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LSR024T17-S-V2 | 2.4 inch TFT-LCD Module | 240x320 | SPI | TN | 262K Colors | ST7789T3 IC

LSR024T17-S-V2 | 2.4 inch TFT-LCD Module | 240x320 | SPI | TN | 262K Colors

Product Keywords: 2.4″ LCD Module, COG+FPC+B/L+RTP, 240(RGB)×320 (QVGA) Resolution, 262K Colors, TN Viewing Direction (12 O'Clock), ST7789T3 Driver IC, SPI Interface, 4-Wire Resistive Touch Panel, Transmissive a-Si TFT, 350 cd/m² Luminance, 250:1 Contrast Ratio, -20°C to +70°C Operation.

1. Executive Summary & Product Positioning

The LSR024T17-S-V2 is a 2.4-inch color a-Si TFT-LCD module developed by 立信(万安)智显科技有限公司 (Lesson Smart Display Technology Co., Ltd). It features a QVGA (240×320) resolution and supports 262,144 colors. The module integrates a 4-wire resistive touch panel (RTP) and uses an SPI interface for communication. Its compact size and embedded touch solution make it ideal for various handheld and embedded applications.

Product Positioning: This module is designed for applications requiring a small to medium-sized color display with touch input. Typical uses include smart home devices, industrial handheld terminals, medical equipment user interfaces, portable instruments, and other human-machine interface (HMI) systems where cost-effectiveness and ease of integration are key.

2. Detailed Product Overview & Architecture

The module comprises a TFT-LCD panel, a driver circuit, a backlight unit, and an integrated 4-wire resistive touch panel. Key components and features include:

  • TFT-LCD Panel: 2.4-inch diagonal, a-Si TFT active matrix, transmissive, TN (Twisted Nematic) mode. Resolution is 240(H) × 320(V) pixels.
  • Color Depth & Interface: Supports 262K colors via a 4-wire Serial Peripheral Interface (SPI).
  • Driver IC: The module is driven by the ST7789T3 IC.
  • Touch Panel: Includes a 4-wire Resistive Touch Panel (RTP) with dedicated control pins (XL, YU, XR, YD) on the FPC.
  • Backlight Unit (B/L): An LED backlight with a typical forward current of 80mA and a forward voltage of 2.9V to 3.4V. The typical luminance is 350 cd/m².
  • Module Type: COG (Chip on Glass) + FPC + B/L + RTP.

3. Exhaustive Technical Specifications

3.1 General & Mechanical Specifications

Item Specification
Display Size (Diagonal) 2.4 inches
Resolution (Pixels) 240 (RGB) × 320 (QVGA)
Module Size (H×V×D) 42.72 × 60.26 × 3.55 mm
Active Area (H×V) 36.72 × 48.96 mm
Pixel Pitch 0.153 (H) × 0.153 (V) mm
Display Mode Transmissive, Normally White, TN (Grayscale Inversion)
Number of Dots 240(RGB) × 320
Input Data Interface SPI (4-line serial)
Driver IC ST7789T3
Touch Panel 4-Wire Resistive Touch Panel (RTP)
Backlight LEDs White LED, FORE series and ONE parallel

3.2 Electrical Characteristics

3.2.1 Absolute Maximum Ratings

Parameter Symbol Min Max Unit
Supply Voltage (VCC) VCC -0.3 4.6 V
Supply Voltage (IOVCC) IOVCC -0.3 4.6 V
Operating Temperature TOPR -20 70 °C
Storage Temperature TSTR -30 80 °C

3.2.2 Recommended Operating Conditions

Parameter Symbol Min Typ Max Unit
Supply Voltage VCC 2.4 2.75 3.3 V
I/O Supply Voltage IOVCC 1.65 1.8 3.3 V
Input High Voltage VIH 0.7*IOVCC - IOVCC V
Input Low Voltage VIL 0 - 0.3*IOVCC V
Backlight Forward Current (IF) IF - 80 - mA
Backlight Forward Voltage (Vf) Vf 2.9 - 3.4 V

3.3 Optical Characteristics (Ta=25°C)

Item Symbol Condition Min Typ Max Unit
Response Time (Tr+Tf) Tr+Tf θx = θy = 0° - 30 - ms
Contrast Ratio CR θx = θy = 0° - 250 - -
Luminance (IF=80mA) L θx = θy = 0° - 350 - cd/m²
Viewing Angle (CR>10) θT / θB - 45 / 20 - Deg.
Viewing Angle (CR>10) θL / θR - 45 / 45 - Deg.
White Chromaticity (CIE 1931) Wx / Wy θx = θy = 0° - (0.308, 0.325) - -

3.4 Interface Pin Assignment (18-Pin FPC)

Pin # Symbol I/O Description
1 GND P Ground
2 RESET I LCM Reset pin, active low
3 SCL I Serial clock pin
4 RS (D/CX) I Command and Data select pin
5 CS I Chip select pin
6 SDA (DIN) I Serial data input
7 SDO O SPI interface output pin
8 GND P Ground
9 VDD P Power supply for LCM
10 A (LED+) P Anode of Backlight
11-14 K P Cathode of Backlight
15 XL I Touch panel control pin
16 YU I Touch panel control pin
17 XR I Touch panel control pin
18 YD I Touch panel control pin

4. Application Guidelines & Critical Notes

  • Power Supply: Connect VDD (Pin 9) to a supply between 2.4V and 3.3V. The I/O supply (IOVCC) should be between 1.65V and 3.3V. The backlight (Pins 10-14) requires a constant current of 80mA.
  • SPI Interface: The module uses a 4-wire SPI interface (SCL, SDA, RS/D/CX, CS). The SDO pin allows for data read-back from the driver IC. Ensure your microcontroller's SPI peripheral is configured correctly, including timing parameters such as serial clock cycle and data setup/hold times.
  • Touch Panel (RTP): The 4-wire resistive touch pins (XL, YU, XR, YD) are connected directly to a touch controller on your main board. The touch panel does not have a dedicated controller IC; it provides the raw analog voltages from the resistive sheet.
  • Mechanical Integration: The outline drawing provides key dimensions. Note the following recommendations from the manufacturer:
    • The housing viewing area should be smaller than the LCM VA (Viewing Area) by at least 0.3mm per side.
    • The foam opening on the chassis should be larger than the LCM VA by at least 0.6mm per side.
    • The edge of the touch panel (TP) must not contact any metal conductor.
  • Backlight: The circuit shows a FORE series and ONE parallel configuration, driven at 80mA. The LED forward voltage (Vf) ranges from 2.9V to 3.4V.

5. Conclusion

The LSR024T17-S-V2 from Lesson Smart Display Technology is a compact, fully-integrated 2.4-inch TFT-LCD module with a resistive touch panel. Its SPI interface and 4-wire analog resistive touch make it easy to integrate with low-pin-count microcontrollers. With good brightness (350 cd/m²) and reasonable contrast (250:1), it is well-suited for a wide range of cost-sensitive embedded applications.

For successful design-in, engineers should pay close attention to the SPI timing characteristics provided in the datasheet, design an appropriate 80mA constant current backlight driver, and include an ADC-equipped interface on the main board to read the 4-wire resistive touch data.

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Eddie Chen
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