10.25 Inch Wide Cockpit LCD Panel Touch Display for Automotive HMI

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Key Specs

Model P/N

HS103Z7P-K10-50 

Size

10.25″

Resolution

1920×720

Brightness

1000 (Typ.)(cd/m²)

Viewing Angle

89/89/89/89

Connector Type

LVDS

Operating Temp

-30 ~
85 °C

Overall(mm)

251.148(W)×
101.098(H)×
5.2(D)
Upgrade Options (OEM/ODM)

huisoar

HS103Z7P-K10-50 

General Features

Brand

huisoar

Panel Size (inch)

10.25"

Model P/N

HS103Z7P-K10-50 

Resolution

1920×720

Brightness (nits)

1000 cd/m² (Typ.)

Viewing Angle

89/89/89/89

Contrast Ratio

900:1

Response Time

16ms

Overall (mm)

251.148(W)×
101.098(H) ×
5.2(D) mm

Active Area (mm)

243.648 (H) *91.368 (V) mm

Refresh Rate

60Hz

Display Colors

16.7 million colors

Panel Type

tft-lcd, lcm

Connector Type

LVDS

Surface Treatment

HC

Operating Temp

-30 ~
85 °C

Touchscreen Type

Capacitive

Storage Temp

−40°C to +95°C

Work Mode

Normally black

Pixel Format

RGB vertical stripe; ultra-wide landscape

Control Type

External LVDS host and separate touch-controller architecture required

Operating Environment

Vehicle-cabin and specialty-equipment integration subject to system qualification g(Typ./Max.)

Designed For

Automotive cockpit displays, digital instrument clusters, centre information displays, in-vehicle infotainment systems, electric vehicle dashboards, driver-information displays, automotive HMI prototypes, vehicle simulators, automotive test benches, wide-format embedded HMIs, off-highway vehicle dashboards, and OEM/ODM cockpit display development projects.

10.25 Inch Wide Cockpit LCD Panel for Automotive HMI

A panoramic 1920 × 720 capacitive-touch panel with 1000-nit luminance and LVDS for wide vehicle-interface layouts.

Product Summary

The 10.25 Inch Wide Cockpit LCD Panel provides an ultra-wide display format for automotive HMI prototypes, cockpit information systems and specialty-vehicle interfaces. Its native 1920 × 720 resolution supports instrument graphics, navigation regions, operating status, alerts and vehicle-control content across a long horizontal canvas.

The panel combines 1000-nit luminance, capacitive touch, LVDS signaling, Normally Black display mode and a 243.648 × 91.368 mm active area. Integration requires a compatible display host, defined touch-controller architecture, confirmed backlight system and an approved production drawing.

Key Specifications

SpecificationValue
Display size10.25 inch
Resolution1920 × 720 pixels
Active area243.648 × 91.368 mm
Pixel pitch0.1269 × 0.1269 mm
Pixel arrangementRGB vertical stripe
Display colors16.7 million colors
Color gamutNTSC 70% minimum
Luminance1000 nits
Display modeNormally Black
Display interfaceLVDS
Touch technologyCapacitive
Surface treatmentHC
Surface hardness3H
Logic-power reference0.5 W maximum
Operating temperature−30°C to +85°C
Storage temperature−40°C to +95°C
Mechanical outlineApproval drawing required because current references conflict

Panoramic 1920 × 720 Cockpit Layout

Wide-Format Interface Composition

The 1920 × 720 raster creates a panoramic workspace for information that benefits from horizontal separation. A cockpit interface can divide the screen into instrument, navigation, alert, media and system-control zones without relying on a taller conventional aspect ratio.

The native raster should be used whenever practical. Scaling from a mismatched source can soften text, distort circular gauges or change the proportions of interface elements.

Interface planning should define:

  • Driver and passenger viewing positions
  • Primary and secondary information zones
  • Minimum text and icon sizes
  • Warning-message placement
  • Touch-target dimensions
  • Day and night visual themes
  • Screen orientation and mounting angle

Active Area and Pixel Geometry

The active image area measures 243.648 × 91.368 mm. This value defines the visible pixel region and should be separated from cover-lens dimensions, bezel opening, touch-active area and complete module outline.

The 0.1269 × 0.1269 mm pixel pitch supports fine text, gauge markings and graphical status elements across the ultra-wide panel.

1000-Nit Optical Design

Finished-System Readability

The panel luminance is specified at 1000 nits. This level provides a strong starting point for vehicle-cabin and other bright-ambient installations, but it does not independently establish finished-system sunlight readability.

A 1000-nit panel does not by itself establish finished-system sunlight readability after cover glass, touch layers, reflections, dimming and thermal conditions are applied.

The optical review should include:

  • Cover-lens transmission
  • Touch-sensor transmission
  • Air gap or optical bonding
  • Front-surface reflectance
  • Decorative printing
  • Panel mounting angle
  • Direct and indirect sunlight
  • Night-time dimming
  • Backlight power
  • Enclosure temperature

Brightness should be validated on the completed display stack rather than on the bare panel alone.

Normally Black Mode and Color Coverage

Normally Black mode can support dark cockpit themes and controlled off-state appearance. The panel also supports 16.7 million colors and an NTSC 70% minimum color-gamut reference.

These values provide a basis for instrument graphics, status indicators, maps and branded interface content. They do not establish color-critical calibration, HDR performance or a specific automotive color standard.

The HC surface and 3H hardness provide panel-surface references. They do not prove impact resistance, scratch immunity, chemical resistance or the performance of a finished cover lens.

LVDS and Capacitive-Touch Integration

Display-Host Qualification

The panel uses an LVDS display interface. LVDS identifies the signaling family but does not define the complete electrical implementation.

An LVDS interface name does not guarantee timing, voltage, mapping, connector or pin compatibility.

Before connecting the panel, confirm:

  • Native 1920 × 720 timing
  • Pixel clock and blanking
  • LVDS channel count
  • Color-bit depth
  • JEIDA or VESA mapping
  • Connector manufacturer and pitch
  • Pin-1 orientation
  • Complete pin assignment
  • Panel-logic voltage
  • Panel-enable requirements
  • Ground and shielding arrangement
  • Backlight-enable and dimming controls

The host schematic, panel specification, cable drawing and controller documentation should be reviewed before a sample is powered.

Touch-Controller Definition

The capacitive-touch label confirms the sensing technology but does not identify the controller or host interface.

The capacitive-touch label does not define the touch controller, host interface, firmware or cover-lens construction.

A complete touch specification should identify:

  • Touch-controller model
  • USB, I²C or other communications interface
  • Supply voltage
  • Touch-point count
  • Interrupt and reset signals
  • Firmware environment
  • Active touch area
  • Cover-lens material and thickness
  • Decorative printing
  • FPC position and direction
  • Bonding method
  • Glove, water or noise requirements when applicable

Touch functionality should be approved with the intended host, cable, lens and firmware.

Mechanical Integration of the 10.25 Inch Wide Cockpit LCD Panel

Conflicting Outline References

The current mechanical references do not define one consistent production outline. The tabulated panel dimensions differ from the dimensioned drawing, and the drawing includes several side-depth values that appear to describe different assembly layers.

Mechanical release must therefore use a revision-controlled production drawing that defines:

  • Bare panel outline
  • Touch assembly outline
  • PCBA outline
  • Maximum local depth
  • Active area
  • Viewing area
  • Cover-lens outline
  • FPC exit and orientation
  • Connector position
  • Keep-out regions
  • Mounting datum and tolerances

A nominal size copied from one reference should not be used to release enclosure tooling.

PCBA, FPC and Cover-Lens Clearance

The complete display assembly may include substantially more depth and height than the bare LCD cell. Enclosure planning should account for:

  • Rear PCBA
  • Touch FPC
  • LCD FPC
  • Connector engagement
  • Cable bend radius
  • Cover glass
  • Optical or perimeter bonding
  • Gasket
  • Support frame
  • Backlight-driver components
  • Ventilation and thermal path

The 10.25 Inch Wide Cockpit LCD Panel should be checked in the intended housing before mold or bracket release.

Temperature and Qualification Boundaries

The stated operating range is −30°C to +85°C, and the storage range is −40°C to +95°C.

These values support wide-temperature evaluation, but they do not independently prove:

  • Automotive qualification
  • Continuous operation at maximum temperature
  • Thermal-cycle endurance
  • Humidity resistance
  • Vibration resistance
  • EMC or ESD performance
  • UV resistance
  • Waterproofing
  • Backlight lifetime
  • Complete-system reliability

Qualification should use the selected panel, touch controller, cover lens, cable, host board, backlight drive and enclosure.

Application and Configuration Review

The panel can be evaluated for:

  • Automotive HMI prototypes
  • Cockpit information displays
  • Center-stack interfaces
  • Secondary vehicle-control panels
  • Specialty-vehicle displays
  • Off-highway equipment interfaces
  • Transport-equipment HMIs
  • Wide-format embedded systems

The product is a component display, not a finished infotainment system. HDMI inputs, vehicle communications, audio, operating systems, cameras, media functions and complete power conversion require additional hardware.

Configuration Scope

Project review may cover:

  • Touch-controller and interface selection
  • Cover-glass design
  • Decorative printing
  • Optical bonding
  • LVDS cable and pin definition
  • Backlight drive and dimming
  • Mechanical drawing consolidation
  • FPC adaptation
  • Enclosure integration
  • Product labeling
  • Qualification documentation

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

Procurement Checklist

Submit:

  • Host processor or controller-board model
  • Native 1920 × 720 timing
  • LVDS channel and bit mapping
  • JEIDA or VESA assignment
  • Complete connector pinout
  • Connector manufacturer, pitch and orientation
  • Panel-logic voltage
  • Backlight input and dimming requirements
  • Touch-controller model or target interface
  • Touch firmware environment
  • Cover-lens drawing
  • Optical-bonding requirement
  • Required finished-front luminance
  • Enclosure and bezel drawings
  • Approved mechanical reference
  • FPC routing and bend limits
  • Operating and storage conditions
  • Qualification requirements
  • Sample quantity
  • Annual demand
Application Scenarios

FAQ

About 10.25 Inch Wide Cockpit LCD Panel

What must be checked before connecting the panel to an LVDS controller?

The complete electrical definition must be compared, not only the LVDS label. Confirm the 1920 × 720 timing, channel count, color mapping, connector pitch, pin orientation, panel voltage, complete pin assignment and backlight controls. Submit the host schematic, LVDS output specification and cable drawing before powering a sample.

How should the 1000-nit performance be evaluated behind cover glass?

The finished optical stack should be measured under representative lighting. The panel begins with a 1000-nit specification, but cover-lens transmission, touch layers, decorative printing, air gaps, reflectance, bonding and mounting angle can reduce visible performance. Submit the lens and touch-stack drawings, expected ambient-light range and required day/night brightness targets.

What touch information is required before integration?

The capacitive-touch designation is not enough to design the host connection. Confirm the touch-controller model, communications interface, voltage, reset and interrupt signals, touch-point count, firmware requirements, active touch area and FPC direction. Cover-lens thickness, bonding and electromagnetic-noise conditions should also be defined before sample approval.

Which mechanical dimensions should control the enclosure?

A revision-controlled production drawing should control the enclosure because the current tabulated dimensions and mechanical drawing conflict. The final document should separately identify the bare panel, touch assembly, PCBA, local maximum depth, active area, viewing area, FPC and connector keep-outs. Do not release tooling from a single nominal outline value.

How should the wide-temperature range be qualified?

The −30°C to +85°C operating range and −40°C to +95°C storage range should be verified in the completed system. Testing should include cold startup, hot-cabin operation, touch response, image stability, backlight behavior, cable performance and enclosure temperature. These temperature values do not by themselves establish automotive certification or lifetime performance.

Need a custom solution or samples?

Submit the Project for Engineering Review Information to Submit For the 10.25 Inch Wide Cockpit LCD Panel, submit the host LVDS timing and mapping, complete connector pinout, touch-controller and interface requirements, panel and backlight power, approved mechanical drawing, cover-lens stack, luminance target, temperature requirements, sample quantity and annual demand. Engineering Review Outcome Engineering review covers LVDS compatibility, touch-controller integration, panel and backlight power, optical-stack performance, mechanical-reference reconciliation, FPC and enclosure clearance, temperature qualification, sample configuration and available customization routes.
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