XC612D1515ML TOREX [Torex Semiconductor], XC612D1515ML Datasheet - Page 6

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XC612D1515ML

Manufacturer Part Number
XC612D1515ML
Description
2-Channel Voltage Detectors
Manufacturer
TOREX [Torex Semiconductor]
Datasheet
6/14
■OPERATONAL EXPLANATION
●Timing Chart (Pull up voltage =Input voltage V
●Operational Notes (N-ch Open drain)
Timing Chart A
Timing Chart B
Because a voltage higher than the minimum operating voltage is applied to the voltage input pin (V
output at the output pin (V
① When a voltage greater than the release voltage (V
② When input voltage (V
③ Should input voltage (V
④ Should input voltage (V
⑤ When input voltage (V
Note : The difference between release voltage (V
XC612
When a voltage greater than the detect voltage
impedance will exist at the output pin (V
voltage.
V
level (V
V
within the operating voltage range.
*In general the output pin is pulled up so output will be equal to pull up voltage.
until the release voltage level (V
voltage dependent on pull up.
IN2
IN2
) will gradually fall.
fall below V
SS
).
(V
(V
IN1
IN1
Series
MIN
=voltages above release voltage
=V
, voltage at the output pin (V
IN2
DET
IN1
IN1
IN1
IN1
)
, V
, V
) during stage 3. (Stages 1, 2, 4, 5 are the same as in B below).
, V
, V
IN2
IN2
IN2
IN2
) rises above release voltage, the output pin's (V
) falls below detect voltage (V
) fall below the minimum operational voltage (V
) rise above ground voltage (V
DR
) is reached.
DET1
, V
DR
IN1
DET2
) and detect voltage (V
(VDF
DET2
DR
)
), so should the pin be pulled up, voltage will be equal to pull up
) is applied to the voltage input pin (V
) is applied to the voltage input pin (V
, V
) will be equal to ground level (V
IN2
=sweep voltage
DF
SS
), output voltage (V
), output voltage (V
DF
) is the Hysteresis Range ⑥.
)
MIN
DET1
), output will become unstable. Should
DET1
DET1
, V
DET2
SS
, V
, V
) if the power supply (V
IN1
DET2
) voltage will be equal to the
DET2
, V
IN1
IN
) will be equal to ground
) will equal ground level
), ground voltage will be
IN2
, V
), input voltage (V
IN2
), a state of high
IN1
IN1
) is
,

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