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IR5001 Просмотр технического описания (PDF) - International Rectifier

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IR5001
IR
International Rectifier IR
IR5001 Datasheet PDF : 13 Pages
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IR5001
ABSOLUTE MAXIMUM RATINGS
Vline Voltage
Vcc Voltage
Icc Current
INN, INP Voltage
FETch, FETst
FETst Sink Current
Junction Temperature
Storage Temperature Range
-5.0V to 100V (continuous)
-0.5V to 15VDC
5mA
-5.0V to 100V (continuous)
-0.5V to 5.5V
10mA
-40°C to 125°C
-65°C to 150°C
CAUTION:
1. Stresses above those listed in "Absolute Maximum Ratings" may cause permanent damage to the device. This
is a stress only rating and operation of the device at these or any other conditions above those indicated in the
operational section of this specification is not implied.
2. This device is ESD sensitive. Use of standard ESD handling precautions is required.
.
ELECTRICAL SPECIFICATIONS
Unless otherwise specified, these specifications apply over Vline = 36V to 100V; Vcc is decoupled with 0.1uF to
Gnd, CL=10nF at Vout; INP is connected to Gnd. Typical values refer to TA=25°C. Minimum and maximum limits
apply to TA= 0°C to 85°C temperature range and are 100% production-tested at both temperature extremes. Low
duty cycle pulse testing is used which keeps junction and case temperatures equal to the ambient temperature.
PARAMETERS
Bias Section
Vline Bias Current
VCC output voltage
UVLO Section
UVLO ON Threshold Voltage
UVLO OFF Threshold Voltage
UVLO Hysteresis
Input Comparator Section
Input Offset Voltage (VINP-
VINN)
Input Hysteresis Voltage
(INN) Input Bias Current
(INP) Input Bias Current
SYMBOL
TEST CONDITION
V line= 25V
MIN TYP MAX UNITS
0.14 0.3 0.5
Iline
V line= 36V
0.2 0.5 0.75 mA
Vline=100V, Note 1
1.2 1.7 2.2
Vcc(out)
Vline=25V
10.2 12.5 13.9 V
Vline=open, VINP=0; VINN= -
Vcc(ON)
0.3V
Vcc increased until Vout switches
8.3
9.6 10.9
from LO to HI, Note 2
V
Vline=open, VINP=0, VINN=-
Vcc(OFF) 0.3V, Vcc is decreased until 5.7 7.2 8.5
Vout switches from HI to LO
1.6 2.3 2.8 V
VINP=0V and VINN Ramping up,
Vos
VOUT changes from HI to LO, -7.9 -4.0 0
Fig.3
mV
Vhyst
VINP=0,VINN ramping down,
Figures 3 and 4
13 31 44
I(INN)
I(INP)
VINP=0V, VINN=36V
VINN=0V, VINP=36V
0.2 0.5 0.9
mA
0.2 0.5 0.9
2
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