EH041M90A. Important Note

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1 VERTEX STNDRD CO., LTD. 144/430 MHz Dual-and FM Transceiver with GPS Nakameguro, Meguro-Ku, Tokyo , Japan VERTEX STNDRD US Headquarters Walker Street, Cypress, C 90630, U.S.. YESU UK LTD. VX-8GR Unit 12, Sun Valley usiness Park, Winnall Close Winchester, Hampshire, SO23 0L, U.K. VERTEX STNDRD HK LTD. Technical Supplement Unit 5, 20/F., Seaview Centre, Hoi un Road, Kwun Tong, Kowloon, Hong Kong 2010 VERTEX STNDRD CO., LTD. Printed in Japan. EH041M90 VERTEX STNDRD (USTRLI) PTY., LTD. Normanby usiness Park, Unit 14/45 Normanby Road Notting Hill 3168, Victoria, ustralia Introduction This manual provides the technical information necessary for servicing the VX-8GR 144/430 MHz Dual-and FM Transceiver. Servicing this equipment requires expertise in handing 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 provided for each double-sided board in this transceiver. Each side of the board is referred to by the type of the majority of components installed on that side ("Side " or "Side "). 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 information in this manual to be correct, VERTEX STNDRD 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 1) This 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. 2) Risk of explosion if battery is replaced by an incorrect type. Dispose of used batteries according to the instructions. Contents Specification... 2 Exploded View & Miscellaneous Parts... 4 lock Diagram... 5 lignment... 7 oard Unit (Schematics, Layouts & Parts) RF Unit Circuit Diagram RF Unit Parts Layout RF Unit Parts List CNTL Unit Circuit Diagram CNTL Unit Parts Layout CNTL Unit Parts List CLE Unit Circuit Diagram CLE Unit Parts Layout CONNECT Unit Circuit Diagram CONNECT Unit Parts Layout MIN VCO Unit Circuit Diagram MIN VCO Unit Parts Layout MIN VCO Unit Parts List SU VCO Unit Circuit Diagram SU VCO Unit Parts Layout SU VCO Unit Parts List

2 Specifications GENERL (Main) and RX: MHz (ir and) MHz (144 MHz HM) MHz (VHF-TV) MHz (General 1) MHz (430 MHz HM) MHz (UHF-TV, Cellular locked) MHz (General 2, Cellular locked) (Sub) and RX: MHz (ir and) MHz (144 MHz HM) MHz (VHF-TV) MHz (General 1) MHz (430 MHz HM) MHz (UHF-TV) TX: MHz or MHz MHz or MHz Channel Steps: 5/6.25/8.33/10/12.5/15/20/25/50/100 khz Emission Type: F1D, F2, F2D, F3E Frequency Stability: ±5 ppm ( 10 C to +60 C [+14 F to +140 F]) Repeater Shift: ±600 khz (144 MHz), ±1.6/5.0/7.6 MHz (430 MHz) ntenna Impedance: 50 Ohms Supply Voltage: Nominal: 7.4 V DC (Negative Ground) Operating: 4-14 V DC (Negative Ground, EXT DC jack) Operating with Charging: V DC (Negative Ground, EXT DC jack) Current Consumption: 200 m (Mono and Receive) (@7.4 VDC, approx.) 240 m (Dual and Receive) 85 m (Mono and Receive, Standby, Saver Off) 120 m (Dual and Receive, Standby, Saver Off) 35 m (Mono and Receive, Standby, Saver On Save Ratio 1:5 ) 42 m (Dual and Receive, Standby, Saver On Save Ratio 1:5 ) 2 m (uto Power Off) 1.7 (144 MHz, 5W TX) 1.9 (430 MHz, 5W TX) Operating Temperature: 20 C to +60 C ( 4 F to +140 F) Case Size (W x H x D): 60 x 95 x 28 mm (2.4 x 3.7 x 1.1 ) w/o knob & antenna Weight (pprox.): 250 g (8.8 oz) with FN-101LI & antenna Frequency Ranges: 2

3 Specifications TRNSMITTER 1.0 W (@4.5 V: x 3) 5.0 W (@7.4 V or EXT DC) L3: 2.5 W, L2: 1 W, L1: 0.05 W (@7.4 V) ModulationType: F2E, F3E: Variable Reactance Maximum Deviation: ±5 khz (F2E/F3E) Spurious Emission: t least 60 d below (@ TX power HI/L3/L2) t least 50 d below (@ TX power L1) Microphone Impedance: 2k Ohms RF Power Output: RECEIVER Circuit Type: IF: Sensitivity: Selectivity: F Output: Double-Conversion Superheterodyne 1st: MHz ( (Main) and), MHz ( (Sub) and), 2nd: 450 khz 1.5 µv (TYP) for 10 d SN ( µv for 12 d SIND ( µv for 12 d SIND ( µv for 12 d SIND ( µv for 12 d SIND ( µv for 12 d SIND ( µv for 12 d SIND ( µv for 12 d SIND ( µv for 12 d SIND ( µv (TYP) for 12 d SIND ( µv (TYP) for 12 d SIND ( (Cellular locked) 12 khz/35 khz ( 6d/ 60d: NFM, M) Ohms for 10 % THD (@ 7.4 V DC) Ohms for 10 % THD (@ 13.8 V DC) Specifications are subject to change without notice, and are guaranteed within the 144/430 MHz amateur bands only. Cellular locked per FCC rule Part , may not receive 900 MHz mateur band. 3

4 Exploded View & Miscellaneous Parts CONNECT Unit R WINDOW SSY (YESU) CP (US) CP (EXP) FRONT CSE SSY R CP (SIDE) R RUER PCKING (LED) ➃ ➂ R MSK SHEET (MOTOR) ➃ R RCKET (MOTOR) R LIGHT GUIDE (LED) M VIRTION MOTOR R SPECIL NUT (M) R SUPPORT (PTT) R ENCODER KNO R RUER (PTT) R SHEET (M-TEX1131) R SPCER(PTT) R O RING (6.5X2) R KEY PD R GSKET (SP) Removing the Rear Case ssy 1. Please order the screw M2.6X30 (P/N; U ). 2. Remove the ENCODER KNO () and SPECIL SCREW (). 3. Remove the two screws (C). 4. Turn the M2.6x30 screw several times to affix the screw to the bottom right corner. 5. Press the top of the screw toward to a panel top to remove the rear case ssy from the front panel. M SPEKER(0.5W/16-ohm) ➃ R SP HOLDER ➃ ➃ ➃ R RUER PCKING (LCD) R (X2pcs) LIGHT GUIDE (WIN) Q LCD MODULE (C) R DIFFUSER SHEET (LCD) R LCD SHEET() (C) R SHDING SHEET(LCD) R LCD HOLDER R SHEET (LCD) R MIC HOLDER RUER R MSK SHEET (DT) ➅ R DOULE FCE (RUER) ➄ R MSK SHEET (EXT) () R (X2pcs) SPCER(SP) () screw M2.6X30 CNTL Unit ➅ R O RING (1X4.2) ➄ ➆ R (X2pcs) SHEET(CNT) R SHIELD CSE VCO ➆ R SHIELD CSE VCO SU VCO Unit R STUD R STUD MIN VCO Unit R SUPPORT(CONT) ➄ ➄ ➄ ➄ ➄ ➀ ➄ ➄ R GSKET RF Unit R STUD R STUD R PCKING PD (POW) CP SSIS SSY (w/ PCKING PD, O RING, SM CONNECTOR) CLE Unit Q GPS MODULE ➁ ➇ R O RING (4.8X1.9) 4 R SHEET (LEL) ➁ ➇ R SHEET Non-designated parts are available only as part of a designated assembly. R MSK SHEET (SW) RUER NTENN YH-72 C-DC DPTOR NC-86 (US) C-DC DPTOR NC-86C (EXP) ➀ ➁ ➂ ➃ ➄ ➅ ➆ ➇ U U U U U U U U Q Q Q PN HED SCREW M2X3NI #1 PN HED TPTITE- 2X10SUS #3 TPTITE SCREW 2X3.5(CP) TPPING SCREW 2X2.5NI PN HED TPTITE- 2X3NI #3 TPPING SCREW M2X3NI PN HED TPTITE- 1.4X3NI #3 PN HED SCREW M2X4NI#

5 lock Diagram 5

6 lock Diagram Note 6

7 lignment Introduction and Precautions Required Test Equipment The has been carefully aligned at the factory for the specified performance across the specified ama- RF Signal Generator with calibrated output level at 500 MHz teur bands. Realignment should therefore not be necessary except in the event of a component failure. ll component replacement and service should be performed only In-line by an authorized VERTEX STNDRD representative, or the warranty policy may be voided. The following procedures cover the sometimes critical and tedious adjustments that are not normally required Regulated DC Power Supply adjustable from 8 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; realign- ment should not be done until after the faulty component has been replaced. We recommend that servicing be performed only by authorized VERTEX STNDRD 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 STNDRD 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 STNDRD 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 mal- Deviation Meter (linear detector) Wattmeter with accuracy at 500 MHz 50-ohm, 10-W RF Dummy Load 8-ohm F Dummy Load to 16 V DC, 3 Counter: 0.2-ppm accuracy at 500 MHz F Signal Generator C Voltmeter Frequency DC Voltmeter: high impedance Sampling Coupler SIND Meter UHF lignment Preparation & Precautions 10-W RF dummy load and in-line wattmeter must be connected to the main antenna jack in all procedures that call for transmission, alignment is not possible with an antenna. fter completing one step, read the next step to see if the same test equipment is required. If not, remove the test equipment (except dummy load and wattmeter, if 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 68~86 F (20~30 C). When the transceiver is brought into the shop from hot or cold air, it should be allowed some time to come to room temperature before alignment. Whenever 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. Note: Signal levels in d referred to in the alignment procedure are based on 0 dµ=0.5 µv (closed circuit). function has been clearly pinpointed and any faulty components replaced, and the need for realignment determined to be absolutely necessary. 7

8 lignment Internal System lignment Routine This uses a programmed routine in the transceiver which simplifies many previously complex discrete component settings and adjustments with digitally-controlled settings via front panel buttons and LCD indications. 1. To begin, set the transceiver to the VFO mode on the "-and" in the "Mono" band mode. 2. Program a password for the lignment (H041M) according to the following procedure: 1) Press and hold the [MENU] key for one second to enter the Set mode. 2) Rotate the DIL knob to select Set Mode Item 16: CW ID. 3) Press the [MENU] key briefly to enable adjustment of this Set Mode Item. 4) Rotate the DIL knob to select "ON". 5) Press the [MODE] key, then press and hold in the [HM/RV] key for two seconds to clear any previous entry. 6) Program the password "H041M" using the DIL knob (select the character), and [ND]/[MODE] key (move the cursor). 7) When you have completed the password, press the [MENU] key briefly, then press the PTT switch to exit to normal operation. Remember to delete the password "H041M"from the Set Mode Item 16: CW ID when the alignment adjustments are finished by pressing and holding in the [HM/ RV] key for two seconds (as in step 5 above). 3. Press the [PWR] switch for two seconds to turn the transceiver "off". 4. Press and hold in the [HM/RV] key while powering the transceiver "on" again. The transceiver will enter the adjustment mode, and the display will show the first alignment setting. Thereafter, the frequencies used during alignment will automatically be set without action by the technician. s each transceiver is individually optimized at the factory, the precise settings for the transceiver on your bench may be slightly different. PLL Reference Frequency djustment (PLL REF) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "PLL REF". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the frequency counter setting is MHz (±100 Hz). Release the PTT switch, then press the [V/M] button (the " " icon will disappear from the display). 50-ohm RF Dummy Load In-Line Wattmeter Sampling Coupler Deviation Meter Frequency Counter Figure 1: TX lignment Setup RF Signal Generator 8-ohm F Load SIND Meter DIL [V/M] [V/M] [HM/RV] Figure 2: RX lignment Setup 8

9 lignment -and 430 MHz and djustment Receiver Sensitivity djustment (TUNE DC) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TUNE DC". Set the RF Signal Generator output to MHz, at a level of -10 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Rotate the DIL knob for maximum deflection on the SIND meter. Press the [V/M] button (the " " icon will disappear on the display). Squelch Hysteresis Confirmation (HIS SQL) Rotate the DIL knob to select the lignment Menu "HIS SQL". Confirm that the alignment value is "0". Squelch Threshold djustment (THLD SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "THLD SQL". Set the RF Signal Generator output to MHz, at a level of -12 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Squelch Threshold level Press the [V/M] button (the " " icon will disappear on the display). FM S-Meter S-1 djustment (S1 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "S1 LEVEL" with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of -7 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM SMeter S-1 level. Press the [V/M] button (the " " icon will disappear on the display). FM S-Meter Full-Scale djustment (S9 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "S9 LEVEL" with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of +20 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM SMeter Full Scale level. Press the [V/M] button (the " " icon will disappear on the display). Tight Squelch djustment (TIGH SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TIGH SQL". Set the RF Signal Generator output to MHz, at a level of -4 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to to store the Squelch Tight level. Press the [V/M] button (the " " icon will disappear on the display). 9

10 lignment TX Power (HI) djustment (HI POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. TX Power (L1) djustment (L1 POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "HI POWER". Press the [V/M] button (the " " icon will appear on the display). Rotate the DIL knob to select the lignment Menu "L1 POWER". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter reading is 4.9 W (±0.1 W). Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter setting is 50 mw (+30 mw/ -0 W). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). TX Power (L3) djustment (L3 POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "L3 POWER". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter setting is 2.5 W (±0.1 W). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). TX Power (L2) djustment (L2 POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "L2 POWER". Press the [V/M] button (the " " icon will appear on the display). TX Deviation djustment (MX DEV) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "MX DEV". Set the F Signal Generator output to 50 mvrms with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Deviation Meter setting is 4.2 khz ± 0.05 khz (US version) or 4.5 khz ± 0.05 khz (EXP version). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter setting is 1.0 W (±0.1 W). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). CTCSS TX Deviation djustment (100.0Hz) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "100.0Hz". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit without the microphone input and rotate the DIL knob so that the Deviation Meter setting is 0.65 khz (±0.05 khz). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). 10

11 lignment DCS TX Deviation djustment (DCS 023) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "DCS 023". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit without the microphone input and rotate the DIL knob so that the Deviation Meter setting is 0.65 khz (±0.05 khz). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). 11

12 lignment -and 144 MHz and djustment Press the [ND] key to select the 144 MHz mateur band. Receiver Sensitivity djustment (TUNE DC) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TUNE DC". Set the RF Signal Generator output to MHz, at a level of -10 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Rotate the DIL knob for maximum deflection on the SIND meter. Press the [V/M] button (the " " icon will disappear on the display). Squelch Hysteresis Confirmation (HIS SQL) Rotate the DIL knob to select the lignment Menu "HIS SQL". Confirm that the alignment value is "0". Squelch Threshold djustment (THLD SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "THLD SQL". Set the RF Signal Generator output to MHz, at a level of -12 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Squelch Threshold level. Press the [V/M] button (the " " icon will disappear on the display). Tight Squelch djustment (TIGH SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TIGH SQL". Set the RF Signal Generator output to MHz, at a level of +4 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Squelch Tight level. Press the [V/M] button (the " " icon will disappear on the display). FM S-Meter S-1 djustment (S1 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "S1 LEVEL" with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of -7 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM S-Meter S-1 level. Press the [V/M] button (the " " icon will disappear on the display). FM S-Meter Full-Scale djustment (S9 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "S9 LEVEL" with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of +20 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM S-Meter Full Scale level. Press the [V/M] button (the " " icon will disappear on the display). 12

13 lignment Wide FM S-Meter S-1 djustment (S1 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu TX Power (L3) djustment (L3 POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "S1 LEVEL" with "WFM" icon. Set the RF Signal Generator output to MHz, at a level of 0 dµ, ±20 khz deviation with a 1 khz audio "L3 POWER". Press the [V/M] button (the " " icon will appear on the display). tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Wide FM S- Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter setting is 2.5 W (±0.1 W). Release the PTT switch, then press the [V/M] button Meter S-1 level. Press the [V/M] button (the " " icon will disappear on the display). Wide FM S-Meter Full-Scale djustment (S9 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "S9 LEVEL" with "WFM" icon. Set the RF Signal Generator output to MHz, at a level of +20 dµ, ±20 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Wide FM SMeter Full Scale level. Press the [V/M] button (the " " icon will disappear on the display). TX Power (HI) djustment (HI POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "HI POWER". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter setting is 5.0 W (±0.1 W). Release the PTT switch, then press the [V/M] button (the " " icon will disappear on the display). TX Power (L2) djustment (L2 POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "L2 POWER". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter setting is 1.0 W (±0.1 W). Release the PTT switch, then press the [V/M] button (the " " icon will disappear on the display). TX Power (L1) djustment (L1 POWER) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "L1 POWER". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Power Meter setting is 50 mw (+30 mw/ -20 mw) (VX-8E Type: 0.2W±0.05W). Release the PTT switch, then press the [V/M] button (the " " icon will disappear on the display). (the " " icon will disappear on the display). 13

14 lignment -and 430 MHz and djustment TX Deviation djustment (MX DEV) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "MX DEV". Set the F Signal Generator output to 50 mvrms with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit and rotate the DIL knob so that the Deviation Meter setting is 4.2 khz ± 0.2 khz (US version) or 4.5 khz ± 0.2 khz (EXP/EU versions). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). CTCSS TX Deviation djustment (100.0Hz) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "100.0Hz". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit without the microphone input and rotate the DIL knob so that the Deviation Meter setting is 0.65 khz (±0.05 khz). Release the PTT switch, and then press the [V/M] button (the " " icon will disappear on the display). DCS TX Deviation djustment (DCS 023) Connect the test equipment as shown in Figure 1: TX lignment Setup. Rotate the DIL knob to select the lignment Menu "DCS 023". Press the [V/M] button (the " " icon will appear on the display). Press the PTT switch to transmit without the microphone input and rotate the DIL knob so that the Deviation Meter setting is 0.65 khz (±0.05 khz). Release the PTT switch, then press the [V/M] button (the " " icon will disappear on the display). 14 Press and hold in the [] key for two seconds to change the operating band to the "-and". Note: When the transceiver recalls lignment Menu "PLL REF", the [] key operation is ignored. In this case, rotate the DIL knob to select an lignment Menu other than "PLL REF". Receiver Sensitivity djustment (TUNE DC) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TUNE DC". Set the RF Signal Generator output to MHz, at a level of -10 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Rotate the DIL knob for maximum deflection on the SIND meter. Press the [V/M] button (the " " icon will disappear on the display). Squelch Hysteresis Confirmation (HIS SQL) Rotate the DIL knob to select the lignment Menu "HIS SQL". Confirm that the alignment value is "0". Squelch Threshold djustment (THLD SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "THLD SQL". Set the RF Signal Generator output to MHz, at a level of -11 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Squelch Threshold level. Press the [V/M] button (the " " icon will disappear on the display).

15 lignment Tight Squelch djustment (TIGH SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu FM S-Meter Full-Scale djustment (S9 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TIGH SQL". Set the RF Signal Generator output to MHz, at a level of -3 dµ, ±3.5 khz deviation with a 1 khz au- "S9 LEVEL" with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of +20 dµ, ±3.5 khz deviation with a 1 khz dio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Squelch audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM S-Meter Tight level. Press the [V/M] button (the " " icon will disappear on the display). Full Scale level. Press the [V/M] button (the " " icon will disappear on the display). NOTICE: Do not touch the following lignment Menus: "PLL REF" "HI POWER" "L3 POWER" "L2 POWER" "L1 POWER" "MX DEV" "HI POWER" "100.0Hz" "DCS 023" FM S-Meter S-1 djustment (S1 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "S1 LEVEL" with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of -7 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM S-Meter S-1 level. Press the [V/M] button (the " " icon will disappear on the display). 15

16 lignment -and 144 MHz and djustment Press the [ND] key to select the 144 MHz mateur band. Receiver Sensitivity djustment (TUNE DC) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TUNE DC". Tight Squelch djustment (TIGH SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "TIGH SQL". Set the RF Signal Generator output to MHz, at a level of -3 dµ, ±3.5 khz deviation with a 1 khz audio tone. Set the RF Signal Generator output to MHz, at a level of -10 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the Squelch Tight level. the display). Rotate the DIL knob for maximum deflection on the SIND meter. Press the [V/M] button (the " " icon will disappear on the display). Press the [V/M] button (the " " icon will disappear on the display). Squelch Hysteresis Confirmation (HIS SQL) Rotate the DIL knob to select the lignment Menu "HIS SQL". Confirm that the alignment value is "0". Squelch Threshold djustment (THLD SQL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "THLD SQL". Set the RF Signal Generator output to MHz, at a level of -11 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on FM S-Meter S-1 djustment (S1 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu "S1 LEVEL" with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of -7 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM S-Meter S-1 level. Press the [V/M] button (the " " icon will disappear on the display). the display). Press the [F/W] key two times to store the Squelch Threshold level. Press the [V/M] button (the " " icon will disappear on the display). 16

17 lignment FM S-Meter Full-Scale djustment (S9 LEVEL) Connect the test equipment as shown in Figure 2: RX lignment Setup. Rotate the DIL knob to select the lignment Menu " " with "NFM" icon. Set the RF Signal Generator output to MHz, at a level of +20 dµ, ±3.5 khz deviation with a 1 khz audio tone. Press the [V/M] button (the " " icon will appear on the display). Press the [F/W] key two times to store the FM S-Meter Full Scale level. Press the [V/M] button (the " " icon will disappear on the displayy). NOTICE: Do not touch the following lignment Menus: "PLL REF" "HI POWER" "L3 POWER" "L2 POWER" "L1 POWER" "MX DEV" "HI POWER" "100.0Hz" "DCS 023" This completes the internal alignment routine for all bands. To save all settings and exit, press the [HM/RV] button. 17

18 lignment Note 18

19 Circuit Diagram RF Unit 19

20 RF Unit Parts Layout C a b c 1 2SK3541 (Q1036, 1038, 1104) EM3 (3) (Q1006, 1014, 1078, 1081, 1093) DT114TE (Q1041, 1043, 11158) CPH6102-TL () (Q1077) MT3S36FS (21) (Q1009, 1010, 1018) 2SK3475 (Q1042) UMW1 (Q1079) NJM2552V-TE1 (Q1046, 1047) NJU7007F3-TE1 (Q1096, 1098) 2SK3476 (Q1052) LM2904PWR (Q1097) 2SJ364-P(4M) (Q1055, 1060) XC DR (Q1099) RTM002P02 (Q1065,1067) RZM002P02 (Q1110) UMD2N TR (D2) (Q1108, 1109) Side Side HN2D01FU (1) (D8094) 20 2S2029 (Q1080, 1094) DTC144EM T2L (Q1008, 1013, 1049, 1075, 1083, 1106, 1107, 1113, 1114) DN222M (D1060, 1062, 1086) 1SS385 (09) (D1087) 1SS385FV (09) (D1005) 1SS362 () (D1002, 1003) D221M (D1063, 1064, 1072, 1073, 1074, 1075) M1501PFV1-G-ND-EFE1 (Q1017, 1044) TC74VHC595FK (Q1086, 1087) 2SC4915-O (QO) (Q1028, 1034, 1037, 1040, 1045, 1116, 1117) 2SC5226 (R22) (Q1031) 2SC5374 (N) (Q1026, 1027, 1064, 1076) 2SC5555ZD (ZD) (Q1001, 1002, 1015, 1016, 1019, 1020, 1021, 1022, 1100) 2SC5658 (Q1050, 1051, 1066, 1073, 1074, 1084, 1085) EMG2 (G2) (Q1082, 1095)

21 RF Unit Parts List REF. DESCRIPTION VLUE V/W TOL. MFR S DESIG PC with Components (W/ MIN VCO and SU VCO) C 1001 C 1002 C 1003 C 1004 C 1004 C 1005 C 1006 C 1010 C 1011 C 1013 C 1014 C 1015 C 1016 C 1018 C 1019 C 1020 C 1021 C 1022 C 1023 C 1031 C 1032 C 1036 C 1037 C 1038 C 1039 C 1040 C 1041 C 1042 C 1043 C 1044 C 1045 C 1046 C 1047 C 1048 C 1050 C 1051 C 1052 C 1053 C 1054 C 1055 C 1056 C 1058 C 1059 C 1060 C 1061 C 1062 C 1066 C 1067 C 1068 C 1069 C 1070 C 1071 C 1072 C 1073 C 1074 Printed Circuit oard IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. 2pF 68pF 68pF 33pF 82pF 82pF 2pF 5pF 3pF 7pF 100pF 33pF 100pF 15pF 10pF 27pF 3pF 8pF 4pF 220pF 0.75pF 56pF 4pF 22pF 220pF 0.75pF 56pF 22pF 3pF 18pF 1pF 2pF 18pF 4pF CK CK CJ CJ CK CK CJ CK CK UMK105CK020CV-F GRM15511E103K01D UMK105680JV-F UMK105680JV-F GRM1552C1H330JZ01D GRM1552C1H820JD01D GRM1552C1H820JD01D UMK105CK020CV-F UMK105050CV-F UMK105CJ030CV-F UMK105070DV-F GRM1552C1H101JD01D GRM1552C1H330JZ01D GRM1552C1H101JD01D GRM15511H102K01D GRM1552C1H150JZ01D GRM1552C1H100JZ01D GRM1552C1H270JZ01D GRM15511E103K01D GRM15511H102K01D GRM15511E103K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D UMK105CJ030CV-F GRM1552C1H8R0DZ01D UMK105040CV-F GRM15511H102K01D GRM15511H102K01D GRM1552C1H221J01D GRM1554C1HR75Z01D UMK105560JV-F UMK105040CV-F GRM15511H102K01D GRM15511H102K01D UMK105220JV-F GRM1552C1H221J01D GRM1554C1HR75Z01D UMK105560JV-F GRM15511H102K01D UMK105220JV-F GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D UMK105CJ030CV-F GRM1552C1H180JZ01D UMK105CK010CV-F UMK105CK020CV-F GRM1552C1H180JZ01D UMK105040CV-F GRM15511H102K01D VXSTD P/N CP CP CP CP FR021000D 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. VERSION 2, DST:US VERSION 1, DST:EXP VERSION 2, DST:EXP VERSION 3, DST:EXP

22 RF Unit REF. C 1075 C 1076 C 1077 C 1078 C 1078 C 1079 C 1080 C 1081 C 1082 C 1082 C 1083 C 1084 C 1085 C 1085 C 1086 C 1086 C 1097 C 1098 C 1099 C 1100 C 1101 C 1102 C 1103 C 1104 C 1105 C 1107 C 1108 C 1109 C 1110 C 1111 C 1113 C 1114 C 1115 C 1116 C 1118 C 1119 C 1120 C 1121 C 1122 C 1123 C 1124 C 1132 C 1133 C 1134 C 1136 C 1137 C 1138 C 1139 C 1140 C 1141 C 1142 C 1143 C 1144 C 1145 C 1146 C 1150 C 1151 C 1152 C 1153 C DESCRIPTION IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP T.CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. VLUE V/W 4pF 56pF 4pF 8pF 4pF 4pF 56pF 8pF 4pF 8pF 4pF 8pF 4pF 100pF 100pF 100pF 0.33uF 4.7uF 5pF 0.5pF 5pF 2pF 1pF 56pF 3pF 2pF 1pF 56pF 4pF 9pF 2pF 9pF 0.5pF 1pF 7pF 0.047uF 7pF 5pF 33pF 20V 20V TOL. CK CK CK CJ CK CK CK CK CK MFR S DESIG UMK105040CV-F UMK105560JV-F UMK105040CV-F GRM1552C1H8R0DZ01D UMK105040CV-F GRM15511H102K01D UMK105040CV-F UMK105560JV-F GRM1552C1H8R0DZ01D UMK105040CV-F GRM15511H102K01D GRM15511H102K01D GRM1552C1H8R0DZ01D UMK105040CV-F GRM1552C1H8R0DZ01D UMK105040CV-F GRM K01D GRM1552C1H101JD01D GRM1552C1H101JD01D GRM1552C1H101JD01D SKF-1D104M-RP GRM15510J334KE01D GRM15511H102K01D TEESVP0J475M8R SKF-1D104M-RP UMK105050CV-F GRM1554C1HR50Z01D UMK105050CV-F UMK105CK020CV-F UMK105CK010CV-F UMK105560JV-F UMK105CJ030CV-F UMK105CK020CV-F UMK105CK010CV-F UMK105560JV-F UMK105040CV-F UMK105090DV-F UMK105CK020CV-F UMK105090DV-F GRM1554C1HR50Z01D UMK105CK010CV-F UMK105070DV-F GRM15511H102K01D GRM K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM K01D GRM15511H102K01D GRM K01D GRM K01D GRM K01D UMK105070DV-F GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D UMK105050CV-F GRM15511E103K01D GRM1552C1H330JZ01D GRM15511E103K01D 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

23 RF Unit REF. C 1159 C 1160 C 1161 C 1162 C 1163 C 1164 C 1165 C 1166 C 1170 C 1172 C 1174 C 1175 C 1176 C 1177 C 1178 C 1181 C 1183 C 1184 C 1185 C 1186 C 1187 C 1188 C 1189 C 1190 C 1191 C 1195 C 1197 C 1198 C 1199 C 1201 C 1202 C 1203 C 1204 C 1205 C 1206 C 1207 C 1207 C 1208 C 1209 C 1210 C 1211 C 1213 C 1214 C 1215 C 1216 C 1217 C 1218 C 1219 C 1220 C 1221 C 1222 C 1223 C 1226 C 1226 C 1227 C 1227 C 1228 C 1229 C 1230 C 1231 DESCRIPTION IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. VLUE V/W 33pF 10pF 33pF 5pF 12pF 0.22uF 0.22uF 15pF 18pF 470pF 4.7uF 4.7uF 10pF 0.047uF 4.7uF 4.7uF 1uF 0.47uF 4.7uF 100pF 100pF 100pF 10pF 4.7uF 220pF 470pF 68pF 470pF 68pF 4V 4V 4V TOL. J J J MFR S DESIG GRM1552C1H330JZ01D GRM15511E103K01D GRM1552C1H100JZ01D GRM1552C1H330JZ01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D UMK105050CV-F GRM15511E103K01D GRM15511E103K01D GRM1552C1H120JZ01D GRM15511E103K01D GRM KE18D GRM15511E103K01D GRM15511E103K01D GRM KE18D GRM1552C1H150JZ01D GRM1552C1H180JZ01D GRM K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D GRM15511H102K01D UMK105471KW-F GRM15511E103K01D JMK107J475M-T MK105J475MV-F GRM1552C1H100JZ01D GRM K01D TEESVP0J475M8R MK105J475MV-F GRM15530J105KE18D GRM15530J474KE18D GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D TEESVP0J475M8R GRM15511H102K01D GRM15511E103K01D GRM1552C1H101JD01D GRM1552C1H101JD01D GRM1552C1H101JD01D GRM15511E103K01D GRM1552C1H100JZ01D GRM K01D GRM15511H102K01D MK105J475MV-F TMK105221JV-F UMK105471KW-F UMK105680JV-F UMK105471KW-F UMK105680JV-F GRM15511E103K01D GRM15511E103K01D GRM K01D GRM15511E103K01D 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 VERS. LOT. SIDE LY DR C

24 RF Unit REF. C 1232 C 1233 C 1235 C 1235 C 1237 C 1237 C 1238 C 1239 C 1240 C 1241 C 1242 C 1243 C 1244 C 1245 C 1246 C 1247 C 1250 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 1266 C 1267 C 1270 C 1271 C 1272 C 1273 C 1274 C 1275 C 1276 C 1277 C 1279 C 1280 C 1281 C 1281 C 1282 C 1283 C 1285 C 1286 C 1288 C 1289 C 1290 C 1291 C 1293 C 1294 C 1295 C 1296 C 1297 C 1298 C 1299 C DESCRIPTION IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP T.CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. VLUE V/W 100pF 470pF 68pF 470pF 68pF 12pF 47pF 15pF 15pF 7pF 15pF uF uF 0.047uF 0.022uF uF uF 100pF 82pF 10uF 22pF 33pF 0.047uF 0.33uF 22uF uF 0.047uF uF 0.033uF 16V 20V 20V TOL. MFR S DESIG GRM K01D GRM1552C1H101JD01D UMK105471KW-F UMK105680JV-F UMK105471KW-F UMK105680JV-F GRM15511E103K01D GRM15511E103K01D GRM K01D GRM15511E103K01D GRM K01D GRM15511E103K01D GRM1552C1H120JZ01D GRM1552C1H470JZ01D GRM1552C1H150JZ01D GRM1552C1H150JZ01D GRM15511H102K01D GRM15511H102K01D UMK105070DV-F GRM1552C1H150JZ01D GRM15511H102K01D GRM15511H472K01D GRM15511E562K01D GRM15511H102K01D GRM15511E103K01D GRM K01D GRM K01D GRM15511E103K01D GRM15511E103K01D EMK105223KW-F GRM15511E562K01D GRM15511H102K01D GRM K01D GRM15511H472K01D GRM K01D GRM15511H102K01D GRM15511E103K01D GRM1552C1H101JD01D GRM1552C1H820JD01D GRM15511E103K01D TEESVP1106M8R GRM15511H102K01D UMK105220JV-F GRM1552C1H330JZ01D GRM15511E103K01D GRM15511H102K01D GRM15511H102K01D GRM K01D GRM15510J334KE01D TEESVP0J226M-8R SKF-1D104M-RP SKF-1D104M-RP GRM K01D UMK105222KW-F GRM K01D GRM15511E103K01D GRM15511E103K01D GRM K01D UMK105222KW-F GRM K01D 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 VERS. LOT. SIDE LY DR

25 RF Unit REF. C 1301 C 1302 C 1303 C 1304 C 1305 C 1305 C 1306 C 1307 C 1309 C 1310 C 1312 C 1317 C 1318 C 1320 C 1321 C 1322 C 1323 C 1324 C 1325 C 1326 C 1328 C 1329 C 1330 C 1331 C 1331 C 1332 C 1333 C 1333 C 1335 C 1336 C 1336 C 1337 C 1338 C 1338 C 1343 C 1346 C 1347 C 1348 C 1349 C 1350 C 1351 C 1352 C 1353 C 1355 C 1356 C 1357 C 1358 C 1359 C 1360 C 1362 C 1363 C 1364 C 1365 C 1366 C 1367 C 1368 C 1369 C 1370 C 1370 C 1371 DESCRIPTION IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP T.CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. VLUE V/W 0.047uF 12pF 15pF 33pF 12pF 0.5pF 0.5pF 56pF 0.047uF 4.7uF 1pF 12pF 68uF 27pF 12pF 39pF 10pF 18pF 3pF 2pF 15pF 7pF 4.7uF 47uF 4.7uF 10uF 47uF uF uF 0.5pF 0.5pF 4.7uF 15pF 1pF 15pF 7pF 100pF 22pF 33pF 9pF 4V 4V 4V 4V TOL. CK CK J CK CJ CK J CK CK CK MFR S DESIG GRM K01D GRM15511E103K01D GRM K01D GRM1552C1H120JZ01D GRM1552C1H150JZ01D GRM1552C1H330JZ01D GRM1552C1H120JZ01D GRM1554C1HR50Z01D GRM1554C1HR50Z01D GRM1882C1H560J01D GRM15511H102K01D GRM15511H102K01D GRM K01D MK105J475MV-F GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D GRM15511H102K01D GRM15511H102K01D UMK105CK010CV-F GRM1552C1H120JZ01D TEESV21686M8R GRM15511H102K01D GRM1552C1H270JZ01D GRM1552C1H120JZ01D UMK105390JV-F GRM1552C1H100JZ01D GRM1552C1H180JZ01D GRM15511H102K01D UMK105CJ030CV-F UMK105CK020CV-F GRM15511H102K01D GRM1552C1H150JZ01D UMK105070DV-F GRM15511H102K01D MK105J475MV-F GRM15511H102K01D TEESVP0G476M8R JMK107J475M-T GRM15511H102K01D TEESVP0J106M8R GRM15511H102K01D TEESVP0G476M8R GRM15511H102K01D GRM K01D GRM K01D GRM15511E682K01D GRM15511E682K01D GRM1554C1HR50Z01D GRM1554C1HR50Z01D GRM15511E103K01D JMK107J475M-T GRM1552C1H150JZ01D UMK105CK010CV-F GRM1552C1H150JZ01D UMK105070DV-F GRM1552C1H101JD01D UMK105220JV-F GRM1552C1H330JZ01D GRM1552C1H9R0DZ01D 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 VERS. EXPORT LOT. SIDE LY DR

26 RF Unit REF. DESCRIPTION C 1371 C 1371 C 1371 C 1372 C 1373 C 1374 C 1376 C 1385 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 1402 C 1403 C 1404 C 1405 C 1406 C 1406 C 1412 C 1413 C 1414 C 1415 C 1416 C 1417 C 1420 C 1422 C 1423 C 1424 C 1425 C 1425 C 1426 C 1427 C 1428 C 1435 C 1442 C 1443 C 1444 C 1445 C 1449 C 1450 C 1457 C 1458 C 1460 C 1462 C 1464 C 1466 C 1467 C 1468 C 1469 IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. L.ELECTRO.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. 26 VLUE V/W 10pF 9pF 10pF 6pF 100pF 12pF 18pF 2pF 10uF uF 820pF 820pF 820pF 820pF 4.7uF 4.7uF 18pF 0.5pF 47pF 7pF 39pF 15pF 18pF 10uF 2pF 10pF 47pF 56pF 22pF 10pF 5pF 5pF 22pF 3pF 47uF 0.22uF 16V 4V TOL. CK CK CK CJ MFR S DESIG GRM1552C1H100JZ01D GRM1552C1H9R0DZ01D GRM1552C1H100JZ01D GRM1552C1H6R0DZ01D GRM1552C1H101JD01D GRM1552C1H120JZ01D GRM1552C1H180JZ01D UMK105CK020CV-F GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D TEESVP0J106M8R GRM15511H122K01 GRM15511H821K01D GRM15511H821K01D GRM15511H821K01D GRM15511H821K01D JMK107J475M-T JMK107J475M-T GRM15511H102K01D GRM1552C1H180JZ01D GRM1554C1HR50Z01D GRM1552C1H470JZ01D UMK105070DV-F UMK105390JV-F GRM1552C1H150JZ01D GRM1552C1H180JZ01D GRM15511H102K01D GRM15511E103K01D RV4-16V100MD46-RR2 GRM15511H102K01D UMK105CK020CV-F GRM15511E103K01D GRM1552C1H100JZ01D GRM K01D GRM K01D GRM1552C1H470JZ01D GRM1552C1H560JD01D UMK105220JV-F GRM15511E103K01D GRM1552C1H100JZ01D GRM15511H102K01D GRM15511E103K01D UMK105050CV-F UMK105050CV-F GRM15511H102K01D GRM15511H102K01D UMK105220JV-F UMK105CJ030CV-F TEESVP0G476M8R GRM KE18D GRM15511H102K01D GRM15511H102K01D GRM15511E103K01D GRM15511E103K01D GRM15511E103K01D GRM15511H102K01D 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 VERS. EXPORT US US EXPORT LOT. SIDE LY DR c c4 c4 c4

27 RF Unit REF. C 1471 C 1472 C 1473 C 1474 C 1476 C 1477 C 1478 C 1479 C 1486 C 1496 C 1499 C 1503 C 1505 C 1508 C 1509 C 1510 C 1511 C 1517 CD1001 CD1002 CF1002 CF1003 D 1001 D 1002 D 1003 D 1004 D 1005 D 1011 D 1012 D 1013 D 1014 D 1015 D 1016 D 1017 D 1018 D 1019 D 1020 D 1021 D 1022 D 1023 D 1026 D 1027 D 1028 D 1029 D 1030 D 1031 D 1032 D 1033 D 1034 D 1035 D 1036 D 1037 D 1043 D 1044 D 1045 D 1046 D 1047 D 1048 D 1052 D 1053 DESCRIPTION IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP T.CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. IP CP. CERMIC DISC CERMIC DISC CERMIC FILTER CERMIC FILTER VLUE V/W 100pF 100pF 1uF 47uF 4.7uF 9pF 11pF 11pF 6pF 4V TOL. MFR S DESIG GRM1552C1H101JD01D GRM1552C1H101JD01D GRM15530J105KE18D TEESVP0G476M8R GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D GRM15511H102K01D TEESVP0J475M8R GRM K01D GRM15511H102K01D GRM15511H102K01D GRM K01D GRM15511H102K01D GRM1552C1H9R0DZ01D GRM1552C1H110JZ01D GRM1552C1H110JZ01D GRM1552C1H6R0DZ01D CDL450KCY07-0 CDL450KCY07-0 LTWC450F LTWC450E R751G-40T2R 1SS362(TE85R.F) 1SS362(TE85R.F) R070M-30TR 1SS385FV(TPL3.Z) M1FM JDP2S04E(TPE) HVD358 KRF-E HVD358 KRF-E JDP2S04E(TPE) HVD358 KRF-E 1SV325(TPH3.F) 1SV325(TPH3.F) HVD358 KRF-E 1SV308(TPE) 1SV308(TPE) 1SV325(TPH3.F) 1SV325(TPH3.F) 1SV331(TPH3.F) 1SV331(TPH3.F) HVD358 KRF-E JDV2S07FS(TPL3.F) JDV2S07FS(TPL3.F) HVD358 KRF-E JDV2S07FS(TPL3.F) 1SV325(TPH3.F) 1SV325(TPH3.F) 1SV325(TPH3.F) 1SV325(TPH3.F) JDV2S07FS(TPL3.F) HVD358 KRF-E 1SV325(TPH3.F) 1SV325(TPH3.F) HVD358 KRF-E 1SV325(TPH3.F) 1SV325(TPH3.F) 1SS400G T2R 1SS400G T2R VXSTD P/N K K K K K K K K K H H H H G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G G VERS. LOT. SIDE LY DR C

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