55 Inch Ultra Brightness Video Wall LCD Panel for Control Rooms

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Key Specs

Model P/N

HS550DPY-SHP2

Size

55″

Resolution

1920×1080

Brightness

2500 (Typ.)(cd/m²)

Viewing Angle

89°/89°/89°/89° typical at CR ≥10

Connector Type

LVDS (2ch, 8-bit), 51-pin / eDP

Operating Temp

-20 ~
70 °C

Overall(mm)

1270(W)×
730(H)×
37(D)
Upgrade Options (OEM/ODM)

huisoar

HS550DPY-SHP2

General Features

Brand

huisoar

Panel Size (inch)

55"

Model P/N

HS550DPY-SHP2

Resolution

1920×1080

Brightness (nits)

2500 cd/m² (Typ.)

Viewing Angle

89°/89°/89°/89° typical at CR ≥10

Contrast Ratio

5000:1 typical

Response Time

9.5 ms typical, G-to-G

Overall (mm)

1270(W)×
730(H) ×
37(D) mm

Active Area (mm)

1209.6 × 680.4 mm

Refresh Rate

60Hz

Bezel Opening

1210.6 × 681.4 mm

Display Colors

16.7M colors, 74% NTSC

Panel Type

tft-lcd, lcm

Connector Type

LVDS (2ch, 8-bit), 51-pin / eDP

Surface Treatment

Anti-glare, haze 25%

Operating Temp

-20 ~
70 °C

Touchscreen Type

Optional (Capacitive/Resistive)

Storage Temp

−30°C to +80°C

Work Mode

MVA, Normally Black, Transmissive

Pixel Format

RGB Vertical Stripe

Input Voltage (V)

12.0 V typical

Weight (g)

18000 g(Typ./Max.)

Designed For

Video Wall / Splicing Display

55 Inch Ultra Brightness Video Wall LCD Panel for Control Rooms

A 55-inch FHD sunlight-readable panel with dual-channel 51-pin LVDS, anti-glare haze 25%, and a 3.9 mm active-to-active seam for modular video walls.

Product Summary

The Ultra Brightness Video Wall LCD Panel is a 55-inch a-Si TFT-LCD component designed for video-wall and splicing-display integration. It combines 1920 × 1080 FHD resolution, a 1209.6 × 680.4 mm active area, Super MVA normally-black transmissive operation, 16.7M colors, and a 500–5000 nits configurable luminance range. For buyers searching for an ultra brightness sunlight readable LCD panel, the key engineering value is the combination of high-ambient-light capability, 3.9 mm active-to-active splicing geometry, 51-pin LVDS, and −20°C to +70°C operation.

Key Specifications at a Glance

SpecificationConfirmed Value
Screen size55 inches
Resolution1920 × 1080 pixels, FHD, 40 PPI
Active area1209.6 × 680.4 mm
Viewing area1210.6 × 681.4 mm
Pixel arrangementRGB vertical stripe
Surface treatmentAnti-glare, haze 25%
Luminance500–5000 nits configurable range
Contrast ratio5000:1 typical
Viewing angle89°/89°/89°/89° typical at CR ≥10; direction order not specified
Display modeSuper MVA, normally black, transmissive
Color16.7M colors, 74% NTSC
Response time9.5 ms typical, G-to-G
Standard refresh60 Hz
BacklightWLED with LED driver; listed up to 50,000 hours
InterfaceLVDS, 2-channel, 8-bit, 51-pin terminal
Panel input12.0 V typical
TouchNo touch
Splicing gap3.9 mm active-to-active
Operating temperature−20°C to +70°C
Storage temperature−30°C to +80°C

Optical and Splicing Performance for Large Video Walls

Lock the Ordered Luminance Before Qualification

The product family is specified across a 500–5000 nits configurable luminance range, so the ordered brightness grade must be locked before optical acceptance testing. A control-room installation, a bright lobby, and a window-adjacent information wall can require very different luminance targets even when the same 55-inch FHD panel architecture is used.

High luminance alone does not determine final sunlight readability. The panel already has an anti-glare surface with 25% haze, but any added cover glass, air gap, optical bonding, enclosure opening, or site reflection can change effective contrast. Validate the completed optical stack under the actual ambient-light condition rather than approving only the panel-level nit value.

3.9 mm Active-to-Active Seam for Splicing Layouts

The 3.9 mm active-to-active seam is a project-critical dimension for multi-panel wall planning. It determines the visible interruption between adjacent image areas and should be included in bezel compensation, content layout, mounting tolerance, and service-replacement planning.

The 1209.6 × 680.4 mm active area and 1210.6 × 681.4 mm viewing area are different measurements. Use the correct dimension for image mapping and mechanical opening decisions instead of treating them as interchangeable.

Integrating the Ultra Brightness Video Wall LCD Panel

51-Pin Dual-Channel LVDS Host Qualification

The signal interface is 51-pin LVDS with two channels and confirmed 8-bit transmission. This gives controller-board teams a defined starting point, but a connector count does not establish interchangeability.

A 51-pin LVDS match does not guarantee timing, pin assignment, mapping, connector orientation, or power compatibility. Before releasing a controller, verify the complete pinout, FHD timing, LVDS mapping, cable construction, connector orientation, and the 12.0 V typical panel input against the approved production revision.

Standard 60 Hz and Configuration-Dependent Motion Modes

The standard frequency is 60 Hz. The technical configuration also references 120 Hz with 60 Hz input using built-in MEMC, a 120 Hz panel plus 120 Hz backlight route, and 240 Hz with 60 Hz input using MEMC.

The 120 Hz and 240 Hz entries should not be interpreted as universal native refresh rates for every supplied configuration. If motion processing is required, specify the exact panel and backlight mode, controller path, input frequency, and acceptance test before ordering.

Mechanical and Environmental Integration

Panel-Level Component Boundaries

This product is an LCD panel/LCM rather than a finished signage monitor. Overall enclosure dimensions, finished-system mounting, cabinet material, protective glass, environmental sealing, media player, and system power are therefore project-level decisions rather than standard panel specifications.

The no-touch configuration also matters for system architecture. If touch is required, the sensor, controller, cover lens, optical stack, cable path, and mechanical tolerances need separate qualification.

Wide-Temperature Operation

The confirmed operating range is −20°C to +70°C, with storage from −30°C to +80°C. These values support integration planning for installations with higher thermal variation than a conventional office environment.

A wide operating-temperature range does not establish an IP rating or exposed-weather suitability. Outdoor cabinets still require project-specific sealing, drainage, corrosion, condensation, solar-load, and thermal-management validation.

Recommended Video Wall Applications

The Ultra Brightness Video Wall LCD Panel is relevant to control-room video walls, command centers, security monitoring walls, retail and digital-signage walls, broadcast studios, transportation information displays, corporate lobbies, and exhibition halls where the FHD format and 3.9 mm splicing geometry fit the system design.

For high-ambient-light projects, the ordered luminance should be selected together with the front optical stack and thermal design. For mission-critical video walls, spare-panel strategy, color matching, seam alignment, controller mapping, and service access should also be included in system qualification.

Procurement Checklist

Before releasing an Ultra Brightness Video Wall LCD Panel order, confirm the exact luminance grade within the 500–5000 nits range, 1920 × 1080 timing, 51-pin LVDS pinout and mapping, 12.0 V panel input, 3.9 mm active-to-active seam, active and viewing-area dimensions, 60 Hz standard mode, any requested MEMC/120 Hz/240 Hz configuration, no-touch status, −20°C to +70°C operating range, front optical stack, enclosure conditions, sample quantity, and annual demand.

Application Scenarios

FAQ

About 55 Inch Ultra Brightness Video Wall LCD Panel

What must be checked before connecting a 51-pin LVDS controller?

Confirm more than the connector count. The panel uses two-channel, 8-bit LVDS and a 12.0 V typical panel input, but the complete pin assignment, timing, mapping, connector orientation, and cable construction must still match the controller. Submit the controller timing and pinout with the intended cable drawing so engineering can compare them against the approved panel revision.

How should the brightness grade be specified when the family spans 500–5000 nits?

Treat luminance as an ordered configuration rather than assuming every unit ships at the same level. Define the target ambient-light condition, cover-glass or bonding stack, thermal constraints, and required panel luminance before sampling. The same 55-inch architecture can be configured across the stated range, so the purchase specification should lock one brightness target and acceptance tolerance.

How does the 3.9 mm splicing gap affect a video wall design?

The 3.9 mm value is active-to-active, so it directly affects the visual break between adjacent image areas. Include it in pixel mapping, bezel compensation, mounting tolerance, and replacement-panel alignment. The active area is 1209.6 × 680.4 mm, while the viewing area is 1210.6 × 681.4 mm, so mechanical and image calculations should use the correct dimension for each task.

Do the 120 Hz and 240 Hz options mean the standard panel is natively 240 Hz?

No. The standard frequency is 60 Hz. The higher-frequency entries are tied to specific MEMC or panel-plus-backlight configurations, including 120 Hz with 60 Hz input and 240 Hz with 60 Hz input. If high-motion performance is a requirement, specify the exact configuration and verify it during sample qualification rather than treating 240 Hz as the default native rate.

What should be validated before using the panel in a sunlight-facing enclosure?

Validate the completed optical and thermal system. The panel offers anti-glare haze 25%, a configurable high-luminance range, and −20°C to +70°C operation, but cover glass, bonding, reflections, cabinet temperature, sealing, and solar loading all affect finished performance. Test the real front stack and enclosure under the intended viewing and environmental conditions before approving the equipment.

Need a custom solution or samples?

Request Engineering Review For an Ultra Brightness Video Wall LCD Panel project, submit the required luminance grade, video-wall layout, controller timing and LVDS pinout, cable drawing, optical stack, enclosure concept, operating environment, motion-mode requirement, sample quantity, and annual demand. Engineering review should cover luminance selection, 51-pin LVDS compatibility, 12.0 V panel power, 3.9 mm seam planning, active-area alignment, standard versus MEMC refresh behavior, optical-stack visibility, temperature limits, and any separate touch or enclosure configuration.
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