Arcam-DV79-dvd-sm维修电路原理图.pdf
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1、DiVAServiceManualDV79 DVD PlayerIssue 1.0ARCAMARCAMBringing music & movies to lifeBringing music & movies to lifeRadioFans.CN 收音机爱 好者资料库 Circuit Description Power Supply L959AY ! CCT diagram ! Component layout diagram ! Parts list Display Board L961AY ! CCT diagram ! Component layout diagram ! Parts
2、 list Main Board L967AY (for serial numbers below D79V03175) ! CCT diagram ! Component layout diagram ! Parts list Main Board L974AY (for serial numbers above D79V03174) ! CCT diagram ! Component layout diagram ! Parts list Transformers ! L924TX ! L925TX Mechanical Assembly ! Exploded view diagram !
3、 Mechanical and packing part list DV79 Contents List RadioFans.CN 收音机爱 好者资料库 Overview The DiVa DV/79 is a completely new design platform and only shares it power supply board and display board with the DV78. The player is based around acclaimed Zoran Vaddis V chipset coupled to high specification Wo
4、lfson D to A converters for all six audio output channels and a extremely high quality digital video encoder also featured in this design is a HDMI output digital Video. Power supply board. Non-switching Mains power arrives at IEC inlet socket SKT1 and is filtered by EMC choke LI and Y caps C3 and C
5、4, mains switch SW2a/b switches both Negative and Live phases before the power reaches the mains select switch at location SW1 the switch allows the primary windings of the transformer TX1 to be wired in either Parallel or Series configuration. The Bridge rectifying Diode package at location D1 form
6、s the basis of the conventional power stage and supplies a VN35V6 (-35.6v) to the Switch mode stage, transistor TR1 is biased by 2v7 Zener diode DZ1 and allows for the series Zener diodes DZ2, DZ3, DZ3 to supply the VN13V5 and VN19V rails. We will also see a simple A.C present circuit this is used f
7、or delayed output relay operation and fast relay closure under interrupted supply conditions thus preventing power down op-amp offsets from reaching the Audio output sockets. Switch mode The switch mode supply is formed around the Driver/Control chip IC1 UC3843 (used in regulating mode). The chip is
8、 referenced the 36.5V supply line and the Digital ground DGND, the supply for the chip is formed by the 12v Zener at location DZ6 and can be seen on Pin 7 as VCC. The power supply allows for the switch-mode to be tied the to Audio sampling frequency for any given compatible format see Fig 1. Fig 1 P
9、SU clock control Fs Frequency select PSUFS1 Pin 11 IC305a PSUFS0 Pin 12 IC305a PSUCLK Output Pin 5 of IC305a 44.1 kHz 0 0 44.1 kHz 48 kHz 0 0 48 kHz 88.2 kHz 0 1 44.1kHz 96 kHz 0 1 48 kHz 176.4 kHz 1 0 44.1 kHz 192 kHz 1 0 48 kHz Others 1 1 OFF The PSU sync signal is driven into the power supply via
10、 Resistor R9 if no Sync is present the unit is set to free run at xxxx due to the RT/RC network attached to Pin 4. IC1 is running in regulated mode and monitors the voltage output on the +5V and +3V3 D.C lines, the two voltages are summed by TR8 and Driven into the VFB and Comp inputs of IC1, the Vo
11、ltage is then regulated by changing the time base of the PWM output at pin 6 (longer the time base the lower the voltage), the PWM switching frequency is driven into the switch-mode transformer by the high speed Nmos device at position M1, R5 is used to sense the Current across the gate of the Nmosf
12、et and in the event of a short circuit will safely shut the power supply down. We derive the 12v Mech supply from the output of M1 using the Ultra-fast Diode at location D8 to rectify the PWM line. The D.C outputs from the switch mode have extensive switch mode noise removing filters these are seen
13、as 100n caps down to ground and Wire wound inductors in series with the supply rail. Power supply main board All the power supply rails are supplied to the main board via the 32 way FFC conector at location CON1001. The Digital supplies from the switch mode stage of the power supply arrive as 3V3D,
14、+5VD and +12VD we also see the Display board power supplies arrive as 19V, -9 and 13.5V all of the supplies have a second stage of implemented on the board to remove all traces of ultra-sonic noise. The 3V3D rail is the main 3V3 rail used to power the digital circuitry; +5VD is used for all 5v Digit
15、al/Video supplies the +12VD is used for Scart switching and to power the HDMI circuit. The 1V8 rail is derived from the 3V3 rail and is regulated by the adjustable regulator at location REG1003. Diva Dv79 Circuit description. The Analogue supply stages arrive at the main board as +15V3 and 15V3 rail
16、s these are filtered L1002 and L1015 before being regulated by the adjustable regulators at locations REG1000 and REG1002 to provide +/- 12V rails for the Analogue output stage. Regulator REG1001 is fed from the +15V3 rail and forms the Audio DAC supply. The Display board requires several supply vol
17、tages these are simply passed through the main board, being filtered on the way to prevent transmission of noise through to the surrounding electronics. The display takes the +5V, -19V, -13V5 and -9V the 13V5 and 9V form a floating 4.5V supply biased relative to the 19V grid voltage. Display Board T
18、he main component of the Display board is IC1 this is a Vacuum Florescent Display driver with keyboard san and a serial data in/out interface. The Chip receives display drive serial data from the Vaddis V chip on the main board via Con1 on pins 12, 13 and 14 these will be seen a DIN, STS and CLK thi
19、s data is used to drive the VFD a DOUT line interfaces with the VADDIS V and supplies Keyboard Scan information. The keyboard scan is a 6 x 4 matrix with the Key Source appearing at S3, S4, S5, S6 and the Keyscan data returns appearing a K2, K3 and K4. Please see: above for power supply information.
20、 The Infra red pick-up at location RXI receives RC5 data and send the data to the Vaddis V on the main board via transistors TR2 and TR3, LED 2 is used to mix the rear panel RC5, this is covered in-depth within the Coms and Video output section of this guide. Main Board electronics. Zoran Vaddis V.
21、The main processor/control chip on the main board is the Zoran Vaddis V at location IC202, this is the latest incarnation of the very popular Vaddis range of processors and allows for a much lower component count when compared to our earlier players as many of the playback functions have moved onto
22、the Vaddis V silicon. Below you will see the major functions of the Vaddis V o 20 Bit digital video output for external Video DACs and HDMI output stage. o Decoded Analogue Video output (internal DAC) used on the DV78 only. o Digital Audio output 3 data lines 6 channels for internal L + R DACs and L
23、 + R + C + LS + RS for DV79 and DV29 also used for HDMI for the DV79 and DV29. o SPDIF output. o Internal display interface. o Internal ATAPI interface. o Internal IR interface. o Serial in/out for RS232 A more detailed explanation of the Vaddis V and peripheral components follows. Vaddis Power The
24、Vaddis V is powered by two separate supplies the Vaddis requires a 1.8v supply for the core, this is regulated from the 3.3v rail by REG1003, the 3.3v rail is used to supply power to the I/P O/P ports of the chip. ATAPI interface CON203 is an ATAPI interface on a 40 way IDE connector. This is decoup
25、led from the Drive via an array of decoupling resistors as required by the ATAPI spec. Display Board interface The display board interface is on the 16 way FFC flexi foil connector at location CON202. Power for the display also travels on the connector. There are 4 wires to interface with the VFD dr
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