# TFT LCD, 5 ", 800 x 480 Pixels, WVGA, Landscape, RGB, 3.3V

![Product image](https://novapart.co/image/farnell:2664764/)

**URL**: https://novapart.co/products/MCT050TC12W800480LML/tft-lcd-5-800-x-480-pixels-wvga-landscape-rgb-33v
**SKU**: MCT050TC12W800480LML
**Manufacturer**: MIDAS DISPLAYS
**Category**: Optoelectronics & Displays || Displays || LCD Displays || TFT LCD Displays
**Price**: €24.6200
**Stock**: 10+

## Description

Display Size:5"; Resolution:800 x 480 Pixels; VGA Size:WVGA; Display Orientation:Landscape; Display Appearance:RGB; Logic Voltage:3.3V; Interface Type:RGB; Display Brightness:500

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (17-Jan-2023) |
| Vga Size | WVGA |
| Resolution | 800 x 480 Pixels |
| Module Size | 120.7mm x 75.8mm |
| Touchscreen | No Touchscreen |
| Display Size | 5" |
| Logic Voltage | 3.3V |
| Product Range | - |
| Display Pinout | 40 Way FPC |
| Interface Type | RGB |
| Display Appearance | RGB |
| Display Brightness | 500cd/m² |
| Display Orientation | Landscape |
| Operating Temperature Max | 70°C |
| Operating Temperature Min | -20°C |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2664764/)

**Midas Components Limited Telephone** +44 (0)1493 602602 Electra House **Fax** +44 (0)1493 665111 32 Southtown Road **Email** sales@midasdisplays.com Great Yarmouth **Website** www.midasdisplays.com Norfolk NR31 0DU England 

**Specification** Part Number: ~~Po MCTO50TC12W800480LML~~ Version: ~~ee~~ Date: **Revision VERSION DATE REVISED PAGE NO. Note** 0 2016/05/13 First issue 

## Contents 

- 1.Module Classification Information 

- 2.Summary 

- 3.General Specification 

- 4.Interface 

- 5.Contour Drawing 

- 6.Absolute Maximum Ratings 

- 7.Electrical Characteristics 

- 8.Optical Characteristics 

9.Reliability 10.Other 

## **2.Summary** 

This technical specification applies to 5.0’ color TFT-LCD panel. The 5.0’ color TFT-LCD panel is designed for camcorder, digital camera application and other electronic products which require high quality flat panel displays. This module follows RoHS. 

## **3.General Specifications** 

-  Size: 5.0 inch 

-  Dot Matrix: 800× 3(RGB) × 480 dots 

-  Module dimension: 120.7(W) ×75.8(H) ×2.8mm 

-  Active area: 108(W) ×64.8 (H) mm 

-  Dot pitch: 0.135(W) ×0.135(H) mm 

-  LCD type: TFT, Normally White, Transmissive 

-  View Direction: 12 o’clock 

-  Gray Scale Inversion Direction: 6 o’clock 

-  Backlight Type: LED ,Normally White 

-  With /Without TP: Without TP 

-  Surface: Anti-Glare 

*Color tone slight changed by temperature and driving voltage. 

# **Midas Active Matrix Display Part Number System** 

**MC T 057 A 6 * W 320240 L M L * *** 1 2 3 4 5 6 7 8 9 10 11 12 13 

- 1 = MC: Midas Components 

2 = T: TFT A: Active Matrix OLED M: Monitor 

- 3 = Size 

- 4 = Series 

- 5 = 

   - Viewing Angle: 6: 6 O’clock 12: 12 O’clock O: All Round Viewing Angle 

- 6 = Blank: No Touch T: Resistive Touchscreen C: Capacitive Touchscreen 

= Operating Temp Range: S: 0+50Deg C B: -20+60Deg C W: -20+70Deg C E: -30+85Deg C X: -30+80Deg C 

- 7 

   - No of Pixels 

- 8 = No of Pixels 9 = Orientation:  P: Portrait L: Landscape 

- 10 = 

   - Mode:  R: Reflective M: Transmissive T: Transflective 

- S: Sunlight Readable (Transmissive) W: White on Black (Monochrome) 

- 11 = 

   - Backlight: Blank: None L: LED C: CCFL 

- 12 = Blank: No Module/board C: Controller board module (E-Tech) 13 = Blank: None OB: Optically Bonded IPS: In‐plane switching 

## **4.Interface** 

## **4.1. LCM PIN Definition** 

FPC Connector is used for the module electronics interface. The recommended model is FH19SC-40S-0.5SH manufactured by HIROSE. 

|**Pin**|**Symbol**|**Function**|**Remark**|
|---|---|---|---|
|1|VLED-|Power for LED backlight (Cathode)||
|2|VLED+|Power for LED backlight (Anode)||
|3|GND|Power Ground||
|4|VDD|Power voltage||
|5|R0|Red data (LSB)||
|6|R1|Red data||
|7|R2|Red data||
|8|R3|Red data||
|9|R4|Red data||
|10|R5|Red data||
|11|R6|Red data||
|12|R7|Red data(MSB)||
|13|G0|Green data(LSB)||
|14|G1|Green data||
|15|G2|Green data||
|16|G3|Green data||
|17|G4|Green data||
|18|G5|Green data||
|19|G6|Green data||
|20|G7|Green data(MSB)||
|21|B0|Blue data(LSB)||
|22|B1|Blue data||
|23|B2|Blue data||
|24|B3|Blue data||
|25|B4|Blue data||
|26|B5|Blue data||
|27|B6|Blue data||
|28|B7|Blue data(MSB)||
|29|GND|Power Ground||
|30|CLK|Sample clock||
|31|DISP|Display on/off||
|32|HS|Horizontal sync input||
|33|VS|Vertical sync input||
|34|DE|Data input enable||
|35|NC|No connection||
|36|GND|Power Ground||
|37~40|NC|No connection||



## **5.Contour Drawing** 

|||||||||Ir|Ir|||||||||||||||120.7¡Ó0.3<br>110.7(Bezel open)¡ Ó0.3<br>110.0¡ Ó0.3(Top pol)<br>5.45<br>5.00<br>~~a~~|120.7¡Ó0.3<br>110.7(Bezel open)¡ Ó0.3<br>110.0¡ Ó0.3(Top pol)<br>5.45<br>5.00<br>~~a~~|120.7¡Ó0.3<br>110.7(Bezel open)¡ Ó0.3<br>110.0¡ Ó0.3(Top pol)<br>5.45<br>5.00<br>~~a~~|1<br>PINNO.|VLED-<br> SYMBOL||21<br>PINNO.|B0<br> SYMBOL|
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
||||2.01||2.31|3.42||||||||||||||||||108.0(AA)||2.8¡Ó0.2<br>6.40|2<br>3|GND<br>VLED+||22<br>23|B2<br>B1|
||||||||||||||||||||||||||||4|VDD||24|B3|
||\|||~~ee~~||||||||||||||||||||||~~-~~<br>xk|5|R0||25|B4|
||||||||||||||||||||||||||||6|R1||26|B5|
|75.8¡ Ó0.3|||67.4(Bezel open)¡ Ó0.3||67.0¡ Ó0.3(Top pol)|64.8(AA)||||||||||||A<br>Display center||||||||~~]~~|9<br>8<br>10<br>11<br>7<br>13<br>12|R7<br>G0<br>R6<br>R5<br>R3<br>R2<br>R4||27<br>28<br>30<br>31<br>29<br>33<br>32|B6<br>B7<br>GND<br>CLK<br>DISP<br>HSync<br>VSync|
|||||||||||||||||||||||||||~~]~~|14|G1||34|DE|
||||||||||||||||||||||||||||15|G2||35|NC|
|'||||48.6¡ Ó0.5<br>ryt<br>~~™~~<br>~~-~~||||||26.3¡ Ó0.5|||~~-~~|||K<br>A<br>~~i~~||||||||WA<br>~~FF~~A||1.65 Max<br>COMPONENT HEIGHT<br>25.80<br>~~sr~~<br>f<br>~~1~~<br>~~ob~~|16<br>17<br>20<br>19<br>18<br>COMPONENT HEIGHT|G3<br>G5<br>G6<br>G7<br>G4||36<br>38<br>39<br>37<br>40|NC<br>NC<br>NC<br>GND<br>NC|
|||||||||||5.0|0.045<br>0.135<br>0.135<br>1<br>40<br>13.55<br>0.35<br>3.5<br>0.30¡ Ó0.05<br>Contact side<br>Stiffener<br>a<br>~~1~~<br>~~r~~<br>~~~~~<br>~~|~~<br>~~.~~<br>~~tT~~||||||||||||||||||~~|~~|~~|~~|~~|~~|
|||||||||||||||20.5¡ Ó0.1<br>P0.5*39=19.5||||||||||||The non-specified tolerance of dimension is<br>R GB R G B<br>R GB R G B|The non-specified tolerance of dimension is|||0.3mm.||
|||||||||||||||||||||||||||SCALE 30/1||||||



## **6.Absolute Maximum Ratings** 

|**Item**|**Symbol**|**Min**|**Typ**|**Max**|**Unit**|
|---|---|---|---|---|---|
|Operating Temperature|TOP|-20|－|+70||
|Storage Temperature|TST|-30|－|+80||



Note: Device is subject to be damaged permanently if stresses beyond those absolute maximum ratings listed above 

1. ＞ 

**==> picture [134 x 108] intentionally omitted <==**

**----- Start of picture text -----**<br>
Ambient Tem. vs Alloeable Forward Curren<br>40<br>30<br>20<br>10<br>00 20 40 60 80 100<br>Ambient Temperature(oC)<br>Alloeable Forward Current IF(mA)<br>**----- End of picture text -----**<br>


## **7.Electrical Characteristics 7.1. Typical Operation Conditions** 

|**Item**|**Symbol**|**Values**|**Values**|**Values**|**Unit**|**Remark**|
|---|---|---|---|---|---|---|
|||**Min.**|**Typ. **|**Max.**|||
|Power voltage|VDD|3.1|3.3|3.5|V||
|Current for Driver(Black)|Idd|-|110|170|mA  VDD=3.3V|mA  VDD=3.3V|
|Input logic high voltage|VIH|0.7 VDD|-|VDD|V|Note 1|
|Input logic low voltage|VIL|0|-|0.3 VDD|||



Note1: CLK,DE,R0~R7, G0~7, B0~7. 

## **7.2. Backlight Driving Conditions** 

|**Item**|**Symbol**|**Values**|**Values**|**Values**|**Unit**|**Remark**|
|---|---|---|---|---|---|---|
|||**Min.**|**Typ.**|**Max.**|||
|Voltage for LED backlight|VL|18|19.2|20|V|Note 1|
|Current for LED backlight|IL|--|60|--|mA||
|LED life time|-|--|50,000|-|Hr|Note 2|



Note 1: The LED Supply Voltage is defined by the number of LED at Ta=25 ℃ and IL =20ma/pcs. 

Note 2: The “LED life time” is defined as the module brightness decrease to 50% Original brightness at Ta=25 ℃ and IL =20mA/pcs. The LED lifetime could be decreased if operating IL is lager than 25mA/pcs. 

CIRCUIT DIAGRAM : 6*3 Dice 

## **7.3. Power Sequence** 

To prevent a latch-up or DC operation of the LCD module, the power on/off sequence should be as the diagram below. 

Voo POWER SUPPLY INTERFACE SIGNAL 

## **7.4. Timing Characteristics** Timing conditions 

Parallel DE mode RGB input timing table 

|**Parameter**|**Symbol**|**Values**|**Values**|**Values**|**Unit**|**Remark**|
|---|---|---|---|---|---|---|
|||**Min.**|**Typ.**|**Max.**|||
|CLK frequency|Fclk|26.4|33.3|46.8|MHz||
|DEV period time|Tv|510|525|650|H||
|DEV display area|Tvd|480|||H||
|DEV blanking|Tvd|30|45|170|H||
|DEH period time|Th|862|1056|1200|CLK||
|DEH display area|Thd|800|||CLK||
|DEH blanking|THb|62|256|400|CLK||
|CLK cycle time|Tclk|21.3|30|37.8|ns||
|Clock width of high level|Tcwh|40|50|60|%||
|Clock width of low level|Tcwl|40|50|60|%||
|Clock rising time|Trck|8|-|-|ns||
|Clock falling time|Tfck|8|-|-|ns||
|Data Setup Time|Tdasu|8|-|-|ns||
|Data Hold Time|Tdahd|8|-|-|ns||
|DE Setup Time|Tdesu|8|-|-|ns||
|DE Hold Time|Tdehd|8|-|-|ns||



## 7.5. **Timing diagram** 

**==> picture [122 x 59] intentionally omitted <==**

**----- Start of picture text -----**<br>
DATA<br>voi} sool VOT<br>**----- End of picture text -----**<br>


## **8.Optical Characteristics** 

|**Item**|**Item**|**Symbol**|**Condition.**|**Min**|**Typ.**|**Max.**|**Unit**|**Remark**|
|---|---|---|---|---|---|---|---|---|
|Response time||Tr|θ=0°、Φ=0°|-|10|20|.ms|Note 3,5|
|||Tf||-|15|30|.ms||
|Contrast ratio||CR|At optimized<br>viewing angle|400|400<br>500|-|-|Note 4,5|
|Color<br>Chromaticity|White|Wx|θ=0°、Φ=0|0.26|0.31|0.36||Note 2,6,7|
|||Wy||0.28|0.33|0.38|||
|Viewing angle<br>(Gray Scale<br>Inversion<br>Direction)|Hor.|ΘR|CR≧10|60|70|-|Deg.|Note 1|
|||ΘL||60|70|-|||
||Ver.|ΦT||40|50|-|||
|||ΦB||60|70|-|||
|Brightness||-|-|400|400<br>500|-|cd/<br>㎡|Center of<br>display|



Note 1: Definition of viewing angle range 

Fig. 8.1. Definition of viewing angle 

Note 2: Test equipment setup: 

After stabilizing and leaving the panel alone at a driven temperature for 10 minutes, the measurement should be executed. Measurement should be executed in a stable, windless, and dark room. Optical specifications are measured by Topcon BM-7or BM-5 luminance meter 1.0° field of view at a distance of 50cm and normal direction. 

Fig. 8.2. Optical measurement system setup 

Note 3: Definition of Response time: 

The response time is defined as the LCD optical switching time interval between “White” state and “Black” state. Rise time, Tr, is the time between photo detector output intensity changed from 90%to 10%. And fall time, Tf, is the time between photo detector output intensity changed from 10%to 90% 

**==> picture [377 x 81] intentionally omitted <==**

**----- Start of picture text -----**<br>
D is p la y<br>D a ta W h ite (T F T  O F F ) B la c k (T F T  O N ) W h ite (T F T  O F F )<br>ie |<br>1 0 0 %<br>S 9 0 % C t s ~ a _<br>a<br>2 |<br>Ss<br>a!<br>1 0 %<br>=! 0 % y .<br>**----- End of picture text -----**<br>


Note 4: Definition of contrast ratio: 

The contrast ratio is defined as the following expression. 

Luminance measured when LCD on the "White" state 

Contrast ratio (CR) = Luminance measured when LCD on the "Black" state 

Note 5: White Vi = Vi50 ± 1.5V Black Vi = Vi50 ± 2.0V 

“±” means that the analog input signal swings in phase with VCOM signal. “±” means that the analog input signal swings out of phase with VCOM signal. The 100% transmission is defined as the transmission of LCD panel when all the input terminals of module are electrically opened. 

Note 6: Definition of color chromaticity (CIE 1931) Color coordinates measured at the center point of LCD 

Note 7: Measured at the center area of the panel when all the input terminals of LCD panel are electrically opened. 

## **9.Reliability** 

**Environmental Test** 

**==> picture [472 x 379] intentionally omitted <==**

**----- Start of picture text -----**<br>
||||||||
|---|---|---|---|---|---|---|
|DG|Test Item|Content|of Test|Test|Condition|Note|
|High Temperature|Endurance test applying the high storage temperature|2|
|a|storage|ee|for a long time.|200hrs|
|Low Temperature|Endurance test applying the low storage temperature|1,2|
|a|storage|for a long time.|200hrs|
|High Temperature|Endurance test applying the electric stress (Voltage &|——|
|Operation|Current) and the thermal stress to the element for a|200hrs|
|long time.|
|Low Temperature|Endurance test applying the electric stress under low|1|
|a|Operation|temperature for a long time.|200hrs|
|High Temperature/|The module should be allowed to stand at|1,2|
|Humidity|Operation|6001,90%RH|max|96hrs|
|Thermal shock|The sample should be allowed stand the following 10|-2011/7001|——|
|resistance|cycles of|10 cycles|
|operation|
|-2000|250|700|
|30min   5min    30min|
|1 cycle|
|Vibration test|Endurance test applying the vibration during|Total fixed amplitude : 3|
|transportation and using.|15mm|
|Vibration Frequency :|
|10~55Hz|
|One cycle 60|
|seconds to 3|
|directions of X,Y,Z for|
|Each 15 minutes|
|Static electricity test|Endurance test applying the electric stress to the|VS=±600V(contact)|——|
|terminal.|,±800v(air),|
|RS=330Ω|
|CS=150pF|
|10 times|

**----- End of picture text -----**<br>


Note1: No dew condensation to be observed. 

Note2: The function test shall be conducted after 4 hours storage at the normal Temperature and humidity after remove from the test chamber. Note3: The packing have to including into the vibration testing. 



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---

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