12 Adjustment
12.1. White balance adjustment
Instrument Name
Connection
Remarks
·
W/B pattern
·
Color analyzer
(Minolta CA-100 or equivalent)
Component input
Panel surface
User setting: Normal
Procedure
Remarks
·
Ensure aging is adequate.
·
Make sure the front panel to be used on the final set is fitted.
·
Make sure a color signal is not being shown before adjustment.
·
Put the color analyzer where there is little color variation.
1.
Output a white balance pattern.
2.
Check that the color temperature is “cool”.
3.
Set to factory mode, WB-ADJ.
4.
Set “R-CUT” “G-CUT” “B-CUT” 80h.
5.
Attach the sensor of color analyzer to the center of highlight window.
6.
Fix G drive at C0h and adjust “B-DRV” and “R-DRV” so x, y value of color analyzer
become the “Color temperature High” in table 1.
7.
Increase RGB together so the maximum drive value in RGB becomes FCh. That is, set
“ALL DRIVE” to FCh.
8.
Set color temperature to “Normal”.
9.
Set “R-CUT” “G-CUT” “B-CUT” 80h.
10. Attach the sensor of color analyzer to the center of highlight window.
11. Fix G drive at C0h and adjust “B-DRV” and “R-DRV” so x, y value of color analyzer
become the “Color temperature Mid” in table 1.
12. Increase RGB together so the maximum drive value in RGB becomes FCh. That is, set
“ALL DRIVE” to FCh.
* When WB-ADJ(mid) is adjusted by data-offset, set values as follows.
R-DRV : the same as R-DRV_cool
G-DRV : “G-DRV_cool” -2hDAC
B-DRV : “B-DRV_cool” -22hDAC
13. Set color temperature to “Warm”.
14. Set “R-CUT” “G-CUT” “B-CUT” 80h.
15. Attach the sensor of color analyzer to the center of highlight window.
16. Fix G drive at C0h and adjust “B-DRV” and “R-DRV so x, y value of color analyzer
become the “Color temperature Low” in table 1.
17. Increase RGB together so the maximum drive value in RGB becomes FCh. That is, set
“ALL DRIVE” to FCh.
* When WB-ADJ(warm) is adjusted by data-offset, set values as follows.
R-DRV : the same as R-DRV_cool
G-DRV : “G-DRV_cool” -AhDAC
B-DRV : “B-DRV_cool” -62hDAC
18. Set color temperature to “Cool”.
19. Copy values adjusted by HD pattern to the NTSC data area of EEPROM.
Pic Menu: Vivid
Picture: +30
ASPECT: FULL
·
Highlight section
Signal amplitude 75%
40
TH-42PX600U
Summary of Contents for TH-42PV600
Page 5: ...1 Applicable signals 5 TH 42PX600U ...
Page 20: ...8 Location of Lead Wiring 8 1 Lead of Wiring 1 20 TH 42PX600U ...
Page 21: ...8 2 Lead of Wiring 2 1 21 TH 42PX600U ...
Page 22: ...8 3 Lead of Wiring 2 2 22 TH 42PX600U ...
Page 23: ...8 4 Lead of Wiring 3 1 23 TH 42PX600U ...
Page 24: ...8 5 Lead of Wiring 3 2 24 TH 42PX600U ...
Page 25: ...8 6 Lead of Wiring 4 1 25 TH 42PX600U ...
Page 26: ...8 7 Lead of Wiring 4 2 26 TH 42PX600U ...
Page 27: ...8 8 Lead of Wiring 5 27 TH 42PX600U ...
Page 32: ...9 4 No Picture 32 TH 42PX600U ...
Page 39: ...11 4 Adjustment Volume Location 11 5 Test Point Location 39 TH 42PX600U ...
Page 41: ...41 TH 42PX600U ...
Page 69: ...15 Schematic and Block Diagram 15 1 Schematic Diagram Notes TH 42PX600U 69 ...
Page 130: ...NOTE TH 42PX600U 130 ...
Page 131: ...16 Parts Location Mechanical Replacement Parts List 16 1 Parts Location 131 TH 42PX600U ...
Page 132: ...16 2 Packing Exploded Views 132 TH 42PX600U ...
Page 134: ...17 Electrical Replacement Parts List 17 1 Replacement Parts List Notes 134 TH 42PX600U ...