) (Q1, 2, 8, 9, 1010) DT144EE (16) (Q1082, 1088) DTC144EE (26) (Q1032, 1033, 1036, 1042, 1066, 1067, 1079, 1080, 1083) MM1216ENRE (1C) (Q1045) NJM78L05 (8C) (Q1049) S-80823CNMC (Q1050) D221 (K) (D1030, 1045) DN222 (N) (D1028, 1037, 1038, 1039, 1056, 1058, 1059) HZM13N2 (132) (D1062) HZM27W (27) (D1031, 1032) 2SC4617 (R) (Q1017, 1018, 1021, 1041, 1051, 1052) 2SC5006 (24) (Q1072, 1073) SC5374 (N) (Q1011, 1076, 1077) 7 F-4

19 MIN Unit (Lot. 116 ~) 1.42 V M: 2.03 V 0V M: 3.74 V [+15.5 dµ] [+1.4 dµ] [+18.8 dµ] 1.10 V [ 4.3 dµ] 2.00 V 2.00 V Q1034 Pin 2: 8.33 V Pin 14: 8.40 V Pin 15: 3.57 V Pin 16: 3.27 V Circuit Diagram 1.48 V 0 ~ 4.90 V 2.00 V 0.50 V 8.57 V 0.81 V V 1.10 V M: 3.35 V 1.78 V 2.33 V 7.00 V 0.30 V MHz (+21.6 dµ) [+21.0 dµ] 0.69 V 1.37 V MHz (+12.3 dµ) [+11.6 dµ] 2.33 V 1.78 V 4.75 V 8.56 V 0.83 V 4.94 V 0.13 V 2.22 V [+15.9 dµ] 1.56 V 0.82 V (+15.8 dµ) MHz (+23.4 dµ) [+22.6 dµ] 0.71 V 1.40 V Q1023 Pin 1: 4.79 V Pin 4: 4.81 V Pin 8: 0.65 V Pin 10: 4.81 V 4.94 V 2.01 V 1.91 V 2.00 V 2.09 V 5.83 V 0.97 V 2.22 V 0.23 V 0.98 V 0.15 V 1.23 V 0.11 V 0.68 V 4.98 V 0.91 V 0.43 V 0.93 V 8.83 V (+0.8 dµ) 4.72 V 0.69 V ( 6.2 dµ) 8.13 V 4.86 V 0.70 V 0.32 V 1.89 V 1.89 V 1.88 V 2.92 V 8.53 V 8.80 V 8.82 V 8.86 V 0.71 V 8.65 V 0.78 V 8.87 V 8.86 V 0.71 V 8.70 V 4.69 V 8.17 V V ( 8.6 dµ) [ 9.2 dµ] 4.98 V 4.90 V V 5.65 V 8.95 V 4.98 V 4.86 V 4.97 V V 5.00 V (3.55 V) [3.30 V] 0.70 V 0.12 V (12.60 V) [12.54 V] 5.00 V 4.95 V 4.56 V (12.73 V) [12.76 V] 4.67 V (3.25 V) [3.62 V] (11.45 V) [11.23 V] 6.68 V 5.00 V (xxx): Freq. = MHz [xxx]: Freq. = MHz (xxx): Freq. = MHz [xxx]: Freq. = MHz F-5

20 MIN Unit (Lot. 116 ~) Note F-6

21 MIN Unit (Lot. 116 ~) Parts Layout (Side ) M3826EFGP (Q1065) U2090FS (Q1059) U4066CFV (Q1039) M51132FP (Q1034) NJM2902V (Q1040) M15022PFV1 (Q1070) RD70HVF1 (Q1087) C D E F G H I 1 T31136FN (Q1023) 2 2S1774 (FR) (Q1069) 2S1301 (ZQ) (Q1043) L4425 (Q1035) 3 2SC4400 (RT4) (Q1016) RQ0004PXDQS (PX) (Q1084) IMT17 (T17) (Q1058) 2SC4617 (R) (Q1019, 1020, 1029, 1030, 1047, 1064, 1071) 2SC5006 (24) (Q3, 1013, 1014, 1074, 1075) 2SC5277 (D2) (Q1012) 4 DT144EE (16) (Q1056, 1062) NJM78L05 (8C) (Q1046) 5 2SC5374 (N) (Q1078) RD07MVS1 (Q1086) DTC144EE (26) (Q1037, 1038, 1054, 1068) UM8N (8) (Q1055, 1057, 1063) 6 7 D221 (K) (D1040) DN222 (N) (D1022, 1063) F-7

22 MIN Unit (Lot. 116 ~) Parts Layout (Side ) a b c d e f g h i 2S1201S (Q1044) NJM2902V (Q1028, 1031) NJM2904V (Q1081) 1 2 T2456 (Q1053) 2SC4400 (RT4) (Q1022) 2SD1664 (D) (Q1085) 3SK296ZQ (ZQ) (Q1, 2, 8, 9, 1010) DT144EE (16) (Q1082, 1088) DTC144EE (26) (Q1032, 1033, 1036, 1042, 1066, 1067, 1079, 1080, 1083) MM1216ENRE (1C) (Q1045) NJM78L05 (8C) (Q1049) S-80823CNMC (Q1050) D221 (K) (D1030, 1045) DN222 (N) (D1028, 1037, 1038, 1039, 1056, 1058, 1059) HZM13N2 (132) (D1062) HZM27W (27) (D1031, 1032) 2SC4617 (R) (Q1017, 1018, 1021, 1041, 1051, 1052) 2SC5006 (24) (Q1072, 1073) SC5374 (N) (Q1011, 1076, 1077) 7 F-8

23 MIN Unit Parts List REF DESCRIPTION PC with Components VLUE V/W TOL. Printed Circiit oard C 1 C 2 C 4 C 6 C 7 C 8 C 9 C 1010 C 1011 C 1012 C 1013 C 1014 C 1015 C 1016 C 1017 C 1018 C 1019 C 1021 C 1022 C 1023 C 1024 C 1025 C 1026 C 1027 C 1028 C 1029 C 1030 C 1031 C 1032 C 1033 C 1034 C 1035 C 1036 C 1037 C 1038 C 1039 C 1042 C 1043 C 1044 C 1045 C 1046 C 1047 C 1048 C 1049 C 1050 C 1051 C 1053 C 1054 C 1055 C 1056 C 1057 C 1058 C 1059 C 1060 MFR'S DESIG H016M000 4pF 33pF 68pF 2pF 27pF 0.5pF 0.75pF 2pF 27pF 0.5pF 27pF 15pF 4pF 6pF 1.5pF 6pF 22pF 1pF 2pF 27pF 18pF 12pF 7pF 22pF 10pF 4pF 8pF 6pF 8pF 1.5pF 2pF 47pF 0.75pF 18pF 0.75pF GRM1552C1H4R0Z01D GRM1552C1H330JZ01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM1552C1H680JZ01D GRM1554C1H2R0Z01D GRM1552C1H270JZ01D GRM1554C1HR50Z01D GRM1554C1HR75Z01D GRM1554C1H2R0Z01D GRM1552C1H270JZ01D GRM1554C1HR50Z01D GRM1552C1H270JZ01D GRM1552C1H150JZ01D GRM15511E103K01D GRM1552C1H4R0Z01D GRM15511H102K01D GRM1552C1H6R0Z01D GRM1554C1H1R5Z01D GRM1552C1H6R0Z01D GRM1552C1H220JZ01D GRM15511H102K01D GRM1554C1H1R0Z01D GRM15511H102K01D GRM1554C1H2R0Z01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM1552C1H270JZ01D GRM1552C1H180JZ01D GRM1552C1H120JZ01D GRM1552C1H7R0Z01D GRM1552C1H220JZ01D GRM1552C1HZ01D GRM1552C1H4R0Z01D GRM15511H102K01D GRM1552C1H8R0Z01D GRM15511H102K01D GRM1552C1H6R0Z01D GRM15511H102K01D GRM K01D GRM15511H102K01D GRM1552C1H8R0Z01D GRM1554C1H1R5Z01D GRM15511H102K01D GRM1554C1H2R0Z01D GRM1552C1H470JZ01D GRM1554C1HR75Z01D GRM1552C1H180JZ01D GRM1554C1HR75Z01D VXSTD P/N CS CS CS CS CS CS CS CS CS CS CS CS CS CS FR011170D FR011170E K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K VERS. US EXP 1 EXP 2 EXP 3 CE 1 CE 2 EXP 3 CE C1 CE EXP C3 EXP D1 EXP D2 US H1 US H2 LOT SIDE LY DR c3 c4 c4 c4 c4 c4 c4 c4 d4 E4 F5 F5 F5 F5 F5 b3 b3 b3 b3 b3 b3 b4 b4 b4 b3 b4 b4 c4 c4 F-9

24 MIN Unit Parts List REF C 1061 C 1062 C 1063 C 1064 C 1065 C 1066 C 1067 C 1068 C 1069 C 1070 C 1071 C 1072 C 1073 C 1074 C 1075 C 1076 C 1077 C 1078 C 1079 C 1080 C 1081 C 1082 C 1084 C 1085 C 1086 C 1087 C 1088 C 1089 C 1090 C 1091 C 1092 C 1094 C 1095 C 1097 C 1098 C 1099 C 1 C 1101 C 1102 C 1103 C 1104 C 1105 C 1106 C 1108 C 1109 C 1110 C 1111 C 1113 C 1114 C 1115 C 1116 C 1117 C 1118 C 1119 C 1120 C 1121 C 1122 C 1123 C 1124 C 1125 C 1126 C 1127 C 1128 C 1129 C 1130 C 1131 C 1132 C 1133 C 1134 C 1135 F-10 DESCRIPTION VLUE 2pF 47pF 8pF 0.5pF 1.5pF 47pF 15pF 7pF 2pF 22pF 6pF 47pF 47pF 7pF 2pF 7pF 22pF 0.5pF 6pF 2pF 47pF 1pF 2pF 6pF 7pF 5pF 12pF 1pF 8pF 1pF 1pF 10pF 1pF 2pF 3pF 10pF 0.022uF 6pF V/W TOL. CJ MFR'S DESIG GRM1554C1H2R0Z01D GRM1552C1H470JZ01D GRM1552C1H8R0Z01D GRM1554C1HR50Z01D GRM1554C1H1R5Z01D GRM1552C1H470JZ01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM1552C1H150JZ01D GRM15511E103K01D GRM15511H102K01D GRM1552C1H7R0Z01D GRM15511H102K01D GRM1554C1H2R0Z01D GRM15511H102K01D GRM1552C1H220JZ01D GRM1552C1H6R0Z01D GRM1552C1H470JZ01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM1552C1H470JZ01D GRM1552C1H7R0Z01D GRM1554C1H2R0Z01D GRM1552C1H7R0Z01D GRM1552C1H220JZ01D GRM15511H102K01D GRM1554C1HR50Z01D GRM15511H102K01D GRM1552C1H6R0Z01D GRM1554C1H2R0Z01D GRM1552C1H470JZ01D GRM1554C1H1R0Z01D GRM1554C1H2R0Z01D GRM1552C1H6R0Z01D GRM1552C1H7R0Z01D GRM1552C1H5R0Z01D GRM1552C1H120JZ01D GRM15511H102K01D GRM1554C1H1R0Z01D GRM1552C1H8R0Z01D GRM15511H102K01D GRM1554C1H1R0Z01D GRM1554C1H1R0Z01D GRM1552C1HJZ01D GRM1554C1H1R0Z01D GRM15511H102K01D GRM1554C1H2R0Z01D GRM1553C1H3R0Z01D GRM15511H102K01D GRM15511H102K01D GRM1552C1HZ01D GRM K01D GRM1552C1H6R0Z01D GRM15511H102K01D GRM15511E103K01D GRM15511E103K01D GRM15511H102K01D GRM15511H102K01D GRM K01D GRM15511E103K01D GRM K01D GRM K01D GRM15511H102K01D GRM15511E103K01D GRM15511E103K01D GRM15511H102K01D VXSTD P/N K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K VERS. LOT SIDE LY DR F5 b3 b3 b3 b3 b4 b4 b4 b4 b3 a3 a4 a4 a4 a4 H4 H4 H5 H5 H5 G5 F4 F4 F5 F5 F5 E4 E6 F6 E6 E6 F7 E7 E7 E7 b5 f7 e7 f7 e7 D7 D7 D7

25 MIN Unit Parts List REF C 1137 C 1138 C 1139 C 1140 C 1141 C 1142 C 1143 C 1144 C 1145 C 1146 C 1147 C 1148 C 1149 C 1151 C 1152 C 1153 C 1154 C 1155 C 1156 C 1157 C 1158 C 1159 C 1160 C 1161 C 1162 C 1163 C 1164 C 1165 C 1166 C 1168 C 1169 C 1171 C 1172 C 1173 C 1174 C 1175 C 1176 C 1177 C 1178 C 1183 C 1183 C 1183 C 1184 C 1184 C 1184 C 1185 C 1186 C 1187 C 1188 C 1189 C 1190 C 1191 C 1192 C 1193 C 1194 C 1195 C 1196 C 1197 C 1198 C 1199 C 1200 C 1201 C 1202 C 1203 C 1204 C 1205 C 1206 C 1207 C 1208 C 1209 DESCRIPTION IP T.CP. IP T.CP. IP T.CP. L.ELECTRO.CP. VLUE 27pF pf 1uF 22pF 56pF 56pF 0.047uF 220pF 470pF 470pF 22uF uF 150pF 1uF uF uF uF 1uF pf 1uF 0.022uF uF uF uF uF 1.5pF 1uF 5pF 0.022uF uF 680pF 0.022uF uF 330pF 0.47uF uF 1uF 10uF 10uF 0.047uF uf V/W 6.3V TOL. F F F F F F MFR'S DESIG GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D GRM15511E103K01D GRM1552C1H270JZ01D GRM1552C1H101JD01D GRM188F11105Z01D GRM1552C1H220JZ01D GRM K01D GRM1552C1H560JD01D GRM1552C1H560JD01D GRM15511E103K01D GRM15511E103K01D GRM15511H102K01D GRM15511H102K01D GRM K01D GRM1552C1H221J01D GRM15511H471K01D GRM15511H471K01D GRM K01D GRM15511E103K01D GRM15511E103K01D TEESV0J226M8R GRM15511E103K01D GRM15511E103K01D GRM K01D GRM K01D GRM K01D GRM15511H222K01D GRM1552C1H151J01D GRM188F11105Z01D GRM15511H102K01D GRM15511H472K01D GRM15511H472K01D GRM15511H472K01D GRM188F11105Z01D GRM1552C1H101JD01D GRM188F11105Z01D GRM K01D GRM15511H332K01D GRM15511H332K01D GRM15511E103K01D GRM15511E103K01D GRM15511E103K01D GRM K01D GRM15511H472K01D GRM15511H472K01D GRM1554C1H1R5Z01D GRM188F11105Z01D GRM15511H102K01D GRM1552C1H5R0Z01D GRM K01D GRM15511E103K01D GRM15511H472K01D GRM15511H681K01D GRM15511H102K01D GRM K01D GRM15511E682K01D GRM15511H331K01D GRM2111E474KC01L GRM15511H472K01D GRM15511H102K01D GRM K01D GRM188F11105Z01D GRM15511H102K01D TEESV1106M8R TEESV1106M8R GRM K01D GRM15511H102K01D R-101MF1#-T58 VXSTD P/N K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K78028 K78028 K K VERS. US EXP US US EXP US US US LOT SIDE LY DR g3 g4 d7 d6 E6 D7 E7 E7 e7 E7 E7 7 D7 e7 7 e7 e7 e7 E7 e7 e7 g5 g5 g b4 i5 i5 i6 i6 i6 i6 i6 i F-11

26 MIN Unit Parts List REF C 1210 C 1211 C 1212 C 1213 C 1214 C 1215 C 1216 C 1217 C 1218 C 1219 C 1220 C 1221 C 1222 C 1223 C 1224 C 1225 C 1227 C 1228 C 1229 C 1230 C 1231 C 1232 C 1232 C 1232 C 1233 C 1234 C 1235 C 1236 C 1237 C 1238 C 1239 C 1243 C 1244 C 1245 C 1246 C 1246 C 1247 C 1248 C 1249 C 1250 C 1251 C 1252 C 1253 C 1254 C 1255 C 1256 C 1257 C 1258 C 1259 C 1260 C 1261 C 1262 C 1263 C 1264 C 1265 C 1266 C 1267 C 1267 C 1267 C 1268 C 1269 C 1270 C 1271 C 1271 C 1271 C 1272 C 1274 C 1277 C 1278 C 1279 F-12 DESCRIPTION L.ELECTRO.CP. L.ELECTRO.CP. L.ELECTRO.CP. IP T.CP. IP T.CP. L.ELECTRO.CP. L.ELECTRO.CP. IP T.CP. L.ELECTRO.CP. IP T.CP. IP T.CP. VLUE 220uF 1uF 1uF 0.015uF 22pF 1uF 1uF 1uF 10uF 47pF 47pF 47pF 47pF 47pF 47pF uf 0.022uF 22uF 10uF 0.022uF 2200uF 2200uF 0.47uF pf 10uF uf 22pF 3pF 10pF 15pF 470pF 36pF 36pF 39pF uF uF 820pF 820pF 47pF 10uF 10uF V/W TOL. F F F F F CJ MFR'S DESIG GRM K01D RE2-221MG3# GRM15511H102K01D GRM18811C104K01D GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D GRM188F11105Z01D GRM188F11105Z01D GRM15511C153K01D GRM15511E103K01D GRM K01D GRM1552C1H220JZ01D GRM188F11105Z01D GRM188F11105Z01D GRM188F11105Z01D R-MD1#-T58 GRM15511H102K01D GRM15511E103K01D GRM1552C1H470JZ01D GRM1552C1H470JZ01D GRM1552C1H470JZ01D GRM1552C1H470JZ01D GRP15511C103J01E GRM1552C1H470JZ01D GRM1552C1H470JZ01D R-101MF1#-T58 GRM15511H102K01D GRM18811H223K01D TEESV2126M8R GRM15511H102K01D TEESV1106M8R GRM15511H102K01D GRM18811H223K01D RE3-222MI5# RJ5-222M GRM2111E474KC01L GRM1552C1H101JD01D GRM K01D GRM15511H102K01D TEESV1106M8R GRM K01D GRM15511E103K01D GRM15511E103K01D R-101MF1#-T58 GRM15511H102K01D GRM15511H102K01D GRM K01D GRM1552C1H220JZ01D GRM1553C1H3R0Z01D GRM1552C1HJZ01D GRM15511H102K01D GRM1552C1H150JZ01D GRM K01D GRM15511H471K01D GRM15511H102K01D GRM1552C1H360JZ01D GRM1552C1H360JZ01D GRM1552C1H390JZ01D GRM15511H122K01 GRM K01D GRM15511H472K01D GRM15511H821K01D GRM15511H821K01D GRM15511H102K01D GRM1552C1H470JZ01D TEESV1106M8R GRM15511H102K01D TEESV1106M8R GRM15511H102K01D VXSTD P/N K K K K K K K K K K K K K K K K K K K K K K K78028 K K K K K K K78028 K K K K K K K K K K K K K K K K K K K78028 K78028 VERS. W/O CE W/ CE US EXP US US EXP US LOT SIDE LY DR 1 h i2 1 h h C1 1 g1 1 f1 1 f7 1 g f7 1 C g g3 1 g h2 116 h g4 1 h4 1 h4 1 h4 1 i4 1 h i5 1 i5 1 i F7 1 E7 1 F6 1 h7

27 MIN Unit Parts List REF C 1280 C 1281 C 1283 C 1284 C 1285 C 1286 C 1287 C 1288 C 1289 C 1290 C 1291 C 1292 C 1293 C 1294 C 1295 C 1296 C 1297 C 1298 C 1299 C 1300 C 1301 C 1302 C 1303 C 1304 C 1305 C 1306 C 1307 C 1308 C 1309 C 1310 C 1311 C 1312 C 1313 C 1314 C 1315 C 1316 C 1317 C 1318 C 1319 C 1320 C 1321 C 1322 C 1323 C 1324 C 1325 C 1326 C 1327 C 1328 C 1329 C 1330 C 1331 C 1332 C 1333 C 1334 C 1335 C 1336 C 1337 C 1338 C 1339 C 1340 C 1341 C 1342 C 1343 C 1345 C 1346 C 1347 C 1348 C 1349 C 1350 C 1351 DESCRIPTION IP T.CP. IP T.CP. IP T.CP. IP T.CP. IP T.CP. VLUE 1uF 47pF 1pF 0.022uF 1uF 0.022uF 10uF 33pF 33pF 33pF 10uF uF 0.047uF 47pF 6pF 1uF pf 27pF 3pF 270pF 10uF 20pF 18pF 10pF 1pF 3pF 22pF 47pF 22pF 18pF 2pF 2pF 10uF V/W 20V TOL. F UJ UJ UJ UJ UJ CJ MFR'S DESIG GRM15511H102K01D GRM188F11105Z01D GRM1552C1H470JZ01D GRM15511H102K01D GRM1554C1H1R0Z01D GRM K01D GRM KC01D GRM K01D GRM18811C104K01D TEESV1106M8R GRM18811C104K01D GRM1552C1H330JZ01D GRM1552C1H330JZ01D GRM1552C1H330JZ01D GRM15511H102K01D GRM15511E103K01D GRM18811H102K01D TEESV1106M8R GRM15511H222K01D GRM K01D GRM1553U1H470JZ01D GRM1553U1H6R0DZ01D GRM15511E103K01D GRM K01D GRM K01D GRM KC01D GRM15511E103K01D GRM1553U1H101JZ01D GRM15511E103K01D GRM1553U1H270JZ01D GRM1553U1H3R0CZ01D GRM1552C1H271J01D GRM15511H102K01D GRM K01D TEESV1106M8R GRM K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM18811H102K01D GRM1552C1H200JZ01D GRM1552C1H180JZ01D GRM1552C1HJZ01D GRM1554C1H1R0Z01D GRM15511H102K01D GRM15511H102K01D GRM1553C1H3R0Z01D GRM15511H102K01D SKF-1D104M-RP GRM1552C1H220JZ01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM1552C1H470JZ01D GRM18811H102K01D GRM1552C1H220JZ01D GRM1552C1H180JZ01D GRM1554C1H2R0Z01D GRM15511H102K01D GRM15511H102K01D GRM1554C1H2R0Z01D GRM15511H102K01D GRM18811H102K01D GRM K01D GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D GRM15511H102K01D TEESV1106M8R VXSTD P/N K K K K K22803 K K K78028 K K K K K K78028 K K K K K K K22803 K K K K K K78028 K K K K K K K K K K K K K K K K K K78028 VERS. LOT SIDE LY DR C4 5 d6 d6 C6 D6 D6 D6 D6 D6 g6 g6 D6 D6 D6 f5 f5 E4 g4 g3 g3 g4 g3 g4 F-13

28 MIN Unit Parts List REF C 1353 C 1354 C 1355 C 1356 C 1358 C 1359 C 1361 C 1362 C 1363 C 1364 C 1365 C 1366 C 1367 C 1368 C 1368 C 1369 C 1370 C 1371 C 1373 C 1374 C 1375 C 1376 C 1377 C 1378 C 1379 C 1380 C 1381 C 1382 C 1383 C 1384 C 1385 C 1386 C 1387 C 1388 C 1389 C 1390 C 1391 C 1392 C 1393 C 1394 C 1395 C 1396 C 1397 C 1398 C 1399 C 1400 C 1401 C 1403 C 1404 C 1405 C 1406 C 1407 C 1408 C 1410 C 1411 C 1412 C 1413 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 C 1414 F-14 DESCRIPTION IP T.CP. FILM CP. FILM CP. FILM CP. VLUE 7pF 22uF pf 18pF 4pF 4pF 0.47uF 0.022uF 8pF 12pF 68pF 82pF 1uF 0.022uF 1uF 10pF 10pF pf 10pF 33pF 33pF 15pF 22pF 10pF 150pF 47pF 27pF 47pF 47pF 33pF 56pF 56pF 56pF 82pF 82pF 56pF 82pF 82pF 56pF 56pF 56pF 56pF 56pF V/W 500V 500V 500V TOL. MFR'S DESIG GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM1552C1H7R0Z01D GRM15511H102K01D GRM15511H102K01D TEESV2126M8R GRM15511H102K01D GRM1552C1H101JD01D GRM1552C1H180JZ01D GRM15511E103K01D GRM1552C1H4R0Z01D GRM1552C1H4R0Z01D GRM2111E474KC01L GRM18811H223K01D GRM15511H102K01D GRM1552C1H8R0Z01D GRM1552C1H120JZ01D GRM1552C1H680JZ01D GRM1552C1H820JD01D GRM15511H102K01D GRM18811C104K01D GRM15511H102K01D GRM15511H102K01D GRM18811C104K01D GRM15511H102K01D GRM18811C104K01D GRM15511H102K01D GRM18811H102K01D GRM2131E105K98L GRM18811H223K01D GRM18811H102K01D GRM2131E105K98L GRM1882C1HJ01D GRM1882C1HJ01D GRM1882C1H101J01D GRM1882C1HJ01D GRM1882C1H330J01D GRM18811C104K01D GRM15511H102K01D GRM18811C104K01D GRM1882C1H330J01D GRM1882C1H150J01D GRM1882C1H220J01D GRM1882C1HJ01D GRM1882C1H151J01D U32H0470J-T GRM1882C1H270J01D GRM18811C104K01D GRM18811H102K01D U32H0470J-T U32H0470J-T GRM15511H102K01D GRM15511E103K01D GRM1552C1H330JZ01D GRM1552C1H560JD01D GRM1552C1H560JD01D GRM1552C1H560JD01D GRM1552C1H820JD01D GRM1552C1H820JD01D GRM1552C1H560JD01D GRM1552C1H820JD01D GRM1552C1H820JD01D GRM1552C1H560JD01D GRM1552C1H560JD01D GRM1552C1H560JD01D GRM1552C1H560JD01D GRM1552C1H560JD01D VXSTD P/N K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K K VERS. US EXP C1 C3 D1 D2 H1 H2 LOT SIDE LY DR g3 e4 e4 E4 E4 e4 e3 e3 d3 f4 e4 D4 f4 D4 D4 e4 e4 e4 D4 D4 D4 D4 D3 D3 D3 E4 E4 e4 e4 3 4 C4 C4 C4 C3 D3 C3 C3 f3 f3 C3 C3 C3 C3 D2 D2 D1 G2 G2

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