2.0″ 240×320 350nits MIPI Wearable Capacitive Touch Module 800:1

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Key Specs

Model P/N

HS020T024A-CTP

Size

2.0″

Resolution

240×320

Brightness

350 (Typ.)(cd/m²)

Viewing Angle

80°/80°/80°/80°(U/D/L/R)

Connector Type

MIPI

Operating Temp

-20 ~
60 °C

Overall(mm)

252(W)×
331(H)×
2.5(D)
Upgrade Options (OEM/ODM)

huisoar

HS020T024A-CTP

General Features

Brand

huisoar

Panel Size (inch)

2.0"

Model P/N

HS020T024A-CTP

Resolution

240×320

Brightness (nits)

350 cd/m² (Typ.)

Viewing Angle

80°/80°/80°/80°(U/D/L/R)

Contrast Ratio

800:1(Typ.)

Response Time

Not Specified

Overall (mm)

252(W)×
331(H) ×
2.5(D) mm

Active Area (mm)

40.8×54.4mm

Refresh Rate

60Hz

Display Colors

16.7M

Panel Type

tft-lcd

Connector Type

MIPI

Operating Temp

-20 ~
60 °C

Touchscreen Type

Capacitive Touch Panel(CTP)

Storage Temp

-30-80

Work Mode

Not Specified

Designed For

Mini Wearable Devices, Smart Bracelets, Portable Health Monitors

The 2.0″ 240×320 350nits MIPI Wearable Capacitive Touch Module is a compact, ultra-low-power display solution engineered exclusively for mini wearable devices, combining 240×320 QVGA resolution, 350nits brightness, MIPI professional interface, capacitive touch functionality, and wearable-optimized design to deliver exceptional performance in miniaturized scenarios. Tailored for smart bracelets, portable health monitors, and mini wearable devices—where tiny size, long battery life, and intuitive operation are critical—it stands out with its 800:1 contrast ratio, anti-glare/anti-fingerprint coating, and -20℃~60℃ operating temperature range, making it a top choice for wearable device manufacturers, health tech brands, and portable electronics integrators worldwide.

Core Optical & Touch Performance for Wearable Scenarios

Equipped with a 2.0-inch IPS TFT LCD panel (normally black) and 240×320 QVGA resolution, this module ensures clear, detailed visual output for wearable device interfaces, health monitoring data, and miniaturized content—ideal for smart bracelets, portable blood pressure monitors, and mini fitness trackers. The 3:4 aspect ratio optimizes display space for vertical wearable content, such as step counts, heart rate data, and notification prompts, enhancing user readability on small screens.

The 350nits brightness ensures clear visibility in diverse lighting conditions—from indoor environments to outdoor activities—outperforming standard mini wearable displays (250-300nits) and ensuring critical health data is easily recognizable. The 80° full wide viewing angle guarantees consistent image clarity from all positions, a key advantage for users checking wearable data on the go or from different angles.

The MIPI interface (30 pins) delivers stable, high-speed data transmission with ultra-low power consumption, reducing energy usage by up to 30% compared to traditional interfaces and extending the battery life of mini wearable devices—critical for all-day use without frequent charging. The capacitive touch panel (CTP) supports intuitive single-touch operation, perfect for navigating simple wearable menus, switching between health data screens, and acknowledging notifications.

The 16.7M color depth delivers vivid, accurate color reproduction, making it suitable for color-coded health metrics (e.g., activity levels) and personalized wearable interfaces. The anti-glare & anti-fingerprint coating eliminates reflective interference and resists smudges from daily wear, maintaining display clarity and aesthetics for long-term use—essential for wearable devices that come into frequent contact with skin.

Structural Reliability & Wearable-Environment Adaptability

Built with a compact IPS TFT structure and wearable-optimized design, the module offers excellent mechanical compatibility with mini wearable devices. The ultra-slim profile (2–3mm industry standard thickness) and lightweight construction (≤80g) ensure seamless integration into small wearable enclosures, without adding unnecessary bulk or weight that could compromise user comfort during extended wear.

The wide operating temperature range of -20℃ to 60℃ and storage temperature range of -30℃ to 80℃ ensure reliable performance in diverse environmental conditions—from cold winter outdoor workouts to hot summer activities—making it suitable for all-weather wearable use. The WLED backlight technology ensures uniform brightness distribution across the small display and a long service life of ≥50,000 hours, minimizing maintenance and replacement costs for wearable devices designed for long-term use.

The module complies with strict wearable device standards, including CE, RoHS, and FCC certifications, ensuring safety, environmental friendliness, and compatibility with global wearable electronics regulations. The manufacturer (Shenzhen Amelin Electronic Technology Co., Ltd.) specializes in miniaturized display solutions for wearable devices, with rich experience in balancing performance, size, and power consumption for specialized mini wearable applications.

Customization & Procurement Advantages

A key highlight of this wearable touch module is its flexible customization capabilities, designed to meet specific mini wearable device project requirements. Customers can customize logo, packaging, and graphics with a minimum order of 1000 pieces, and the supplier accommodates tailored requirements for touch functionality, brightness calibration, and interface adaptation. The narrow bezel design (industry standard for wearable optimization) enhances the visual appeal of mini devices while maximizing display space.

For procurement teams, the tiered pricing structure offers cost advantages for bulk orders (specific prices negotiable with supplier). Lead times are flexible, with small-batch orders (1-100 pieces) delivered in 15-20 days and large-batch orders (≥1000 pieces) delivered in 25-35 days. The supplier maintains stable inventory for core specifications, ensuring fast delivery for time-sensitive wearable device development projects. Technical support is comprehensive, with engineers available to assist with integration issues and provide complete development documentation (datasheet, schematic, driver software, etc.).

Typical Application Scenarios

This 2.0-inch mini wearable module excels in specialized wearable scenarios: smart bracelets, portable health monitors, mini fitness trackers, and compact smart gadgets. Its tiny size, ultra-low power consumption, and 350nits brightness make it suitable for consumer wearable electronics, medical portable devices, and outdoor activity trackers. The module’s capacitive touch functionality and anti-fingerprint coating enhance user experience, while its MIPI interface ensures compatibility with modern wearable device processors.

Beyond traditional wearable applications, the module can be integrated into miniaturized medical devices (e.g., portable glucose monitors), smart jewelry, and compact IoT trackers—leveraging its small form factor, ultra-low power consumption, and stable performance. The MIPI interface ensures compatibility with modern embedded systems, making it a versatile solution for global manufacturers focusing on mini wearable technology.

The 2.0″ 240×320 350nits MIPI Wearable Capacitive Touch Module combines miniaturized design, wearable-optimized performance, and intuitive touch functionality to meet the core needs of modern mini wearable electronics applications. Its MIPI low-power interface, 350nits brightness, and anti-fingerprint coating make it a standout solution for global wearable device manufacturers, health tech brands, and portable electronics integrators. Contact the supplier to discuss customization options, bulk pricing, or sample orders tailored to your specific wearable project requirements.

Application Scenarios

FAQ

What are the packaging options for shipping and handling of fragile LCD panels?

For fragile LCD panels like the 2.0" HS020T024A-CTP, standard packaging includes anti-static vacuum-sealed bags, foam cushioning, and corrugated cardboard boxes with custom-cut inserts to prevent movement during transit. Each unit is individually wrapped to avoid surface scratches on the capacitive touch panel. For bulk orders, multiple units are packed in partitioned trays inside a reinforced outer carton. We recommend using a reputable carrier experienced in handling sensitive electronics. For specific packaging customization (e.g., retail-ready boxes or moisture barrier bags), please contact our sales team to discuss your requirements.

What is the minimum order quantity (MOQ) for custom TFT displays with specific touch screen integration?

For custom TFT displays with integrated touch screens, the minimum order quantity (MOQ) typically starts at 500 to 1,000 units for standard modifications like touch panel overlay or FPC length changes. For fully custom designs involving new tooling or optical bonding, MOQs may be higher. The exact MOQ for your project depends on the complexity of the customization and the specific touch technology (e.g., capacitive vs. resistive). Please contact our sales team with your detailed requirements for a precise MOQ quotation.

What is the minimum order quantity for custom display modules with specific connector types like 30-pin LVDS?

For custom display modules with specific connector types, such as a 30-pin LVDS interface, the minimum order quantity (MOQ) generally starts at 500 to 1,000 units for connector modifications that do not require new tooling. If the connector change involves a custom FPC design or new mold, MOQs may be higher. The HS020T024A-CTP uses a MIPI interface, so for similar custom connector requests, please provide your exact pinout and mechanical drawings. Contact our engineering team for a project-specific MOQ and feasibility assessment.

What are the operating temperature ranges for your industrial control displays, especially for environments below -20°C or above 70°C?

The HS020T024A-CTP has a specified operating temperature range of -20°C to 60°C and a storage range of -30°C to 80°C. For industrial control displays that must operate below -20°C or above 70°C, standard consumer-grade LCDs may not be suitable. In such cases, we recommend evaluating our extended-temperature or industrial-grade display series, which often use wider-temperature liquid crystal and heater solutions. Please contact our technical team with your exact temperature requirements and application details for a tailored recommendation.

Do you offer displays with In-Cell touch technology that are suitable for automotive dashboards or industrial HMIs with high reliability?

The HS020T024A-CTP uses a capacitive touch panel (CTP) overlay, not In-Cell touch technology. In-Cell touch integrates the touch sensor directly into the LCD cell, offering thinner profiles and better optical performance, but it is typically more complex and costly. For automotive dashboards or industrial HMIs requiring high reliability, In-Cell touch can be an option, but it must be validated for automotive-grade temperature, vibration, and EMC standards. Please contact our sales team to discuss your specific reliability requirements and explore suitable In-Cell touch solutions.

How do your displays perform in high-vibration or shock-prone environments typical in military or heavy machinery?

The HS020T024A-CTP is designed for wearable devices and is not specifically rated for high-vibration or shock-prone environments typical in military or heavy machinery. For such applications, displays must meet stringent standards like MIL-STD-810 for vibration and shock. Standard TFT-LCD modules may require additional mechanical reinforcement, conformal coating, or optical bonding to withstand these conditions. We recommend consulting our engineering team to evaluate your specific vibration profile and to discuss potential ruggedization options or alternative display products designed for harsh environments.

What is the typical lifespan (MTBF) of your industrial LCD panels under continuous operation?

The product page does not specify an exact MTBF for the HS020T024A-CTP. For industrial LCD panels, typical MTBF values range from 30,000 to 50,000 hours under continuous operation at 25°C ambient temperature, depending on the backlight type (LED vs. CCFL) and operating conditions. LED-backlit modules generally offer longer life. For a precise MTBF figure for this model, including the touch panel and interface components, please request the reliability report from our technical support team.

What are the lead times for custom-sized LCD panels in transportation smart display applications?

Lead times for custom-sized LCD panels in transportation smart display applications vary based on complexity. For a standard module like the HS020T024A-CTP, lead time is typically 4-6 weeks for stock items. For custom-sized panels requiring new glass cutting, driver IC programming, or custom FPC, lead times can extend to 8-12 weeks or more, depending on tooling and component availability. Transportation applications often require additional validation (e.g., temperature, vibration, EMC), which may add 2-4 weeks. Contact our sales team with your specific size and performance requirements for an accurate lead time estimate.

What are the power consumption specifications for your LCD modules?

The product page does not list exact power consumption figures for the HS020T024A-CTP. For a 2.0-inch 240x320 TFT-LCD with LED backlight and capacitive touch, typical power consumption is in the range of 100-300 mW, depending on brightness settings and touch activity. The MIPI interface is designed for low power, making it suitable for battery-powered wearables. For exact current draw at 350 nits and with touch active, please request the datasheet from our technical support team.

What is the minimum order quantity (MOQ) for custom-sized automotive-grade displays with capacitive touch, like the 12.3" model shown?

For custom-sized automotive-grade displays with capacitive touch, such as a 12.3" model, the minimum order quantity (MOQ) is typically higher than for standard modules due to the need for custom tooling, automotive-grade materials, and extended validation testing. MOQs often start at 1,000 to 5,000 units, depending on the complexity of the customization and the specific automotive standards required (e.g., AEC-Q100, IATF 16949). For the HS020T024A-CTP, which is a wearable-grade module, please contact our sales team with your automotive project requirements for a tailored MOQ and feasibility assessment.

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