A two-stage driving circuit of a one-chip TFT-LCD driver IC for portable electronic devices is proposed. The driving buffers of the new circuit are built in the γ-correction circuit rather than in the source driver. ...A two-stage driving circuit of a one-chip TFT-LCD driver IC for portable electronic devices is proposed. The driving buffers of the new circuit are built in the γ-correction circuit rather than in the source driver. The power consumption,die area, and driving capability of the driving circuit are discussed in detail. For a two-stage driving circuit with 13 driving buffers, the settling time of the driving voltage within 0.2% error is about 19.2μs when 396 pixel-loads are driven by the same grayscale voltage. The quiescent current of the whole driving circuit is 518μ~A,and the power consumption can be reduced by 77%. The proposed driving circuit is successfully applied in a 132RGB × 176-dot,260k color one-chip driver IC developed by us for the TFT-LCD of mobile phone, and it can also be used in other portable electronic devices, such as PDAs and digital cameras.展开更多
A top-down design methodology is proposed for the design of TFT-LCD one-chip driver ICs,and a 260k color, 176RGB× 220-dot TFT-LCD one-chip driver IC is successfully developed with silicon verification. This IC is...A top-down design methodology is proposed for the design of TFT-LCD one-chip driver ICs,and a 260k color, 176RGB× 220-dot TFT-LCD one-chip driver IC is successfully developed with silicon verification. This IC is a typical mixed-signal VLSI and is implemented by a 0.18μm HV CMOS process. The static power dissipation is about 5mW for 260k color display mode,and the settling time of the output grayscale voltages within 0.2% error is less than 26μs.展开更多
在市场上逐步推广的液晶模块(LCM)生产中,其LCD系列驱动电路的封装工艺主要采用裸芯片的COB(chip on Board)封装方式。文中通过总结自行设计和加工的LCD系列电路在应用厂商批量使用过程中出现的COB封装问题,对COB的工艺流程、COB工艺中...在市场上逐步推广的液晶模块(LCM)生产中,其LCD系列驱动电路的封装工艺主要采用裸芯片的COB(chip on Board)封装方式。文中通过总结自行设计和加工的LCD系列电路在应用厂商批量使用过程中出现的COB封装问题,对COB的工艺流程、COB工艺中的关键工艺——键合以及主要的失效点以及常见的失效原因进行分析,并结合在实际推广过程中问题的解决方法,对LCD系列驱动电路和其他芯片在COB应用中主要出现的键合不良、边缘铝层颜色异常、钝化孔残留、键合参数、COB环境等方面问题加以整理归纳,并提出了可行的解决办法。展开更多
文摘A two-stage driving circuit of a one-chip TFT-LCD driver IC for portable electronic devices is proposed. The driving buffers of the new circuit are built in the γ-correction circuit rather than in the source driver. The power consumption,die area, and driving capability of the driving circuit are discussed in detail. For a two-stage driving circuit with 13 driving buffers, the settling time of the driving voltage within 0.2% error is about 19.2μs when 396 pixel-loads are driven by the same grayscale voltage. The quiescent current of the whole driving circuit is 518μ~A,and the power consumption can be reduced by 77%. The proposed driving circuit is successfully applied in a 132RGB × 176-dot,260k color one-chip driver IC developed by us for the TFT-LCD of mobile phone, and it can also be used in other portable electronic devices, such as PDAs and digital cameras.
文摘A top-down design methodology is proposed for the design of TFT-LCD one-chip driver ICs,and a 260k color, 176RGB× 220-dot TFT-LCD one-chip driver IC is successfully developed with silicon verification. This IC is a typical mixed-signal VLSI and is implemented by a 0.18μm HV CMOS process. The static power dissipation is about 5mW for 260k color display mode,and the settling time of the output grayscale voltages within 0.2% error is less than 26μs.
文摘在市场上逐步推广的液晶模块(LCM)生产中,其LCD系列驱动电路的封装工艺主要采用裸芯片的COB(chip on Board)封装方式。文中通过总结自行设计和加工的LCD系列电路在应用厂商批量使用过程中出现的COB封装问题,对COB的工艺流程、COB工艺中的关键工艺——键合以及主要的失效点以及常见的失效原因进行分析,并结合在实际推广过程中问题的解决方法,对LCD系列驱动电路和其他芯片在COB应用中主要出现的键合不良、边缘铝层颜色异常、钝化孔残留、键合参数、COB环境等方面问题加以整理归纳,并提出了可行的解决办法。