6.2 Inch Slim In-Cell Smart Equipment Touchscreen Module

Product Gallery
Key Specs

Model P/N

HS620011B0

Size

6.2″

Resolution

480×1280

Brightness

1200 (Typ.)(cd/m²)

Viewing Angle

80/80/80/80, L/R/U/D

Connector Type

LVDS 40-pin CPU/RGB

Operating Temp

-20 ~
70 °C

Overall(mm)

54.84(W)×
147.05(H)×
2.23(D)
Upgrade Options (OEM/ODM)

huisoar

HS620011B0

General Features

Brand

huisoar

Panel Size (inch)

6.2"

Model P/N

HS620011B0

Resolution

480×1280

Brightness (nits)

1200 cd/m² (Typ.)

Viewing Angle

80/80/80/80, L/R/U/D

Contrast Ratio

1200:1 (Typ.)

Response Time

12ms

Overall (mm)

54.84(W)×
147.05(H) ×
2.23(D) mm

Active Area (mm)

54.43 (W) × 146.65 (H) mm

Refresh Rate

60Hz

Display Colors

16.7M colors

Panel Type

tft-lcd, lcm

Connector Type

LVDS 40-pin CPU/RGB

Operating Temp

-20 ~
70 °C

Touchscreen Type

In-Cell Touch

Storage Temp

-30 ~ 80 °C

Work Mode

Normally black

Control Type

Native CPU/RGB display host with separately qualified touch control

Operating Environment

Indoor, controlled-light and application-qualified equipment installations g(Typ./Max.)

Motherboard Type

CPU/RGB-capable embedded controller g(Typ./Max.)

Designed For

Industrial equipment, outdoor high brightness projects, cut-to-shape bar displays, home appliances, entertainment devices, medical equipment, medical instruments, range hoods, ovens and smart speakers

6.2 Inch Slim In-Cell Smart Equipment Touchscreen Module

The Slim In-Cell Smart Equipment Touchscreen Module combines a 480 × 1280 IPS screen, 1200 cd/m² luminance and an ultra-thin 2.23 mm structure for portrait control interfaces.

Product Summary

The Slim In-Cell Smart Equipment Touchscreen Module provides a narrow interactive display area for equipment menus, operating status, settings and alerts. Its portrait geometry supports products that have limited installation width but still require a detailed graphical interface and direct touch input.

The 6.2-inch display has a 54.43 × 146.65 mm active area within a 54.84 × 147.05 × 2.23 mm outline. It combines IPS viewing, 1200 cd/m² typical luminance, a 1200:1 typical contrast ratio, In-Cell touch and a 40-pin CPU/RGB display connection.

Key Specifications

ParameterValue
Display size6.2 inch
Resolution480 × 1280 pixels
FormatPortrait bar, approximately 3:8
Panel typeIPS a-Si TFT-LCD
Touch constructionIn-Cell touch
Optical structureTransmissive
Luminance1200 cd/m² typical
Contrast ratio1200:1 typical
Viewing angle80/80/80/80, L/R/U/D
Display colors16.7M
Interface40-pin CPU/RGB
Active area54.43 × 146.65 mm
Overall size54.84 × 147.05 × 2.23 mm
BacklightWLED
Operating temperature−20°C to +70°C
Storage temperature−30°C to +80°C

Native 480 × 1280 Portrait Interface Design

Vertical Menu and Touch Zones

The native raster supports information arranged in a top-to-bottom sequence. A portrait user interface can divide the screen into areas for:

  • operating mode
  • temperature or timing
  • equipment status
  • function selection
  • warning messages
  • process progress
  • media controls
  • maintenance prompts
  • confirmation buttons
  • navigation menus

The narrow format can fit into equipment doors, appliance fascias, side-control areas and compact instrument housings where a landscape display would consume excessive width.

Native-Raster Software Preparation

The interface should be created directly for the native 480 × 1280 raster.

Before software approval, verify:

  • portrait orientation
  • native RGB timing
  • font size
  • icon dimensions
  • touch-target spacing
  • menu hierarchy
  • alert placement
  • safe margins
  • language expansion
  • boot-screen layout

Rotating an existing landscape interface without redesign may result in inefficient spacing, small touch targets or inconsistent navigation.

High-Luminance IPS Optical Performance

1200 cd/m² Panel Luminance Boundary

The panel is specified at 1200 cd/m² typical luminance. This provides a strong optical starting point for equipment installed under bright indoor lighting or in higher-ambient-light locations.

A 1200 cd/m² panel does not by itself establish finished-system sunlight readability.

Final visibility depends on:

  • cover-lens transmission
  • surface reflectance
  • air-gap construction
  • optical bonding
  • viewing angle
  • installation position
  • direct illumination
  • enclosure shading
  • thermal conditions

Representative samples should be tested with the intended cover lens and enclosure.

Viewing Angle, Contrast and Color

The display provides 80/80/80/80 viewing angles in the left, right, upper and lower directions. This supports panels viewed while standing, operating from the side or approaching from different positions.

The 1200:1 typical contrast ratio supports separation between backgrounds, menu text, food images, operating values and alert graphics. The 16.7M-color capability supports graphical interfaces, but it does not establish calibrated color accuracy or a particular color gamut.

40-Pin CPU/RGB Host Integration

Bus Width, Timing and Pinout Qualification

A 40-pin CPU/RGB connector does not guarantee bus-width, timing, voltage or pin compatibility with another panel.

Before designing the host board or FPC, confirm:

  • CPU or RGB operating route
  • RGB bus width
  • pixel format
  • pixel-clock frequency
  • horizontal timing
  • vertical timing
  • sync polarities
  • data-enable behavior
  • complete 40-pin assignment
  • connector pitch
  • contact side
  • FPC orientation
  • panel logic voltage
  • backlight voltage and current
  • backlight enable and dimming

Another 6.2-inch 480 × 1280 panel may use MIPI or a different RGB definition, so size and resolution alone do not establish interchangeability.

Non-RGB Hosts Require Conversion

A native HDMI, USB, LVDS, eDP or MIPI DSI source cannot be assumed to connect directly to this CPU/RGB panel.

A suitable controller or bridge must provide:

  • the required parallel display signals
  • correct native timing
  • voltage-compatible I/O
  • panel power
  • backlight control
  • the required touch-control path

Controller qualification should take place before PCB release.

In-Cell Touch Integration Requirements

Touch Protocol and Controller Confirmation

In-Cell touch is confirmed, but the touch communication protocol and controller reference are not established.

Before firmware or PCB work, confirm:

  • touch communication interface
  • touch-controller identity
  • touch voltage
  • interrupt and reset signals
  • connector sharing or separation
  • touch-point count
  • coordinate orientation
  • firmware version
  • noise requirements
  • wake and sleep behavior

The display’s 40-pin CPU/RGB connection does not prove that all touch signals share the same connector.

Touch Firmware and Cover-Lens Validation

Touch performance should be qualified with the intended front stack.

Review:

  • cover-lens material
  • lens thickness
  • printed border
  • bonding method
  • air gap
  • grounding
  • charger and motor noise
  • wet-finger behavior
  • glove requirements
  • edge sensitivity
  • coordinate mapping

An In-Cell structure can reduce the need for a separate external touch sensor layer, but the final stack and firmware still require project-specific validation.

Slim In-Cell Smart Equipment Touchscreen Module Mechanics

Active Area and Front Opening

The active image area measures 54.43 × 146.65 mm. This value should guide:

  • visible front opening
  • cover-lens window
  • printed black mask
  • panel alignment
  • interface-safe margins
  • touch-target placement
  • alert visibility

Critical controls should remain inside the approved visible and touchable area after bezel overlap and manufacturing tolerances are applied.

Ultra-Thin Outline and FPC Clearance

The complete module measures 54.84 × 147.05 × 2.23 mm.

Mechanical review should include:

  • module outline
  • active-area position
  • FPC exit
  • connector position
  • cable bend radius
  • rear clearance
  • mounting pressure
  • cover-lens overlap
  • adhesive thickness
  • enclosure tolerances
  • service access

The 2.23 mm thickness supports slim product structures, but it does not include unspecified housing, controller-board or external cover-lens thickness.

Application Integration

Industrial Equipment Displays

The portrait touchscreen can present machine status, operating modes, alarms, setpoints and maintenance prompts in industrial equipment. The host and touch system must be qualified for the final electrical-noise, grounding and operating environment.

Medical Instrument Displays

The module can be evaluated as a user-interface component for medical instruments that require a narrow touchscreen area. Product-level medical certification, risk management, electrical safety, cleaning resistance and regulatory compliance remain responsibilities of the finished-equipment program.

Range Hood and Oven Displays

The narrow format supports range hood and oven interfaces with vertically arranged fan settings, temperatures, timers, cooking modes and maintenance alerts. Final qualification should account for heat, steam, grease, cleaning agents and front-glass construction.

Smart Speaker Displays

Smart speakers can use the portrait touchscreen for media status, volume, connectivity, voice-assistant feedback, timers and menu controls. Acoustic vibration, enclosure grounding and touch-noise behavior should be assessed in the complete assembly.

Temperature Qualification

The display is specified for operation from −20°C to +70°C and storage from −30°C to +80°C.

These limits support evaluation across the stated application fields, but they do not independently establish compliance with a particular industrial, appliance or medical standard.

System tests should include:

  • cold startup
  • high-temperature image behavior
  • touch response across temperature
  • backlight output
  • controller temperature
  • enclosure heat
  • condensation
  • repeated thermal cycling
  • electrical-noise immunity
  • cleaning exposure where relevant

Testing should use the final host, touch firmware, cover lens and enclosure.

Custom Integration Options

Project review may include:

  • CPU/RGB host matching
  • custom 40-pin FPC
  • native timing verification
  • touch-controller and protocol qualification
  • touch firmware
  • cover-lens sizing
  • anti-glare or anti-reflection treatment
  • optical bonding
  • enclosure adaptation
  • FPC routing
  • branding
  • packaging and labeling

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.

Customization for the Slim In-Cell Smart Equipment Touchscreen Module should begin only after the complete display, touch and mechanical documents are approved.

Procurement Checklist

Before requesting samples or approving production, submit or confirm:

  • native 480 × 1280 timing
  • CPU/RGB operating route
  • RGB bus width and pixel format
  • pixel-clock and sync requirements
  • complete 40-pin assignment
  • panel logic voltage
  • backlight voltage and current
  • backlight enable and dimming
  • touch protocol and controller
  • touch firmware and point count
  • touch reset and interrupt signals
  • connector pitch
  • contact side and FPC orientation
  • 54.84 × 147.05 × 2.23 mm enclosure fit
  • 54.43 × 146.65 mm active-area position
  • cover-lens construction
  • 1200 cd/m² lighting target
  • operating-temperature requirements
  • intended application field
  • sample quantity
  • annual demand
  • production schedule

Sample approval should precede controller release, FPC manufacture, cover-lens tooling and enclosure production.

Application Scenarios

FAQ

About Slim In-Cell Smart Equipment Touchscreen Module

What must be checked before connecting a 40-pin CPU/RGB host?

The host must match more than the connector count. Confirm the CPU/RGB operating route, bus width, pixel format, clock, sync timing, voltage and complete 40-pin assignment. The module’s 480 × 1280 raster and 40-pin connector do not make it interchangeable with another RGB or MIPI panel.

How should the portrait UI and touch targets be prepared?

The interface should be designed directly for 480 × 1280 pixels. Arrange controls vertically and validate touch-target dimensions within the 54.43 × 146.65 mm active area. Text, alerts and buttons should also be checked with the final bezel and cover-lens opening.

Does 1200 cd/m² guarantee sunlight readability?

No. The panel luminance is 1200 cd/m² typical, but finished visibility depends on cover-lens transmission, reflection, bonding, viewing angle, shading and thermal conditions. Evaluate a representative assembly under the actual lighting expected for the equipment.

What must be confirmed for the In-Cell touch path?

Confirm the touch protocol, controller, supply voltage, interrupt, reset, point count, firmware and coordinate orientation. In-Cell touch is confirmed, but the available information does not define whether the touch signals share the 40-pin connector or use a separate electrical path.

What does the JD9265T identifier establish?

It identifies a component reference associated with this display configuration. It does not independently define the RGB timing, touch protocol, initialization data, register settings or power sequence. Engineering release should use the approved model-specific documentation.

Need a custom solution or samples?

Submit Your Technical Requirements Information to submit: Provide the native display timing, CPU/RGB bus definition, complete 40-pin assignment, panel and backlight electrical requirements, touch protocol and controller data, touch firmware, enclosure and cover-lens drawings, intended application, sample quantity and annual demand. Engineering review outcome: The review covers RGB host compatibility, In-Cell touch integration, portrait UI mapping, optical performance, application qualification, mechanical fit and customization for the Slim In-Cell Smart Equipment Touchscreen Module.
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