参数资料
型号: NCP302LSN38T1
厂商: ON Semiconductor
文件页数: 16/26页
文件大小: 0K
描述: IC DETECTOR VOLTAGE 3.8V 5TSOP
产品变化通告: LTB Notification 03/Jan/2008
标准包装: 3,000
类型: 简单复位/加电复位
监视电压数目: 1
输出: 推挽式,图腾柱
复位: 低有效
复位超时: 可调节/可选择
电压 - 阀值: 3.8V
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 6-TSOP(0.059",1.50mm 宽)5 引线
供应商设备封装: 5-TSOP
包装: 带卷 (TR)
其它名称: NCP302LSN38T1OS
NCP302, NCP303
OPERATING DESCRIPTION
The NCP302 and NCP303 series devices consist of a
precision voltage detector that drives a time delay generator.
Figures 37 and 38 show a timing diagram and a typical
application. Initially consider that input voltage V in is at a
nominal level and it is greater than the voltage detector upper
threshold (V DET+ ). The voltage at Pin 5 and capacitor C D
will be at the same level as V in , and the reset output (Pin 1)
will be in the high state for active low devices, or in the low
state for active high devices. If there is a power interruption
and V in becomes significantly deficient, it will fall below the
lower detector threshold (V DET ? ) and the external time
delay capacitor C D will be immediately discharged by an
internal N ? Channel MOSFET that connects to Pin 5. This
sequence of events causes the Reset output to be in the low
state for active low devices, or in the high state for active
high devices. After completion of the power interruption,
V in will again return to its nominal level and become greater
than the V DET+ . The voltage detector will turn off the
N ? Channel MOSFET and allow pullup resistor R D to charge
external capacitor C D , thus creating a programmable delay
for releasing the reset signal. When the voltage at Pin 5
exceeds the inverter/buffer threshold, typically 0.675 V in ,
the reset output will revert back to its original state. The reset
output time delay versus capacitance is shown in Figures 30
through 32. The voltage detector and inverter/buffer have
built ? in hysteresis to prevent erratic reset operation.
Although these device series are specifically designed for
use as reset controllers in portable microprocessor based
systems, they offer a cost ? effective solution in numerous
applications where precise voltage monitoring and time
delay are required. Figures 38 through 46 show various
application examples.
Input Voltage, Pin 2
Capacitor, Pin 5
Reset Output (Active Low), Pin 1
Reset Output (Active High), Pin 1
V in
V DET +
V DET ?
V in
0.675 V in
V in
V DET ?
0V
V in
V DET ?
0V
Figure 37. Timing Waveforms
http://onsemi.com
16
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