15 Inch UXGA Equipment LCD Panel 1000nits Module for Outdoor Control

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Key Specs

Model P/N

HS150LCD210

Size

15″

Resolution

1600×1200

Brightness

1000 (Typ.)(cd/m²)

Viewing Angle

80°/80°/80°/80°

Connector Type

Dual-channel 6-bit LVDS /30 pins

Operating Temp

-30 ~
70 °C

Overall(mm)

318.7(W)×
242.65(H)×
6.5(D)
Upgrade Options (OEM/ODM)

huisoar

HS150LCD210

General Features

Brand

huisoar

Panel Size (inch)

15"

Model P/N

HS150LCD210

Resolution

1600×1200

Brightness (nits)

1000 cd/m² (Typ.)

Viewing Angle

80°/80°/80°/80°

Contrast Ratio

Not Specified(Industry Standard for Industrial OLED: ≥1000:1)

Response Time

20 ms typical

Overall (mm)

318.7(W)×
242.65(H) ×
6.5(D) mm

Active Area (mm)

304.8 × 228.6 mm

Refresh Rate

60Hz

Bezel Opening

307.8 × 231.1 mm

Display Colors

262K colors /50% NTSC

Panel Type

oled

Connector Type

Dual-channel 6-bit LVDS /30 pins

Surface Treatment

Anti-glare

Operating Temp

-30 ~
70 °C

Touchscreen Type

Non-touch

Storage Temp

−40°C to +80°C

Work Mode

Normally white

Pixel Format

1600 × RGB × 1200

Input Voltage (V)

3.3 V typical

Control Type

Compatible dual-channel LVDS controller

Weight (g)

620 g(Typ./Max.)

Designed For

Industrial computers, outdoor control equipment, industrial automation systems, marine systems, and medical devices.

15 Inch UXGA Equipment LCD Panel for Outdoor Control Systems

This 4:3 TN panel combines native 1600 × 1200 graphics, 1000 cd/m² typical luminance and dual-channel LVDS integration for industrial equipment.

Product Summary

The UXGA Equipment LCD Panel is a 15-inch TFT-LCD component for control systems that require a high-resolution 4:3 display area, stable LVDS connectivity and additional luminance for bright operating environments.

Its native 1600 × 1200 pixel canvas supports machine data, process diagrams, inspection images, control menus and legacy industrial software without converting the interface to a widescreen layout. The panel is relevant to industrial computers, automation workstations, test systems and sheltered outdoor-control equipment.

The standard configuration is non-touch. A controller board, LVDS cable, power system, cover glass, touch overlay and protective enclosure must be specified separately when required by the finished product.

Key Specifications

SpecificationValue
Display size15 inch
Native resolution1600 × 1200 pixels
Aspect ratio4:3
Active area304.8 × 228.6 mm
Module dimensions318.7 × 242.65 × 6.5 mm
Display modeTN, normally white, transmissive
Luminance1000 cd/m² typical
Contrast ratio1000:1 typical
Viewing-angle data80°/80°/80°/80°
Display colors262K colors
InterfaceDual-channel 6-bit LVDS
Connection30 pins
Panel supply3.3 V typical
BacklightWLED with LED driver
Listed total consumption17 W
Touch statusNon-touch
Operating temperature−30°C to +70°C
Storage temperature−40°C to +80°C

1600 × 1200 UXGA Interface Planning

Native 4:3 Equipment Layouts

The 1600 × 1200 canvas provides a large 4:3 workspace for products that must preserve established industrial layouts or display dense technical data.

Typical interface zones can include:

  • Process graphics
  • Equipment status
  • Alarm histories
  • Measurement values
  • Inspection images
  • Control menus
  • Trend charts
  • Service information
  • System diagnostics
  • Operator instructions

Preparing content at the native UXGA resolution helps maintain text clarity and graphic alignment without unnecessary scaling.

Legacy and Data-Dense User Interfaces

Many industrial programs and specialist control applications were designed around 4:3 displays. A native 1600 × 1200 panel can preserve those layouts while providing more information density than XGA or SXGA alternatives.

Interface validation should consider:

  • Host output timing
  • Font scaling
  • Line and symbol thickness
  • Operator viewing distance
  • Installation height
  • Alert priority
  • Day and night themes
  • Legacy software behavior
  • Display orientation
  • Non-touch input controls

1000 cd/m² Optical Performance

Bright-Ambient Display Headroom

The panel provides 1000 cd/m² typical luminance and an anti-glare surface.

This configuration gives control-system designers more luminance headroom than a conventional office panel for bright factories, machinery cabins, sheltered kiosks and equipment installed near windows.

The luminance value describes the panel under its specified conditions. It does not by itself qualify a finished product for every direct-sun environment.

Finished-System Readability Validation

Completed-system visibility depends on:

  • Protective-glass transmission
  • Surface reflection
  • Air gap or optical bonding
  • Anti-reflective treatment
  • Installation angle
  • Equipment hood or shade
  • Ambient-light direction
  • Backlight temperature
  • UI contrast
  • Internal thermal conditions

A 1000 cd/m² panel still requires cover-glass, reflection and thermal testing before direct-sun readability is approved.

UXGA Equipment LCD Panel Integration

The UXGA Equipment LCD Panel uses dual-channel 6-bit LVDS through a 30-pin connector.

Dual-Channel LVDS Qualification

Before selecting a controller board or cable, confirm:

  • Native 1600 × 1200 timing
  • Pixel clock
  • Refresh rate
  • Dual-channel mapping
  • Six-bit data format
  • Complete 30-pin assignment
  • Panel supply
  • Enable and control signals
  • Connector pitch
  • Contact orientation
  • Cable direction
  • Grounding
  • Shielding
  • Backlight controls

A 30-pin LVDS connector does not guarantee channel mapping, bit depth, voltage or timing compatibility with another panel.

30-Pin Host and Cable Review

The panel cannot be assumed to connect directly to HDMI, DisplayPort, USB, eDP, MIPI or an arbitrary LVDS board.

A controller or host review should establish:

  • UXGA output support
  • LVDS channel count
  • LVDS bit depth
  • Panel voltage
  • Timing compatibility
  • Cable length
  • Pin mapping
  • Backlight control
  • Available system power
  • Startup behavior

A compatible controller board may convert HDMI, DisplayPort or another host output into the panel’s required LVDS format, but the board must be selected against the approved timing and pinout.

TN Viewing and Installation Design

The panel uses a TN, normally-white, transmissive configuration.

The listed viewing angles are 80°/80°/80°/80°, but installation should still be evaluated from the actual operator positions. TN image behavior can vary with vertical viewing direction, content colors and installation angle.

TN normally-white operation requires installation-angle and viewing-direction validation in the finished equipment.

Design review should include:

  • Primary viewing position
  • Operator height
  • Panel tilt
  • Portrait or landscape mounting
  • Dark-state appearance
  • Alarm-color visibility
  • Gray-scale inversion
  • Cover-glass reflections
  • Multi-user viewing positions

Mechanical, Power and Thermal Planning

The active display area is 304.8 × 228.6 mm. The complete panel measures 318.7 × 242.65 × 6.5 mm.

Mechanical planning should cover:

  • Front opening
  • Bezel overlap
  • Active-area centering
  • Rear circuit-board clearance
  • Connector access
  • Cable bend radius
  • Mounting-hole positions
  • Panel flatness
  • Housing stiffness
  • Grounding points
  • Thermal clearance
  • Service access

The panel supply is listed at 3.3 V typical, while total consumption is listed as 17 W. The system design must distinguish between panel logic power, backlight power and controller-board power before selecting the power supply.

The component operating range is −30°C to +70°C, with storage from −40°C to +80°C. These ranges do not automatically qualify the controller board, cable, adhesives, cover glass, enclosure or completed equipment.

Application Scenarios

Industrial Computers

The 4:3 UXGA format can support industrial PCs that run data-dense control, imaging or diagnostic software.

Outdoor Control Systems

The high-luminance panel can be evaluated for sheltered control equipment and outdoor-adjacent installations after optical, enclosure and thermal validation.

Automation Workstations

Machine interfaces can display process graphics, alarms, trends and equipment controls on one high-resolution canvas.

Test and Measurement Equipment

Test systems can use the panel for waveforms, tables, images, settings and detailed measurement results.

Machine-Inspection Systems

The 1600 × 1200 resolution supports inspection images and control data where the system requires a 4:3 display format.

Medical-Equipment Integration

The panel may be evaluated as a visual component for medical equipment. This application direction does not establish medical certification or diagnostic-display performance.

Customization Boundaries

Project review can include:

  • LVDS controller-board matching
  • LVDS cable design
  • Connector and pinout adaptation
  • Touch-overlay development
  • Cover-glass geometry
  • Anti-reflective treatment
  • Optical bonding
  • Brightness calibration
  • Mounting structures
  • Enclosure adaptation
  • Branding
  • Packaging
  • Sample validation

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

Procurement Checklist

Submit:

  • Approved model-specific datasheet
  • Approved mechanical drawing
  • Native 1600 × 1200 timing
  • Required refresh rate
  • Dual-channel LVDS mapping
  • Six-bit data definition
  • Complete 30-pin pinout
  • Panel input voltage
  • Backlight voltage and current
  • Backlight enable and dimming definitions
  • Controller-board model
  • Connector pitch and contact side
  • Cable length and direction
  • Enclosure drawing
  • Front opening
  • Mounting method
  • Cover-glass stack
  • Optical-bonding requirement
  • Target finished luminance
  • Ambient-light conditions
  • Installation viewing position
  • Operating-temperature target
  • Touch requirement
  • Sample quantity
  • Annual demand
  • Production schedule
Application Scenarios

FAQ

About 15 Inch UXGA Equipment LCD Panel

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

Confirm the native 1600 × 1200 timing, dual-channel mapping, six-bit data format, complete pinout, 3.3 V panel supply and backlight controls. A matching connector count does not establish controller compatibility.

How should UXGA interface content be prepared?

Design the interface at the native 1600 × 1200 resolution and verify fonts, line weights, images and control spacing on the physical 15-inch panel. Legacy XGA or SXGA content may require scaling or layout adjustment.

Does 1000 cd/m² guarantee direct-sun readability?

No. The finished result also depends on protective-glass transmission, surface reflection, optical bonding, installation angle, ambient-light direction and internal temperature. Test the complete assembly under representative lighting.

How does TN normally-white mode affect equipment installation?

The display should be checked from the intended operator positions and mounting angle. Gray-scale and dark-state appearance can vary with viewing direction, so the final enclosure orientation must be validated with real interface content.

Which information is required before enclosure and power release?

Use the 304.8 × 228.6 mm active area and 318.7 × 242.65 × 6.5 mm outline for mechanical planning. Confirm the approved mounting drawing, 3.3 V panel supply, backlight requirements and the scope of the listed 17 W consumption before releasing tooling or the power design.

Need a custom solution or samples?

Submit the Project for Engineering Review Information to Submit For the UXGA Equipment LCD Panel, submit the approved timing and pinout, dual-channel LVDS mapping, panel and backlight electrical requirements, controller-board details, enclosure drawing, cover-glass stack, viewing position, lighting conditions, sample quantity and annual demand. Engineering Review Outcome Engineering review covers LVDS compatibility, controller and cable matching, mechanical fit, TN viewing direction, optical performance, power architecture, thermal limits, touch-overlay feasibility and sample configuration.

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