10.1 inch 4 wire resistive touch screen
10.1 inch 4 wire resistive touch screen

10.1 inch 4 wire resistive touch screen

Price 1.0 USD ($)/ Piece

MOQ : 10 Pieces

10.1 inch 4 wire resistive touch screen Specification

  • Temperature
  • Operating: -10C to +60C; Storage: -20C to +70C
  • Tolerance
  • 0.2mm
  • Dimension (L*W*H)
  • 235.0mm x 143.0mm x 1.4mm (typical)
  • Thickness
  • 1.4 mm (typical)
  • Humidity
  • 10%~90% RH (non-condensing)
  • Service Period
  • Approximately 1,000,000 touches per point or more
  • Installation Guideline
  • Mount onto LCD with adhesive tape, connect 4-wire cable to controller
  • Application
  • Industrial Control, POS Terminals, Automotive Display, Medical Equipment
  • Process
  • Resistive Touch Sensing
  • Design
  • Flat Panel
  • Surface Treatment
  • Anti-glare/Anti-reflection (optional)
  • Standard
  • RoHS Compliant
  • Input Voltage
  • DC 5V (from controller)
  • Material
  • Glass + PET Film
  • Size
  • 10.1 inch
  • Supply Voltage
  • DC 5V (typical)
  • Color
  • Transparent with light haze
  • IP Rating
  • IP54 (front surface, optional cover glass to increase)
  • Technique
  • ITO Coating
  • Weight
  • Approx. 120g
  • Output Voltage
  • Analog signal
  • Product Type
  • 4 Wire Resistive Touch Screen
  • Usage
  • Human Machine Interface/Display Module
  • Processing
  • Laminated and Assembled
  • Finish
  • Smooth Surface
  • Equipment Type
  • Touch Panel
  • Mounting Type
  • Adhesive or Bracket Mount
  • Surface Hardness
  • 3H (pencil hardness)
  • Transmittance
  • 80%
  • Resolution
  • 4096 x 4096
  • Custom Size Availability
  • Yes, on request
  • Operating Life
  • 1,000,000 touches at a single point
  • Linearity
  • 1.5% (typical)
  • Compatibility
  • Suitable for LCD panel integration
  • Response Time
  • 8 ms
  • Storage Life
  • 5 years at room temperature
  • Connector Type
  • Flexible Flat Cable (FFC)
  • Sensitivity
  • High touch sensitivity with stylus or finger
  • Operating Pressure
  • 80g
  • Detection Method
  • Contact pressure (resistive)
  • Activation Force
  • 3060g
  • Environmental Standards
  • Compliant with RoHS/REACH
  • Interface
  • 4-wire analog
  • Light Transmission
  • 80%
 

10.1 inch 4 wire resistive touch screen Trade Information

  • Minimum Order Quantity
  • 10 Pieces
  • FOB Port
  • SHENZHEN
  • Payment Terms
  • Paypal, Letter of Credit at Sight (Sight L/C), Telegraphic Transfer (T/T)
  • Supply Ability
  • 10000 Pieces Per Month
  • Delivery Time
  • 25 Days
  • Sample Available
  • No
  • Sample Policy
  • Contact us for information regarding our sample policy
  • Packaging Details
  • PE foam tray packaging Carton Wooden
  • Main Export Market(s)
  • Asia, Australia, Western Europe, Middle East, Central America, North America, South America, Eastern Europe
  • Main Domestic Market
  • All India
  • Certifications
  • CE ROHS
 

About 10.1 inch 4 wire resistive touch screen

10.1 inch 4 wire resistive touch panel, accept customization

Intercom systems: Video door phone, video peephole viewer, phone etc.

Safety and Security: Monitors, touch PCs

Consumer Electrics: Advertising players, TVs, ATMs etc.

Telecommunication Devices: Telephone, Interphone, watch, radio, etc.

Home Appliances: Washing Machine, Refrigerator, Home Integrator ,digital photo frame

Industrial Control: Homoeostasis Numerically-controlled machine tool

Instrument and Apparatus: Tester, Medical instruments

Vehicle-mounted Digital: MP3, MP4 and vehicle-mounted air conditioner

Mining: Mine's lamp charger, gas tester

Marine: Salinity tester

Parameters:

Size available 1.4,1.8,2.0,2.4,2.8,3,3.2,3.5,3.8,4.3,4.5,4.8,5,5.6,6.5,7,7.5,8,8.4,10,10.1, 10.4,12.1,14,15,15.4,15.6,17,18.5,19,21.5,23.6 INCH
Performance
Resoslution 4096*4096
Linearity Error <2.5%
Response Speed <10ms
Mechanical
Input Method Finger or stylus
Life Span More than 10 million touches
Pressure 10-100g
Surface Hardness 3H
Optical
Light Transmission >78%
Structure
2 layers Film+ITO glass
3 layers PET+Film+ITO glass (cusomize)
4 layers PET+Film+ITO glass+PC/PMMA/GLASS (customize)
Environmental
Operating Temperature -10 50C
Storage Temperature -20 60C
Operating Humidity 0%90%
Storage Humidity 0% to 95%
Electrical
Voltage Typical 3-7V
Current 5mA25mA
Interface Full Duplex USB 2.0 (Full Speed) Plug and play compatible
Serial RS-232. Baud Rate: 9600, 8 Data Bits, 1 Stop Bit, No Parity
Isolation Resistance >20M
Resistance 300< X Axis <900, 200< Y Axis <800 (Varies with different size)
Agency Approvals CE, Rohs
Operation System Linux/ Dos / Windows /Mac/QNX
Standard controller EETI 5 wire/4 wire USB/RS232 controller kits(include board and calbes)
Special requirements High-Transmittance Glass,light touch, Strengthened Glass,optional

Available 4 wire resistive touch screen models:( if haven't found suitable one, please contact with us.)

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Sturcture

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ITO FILM

Classification by Surface Treatment

a. Glossy Anti-Scratch Surface Low haze, providing better visual clarity. More challenging manufacturing process. Lower durability against scratches.

b. Glossy Anti-Newton Ring Surface Includes an anti-Newton ring layer. Reduces manufacturing difficulty.

c. Matte Anti-Glare Surface Features an anti-glare layer. Optimized for outdoor use with improved visibility.

Classification by Sheet Resistance

a. Low Resistance Primarily used in digital resistive touchscreens. Lower loop resistance, resulting in higher sensitivity.

b. High Resistance Mainly used in analog resistive touchscreens. Lighter etching traces, offering better visual appearance.

Classification by ITO Film Substrate

a. Single-Layer Film Uses a single-layer PET substrate, lower cost.

b. Double-Layer Film Uses a dual-layer composite PET substrate, higher cost. Softer and more durable, used in high-end products.

ITO GLASS

Classification by Strength

a. Chemically Strengthened Glass Treated with chemical tempering to increase surface compressive stress. Enhances overall strength but at a higher cost.

b. Standard Glass Conventional glass without special strengthening treatment

Classification by Transmittance

a. High-Transmittance Glass (AR-Coated) Features anti-reflective (AR) coating, improving light transmission by 3% over standard glass.

b. Standard Glass No additional optical enhancement.

Classification by Thickness

Standard Thicknesses: 0.7mm / 1.1mm / 1.8mm

Special Thicknesses: 0.55mm / 2.8mm

Classification by Resistance

a. High Resistance (400) Used in analog resistive touchscreens.

b. Low Resistance Primarily for digital resistive touchscreens.

FPC

a. Core Materials of FPC: Base Material, Copper Foil, Stiffener, Coverlay

b. Common FPC Structures for Touchscreens

Touchscreens typically use either: Single-layer FPC/Double-layer FPC

c. FPC Material Specifications Base Material

Adhesive-based: Contains adhesive layer between copper and PI (polyimide).

Adhesive-less: Eliminates adhesive layer, consisting only of copper foil and PI (Thinner profile, Superior dimensional stability, Enhanced heat resistance, flex endurance, and chemical resistance, Now widely adopted in industry)

Copper Foil

Rolled Copper: Better flex endurance;Not suitable for ultra-thin boards or fine circuitry;Commonly used in resistive touch screens

Electrodeposited Copper: Preferred for capacitive touch screens

Stiffener Materials:

Type Characteristics Application
PI Low cost, prone to deformation Resistive touchscreens
FR4 Balanced cost/performance Mid-range applications
Steel High performance, expensive Capacitive touchscreens

PET COVER LENS

Thickness

Thickness Characteristics Application
0.125mm Lighter touch force, poorer flatness Niche applications requiring sensitive touch
0.188mm Balanced touch force and flatness Standard for RTP (Resistive Touch Panels)
0.25mm Higher touch force, excellent flatness Applications requiring durability

Surface treatment

Type Characteristics Key Parameters Usage
Glossy Anti-Scratch Scratch-resistant coating High transmittance Low haze Most common (indoor devices)
Matte Anti-Glare (AG) Diffuse surface treatment Reduced reflectivity Higher haze Outdoor/sunlight-readable products
Glossy Anti-Newton Ring Multi-layer optical construction Eliminates Newton Ring Limited use (3-layer" framed panels)

Carrier Plate

Material

Material Characteristics
PC (Polycarbonate) Impact-resistant, but lower surface hardness (max 2H), cost-effective
PMMA (Acrylic) Impact-resistant, higher surface hardness (up to 3H), prone to warping/shrinkage
PC/PMMA Composite Combines benefits of PC & PMMA, but higher cost
Glass High surface hardness (6H), minimal warping/shrinkage, moderate cost, but less impact-resistant than plastics

Thickness

Glass: 0.55mm / 0.7mm / 1.1mm / 1.8mm

PC/PMMA/Composite: 0.5mm / 0.65mm / 0.8mm / 1.0mm / 1.5mm

How to assemble the resistive touch screen to the housing?

To prevent false triggers, the housing must not directly contact the active touch area. Maintain an air gap of 0.20mm0.50mm between the housing and touchscreen surface. Recommendations for Customers: Step Design Add a peripheral step on the housing(Foam Tape) Width: Should not exceed TP silver trace boundaries Height: 0.20.5mm

When installing a resistive touch screen, it is recommended not to position the FPC downward. In outdoor environments with significant temperature differences, water vapor may condense on the touch screen surface. Additionally, external water, under the influence of gravity, may flow along the touch screen surface, seep through the casing, and reach the FPC bonding area. This can corrode the FPC bonding position and affect product reliability. If the touch screen is installed in this orientation, the waterproof performance of the entire device should be designed to a higher level.

Do resistive touchscreens require calibration?

A resistive touchscreen detects touch positions by measuring voltage signals generated at the contact point. When a finger or stylus presses the screen, the conductive layers (typically made of ITO) at the touched location undergo a change in resistance, producing corresponding voltage signals. These signals are then converted into X and Y coordinates, enabling precise touch recognition and positioning. From the operational principle described above, the key takeaway is that resistive touchscreens rely on voltage signal acquisition for coordinate recognition. The consistency of these voltage signals is fundamentally determined by the uniformity of the conductive layer (ITO layer). Industry-Specific Manufacturing Reality: ITO Layer Production: The industry-standard magnetron sputtering deposition process inherently creates thickness variations This results in sheet resistance (a conductivity equivalent) tolerances Typical industry specification: 400100 (representing 25% variance) Performance Implications: Inter-panel voltage distribution variations are unavoidable due to: Initial sheet resistance tolerances Thickness non-uniformity (typically 5% across panel) Long-Term Performance Factors: ITO layer degradation characteristics: Annual sheet resistance drift: 3-8% (accelerated by environmental factors) Operational lifespan impact: 50,000+ touch cycles (industry benchmark) Compensation Solution: Dynamic calibration protocols are implemented to: Compensate for initial manufacturing variances Counteract progressive ITO aging effects Maintain 1% coordinate accuracy throughout product lifecycle In summary, to ensure touch accuracy, calibration is essential for resistive touchscreens.

Package

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Office

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Factory

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Seamless Integration for Versatile Applications

With a flat panel design and flexible mounting options-adhesive or bracket-the 10.1 inch 4-wire resistive touch screen easily integrates into various equipment types including industrial controls, automotive dashboards, POS terminals, and medical devices. Its compatibility with standard LCD modules and robust construction support installations in diverse environments, from factory floors to vehicle interiors.


Enhanced Performance and Durability

This touch screen delivers fast response times (8 ms), excellent linearity (1.5%), and outstanding durability thanks to its glass + PET film build and 3H surface hardness. Meeting rigorous environmental standards (RoHS/REACH), it withstands humidity, wide temperature variations, and over 1,000,000 touches at a single point-making it suitable for high-traffic, demanding applications.

FAQ's of 10.1 inch 4 wire resistive touch screen:


Q: How do I install the 10.1 inch 4-wire resistive touch screen onto an LCD panel?

A: To install, align the touch screen with your LCD panel and secure it using adhesive tape. Connect the 4-wire flexible flat cable (FFC) to your controller. Ensure proper mounting pressure and alignment for accurate touch response.

Q: What types of environments and applications is this touch screen suitable for?

A: This touch panel is designed for environments such as industrial control systems, POS terminals, automotive displays, and medical equipment. Thanks to its durable build, IP54-rated front surface (with optional cover), and wide operating temperature range (-10C to +60C), it performs reliably in demanding and varied settings.

Q: When should I consider using a resistive touch technology over capacitive?

A: Resistive technology is ideal when you require compatibility with gloves or styluses, need precise input, or operate in environments where capacitive screens may struggle (e.g., moisture, dust). Its high sensitivity ensures accurate performance even with light touch or contact pressure.

Q: Where can I request custom sizes or specialized surface treatments?

A: Custom sizes and optional surface treatments such as anti-glare or anti-reflection can be requested directly from the manufacturer or supplier. These adjustments cater to specific installation or environmental needs.

Q: What is the typical service period and touch endurance of this product?

A: The touch screen is designed to last for at least 1,000,000 touches per single point and has a storage life of over 5 years at room temperature, ensuring long-term usability in continuous-use applications.

Q: How does the resistive touch process work and what benefits does it offer?

A: The resistive touch screen operates via contact pressure, registering touches from either finger or stylus. This detection method offers high sensitivity, resistance to environmental interferences, and versatility for industrial or public-use devices.

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