# TFT LCD, Transmissive, 4.6 ", 800 x 320 Pixels, Landscape, RGB, 3.3V

![Product image](https://novapart.co/image/farnell:2606878/)

**URL**: https://novapart.co/products/MCT046A12W800320LML/tft-lcd-transmissive-46-800-x-320-pixels-landscape
**SKU**: MCT046A12W800320LML
**Manufacturer**: MIDAS DISPLAYS
**Category**: Optoelectronics & Displays || Displays || LCD Displays || TFT LCD Displays
**Price**: €35.6000
**Stock**: 10+
**Lead Time**: 120 days (indicative)

## Description

Display Size:4.6"; Resolution:800 x 320 Pixels; VGA Size:-; Display Orientation:Landscape; Display Appearance:RGB; Logic Voltage:3.3V; Interface Type:RGB; Display Brightness:350cd/m²

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (25-Jun-2025) |
| Vga Size | - |
| Resolution | 800 x 320 Pixels |
| Module Size | 120.7mm x 56.16mm |
| Touchscreen | No Touchscreen |
| Display Size | 4.6" |
| Logic Voltage | 3.3V |
| Product Range | - |
| Display Pinout | 40 Way Connector |
| Interface Type | RGB |
| Display Appearance | RGB |
| Display Brightness | 350cd/m² |
| Display Orientation | Landscape |
| Operating Temperature Max | 70°C |
| Operating Temperature Min | -20°C |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2606878/)

**Sauls Wharf House Crittens Road Great Yarmouth Norfolk NR31 0AG** 

Telephone +44 (0)1493 602602 Email:sales@midasdisplays.com Email:tech@midasdisplays.com www.midasdisplays.com 

|MDT0460ASS-RGB|||800 x 320<br>RGB Interface|800 x 320<br>RGB Interface|
|---|---|---|---|---|
|(MCT046A12W800320LML)||||**Specification**|
|Version:1|1|||Date:08/09/2016|
|||||**Revision**|
||1|06/09/2016||First issue|



TFT Module 

Display Features Display Size 4.6” Resolution 800 x 320 Orientation Landscape Appearance RGB Logic Voltage 3.3V Interface RGB Brightness 400 cd/m[2 ] Touchscreen --- ~~DISVas~~ Module Size 120.70 x 56.16 x 3.10mm ~~PA~~ compliant Operating Temperature -20°C ~ +70°C Pinout 40 way FFC Box Quantity Weight / Display Pitch 0.5mm ----- 

|**Display Accessories**|**Display Accessories**||**Optional Variants**||
|---|---|---|---|---|
|**Part Number **|**Description **||**Appearances**|**Voltage**|
||The MDIB-11 is an HDMI to RGB||||
|MDIB-11|converter. Ideal for connecting a range<br>of Midas TFT displays to a Single Board||||
||Computer such as the Raspberry Pi.||||



Page 1 of 13 

## **Summary** 

This technical specification applies to 4.6’ color TFT-LCD panel. The 4.6’ 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. 

## **General Specifications** 

- Size: 4.6 inch 

- Dot Matrix: 800 x RGB x 320(TFT) dots 

- Module dimension: 120.7(W) x 56.16(H) x 3.1(D) mm 

- Active area: 108 x 43.2 mm 

- Dot pitch: 0.045(W)x 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. 

Page 2 of 13 

## **Interface LCM PIN Definition** 

|**No.**|**Symbol**|**Description**|
|---|---|---|
|1|VLED-|Backlight LED Cathode|
|2|VLED+|Backlight LED Anode.|
|3|GND|System Ground|
|4|VDD|Power supplyfor logic operation|
|5~12|R0~R7|Data bus|
|13~20|G0~G7|Data bus|
|21~28|B0~B7|Data bus|
|29|GND|System Ground|
|30|DCLK|Pixel clock signal|
|31|DISP|Displayon/off control|
|32|NC|No connect|
|33|NC|No connect|
|34|DE|Data Enable|
|35|NC|No connect|
|36|GND|System Ground|
|37|NC|No connect|
|38|NC|No connect|
|39|NC|No connect|
|40|NC|No connect|



Page 3 of 13 

## **Contour Drawing** 

**==> picture [479 x 253] intentionally omitted <==**

**----- Start of picture text -----**<br>
PIN SYMBLE PIN SYMBLE<br>1 VLED- 21 B0<br>2 VLED+ 22 B1<br>120.70¡ Ó0.3 LCM OUTLINE 3 GND 23 B2<br>110.60   Bezel Open 5.03 4 VDD 24 B3<br>108.00  AA 6.09 5 R0 25 B4<br>60.59 3.10¡ Ó0.2 67 R2R1 2627 B5B6<br>8 R3 28 B7<br>9 R4 29 GND<br>10 R5 30 DCLK<br>11 R6 31 DISP<br>VIEWING DIRECTION 12 R7 32 NC<br>13 G0 33 NC<br>| 14 G1 34 DE<br>800(RGB)*320 1516 G2G3 3536 GNDNC<br>17 G4 37 NC<br>18 G5 38 NC<br>19 G6 39 NC<br>20 G7 40 NC<br>1 40 Contact side Stiffener 40 1<br>0.30 0.30 05<br>P0.5*39=19.50<br>20.50<br>27.16 46.92<br>0.135<br>0.045<br>RGB<br>SCALE 100/1 The non-specified tolerance of dimension is ¡ Ó0.3 mm .<br>3.60 4.36<br>AA<br> Bezel Open 43.20<br> Ó0.3 LCM OUTLINE¡ 46.02<br>30.11<br>56.16<br>51.28<br>27.06 3.50 5.00<br>0.135<br>**----- End of picture text -----**<br>


## **Block Diagram** 

Page 4 of 13 

## **Absolute Maximum Ratings** 

**Item Symbol Min Typ Max Unit** － Operating Temperature TOP -20 +70 ℃ － Storage Temperature TST -30 +80 ℃ ~~=e~~ Note: Device is subject to be damaged permanently if stresses beyond those absolute maximum ratings listed above 

1. Temp. ≦ 60 ℃ , 90% RH MAX. Temp. ＞ 60 ℃ , Absolute humidity shall be less than 90% 

RH at 60 ℃ 

## **Electrical Characteristics** 

## **Operating conditions:** 

**==> picture [135 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>


|**Operating conditions:**||Alloeable Forward Current IF(mA)|Alloeable Forward Current IF(mA)|Alloeable Forward Current IF(mA)|Ambient Temperature(oC)<br>Alloeable Forward Current IF(mA)|Ambient Temperature(oC)|
|---|---|---|---|---|---|---|
|**Item**|**Symbol**|**Values**|||**Unit**|**Remark**|
|||**MIN**|**TYP**|**MAX**|||
|Power Voltage|DVDD|3.0|3.3|3.6|V|Note 2|
||AVDD|10.2|10.4|10.6|V||
||VGH|15.3|16.0|16.7|V||
||VGL|-6.7|-6.0|-5.3|V||
|Input signal voltage|VCOM|3.09|4.09|5.09|V|Note 4|
|Input logic high voltage|VIH|0.7DVDD|0.7DVDD|DVDD|V|Note 3|
|Input logic low voltage|VIL|0||0.7DVDD|0.7DVDD<br>V||



Note 1: Be sure to apply DVDD and VGL to the LCD first, and then apply VGH. Note 2: DVDD setting should match the signals output (refer to note3) of customer’s system board. 

Note 3: DCLK,HS,VS,RESET,U/D,L/R,DE,R0~R7,G0~G7,B0~B7,MODE,DITHB 

Note 4: Typical VCOM is only a reference value. It must be optimized according to each LCM. Please use VR and base on below application circuit. 

**Current Consumption** 

**Values Item Symbol Unit Remark MIN TYP MAX** IGH - 0.50 1 mA VGH=16.0V IGL - 0.54 1 mA VGL=-6.0V Current for driver IDVDD - 4.2 10 mA DVDD=3.3V IAVDD - 19 50 mA AVDD=10.4V 

Page 5 of 13 

|**LED driving conditions**|||||||
|---|---|---|---|---|---|---|
|**Item**|**Symbol**|**MIN**|**TYP**|**MAX**|**Unit**|**Remark**|
|Forward Current|IF|-|40|50|mA||
|Forward Voltage|VF||19.6|21|V||
|Backlight Power consumption|WBL|-|0.784|-1.05|W||
|LED Lifetime||-|25000|-|Hrs||



Note 1 : There are 1 Groups LED 

Note 2 : Ta = 25 ℃ Note 3 : Brightness to be decreased to 50% of the initial value Note 4 : The single LED lamp case 

Page 6 of 13 

## **Interface Timing** 

## **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. 

Page 7 of 13 

## **Timing Conditions** 

Values Item Symbol Unit Remark MIN TYP MAX ~~a eeesoe~~ HS setup time Thst 8 - - ns ~~eeee ee ee ee es~~ HS hold time Thhd 8 - - ns ~~esees es es ee es~~ VS setup time Tvst 8 - - ns ~~eses es es es~~ VS hold time Tvhd 8 - - ns ~~eeees ee ee ee es~~ Data setup time Tdsu 8 - - ns ~~eses es es es es~~ Data hold time Tdhd 8 - - ns ~~eeee ee ee ee es~~ DE setup time Tesu 8 - - ns ~~eeee ee es es es~~ DE hold time Tehd 8 - - ns ~~esee ee es es es~~ DVDD power on slew rate Tpor - - 20 ms From 0 to 90% DVDD ~~esee es es es es~~ RESET pulse width Trst 1 - - ms ~~ee~~ DCLK cycle time Tcoh 20 - - ns ~~Po UIN ADee| eeVNee eeS~~ ~~**e** e ee~~ DCLK pulse duty Tcwh 40 50 60 % ~~Pe 4 6) ee eee~~ 

## **Timing Diagram** 

Page 8 of 13 

## **[Timing]** 

|**[Timing]**|||||||
|---|---|---|---|---|---|---|
|||Values|||||
|Item|Symbol|MIN|TYP|MAX|Unit|Remark|
|Horizontal Display Area|thd|-|800|-|DCLK.||
|DCLK Frequency|fclk|26.4|33.3|46.8|MHz||
|One Horizontal Line|th|862|1056 1200|1056 1200|DCLK||
|HS pulse width|thpw|1|-|40|OCLK||
|HS Blanking|thb|46|46|46|DCLK||
|HS Front Porch<br>lfp<br>16<br>210<br>354<br>OCLK.<br>~~_~~|||||||
|||Values|||||
|Item|Symbol|MIN|TYP|MAX|Unit|Remark|
|Vertical Display Area|tvd|-|480|-|TH||
|VS period time|tv|510|525|650|TH||
|VS pulse width|tvpw|1|-|20|TH||
|VS Blanking|tvp|23|23|23|TH||
|VS Front Porch|tvfp|7|22|147|TH||



Page 9 of 13 

## **Data Input Format** 

Figure 1 Horizontal input timing diagram. 

Figure 2 Vertical input timing diagram. 

Page 10 of 13 

## **ical Characteristics Opt** 

|**Item**<br>~~Pe~~|**Item**<br>~~Pe~~|**Symb**<br>**ol**|**Condition.**|**Min**|**Typ.**|**Max.**|**Unit**|**Remark**|
|---|---|---|---|---|---|---|---|---|
|Response time<br>~~Pe~~||Tr|θ=0°、Φ=0°<br>~~e~~|-|20|30|ms|Note 3|
|||Tf<br>~~ee~~||-<br>~~ee~~|20<br>~~ee~~|30<br>~~ee~~|||
|Contrast ratio<br>~~Pe~~<br>~~e~~||CR<br>~~e~~<br>~~ee~~|At optimized<br>viewing angle<br>~~e~~~~**e**~~<br>~~e~~|500<br>~~**e**~~<br>~~ee~~|600<br>~~**e**~~<br>~~ee~~|-<br>~~**e**~~<br>~~ee~~|-<br>~~**e**~~|Note 4<br>~~**e**~~|
|Color Chromaticity<br>~~a~~|White<br>~~a~~<br>~~|~~|Wx<br>~~ee ~~<br>~~a~~<br>~~|~~|θ=0°、Φ=0<br> ~~e~~<br>~~a~~<br>~~ee~~|0.324<br>~~ee ~~<br>~~a~~<br>~~ee~~|0.326<br> ~~ee~~<br>~~a~~<br>~~ee~~|0.328<br>~~ee~~<br>~~a~~<br>~~ee~~|-<br>~~a~~<br>~~ee~~|Note 2,5<br>~~a~~|
|||Wy<br>~~a~~<br>~~|~~||0.364<br>~~a~~<br>~~ee~~|0.366<br>~~a~~<br>~~ee~~|0.368<br>~~a~~<br>~~ee~~|-<br>~~a~~<br>~~ee~~||
|Viewing angle<br>(Gray Scale Inversion<br>Direction)<br>~~|~~|Hor.<br>~~|~~<br>~~|~~<br>~~|ES~~|ΘR<br>~~|~~<br>~~|~~<br>|CR≧10<br>~~ee~~<br>~~**a**~~|60<br>~~ee~~<br>~~**a**~~|70<br>~~ee~~<br>~~ee~~|-<br>~~ee ~~|Deg<br>.<br> ~~ee~~|Note 1|
|||ΘL<br>~~|~~<br>~~ES~~||60<br>~~**a**~~|70<br>~~ee~~<br>~~ee~~|-|||
||Ver.<br>~~|~~<br>~~| ES~~<br>~~|~~|ΦT<br>~~|~~<br>~~ES~~<br>~~|~~||40<br>~~**a**~~|50<br>~~ee~~<br>~~ee~~|-|||
|||ΦB<br>~~|~~<br>~~ES~~<br>~~|~~||60<br>~~**a**~~|70<br>~~ee~~<br>~~ee~~|-|||
|Brightness<br>~~|~~<br>~~| ~~<br>~~|~~||-<br>~~|~~<br><br>~~|~~|-<br>~~**a**~~|350<br>~~**a**~~|400<br>~~ee~~|-|cd/<br>m 2|Center<br>of<br>display|



Ta=25±2 ℃ , 

Note 1: Definition of viewing angle range 

## Fig. 10.1. 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-7orBM-5 luminance meter 1.0° field of view at a distance of 50cm and normal direction. 

Page 11 of 13 

Fig. 10.2. 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 [378 x 81] intentionally omitted <==**

**----- Start of picture text -----**<br>
Display<br>Data White(TFT OFF) Black(TFT ON) White(TFT OFF)<br>100%<br>90%<br><==<br>l<br>co<br>10% \: J<br>0%<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. 

Page 12 of 13 

## **Reliability** 

## Content of Reliability Test (Wide temperature, -20 ℃ ~70 ℃ ) 

## **Environmental Test** 

|**Reliability**<br>Content of Reliability Test (Wide temperature, -20℃~70℃)|**Reliability**<br>Content of Reliability Test (Wide temperature, -20℃~70℃)|**Reliability**<br>Content of Reliability Test (Wide temperature, -20℃~70℃)|**Reliability**<br>Content of Reliability Test (Wide temperature, -20℃~70℃)|
|---|---|---|---|
|**Environmental Test**||||
|**Test Item **|**Content of Test**|**Test Condition **|**Note**|
|High Temperature<br>storage|Endurance test applying the high storage temperature<br>for a longtime.|80℃<br>200hrs|2|
|Low Temperature<br>storage|Endurance test applying the low storage temperature<br>for a longtime.|-30℃<br>200hrs|1,2|
|High Temperature<br>Operation|Endurance test applying the electric stress (Voltage &<br>Current) and the thermal stress to the element for a<br>long time.|70℃<br>200hrs|——|
|Low Temperature<br>Operation|Endurance test applying the electric stress under low<br>temperature for a longtime.|-20℃<br>200hrs|1|
|High Temperature/<br>HumidityOperation|The module should be allowed to stand at<br>60℃,90%RH max|60℃,90%RH<br>96hrs|1,2|
|Thermal shock<br>resistance|The sample should be allowed stand the following 10<br>cycles of<br>operation<br>-20℃25℃70℃<br>30min   5min    30min<br>1cycle|-20℃/70℃<br>10 cycles|——|
|Vibration test|Endurance test applying the vibration during<br>transportation and using.|Total fixed amplitude :<br>1.5mm<br>Vibration Frequency :<br>10~55Hz<br>One cycle 60<br>seconds to 3<br>directions of X,Y,Z for<br>Each 15minutes|Total fixed amplitude :<br>3|
|Static electricity test|Endurance test applying the electric stress to the<br>terminal.|VS=±600V(contact)<br>,±800v(air),<br>RS=330Ω<br>CS=150pF<br>10 times|——|



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. 

Page 13 of 13 



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---

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