FN0283D001A
FANNAL
2.83
43.2*57.6
-20~70
-30~80
Small Size Display
480x640
ALL
MIPI
450
Customizable
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This 2.83-inch small TFT LCD is designed with a 400×640 IPS panel and a MIPI interface, offering stable performance, vivid colors, and excellent viewing angles. With a brightness of 450 cd/m², the display ensures clear visibility under various lighting conditions, making it suitable for both indoor and semi-outdoor environments.
Built for industrial and handheld applications, this compact TFT LCD provides reliable long-term operation. Its fast response time and minimal color shift make it ideal for devices that require accurate visual output, even when viewed from different angles. The compact form factor also allows seamless integration into portable terminals, test equipment, and handheld controllers.
Compact 2.83-inch small TFT LCD for space-limited devices
VGA High Definition: 480x640 resolution provides crisp text and detailed graphics for complex data visualization.
Ultra-Wide Viewing Angle: IPS technology ensures consistent color and clarity from any perspective—crucial for handheld medical or field equipment.
450 cd/m² brightness for clear visibility in bright conditions
MIPI interface ensuring efficient data transmission
Stable industrial-grade performance for long operating hours
Fast response time for smooth UI interaction
Lightweight and easy to integrate into portable and embedded systems

LCD size(inch): | 2.83 (Diagonal) |
Resolution: | 480(H)×640(V) |
Pixel Pitch: | 0.09(H)x0.09(V) |
Active Area(mm): | 43.2(H)×57.6(V) |
Module Size(mm): | 46.2(W)x65.181(H)×2.3(D) |
Display Mode(mm): | Normally Black, Transmissive |
Interface: | MIPI |
Pixel arrangement: | RGB-Vertical Stripe |
View Direction: | ALL |
Power Supply(V): | 2.8 |
| Weight(g): | 12.5(Typ.) |
Luminance(cd/m2): | 450(Typ.) |
Operating Temperature(°C): | -20~+70 |
Storage Temperature(°C): | -30~+80 |
Pin No. | Symbol | I/O | Description |
1 | GND | P | Ground. |
2 | D0N | I | Powe supply for LED cathode input. |
3 | D0P | I | Powe supply for LED cathode input. |
4 | GND | P | Ground. |
5 | D1N | I | MIPI DSI Negative differential data signal. |
6 | D1P | I | MIPI DSI Positive differential data signal. |
7 | GND | P | NO connection. |
| 8 | CLKN | I | MIPI DSI Negative clock data signal. |
9 | CLKP | I | MIPI DSI positive clock data signal. |
10 | GND | P | Ground. |
11 | RESET | I | Reset signal input. |
12 | TE | I | Tearing Effect. |
13 | NC | - | No connection. |
14 | IOVCC | P | Logic power for digital circuit. |
15 | VDD | P | Supply analog voltage. |
16 | TP_VDD | P | Touch power supply. |
17 | TP_SDA | I | Touch IIC Data signal. |
18 | TP_SCL | I | Touch IIC Clock signal. |
19 | TP_INT | I | Touch Interrupt. |
20 | TP_RST | I | Touch Reset signal. |
21 | LEDK | P | Power for LED backlight(Cathode). |
| 22 | LEDA | P | Power for LED backlight(Anode). |
Parameter | Symbol: | Min. | Typ. | Max. | Unit |
Forward Current Voltage | VF | 11.6 | 12.6 | 13.6 | V |
Forward Current | If | - | 40 | - | mA |
Backlight Power Consumption | Wbl | - | 0.504 | - | W |
LED Lifetime | - | 30000 | - | - | Hrs |
The compact 2.83-inch size makes it ideal for portable devices such as handheld testers, meters, scanners, and data loggers.
Its IPS panel ensures wide viewing angles, allowing operators to read data clearly even when the device is held at different angles.
The 450 cd/m² brightness provides sufficient visibility in typical factory lighting and workshop environments.
This display is well-suited for small HMI screens on automation equipment, PLC modules, or compact control panels.
The reliable MIPI interface supports smooth graphics and fast data updates, ensuring accurate information display for machine status, sensor readings, and operator commands.
Its small footprint and high clarity make it ideal for devices such as smart thermostats, access control systems, and wall-mounted controllers.
The IPS technology preserves color accuracy and sharpness, important for modern consumer-grade interfaces.

For portable medical devices or compact lab instruments where space is limited, this size is a perfect fit.
The stable display performance ensures clear visualization of readings, waveforms, and settings under various indoor lighting conditions.
While not suitable for full outdoor sunlight, the brightness is sufficient for:
Indoor vending kiosks
Ticketing devices
POS attachments
Payment terminals
These devices benefit from the sharp 400×640 vertical orientation, which maximizes data visibility in compact interfaces.
Oscilloscopes, spectrum analyzers, signal testers, and other engineering tools often require small but high-quality secondary displays.
The vertical resolution and fast response of the IPS panel help ensure critical waveform clarity and UI responsiveness.
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
Q1: What are the primary firmware considerations when driving this 480x640 vertical matrix panel via MIPI DSI?
A1: This module features a native portrait pixel arrangement. If your embedded hardware platform requires a landscape configuration (640x480), the interface orientation alignment should be executed directly via your graphics controller’s framework or active GPU frame-buffer rotation to eliminate latency and tearing.
Q2: Does this 450-nit panel remain readable when deployed in handheld devices for outdoor or direct ambient sunlight environments?
A2: While 450 nits is highly optimized for power efficiency in standard industrial settings, direct outdoor sunlight can wash out the contrast. For intensive outdoor operations, FANNAL recommends applying Anti-Reflective (AR) surface treatments or upgrading to our high-intensity backlight modification lines to maintain target UI legibility.
Q3: Can we map custom initialization codes (Init Code) directly to the internal display driver via the MIPI interface?
A3: Yes. FANNAL provides full, verified driver initialization scripts tailored to your specific host controller processor (e.g., NXP, STMicroelectronics, or Rockchip). This ensures proper lane synchronization, power-sequencing timing, and stable sleep/wake power management profiles.
Q4: How does FANNAL prevent electromagnetic interference (EMI) issues over the high-speed MIPI clock lines in compact handheld chassis designs?
A4: Small-form-factor devices often place wireless modules or power circuits near the display flex routing. We mitigate radiated noise by integrating dedicated shielding layers on the Flexible Printed Circuit (FPC) and optimizing the differential trace impedance to match standard system signaling limits.
Q5: If our handheld instrument housing requires a specific physical board edge clearance, can the FPC routing direction be changed?
A5: Yes. Because FANNAL controls the full design lifecycle in-house, we can re-engineer the length, exit angle, and PIN mapping of the Flexible Printed Circuit. This modification allows the module to clear internal mechanical components or specialized batteries without modifying your mainboard footprint.