6.2 Inch In-Cell Instrument Touch Display Module for Vehicle HMI

Product Gallery
Key Specs

Model P/N

HS620009B0

Size

6.2″

Resolution

480×1280

Brightness

1200 (Typ.)(cd/m²)

Viewing Angle

80°/80°/80°/80°, L/R/U/D

Connector Type

MIPI 40-pin FPC

Operating Temp

-30 ~
85 °C

Overall(mm)

72.43(W)×
176.65(H)×
5.68(D)
Upgrade Options (OEM/ODM)

huisoar

HS620009B0

General Features

Brand

huisoar

Panel Size (inch)

6.2"

Model P/N

HS620009B0

Resolution

480×1280

Brightness (nits)

1200 cd/m² (Typ.)

Viewing Angle

80°/80°/80°/80°, L/R/U/D

Contrast Ratio

1200:1 (Typ.)

Response Time

8ms

Overall (mm)

72.43(W)×
176.65(H) ×
5.68(D) mm

Active Area (mm)

54.43 (W) × 146.65 (H) mm

Refresh Rate

60Hz

Display Colors

262K colors

Panel Type

tft-lcd, lcm

Connector Type

MIPI 40-pin FPC

Operating Temp

-30 ~
85 °C

Touchscreen Type

Without Touch

Storage Temp

−40°C to +90°C

Work Mode

Normally black

Pixel Format

480 × RGB × 1280

Control Type

Host-controlled TFT with integrated touch sensing

Operating Environment

Vehicle, instrument, machinery and embedded-equipment environments subject to system qualification g(Typ./Max.)

I/O Interface

4-lane MIPI display; I²C touch

Designed For

Two-wheeler instrument clusters Motorcycle dashboards Electric scooter displays Medical instruments Agricultural machinery control displays Agricultural vehicle instrument panels Industrial equipment displays Industrial control panels Outdoor high-brightness embedded displays

6.2 Inch In-Cell Instrument Touch Display Module for Vehicle HMI

This compact IPS module combines a native 480 × 1280 canvas, 1200 cd/m² typical luminance and In-Cell touch for instrument and vehicle-control interfaces.

Product Summary

The In-Cell Instrument Touch Display is designed for products that need a tall interactive interface within a narrow enclosure. Its 480 × 1280 native resolution supports vertically arranged operating data, status icons, warnings, navigation prompts and touch controls without requiring the width of a conventional landscape panel.

The module combines a 6.2-inch IPS TFT-LCD, 4-lane MIPI display input, I²C touch communication and a 40-pin connection. It can be evaluated for two-wheeler instruments, agricultural machinery controls, compact vehicle HMIs, industrial equipment and professional instrument interfaces.

Key Specifications

SpecificationValue
Display size6.2 inch
Native resolution480 × 1280 pixels
Active area54.43 × 146.65 mm
Module outline72.43 × 176.65 × 5.68 mm
Panel technologya-Si IPS TFT-LCD
Optical modeTransmissive
Luminance1200 cd/m² typical
Contrast ratio1200:1 typical
Viewing angle80°/80°/80°/80°, L/R/U/D
Display colors262K colors
Display interface4-lane MIPI
Connection40-pin FPC
Display identifierJD9265T
Touch constructionIn-Cell
Touch interfaceI²C
BacklightWLED
Operating temperature−30°C to +85°C
Storage temperature−40°C to +90°C

480 × 1280 Interface Design

Native Vertical UI Layout

The native 480 × 1280 canvas is well suited to a top-to-bottom interface. Product teams can assign separate screen regions for:

  • Speed or machine values
  • Battery or fuel status
  • Warning indicators
  • Navigation instructions
  • Operating modes
  • Temperature values
  • Touch controls
  • Connection status
  • Service messages

The native raster should be used throughout UI development. Scaling a lower-resolution asset set or rotating a landscape interface late in the program may reduce text clarity and make touch targets harder to position consistently.

Instrument Data and Warning Zones

Critical values should remain readable at the intended viewing distance and under the final cover design. Warning indicators should use sufficient size and contrast to remain distinct from secondary information.

Localization should be tested early because translated labels may require more space. The design should also preserve safe margins around the visible area and any decorative mask.

1200 cd/m² IPS Optical Performance

Panel Luminance and Cover Losses

The panel provides 1200 cd/m² typical luminance with a 1200:1 typical contrast ratio.

A 1200 cd/m² panel does not by itself establish finished-system sunlight readability behind cover glass.

Final visibility depends on:

  • Protective-cover transmission
  • Surface reflection
  • Decorative printing
  • Air gap or bonding adhesive
  • Anti-glare or anti-reflective treatment
  • Backlight control
  • Enclosure shadowing
  • Ambient-light direction
  • Operating temperature
  • Thermal management

The completed display assembly should therefore be evaluated under the target lighting and temperature conditions.

Wide-Angle Cabin Viewing

The IPS panel provides 80° viewing in the left, right, upper and lower directions. This supports interfaces that may be observed from changing positions rather than directly on-axis.

Viewing-angle performance does not replace finished-system evaluation. Cover curvature, polarizers, reflections and installation angle can still influence perceived contrast and color.

In-Cell Instrument Touch Display Integration

In-Cell Touch Construction

In-Cell touch integrates the sensing structure within the display stack rather than adding a separate conventional touch sensor above the LCD.

This can support a compact module stack, but it also means display and touch qualification must follow the approved module documentation. Touch behavior should be tested with the final cover, grounding arrangement, firmware and enclosure.

I²C Touch Qualification

The touch path is identified as I²C. Before board release, confirm:

  • Touch-controller identification
  • I²C address
  • Supply voltage
  • Logic voltage
  • Interrupt signal
  • Reset signal
  • Grounding
  • Firmware support
  • Coordinate orientation
  • Touch-point requirement
  • Cover thickness
  • Glove or wet-operation requirement, when applicable
  • EMC and noise behavior

The MIPI display path and I²C touch path must be qualified as separate interfaces.

4-Lane MIPI Host Integration

40-Pin Compatibility Checks

The display uses a 40-pin connection and four MIPI lanes.

A 40-pin MIPI connector does not guarantee lane mapping, timing, voltage, initialization or pin compatibility with another display.

Before hardware release, confirm:

  • Complete 40-pin assignment
  • MIPI lane order
  • Clock-lane position
  • Lane polarity
  • Command or video operating mode
  • Native horizontal timing
  • Native vertical timing
  • Link rate
  • Panel voltage
  • Logic voltage
  • Reset and enable functions
  • Backlight power and control
  • FPC pitch
  • Contact side
  • Pin-1 orientation

MIPI DSI defines the host-to-display protocol, but the module-level connector, pin mapping and initialization package remain product-specific.

Initialization and Lane Mapping

The JD9265T identifier should be used to locate the approved technical package, not as a substitute for that package.

Its presence does not independently establish:

  • Register values
  • Initialization commands
  • Power sequence
  • Lane mapping
  • Operating mode
  • Voltage levels
  • Touch configuration
  • Host compatibility

The correct startup data and interface definition must be confirmed for the ordered module revision.

Mechanical and Thermal Qualification

The precise module outline is 72.43 × 176.65 × 5.68 mm. The active area is 54.43 × 146.65 mm.

Engineering review should cover:

  • Front opening
  • Visible-area alignment
  • Bezel overlap
  • Rear clearance
  • FPC exit
  • Connector location
  • Mounting support
  • Cover thickness
  • Adhesive area
  • Flatness
  • Tolerance accumulation
  • Cable bend radius
  • Strain relief
  • Service access

The module operates from −30°C to +85°C and stores from −40°C to +90°C. These panel values support wide-temperature evaluation, but the finished product still requires system-level validation of the controller, touch behavior, cover material, adhesives, backlight, enclosure and power architecture.

Vehicle, Machinery and Instrument Applications

This module can be evaluated for:

  • Two-wheeler instrument displays
  • Compact vehicle information panels
  • Agricultural machinery control screens
  • Industrial equipment HMIs
  • Professional instrument interfaces
  • Narrow embedded touch terminals
  • Secondary vehicle-control interfaces

Vehicle application examples do not establish automotive qualification. Projects intended for road vehicles require the appropriate environmental, electrical, optical, reliability and regulatory validation.

Medical-instrument examples do not establish medical certification. Regulated equipment requires device-level risk management, safety, software, usability and performance qualification.

Customization Boundaries

Project review can include:

  • MIPI host matching
  • Complete 40-pin definition
  • Lane mapping
  • Approved initialization package
  • I²C touch routing
  • Touch firmware integration
  • FPC layout and orientation
  • Cover-glass design
  • Anti-glare or anti-reflective treatment
  • Optical bonding
  • Brightness target
  • Enclosure adaptation
  • Mechanical drawing review
  • Branding and packaging
  • Sample validation

Custom configurations are generally reviewed from 500 pieces, subject to tooling requirements, material availability and the requested specification. Samples and standard-module quantities are confirmed separately.

Procurement Checklist

Submit:

  • Host processor or display controller
  • Native 480 × 1280 timing
  • MIPI operating mode
  • Four-lane mapping
  • Link-rate requirement
  • Full 40-pin assignment
  • Panel and logic voltages
  • Reset and enable requirements
  • Approved initialization package
  • Backlight voltage and current
  • Backlight dimming requirement
  • Touch-controller data
  • I²C address
  • Interrupt and reset routing
  • Touch-point requirement
  • FPC pitch and contact side
  • Pin-1 orientation
  • Mechanical drawing
  • Front-window drawing
  • Cover-glass plan
  • Bonding requirement
  • Target finished-front luminance
  • Operating environment
  • Temperature and vibration requirements
  • Sample quantity
  • Annual demand
  • Production schedule

Application Scenarios

FAQ

About 6.2 Inch In-Cell Instrument Touch Display Module

What must be checked before connecting a 40-pin four-lane MIPI host?

The complete pinout, lane order, clock lane, polarity, operating mode, timing, link rate, voltages and initialization package must all match. Pin count and the MIPI label alone do not prove compatibility.

How should a 480 × 1280 instrument UI be prepared?

The UI should be designed natively in portrait orientation with separate zones for critical values, warnings, navigation information and touch controls. Touch coordinates should be tested against the final screen orientation and cover stack.

Are the display and touch data carried through the same interface?

The display uses four-lane MIPI, while the touch path is identified as I²C. They should be treated as separate integration paths unless an approved specification explicitly defines shared pins or another arrangement.

Does 1200 cd/m² guarantee direct-sunlight readability?

No. The value describes panel luminance. Finished visibility also depends on the cover, reflections, bonding, surface treatment, installation angle, ambient light and thermal behavior.

What does the JD9265T identifier establish?

It identifies a component associated with the display design. It does not by itself prove the correct initialization commands, lane mapping, pin assignment, voltage or host compatibility.

Which dimensions should control enclosure design?

Use the precise 72.43 × 176.65 × 5.68 mm module outline and the 54.43 × 146.65 mm active area. Rounded catalog dimensions should not be used for tooling release.

Need a custom solution or samples?

Submit the Project for Engineering Review Information to Submit For the In-Cell Instrument Touch Display, submit the native timing, MIPI four-lane map and operating mode, complete 40-pin assignment, panel and backlight power data, approved initialization package, I²C touch address and control routing, FPC orientation, enclosure drawing, cover stack, lighting target, operating environment, sample quantity and annual demand. Engineering Review Outcome Engineering review covers MIPI host compatibility, lane and pin definition, startup package, I²C touch integration, FPC orientation, mechanical fit, cover optics, luminance validation, wide-temperature planning, sample configuration and customization feasibility.
Scroll to Top
Request Quote / Datasheet

Response within 12-24 hours. NDA available. Engineering support included.

Fields marked with an asterisk (*) are required.

Contact Information

Request Details

WeChat QR code

Scan the QR code with your phone to contact us.

Download Datasheet

Please input your e-mail address to start the download.