ACS716
120 kHz Bandwidth, High Voltage Isolation
Current Sensor with Integrated Overcurrent Detection
PERFORMANCE CHARACTERISTICS , T A Range K, valid at T A = – 40°C to 125°C, V CC = 3.3 V; unless otherwise specified
Characteristic
Symbol
Test Conditions
Min.
Typ.
Max.
Units
X 6BB CHARACTERISTICS
Optimized Accuracy Range 1
Linear Sensing Range
Noise 2
I POA
I R
V NOISE(rms) T A = 25°C, Sens = 100 mV/A, C f = 0, C LOAD = 4.7 nF, R LOAD open
I P = 6.5 A, T A = 25°C
–7.5
–14
3.0
100
7.5
14
A
A
mV
mV/A
Sensitivity 3
Electrical Offset Voltage
Variation Relative to
V OUT(QBI)4
Total Output Error 5
Sens
V OE
E TOT
I P = 6.5 A, T A = 25°C to 125°C
I P = 6.5 A, T A = – 40°C to 25°C
I P = 0 A, T A = 25°C
I P = 0 A, T A = 25°C to 125°C
I P = 0 A, T A = – 40°C to 25°C
Over full scale of I POA , I P applied for 5 ms, T A = 25°C to 125°C
Over full scale of I POA , I P applied for 5 ms, T A = – 40°C to 25°C
100
101
±11
±11
±35
±2.2
±6
mV/A
mV/A
mV
mV
mV
%
%
1 Although the device is accurate over the entire linear range, the device is programmed for maximum accuracy over the range defined by I POA .
The reason for this is that in many applications, such as motor control, the start-up current of the motor is approximately three times higher than the
running current.
2 V pk-pk noise (6 sigma noise) is equal to 6 × V NOISE(rms) . Lower noise levels than this can be achieved by using C f for applications requiring narrower
bandwidth. See Characteristic Performance page for graphs of noise versus C f and bandwidth versus C f .
3 This parameter can drift by as much as 2.4% over the lifetime of this product.
4 This parameter can drift by as much as 13 mV over the lifetime of this product.
5 This parameter can drift by as much as 2.5% over the lifetime of this product.
PERFORMANCE CHARACTERISTICS , T A Range K, valid at T A = – 40°C to 125°C, V CC = 3.3 V; unless otherwise specified
Characteristic
Symbol
Test Conditions
Min.
Typ.
Max.
Units
X 12CB CHARACTERISTICS
Optimized Accuracy Range 1
Linear Sensing Range
Noise 2
I POA
I R
V NOISE(rms) T A = 25°C, Sens = 37 mV/A, C f = 0, C LOAD = 4.7 nF, R LOAD open
I P = 12.5 A, T A = 25°C
–12.5
–37.5
1.0
37.1
12.5
37.5
A
A
mV
mV/A
Sensitivity 3
Electrical Offset Voltage
Variation Relative to
V OUT(QBI)4
Total Output Error 5
Sens
V OE
E TOT
I P = 12.5 A, T A = 25°C to 125°C
I P = 12.5 A, T A = – 40°C to 25°C
I P = 0 A, T A = 25°C
I P = 0 A, T A = 25°C to 125°C
I P = 0 A, T A = – 40°C to 25°C
Over full scale of I POA , I P applied for 5 ms, T A = 25°C to 125°C
Over full scale of I POA , I P applied for 5 ms, T A = – 40°C to 25°C
37.0
37.7
±6
±11
±21
±2.7
±6.5
mV/A
mV/A
mV
mV
mV
%
%
1 Although the device is accurate over the entire linear range, the device is programmed for maximum accuracy over the range defined by I POA .
The reason for this is that in many applications, such as motor control, the start-up current of the motor is approximately three times higher than the
running current.
2 V pk-pk noise (6 sigma noise) is equal to 6 × V NOISE(rms) . Lower noise levels than this can be achieved by using C f for applications requiring narrower
bandwidth. See Characteristic Performance page for graphs of noise versus C f and bandwidth versus C f .
3 This parameter can drift by as much as 2.4% over the lifetime of this product.
4 This parameter can drift by as much as 13 mV over the lifetime of this product.
5 This parameter can drift by as much as 2.5% over the lifetime of this product.
Allegro MicroSystems, LLC
115 Northeast Cutoff
Worcester, Massachusetts 01615-0036 U.S.A.
1.508.853.5000; www.allegromicro.com
8
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