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Lead-free Full-process 2.0-inch Display Module: Zero Extra Traceability Workload for Overseas RoHS Certification

2026-08-18
Latest company news about Lead-free Full-process 2.0-inch Display Module: Zero Extra Traceability Workload for Overseas RoHS Certification

Supply Chain Implementation Breakthrough: Tianxianwei TXW200108B0-JZ Module Reconstructs Overseas Delivery Standards for Small-Scale Industrial Displays with Full-Link Compliance


Shenzhen, Jan 8, 2026 — Aiming at three long-standing pain points for global industrial interactive terminal brands for small-sized touch display components: "fragmented specifications, high compliance costs, and scenario adaptation failure", Shenzhen Tianxianwei Technology has officially released the full-link delivery specification document for the TXW200108B0-JZ 2.0-inch TFT LCD+CTP integrated module. Unlike the conventional product release logic in the industry that only focuses on performance parameters, this module anchors the landing requirements of overseas niche markets from the entire process of material selection, process control to reliability verification, providing global customers in the intelligent industrial, portable medical, and vehicle-mounted micro-interaction tracks with a ready-to-use standardized high-reliability display solution.


Targeting Core Pain Points in Overseas Supply Chains: Pre-design of Full-process Lead-free and RoHS Compliance


At present, when overseas industrial brands introduce Chinese-produced display components, they often need to invest a lot of costs in third-party compliance screening. It is common that core material traceability fails to meet the EU RoHS Directive, and process residues do not meet lead-free requirements, which leads to a certification cycle extension of more than 30%. Tianxianwei's newly launched TXW200108B0-JZ module takes full-chain compliance as the core design goal from the project initiation stage: all materials and production processes are fully controlled in a lead-free manner, the cover glass uses Asahi tempered glass, and all parameters of the whole machine meet RoHS environmental protection requirements. Customers can directly submit for certification without additional supplementary material traceability reports, which greatly reduces the time and capital cost of overseas market access.


End-to-end Structural Redundancy Optimization: Reduce 70% of Customers' Structural Design Adaptation Workload


Traditional small-sized touch modules of the same specification generally suffer from the problem of missing design details, so hardware engineers on the brand side need repeated trial and error to adjust the stacking space. This module directly provides full sets of mass-production-verified structural guidelines in the product specifications:

  • It clearly specifies that the TP window size is recommended to be 0.3~0.5mm larger unilaterally than the LCM active display area, which fundamentally avoids the common industry defect of touch edge response failure;
  • Two housing clearance thresholds for the FPC area are publicly disclosed: one with a total height upper limit of 0.6MAX and the other with a total height upper limit of 1.6MAX, which eliminates the risk of FPC being squeezed and broken after assembly in advance;
  • The integrated 0.05mm thick conductive double-sided adhesive realizes grounding and shielding, combined with the composite structure of 0.2mm steel sheet reinforcement and 0.5mm free-height foam, which can meet the EMI immunity requirements in industrial scenarios without customers adding additional electromagnetic shielding materials.
    The overall size of the basic LCM of this module is only 46.00(W) × 41.00(H) × 2.20(T), and the total thickness integrated with touch is controlled at 3.33mm, which is a lightweight benchmark among 2.0-inch categories with the same resolution, and can be flexibly embedded into the internal compact stack of various terminal devices.


Cross-scenario Compatibility Open Architecture: Realize Full-link Adaptation of Drivers, Interfaces and Touch


The TXW200108B0-JZ module abandons the industry's common closed binding scheme and adopts an open standardized interface architecture that is compatible with the world's mainstream main control platforms:

  1. On the display side, it is equipped with the ST7701SN driver IC, adopts a 1lane MIPI differential transmission interface, supports 16.7M colors that can be freely configured by software. The 40.82mm × 30.62mm effective display area matches the 480×360 RGB vertical stripe pixel arrangement, with equal 0.085mm horizontal and vertical pixel pitches, achieving ALL O'CLOCK full-direction color-consistent all-angle viewing, which meets the usage requirements of multi-station operation from different angles in industrial scenarios;
  2. The backlight system is equipped with 6 integrated white LEDs, the driving voltage covers 2.9V~3.3V at the typical operating current of 120mA, and the nominal LED service life can reach 30000 hours, far exceeding the industry average of 20000 hours;
  3. The touch layer adopts G+F structure with CST826 touch driver IC. The I2C communication interface supports both single-point touch and gesture recognition functions. The full link is powered by a unified 3.3V working voltage, no additional multi-power domain configuration is required to complete the driving. The touch panel has a light transmittance of ≥85% and a surface hardness of ≥6H, and the coordinate origin is defaulted to the upper left corner, which is adaptive to the native logic of most overseas main control touch algorithms.


Full-coverage Verification under Extreme Working Conditions: Complete Global Extreme Environment Scene Endorsement in Advance


To adapt to the deployment needs of different regions around the world, this module has completed a full set of strict reliability tests: 96 hours of high-temperature storage at 80°C, 96 hours of low-temperature storage at -30°C, 96 hours of continuous high-temperature operation at 70°C, 96 hours of continuous low-temperature operation at -20°C, 96 hours of 60°C/90%RH high temperature and high humidity storage, and 10 cycles of thermal shock test between -20°C and 70°C. No obvious failures such as missing segments, short circuits, abnormal display, and liquid crystal leakage occurred after all tests, while eliminating common hidden industry failures such as low-temperature bubbles, loose edge sealing, and frame rainbow, so it can be directly delivered to projects deployed in special regions such as extreme cold, high temperature and high humidity without customers adding extra reliability verification costs.

Products
NEWS DETAILS
Lead-free Full-process 2.0-inch Display Module: Zero Extra Traceability Workload for Overseas RoHS Certification
2026-08-18
Latest company news about Lead-free Full-process 2.0-inch Display Module: Zero Extra Traceability Workload for Overseas RoHS Certification

Supply Chain Implementation Breakthrough: Tianxianwei TXW200108B0-JZ Module Reconstructs Overseas Delivery Standards for Small-Scale Industrial Displays with Full-Link Compliance


Shenzhen, Jan 8, 2026 — Aiming at three long-standing pain points for global industrial interactive terminal brands for small-sized touch display components: "fragmented specifications, high compliance costs, and scenario adaptation failure", Shenzhen Tianxianwei Technology has officially released the full-link delivery specification document for the TXW200108B0-JZ 2.0-inch TFT LCD+CTP integrated module. Unlike the conventional product release logic in the industry that only focuses on performance parameters, this module anchors the landing requirements of overseas niche markets from the entire process of material selection, process control to reliability verification, providing global customers in the intelligent industrial, portable medical, and vehicle-mounted micro-interaction tracks with a ready-to-use standardized high-reliability display solution.


Targeting Core Pain Points in Overseas Supply Chains: Pre-design of Full-process Lead-free and RoHS Compliance


At present, when overseas industrial brands introduce Chinese-produced display components, they often need to invest a lot of costs in third-party compliance screening. It is common that core material traceability fails to meet the EU RoHS Directive, and process residues do not meet lead-free requirements, which leads to a certification cycle extension of more than 30%. Tianxianwei's newly launched TXW200108B0-JZ module takes full-chain compliance as the core design goal from the project initiation stage: all materials and production processes are fully controlled in a lead-free manner, the cover glass uses Asahi tempered glass, and all parameters of the whole machine meet RoHS environmental protection requirements. Customers can directly submit for certification without additional supplementary material traceability reports, which greatly reduces the time and capital cost of overseas market access.


End-to-end Structural Redundancy Optimization: Reduce 70% of Customers' Structural Design Adaptation Workload


Traditional small-sized touch modules of the same specification generally suffer from the problem of missing design details, so hardware engineers on the brand side need repeated trial and error to adjust the stacking space. This module directly provides full sets of mass-production-verified structural guidelines in the product specifications:

  • It clearly specifies that the TP window size is recommended to be 0.3~0.5mm larger unilaterally than the LCM active display area, which fundamentally avoids the common industry defect of touch edge response failure;
  • Two housing clearance thresholds for the FPC area are publicly disclosed: one with a total height upper limit of 0.6MAX and the other with a total height upper limit of 1.6MAX, which eliminates the risk of FPC being squeezed and broken after assembly in advance;
  • The integrated 0.05mm thick conductive double-sided adhesive realizes grounding and shielding, combined with the composite structure of 0.2mm steel sheet reinforcement and 0.5mm free-height foam, which can meet the EMI immunity requirements in industrial scenarios without customers adding additional electromagnetic shielding materials.
    The overall size of the basic LCM of this module is only 46.00(W) × 41.00(H) × 2.20(T), and the total thickness integrated with touch is controlled at 3.33mm, which is a lightweight benchmark among 2.0-inch categories with the same resolution, and can be flexibly embedded into the internal compact stack of various terminal devices.


Cross-scenario Compatibility Open Architecture: Realize Full-link Adaptation of Drivers, Interfaces and Touch


The TXW200108B0-JZ module abandons the industry's common closed binding scheme and adopts an open standardized interface architecture that is compatible with the world's mainstream main control platforms:

  1. On the display side, it is equipped with the ST7701SN driver IC, adopts a 1lane MIPI differential transmission interface, supports 16.7M colors that can be freely configured by software. The 40.82mm × 30.62mm effective display area matches the 480×360 RGB vertical stripe pixel arrangement, with equal 0.085mm horizontal and vertical pixel pitches, achieving ALL O'CLOCK full-direction color-consistent all-angle viewing, which meets the usage requirements of multi-station operation from different angles in industrial scenarios;
  2. The backlight system is equipped with 6 integrated white LEDs, the driving voltage covers 2.9V~3.3V at the typical operating current of 120mA, and the nominal LED service life can reach 30000 hours, far exceeding the industry average of 20000 hours;
  3. The touch layer adopts G+F structure with CST826 touch driver IC. The I2C communication interface supports both single-point touch and gesture recognition functions. The full link is powered by a unified 3.3V working voltage, no additional multi-power domain configuration is required to complete the driving. The touch panel has a light transmittance of ≥85% and a surface hardness of ≥6H, and the coordinate origin is defaulted to the upper left corner, which is adaptive to the native logic of most overseas main control touch algorithms.


Full-coverage Verification under Extreme Working Conditions: Complete Global Extreme Environment Scene Endorsement in Advance


To adapt to the deployment needs of different regions around the world, this module has completed a full set of strict reliability tests: 96 hours of high-temperature storage at 80°C, 96 hours of low-temperature storage at -30°C, 96 hours of continuous high-temperature operation at 70°C, 96 hours of continuous low-temperature operation at -20°C, 96 hours of 60°C/90%RH high temperature and high humidity storage, and 10 cycles of thermal shock test between -20°C and 70°C. No obvious failures such as missing segments, short circuits, abnormal display, and liquid crystal leakage occurred after all tests, while eliminating common hidden industry failures such as low-temperature bubbles, loose edge sealing, and frame rainbow, so it can be directly delivered to projects deployed in special regions such as extreme cold, high temperature and high humidity without customers adding extra reliability verification costs.

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