10.1 Inch 1200 Nits EV Charger Display Module for Industrial HMI

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Key Specs

Model P/N

HS101WHB-NE12

Size

10.1″

Resolution

1280×800

Brightness

1200 (Typ.)(cd/m²)

Viewing Angle

85°/85°/85°/85° L/R/U/D, typical at CR ≥ 10

Connector Type

LVDS, 30 pins

Operating Temp

0 ~
50 °C

Overall(mm)

227.91(W)×
148(H)×
10.1(D)
Upgrade Options (OEM/ODM)

huisoar

HS101WHB-NE12

General Features

Brand

huisoar

Panel Size (inch)

10.1"

Model P/N

HS101WHB-NE12

Resolution

1280×800

Brightness (nits)

1200 cd/m² (Typ.)

Viewing Angle

85°/85°/85°/85° L/R/U/D, typical at CR ≥ 10

Contrast Ratio

1300:1 typical

Response Time

10ms

Overall (mm)

227.91(W)×
148(H) ×
10.1(D) mm

Active Area (mm)

216.96 × 135.6 mm

Refresh Rate

60Hz

Display Colors

262K / 16.7M listed

Panel Type

tft-lcd, lcm

Connector Type

LVDS, 30 pins

Operating Temp

0 ~
50 °C

Touchscreen Type

Optional Custom Touch Screen

Storage Temp

−20°C to +60°C

Work Mode

Normally black, transmissive

Operating Environment

Industrial / digital-signage / bright-ambient equipment integration g(Typ./Max.)

Designed For

EV charging equipment, industrial displays, digital signage and bright-ambient embedded terminals

10.1 Inch 1200 Nits EV Charger Display Module for Industrial HMI

This compact 10.1-inch 1200 Nits EV Charger Display Module combines 1280 × 800 IPS viewing with a 30-pin LVDS interface for embedded industrial HMI integration.

Product Summary

The 1200 Nits EV Charger Display Module is a compact 10.1-inch TFT-LCD component for charging equipment and industrial interfaces that need stronger luminance than a conventional indoor display. Its 1280 × 800 pixel matrix uses a 16:10 format, while the IPS hard-screen structure supports broad viewing from fixed and off-axis operator positions. The standard configuration is non-touch, so it should be treated as a display module rather than a complete interactive touchscreen assembly.

A 1200 cd/m² typical luminance rating gives designers additional optical headroom for bright indoor and sheltered outdoor-adjacent installations. Readability still depends on the finished front window, reflections, screen angle and ambient light. For EV charging equipment, the display therefore needs to be evaluated as part of the complete cabinet rather than by luminance alone.

Key Specifications

ItemConfirmed value
Screen size10.1 inches
Resolution1280 × 800 pixels, 16:10
Active area216.96 × 135.6 mm
Module outline227.91 × 148 mm
Maximum thickness10.1 mm
Brightness1200 cd/m² typical
Panel familyIPS hard-screen, transmissive
Contrast ratio1300:1 typical
Viewing angle85°/85°/85°/85° L/R/U/D, typical at CR ≥ 10
Display colors262K / 16.7M listed
BacklightWLED
Signal interfaceLVDS, 30 pins
TouchNo touch
Operating temperature0°C to +50°C
Storage temperature−20°C to +60°C

Bright-Ambient Optical Performance

1200 cd/m² for Charging Equipment

The 1200 cd/m² typical output is the selected luminance for this configuration. It is useful when a charging pedestal, industrial cabinet or information terminal is installed in a brighter environment than a normal indoor control panel. It should not be converted into an automatic “direct-sun readable” claim because glare and reflected light at the final cover can materially change apparent contrast.

For procurement, the lighting condition should be defined before sample approval. Important inputs include whether the unit sits under a canopy, the direction of the front window, the amount of direct sun exposure and the optical properties of any protective cover.

IPS Viewing and 1300:1 Contrast

The IPS hard-screen structure is paired with a 1300:1 typical contrast ratio and a specified 85°/85°/85°/85° viewing angle in left, right, up and down directions. This helps when the display is mounted at a fixed angle or viewed by users of different heights.

The listed 262K / 16.7M color capability should be confirmed against the ordered signal mapping before graphics are released. The module can support color-rich charging status, instructions, branding and machine-interface graphics without assuming an unverified bit-depth mode.

Integrating the 1200 Nits EV Charger Display Module

30-Pin LVDS Requires Full Host Matching

The image interface is LVDS through a 30-pin connection. A matching pin count alone does not establish compatibility. Before controller selection, confirm native 1280 × 800 timing, LVDS channel and bit mapping, complete pin assignment, connector pitch, contact side, cable orientation and panel power requirements.

This check is especially important when the module is intended as a replacement for another 10.1-inch panel. Two displays can share resolution and pin count while using different electrical assignments or cable orientations.

Mechanical Envelope for Cabinet Integration

The active image area measures 216.96 × 135.6 mm. The module outline is 227.91 × 148 mm, with a maximum thickness of 10.1 mm. These values should be used together when planning the front opening, internal support points and connector clearance.

The active area defines the visible image region; it does not replace the complete mechanical drawing. Enclosure tooling should wait until the production drawing confirms tolerances, mounting details and cable exit geometry.

Non-Touch Architecture and Interaction Planning

Standard Configuration Has No Touchscreen

The standard module is explicitly non-touch. EV charger projects that require an interactive interface must therefore treat user input as a separate system requirement rather than assuming touch is built into the LCD.

A separate touch solution, if required by the finished equipment, needs independent review for optical loss, mechanical stack height, controller interface, environmental behavior and front-window design. The LCD itself should not be described as a touch display until an approved touch assembly is defined.

Environmental Boundaries for EV Charging Equipment

Operating and Storage Temperature Limits

The operating range is 0°C to +50°C, and the storage range is −20°C to +60°C. These limits are narrower than the wide-temperature specifications used by some outdoor display modules, so they must be checked against the charger cabinet's internal thermal conditions.

The temperature values do not establish weatherproofing, UV resistance or an IP rating. If the equipment is installed outdoors, the finished enclosure must provide the required environmental protection and thermal management independently.

Application Fit

The 1200 Nits EV Charger Display Module is well aligned with EV charger status displays, charging-pile information interfaces and industrial HMI equipment where a 10.1-inch 1280 × 800 screen and 30-pin LVDS path fit the host architecture. The same combination can also suit compact digital signage, parcel-locker information screens and other embedded terminals in bright ambient environments.

Its strongest procurement value is the combination of compact WXGA-format content space, 1200 cd/m² typical luminance, IPS viewing, exact 30-pin LVDS identification and a clearly defined non-touch boundary. Projects that require exposed outdoor use, touch interaction or a different temperature envelope should qualify those requirements separately before design release.

Procurement Checklist

  • Confirm the ordered RS101WHB-NE12 / HS101WHB-NE12 revision and 1200 cd/m² luminance tolerance.
  • Confirm native 1280 × 800 timing and the complete 30-pin LVDS pin assignment.
  • Confirm LVDS channel/bit mapping, connector pitch, contact side and cable orientation.
  • Obtain panel input voltage and complete WLED voltage, current, enable, dimming and driver requirements.
  • Approve the 216.96 × 135.6 mm active area, 227.91 × 148 mm outline and 10.1 mm maximum thickness.
  • Confirm the 1300:1 typical contrast and 85° L/R/U/D viewing specification for the production revision.
  • Keep the standard configuration identified as non-touch.
  • Validate 0°C to +50°C operation and −20°C to +60°C storage against the finished cabinet.
  • Define front-window reflection, sealing, humidity, vibration and compliance requirements separately.
  • Specify sample quantity, annual demand and acceptance criteria.
Application Scenarios

FAQ

About 10.1 Inch 1200 Nits EV Charger Display Module

What must be checked before connecting a 30-pin LVDS controller?

Confirm the complete electrical definition, not only the connector count. The host must match the 1280 × 800 timing, LVDS mapping, panel voltage, pin assignment and cable orientation. A 30-pin connector can be mechanically compatible while still being electrically incompatible, so controller and cable approval should be completed before sample wiring.

Is 1200 cd/m² enough for an EV charger in direct sunlight?

It is sufficient for bright-ambient evaluation, but the panel rating alone cannot guarantee direct-sun readability in the finished charger. Cover-glass reflection, installation angle, solar exposure and internal temperature all affect real performance. Test the production front stack under the intended lighting before releasing a direct-sun requirement.

Does this module include a touchscreen?

No. The standard configuration is non-touch. If the equipment requires an interactive screen, the input hardware must be specified separately and validated for optical, mechanical, electrical and environmental fit. This distinction prevents the LCD specification from being mistaken for a complete touchscreen assembly.

Which dimensions should control enclosure design?

Use the 227.91 × 148 mm module outline and 10.1 mm maximum thickness for preliminary packaging, while the 216.96 × 135.6 mm active area controls the visible image opening. Final tooling still requires the approved production drawing because connector position, tolerances and mounting details are not fully defined by these three values.

What temperature limits matter for charging-equipment qualification?

The panel is specified for operation from 0°C to +50°C and storage from −20°C to +60°C. Compare those limits with the temperature measured inside the finished charger, including solar heating and electronics heat. If the cabinet can exceed the panel limits, the system design or display selection needs further engineering review.

Need a custom solution or samples?

Submit Requirements for Engineering Review For a 1200 Nits EV Charger Display Module project, submit the native 1280 × 800 timing, complete 30-pin LVDS definition, controller and cable details, panel and WLED electrical requirements, enclosure and front-window drawings, site-lighting conditions, operating-temperature target, interaction requirement, sample quantity and annual demand. Engineering review covers signal compatibility, optical visibility, mechanical fit, thermal limits and any separately specified interaction system.
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