REPAIRING AND NOT THROWING AWAY

Richtige Fernseher haben Röhren!

Richtige Fernseher haben Röhren!

In Brief: On this site you will find pictures and technical information about Service Modes, Circuit Diagrams, Firmware Update procedure, Disassemble procedure, Universal remote control set-up codes, Troubleshooting and more....

If you go into the profession, you will obtain or have access to a variety of tech tips databases HERE IT IS Master Electronics Repair !.

These are an excellent investment where the saying: 'time-is-money' rules. However, to learn, you need to develop a general troubleshooting approach - a logical, methodical, method of narrowing down the problem. A tech tip database might suggest: 'Replace C536' for a particular symptom. This is good advice for a specific problem on one model. However, what you really want to understand is why C536 was the cause and how to pinpoint the culprit in general even if you don't have a service manual or schematic and your tech tip database doesn't have an entry for your sick TV or VCR.

While schematics are nice, you won't always have them or be able to justify the purchase for a one-of repair. Therefore, in many cases, some reverse engineering will be necessary. The time will be well spent since even if you don't see another instance of the same model in your entire lifetime, you will have learned something in the process that can be applied to other equipment problems.
As always, when you get stuck, checking out a tech-tips database may quickly identify your problem and solution.In that case, you can greatly simplify your troubleshooting or at least confirm a diagnosis before ordering parts.

Happy repairing!
Today, the West is headed for the abyss. For the ultimate fate of our disposable society is for that society itself to be disposed of. And this will happen sooner, rather than later.

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..............The bitterness of poor quality is remembered long after the sweetness of todays funny gadgets low price has faded from memory........ . . . . . .....
Don't forget the past, the end of the world is upon us! Pretty soon it will all turn to dust!

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Showing posts with label TROUBLESHOOT. Show all posts
Showing posts with label TROUBLESHOOT. Show all posts

Tuesday, 13 October 2020

LG 50PJ350 PLASMA TV POWER SUPPLY BOARD TROUBLESHOOTING / DIAGNOSE , VOLTAGES DETAIL

 Adjustment Notice:  All adjustments (DC or Waveform) are adjusted in WHITE WASH.  Customer’s Menu, Select “Options”, select “ISM” select “WHITE WASH”

It is critical that the DC Voltage adjustments be checked when;
1) SMPS, Y-SUS or Z-SUS board is replaced.
2) Panel is replaced, Check Va/Vs since the SMPS does not come with new panel.
3) A Picture issue is encountered.
4) As a general rule of thumb whenever the back is removed.

ADJUSTMENT ORDER “IMPORTANT” DC VOLTAGE ADJUSTMENTS
1) POWER SUPPLY: VS, VA (Always do first)
2) Y-SUS: Adjust –Vy, VSC
3) Z-SUS: Adjust Z-Bias (VZB)
WAVEFORM ADJUSTMENTS
1) Y-SUS: Set-Up, Set-Down

The Waveform adjustment is only necessary
1) When the Y-SUS board is replaced
2) When a “Mal-Discharge” problem is encountered
3) When an abnormal picture issues is encountered.



SWITCH MODE POWER SUPPLY [SMPS] SECTION

This Section of the Presentation will cover troubleshooting the Switch Mode Power Supply for the Single Scan Plasma. Upon completion of the section the technician will have a better understanding of the operation of the Power Supply Circuit and will be able to locate voltage and test points needed for troubleshooting and alignments.
DC Voltages developed on the SMPS
Adjustments VA and VS

Always refer to the Voltage Sticker located on the back of the panel, in the upper Left Hand side for the correct voltage levels for the VA, VS, -VY, VSC, and Z Bias as these voltages will vary from Panel to Panel even in the same size category.
Set-Up and Ve are just for Label location identification and are not adjusted in this panel.

SMPS Part Number: EAY60968701
Check the silk screen label on the top center of the Power Supply board to identify the correct part number. (It may vary in your specific model number).

Operation of this Power Supply.

The Switch Mode Power Supply Board Outputs to the :

Y-SUS Board

VS: Drives the Display Panel’s Horizontal Electrodes.

VA: Drives the Display Panel’s Horizontal Electrodes.

M5V: Used to develop Bias Voltages on the Y-SUS then routed to the Control board and then to the Z-SUS Board.

Z-SUS Board

VS: VS is routed to the Y-SUS first then to the Z-SUS board which Drives the Display Panel’s Horizontal Electrodes.

Main Board

STBY 5V:  Microprocessor Circuits

17V:  Audio B+ Supply, Tuner B+ Circuits 5V Signal Processing Circuits

Also AC-Det (if missing, shuts of TV in 10 seconds) and Error-Det (not used)

Adjustments

There are 2 adjustments located on the Power Supply Board VA and VS. The M5V is pre-adjusted and fixed. All adjustments are made referenced to Chassis Ground. Use “Full White Raster” 100 IRE

VS: VR901

VA: VR502

Power Supply Basic Operation

AC Voltage is supplied to the SMPS Board at Connector SC101 from the AC Input assembly, routed to the Standby 5V supply. The STBY5V (standby) is B+ for the Controller chip on the back of the board (IC701) on the SMPS and output at P813 pins 13 and 14 then sent to the Main board for Microprocessor (IC1) operation (STBY 3.46V RUN 5.14V).

When the Microprocessor (IC1) on the Main Board receives a “POWER ON“ Command from either the Power button or the Remote IR Signal, it outputs a high (2.43V) called RL_ON at Pin 15 of P813. This command causes the Relay Circuit to close both Relays RL101 and RL103 routing AC to the Bridge Rectifier D101 which then routes the primary voltage to the PFC circuit (Power Factor Controller) 388V which can be read measuring voltage at Fuses F302 and F801 from “Hot” Ground. AC Detection (AC Det) is generated on the SMPS, by rectifying a small sample of the A/C Line and routed to the Controller (IC701) where it outputs at P813 pin 16 (4.44V) and sent to P301 to the Main Board where it is sensed and monitored by the Main Microprocessor (IC1). If AC Det is missing the set will come on, but shut off in 10 seconds.
When RL_ON arrives, the run voltage +5V source becomes active and is sent to the Main Board via P813 (5.17V at pin 5, 6 and 7). The (Error Det) from the SMPS Board to the Main Board can be measured at pin 8 of P813 (2.85V STBY and 4.90V RUN), but it is not used. The RL-ON command also turns on the 17V (Audio B+) which is also sent to the Main Board. The 17V Audio supply outputs to the Main board at P813 pins 1 and 2 and used for Audio processing and amplification.

The next step is for the Microprocessor IC1 on the Main Board to output a high (3.29V) on M_ON Line to the SMPS at P813 Pin 17 which is sensed by the Controller IC701, turning on the M5V line and outputs at P812 pins 9 and 10 to the Y-SUS
board.

The Controller (IC701) also uses the M_ON line to turn on the VA and the VS supplies. (Note there is no VS On Command in this set). VS is output at P812 to the Y-SUS board P210. (VA pins 6 and 7 and VS pins 1 and 2). Note: The Va is fused
on the Y-SUS then routed out P203 to the X-Board Left. VS is also routed out of the Y-SUS P211 pins 4 and 5 to the Z-SUS P2.

AUTO GND Pin 18 of P813: This pin is grounded on the Main board. When it is grounded, the Controller (IC701) works in the normal mode, meaning it turns on the power supply via commands sent from the Main board. When AUTO GND is
floated (opened), it pulls up and places the Controller (IC701) into the Auto mode. In this state, the Controller turns on the power supply in stages automatically. A load is necessary to perform a good test of the SMPS if the Main board is suspect.

50PJ350 SMPS STATIC TEST UNDER LOAD

Using two 100 Watt light bulbs, attach one end to Vs and the other end to ground. Apply AC to SC101. If the light bulbs turn on and VS is the correct voltage, allow the SMPS to run for several minutes to be sure it will operate under load. If this test is successful and all other voltages are generated, you can be fairly assured the power supply is OK.
Note: To be 100% sure, you would need to read the current handling capabilities of each power supply listed on the silk screen on the SMPS and place each supply voltage under the appropriate load.

50PJ350 Power Supply Troubleshooting

With P813 disconnected from the Main board (P301) attach two 100 Watt light bulbs, attach one end to Vs and the other end to ground.
Apply AC to SC101. If the light bulbs turn on and VS is the correct voltage, allow the SMPS to run for several minutes to be sure it will operate under load. If this test is successful and all other voltages are generated, you can be fairly assured the power supply is OK.
Note: To be 100% sure, you would need to read the current handling capabilities of each power supply listed on the silk screen on the SMPS and place each supply voltage under the appropriate load. Then follow the instructions below to completely test turn on sequence.

When the supply is operational in its normal state the Auto Ground line at Pin 18 of P813 is held at ground by the Main Board.
This Power Supply can be powered on sequentially to test the Controller Chip IC701 operational capabilities and for troubleshooting purposes.
Disconnect P301 from the Main board and use the holes in that end of the connector to insert the jumper and resistors.

Warning: Remove AC before adding or removing any plug or resistor.

Note: Leave previous installed 100Ω resistor in place when adding the next resistor.

Ground the Auto Gnd Line (Pin 18) will allow the supply to be powered up one section at a time.
(B) Add a 100Ω ¼ watt resistor from 5V Standby to RL_ON and the AC Det, 17V and 5V Lines on P813 will become active.
(C) Add a 100Ω ¼ watt resistor from any 5V line to M_ON (Monitor_On) to make the M5V, VS and VA lines operational.
P812 (VS pins 1 and 2) (VA pins 6 and 7) and (M5V pins 9 and 10).

SMPS Connector P813 Identification, Voltages and Diode Check

a Note: The 17V, 5V, AC_Det and Error Det turn on when the RL_On command arrives.
b Note: The M5V, Va and Vs turn on when the M_On (Monitor On) command arrives.
c Note: The Error Det line is not used in this model.
d Note: If the AC Det line is Missing, the TV will shut off after 10 seconds of operation.
e Note: Pin 18 is grounded on the Main board. If this line is floated, the SMPS turns on Automatically when AC is applied.

SMPS Connector SC101 and P812 Identification, Voltages and Diode Check

Diode Mode Readings taken with all connectors Disconnected. DVM in Diode Mode.

Monday, 12 October 2020

VESTEL 17MB211 MAIN BOARD HOW TO ENTER THE SERVICE MODE , TROUBLE SHOOTING, DESCRIPTIONS ABOUT IC FUNCTIONS


How to enter the service mode of Vestel 17MB211 main board, trouble shooting, descriptions about IC functions

 

Used in JVC LT32C690, Luxor Lux143005, Logik L32SHE1 and many other models

17MB211 main board is driven by Novatek SOC. This IC is a single chip iDTV solution which complaints with variety ATV as NTSC, PAL and SECAM, and DTV standards as ISDB-T, DVB-T/-T2/-C/-S/-S2, ITU-T J.83B, ATSC, integrates DTV and multi-media AV decoder, SIF demodulator, and support A/V post processing.

Key features include:

ATSC,DVB-T,T2,DVB-C, DVB-S/S2 demodulators

• A multi standard A/V format decoder

• Advanced Super Resolution 5th generation Advanced Scaling Up Engine

• Embedded dual 10 bit LVDS transmitter

• Dedicated DSP to decode compressed audio

• 4K2K 30p HDMI input with scaling down

• Rich internet connectivity and completed digital home network solution

• Mılti-purpose CPU for OS and multimedia

• Peripheral and power management

• Embedded DRAM.

Supported peripherals are:

1 RF input VHF I, VHF III, UHF

• 1 Satellite input

• 1 Side AV (CVBS, R/L-Audio)

• 1 BAV-IN socket(Common)

• 1 PC input(Common)

• 3 HDMI input

• 1 Common interface(Common)

• 1 Optic/ Quax S/PDIF output

• 1 Headphone(Common)

• 2 USB(1x common, 1x optional) and 2x internal USB for Wifi/Bluetooth

• 1 Ethernet-RJ45

• 1 External Touchpad/ Keyboard/Magic Button

• 1 DVD(Optional)

T/T2/C/A TUNER (U1)

The MxL661 is a highly integrated low-power silicon tuner IC that targets all global and digital cable standards. Broadband input filtering and channel filtering have been completely integrated on-chip. This integration enables a compact design resulting in small footprint, low Bill-Of-Material (BOM) cost, and low power consumption.

A signal at the 75ohm RF input is filtered and converted to a programmable IF output frequency. Automatic Gain Control (AGC), LO generation, and channel selectivity functions are completely integrated on the chip. All functions of the IC can be controlled using the I2C interface.  The MxL is available in a 4 mm x 4mm x 0.85mm3, 24-pin QFN package.

S/S2 TUNER (U142)

The AV2018 is a highly integrated silicon tuner for DVB-S2 standard. It integrates a synthesizer, crystal oscillator, LDO, loop through path, and a direct conversion receiver including LNA, RF variable gain amplifiers, Mixer, programmable channel filter, and PGA.

The low noise figure of the receiver and loop through path eliminates the need of an external LNA. The integrated crystal oscillator can provide a reference clock for demodulator. The LDO supplies all the internal blocks the only an external voltage source is required. The AV2018 requires only a small number of external components, thus enables very competitive design.

The AV2018 implements an automatic gain control mechanism that only an analog control signal from the demodulator is required to from a close-loop gain control. The mechanism will arrange the gain of the receiver blocks to achieve best performance according to the control signal voltage. The embedded automatic calibration mechanism provides precise control of channel filter bandwidth and DC offset, no additional calibration procedure is required.

AUDIO AMPLIFIER STAGES:  MAIN AMPLIFIER (U62)(6-8-10 W OPTİON)

AD82587D is a digital audio amplifier capable of driving a pair of 8 ohm, 20W or a single 4ohm, 40W speaker, both which operate with play music at a 24V supply without external heat-sink or fan requirement.  Using I2C digital control interface, the user can control AD82587D’s input format selection, mute and volume control functions. AD82587D has many built-in protection circuits to safeguard AD82587D from connection errors.

Features:

16/18/20/24-bit input with I2S, Left-alignment and Right-alignment data format

PSNR & DR(A-weighting) Loudspeaker: 97dB (PSNR), 105dB (DR) 24V

Multiple sampling frequencies (Fs)

32kHz / 44.1kHz / 48kHz and

64kHz / 88.2kHz / 96kHz and

128kHz/176.4kHz/192kHz

System clock = 64x, 128x, 256x, 384x, 512x, 768x,1024x Fs

256x1024x Fs for 32kHz / 44.1kHz / 48kHz

128x512x Fs for 64kHz / 88.2kHz / 96kHz

64x256x Fs for 128kHz /176.4kHz/192kHz

Supply voltage

3.3V for digital circuit

10V 26V for loudspeaker driver

• Loudspeaker output power for Stereo 24V

10W x 2ch into 8 ohms 0.16% THD+N

15W x 2ch into 8 ohms 0.18% THD+N

 20W x 2ch into 8 ohms 0.24% THD+N

Loudspeaker output power for Mono 24V

20W x 1ch into 4 ohms 0.17% THD+N

30W x 1ch into 4 ohms 0.2% THD+N

40W x 1ch into 4 ohms 0.24% THD+N

 Sounds processing including:

Volume control (+24dB -103dB, 0.125dB/step)

Dynamic range control

Power clipping

Channel mixing

User programmed noise gate with hysteresis window

DC-blocking high-pass filter

Anti-pop design

Short circuit and over-temperature protection

I2C control interface with selectable device address

Internal PLL

LV Under-voltage shutdown and HV Under-voltage

Detection

Power saving mode

Dynamic temperature control.

MAIN AMPLIFIER (U91)(2.5 W OPTION)

The AD52010 is a 3.0W stereo, filter-less class-D audio amplifier. Operating with 5.0V loudspeaker driver supply, it can deliver 3.0W output power into 4 ohm loudspeaker within 10% THD+N or 2.6W at 1% THD+N.  The AD52010 is a stereo audio amplifier with high efficiency and suitable for the notebook computer, and portable multimedia device.

Supply voltage range: 2.5 V to 5.5 V

Support single-ended or differential analog input

 Low Quiescent Current

Low Output Noise

Low shut-down current

Short power-on transient time

Internal pull-low resistor on shut-down pins

Short-circuit protection

Over-temperature protection

Loudspeaker power within 10% THD+N

1.78W/ch into 8 ohm loudspeaker

 3W/ch into 4 ohm loudspeaker

Loudspeaker efficiency

93% 8 ohm, THD+N=10%

85% 4 ohm, THD+N=10%

E-TSSOP-14L package

Integrated Feedback Resistor of 300kW.

HEADPHONE AMPLIFIER (U85)

The AD22657B is a 2-Vrms cap-less stereo line driver. The device is ideal for single supply electronics.  Cap-less design can eliminate output dc-blocking capacitors for better low frequency response and save cost.  The AD22657B is capable of delivering 2-Vrms output into a 10k ohm load with 3.3V supply. The gain settings can be set by users from 1V/V to 10V/V externally. The AD22657B has under voltage protection to prevent POP noise. Build-in shutdown control and de-pop control sequence also help AD22657B to be a pop less device.  The AD22657B is available in a 10-pin MSOP package.

POWER STAGE

Power socket is used for taking voltages which are 12V-stby and 24V (VDD-Audio for 10W option via power-pin1). These voltages are produced in power card. Also socket is used for giving dimming, backlight and stand-by signals with power card. It is shown in figure:

List of the components are:

SW1(Q61) → FDC642P

SW2(Q77) → DMG6402LDM

DC-DC1(U2) → TPS54528

DC-DC2 (U128) → TPS562201

DC-DC3 (U129) → RT6213BHGJ6F

DC-DC4 (U63) → RT7278G (12V panel option)

DC-DC4 (U63) → TPS54528 (5V panel option)

LDO1(U131) → AP2111H

LDO2(U143) → APL5910

TPS54528

The TPS54528 is an adaptive on-time D-CAP2™ mode synchronous buck converter. The TPS54528 enables system designers to complete the suite of various end-equipment power bus regulators with a cost effective, low component count, low standby current solution. The main control loop for the TPS54528 uses the D-CAP2™ mode control that provides a fast transient response with no external compensation components. The adaptive on-time control supports seamless transition between PWM mode at higher load conditions and Eco-mode™ operation at light loads. Eco-mode™ allows the TPS54528 to maintain high efficiency during lighter load conditions. The TPS54528 also has a proprietary circuit that enables the device to adopt to both low equivalent series resistance (ESR) output capacitors, such as POSCAP or SP-CAP, and ultra-low ESR ceramic capacitors.  The device operates from 4.5-V to 18-V VIN input. The output voltage can be programmed between 0.76 V and 6.0 V. The device also features an adjustable soft start time. The TPS54528 is available in the 8-pin DDA package, and designed to operate from –40 C to 85 C.

TPS562201

The TPS562201 is simple, easy-touse, 2-A synchronous step-down converter in SOT- 23 package. The devices are optimized to operate with minimum external component counts and also optimized to achieve low standby current. These switch mode power supply (SMPS) devices employ D-CAP2 mode control providing a fast transient response and supporting both low equivalent series resistance (ESR) output capacitors such as specialty polymer and ultra-low ESR ceramic capacitors with no external compensation components. The TPS562201 operates in pulse skip mode, which maintains high efficiency during light load operation. The TPS562201 and TPS562208 are available in a 6- pin 1.6 × 2.9 (mm) SOT (DDC) package and specified from – 40°C to 125°C of junction temperature.

RT7278

The RT7278 is a synchronous step down converter with Advanced Constant On-Time (ACOTTM) mode control. The ACOTTM provides a very fast transient response with few external components. The low impedance internal MOSFET supports high efficiency operation with wide input voltage range from 4.5V to 17V. The proprietary circuit of the RT7278 enables to support all ceramic capacitors. The output voltage can be adjustable between 0.8V and 8V. The soft-start is adjustable by an external capacitor.

RT6213

The RT6213A/B is a high-efficiency, monolithic synchronous step-down DC/DC converter that can deliver up to 3A peak output current from a 4.5V to 18V input supply. The RT6213A/B adopts ACOT architecture to allow the transient response to be improved and keep in onstant frequency. Cycle-by-cycle current limit provides protection against shorted outputs and soft-start eliminates input current surge during start-up. Fault conditions also include output under voltage protection, output over current protection, and thermal shutdown.

LM1117

The LM1117 is a series of low dropout voltage regulators with a dropout of 1.2V at 800mA of load current.

It has the same pin-out as National Semiconductor’s industry Standard LM317.

The LM1117 is available in an adjustable version, which can set the output voltage from 1.25V to 13.8V with only two external resistors. In addition, it is also available in five fixed voltages, 1.8V, 2.5V, 2.85V, 3.3V, and 5V.

The LM1117 offers current limiting and thermal shutdown. Its circuit includes a zener trimmed bandgap reference to assure output voltage accuracy to within ±1%.

The LM1117 series is available in SOT-223, TO-220, and TO-252 D-PAK packages. A minimum of 10μF tantalum capacitor is required at the output to improve the transient response and stability.

APL5910

The APL5910 is a 1A ultra low dropout linear regulator. The IC needs two supply voltages, one is a control voltage (VCNTL) for the control circuitry, the other is a main supply voltage (VIN) for power conversion, to reduce power dissipation and provide extremely low dropout voltage. The APL5910 integrates many functions.

A Power-On- Reset (POR) circuit monitors both supply voltages on VCNTL and VIN pins to prevent erroneous operations. The functions of thermal shutdown and current-limit protect the device against thermal and current over-loads. A POK indicates that the output voltage status with a delay time set internally. It can control other converter for power sequence. The APL5910 can be enabled by other power systems. Pulling and holding the EN voltage below 0.4V shuts off the output.

The APL5910 is available in a SOP-8P package which features small size as SOP-8 and an Exposed Pad to reduce the junction-to-case resistance to extend power range of applications.

MICROCONTROLLER:  NOVATEK NT72563MBG-GA

The NT72563MBGis an integrated digital TV system-on-chip which compliants with variety ATV as NTSC, PAL and SECAM, and DTV standards as ISDB-T, DVB-T/-T2/-C/-S/-S2, ITU-T J.83B, ATSC, integrates DTV and multi-media AV decoder, SIF demodulator, and support A/V post-processing.

The integrated video ADC and video decoder support PC VGA port, YPbPr, BAV-IN, CVBS and S-Video Input. Regarding the tuner input, the digital VIF performs the universal analog TV demodulation (NTSC, PAL, and SECAM), including IF processing, AGC, video demodulation, and second sound IF generation (SSIF).The video decoder supports universal TV video format. The integrated audio ADC supports stereo audio input corresponding to video input sources. The integrated TV sound decoder supports universal TV sound format.

The advanced picture quality and color engine create more vivid image impression than ever. The HDMI receiver v1.4b, supports deep color, CEC features and 3D formats. The USB high speed host supports updating firmware code, multi-media playback from the external USB flash devices.  The standby controller can operate sololy from the main system, powered by the standby power source from power module, consumes as low current as possible. It meets the requirement of Green appliance.

4GB DDR3 SDRAM:  HYNİX H5TQ4G63EFR-TEC 2133 (U72)

The H5TQ4G83EFR-xxC,H5TQ4G63EFR-xxC, H5TQ4G83EFR-xxI, H5TQ4G63EFR-xxI, H5TQ4G83EFR-xxL, H5TQ4G63EFR-xxL, H5TQ4G83EFR-xxJ and H5TQ4G63EFR-xxJ are a 4,294,967,296-bit CMOS Double Data Rate III (DDR3) Synchronous DRAM, ideally suited for the main memory applications which requires large memory density and high bandwidth. SK Hynix 4Gb DDR3 SDRAMs offer fully synchronous operations referenced to both rising and falling edges of the clock. While all addresses and control inputs are latched on the rising edges of the CK (falling edges of the CK), Data, Data strobes and Write data masks inputs are sampled on both rising and falling edges of it. The data paths are internally pipelined and 8-bit prefetched to achieve very high bandwidth.

4GBİT (256M X 8 BİT) NAND FLASH MEMORY:  MT29F4G08ABAEAWP (U133)

Micron NAND Flash devices include an asynchronous data interface for high-performance I/O operations.

These devices use a highly multiplexed 8-bit bus (I/Ox) to transfer commands, address, and data. There are five control signals used to implement the asynchronous data interface: CE, CLE, ALE, WE, and RE. Additional signals control hardware write protection and monitor device status (R/B). This hardware interface creates a low pin-count device with a standard pin out that remains the same from one density to another, enabling future upgrades to higher densities with no board redesign. A target is the unit of memory accessed by a chip enable signal. A target contains one or more NAND Flash die. A NAND Flash die is the minimum unit that can independently execute commands and report status. A NAND Flash die, in the ONFI specification, is referred to as a logical unit (LUN). There is at least one NAND Flash die per chip enable signal. This device has an internal 4-bit ECC that can be enabled using the GET/SET features or by factory (always enabled).

16M-BIT [16M X 1] CMOS SERIAL FLASH EEPROM:  KH25L1606EM2-12G MACRONİX SPI FLASH (U81)

The device features a serial peripheral interface and software protocol allowing operation on a simple 3-wire bus. The three bus signals are a clock input (SCLK), a serial data input (SI), and a serial data output (SO).

Serial access to the device is enabled by CS input. When it is in Dual Output read mode, the SI and SO pins become SIO0 and SIO1 pins for data output. The device provides sequential read operation on whole chip.

After program/erase command is issued, auto program/erase algorithms which program/erase and verify the specified page or sector/block locations will be executed. Program command is executed on byte basis, or page basis, or word basis for erase command is executes on sector, or block, or whole chip basis. To provide user with ease of interface, a status register is included to indicate the status of the chip. The status read command can be issued to detect completion status of a program or erase operation via WIP bit. Advanced security features enhance the protection and security functions; please see security features section for more details.

When the device is not in operation and CS is high, it is put in standby mode. The device utilizes Macronix's proprietary memory cell, which reliably stores memory contents even after typical 100,000 programs and erase cycles.

SOFTWARE UPDATE:  MAIN SW UPDATE

1. shredder-usb-update.bin, shredder-usb-update.scr, shredder-usb-update.scr.core and upgrade_mb211.bin files should be copied directly inside of a flash memory (not in a folder).

2. Insert flash memory to the TV when TV is powered off.

3. While pushing the OK button in remote control, power on and wait. TV will power-up itself.

4. If First Time Installation screen comes, it means software update procedure is successful.

TROUBLESHOOTING:  NO BACKLIGHT PROBLEM

If TV is working, led is normal and there is no picture and backlight on the panel. Possible causes: Backlight pin, dimming pin, backlight supply (Panel-VCC), stby on/off pin BACKLIGHT-ON/OFF pin should be high when the backlight is ON. Collector pin of Q27 must be low when the backlight is OFF. If it is a problem, please check Q27 and the panel cables. Also it can be tested in TP87 in main board.

Dimming pin should be high or square wave in open position. If it is low, please check S248 for Novatek side and panel or power cables, connectors.

Backlight power supply (Panel_VCC) should be in panel specs. Please check Q43, shown below; also it can be checked TP65.

STBY-ON/OFF should be low for TV on condition, please check Q36’s collector.

CI MODULE PROBLEM:  CI is not working when CI module inserted.

Possible causes: Supply, suply control pin, detects pins, mechanical positions of pins.

• CI supply should be 5V when CI module inserted. If it is not 5V please check CI-PWR-CTL, this pin should be low.

Please check mechanical position of CI module. Is it inserted properly or not?

• Detect ports should be low. If it is not low please check CI connector pins, CI module pins.

STAYING IN STAND-BY MODE:  Staying in stand-by mode, no other operation.

This problem indicates a short on Vcc voltages. Protect pin should be logic high while normal operation.

When there is a short circuit protect pin will be logic low. If you detect logic low on protect pin, unplug the TV set and control voltage points with a multimeter to find the shorted voltage to ground.

IR PROBLEM:  LED or IR not working

Check LED card supply on MB211 chassis.

KEYPAD TOUCHPAD PROBLEMS:  Keypad or Touchpad is not working

Check keypad supply on MB211.

USB PROBLEMS:  USB is not working or no USB Detection.

Check USB Supply, It should be nearly 5V. Also USB Enable should be logic high.


NO SOUND PROBLEM:  No audio at main TV speaker outputs.

Check supply voltages of 12V-VCC, VDD-AUDIO and 3V3-AMP with a voltage-meter. There may be a problem in headphone connector or headphone detect circuit (when headphone is connected, speakers are automatically muted). Measure voltage at HP-DETECT pin, it should be 3.3v.

STANDBY ON/OFF PROBLEM:  Device cannot boot, TV hangs in standby mode.

There may be a problem about power supply. Check main supplies with a voltage-meter. Also there may be a problem about SW. Try to update TV with latest SW. Additionally it is good to check SW printouts via Teraterm. These printouts may give a clue about the problem. You can use VGA for terraterm connection.

NO SIGNAL PROBLEM:  No signal in DVB-T/T2/C mode.

Check tuner supply voltage; 3V3-TUNER and VDD-1V8. Check tuner options are correctly set in Service menu. Check AGC voltage at TUNER-IF-AGC pin of tuner.

No signal or Low signal in DVB-S/S2 mode.

Check signal cables and LNB voltage, if there is no problem, check AV2018 supply voltage 3V3-VCC-SAT. If it is OK, then measure the voltage from the PIN1 of U142.

If the PIN1 voltage is equal to 0V, please check i2c waveforms and software. If the PIN1 voltage is lower than 1V (e.g: 0.8Vor 0.3V), change the U142 with a new part.


SERVICE MENU [Service Mode]

In order to reach service menu, first Press “MENU” button, then write “4725” by using remote controller.

You can see the service menu main screen. You can check SW releases by using this menu. In addition, you can make changes on video, audio etc. by using video settings, audio settings titles.

Friday, 9 October 2020

LG42LN5200, LG42WT30, LG42WL10 , PANASONIC TH42LRU60, SANYO DP42D23, LGL42L80, LG47GA6400 T-CON BOARDS TIMING CONTROL BOARDS INTERCONNECTIONS SCHEMATICS

 42LN5300 Interconnect:  TV Models: LG 42LN5200 5300 5400 5700, LG 42WT30, LG 42WL10, Panasonic TH-42LRU60, Sanyo DP42D23 P42D23-00 & P42D23-11

PANEL P/N: EAJ62310701

Part Number: 6871L-3403A

T-con Board P/N: 6870C-0452A

DESC or Panel Sticker Number: LC420DUE-SFR5, LC420DUE-SFR1 (similar to LC500DUE-SFR1)

Warning: Be sure to install the screws in the T-CON board before applying power. Damage to the board will occur.

Panel Test: To run the T-CON “Panel Test”, remove the LVDS cables. Jump 12V to the 12V fuse. Jump VCC 3.3V to pin-44 on CN1. White, Red, Blue, Green and Black patterns show on screen.



LG 42LN5300 P1100 (Mainboard) CN1 (T-CON board) Connector Video Waveforms

All LVDS signals are taken with SMPTY Color Bar signal input (1080P)

Component Input. All LVDS signals are “Differential Pairs”. The ones shown are the “Positive” signal of the pair. The Negative signal looks exactly the same but flipped 180 degree. Scope Settings are 100mV per/division, 2.5uSec per/division.

42LV5500 Interconnect:  TV Models: LG 42LV5400, LG 42LV5500, LG 42LW5300

PANEL P/N: EAJ61749101

Part Number: 6871L-2693A

T-con Board P/N: 6870C-0358A

DESC or Panel Sticker Number: LC420EUF-SDA1 (V6 32/42/47 FHD 120Hz)

Warning: T-CON Board under shield. Be to reinsert screws before operating set with shield removed.

PANEL Test:  To run the T-con “Panel Test”, remove the LVDS cables. Jump 12V to the 12V fuse. Jup VCC 3.3V to pin-44 on CN1. White, Red, Blue, Green and Black patterns show on screen.

Note: Before doing the Panel Test, make sure their backlight can lit/operating normally.

 


 

42SL80 Interconnect: TV Models: LG 42SL80

PANEL P/N: EAT60667401

Part Number: 6871L-1828A

T-con Board P/N: 6870C-0259A

DESC or Panel Sticker Number: LC420WUD-SBM4 (42/47 Slim & Narrow 240Hz CONTROL)



47GA6400 Interconnect:  TV Models: LG 47GA6400

PANEL P/N: EAJ62270801

Part Number: 6871L-3264A

T-con Board P/N: 6870C-0444A

DESC or Panel Sticker Number: LC470EUN-SFF2 (DESC: LC470DUE-SFR1)

Warning: Return the screws when servicing the T-CON board with shields removed.

Concerning Quick Start:  If Quick Start is turned on in the Options Menu, T-CON 12V will be available during STBY, but there will be no video to process. Also, no Backlight.

CN2: Global Dimming

(1) Scan 1, (2) Scan 2, (3) Scan 3, (4) GND.  Pins are inverted on inverter.

PANEL Test:  To run the T-CON “Panel Test”, remove the LVDS cable CN1. Jump 12V to the 12V fuse on T-con board. Jump VCC 3.3V to pin-44 on CN1. White, Red, Blue, Green and Black patterns show on screen.




Thursday, 1 October 2020

SHARP LC-46D62U, SHARP LC-52D62U – HOW TO TROUBLESHOOT THE NO-AUDIO PROBLEM

Sharp LC-46D62U, Sharp LC-52D62U – How to troubleshoot the No-Audio problem

No audio [signal inputs] 
No audio HDMI, No audio in all modes 
No audio at digital broadcast signal reception / AT VHF/UHF broadcast
 No audio signal at digital audio output terminal [analog sound OK] 

Monday, 28 September 2020

LG OM7560 MINI HIFI AUDIO TROUBLESHOOTING / DIAGNOSIS, HOW TO DISASSEMBLE THE MECHANISM AND SCHEMATICS

LG OM7560 Mini HiFi audio troubleshooting, how to disassemble the mechanism


AMPLIFIER
Stereo mode 300 W + 300 W (4 Ω at 1 kHz, THD 10 %)
Front 300 W + 300 W (4 Ω at 1 kHz, THD 10 %)
Woofer 400 W (3 Ω at 200 Hz, THD 10 %)
1) The pick-up incorporates a strong magnet, and so should never be brought close to magnetic materials.
2) The pick-up should always be handled correctly and carefully, taking care to avoid external pressure and impact. If it is subjected to strong pressure or impact, the result may be an operational malfunction and/or damage to the printed-circuit board.
3) Each and every pick-up is already individually adjusted to a high degree of precision, and for that reason the adjustment point and installation screws should absolutely never be touched.
4) Laser beams may damage the eyes!
Absolutely never permit laser beams to enter the eyes!
Also NEVER switch ON the power to the laser output part (lens, etc.) of the pick-up if it is damaged.
NEVER look directly at the laser beam, and don’t allow contact with fingers or other exposed skin.
5) Cleaning the lens surface
If there is dust on the lens surface, the dust should be cleaned away by using an air bush (such as used for camera lens). The lens is held by a delicate spring. When cleaning the lens surface, therefore, a cotton swab should be used, taking care not to distort lens.
6) Never attempt to disassemble the pick-up.
Spring has excess pressure. If the lens is extremely dirty, apply isopropyl alcohol to the cotton swab.
(Do not use any other liquid cleaners, because they will damage the lens.) Take care not to use too much of this alcohol on the swab, and do not allow the alcohol to get inside the pick-up.
Hidden key mode
Push both Front key and RCU key to activate it for 5 seconds.
1.    Disc Lock On/Off (CD Function Only Active)
2.     Front Key : STOP
RCU Key :STOP
2. Check Version and Option code
 Front Key : STOP
 RCU Key : PLAY/PAUSE
 You can change [Audio MCU Version <-> CD Controller Version <-> EEPROM Option] by SKIP+/-.
3. Clear EEPROM
 Front Key : STOP
 RCU Key : SKIP- (CD Model), 0 (DVD Model)
4. Edit EEPROM
 Front Key : STOP
 RCU Key : SKIP+
 You can change the digit of option by SKIP+/-.
 You can edit 0~f by REPEAT or PLAY/PAUSE key.
5. Measure Mode (Bypass)
 Front Key : STOP
 RCU Key : 8
 HW output measure
Service information for EEPROM

Program download:  AUDIO PROGRAM
Download program file name must be MICOM_OM7560_YYMMDDX.HEX
If security program(Water Wall) is activated on PC, you must save the file to the USB storage device and disable the security software, then download the file to your set.
Downloading file proceeds in the same way at USB1 function and USB2 function.
Caution: When downloading the file, you should neither unplug the USB device, change to the other function, nor power off the device. USB device must be unplugged when the downloading process is completed.
CD PROGRAM
Download program file name must be HG690_OM7560_YYMMDDX.bin
If security program(Water Wall) is activated on PC, you must save the file to the USB storage device and disable the security software, then download the file to your set.
Downloading file proceeds in the same way at USB1 function and USB2 function.
Caution: When downloading the file, you should neither unplug the USB device, change to the other function, nor power off the device. USB device must be unplugged when the downloading process is completed.
EQ PROGRAM
Download program file name must be EQ_PRG.BIN
If security program(Water Wall) is activated on PC, you must save the file to the USB storage device and disable the security software, then download the file to your set.
Downloading file proceeds in the same way at USB1 function and USB2 function.
Caution: When downloading the file, you should neither unplug the USB device, change to the other function, nor power off the device. USB device must be unplugged when the downloading process is completed.
DISASSEMBLY
When disassembling the Frame Top, do not rotate and disassemble by pulling upwards.
To disassemble the Front Panel, remove the two screws and disassemble.
Troubleshooting:  NO POWER
If the unit doesn’t work by no power problem, repair the set according to the following guide.
 FUSE/ THERMISTOR/ BRIDGE DIODE
Please check and replace F901, TH901 or TH903, BD901 on SMPS board.
How to troubleshoot (Countermeasure)
1) Check if the fuse F901 is open or short-circuit.
2) Check if the NTC thermistor TH900 or TH903 is normal or open.
3) Check if the bridge diode BD901 is short-circuit by over current with a digital multi-meter.
No power
If the unit doesn’t work by no PVDD problem, repair the set according to the following guide.
 FUSE/ FET
Please check and replace F901, Q901 on SMPS board.
1) Check if the fuse F901 is open or short-circuit.
2) Check the anode-cathode voltage of D951 with a digital multi-meter, it is normally 0.2 ~ 0.3 V.
 If it doesn’t have any voltage, it’s destroyed. Replace it with a new one.
No booting when power on the set
The set doesn’t work when press the power button on the top board or the remote control.
 IC501
Replace IC501 on MAIN board.
1) Check the +12 VA (CN202) and 3.3VA (IC503) in standby mode.
 If there is no 12 VA, check the SMPS and if doesn’t appear 3.3 VA, check IC503.
2) Check +12 VA, +5.1 VA, 3.3 VA, DVCC_5V and DVCC_3.3V when power on the set.
- If the set doesn’t work regardless of what the KEY1 changes high to low while pressing the power button.
X500 and X501 work normally but, if you can not power on the set, replace the IC501 with a new one on the main board
VFD is not displayed when power on the set
When power on the set, any icons or characters on VFD are not displayed.
 VFD (VFD301)
Please check and replace VFD301 on TOP FRONT board.
1) Check if VFD_12V, DVCC_3.3V and VCC_5V are output from SMPS to VFD via the main board.
2) Check if the IC501 outputs VFD_CLK, VFD_STB, and VFD_DAT to the top board.
3) Check if the VFD grid current amplifier circuit on the top board.
Check the drive signal to the transistor’s (Q801,2) base.
 If the control signals from VFD (DGND, VDD) isn’t output, replace VFD with a new one.
No booting in CD/USB function
After you turn on power key and displayed message in the following order (HELLO > VOL XX >CD or USB) on VFD, it will not display other message on VFD, and it will not boot-up normally.
NO DVCC_3.3V, 1.2 VA
Please check and replace IC202, IC205 on MAIN board.
1) Check Voltage of IC202 pin3 on MAIN board.
 If IC202 pin3 (about 5.1 V) & pin1 Input 12 VA doesn’t come out, check +12 VA from SMPS board.
2) If IC202 pin3 (about 5.1 V) is normal, check voltage of IC205 pin3 (about 1.2 VA), pin6 (about 3.3 VA).  If IC205 pin3 (about 1.2 VA), pin6 (about 3.3 VA) doesn’t come out, check R253, R254, R256 and R260, R261, R262.
If there’s no defective component then replace IC205.
3) PWR_CTRL is high, check R512 and if there’s no defective component then replace IC505.
PWR_CTRL (IC505 pin3) is high (about 3.2 V)
If PWR_CTRL isn’t high, check pin D11 of IC501 & R512, R513
4) If PWR_CTRL is high, check R559 and if there’s no defective component then replace IC505
NO BOOTING (IN CD/USB FUNCTION)
After you turn on power key and displayed message in the following order (HELLO > VOL XX >CD or USB) on VFD, it will not display other message on VFD, and it will not boot-up normally.
CRYSTAL (X500)
Replace X500 on MAIN board.
1) If 3.3 VA & 1.2 VA is normal, check reset ‘High’ of IC501 pin T12 on MAIN board.
 If MAIN_RESET isn’t high, check MICOM (IC101) pin40.
2) If MAIN_RESET is high, check the soldering status of 24 MHz crystal (X500).
3) If the crystal (X500) doesn’t oscillate, check R508, C502, C503 around crystal (X500).
 If there’s no defective component, then replace X500.

NO BOOTING (IN CD/USB FUNCTION)
After you turn on power key and displayed message in the following order (HELLO > VOL XX > CD or USB) on VFD, it will not display other message on VFD, and it will not boot-up normally.
 SERIAL FLASH (IC503)
Please check and replace IC503 on MAIN board.
1) If the crystal (X500) does oscillate, check serial flash (IC503) on MAIN board.
Check pin8 (VCC), pin6 (CLK), pin1 (CS), pin2 (DO), pin5 (DI) of below waveform.
2) If pin1, 2, 5, 6 doesn’t come out, check registers (R563, R564, R534, R535, R536, R5E4) of IC503.
 If registers of IC503 is OK, then replace IC503. (it need to download program.)
3) After change IC503, if It is still not below waveform, check IC501 (DSP IC).
NO OPERATION OF MD
When no sound output in the CD function, you can not listen to music reading data from a CD disc if the servo motors in MD don’t work. This step is for checking the SPINDLE MOTOR among them.
SPINDLE MOTOR
Replace IC400 on MAIN board.
1) Check the SPDO signal from pin16 of IC401.
 If no signal, check DVCC_3.3V and DV 3.3V (RF) and X400.
2) Check the SPIN+ & SPIN- from IC400 to CN401 for driving SPINDLE motor. It is about 3.6 Vp-p.
 If no signal, check M_5 V for IC400.
3) Check if the FFC cable is solidly connected between CN401 and MD.
4) Check the MD.
 If the spindle motor is sort-circuit or has any trouble, it cannot rotate CD discs.
Please check the function after changing another MD

NO OPERATION OF MD
When no sound output in the CD function, you can not listen to music reading data from a CD disc if the servo motors in MD don’t work. This step is for checking the SLED MOTOR among them.
 SLED MOTOR
Replace IC400 on MAIN board.
1) Check the SLDO signal from pin15 of IC401.
If no signal, check DVCC_3.3V and DV 3.3V(RF) and X400.
2) Check the SPED+ & SLED- from IC400 to CN401 for driving SPINDLE motor. It is about 2.9 Vp-p.
If no signal, check M_5 V for IC400.
3) Check if the FFC cable is solidly connected between CN401 and MD.
4) Check the MD.
If the spindle motor is sort-circuit or has any trouble, it cannot rotate CD discs.
Please check the function after changing another MD
NO OPERATION OF MD
When no sound output in the CD function, you can not listen to music reading data from a CD disc if the servo motors in MD don’t work. This step is for checking the TRAY OPEN / CLOSE MOTOR among them.
TRAY OPEN/ CLOSE MOTOR
Replace IC400 on MAIN board.
1) Check MOT_OPEN & MOT_CLOSE signals from pin P5, L4 of IC501 to IC400.
If no signal, check M_5V to IC400.
2) Check LOAD± from IC400 to CN401 for driving the tray open / close motor. It is about 3.85 Vp-p.
 If no signal, check M_5V to IC400. If it has any trouble, replace it with a new one.
3) Check if the FFC cable is solidly connected between CN401 and MD.
4) Check the MD.
If the tray motor is sort-circuit or has any trouble, it cannot open or close the tray.
Please check the function after changing another MD
NO OPERATION OF MD
When no sound output in the CD function, you can not listen to music reading data from a CD disc if the pickup module in MD doesn’t work. This step is for checking the LASER TRACKING ACTUATOR.
 LASER TRACKING ACTUATOR
Replace IC400 on MAIN board.
The tracking actuator makes the laser beam be positioned in the centre of a track on CD disc.
1) Check the TRD signal from pin14 of IC401.
If no signal, check DVCC_3.3V & DV_3.3V (RF) and X400.
2) Check TR- & TR+ from IC400 to CN400 for driving the tracking actuator.
If no signal, check M_5V for IC400.
3) Check if the FFC cable is solidly connected between CN400 and MD.
4) Check the MD.
 If the pickup module has any trouble, it cannot move the laser beam on the left or right side.
Please check the function after changing another MD.

NO OPERATION OF MD
When no sound output in the CD function, you cannot listen to music reading data from a CD disc if the pickup module in MD doesn’t work. This step is for checking the LASER FOCUSING ACTUATOR.
LASER FOCUSING ACTUATOR
Replace IC400 on MAIN board.
The focusing actuator makes the laser beam keep a regular interval with the surface of a CD disc.
1) Check the FDO signal from pin13 of IC401.
If no signal, check DVCC_3.3 & DV_3.3V(RF) and X400.
2) Check F- & F+ from IC400 to CN400 for driving the focusing actuator.
If no signal, check M_5V for IC400.
3) Check if the FFC cable is solidly connected between CN400 and MD.
4) Check the MD.
 If the pickup module has any trouble, it cannot move the laser beam on the top or bottom side.
Please check the function after changing another MD
NO SOUND
There is no sound output by DIGITAL AUDIO AMP DAMAGE, repair the set according to the following guide.
DIGITAL AUDIO AMP DAMAGE
Replace IC701, IC702 on MAIN board.
1) Check PWM_FL±, PWM_FR± & PWM_SW± signals from IC601 to IC701 & 702 each input function.
If no signal, check if I2S audio signals are entered to IC601.
2) Check PVDD.
If PVDD is abnormal, check the SMPS.
3) Check AMP_12V for driving the gate of AMP IC.
a. All the powers are normal, but if AMP_12V is low, there is possible for AMP IC to be damaged.
b. Remove L701, L702, L703 and L704 one by one.
When removed a inductance, if AMP_12V is recovered, the IC connected to it was damaged.
c. Replace the IC with a new one.
4) Check the impedance between IC701/IC702_OUT_A/OUT_B & GND.
a. If the impedance is 0 Ω, the IC must be damaged.
b. After removing the heat sink, replace it with a new one
NO SOUND
There is no sound output in the CD FUNCTION, repair the set according to the following guide.
CD FUNCTION
Replace IC501 on MAIN board.
1) Check CD_BCK, CD_LRCK, & CD_DATA signals from IC501 to IC401.
If no signal, check if the RF & servo signals from MD is entered to IC401.
Refer to the “No operation of MD” guide on Item 5.
2) Check the following I2S signal flow. < I2S audio signal Interface >
- MCS_BCK : IC501_pin E1 --> IC601_pin23
- MCS_LRCK : IC501_pin D1 --> IC601_pin22 (44.1 kHz)
- MIX_DATA0_OUT : IC501_pin E2 --> IC601_pin24
- MCS_MCLK : IC501_pin D2 --> IC201_pin44
 If there is any trouble, check the power for each IC.
The power is normal but, if the signal waveform to the IC is distorted or no signal, replace it with a new one
NO SOUND
There is no sound output in the USB Function, repair the set according to the following guide.
USB FUNCTION
Replace IC204 on MAIN board.
1) Check +5V_USB to USB board.
 If the USB LED are turned on, the voltage is okay, if so not, check USB_5V to pin5, 6 of CN803.
2) Check USB D1± or USB D2± from MAIN board to TOP board.
a. Check 2.0_D1±signals (pin U7, U8 ) or 1.1_D1± signals(pin A7, A8 ) to IC501.
b. Check USB± signals to CN502 (pin1, 2, 8, 9).
 If there is any trouble, check the power for IC204.
The power is normal but, if the signal waveform to the IC is distorted or no signal, replace it with a new one.
3) Check if “Digital audio AMP block” on item 6-1 is normal.

NO SOUND
There is no sound output in the AUX Function, repair the set according to the following guide.
AUX FUNCTION
Replace IC201 on MAIN board.
1) Check AUX_L/R signals to IC201 (pin23, 24).
2) Check if MCS_BCK, MCS_LRCK & MCS_MCLK are entered from IC501 to IC201.
3) Check if ADC_DATA is entered from IC201 to IC501.
 If no signal, check DVCC_5V & DVCC_3.3V (ADC) for IC201. If is NG, replace it a new one.
4) Check the following I2S signal flow from IC501 to IC601. (Refer to Item 6-2.)
 If there is any trouble, check the power for each IC. The power is normal but, if the signal waveform to the IC is distorted or no signal, replace it with a new one.
5) Check if the digital audio AMP block is okay. Refer to “Digital Audio AMP” guide on Item 6-1.
 If AMP is damaged, replace it with a new one.

NO SOUND
There is no sound output in the TUNER function, repair the set according to the following guide.
 TUNER FUNCTION
Replace IC201 on MAIN board.
1) Check if TUNER_LR is entered from pin1, 3 of TU500 to IC201 (pin26, 27).
 if no signals, check DVCC_3.3V for tuner power.
 Check if the tuner control signals (CLK, DAT, CE, RST, SLT) are entered from IC501 to TU500.
If it doesn’t work, replace TUNER with a new one.
2) Check if MCS_BCK, MCS_LRCK, & MCS_MCLK are entered from IC501 to IC201.
3) Check if ADC_DATA is entered from IC201 to IC501.
If no signal, check DVCC_5V & DVCC_3.3V (ADC) for IC201. If is NG, replace it with a new one.
4) Check the following I2S audio signal flow from IC501 to IC601. (Refer to Item 6-2.)
 If there is any trouble, check the power for each IC.
The power is normal but, if the signal waveform to the IC is distorted or no signal, replace it with a new one.
5) Check if the digital audio AMP block is okay. Refer to “Digital Audio AMP” guide on Item 6-1.
 If AMP is damaged, replace it with a new one.

NO SOUND
There is no sound output in the PORTABLE Function, repair the set according to the following guide.
PORTABLE FUNCTION,
Replace IC201 on MAIN board.
1) Check if PT_LR signals to IC201 (pin9, 10).
2) Check if MCS_BCK, MCS_LRCK, & MCS_MCLK are entered from IC501 to IC201.
3) Check if ADC_DATA is entered from IC201 to IC501.
 If no signal, check DVCC_5V & DVCC_3.3V (ADC) for IC201. If is NG, replace it with a new one.
4) Check the following I2S audio signal flow from IC501 to IC601. (Refer to Item 6-2.)
 If there is any trouble, check the power for each IC.
The power is normal but, if the signal waveform to the IC is distorted or no signal, replace it with a new one.
5) Check if the digital audio AMP block is okay. Refer to “Digital Audio AMP” guide on Item 6-1.
If AMP is damaged, replace it with a new one.
NO SOUND
There is no sound output in the MIC IN function, repair the set according to the following guide.
MIC IN function
Replace IC206 on MAIN board, ICA301 on TOP FRONT board.
1) Check MIC_SI & MIC_S2 signal to pin5 & 6 of CN201.
If no signal, Check the signals to pin6 & 8 of CNA301 on the FRONT board.
Check if the signal is entered from pin 6 & 8 of CNA301 to pin 5 & 6 of CN201.
2) Check if MIC_SIG is entered from pin 6 of JK302 & JKA303 to pin2, 13 to ICA301 (PRE AMP).
3) Check if the amplified signal comes out from pin3 &12 of ICA301.
If no signal output, check DVCC_3.3V for ICA301, replace ICA301 with a new one if it has a problem.
4) Check if MCS_BCK, MCS_MLCK & MCS_LRCK is entered from IC501 to IC206.
Check if MIC_DATA_IN is entered from pin9 of IC206 to pin T1of IC501.
 If no signal, check DVCC_5V & DVCC_3.3V for IC206.
If it is abnormal, change replace it a new one.
5) Check the following I2S signal flow from IC206 to IC501.
If there is any trouble, check the power for each IC.
If the signals are abnormal, replace it a new one.
6) Check if the digital audio AMP block is okay. Refer to “Digital Audio AMP” guide on item 6-1.
If AMP is damaged, replace it with a new one.
NO SOUND
There is no sound output in the Bluetooth function, repair the set according to the following guide.
BLUETOOTH FUNCTION
Replace IC501 on the MAIN board or Bluetooth module on the FRONT Panel.
1) Check BT_RX, BT_TX signal to pin6, 4 of CN504.
 If no signal, check the signal to pin4, 6 and pin10 (BT_3.3V) of on the Bluetooth module and cable connection state.
If there are no signal out from module, replace new module.
2) Check if BT_RX/TX is entered from pin6, 4 of CN504 to pin L1,K1 to IC501 (DSP).
3) Check if MCS_BCK, MCS_LRCK & MIX_DATA IN is entered from IC501 to IC601.
If no signal, check +3.3 VA & +1.2 VA for IC501.
If it is abnormal, change replace it a new one.
4) Check the following I2S signal flow from IC501 to IC601.
If there is any trouble, check the power for each IC.
If the signals are abnormal, replace it a new one.
5) Check if the digital audio AMP block is okay. Refer to “Digital Audio AMP” guide on item 6-1.
If AMP is damaged, replace it with a new one
Circuit voltage chart
Connector voltage chart
DECK MECHANISM DISASSEMBLY

1. Main Base (Fig. 4-1)
1-1. Clamp Assembly Disc
1) Place the Clamp Assembly Disc as Fig. (A)
2) Lift up the Clamp Assembly Disc in direction of arrow(A).
3) Separate the Clamp Assembly Disc from the Holder Clamp.
1-1-1. Plate Clamp
1) Turn the Plate Clamp to counter clockwise direction and then lift up the Plate Clamp.
1-1-2. Magnet Clamp
1-1-3. Clamp Upper
2. Tray Disc (Fig. 4-2)
1) Insert and push a Driver in the emergency eject hole(A) at the right side, or put the Driver on the Lever(B) of the Gear Emergency and pull the Lever(B) in direction of arrow so that the Tray Disc is ejected about 15~20mm.
2) Pull the Tray Disc until it is separated from the Base Main completely.