Design method of high-resolution dot matrix type electronic drive substrate based on embedded transistor
A high-resolution, substrate-driven technology, used in identification devices, instruments, static indicators, etc., can solve problems such as ineffective solutions, and achieve the effect of reducing the number of cables, improving resolution, and making products light and thin
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Embodiment 1
[0026] Such as Figure 1-3 As shown, the embodiment of the present invention provides a high-resolution dot-matrix electronic drive substrate design method based on embedded transistors, including the following steps:
[0027] S1. Prepare three layers of flexible substrates, design pixel blocks on the first layer, design vertical lines on the second layer, design horizontal lines on the third layer, and design the second and third layers into a stepped shape;
[0028] S2. Use the embedded method to package the chip into a three-layer material stack, directly connect the chip to the pixel block on the first layer, and use wire bonding to connect the second layer and the third layer to the chip to complete a single pixel block the design of;
[0029] S3. Perform the same design on each pixel block, so that each pixel block can be directly controlled by dot pulses, and then arrange them to complete the design of the dot-matrix electronic drive substrate.
[0030] Based on the d...
Embodiment 2
[0032] Such as Figure 4-6 As shown, the embodiment of the present invention provides a high-resolution dot-matrix electronic drive substrate design method based on embedded transistors. In the three-layer material stacking structure, the chip can also be directly connected to the pixel block of the first layer, and a longer pad can be grown on the copper layer of the second layer to realize direct connection with the chip, and the third layer can be connected to the chip by wire bonding Chips are connected to complete the design of a single pixel block, and each pixel block is designed the same, so that each pixel block can be directly controlled by point pulses and arranged to achieve high resolution, flexibility, and dot matrix electronics. Drive the design of the substrate.
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