8″ Industrial High Nits LCD Module for Outdoor EV Charger

Product Gallery
Key Specs

Model P/N

HS8A0403V

Size

8″

Resolution

1024×768

Brightness

1000 (Typ.)(cd/m²)

Viewing Angle

85/85/85/85, raw sequence

Connector Type

40-pin LVDS FPC, 1-channel, 6/8-bit

Operating Temp

-20 ~
50 °C

Overall(mm)

183(W)×
141(H)×
5.9(D)
Upgrade Options (OEM/ODM)

huisoar

HS8A0403V

General Features

Brand

huisoar

Panel Size (inch)

8"

Model P/N

HS8A0403V

Resolution

1024×768

Brightness (nits)

1000 cd/m² (Typ.)

Viewing Angle

85/85/85/85, raw sequence

Contrast Ratio

1000:1 typical

Response Time

6/2 ms typical, Tr/Td

Overall (mm)

183(W)×
141(H) ×
5.9(D) mm

Active Area (mm)

162.048 × 121.536 mm

Refresh Rate

60Hz

Bezel Opening

164.80 × 124.30 mm

Display Colors

16.7M colors

Panel Type

tft-lcd, lcm

Connector Type

40-pin LVDS FPC, 1-channel, 6/8-bit

Surface Treatment

Anti-glare, hard coating 3H

Operating Temp

-20 ~
50 °C

Touchscreen Type

Capacitive(G+FF/GG Structure)

Storage Temp

−30°C to +60°C

Work Mode

IPS, normally black

Pixel Format

1024 × RGB × 768, RGB vertical stripe

Input Voltage (V)

3.3 V panel input

Touch Interface

USB 2.0(I2C/RS232 Optional)

Control Type

Host-controlled TFT-LCD module

Weight (g)

5000 g(Typ./Max.)

Operating Environment

Bright indoor and outdoor-facing equipment after system validation g(Typ./Max.)

Designed For

Outdoor EV chargers, car-wash terminals, industrial HMIs, industrial automation equipment, test and measurement equipment, medical equipment, outdoor public terminals, and marine systems.

8" Industrial High Nits LCD Module for Outdoor EV Charger

This XGA IPS module combines 1000-nit panel luminance, anti-glare surface treatment and a 40-pin LVDS interface for outdoor-facing charger HMIs.

Product Summary

The 8" Industrial High Nits LCD Module is an 8-inch TFT-LCD component for equipment that needs a compact 4:3 interface, native 1024 × 768 resolution and stronger panel luminance than a conventional indoor display.

Its XGA canvas can support charging instructions, connector status, progress information, equipment warnings, service prompts and operating menus. The IPS structure, 1000-nit luminance and 40-pin LVDS interface make the module relevant to outdoor EV charger HMIs, car-wash terminals, industrial control panels and compact public-information equipment.

The module is a display component rather than a complete monitor. Controller electronics, backlight driving, front protection, touch requirements and environmental sealing must be defined separately for the finished equipment.

Key Specifications

SpecificationValue
Display size8.0 inch
Native resolution1024 × 768 pixels
Aspect ratio4:3
Active area162.048 × 121.536 mm
Module outline183.0 × 141.0 × 5.6 mm
Bezel opening164.80 × 124.30 mm
Panel technologya-Si IPS TFT-LCD
Display modeNormally black, transmissive
Luminance1000 nits
Contrast ratio1000:1 typical
Viewing-angle data85/85/85/85, raw sequence
Display colors16.7M colors
Surface treatmentAnti-glare, hard coating 3H
Interface40-pin LVDS, 1-channel, 6/8-bit
Panel input3.3 V
BacklightWhite LED
Operating temperature−20°C to +50°C
Storage temperature−30°C to +60°C

XGA Interface Design for Charger HMIs

Native 1024 × 768 Layout

The XGA raster provides a practical 4:3 workspace for charger interfaces that combine operational information with user guidance.

A native layout can separate:

  • Connection instructions
  • Charger availability
  • Charging progress
  • Energy or session information
  • Equipment status
  • Warning messages
  • Service contact information
  • Promotional or informational content

Using the native 1024 × 768 raster helps maintain text sharpness, icon proportions and menu alignment. Scaling from an unrelated resolution can reduce clarity and complicate interface validation.

4:3 Information Hierarchy

The 4:3 format provides more vertical space than a wide display of similar diagonal size. This is useful when the interface requires stacked instructions, large numerical values and clearly separated operating steps.

Important instructions and fault information should remain visually dominant. Promotional material should not compete with the user’s next required action or with safety-related content.

1000-Nit IPS Optical Performance

Bright-Ambient Visibility

The module provides 1000-nit panel luminance.

This value gives the display more optical headroom for bright indoor and outdoor-facing installations than a standard low-luminance panel. The anti-glare surface can also help reduce some reflected glare at the panel level.

A 1000-nit panel does not independently prove that a completed EV charger will remain readable in every direct-sun condition.

Front-Cover Optical Losses

Finished visibility depends on:

  • Cover-glass transmission
  • Surface reflection
  • Air gap or optical bonding
  • Decorative printing
  • Anti-reflective treatment
  • Installation angle
  • Cabinet shading
  • Ambient-light direction
  • Backlight control
  • Internal operating temperature

The production front cover and complete optical stack should be evaluated under the intended lighting conditions before direct-sun performance is approved.

8" Industrial High Nits LCD Module Integration

40-Pin LVDS Qualification

The module uses a 40-pin, 1-channel LVDS interface with 6/8-bit support.

A matching 40-pin connector does not prove electrical compatibility. Before controller or cable release, verify:

  • Native 1024 × 768 timing
  • Pixel-clock requirement
  • LVDS channel count
  • 6-bit or 8-bit mapping
  • JEIDA or VESA mapping where applicable
  • Complete pin assignment
  • Signal voltage
  • Clock polarity
  • Ground distribution
  • Connector pitch
  • FPC contact side
  • Cable orientation
  • Backlight control

HDMI, DisplayPort, USB, MIPI DSI, eDP and parallel RGB hosts require an appropriate controller or conversion architecture.

Panel and Controller Power Separation

The panel input is listed as 3.3 V. Another configuration reference mentions DC 12 V, which may relate to an external controller or assembled kit.

These values must not be treated as interchangeable.

Do not apply DC 12 V directly to the panel rail. Obtain the approved panel pinout, backlight voltage/current requirements and controller wiring before prototype power-up.

Mechanical Fit and Cable Routing

The exact module outline is 183.0 × 141.0 × 5.6 mm. The active display area is 162.048 × 121.536 mm, and the listed bezel opening is 164.80 × 124.30 mm.

Mechanical review should cover:

  • Active-area centering
  • Front-window dimensions
  • Bezel overlap
  • Module tolerance
  • Rear-component clearance
  • Cable exit direction
  • FPC bend radius
  • Connector access
  • Mounting support
  • Panel flatness
  • Cover-glass spacing
  • Thermal clearance
  • Service access

One mechanical drawing contains an 800 × 600 annotation that conflicts with the selected 1024 × 768 configuration. Use the approved XGA drawing before enclosure tooling or production release.

Outdoor EV Charger Application Boundaries

EV Charging Stations

The panel can present connection instructions, charging progress, operating status, fault messages and service information in a compact charger interface.

Payment, communications, electrical safety, ingress protection and charger-control functions remain part of the finished EV charging system.

Outdoor-Facing Car-Wash Terminals

The 4:3 format can support wash-program selection, payment guidance, equipment status and operating instructions. The final assembly requires appropriate sealing, cover-glass and thermal design.

Industrial Control Panels

The module can display alarms, process values, operating modes, trend information and maintenance pages in compact industrial equipment.

Test and Measurement Equipment

XGA resolution provides space for measurements, waveforms, configuration menus and result tables without requiring a large enclosure.

Public Information Terminals

The panel can also support compact service terminals that display directions, instructions, queue information or equipment status.

The standard module does not establish an integrated touch sensor, IP65 protection, automotive qualification or medical certification.

Customization Options

Project review can include:

  • Brightness and backlight configuration
  • LVDS controller and cable matching
  • Complete 40-pin definition
  • FPC length or routing
  • Cover-glass design
  • Anti-glare or anti-reflective treatment
  • Optical bonding
  • Separate capacitive or resistive touch development
  • Enclosure adaptation
  • Mounting support
  • Thermal planning
  • Branding and packaging
  • Sample validation

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:

  • Approved 1024 × 768 datasheet and drawing
  • Native XGA timing
  • Pixel-clock requirement
  • LVDS channel count
  • 6-bit or 8-bit mapping
  • JEIDA or VESA requirement
  • Complete 40-pin assignment
  • Panel input voltage
  • Backlight voltage and current
  • Backlight enable and dimming controls
  • Controller-board requirement
  • FPC contact side and orientation
  • Cable length
  • Enclosure drawing
  • Front opening
  • Mounting method
  • Cover-glass stack
  • Bonding requirement
  • Target finished-front luminance
  • Ambient-light conditions
  • Thermal conditions
  • Touch requirement
  • IP-protection target
  • Sample quantity
  • Annual demand
  • Production schedule

Application Scenarios

FAQ

About 8" Industrial High Nits LCD Module

What must be checked before connecting a 40-pin LVDS controller?

Confirm native 1024 × 768 timing, single-channel LVDS support, 6/8-bit mapping, complete pin assignment, the 3.3 V panel rail, connector orientation and backlight requirements. A matching connector and resolution do not establish electrical compatibility with another panel.

Does 1000-nit luminance guarantee direct-sun readability?

Does 1000-nit luminance guarantee direct-sun readability? No. The panel provides 1000-nit luminance, but finished readability also depends on the front cover, reflection, optical bonding, printed borders, installation angle and internal temperature. Test a production-representative optical stack under the target lighting condition before approving a direct-sun claim.

Which dimensions should control enclosure release?

Use the 183.0 × 141.0 × 5.6 mm module outline, 162.048 × 121.536 mm active area and 164.80 × 124.30 mm bezel opening. Obtain the approved 1024 × 768 drawing before tooling because one available mechanical image contains a conflicting resolution annotation.

How should the 3.3 V panel input and a possible DC 12 V kit input be handled?

Treat them as separate power domains. The LCD panel data lists 3.3 V, while DC 12 V may apply to an external controller or assembled display kit. Confirm the ordered architecture and never connect DC 12 V directly to the panel input.

Does the standard module include touch or IP65 protection?

Integrated touch and IP65 protection are not confirmed for the standard module. Touch sensing, front glass, bonding, seals and enclosure protection should be specified separately and validated on the finished equipment.

Need a custom solution or samples?

Submit the Project for Engineering Review Information to Submit For the 8″ Industrial High Nits LCD Module, submit the approved XGA drawing, native timing, LVDS channel and bit mapping, complete 40-pin assignment, panel and backlight power data, controller requirements, FPC orientation, enclosure and front-cover drawings, lighting conditions, touch or IP target, sample quantity and annual demand. Engineering Review Outcome Engineering review covers LVDS compatibility, panel and controller power separation, drawing reconciliation, mechanical fit, front-cover optical performance, backlight planning, touch-development feasibility, sample configuration and customization scope.

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