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2008BVLFT 参数 Datasheet PDF下载

2008BVLFT图片预览
型号: 2008BVLFT
PDF下载: 下载PDF文件 查看货源
内容描述: [Consumer Circuit, CMOS, PQCC44, PLASTIC, LEAD FREE, LCC-44]
分类和应用: 商用集成电路
文件页数/大小: 22 页 / 329 K
品牌: IDT [ INTEGRATED DEVICE TECHNOLOGY ]
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ICS2008B Errata  
1. Figure 8 “Self Biased Inputs” Diagram on page 15:  
a) VDD/2 should be VDD/3  
b) 5K should be 35K  
2. Add the following notes called “AC Coupling of Internally-Biased Inputs” after  
“Self Biased Inputs” section on page 15.  
AC coupling is not recommended when the input is of large voltage swing and/or of low  
frequency. If AC coupling is attempted in these cases, then great care must be taken that  
the voltage at the input pin does not go below ground nor be allowed to settle near the  
threshold value. In such cases, it is recommended that the input pin in question be  
observed in operation with a high-impedance scope probe.  
In the case of large voltage swing inputs, the ICS2008B input pin can easily be driven  
below ground. This is possible because the voltage at the pin will swing around the  
internally generated bias point. Driving the input pin below ground should never be  
allowed and can potentially damage the device. In the case of a large input swing, a series  
resistor can be placed between the coupling capacitor and the input pin to divide down  
the input voltage and reduce the swing at the input pin.  
In the case of low frequency signals, the coupling capacitor can become fully charged  
which will allow the input slew to close to its threshold value, causing any noise to  
falsely trigger the input. Low duty cycle inputs can have an effect similar to low  
frequency. A larger coupling capacitor may be required. The case of a low frequency,  
large amplitude input is especially dangerous because the voltage swing at the input pin is  
increased by the same amount that the capacitor has charged.  
As an example of the measures that may need to be taken, a 5V, 30 Hz, 50% duty cycle  
signal on the Click input can be safely AC coupled to the Click pin by using a 1µF  
coupling capacitor and a 100K ohm series resistor. The large time constant prevents the  
capacitor from becoming fully charged and the series resistor, combined with the internal  
resistor, divides down the input voltage to an acceptable swing so that the input pin is  
never driven below ground.  
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