15.6 Inch Wide Temperature 1000 Nits LCD Panel for Fuel Dispensers

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Key Specs

Model P/N

HS156BGE-NE10

Size

15.6″

Resolution

1920×1080

Brightness

1000 (Typ.)(cd/m²)

Viewing Angle

80°/80°/80°/80° L/R/U/D

Connector Type

LVDS, 30 pins

Operating Temp

-30 ~
70 °C

Overall(mm)

363.8(W)×
215.9(H)×
9.8(D)
Upgrade Options (OEM/ODM)

huisoar

HS156BGE-NE10

General Features

Brand

huisoar

Panel Size (inch)

15.6"

Model P/N

HS156BGE-NE10

Resolution

1920×1080

Brightness (nits)

1000 cd/m² (Typ.)

Viewing Angle

80°/80°/80°/80° L/R/U/D

Contrast Ratio

3000:1

Response Time

8ms

Overall (mm)

363.8(W)×
215.9(H) ×
9.8(D) mm

Active Area (mm)

344.232 × 193.536 mm

Refresh Rate

60Hz

Display Colors

16.7M

Panel Type

tft-lcd, lcm

Connector Type

LVDS, 30 pins

Operating Temp

-30 ~
70 °C

Touchscreen Type

Without Touch

Storage Temp

−30°C to +80°C

Work Mode

Normally black, transmissive

Operating Environment

Bright indoor and qualified outdoor-facing industrial equipment within optical and temperature limits g(Typ./Max.)

Designed For

Fuel dispensers, charging-pile displays, vending-machine interfaces, gate/access equipment, industrial HMI and digital-signage equipment after system qualification

15.6 Inch Wide Temperature 1000 Nits LCD Panel for Fuel Dispensers

This Wide Temperature 1000 Nits LCD Panel combines Full HD resolution and 30-pin LVDS with −30°C to +70°C operation for industrial equipment.

Product Summary

The Wide Temperature 1000 Nits LCD Panel is a 15.6-inch Full HD TFT-LCD component for fuel dispensers, charging equipment, vending systems, access terminals, and other industrial equipment that must operate across a broad temperature range. Its 1920 × 1080 resolution provides a native 16:9 canvas for status information, machine graphics, advertising content, operating instructions, and equipment interfaces.

The panel uses a transmissive TN TFT-LCD structure with 1000 cd/m² typical luminance, a 3000:1 minimum contrast ratio, WLED backlighting, and a 30-pin LVDS signal connection. The standard detailed configuration is non-touch, allowing equipment designers to treat the LCD, front window, input system, and enclosure as separate engineering layers.

Key Specifications

ItemConfirmed value
Screen size15.6 inches
Resolution1920 × 1080 pixels
Aspect ratio16:9
Panel technologya-Si TN TFT-LCD
Display modeTransmissive
Brightness1000 cd/m² typical
Contrast ratio3000:1 minimum
Viewing angle80°/80°/80°/80° L/R/U/D
Display colors16.7M
BacklightWLED
InterfaceLVDS, 30 pins
Active area344.232 × 193.536 mm
Module footprint363.8 × 215.92 mm
Maximum thickness9.8 mm
TouchNo touch
Operating temperature−30°C to +70°C
Storage temperature−30°C to +80°C

Bright-Ambient Optical Performance

1000 cd/m² and Front-Window Losses

A 1000 cd/m² panel provides a stronger luminance base than conventional indoor displays, but finished readability depends on more than the bare LCD rating. Cover-glass transmission, surface reflection, air gaps, bonding structure, installation angle, and ambient illumination all influence the contrast that a user actually sees.

For a fuel dispenser or other outdoor-facing machine, the final front-window stack should therefore be evaluated under representative lighting before direct-sun readability is approved. This approach keeps the 1000 cd/m² specification useful without treating luminance alone as a finished-system guarantee.

TN Viewing Geometry and 80-Degree Four-Way Angles

The confirmed viewing specification is 80°/80°/80°/80° for left, right, up, and down. That provides system designers with a defined viewing envelope for equipment where operators or customers may approach from different positions.

Viewing height and cabinet tilt should still be checked during mechanical development. A panel mounted significantly above or below the normal eye line can produce a different real-world viewing experience from a laboratory front view, even when the nominal viewing-angle values meet the project requirement.

Integrating the Wide Temperature 1000 Nits LCD Panel

30-Pin LVDS Host Qualification

The module uses a 30-pin LVDS connection. Connector count alone does not establish compatibility with another 30-pin display. Native 1920 × 1080 timing, channel configuration, bit mapping, connector pitch, contact side, pin assignment, voltage requirements, cable orientation, and backlight control all need to be confirmed against the intended controller or mainboard.

For replacement projects, this check is particularly important. A panel can share the same resolution and connector count with another product while still using different electrical assignments or timing requirements.

Full HD Mechanical Fit

The active image area measures 344.232 × 193.536 mm, while the LCD module footprint is 363.8 × 215.92 mm with a maximum thickness of 9.8 mm.

These dimensions serve different design purposes. The active area defines the visible image region, while the full module dimensions control cabinet clearance, bracket position, cable routing, and front-window sizing. Enclosure tooling should be released only after the complete mechanical drawing and connector location are approved.

Wide-Temperature Operation for Industrial Equipment

Operating and Storage Boundaries

The operating range is −30°C to +70°C, with storage from −30°C to +80°C. This gives equipment developers a broader thermal design window than a conventional office display and supports evaluation for fuel dispensers, charging equipment, industrial terminals, and other systems exposed to seasonal temperature variation.

These numbers describe the LCD component rather than the complete machine. Internal cabinet temperature, solar loading, ventilation, heater requirements, condensation, humidity, vibration, and enclosure sealing still need to be addressed at system level.

A wide-temperature panel does not automatically establish waterproofing, UV resistance, an IP rating, or compliance for a finished outdoor product.

Non-Touch Architecture and Interface Planning

Separate Touch Development When Interaction Is Required

The detailed configuration is non-touch. For applications that only need advertising, equipment status, instructions, pricing information, or machine output, this can simplify the front structure.

If a project requires direct screen interaction, the touch layer should be treated as a separate assembly requiring its own controller, interface, cover-lens dimensions, optical transmission target, bonding strategy, grounding plan, and mechanical tolerances. The LCD should not be presented as an integrated touchscreen unless the ordered configuration has been separately qualified.

Application Fit

This 15.6-inch display format is suitable for fuel-dispenser status screens, gas-pump media areas, charging-pile displays, vending-machine interfaces, gate and access equipment, industrial HMI panels, and digital-signage equipment where Full HD content, higher luminance, and wide-temperature capability are useful.

The 16:9 raster supports modern graphical layouts without requiring an unusually large front-panel opening. For equipment manufacturers, this can make it easier to combine machine status, operating instructions, advertising content, and diagnostic information in one native Full HD interface.

For buyers comparing a Wide Temperature 1000 Nits LCD Panel, the most important qualification questions are not limited to brightness. Controller compatibility, the final optical stack, enclosure fit, internal operating temperature, and the decision between non-touch and separately engineered interaction should all be fixed before production release.

Customization and Project Qualification

Project evaluation may cover LVDS cable and controller matching, complete connector definition, cover-glass structure, anti-reflective or anti-glare treatment, optical bonding, enclosure adaptation, cable routing, and separately engineered touch requirements when supporting drawings and electrical specifications are available.

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

  • Confirm the assigned 15.6-inch product revision before final qualification.
  • Use native 1920 × 1080 timing.
  • Obtain the complete 30-pin LVDS assignment and mapping.
  • Confirm connector pitch, contact side, and cable orientation.
  • Confirm panel input voltage and current requirements.
  • Obtain WLED voltage, current, enable, dimming, and driver requirements.
  • Approve the 344.232 × 193.536 mm active area.
  • Approve the 363.8 × 215.92 mm module footprint and 9.8 mm maximum thickness.
  • Validate 1000 cd/m² behind the intended front-window stack.
  • Confirm the 3000:1 minimum contrast specification for the approved revision.
  • Verify the 80°/80°/80°/80° L/R/U/D viewing geometry against installed viewing position.
  • Keep the standard configuration identified as non-touch unless a separate touch assembly is approved.
  • Confirm −30°C to +70°C operation and −30°C to +80°C storage against cabinet conditions.
  • Define humidity, sealing, vibration, UV exposure, and compliance requirements at equipment level.
  • Specify sample criteria, project quantity, annual demand, and production timing.
Application Scenarios

FAQ

About 15.6 Inch Wide Temperature 1000 Nits LCD Panel

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

A matching 30-pin connector does not establish electrical compatibility. Confirm native 1920 × 1080 timing, LVDS channel and bit mapping, the complete pin assignment, connector orientation, panel supply requirements, and WLED backlight control. The controller should be qualified against the approved panel documentation before cable or PCB release.

Is 1000 cd/m² sufficient behind a fuel-dispenser front window?

It depends on the final optical stack and installation lighting. The panel provides 1000 cd/m² typical luminance, but front glass, reflection, air gaps, bonding, and viewing angle can reduce effective contrast. Evaluate a representative sample behind the intended window under actual or simulated site lighting before approving direct-sun readability.

What does the −30°C to +70°C operating range establish?

It establishes the LCD component's confirmed operating-temperature boundary, not the environmental rating of the finished dispenser. Cabinet heat, solar load, condensation, humidity, airflow, sealing, and vibration still require separate equipment-level qualification. Storage is specified from −30°C to +80°C.

Can this panel be used in an interactive machine?

The standard detailed configuration is non-touch. An interactive system needs a separately qualified touch sensor or another input method. Any added touch stack should be checked for controller interface, optical transmission, cover dimensions, bonding, grounding, total thickness, and enclosure fit before production.

Which dimensions should control enclosure release?

Use the complete mechanical drawing, not the active area alone. The visible image area is 344.232 × 193.536 mm, while the module footprint is 363.8 × 215.92 mm with a 9.8 mm maximum thickness. Connector position, mounting tolerances, and cable clearance also need approval before tooling.

Need a custom solution or samples?

Submit Requirements for Engineering Review For a Wide Temperature 1000 Nits LCD Panel project, submit the host/controller specification, native Full HD timing, complete 30-pin LVDS definition, 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 LVDS compatibility, optical performance, mechanical fit, viewing geometry, thermal limits, front-window design, backlight requirements, and any separately engineered touch configuration.
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