PART NUMBER | SMMC13264-AI-00-SYA |
DISPLAY FORMAT | 132*64DOTS |
SUPPLY VOLTAGE FOR LOGIC | 3.0V |
DISPLAY TYPE | STN-Y/G, POSITIVE ,REFLECTIVE |
VIEWING DIRECTION | 6.00 O’ CLOCK |
LCD DRIVING METHOD | 1/65 DUTY, 1/9 BIAS, 9.2V (J6392)the last sample:2017-5-23 |
CONNECTION | COG+FPC |
LCD DRIVER IC | ST7565R |
INSPECTION STANDARD OF LCD | A STANDARD |
INSPECTION STANDARD OF RoHS | RoHS COMPLIANCE |
Item | Symbol | MIN | Max | Unit |
SupplyVoltage | VDD | -0.3 | 3.6 | V |
VOUT | -0.3 | 13.5 | V | |
Operating temperature | Topr | -20 | 70 | ℃ |
Storage temperature | Tstr | -30 | 80 | ℃ |
Application:
BIGBOOK Factory:
Why choose Us:
**************************************************************************************************************
The Classification And Principle Of LCD:
1、STN LCD screen
STN is an abbreviation for "Super Teisted Nematic",It belongs to passive passive matrix LCD, almost all black and white screen LCD screen is this kind of material. Color STN LCD screen is a monochromatic STN LCD screen based on a color filter, and each pixel in the monochromatic display matrix is divided into three sub pixels, and three colors of red, green and blue are displayed by color filters to achieve color images. Because of the limitation of technology, the highest STN LCD screen is only 65536 colors, and most of them are 4096 color STN products on the market, so STN is also called "fake color".
2, GF LCD screen
GF is the abbreviation of "Glass Fine Color", maybe everyone is more strange to the GF LCD screen, because GF LCD screen digital products are very small on the market. In fact, GF belongs to a kind of STN. The main feature of GF is that the brightness is improved on the premise of low power consumption, but the GF LCD screen is somewhat colored.
So if you're looking for a high-quality LCD controller board that is specifically designed for industrial equipment, look no further than our product. With its advanced features and exceptional performance, it is the perfect choice for any industrial application.
4. Response Time and Motion Blur:
TFT color displays are also faced with the challenge of minimizing response time and motion blur. Slow pixel response times can lead to ghosting or trailing effects, especially during fast-moving scenes in videos or games. To overcome this, manufacturers are exploring technologies like Overdrive, which accelerates pixel transitions, and higher refresh rates to ensure smoother visuals and reduce motion blur.
5. Manufacturing Costs:
While TFT color displays have become more affordable over the years, manufacturing costs remain a challenge. The complex manufacturing processes involved in producing high-quality displays, including the deposition of thin-film transistors and color filters, contribute to the overall cost. Researchers and manufacturers are constantly striving to optimize production techniques and find cost-effective alternatives to reduce manufacturing expenses.
Conclusion:
TFT color displays have revolutionized the way we interact with digital content, providing us with visually stunning experiences. However, to further enhance this technology, several technical challenges need to be overcome. These include improving color accuracy, reducing power consumption, enhancing viewing angles and contrast ratios, minimizing response time and motion blur, and finding ways to reduce manufacturing costs. By addressing these challenges, the future of TFT color displays holds even more promise, enabling us to enjoy even more immersive and visually captivating experiences.
PART NUMBER | SMMC13264-AI-00-SYA |
DISPLAY FORMAT | 132*64DOTS |
SUPPLY VOLTAGE FOR LOGIC | 3.0V |
DISPLAY TYPE | STN-Y/G, POSITIVE ,REFLECTIVE |
VIEWING DIRECTION | 6.00 O’ CLOCK |
LCD DRIVING METHOD | 1/65 DUTY, 1/9 BIAS, 9.2V (J6392)the last sample:2017-5-23 |
CONNECTION | COG+FPC |
LCD DRIVER IC | ST7565R |
INSPECTION STANDARD OF LCD | A STANDARD |
INSPECTION STANDARD OF RoHS | RoHS COMPLIANCE |
Item | Symbol | MIN | Max | Unit |
SupplyVoltage | VDD | -0.3 | 3.6 | V |
VOUT | -0.3 | 13.5 | V | |
Operating temperature | Topr | -20 | 70 | ℃ |
Storage temperature | Tstr | -30 | 80 | ℃ |
Application:
BIGBOOK Factory:
Why choose Us:
**************************************************************************************************************
The Classification And Principle Of LCD:
1、STN LCD screen
STN is an abbreviation for "Super Teisted Nematic",It belongs to passive passive matrix LCD, almost all black and white screen LCD screen is this kind of material. Color STN LCD screen is a monochromatic STN LCD screen based on a color filter, and each pixel in the monochromatic display matrix is divided into three sub pixels, and three colors of red, green and blue are displayed by color filters to achieve color images. Because of the limitation of technology, the highest STN LCD screen is only 65536 colors, and most of them are 4096 color STN products on the market, so STN is also called "fake color".
2, GF LCD screen
GF is the abbreviation of "Glass Fine Color", maybe everyone is more strange to the GF LCD screen, because GF LCD screen digital products are very small on the market. In fact, GF belongs to a kind of STN. The main feature of GF is that the brightness is improved on the premise of low power consumption, but the GF LCD screen is somewhat colored.
So if you're looking for a high-quality LCD controller board that is specifically designed for industrial equipment, look no further than our product. With its advanced features and exceptional performance, it is the perfect choice for any industrial application.
4. Response Time and Motion Blur:
TFT color displays are also faced with the challenge of minimizing response time and motion blur. Slow pixel response times can lead to ghosting or trailing effects, especially during fast-moving scenes in videos or games. To overcome this, manufacturers are exploring technologies like Overdrive, which accelerates pixel transitions, and higher refresh rates to ensure smoother visuals and reduce motion blur.
5. Manufacturing Costs:
While TFT color displays have become more affordable over the years, manufacturing costs remain a challenge. The complex manufacturing processes involved in producing high-quality displays, including the deposition of thin-film transistors and color filters, contribute to the overall cost. Researchers and manufacturers are constantly striving to optimize production techniques and find cost-effective alternatives to reduce manufacturing expenses.
Conclusion:
TFT color displays have revolutionized the way we interact with digital content, providing us with visually stunning experiences. However, to further enhance this technology, several technical challenges need to be overcome. These include improving color accuracy, reducing power consumption, enhancing viewing angles and contrast ratios, minimizing response time and motion blur, and finding ways to reduce manufacturing costs. By addressing these challenges, the future of TFT color displays holds even more promise, enabling us to enjoy even more immersive and visually captivating experiences.