欢迎访问ic37.com |
会员登录 免费注册
发布采购

TS9001-2IJ5 参数 Datasheet PDF下载

TS9001-2IJ5图片预览
型号: TS9001-2IJ5
PDF下载: 下载PDF文件 查看货源
内容描述: 1.6V纳安级功耗比较器具有内部参考 [1.6V Nanopower Comparator with Internal Reference]
分类和应用: 比较器
文件页数/大小: 8 页 / 237 K
品牌: TOUCHSTONE [ TOUCHSTONE SEMICONDUCTOR INC ]
 浏览型号TS9001-2IJ5的Datasheet PDF文件第1页浏览型号TS9001-2IJ5的Datasheet PDF文件第2页浏览型号TS9001-2IJ5的Datasheet PDF文件第3页浏览型号TS9001-2IJ5的Datasheet PDF文件第4页浏览型号TS9001-2IJ5的Datasheet PDF文件第5页浏览型号TS9001-2IJ5的Datasheet PDF文件第6页浏览型号TS9001-2IJ5的Datasheet PDF文件第8页  
TS9001  
6) The last step is to verify the trip voltages and  
hysteresis band using the standard  
resistance values:  
where the smaller of the two resulting  
resistor values is the best starting value.  
2) As before, the desired hysteresis band  
(VHYSB) is set to 100mV.  
For VIN rising:  
VTHR = VREF x R1 [(1/R1) + (1/R2) + (1/R3)]  
= 3V  
3) Next, resistor R1 is then computed  
according to the following equation:  
For VIN falling:  
R1 = (R2 + R4) x (VHYSB/VCC)  
V
THF = VTHR - (R1 x VCC/R2) = 2.9V  
4) The trip point for VIN rising (VTHR) is chosen  
(again, remember that VTHF is the trip point  
for VIN falling). This is the threshold voltage  
at which the comparator switches its output  
from low to high as VIN rises above the trip  
point.  
and Hysteresis Band = VTHR – VTHF = 100mV  
Adding Hysteresis to the TS9001-2 Open-Drain  
Option  
The TS9001-2 has open-drain output and requires  
an external pull-up resistor to VCC as shown in  
Figure 4. Additional hysteresis can be generated  
5) With the VTHR from Step 4 above, resistor R3  
is computed as follows:  
R3 = 1/[VTHR/(VREF x R1) - (1/R1) - (1/R2)]  
6) As before, the last step is to verify the trip  
voltages and hysteresis band with the  
standard resistor values used in the circuit:  
For VIN rising:  
V
THR = VREF x R1 x (1/R1+1/R2+1/R3)  
For VIN falling:  
THF = VREF x R1 x (1/R1+1/R3+1/(R2+R4))  
V
-(R1/(R2+R4)) x VCC  
Figure 4: Using Four Resistors Introduces Additional  
and Hysteresis Band is given by VTHR - VTHF  
PC Board Layout and Power-Supply Bypassing  
Hysteresis in the TS9001-2.  
using positive feedback; however, the formulae differ  
slightly from those of the push-pull option TS9001-1.  
The procedure to calculate the resistor values for the  
TS9001-2 is as follows:  
While power-supply bypass capacitors are not  
typically required, it is good engineering practice to  
use 0.1uF bypass capacitors close to the device’s  
power supply pins when the power supply  
impedance is high, the power supply leads are long,  
or there is excessive noise on the power supply  
traces. To reduce stray capacitance, it is also good  
engineering practice to make signal trace lengths as  
short as possible. Also recommended are a ground  
plane and surface mount resistors and capacitors.  
1) As in the previous section, resistor R2 is  
chosen according to the formulae:  
R2 = VREF/0.2µA  
or  
R2 = (VCC - VREF)/0.2μA - R4  
TS9001DS r1p0  
Page 7  
RTFDS