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NT3960 데이터시트 PDF




Novatek에서 제조한 전자 부품 NT3960은 전자 산업 및 응용 분야에서
광범위하게 사용되는 반도체 소자입니다.


PDF 형식의 NT3960 자료 제공

부품번호 NT3960 기능
기능 TFT LCD Source Driver
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NT3960 데이터시트 를 다운로드하여 반도체의 전기적 특성과 매개변수에 대해 알아보세요.



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NT3960 데이터시트, 핀배열, 회로
NT3960
TFT LCD Source Driver
Features
Output : 300/309 output channels
6-bit resolution /64 gray scale
Dot inversion with polarity control
V1 ~ V10 for adjusting Gamma correction
Power for analog circuit : 6.5 ~ 10V
Output dynamic range : 0.1 ~ AVDD-0.1V
Power consumption of analog circuit : 2.5mA
Power for interface circuit : 3.0 ~ 3.6V
Operating frequency : 65MHz
Output deviation : 10 ~ 20mV
Data inverting for reducing EMI
Cascade function with bi-direction shift control
CMOS silicon gate ( p-type substrate )
COG
General Description
NT3960 is a data driver IC for a color TFT LCD panel. The channel number of 300 or 309 outputs is selectable for
SVGA and XGA applications. For better performance, dot inversion and a wide range voltage output, 6.5~10V, are designed
in this chip and for reducing EMI, data inversion control is used. This chip also supplies 10 sections of voltage-reference for
Gamma correction.
Block Diagram
www.DataSheet4U.com
OUT1 OUT2 OUT3
OUT308OUT309
Out Driver Buffer ( 309 channels )
V1 ~ V10
10
Digital to Analog Converter
D00 ~ D05
D10 ~ D15
D20 ~ D25
6
6
6
Decoder
666
Level Shift
66
666
6
66
6 Line Latch ( 309 X 6 bits X 2 )
6
REV
DIO1
1
Shift Registers ( 103 or 100 )
103
Vcc GND AVDD AVSS
CLK
SHL
SELT
POL
LD
DIO2
1 V1.0




NT3960 pdf, 반도체, 판매, 대치품
NT3960
TFT LCD Source Driver
Pad Description (continued)
Pad No.
Designation I/O
Description
41 ~ 43
POL
I Polarity select for the dot-inversion control. Available at the rising edge of LD
“POL” value is latched at the rising edge of “LD” to control the polarity of the even or
odd outputs. “POL=1” represents that the next-line odd outputs are of positive
polarity with a voltage output range from V1~V5, and even outputs are of negative
polarity with a voltage output range from V6 to V10. On the other hand, if LD gets
low level “POL”, odd outputs are of negative polarity and even outputs are of
positive.
POL=1: Odd outputs range from V1 ~ V5
Even outputs range from V6 ~ V10
POL=0: Odd outputs range from V6 ~ V10
Even outputs range from V1 ~ V5
*Remark: Pay attention to the polarity when selecting the 300-channel function.
The polarity of OUT160 ~OUT309 must be changed. (The polarity needs to
be continuous, +, -, +, -, +, -, etc. If you don’t change the polarity, it will not be
continuous between OUT150 and OUT160 when selecting the 300-channel
function. )
11~15, 107~111, AVDD
I
Power supply for analog circuits ; 6.5 ~ 10V
171~175
16 ~ 20, 72 ~ 76,
166 ~ 170
AVSS
I Ground pins for analog circuits
www.DataSheet4U.com
26 ~ 30, 156 ~ 160 Vcc
I Power supply for digital circuits
21 ~ 25, 38 ~ 40,
GND
I Ground pins for digital circuits
161 ~ 165
66 ~ 68
Test - For testing
5~7, 500~498 PASS1~3 - The internal connected paths
179~181,188~186 PASS4~6
501, 502
Align Mark - For COG assembly alignment
1~4, 182 ~ 185, NC - No connected
56, 121, 131, 141,
151
4

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NT3960 전자부품, 판매, 대치품
NT3960
TFT LCD Source Driver
Output Voltage V.S. Input Data
Data
00H
01H
02H
03H
04H
05H
06H
07H
08H
09H
0AH
0BH
0CH
0DH
0EH
0FH
10H
11H
12H
13H
14H
15H
16H
17H
18H
19H
1AH
1BH
1CH
1DH
1EH
1FH
20H
21H
22H
23H
24H
25H
26H
27H
28H
29H
2AH
2BH
2CH
2DH
2EH
2FH
Output Voltage
( Positive polarity )
V1
V2 + ( V1 – V2) X 5500/7500
V2 + ( V1 – V2) X 5000/7500
V2 + ( V1 – V2) X 4500/7500
V2 + ( V1 – V2) X 4000/7500
V2 + ( V1 – V2) X 3500/7500
V2 + ( V1 – V2) X 3000/7500
V2 + ( V1 – V2) X 2500/7500
V2 + ( V1 – V2) X 2000/7500
V2 + ( V1 – V2) X 1750/7500
V2 + ( V1 – V2) X 1500/7500
V2 + ( V1 – V2) X 1250/7500
V2 + ( V1 – V2) X 1000/7500
V2 + ( V1 – V2) X 750/7500
V2 + ( V1 – V2) X 500/7500
V2 + ( V1 – V2) X 250/7500
V2
V3 + (V2 – V3) X 2400/2650
V3 + (V2 – V3) X 2150/2650
V3 + (V2 – V3) X 1950/2650
V3 + (V2 – V3) X 1800/2650
V3 + (V2 – V3) X 1650/2650
V3 + (V2 – V3) X 1500/2650
V3 + (V2 – V3) X 1350/2650
V3 + (V2 – V3) X 1200/2650
V3 + (V2 – V3) X 1050/2650
V3 + (V2 – V3) X 900/2650
V3 + (V2 – V3) X 750/2650
V3 + (V2 – V3) X 600/2650
V3 + (V2 – V3) X 450/2650
V3 + (V2 – V3) X 300/2650
V3 + (V2 – V3) X 150/2650
V3
V4 + (V3 – V4) X 2100/2250
V4 + (V3 – V4) X 1950/2250
V4 + (V3 – V4) X 1800/2250
V4 + (V3 – V4) X 1650/2250
V4 + (V3 – V4) X 1500/2250
V4 + (V3 – V4) X 1350/2250
V4 + (V3 – V4) X 1200/2250
V4 + (V3 – V4) X 1100/2250
V4 + (V3 – V4) X 1000/2250
V4 + (V3 – V4) X 900/2250
V4 + (V3 – V4) X 750/2250
V4 + (V3 – V4) X 600/2250
V4 + (V3 – V4) X 450/2250
V4 + (V3 – V4) X 300/2250
V4 + (V3 – V4) X 150/2250
Output Voltage
( Negative polarity )
V10
V10 + ( V9 – V10) X 2000/7500
V10 + ( V9 – V10) X 2500/7500
V10 + ( V9 – V10) X 3000/7500
V10 + ( V9 – V10) X 3500/7500
V10 + ( V9 – V10) X 4000/7500
V10 + ( V9 – V10) X 4500/7500
V10 + ( V9 – V10) X 5000/7500
V10 + ( V9 – V10) X 5500/7500
V10 + ( V9 – V10) X 5750/7500
V10 + ( V9 – V10) X 6000/7500
V10 + ( V9 – V10) X 6250/7500
V10 + ( V9 – V10) X 6500/7500
V10 + ( V9 – V10) X 6750/7500
V10 + ( V9 – V10) X 7000/7500
V10 + ( V9 – V10) X 7250/7500
V9
V9 + ( V8 – V9) X 250/2650
V9 + ( V8 – V9) X 500/2650
V9 + ( V8 – V9) X 700/2650
V9 + ( V8 – V9) X 850/2650
V9ww+w.D(aVtaS8heet4UV.c9om) X 1000/2650
V9 + ( V8 – V9) X 1150/2650
V9 + ( V8 – V9) X 1300/2650
V9 + ( V8 – V9) X 1450/2650
V9 + ( V8 – V9) X 1600/2650
V9 + ( V8 – V9) X 1750/2650
V9 + ( V8 – V9) X 1900/2650
V9 + ( V8 – V9) X 2050/2650
V9 + ( V8 – V9) X 2200/2650
V9 + ( V8 – V9) X 2350/2650
V9 + ( V8 – V9) X 2500/2650
V8
V8 + ( V7 – V8) X 150/2250
V8 + ( V7 – V8) X 300/2250
V8 + ( V7 – V8) X 450/2250
V8 + ( V7 – V8) X 600/2250
V8 + ( V7 – V8) X 750/2250
V8 + ( V7 – V8) X 900/2250
V8 + ( V7 – V8) X 1050/2250
V8 + ( V7 – V8) X 1150/2250
V8 + ( V7 – V8) X 1250/2250
V8 + ( V7 – V8) X 1350/2250
V8 + ( V7 – V8) X 1500/2250
V8 + ( V7 – V8) X1650/2250
V8 + ( V7 – V8) X 1800/2250
V8 + ( V7 – V8) X 1950/2250
V8 + ( V7 – V8) X 2100/2250
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