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PDF PST591 Data sheet ( Hoja de datos )

Número de pieza PST591
Descripción System Reset Monolithic IC PST591~595 Series
Fabricantes MITSUMI ELECTRIC 
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No Preview Available ! PST591 Hoja de datos, Descripción, Manual

MITSUMI
System Reset PST591~595
System Reset
Monolithic IC PST591~595 Series
Outline
These ICs function in a variety of CPU systems and other logic systems, to detect power supply voltage and
reset the system accurately when power is turned on or interrupted, and has a built-in fixed delay time
generating circuit. This series has been represented in the past by PST574/PST575, but these new low reset
type system reset ICs expand the delay time series with a counter timer using an analog/digital hybrid circuit.
Features
1. Fixed delay time setting by counter timer
Excellent delay time temperature characteristics
2. Low operating limit voltage
3. Hysteresis voltage provided in detection voltage
4. Current consumption for no-load
5. 5 delay time products available
6. Each product has 9 detection voltage ranks.
±800ppm/°C
0.65V typ.
50mV typ.
ICCL=300µA typ. ICCH=200µA typ.
PST591 50mS
PST592 100mS
PST593 200mS
C : 4.5V typ.
D : 4.2V typ.
E : 3.9V typ.
F : 3.6V typ.
G : 3.3V typ.
PST594 400mS
PST595 800mS
H : 3.1V typ.
I : 2.9V typ.
J : 2.7V typ.
K : 2.5V typ.
Package
MMP-4A (PST59 M)
TO-92A (PST59 )
* contains detection voltage rank.
(MMP-4A has a manual reset pin, which should be set at GND or NC during normal operation.)
Applications
1. Reset circuits in microcomputers, CPUs and MPUs
2. Logic circuit reset circuits.
3. Battery voltage check circuits.
4. Back-up power supply switching circuits.
5. Level detection circuits.
6. Mechanical reset circuits

1 page




PST591 pdf
MITSUMI
tPHL vs. Ta
tPHL
(µS)
12
11
10
9
8
7
-40
-20
0
20 40 60 80
Ta (°C)
System Reset PST591~595
Pd vs. Ta
300
200
Pd
(mW)
100
0
0
TO92
MMP4
25 50 75 100 125
Ta (°C)
Timing Chart
VCC/VOUT
(V)
7
6
5
4
3
2
1
0
RESET
ON
OFF
VCC
VOUT
Time
VS
Undefined
Application circuits
1. Normal hard reset
Note: Connect a capacitor between IC VCC and GND
pins if VCC line impedance is high.

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