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7

Circuit Description

Receive Signal Path

Incoming RF signal is from the antenna jack is de-
livered to the Main Unit and passed through the low-
pass filter network consisting capacitors C1213,
C1236, C1239, & C1241 and coils L1017, L1018, &
L1019, antenna switching diode 

D1020

 and 

D1028

(both 

RLS135

), and varactor-tuned band-pass filter

consisting of capacitors C1248, C1249, C1250, C1251,
C1252, & C1268, coils L1020, L1021, & L1024, and
diodes 

D1024

 and 

D1025

 (both 

HVC350B

), before

delivery to the RF amplifier 

Q1045

 (

3SK296ZQ

). The

amplified RF signal is passed through the another
varactor-tuned band-pass filter consisting of capac-
itors C1198, 1199, 1200, & 1218, coils L1012 and L1015,
and diodes 

D1017

 and 

D1021

 (both 

HVC350B

), then

applied to the 1st mixer 

Q1037

 (

3SK296ZQ

) along

with the first local signal from the PLL circuit.

The first local signal is generated between 114.3 MHz
and 152.3 MHz by the VCO, which consists of 

Q1009

(

2SC5231

) and varactor diode 

D1002

 (

HVC350B

)

according to the receiving frequency.

IF and Audio Circuits

The 21.7 MHz first IF signal is applied to the mono-
lithic crystal filters 

XF1001

 and 

XF1002

 which strip

away unwanted mixer products, and the IF signal is
applied to the first IF amplifier 

Q1032

 (

2SC4400

).

The amplified first IF signal is then delivered to the
FM IF subsystem IC 

Q1028

 (

NJM2591V

), which con-

tains the second mixer, limiter amplifier, noise am-
plifier, and FM detector.

The second local signal is generated by 21.25 MHz
crystal 

X1001

, produces the 450 kHz second IF sig-

nal when mixed with first IF signal within 

Q1028

(

NJM2591V

).

The 450 kHz second IF signal is applied to the ce-
ramic filter 

CF1001

 (for Narrow FM) or 

CF1002

 (for

Wide FM) which strip away unwanted mixer prod-
ucts to the ceramic discriminator 

CD1001

 which re-

moves any amplitude variations in the 450 kHz IF
signal before detection of speech.

The detected audio from the 

Q1028

 (

NJM2591V

)

passes through the de-emphasis circuit consisting
of resistors R1082 & R1113, and capacitors C1120 &
C1122, to the audio mute gate 

Q1034

 (

2SJ364

)

The audio signal passes through a band-pass filter
consisting of 

Q1046

 and 

Q1047

 (both 

2SC4154

), and

the audio mute gate 

Q1039

 (

2SJ347

), to the audio

VR which adjusts the audio sensitivity to compen-
sate for audio level variations. The adjusted audio
signal is delivered to the audio amplifier 

Q1035

(

LA4425A

) which provides up to 3 Watts, to the ex-

ternal speaker jack or a 4-Ohm loudspeaker.

Squelch Control

When no carrier received, the noise signal from

Q1028

  (

N J M 2 5 9 1 V

) is amplified by 

Q1051

(

2SC4617

), and is detected by 

D1011

 and D1013

(both 

DA221

). The resulting DC voltage passes

through the SQL knob to main CPU 

Q2002

(

HD64F2266TF13

). While no carrier is received,

main CPU 

Q2002

 (

HD64F2266TF13

) control 

Q1048

(

CD4094BPWR

), thus, audio mute gate 

Q1034

(

2SJ364

) and 

Q1039

 (

2SJ347

) turns “OFF” to dis-

able the audio output from the speaker.

Transmit Signal Path

The speech signal from the microphone is amplified
by 

Q1049

 (

LA2902PWR

). The amplified speech sig-

nal is subjected to the low-pass filter network 

Q1049

(

LA2902PWR

) to deviation controlled by 

Q1043

(

M62364FP

).

The adjusted speech signal from 

Q1043

 (

M62364FP

)

is delivered to VCO 

Q1009

 (

2SC5231

) which fre-

quency modulates the transmitting VCO made up
of 

D1004

 (

HSC277

).

The modulated transmit signal passes through buff-
er amplifier 

Q1010

 and 

Q1023

 (both 

2SC5374

).

The transmit signal applied to the drive amplifier

Q1026

 (

2SC5226

), then finally amplified by power

amplifier module 

Q1030

 (

RA60H1317M

) up to 50

Watts. The APC circuit controls the 

Q1030

(

RA60H1317M

) power amplifier’s gain.

The 50 Watts RF signal passes through low-pass fil-
ter network consisting of Capacitors C1210 and
C1211 and coil L1013, antenna switch 

D1018

 and

D1019

 (both 

XB15A709

), and another low-pass fil-

ter network consisting capacitors C1213, C1236,
C1239, & C1241 and coils L1017, L1018, & L1019, and
then deliver to the ANT jack.

Содержание FT-1802M

Страница 1: ...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 informat...

Страница 2: ...xD 5 5 x 1 6 x 5 7 140 x 40 x 146 mm w o knobs Weight Approx 2 6 lb 1 2 kg Transmitter Output Power 50 W 25 W 10 W 5 W Modulation Type Variable Reactance Maximum Deviation 5 kHz 2 5 kHz Spurious Radia...

Страница 3: ...4220 RA60H1317M1 T9206876 FT 1802M T9206955 FT 1802E WIRE ASSY CP8422001 CASE ASSY w SP NET S8002087 DESCRIPTION MICROPHONE MH 48A6J DC CABLE FT 1802M DC CABLE FT 1802E SPARE FUSE 15 A FT 1802M SPARE...

Страница 4: ...4 Note...

Страница 5: ...5 Block Diagram...

Страница 6: ...6 Connection Diagram...

Страница 7: ...on of speech The detected audio from the Q1028 NJM2591V passes through the de emphasis circuit consisting of resistors R1082 R1113 and capacitors C1120 C1122 to the audio mute gate Q1034 2SJ364 The au...

Страница 8: ...ion of the PLL IC Q1011 MB15A01PFV1 which divided according to the frequency dividing data that is associated with the setting frequency input from the main CPU Q2002 HD64F2266TF13 It is then sent to...

Страница 9: ...aused by unauthorized attempts at re alignment are not covered by the warranty policy Also Vertex Standard reserves the right to change circuits and alignment procedures in the interest of improved pe...

Страница 10: ...erformed using a front panel software based procedure To perform alignment of the transceiver it must first be placed in the Alignment Mode in which the adjustments will be made and then stored into m...

Страница 11: ...Press the PTT switch to activate the transmitter adjust the DIAL knob so that the RF Power Meter reading is 50 W 2 0W Press the D MR MW key TX Power Low 3 Rotate the DIAL knob to set the alignment par...

Страница 12: ...eading is 0 6 kHz 0 05 kHz Press the D MR MW key Alignment DCS TX Deviation Rotate the DIAL knob to set the alignment param eter to 145 000 dC Press the D MR MW key to enable adjustment of the DCS TX...

Страница 13: ...3 1 V RX 0 V TX 3 1 V RX 0 V TX 4 8 V RX 0 V TX 4 6 V RX 5 0 V TX 4 5 V RX 2 3 V TX 0 1 V RX 5 2 V TX 0 6 V RX 4 5 V TX 0 V 0 V 4 9 V RX 6 4 V TX 0 5 V RX 0 7 V TX 0 4 V 0 V 0 6 V RX 0 8 V TX 0 V RX...

Страница 14: ...14 MAIN Unit Note...

Страница 15: ...1032 2SC4617 BR Q1051 1053 2SC5226 R22 Q1026 2SC5231 C9 Q1009 2SC5374 NA Q1010 1017 1023 DAN235E M D1010 CD4094BPWR Q1048 MB15A01PFV1 Q1011 NJM2591V Q1028 2SJ562 Q1008 3SK296ZQ ZQ Q1037 1045 KIA7808AP...

Страница 16: ...4154 E Q1001 1012 1021 1046 1047 FMMTL718TA Q1025 2SJ364 4M Q1034 1036 1041 1042 LM2904PWR Q1006 1038 1044 1050 LM2902PWR Q1005 1049 DTC144EE 26 Q1013 1018 1019 1020 1022 1031 1040 M62364FP Q1043 S 81...

Страница 17: ...A C6 C 1037 CHIP CAP 20pF 50V CH GRM1882C1H200JZ01D K22174218 1 A C6 C 1038 CHIP CAP 0 001uF 50V B GRM188B11H102KA01D K22174809 1 A C6 C 1039 CHIP CAP 1uF 10V F GRM188F11A105ZA01D K22105001 1 A C6 C...

Страница 18: ...RM188B11C104KA01D K22124805 1 A G6 C 1118 CHIP CAP 0 1uF 16V B GRM188B11C104KA01D K22124805 1 A G6 C 1119 CHIP CAP 0 01uF 25V B GRM39B103M25PT K22144802 1 B b5 C 1120 CHIP CAP 0 033uF 16V R GRM188R11C...

Страница 19: ...1198 CHIP CAP 39pF 50V CH GRM1882C1H390JA01D K22174225 1 A F5 C 1199 CHIP CAP 0 5pF 50V CK GRM1884C1HR50BZ01D K22174265 1 A G4 C 1200 CHIP CAP 5pF 50V CH GRM1882C1H5R0CZ01D K22174206 1 A G5 C 1201 CHI...

Страница 20: ...280 CHIP CAP 0 1uF 16V B GRM188B11C104KA01D K22124805 1 A G5 C 1281 CHIP CAP 0 001uF 50V B GRM155B11H102KA01D K22178809 1 A G7 C 1282 CHIP CAP 0 001uF 50V B GRM188B11H102KA01D K22174809 1 A D6 C 1283...

Страница 21: ...T11 1E G3341548E 1 B d6 Q 1013 TRANSISTOR DTC144EE TL G3070075 1 B d6 Q 1014 TRANSISTOR DTC144EE TL G3070075 1 A C4 Q 1015 IC KIA7808API G1093164 1 A A5 Q 1016 IC S 812C50AUA C3E T2 G1093652 1 B g4 Q...

Страница 22: ...9 CHIP RES 22 1 16W 5 RMC1 16S 220JTH J24189005 1 A E6 R 1040 CHIP RES 100 1 16W 5 RMC1 16S 101JTH J24189013 1 A D6 R 1041 CHIP RES 10k 1 16W 5 RMC1 16S 103JTH J24189037 1 A D6 R 1042 CHIP RES 10k 1 1...

Страница 23: ...R 1117 CHIP RES 47k 1 16W 5 RMC1 16S 473JTH J24189045 1 A E3 R 1118 CHIP RES 47 1 16W 5 RMC1 16S 470JTH J24189009 1 B b5 R 1119 CHIP RES 1k 1 16W 5 RMC1 16S 102JTH J24189025 1 A G5 R 1120 CHIP RES 220...

Страница 24: ...224JTH J24189053 1 B a7 R 1198 CHIP RES 100 1 16W 5 RMC1 16S 101JTH J24189013 1 B g7 R 1199 CHIP RES 0 1 16W 5 RMC1 16S JPTH J24189070 1 B g7 R 1200 CHIP RES 330k 1 16W 0 5 MCR01MZPD3303 J24189330 1 B...

Страница 25: ...16W 5 RMC1 16S 104JTH J24189049 1 B c5 R 1246 CHIP RES 0 1 16W 5 RMC1 16S JPTH J24189070 1 A D6 R 1247 CHIP RES 470k 1 16W 5 RMC1 16S 474JTH J24189057 1 B b5 R 1248 CHIP RES 10k 1 16W 5 RMC1 16S 103JT...

Страница 26: ...26 Note MAIN Unit...

Страница 27: ...0 V 0 V 4 6 V 5 0 V RX 13 1 V TX 11 9 V RX 13 8 V TX 12 6 V RX 4 9 V TX 4 5 V 0 V 0 V J2003 Pin RX TX 1 4 6 V 4 6 V 2 0 V 0 V 3 0 V 0 V 4 0 V 0 V 5 0 V 0 V 6 0 V 0 V 7 0 V 0 V 8 1 9 V 1 8 V 9 3 0 V 3...

Страница 28: ...I 1 2 3 2SC4617 BR Q2007 2008 2013 2SC5374 NA Q2003 BR24L64 Q2006 HD64F2266TF13 Q2002 B A D C E F H G I 1 2 3 S 812C50AUA Q2010 DTC143ZE E23 Q2012 BD4830FVE Q2011 DTC143ZE E23 Q2004 CPH6202 CB Q2005...

Страница 29: ...1H102KA01D K22178809 1 B h2 C 2031 CHIP TA CAP 10uF 10V TAJA106M010Y K78100072 1 B h2 C 2032 CHIP CAP 0 01uF 16V B GRM36B103K16PT K22128804 1 B e2 C 2033 CHIP CAP 0 01uF 16V B GRM36B103K16PT K22128804...

Страница 30: ...b2 R 2003 CHIP RES 220k 1 16W 5 RMC1 16S 224JTH J24189053 1 B b1 R 2004 CHIP RES 220k 1 16W 5 RMC1 16S 224JTH J24189053 1 B b1 R 2005 CHIP RES 100 1 16W 5 RMC1 16S 101JTH J24189013 1 A D1 R 2006 CHIP...

Страница 31: ...2063 CHIP RES 470k 1 16W 5 RMC1 16S 474JTH J24189057 1 B h2 R 2064 CHIP RES 15k 1 16W 5 RMC1 16S 153JTH J24189039 1 B h1 R 2065 CHIP RES 470k 1 16W 5 RMC1 16S 474JTH J24189057 1 B i2 R 2066 CHIP RES...

Страница 32: ...32 Note CNTL Unit...

Страница 33: ...33...

Страница 34: ...34 Copyright 2005 VERTEX STANDARD CO LTD All rights reserved No portion of this manual may be reproduced without the permission of VERTEX STANDARD CO LTD Printed in Japan...

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