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CS8151YDPS7G Scheda tecnica(PDF) 8 Page - ON Semiconductor

Il numero della parte CS8151YDPS7G
Spiegazioni elettronici  5.0 V, 100 mA Low Dropout Linear Regulator with Watchdog, RESET, and Wake Up
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Produttore elettronici  ONSEMI [ON Semiconductor]
Homepage  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

CS8151YDPS7G Scheda tecnica(HTML) 8 Page - ON Semiconductor

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CS8151
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APPLICATION NOTES
Operation Without Watchdog
The CS8151 can be operated without the watchdog
functionality by connecting the WDI and Wake Up Pins.
This will eliminate false resets from occurring. Without the
connection, a reset would occur because a watchdog signal
on WDI would not occur in the required time frame. The
Wake Up Pin provides the watchdog signal into the
WDI Pin.
Figure 7. Device Operation Without Watchdog Function
VIN
CDelay
VOUT
WDI
RESET
GND
CS8151
Microprocessor
Wake Up
CDelay
C1
C2
VCC
RESET
Battery
Output Stage Protection
The output stage is protected against overvoltage, short
circuit and thermal runaway conditions (see Figure 8).
If the input voltage rises above the overvoltage shutdown
threshold (e.g. load dump), the output shuts down. This
response protects the internal circuitry and enables the IC to
survive unexpected voltage transients.
Should the junction temperature of the power device
exceed 180
°C (Typ) the power transistor is turned off.
Thermal shutdown is an effective means to prevent die
overheating since the power transistor is the principle heat
source in the IC.
Figure 8. Typical Circuit Waveforms for Output
Stage Protection
VIN
VOUT
IOUT
> 50 V
Load
Dump
Short
Circuit
Thermal
Shutdown
Stability Considerations
The output or compensation capacitor C2 (see Figure 9)
helps determine three main characteristics of a linear
regulator: startup delay, load transient response and loop
stability.
Figure 9. Test and Application Circuit Showing
Output Compensation
CS8151
VIN
C1*
0.1 mF
VOUT
RESET
C2**
10 mF
*C1 required if regulator is located far from the power
supply filter.
**C2 required for stability.
RRST
The capacitor value and type should be based on cost,
availability, size and temperature constraints. A tantalum or
aluminum electrolytic capacitor is best, since a film or
ceramic capacitor with almost zero ESR can cause
instability. The aluminum electrolytic capacitor is the least
expensive solution, but, if the circuit operates at low
temperatures (−25
°C to −40°C), both the value and ESR of


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