Electrical characteristics TSC101
4/18 Doc ID 13313 Rev 3
3 Electrical characteristics
Table 4. Supply
(1)
Symbol Parameter Test conditions Min. Typ. Max. Unit
I
CC
Total supply current
V
sense
=0V
T
min
< T
amb
< T
max
165 300 µA
1. Unless otherwise specified, the test conditions are T
amb
= 25°C, V
CC
=12V, V
sense
=V
p
-V
m
=50mV, V
m
= 12 V, no load
on Out.
Table 5. Input
(1)
Symbol Parameter Test conditions Min. Typ. Max. Unit
CMR
Common mode rejection
Variation of V
out
versus V
icm
referred to input
(2)
2.8 V < V
icm
< 30 V
T
min
< T
amb
< T
max
90 105 dB
SVR
Supply voltage rejection
Variation of V
out
versus V
CC
(3)
4.0 V < V
CC
< 24 V
V
sense
=30mV
T
min
< T
amb
< T
max
90 105 dB
V
os
Input offset voltage
(4)
T
amb
= 25° C
T
min
< T
amb
< T
max
±0.2
±0.9
±1.5
±2.3
mV
dV
os
/dT Input offset drift vs. T T
min
< T
amb
< T
max
-3 µV/°C
I
lk
Input leakage current
V
CC
= 0 V
T
min
< T
amb
< T
max
A
I
ib
Input bias current
V
sense
= 0 V
T
min
< T
amb
< T
max
5.5 8 µA
1. Unless otherwise specified, the test conditions are T
amb
= 25°C, V
CC
=12V, V
sense
=V
p
-V
m
=50mV, V
m
= 12 V, no load
on Out.
2. See Section 4.1: Common mode rejection ratio (CMR) on page 11 for the definition of CMR.
3. See Section 4.2: Supply voltage rejection ratio (SVR) on page 11 for the definition of SVR.
4. See Section 4.3: Gain (Av) and input offset voltage (V
os
) on page 11 for the definition of V
os
.
TSC101 Electrical characteristics
Doc ID 13313 Rev 3 5/18
Table 6. Output
(1)
Symbol Parameter Test conditions Min. Typ. Max. Unit
Av Gain
TSC101A
TSC101B
TSC101C
20
50
100
V/V
ΔAv Gain accuracy
T
amb
= 25°C
T
min
< T
amb
< T
max
±2.5
±4.5
%
ΔV
out
/ΔT Output voltage drift vs. T
(2)
T
min
< T
amb
< T
max
0.4 mV/°C
ΔV
out
/ΔI
out
Output stage load regulation
-10 mA < I
out
<10 mA
I
out
sink or source current
34mV/mA
ΔV
out
Total output voltage accuracy
(3)
V
sense
= 50 mV T
amb
= 25°C
T
min
< T
amb
< T
max
±2.5
±4.5
%
ΔV
out
Total output voltage accuracy
V
sense
= 100 mV T
amb
= 25° C
T
min
< T
amb
< T
max
±3.5
±5
%
ΔV
out
Total output voltage accuracy
V
sense
= 20 mV T
amb
= 25°C
T
min
< T
amb
< T
max
±8
±11
%
ΔV
out
Total output voltage accuracy
V
sense
= 10 mV T
amb
= 25°C
T
min
< T
amb
< T
max
±15
±20
%
I
sc-sink
Short-circuit sink current
Out connected to V
CC,
V
sense
= -1 V
30 60 mA
I
sc-source
Short-circuit source current
Out connected to Gnd
V
sense
= 1 V
15 26 mA
V
oh
Output stage high-state saturation
voltage
V
oh
=V
CC
-V
out
V
sense
= 1 V
I
out
= 1 mA
0.8 1 V
V
ol
Output stage low-state saturation
voltage
V
sense
= -1 V
I
out
= 1 mA
50 100 mV
1. Unless otherwise specified, the test conditions are T
amb
= 25°C, V
CC
= 12 V, V
sense
= V
p
-V
m
= 50 mV, V
m
= 12 V, no load on
Out.
2. See Output voltage drift versus temperature on page 12 for the definition.
3. Output voltage accuracy is the difference with the expected theoretical output voltage V
out-th
= Av*V
sense
.
See Output voltage accuracy on page 13 for a more detailed definition.
Electrical characteristics TSC101
6/18 Doc ID 13313 Rev 3
Table 7. Frequency response
(1)
Symbol Parameter Test conditions Min. Typ. Max. Unit
ts Output settling to 1% final value
V
sense
= 10 mV to 100 mV
C
load
= 47 pF
(2)
TSC101A
TSC101B
TSC101C
3
6
10
µs
SR Slew rate V
sense
= 10 mV to 100 mV 0.55 0.9 V/µs
BW 3dB bandwidth
C
load
= 47 pF
(2)
V
sense
= 100 mV
TSC101A
TSC101B
TSC101C
500
670
450
kHz
1. Unless otherwise specified, the test conditions are T
amb
= 25°C, V
CC
= 12 V, V
sense
= V
p
-V
m
= 50 mV, V
m
= 12 V, no load
on Out.
2. For stability purposes, we do not recommend using a greater value of load capacitor.
Table 8. Noise
(1)
Symbol Parameter Test conditions Min. Typ. Max. Unit
Total output voltage noise 50 nV/ Hz
1. Unless otherwise specified, the test conditions are T
amb
= 25°C, V
CC
= 12 V, V
sense
= V
p
-V
m
= 50 mV, V
m
= 12 V, no load
on Out.

TSC101CIYLT

Mfr. #:
Manufacturer:
STMicroelectronics
Description:
Current Sense Amplifiers CONDITIONING & INTERFACES
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