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TENTATIVE
All information in this technical data sheet is tentative
and subject to change without notice.
15.0” XGA
TECHNICAL SPECIFICATION
AC150XA02
MITSUBISHI ELECTRIC Corp.
Date: Mar.13,’12
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CONTENTS
No. |
Item |
Page |
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COVER |
1 |
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CONTENTS |
2 |
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1 |
APPLICATION |
3 |
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2 |
OVERVIEW |
4 |
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3 |
ABSOLUTE MAXIMUM RATINGS |
5 |
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4 |
ELECTRICAL CHARACTERISTICS |
5, 6, 7 |
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5 |
INTERFACE PIN CONNECTION |
8, 9 |
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6 |
INTERFACE TIMING |
10, 11, 12, 13, 14 |
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7 |
BLOCK DIAGRAM |
15 |
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8 |
MECHANICAL SPECIFICATION |
16, 17 |
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9 |
OPTICAL CHARACTERISTICS |
18, 19, 20 |
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10 |
RELIABILITY TEST CONDITION |
21 |
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11 |
OTHER FEATURE |
22 |
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12 |
HANDLING PRECAUTIONS FOR TFT-LCD MODULE |
23, 24, 25 |
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1. APPLICATION
This specification applies to color TFT-LCD module, AC150XA02.
These specification papers are the proprietary product of Mitsubishi Electric Corporation (“MITSUBISHI) and include materials protected under copyright of MITSUBISHI. No part of this document may be reproduced in any form or by any means without the express written permission of MITSUBISHI.
MITSUBISHI does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from use of a product specified in this document. No license, express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of MITSUBISHI or of others.
MITSUBISHI classifies the usage of the TFT-LCD module as follows. Please confirm the usage before using the product.
(1) Standard Usage
Computers, office equipment, factory automation equipment,test and measurement equipment, communications, transportation equipment(automobiles, ships, trains, etc.), provided, however, that operation is not influencedby TFT-LCD directly.
(2) Special Usage
Medical equipment, safety equipment, transportation equipment, provided, however, that TFT-LCD is necessary to its operation.
(3) Specific Usage
Cockpit Equipment, military systems, aerospace equipment, nuclear reactor control systems, life support systems and any other equipment. MITSUBISHI should make a contract that stipulate apportionment ofresponsibilities between MITSUBISHI and our customer.
The product specified in this document is designed for “Standard Usage” unless otherwise specified in this document. If customers intend to use the product for applications other than those specified for “Standard Usage”, they should first contact MITSUBISHI sales representative for it's intended use in writing.
MITSUBISHI has been making continuous effort to improve the reliability of its products. Customers should implement sufficient reliability design of their application equipments such as redundant system design, fail-safe functions, anti-failure features.
MITSUBISHI assumes no responsibility for any damage resulting from the use of the product that does not comply with the instructions and the precautions specified in this document.
Please contact and consult a MITSUBISHI sales representative for any questions regarding this product.
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2. OVERVIEW
AC150XA02 is 15.0” color TFT-LCD (Thin Film Transistor Liquid Crystal Display) module composed of LCD panel, driver ICs, control circuit, LED driver and backlight unit.
By applying 6 bit or 8 bit digital data, 1024 768, 262k-color or 16.7M-color images are displayed on the 15.0” diagonal screen. Input power voltages are 3.3 V for LCD driving and 12.0 V for backlight unit.
The type of data and control signals are digital and transmitted via LVDS interface per Typ. 65 MHz clock cycle.
General specifications are summarized in the following table:
ITEM |
SPECIFICATION |
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Display Area (mm) |
304.1(H) 228.1(V) |
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(15.0-inch diagonal) |
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Number of Dots |
1024 3 (H) 768 (V) |
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Pixel Pitch (mm) |
0.297 (H) 0.297 (V) |
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Color Pixel Arrangement |
RGB vertical stripe |
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Display Mode |
Normally white |
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Number of Color |
262k(6 bit/color), 16.7M(8 bit/color) |
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Luminance (cd/m2) |
450 |
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Viewing Angle (CR 10) |
80 80 (H), 70 70 (V) |
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Surface Treatment |
Anti-glare and hard-coating 3H |
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Electrical Interface |
LVDS (6 bit/8 bit) |
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Viewing direction |
Higher Contrast ratio: 6 o'clock |
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Less gray scale reversal: 12 o'clock |
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Module Size (mm) |
326.5 (W) 253.5 (H) 12.0(D) |
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Module Mass (g) |
1100 |
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Backlight Unit |
LED, Edge-light, Unreplaceable |
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Characteristic value without any note is typical value.
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3. ABSOLUTE MAXIMUM RATINGS
ITEM |
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SYMBOL |
MIN. |
MAX. |
UNIT |
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Power Supply Voltage for LCD |
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VCC |
0 |
4.0 |
V |
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Logic Input Voltage |
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VI |
0.3 |
VCC+0.3 |
V |
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Backlight Power Supply Input Voltage |
VL |
0.3 |
14.0 |
V |
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Backlight ON-OFF |
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BLEN |
0.3 |
VL |
V |
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Light Dimming Control (PWM) input voltage |
V PDIM |
0.3 |
5.8 |
V |
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Operation Temperature (Panel) |
Note 1,2) |
Top(Panel) |
0 |
65 |
°C |
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Operation Temperature (Ambient) |
Note 2) |
Top(Ambient) |
0 |
65 |
°C |
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Storage Temperature |
Note 2) |
Tstg |
20 |
65 |
°C |
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[Note]
1)The relative temperature and humidity range are 90%RHMax. (Ta 40°C).
2)The maximum wet bulb temperature 39°C (Ta 40°C) and without dewing.
3)If you use the product in a environment which over the definition of temperature and humidity
too long to effect the result of eye-aching.
4) If you operate the product in normal temperature range, the center surface of panel should be under 65°C.
4. ELECTRICAL CHARACTERISTICS
(1) TFT-LCD |
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Ambient temperature: Ta = 25°C |
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ITEM |
SYMBOL |
MIN. |
TYP. |
MAX. |
UNIT |
Remarks |
Power Supply Voltages for LCD |
VCC |
3.0 |
3.3 |
3.6 |
V |
*1) |
Power Supply Currents for LCD |
ICC |
-- |
480 |
800 |
mA |
*2) |
Permissive Input Ripple Voltage |
VRP |
-- |
-- |
100 |
mVp-p |
VCC = +3.3V |
High |
VIH |
0.8 VCC |
-- |
VCC |
V |
MODE |
Logic Input Voltage |
VIL |
0 |
-- |
0.2 VCC |
V |
MODE |
Low |
*1) Power and signals sequence: |
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0.5 t1 10 ms |
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200 ms t4 |
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0 < t2 50 ms |
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200 ms t5 |
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0 < t3 50 ms |
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0 ms t6 |
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VCC |
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0.9VCC |
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LCD Power Supply |
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data |
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0.9VCC |
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0.1VCC |
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0.1VCC 0.1VCC |
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Logic Signal |
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t1 |
t2 |
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t3 |
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t4 |
Backlight Power Supply
t5 t6
data: RGB DATA, DCLK, DENA, MODE
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VCC-dip conditions:
1)When 2.7 V VCC < 3.0 V, td 10 ms
2)When VCC < 2.7 V
VCC-dip conditions should also follow the power and signals sequence.
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VCC |
2.7 V |
3.0 V |
td |
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*2) VCC = +3.3 V , fH=48.36 kHz, fV=60 Hz, fCLK=65 MHz Display image at typical power supply current value is 256-gray-bar pattern (8 bit), 768 line mode.
*3) Fuse
Parameter |
Fuse Type Name |
Supplier |
Remark |
VCC |
F0603FA3000V032T |
AEM |
*) |
*) The power supply capacity should be designed to be more than the fusing current.
(2) Backlight |
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Ta=25°C |
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ITEM |
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SYMBOL |
MIN. |
TYP. |
MAX. |
UNIT |
Remarks |
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Power Supply Input Voltage |
VL |
10.8 |
12.0 |
13.2 |
V |
*1) |
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Power Supply Input Current |
IL |
600 |
700 |
850 |
mA |
*3) |
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Power Supply Input Current |
PL |
-- |
8.4 |
9.2 |
W |
Dimming=100%, |
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VL=12.0V |
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Backlight ON-OFF |
High |
BLEN |
2.5 |
-- |
VL |
V |
ON |
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Low |
0 |
-- |
0.4 |
V |
OFF |
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Light Dimming Control |
High |
V PDIM |
1.8 |
-- |
5.0 |
V |
ON |
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(PWM) input voltage |
Low |
0 |
-- |
0.8 |
V |
OFF |
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PWM frequency |
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f PDIM |
100 |
400 |
500 |
Hz |
*2) |
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Pulse width of PDIM |
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t PDIM |
100 |
-- |
DC |
us |
*2) |
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LED Life Time |
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LT |
80,000 |
100,000 |
-- |
h |
*4), *5) |
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*1) Power and signals sequence:
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20 t1 [ms] |
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100 t4 [ms] |
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0 t2 [ms] |
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0 t5 [ms] |
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0 t3 [ms] |
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1 t6 [ms] |
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VL-dip conditions: 1) When 9.72 V VL < 10.8 V, td 10 ms 2) When VL < 9.72V
VL-dip conditions should also follow the power and signals sequence.
VL
9.72 V |
10.8 V |
td
*2) Lower frequency causes the flicker or the image breaking of motion picture.
Depending on the PDIM signal integrity (jitter etc.), the flicker may be visible. Please evaluate in advance.
The dimming ratio (D) can be calculated by following equation:
D = fPDIM tPDIM . Therefore, the minimum dimming ratio is fPDIM tPDIM(min)
*3) Fuse
Parameter |
Fuse Type Name |
Supplier |
Remark |
VL |
F0603HI2000V032T |
AEM |
*) |
*) The power supply capacity should be designed to be more than the fusing current.
*4) LED life time is defined as the time when the brightness becomes 50% of the initial value.
*5) The life time of the backlight depends on the ambient temperature. The life time will decrease under high temperature.
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5. INTERFACE PIN CONNECTION
(1) CN 1(Interface Signal) |
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Used connector: MSB240420HD (STM) or DF14H-20P-1.25(56) (HIROSE) |
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Corresponding connector: P240420 (STM) or DF14-20S-1.25C (HIROSE) |
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Pin |
Symbol |
Function (ISP 6 bit compatibility mode) |
Function (ISP 8 bit |
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No. |
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6 bit input |
8 bit input |
compatibility mode) |
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1 |
VCC |
+3.3 V Power supply |
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2 |
VCC |
+3.3 V Power supply |
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3 |
GND |
GND |
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4 |
GND |
GND |
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5 |
Link 0 |
R0, R1, R2, R3, R4, R5, G0 |
R2, R3, R4, R5, R6, R7, G2 |
R0, R1, R2, R3, R4, R5, G0 |
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6 |
Link 0+ |
R0, R1, R2, R3, R4, R5, G0 |
R2, R3, R4, R5, R6, R7, G2 |
R0, R1, R2, R3, R4, R5, G0 |
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7 |
GND |
GND |
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8 |
Link 1 |
G1, G2, G3, G4, G5, B0, B1 |
G3, G4, G5, G6, G7, B2, B3 |
G1, G2, G3, G4, G5, B0, B1 |
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9 |
Link 1+ |
G1, G2, G3, G4, G5, B0, B1 |
G3, G4, G5, G6, G7, B2, B3 |
G1, G2, G3, G4, G5, B0, B1 |
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10 |
GND |
GND |
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11 |
Link 2 |
B2, B3, B4, B5, DENA |
B4, B5, B6, B7, DENA |
B2, B3, B4, B5, DENA |
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12 |
Link 2+ |
B2, B3, B4, B5, DENA |
B4, B5, B6, B7, DENA |
B2, B3, B4, B5, DENA |
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13 |
GND |
GND |
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14 |
CLKIN |
Clock |
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15 |
CLKIN+ |
Clock + |
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16 |
GND |
GND |
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17 |
Link3 |
See: *2) |
R0, R1, G0, G1, B0, B1 |
R6, R7, G6, G7, B6, B7 |
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18 |
Link3+ |
See: *2) |
R0, R1, G0, G1, B0, B1 |
R6, R7, G6, G7, B6, B7 |
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19 |
MODE |
Low=ISP 6 bit compatibility mode |
High=ISP |
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8 bit compatibility mode |
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20 |
GND |
GND |
← |
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*1) Metal frame is connected to signal GND. |
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*2) Recommended wiring of Pin 17,18 (6 bit input) |
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LVDS
transmitter
LOW data
Pin 17
Pin 18
VCC
680Ω
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Pin 17 |
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or |
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Pin 18 |
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620Ω |
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(2) CN 2(Backlight)
Backlight-side connector: CR03-P06H2B-2 (CONNTEK)
Corresponding connector: CR03-S06C3 (CONNTEK), FI-S6S (JAE) Pin No.: The left side pin is No.1.
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Pin No. |
Symbol |
Function |
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1 |
VL |
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Power Supply Input Voltage |
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2 |
VL |
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Power Supply Input Voltage |
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3 |
GND |
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GND |
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4 |
GND |
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GND |
5 |
BLEN |
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Backlight ON-OFF |
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(High: ON, Low: OFF) |
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6 |
V PDIM |
Light Dimming Control (PWM) Input Voltage |
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(High active) |
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|
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*1) BLEN is |
NOT designed for dimming. |
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MITSUBISHI |
(8/25) |
AC150XA02_02_00 |
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