Vertex evx-534 Service Manual Download Page 8

EVX-534/-539 VHF Service Manual

8

1. Receiver System

1-1. F

ront

-

end

 rF 

ampliFier

Incoming RF signal from the antenna passes through the 

Low-pass filter, antenna switching diode D1513, D1514 (both 

1SS390), and the RF attenuator Q1508 (SKY12338), and then 

removed undesired frequencies by the varactor tuned band-

pass filter D1515 and D1517 (both 1SV325).
The filtered RF signal is amplified by Q1518 (2SC5006) 

and then passes through another varactor tuned band-pass 

filter D1520 and D1521 (both 1SV325) to remove the unde-

sired frequencies, and then applied to the 1st mixer Q1523 

(3SK293).

1-2. F

irst

 m

ixer

The RF signal is mixed with the 1st local signal between 

186.85 and 224.85 MHz in the 1st mixer Q1523 (3SK293), to 

produce 50.85 MHz 1st IF signal.
The 1st local signal is generated by the VCO, which consists 

of Q1506 (2SC5006), varactor diodes D1502 (1SV279), 

D1504 (1SV282), D1507 (1SV279), and D1508 (1SV282). 

The 1st local signal is supplied to the 1st mixer Q1523 

(3SK293) through the buffer amplifier Q1510 (2SC5006) and 

amplifier Q1524 (2SC5005).

1-3. iF a

mpliFier

 & d

emodulator

The 1st IF signal is applied to the monolithic crystal filter 

XF1501 to strip away all but the desired signal, and then sup-

plied to the custom IC Q1522 (RODINIA) through the buffer 

amplifier Q1526 (2SC5226). The custom IC Q1522 (RODIN-

IA) converts the 1st IF signal into the Base Band signal.
The Base Band signal from the custom IC Q1522 (RODINIA) 

is applied to another custom IC Q1306 (OMAP), which is de-

modulated by the Digital Signal Processor.

1-4. a

udio

 a

mpliFier

The demodulated signal from the custom IC Q1306 (OMAP) 

is applied to another custom IC Q1017 (CPCAP). The custom 

IC Q1017 (CPCAP) adjusts the audio volume level. The ad-

justed audio is amplified by Q1003 (TDA2822L). As a result, 

the audio signal provides up to 700 mW (@16-ohm, BTL) for 

the internal speaker, or up to 350 mW (@4-ohm, OTL) for 

the external speaker.

2. Transmitter System

2-1. miC a

mpliFier

 & m

odulator

The speech signal from internal microphone MC1001 or ex-

ternal microphone J1003 is supplied to the custom IC Q1017 

(CPCAP), which is amplified the speech signal.
The amplified speech signal from the custom IC Q1017 

(CPCAP) is supplied to another custom IC Q1306 (OMAP), 

which process the speech signal by the Digital Signal Proces-

sor.
The processed speech signal from the custom IC Q1306 

(OMAP) is supplied to the modulator section of the custom 

IC Q1522 (RODINIA), which modulates the speech signal 

into the FM or digital signal.

2-2. d

rive

 & F

inal

 a

mpliFier

 s

tages

The modulated signal from the custom IC Q1522 (RODINIA) 

is buffered by Q1520 (2SK3077) and amplified by the driver 

amplifier Q1519 (RQA0004PXDQS), and then is applied to 

the final amplifier Q1513 (RQA0011DNS), which is ampli-

fied up to 5 watts output power.
The transmit signal then passes through the antenna switch 

D1512 (RN142S) and is low pass filtered to suppress away 

harmonic spurious radiation before delivery to the antenna.

2-3. a

utomatiC

 t

ransmit

 p

ower

 C

ontrol

The current detector Q1528-1 (AD8566ARM) detects the 

current of the final amplifier Q1513 (RQA0011DNS) and the 

driver amplifier Q1519 (RQA0004PXDQS), and converts the 

current difference to the voltage difference.
The output from the current detector Q1528-1 (AD8566ARM) 

is compared with the reference voltage and amplified by the 

power control amplifier Q1528-2 (AD8566ARM).
The  output  from  the  power  control  amplifier  Q1528-2 

(AD8566ARM) controls the gate bias of the driver amplifier 

Q1519 (RQA0004PXDQS) and the final amplifier Q1513 

(RQA0011DNS).
The reference voltage changes into four values (Transmit 

Power High and Low) controlled by custom IC Q1522 (RO-

DINIA).

Circuit Description

Summary of Contents for evx-534

Page 1: ...ypographical or other errors that may be present Your cooperation in pointing out any inconsistencies in the technical in formation would be appreciated Important Note This transceiver is assembled us...

Page 2: ...oz 317 g EVX 539 with FNB V133LI UNI Antenna Belt Clip 12 8 oz 363 g EVX 539 with FNB V134LI UNI Antenna Belt Clip Receiver Measured by TIA603 603D Circuit Type Double Conversion Super heterodyne IF 5...

Page 3: ...ith FNB V133LI UNI Antenna Belt Clip 363 g EVX 539 with FNB V134LI UNI Antenna Belt Clip Receiver Measured by ETS 300 086 Circuit Type Double Conversion Super heterodyne IF 50 85 MHz 101 7 MHz Sensiti...

Page 4: ...t the lever side Note Horizontal mating could dam age the connector k n l n l m m m m l CB6927000 DISPLAY UNIT ASSY RA1534700 PORON SHEET 16X10 EVX 534 FRONT CASE ASSY Component FRONT CASE EVX 534 MOD...

Page 5: ...cs PAN HEAD TAPTITE B M1 7X4 NI 1 4 pcs MAIN UNIT Component Printed Circuit Board with Components SHIELD CASE COVER FET HOLDER RUBBER MIC PORON SHEET 16X10 SPONGE RUBBER LIGHT GUIDE NUT C065 2 pcs PAN...

Page 6: ...FUSE 1 25 A 36 V FCC16 132ABTP Q0000109 MC1001 MIC ELEMENT PF0 1055P M3290045 Q 1513 FET RQA0011DNS G0 G3070507 S 1001 TACT SWITCH EVQPUB02K N5090167 S 1002 TACT SWITCH EVQP8403M N5090173 S 1003 TACT...

Page 7: ...EVX 534 539 VHF Service Manual Block Diagram 7...

Page 8: ...ied by Q1003 TDA2822L As a result the audio signal provides up to 700 mW 16 ohm BTL for the internal speaker or up to 350 mW 4 ohm OTL for the external speaker 2 Transmitter System 2 1 MIC Amplifier M...

Page 9: ...d one is fed back to the PLL Circuit in the custom IC Q1522 RODINIA The other one is supplied to the 1st mixer Q1523 3SK293 through the buffer amplifier Q1524 2SC5005 in case of the reception In the t...

Page 10: ...equipment listed the inter actions of some adjustments may require that more complex adjustments be performed afterwards Do not attempt to per form only a single step unless it is clearly isolated ele...

Page 11: ...The detail information is written in the help document of CE151 PC Programming Software 1 VCO confirmation only 2 PLL Reference Frequency Frequency 3 RX Sensitivity RX Tune 4 Squelch SQL RSSI 5 TX Po...

Page 12: ...e VCO status Alignment 2 PLL Reference Frequency Frequency This parameter is to align the reference frequency for PLL 1 Click the Frequency button to open the Frequency Align ment window 2 Click the P...

Page 13: ...ignment to get the best RX sensitivity Highest RSSI value 5 Click the OK button to finish the RX Sensitivity alignment and save the data 1 You may adjust the RX sensitivity manually by the following m...

Page 14: ...se level at Wide 5k 4k or Nar row 2 5k The procedure for all the alignments is as follows 1 Click the Start button you wish to align to open the SQL RSSI Alignment window 2 Click the Start button on t...

Page 15: ...e selected chan nel All Freq Alignment value changes on all channels Alignment 6 Maximum Deviation Wide Narrow This parameter is to align the Maximum Deviation Wide Narrow 1 Press the Max Dev W N butt...

Page 16: ...Dragging the slide bar l Clicking the arrow buttons l Pressing the up down key of the computer s keyboard l Entering the value in the entry box from the computer s keyboard 4 After getting the desire...

Page 17: ...el that wrote down according to the following ways l Dragging the slide bar l Clicking the arrow buttons l Pressing the left right arrow key of the computer s keyboard l Entering the value 0 3FF in th...

Page 18: ...CSS tone frequency default 67 0 Hz by changing the value of the CTCSS Freq box located at the bottom of the screen if needed DCS Deviation Wide Narrow This parameter is to align DCS Deviation of the s...

Page 19: ...ay align the deviation level by any DTMF tone default A available selection 0 9 A D E and F by changing the value of the DTMF Code box located at the bottom of the screen if needed MSK Deviation This...

Page 20: ...Tone Deviation for the 2 Tone and 5 Tone Encoder 1 Press the Seq Tone button to open the Sequential Tone De viation Alignment window 2 Entering the desired value in the New box from the comput er s k...

Page 21: ...EVX 534 539 VHF Service Manual 21 MAIN Unit Circuit Diagram FR025450B Interface Power Supply Sections...

Page 22: ...EVX 534 539 VHF Service Manual 22 MAIN Unit Circuit Diagram FR025450B Control Section...

Page 23: ...EVX 534 539 VHF Service Manual 23 MAIN Unit Circuit Diagram FR025450B RF Section...

Page 24: ...EVX 534 539 VHF Service Manual 24 DISPLAY Unit Circuit Diagram FR027620B...

Page 25: ...is manual may be reproduced without the permission of Vertex Standard LMR Inc Vertex Standard is a trademark of Vertex Standard LMR Inc All other trademarks are the property of their respective owners...

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