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LS089I01-MP-V1: 8.9-Inch Color TFT-LCD Module, 2560×1600 Resolution, MIPI DSI Interface, 16:10 Aspect Ratio

LS089I01-MP-V1: 8.9-Inch Color TFT-LCD Module, 2560×1600 Resolution, MIPI DSI Interface, 16:10 Aspect Ratio

Product Subtitle / Keywords

8.9 Inch Display, 2560×1600 Pixels, Color TFT-LCD Module, 16:10 Aspect Ratio, MIPI DSI Interface (Left & Right), Connector FE0151-HB21005, Power Supply VSP=5.4V, VSN=-5.4V, IOVCC=1.8V, Display Mode Normally Black, Viewing Angle Wide View, Backlight 30 Chip White LED, IF=120mA, VF=14-16V, Luminance 300 cd/m² (Typ), Operating Temp 0°C~+50°C, Storage Temp -20°C~+60°C, Lesson Smart Display Technology Co., Ltd

1. Executive Summary & Product Positioning

The LS089I01-MP-V1, developed by Lesson Smart Display Technology Co., Ltd. (立信(万安)智显科技有限公司), is an 8.9-inch color TFT-LCD (Thin Film Transistor Liquid Crystal Display) module composed of an LCD panel, driver ICs, and a control circuit.

This product specification (Version 01, dated 2021.03.26) serves as the definitive technical document, defining its basic specifications (including a 2560×1600 resolution and 16:10 aspect ratio), connector pin assignments, absolute maximum ratings, DC/AC specifications, MIPI DSI characteristics, power on sequence, cross-talk definition, and dimensional outline.

The document provides the core parameters necessary for system integration into high-resolution embedded display applications requiring an 8.9-inch screen with a dual-sided MIPI DSI interface. The unequivocal recommendation for engineers is to strictly adhere to the electrical specifications, MIPI interface timing, power sequencing, and mechanical tolerances described herein to ensure reliable performance and compatibility.

2. Detailed Product Overview & Architecture

  • Core Technology: Color TFT-LCD module composed of LCD panel, driver ICs, and control circuit.
  • Aspect Ratio: 16:10.
  • Display Format: Graphic 2560 × 1600 pixel elementistic mode.
  • Module Construction: TFT-LCD module with connector FE0151-HB21005.
  • Interface Type: MIPI DSI with a unique dual-channel design: Left DSI (MIPI_0 to MIPI_3 with clock) and Right DSI (MIPI_2 only).
  • Display Mode: Normally Black.
  • Viewing Angle: Wide View.
  • Backlight: 30 Chip White LED.

3. Exhaustive Technical Specifications

3.1 Mechanical & Physical Specifications

Parameter Specification Unit
Module Model LS089I01-MP-V1 -
LCD Size (Diagonal) 8.9 inch
Resolution 2560 × 1600 Pixels
Aspect Ratio 16:10 -
Display Mode Normally Black -
Viewing Angle Wide View -
Interface Type MIPI DSI (Left + Right) -
Connector FE0151-HB21005 -
Backlight Type 30 Chip White LED -
Luminance 300 cd/m²
Backlight Forward Current 120 mA
Backlight Forward Voltage 14 ~ 16 V
Power Supply (VSP) 5.4 (Typ) V
Power Supply (VSN) -5.4 (Typ) V
Power Supply (IOVCC) 1.8 (Typ) V
Module Outline Size 200.3 × 192.4 × 4.15 (Approx, from outline) mm
Operating Temperature 0 ~ +50 °C
Storage Temperature -20 ~ +60 °C
Supplier 立信(万安)智显科技有限公司 (Lesson Smart Display Technology Co.,Ltd) -
Document Version / Date Version 01 / 2021.03.26 -

3.2 Electrical & Interface Specifications

3.2.1 Connector Pin Description (FE0151-HB21005 - MIPI DSI)

The module uses a 30-pin connector (FE0151-HB21005) with a unique Dual MIPI DSI configuration: Left DSI (pins 10-24) and Right DSI (pins 30-31).

Pin No. Symbol I/O Function
1, 2 IOVCC P Power Supply for I/O
3 DPHYVCC P Power Supply for DPHY block, Connect to IOVCC
4, 5 VSN P Power Supply for Analog Circuit (Negative)
6, 7 VSP P Power Supply for Analog Circuit (Positive)
8 NC - Non connection
9 GND P Ground
10, 11 MIPI_3N_A / MIPI_3P_A I MIPI Data Lane 3 (Left DSI)
12 GND P Ground
13, 14 MIPI_0N_A / MIPI_0P_A I/O MIPI Data Lane 0 (Left DSI)
15 GND P Ground
16, 17 MIPI_CKN_A / MIPI_CKP_A I MIPI Differential Clock (Left DSI)
18 GND P Ground
19, 20 MIPI_1N_A / MIPI_1P_A I MIPI Data Lane 1 (Left DSI)
21 GND P Ground
22, 23 MIPI_2N_A / MIPI_2P_A I MIPI Data Lane 2 (Left DSI)
24 GND P Ground
25 DBIST(GND) I Ground (DBIST tied to GND)
26 LEDPWM O Control Signal for LED Brightness
27 TEI O Tearing Effect Output (Left DSI)
28 RESET I Reset Signal
29 GND P Ground
30, 31 MIPI_2P_B / MIPI_2N_B I MIPI Data Lane 2 (Right DSI)

3.2.2 Absolute Maximum Ratings (DC Characteristics)

Parameter Symbol Min. Typ. Max. Unit
Analog Power Supply (Positive) VSP 5.3 5.4 5.5 V
Analog Power Supply (Negative) VSN -5.5 -5.4 -5.3 V
I/O Power Supply IOVCC 1.7 1.8 1.9 V
Input High Level Voltage VIH 0.7 x IOVCC - IOVCC V
Input Low Level Voltage VIL 0 - 0.3 x IOVCC V
Output High Level Voltage VOH 0.8 x IOVCC - IOVCC V
Output Low Level Voltage VOL 0.0 - 0.2 x IOVCC V
Power Supply Current (VSP) IVSP 12 17 32 mA
Power Supply Current (VSN) IVSN -18 -16 -10 mA
Power Supply Current (IOVCC) IIOVCC 31 34 90 mA

Note: Conditions: GND = 0V, Ambient temperature = 25°C. Current values (IVSP, IVSN, IIOVCC) are RMS values for CTF pattern.

3.2.3 MIPI DSI AC Specifications

The specification defines MIPI D-PHY High Speed (HS-RX) characteristics (at VDDIO=1.70V~1.90V):

Item Symbol Unit Min. Typ. Max.
Differential input high threshold VIDTH mV - - 70
Differential input low threshold VIDTL mV -70 - -
Single-ended input low voltage (HS-RX) VILHS mV -40 - -
Single-ended input high voltage (HS-RX) VIHHS mV - - 460
Common-mode voltage (HS receive mode) VCMRX(DC) mV 70 - 330
Differential input impedance ZID Ω - 100 -
Logic 1 contention threshold (LP-RX) VIHCD mV 450 - -

3.2.4 Power On Sequence

The module requires a specific power sequencing for reliable operation:

  1. IOVCC (1.8V): Apply first.
  2. Wait 5ms.
  3. VSP (5.4V): Apply second. Wait 8ms.
  4. VSN (-5.4V): Apply third. Wait 10ms.
  5. RESET: Apply sequence: L→H (100ms) → L (200ms) → H. Wait 200ms.
  6. MIPI Initialization: Send specific commands (MCAP, NVM load stop, Interface setting). Wait 100ms.
  7. Display On: Send Display On command (0x29). Send Sleep Out command (0x11). Wait 100ms.
  8. Backlight On: Turn on the backlight last.

3.3 Dimensional Outline

The module outline drawing provides critical physical measurements:

  • Module Outline Dimensions: Approx. 200.3 (W) × 192.4 (H) mm (from drawing scale).
  • Thickness: Total thickness including components is approx. 4.15 mm.
  • Active Area: The active area is 196.2 mm (from drawing).
  • General Tolerance: ±0.1 mm for general dimensions.
  • Connector Location: Detailed PCB layout indicates the connector is located on the back of the module.
  • ROHS Compliance: The product is ROHS compliant.

3.4 Cross Talk Definition

The specification defines Cross Talk (CT) as a measurement of image artifacts:

CT = {(Brightness [Cross-talk pattern]) – (Brightness [127Gray]) / (Brightness [127Gray]) x 100(%)

Two patterns are used: White box (Cross talk pattern 1) and Black box (Cross talk pattern 2). Measurement points: Vertical Crosstalk at ① and ②, Horizontal Crosstalk at ③ and ④.

4. Application Guidelines & Critical Notes

Intended Use

  • High-resolution embedded display applications requiring an 8.9-inch screen with a dual-channel MIPI DSI interface.
  • Tablets, portable devices, and industrial control panels requiring 2560×1600 WQXGA resolution.
  • Applications requiring a 16:10 aspect ratio display with Wide View angle technology.

Critical Design Considerations

  1. Dual MIPI DSI Interface: This module uses a unique dual MIPI DSI configuration: Left DSI (pins 10-24, with data lanes 0, 1, 2, 3 and clock) and Right DSI (pins 30-31, with only data lane 2). This is a high-resolution split-screen configuration. The host processor must support dual MIPI DSI channels and route the data lanes accordingly.
  2. Multi-Voltage Power Supply: Unlike many modules, this requires three distinct external power supplies: IOVCC (1.8V), VSP (5.4V), and VSN (-5.4V). A triple-output power regulator is needed. Additionally, DPHYVCC must be connected to IOVCC.
  3. Critical Power Sequence: The specified power-on sequence is mandatory: IOVCC → 5ms → VSP → 8ms → VSN → 10ms → RESET (with specific timing) → 200ms → MIPI commands → 100ms → Display On/Sleep Out → 100ms → Backlight.
  4. Backlight Driving: The backlight uses 30 White LEDs with a forward current of IF = 120mA and forward voltage of VF = 14-16V. A constant current LED driver is required.
  5. High Resolution (2560×1600): Each MIPI data lane must operate at a high data rate to support 2560×1600@60Hz. Ensure the host MIPI transmitter is capable of the required bit rate.
  6. Wide View Angle: The module specifies \"Wide View\" as the viewing angle, providing consistent color and contrast across a wide range of viewing positions.
  7. Temperature Limits: Operating Temperature: 0°C to +50°C. Storage Temperature: -20°C to +60°C. This is a narrower operating range compared to many industrial modules.
  8. Cross Talk Performance: The spec includes a specific test methodology for Cross Talk (CT), indicating that image quality (specifically related to crosstalk) is a characterized parameter.

Handling & Compliance

  • The module is ROHS Compliant.
  • Observe standard ESD precautions during handling and assembly.
  • The module contains fragile glass and FPC – handle with care.
  • Avoid bending the FPC sharply, especially near the connector interface.
  • Do not attempt to disassemble or process the LCD Module.
  • NC terminals should be open. Do not connect anything.
  • If the logic circuit power is off, do not apply the input signals.

5. Conclusion & Design-In Support

The LS089I01-MP-V1 specification details a high-resolution 8.9-inch WQXGA (2560×1600) TFT-LCD module with a unique dual MIPI DSI interface, 16:10 aspect ratio, triple-voltage power supply (IOVCC/VSP/VSN), 300 cd/m² typical luminance, and Wide View angle — an excellent choice for applications requiring a large, high-resolution display with a split-screen MIPI interface.

Key Strengths

  • High Resolution (2560×1600 WQXGA): Exceptional image clarity and detail for an 8.9-inch display.
  • 16:10 Aspect Ratio: Suitable for productivity and multimedia applications.
  • Wide View Angle: Good viewing angle performance.
  • Standard 300 cd/m² Luminance: Suitable for indoor use.
  • Detailed MIPI AC Specs: Clear requirements for D-PHY HS and LP signaling.

Main Design Focus

  • The critical design task is designing a power supply system capable of generating three stable voltages (IOVCC=1.8V, VSP=5.4V, VSN=-5.4V) and implementing the precise power-on sequence.
  • Supporting requirements: Configure the host's dual MIPI DSI transmitter to match the module's lane mapping (Left DSI: lanes 0-3 + clock; Right DSI: lane 2 only). Design a constant current backlight driver rated for 120mA at 14-16V. Adhere strictly to the power-on sequence.

This module is an excellent choice for applications requiring a high-resolution 8.9-inch display with a non-standard dual MIPI interface and triple-voltage power supply.

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Eddie Chen
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