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C1411NVOA

更新时间: 2024-11-02 03:23:51
品牌 Logo 应用领域
美国微芯 - MICROCHIP 驱动器
页数 文件大小 规格书
18页 762K
描述
1A High-Speed MOSFET Drivers

C1411NVOA 数据手册

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TC1411/TC1411N  
1A High-Speed MOSFET Drivers  
Features  
Description  
• Latch-Up Protected: Will Withstand 500 mA  
Reverse Current  
The TC1411/TC1411N are 1A CMOS buffers/drivers.  
They will not latch-up under any conditions within their  
power and voltage ratings. They are not subject to  
damage when up to 5V of noise spiking of either  
polarity occurs on the ground pin. They can accept,  
without damage or logic upset, up to 500 mA of current  
of either polarity being forced back into their output. All  
terminals are fully protected against up to 4 kV of  
electrostatic discharge.  
• Input Will Withstand Negative Inputs Up to 5V  
• ESD Protected: 4 kV  
• High Peak Output Current: 1A  
• Wide Input Supply Voltage Operating Range:  
- 4.5V to 16V  
• High Capacitive Load Drive Capability:  
- 1000 pF in 25 nsec  
As MOSFET drivers, the TC1411/TC1411N can easily  
charge a 1000 pF gate capacitance in 25 nsec with  
matched rise and fall times, and provide low enough  
impedance in both the ON and the OFF states to  
ensure the MOSFET’s intended state will not be  
affected, even by large transients. The leading and  
trailing edge propagation delay times are also matched  
to allow driving short-duration inputs with greater  
accuracy.  
• Short Delay Time: 30 nsec Typ.  
• Matched Delay Times  
• Low Supply Current  
-
-
With Logic ‘1’ Input: 500 µA  
With Logic ‘0’ Input: 100 µA  
• Low Output Impedance: 8Ω  
• Available in Space-Saving 8-pin MSOP Package  
• Pinout Same as TC1410/TC1412/TC1413  
Package Types  
Applications  
8-Pin MSOP/PDIP/SOIC  
• Switch Mode Power Supplies  
• Pulse Transformer Drive  
• Line Drivers  
VDD  
VDD  
VDD  
1
8 VDD  
8
7
6
5
1
IN 2  
NC 3  
IN 2  
7
OUT  
OUT  
GND  
OUT  
TC1411  
TC1411N  
NC  
3
4
6
5
OUT  
GND  
• Relay Driver  
GND 4  
GND  
6,7  
2
6,7  
Inverting  
NC = No Internal Connection  
2
Non-Inverting  
Note:  
Duplicate pins must be connected  
together for proper operation.  
© 2006 Microchip Technology Inc.  
DS21390D-page 1  

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