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NE555 Datasheet(PDF) 7 Page - Diodes Incorporated

Part # NE555
Description  Timing from microseconds to hours
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Manufacturer  DIODES [Diodes Incorporated]
Direct Link  http://www.diodes.com
Logo DIODES - Diodes Incorporated

NE555 Datasheet(HTML) 7 Page - Diodes Incorporated

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NE555/SA555/NA555
Document number: DS35112 Rev. 5 - 2
7 of 14
www.diodes.com
February 2021
© Diodes Incorporated
NE555
Typical Applications Characteristics
Monostable Operation
For monostable operation, any of the ‘555 timers can be connected as shown in Figure 1. If the output is low, application of a negative-going
pulse to the trigger (TRIG) sets the internal flip-flop and drives the output high. Capacitor C is then charged through RA until the voltage
across the capacitor reaches the threshold voltage of the threshold (THRES) input. If TRIG has returned to a high level, the output of the
threshold comparator resets the internal flip-flop, drives the output low, and discharges C.
Fig. 1 Monostable operation
Monostable operation is initiated when TRIG voltage falls below the trigger threshold. Once initiated, the sequence ends only if TRIG is high
for at least 10μs before the end of the timing interval. When the trigger is grounded, the comparator storage time can be as long as 10μs,
which limits the minimum monostable pulse width to 10μs. Because of the threshold level and saturation voltage of Q1, the output pulse
duration is approximately tW = 1.1RAC. Figure 3 is a plot of the time constant for various values of RA and C. The threshold levels and charge
rates both are directly proportional to the supply voltage, VCC. The timing interval is, therefore, independent of the supply voltage, so long as
the supply voltage is constant during the time interval.
Applying a negative-going trigger pulse simultaneously to RESET and TRIG during the timing interval discharges C and reinitiates the cycle,
commencing on the positive edge of the reset pulse. The output is held low as long as the reset pulse is low. To prevent false triggering, when
RESET is not used, it should be connected to VCC.
Fig. 2 Typical Monostable Waveforms
Fig. 3 Output Pulse Duration vs. Capacitance
RL
RA
THRES
TRIG
DISCH
RESET
CONT
VCC
GND
OUT
Output
4
7
6
2
1
3
8
5
VCC
(5V to 15V)
Input
C


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