15 Inch Fuel Dispenser LCD Module Outdoor Industrial for Outdoor Terminals

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Key Specs

Model P/N

HS0150GI01-C100

Size

15″

Resolution

1024×768

Brightness

1000 (Typ.)(cd/m²)

Viewing Angle

88/88/88/88° typical, L/R/U/D

Connector Type

20-pin LVDS

Operating Temp

-20 ~
70 °C

Overall(mm)

326.5(W)×
253.5(H)×
9.6(D)
Upgrade Options (OEM/ODM)

huisoar

HS0150GI01-C100

General Features

Brand

huisoar

Panel Size (inch)

15"

Model P/N

HS0150GI01-C100

Resolution

1024×768

Brightness (nits)

1000 cd/m² (Typ.)

Viewing Angle

88/88/88/88° typical, L/R/U/D

Contrast Ratio

2000:1 typical

Response Time

12ms

Overall (mm)

326.5(W)×
253.5(H) ×
9.6(D) mm

Active Area (mm)

304.128 (宽) × 228.096 (高) mm

Refresh Rate

60Hz

Display Colors

262K/16.7M

Panel Type

tft-lcd, lcm

Connector Type

20-pin LVDS

Operating Temp

-20 ~
70 °C

Touchscreen Type

without

Storage Temp

−30°C to +70°C

Work Mode

IPS, normally black

Operating Environment

Bright outdoor-facing and industrial HMI equipment g(Typ./Max.)

Designed For

Gas station terminals, fuel dispensers, EV charging piles, outdoor service terminals, industrial control panels, outdoor digital signage, industrial control systems, and rugged outdoor equipment displays.

15 Inch Fuel Dispenser LCD Module Outdoor Industrial for Outdoor Terminals

A 15-inch XGA IPS module combines 1000 cd/m² luminance, 20-pin LVDS, and a 4:3 image format for fuel-pump and outdoor service interfaces.

The Fuel Dispenser LCD Module provides a 1024 × 768 image area for pricing, transaction status, operating prompts, maintenance pages, and equipment-control graphics. Its transmissive a-Si TFT-LCD construction uses an IPS panel, WLED backlight, and a standard non-touch configuration. Engineering approval should cover LVDS timing and pin mapping, panel and backlight power, enclosure mechanics, front-window optics, and environmental protection before production release.

Product Summary

The 15-inch 4:3 format supports established industrial and service-terminal interfaces without forcing a widescreen redesign. The 304.128 × 228.096 mm active area provides room for large pricing fields, payment instructions, status messages, alarms, and maintenance menus.

XGA Layout for Transaction and Control Screens

The native 1024 × 768 resolution is suited to legacy HMI layouts and information-dense 4:3 interfaces. UI artwork should be prepared at the native raster so small text, numeric fields, icons, and borders remain sharp. Controller scaling and orientation should be validated with the intended host before interface approval.

IPS Viewing and High Native Contrast

The panel lists an 88/88/88/88° viewing-angle sequence for left, right, up, and down directions. A 2000:1 typical contrast ratio supports stronger separation between text, graphics, and dark interface areas. Finished performance still depends on cover-glass reflection, installation angle, and ambient lighting.

Key Specifications

ParameterSpecification
Display size15 inch
Resolution1024 × 768 pixels
Aspect ratio4:3
Panel technologya-Si TFT-LCD, IPS
Optical modeTransmissive
Brightness1000 cd/m² typical
Contrast ratio2000:1 typical
Viewing angle88/88/88/88° typical, L/R/U/D
Display colors262K / 16.7M
BacklightWLED
Display interface20-pin LVDS
Active area304.128 × 228.096 mm
Module outline326.5 × 253.5 × 9.6 mm maximum
TouchNo touch in the standard configuration
Operating temperature−20°C to +70°C
Storage temperature−30°C to +70°C

Bright-Ambient Optical Planning

Treat 1000 cd/m² as a System-Qualification Starting Point

The 1000 cd/m² typical luminance provides a practical basis for bright forecourt equipment and outdoor-facing service terminals. It does not independently guarantee direct-sun readability after installation. Cover-lens transmission, internal reflections, air gaps, bonding, surface treatment, viewing distance, shading, dimming range, and thermal behavior all affect perceived contrast.

A sample should be tested behind the intended front window under representative morning, midday, and angled-light conditions. Higher luminance should be treated as a separately defined configuration rather than assumed from a broader product family.

Preserve Contrast Through the Front Stack

The 2000:1 typical panel contrast is valuable only when reflections and stray light are controlled. A clear protective window can reduce apparent contrast if its surfaces produce glare. Front-window material, coating, bonding, spacing, printed border, and enclosure angle should therefore be reviewed together with luminance rather than as independent choices.

LVDS Integration for the Fuel Dispenser LCD Module

A 20-Pin Connector Is Not a Compatibility Guarantee

The module uses a 20-pin LVDS connection, but pin count and connector shape do not establish electrical compatibility. The host must match native timing, channel and bit mapping, logic levels, connector orientation, cable construction, grounding, and control signals. A visually matching cable can still cause no image, incorrect colors, unstable video, or electrical damage when the assignment differs.

Define Panel and WLED Power Separately

The exact input voltage, backlight voltage and current, enable signal, dimming method, and power sequence are not established in the product table. These values must be taken from the approved electrical specification. The LVDS image path and the WLED backlight circuit should be qualified as separate integration items.

Mechanical Fit and Standard Configuration

Active Area Versus Module Envelope

The active image area measures 304.128 × 228.096 mm, while the complete module outline is 326.5 × 253.5 mm with a maximum thickness of 9.6 mm. The active area controls image-window alignment; the larger outline controls enclosure clearance. Final mechanical approval also needs connector projection, cable bend, mounting datums, tolerances, keep-out zones, and service access.

Standard Non-Touch Build

The standard configuration is non-touch. A project requiring capacitive or resistive touch needs a separate assembly review covering cover-lens dimensions, bonding method, finished thickness, optical transmission, touch-controller interface, cable routing, grounding, and environmental sealing. Touch must not be assumed from the intended application.

Temperature and Outdoor Equipment Boundaries

The panel is specified for operation from −20°C to +70°C and storage from −30°C to +70°C. These component limits support wide-temperature equipment design, but they do not establish an IP rating, condensation resistance, UV stability, vibration performance, impact resistance, hazardous-area approval, or finished-system weatherproofing.

Fueling equipment and other outdoor terminals require a separately engineered enclosure, front window, thermal path, drainage strategy, and compliance review. Validation should include cold start, high-temperature luminance, extended backlight operation, and cable behavior in the final assembly.

Recommended Applications

This Fuel Dispenser LCD Module can be evaluated for fuel-pump transaction screens, gas-station service terminals, charging-equipment interfaces, industrial control panels, production-monitoring stations, outdoor information terminals, and machinery status displays. The 4:3 XGA format is particularly useful where existing software and enclosure layouts are based on established industrial screen proportions.

The module is not a finished monitor. HDMI, DisplayPort, eDP, MIPI DSI, VGA, or USB video requires a suitable controller or conversion path, and any external ports belong to that separate electronics configuration.

Customization and Sample Qualification

A modified Fuel Dispenser LCD Module project may include brightness review, touch integration, cover-lens design, bonding, interface adaptation, cable changes, controller-board matching, or enclosure-specific mechanics. 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.

The qualification sample should use the intended host, LVDS cable, power architecture, front window, enclosure, operating software, and target ambient-light conditions. Approval should include image stability, dimming behavior, optical readability, temperature operation, mechanical fit, and any touch functions included in the ordered build.

Procurement Checklist

  • Confirm the assigned model and approved product revision.
  • Submit native 1024 × 768 timing and the complete 20-pin LVDS assignment.
  • Confirm LVDS channel and bit mapping, logic levels, connector orientation, and cable design.
  • Obtain panel and WLED voltage, current, enable, dimming, and power-sequence requirements.
  • Approve the 304.128 × 228.096 mm active area and 326.5 × 253.5 × 9.6 mm maximum envelope.
  • Define front-window transmission, reflection, bonding, shading, and luminance targets.
  • Confirm standard non-touch status or specify a separate touch assembly.
  • Define operating, storage, sealing, humidity, vibration, impact, and compliance requirements.
  • Provide sample quantity, annual demand, project schedule, and acceptance criteria.
Application Scenarios

FAQ

About 15 Inch Fuel Dispenser LCD Module Outdoor Industrial

What must be checked before connecting an existing 20-pin LVDS controller?

Confirm native 1024 × 768 timing, LVDS channel and bit mapping, logic levels, complete pin assignment, connector orientation, and cable construction. The same 20-pin count and XGA resolution do not prove compatibility. Submit the host specification and cable drawing before PCB or harness release.

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

The 1000 cd/m² panel is a strong starting point, but installed readability depends on window transmission, reflections, bonding, shading, viewing angle, and thermal conditions. Test the complete 304.128 × 228.096 mm image area behind the intended window under representative forecourt lighting before fixing the optical specification.

Which dimensions should control the enclosure design?

Use the 326.5 × 253.5 × 9.6 mm maximum outline for module clearance and the 304.128 × 228.096 mm active area for image-window alignment. The approved drawing must also define tolerances, connector location, LVDS cable bend, mounting datums, and keep-out areas.

Can touch be added to the standard module?

Touch requires a separately defined assembly. The standard module is non-touch, and adding a touch layer changes overall thickness, optical transmission, cover dimensions, controller requirements, grounding, and cable routing. Submit the touch technology, interface, cover drawing, bonding method, and operating conditions for review.

Does the temperature range prove the module is weatherproof?

The −20°C to +70°C operating range does not establish weatherproofing. No IP rating, humidity limit, condensation specification, impact grade, or hazardous-area approval is confirmed for the standard module. Outdoor fueling equipment needs a separately qualified enclosure and system-level environmental validation.

Need a custom solution or samples?

Request a Sample and Technical Review Submit: LVDS timing and pinout, connector and cable details, panel and backlight power requirements, enclosure drawing, front-window design, touch requirement, environmental targets, sample quantity, and annual demand. Engineering review covers: 20-pin LVDS compatibility, WLED driving, optical performance, IPS viewing geometry, enclosure fit, temperature limits, and customization for the Fuel Dispenser LCD Module.
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