FN0800D014A
8
-20~70
-30~80
1920×1200
ALL
LVDS
1000
Customizable
| Availability: | |
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The 8.0-inch high-brightness TFT display is designed for industrial and outdoor systems that require consistent visibility under strong ambient light. Built with a 1920×1200 high-resolution IPS panel and LVDS interface, this module delivers 1000 nits luminance to ensure sunlight-readable performance across variable lighting environments.
IPS technology provides stable color reproduction, minimal image distortion, and wide viewing angles, allowing operators to monitor information clearly from multiple positions. In industrial automation, robotics, and control systems, consistent image quality and reliable signal transmission are critical for accurate data interpretation and long-term system stability.
Engineered for operation between –20 °C and +70 °C, this industrial TFT display maintains visual clarity in environments where temperature fluctuation and prolonged usage are expected. Its combination of high brightness, wide viewing angles, and robust thermal tolerance makes it suitable for outdoor kiosks, fuel station terminals, smart infrastructure panels, and other embedded systems exposed to daylight conditions.

LCD size(inch): | 8.0 (Diagonal) |
Resolution: | 1920(H)×1200(V) |
Pixel Pitch: | 0.0897(H)x0.0897(V) |
Active Area(mm): | 172.224(H)×107.64(V) |
Module Size(mm): | 119.8(W)x181.7(H) ×5.5(D) |
Display Mode(mm): | Normally Black, Transmissive |
Interface: | LVDS |
View Direction: | ALL |
| Power Supply: | 3.3 |
| Luminance(cd/m2): | 1000(Typ.) |
Operating Temperature(°C): | -20~+70 |
Storage Temperature(°C): | -30~+80 |
Interface:
Pin No. | Symbol | I/O | Description |
1-2 | VLEDK | P | Power for LED backlight(Cathode). |
3-4 | VLEDA | P | Power for LED backlight(Anode). |
5 | NC | - | No connection. |
6 | GND | P | Ground. |
7 | ELV3P | I | EVEN LVDS Positive data signal. |
8 | ELV3N | I | EVEN Negative data signal. |
| 9 | GND | P | Ground. |
| 10 | ELVCLKP | I | EVEN LVDS Positive clock signal. |
11 | ELVCLKN | I | EVEN Negative clock signal. |
12 | GND | P | Ground. |
13 | ERXCLKP | I | LVDS Positive clock signal. |
14 | ERXCLKN | I | LVDS Negative clock signal. |
15 | GND | P | Ground. |
16 | ELV1P | I | EVEN LVDS Positive data signal. |
17 | ELV1N | 1 | LVDS Negative data signal. |
18 | GND | P | Ground. |
19 | ELV0P | I | EVEN LVDS positive data signal. |
20 | ELV0N | I | EVEVN LVDS Negative data signal. |
21 | GND | I | Ground. |
| 22 | OLV3P | I | Odd LVDS Positive data signal. |
| 23 | OLV3N | I | Odd LVDS Negative data signal. |
24 | GND | P | Ground. |
| 25 | OLV3P | I | Odd LVDS Positive data signal. |
| 26 | OLV3N | I | Odd LVDS Negative data signal. |
27 | GND | P | Ground. |
| 28 | OLVCLKP | I | Odd LVDS Positive differential data signal. |
| 29 | OLVCLKN | I | Odd LVDS Negative differential data signal. |
| 30 | GND | P | Ground. |
| 31 | ORXIN1P | I | LVDS Negative differential data signal. |
| 32 | ORXIN1N | I | LVDS Positive differential data signal. |
| 33 | GND | P | Ground. |
| 34 | OLV0P | I | Odd LVDS Positive differential data signal. |
| 35 | OLV0N | I | Odd LVDS Negative differential data signal. |
| 36 | GND | P | Ground. |
| 37 | IIC_SDA | - | Data input/output for IIC(please let these pin open). |
| 38 | IIC_SCL | - | Clock signal for IIC(please let these pin open). |
| 39 | VDD_TOP | - | Power supply for OTP circuit. |
| 40 | EEPN | - | Only test pin. |
| 41-45 | VDDIN | P | Power supply. |
Electrical Characteristics:
Parameter | Symbol: | Min. | Typ. | Max. | Unit |
Forward Voltage | VF | 16.8 | 18.0 | 19.2 | V |
| Foward Cuttent | IF | - | 360 | - | mA |
| Backlight Power Consumption | Wbl | - | 6.48 | - | W |
LED Lifetime | - | 30000 | - | - | Hrs |
With 1000 nits brightness and wide viewing angles, this 8.0-inch TFT display ensures clear readability in factory environments where overhead lighting and reflective surfaces can reduce visibility. The –20 °C to +70 °C operating range supports stable performance in production lines, robotics control terminals, and industrial HMIs.
In fuel dispensers, EV charging stations, and power distribution panels, sunlight readability is critical for safe operation. The high luminance IPS panel maintains contrast and clarity under direct daylight, while LVDS integration supports reliable embedded system communication.
Suitable for ticketing machines, parking systems, and public information terminals, this high-brightness TFT display ensures legible content in outdoor installations exposed to changing lighting conditions.
For kiosks, access control panels, and smart city devices, the combination of high resolution and industrial temperature tolerance enables long-term deployment in semi-outdoor or uncontrolled environments.
The 1920×1200 resolution provides detailed image rendering for portable diagnostic or monitoring systems where visual precision and stable brightness are required.
Payment Systems |
Transportation |
E-bike | |
Outdoor |
Industrial Panels |
Medical Equipment |
Fintness Equipment |
Engineering Plant |
Motorbike |
Vending Machine |
Home Application |
To meet diverse integration needs, we offer extensive customisation for you, including:
• Size range: 1.77" to 15.6"
• Trusted panel partners: BOE, INNOLUX, JDI, Hannstar, CTC, TCL, and TIANMA.
• Panel types: IPS / TN / LTPS
• Operation Temperature: Industrial (-20 ~ 70°C), Automotive (-30 ~ 85°C)
• Tailored shape, length, and PIN definitions for full compatibility.
• EMI shielding and circuit optimisation.
• Supports multiple conversions: SPI, MCU, RGB, MIPI, LVDS, EDP
• Module material options: metal/plastic/metal–plastic integration
• High brightness up to 30,000 cd/m², ideal for outdoor or industrial use.
• Long lifetime up to 50,000 hours.
• Options: RGB / VGA / HDMI / LVDS / DVI / Type-C
• Fully compatible with custom TFT and LCD modules.
• Optimised design for stable image transmission and performance.

• Available Sizes: Up to 65"
• Structure Options: G+G, G+F+F, designed for industrial and automotive applications
• Touch Functions: Supports multi-touch, waterproof, glove touch, passive pen, gesture & palm rejection
• Operating Temperature:
Industrial Grade: –20°C ~ +70°C
Automotive Grade: –30°C ~ +85°
• Touch tuning and firmware optimization provided by FANNAL (in-house FW design)
• Trusted IC partners: EETI, ILITEK, GOODiX, FocalTech, Cypress, Microchip(FANNAL's Design Partner)
• High Reliability: Excellent anti-interference and long-term stability
• EMC Design: Full electromagnetic compatibility engineering to meet EMI/RFI and industrial standards
• Material Options:
Glass: 0.55mm–10.0mm
PMMA: 0.5mm–3.0mm
PC: 0.1mm–1.0mm
• Custom Design: CNC, Hot bending, 3D & 2.5D cover glass, ceramic printing, and PMMA integration
• Surface Treatments:
3A: AG / AR / AF
Anti-Microbial / Anti-Explosion
Optical Bonding | Size Range | Notes |
OCA | Up to 15.6” | Two fully automated production lines for high-volume manufacturing |
LOCA / OCR | Up to 32” | Excellent for high contrast and durability |
Silicone | Up to 32” | Ideal for rugged, large-size industrial applications |
FAQ
While the panel provides high luminance output, overall outdoor readability also depends on surface reflection management. For applications exposed to direct sunlight, optical bonding and anti-reflective cover glass are recommended to reduce internal reflections and improve perceived contrast.
LVDS supports differential signaling with strong noise immunity, making it suitable for industrial embedded systems. However, cable length and shielding design should follow system-level EMC requirements to ensure stable image transmission.
Although the display operates across a wide temperature range, enclosed installations with continuous high-brightness operation may accumulate heat. Proper ventilation or thermal dissipation design is recommended to maintain long-term stability.
Yes. The module structure allows integration with capacitive or resistive touch panels depending on system requirements. Mechanical stack-up and cover lens selection should be evaluated during design to maintain optical clarity and responsiveness.
For semi-outdoor or outdoor use, system designers should evaluate UV exposure, humidity protection, and enclosure sealing. While the display module provides stable optical performance, overall system durability depends on the complete mechanical and environmental design.