TSC2010, TSC2011, TSC2012
Datasheet
High voltage, precision, bidirectional current sense amplifiers
Features
•
•
•
•
Wide common mode voltage: - 20 to 70 V
Offset voltage: ± 200 µV max
2.7 to 5.5 V supply voltage
Different gain available
–
TSC2010: 20 V/V
–
TSC2011: 60 V/V
–
TSC2012: 100 V/V
Gain error: 0.3% max
Offset drift: 5 µV/°C max
Quiescent current: 20 µA in shutdown mode
SO8 and MiniSO8 package
SO8
MiniSO8
•
•
•
•
Applications
•
•
•
•
•
•
•
High-side current sensing
Low-side current sensing
Data acquisition and instrumentation
Test and measurement equipment
Industrial process control
Motor control
Solenoid control
Maturity status link
TSC2010, TSC2011, TSC2012
Description
The
TSC2010, TSC2011
and
TSC2012
are precision bidirectional current sense
amplifiers. They can sense the current thanks to a shunt resistor over a wide range of
common mode voltages, from - 20 to + 70 V, whatever the supply voltage is. They
are available with an amplifier gain of 20V/V for
TSC2010,
60 V/V for
TSC2011
and
100 V/V for
TSC2012.
They are able to sense very low drop voltages as low as 10 mV full scale minimizing
the measurement error.
The
TSC2010, TSC2011
and
TSC2012
can also be used in other functions such as:
precision current measurement, overcurrent protection, current monitoring, and
feedback loops.
This device fully operates over the broad supply voltage range from 2.7 to 5.5 V and
over the industrial temperature range from -40 to 125 °C.
DS13057
-
Rev 4
-
August 2020
For further information contact your local STMicroelectronics sales office.
www.st.com
TSC2010, TSC2011, TSC2012
Diagram
1
Diagram
Figure 1.
Block diagram
DS13057
-
Rev 4
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TSC2010, TSC2011, TSC2012
Pin configuration
2
Pin configuration
Figure 2.
Pin connection (top view)
Table 1.
Pin description
Pin
1
2
3
4
5
6
7
8
Pin name
IN -
GND
VREF2
SHDN
OUT
VCC
VREF1
IN +
Negative input
Ground
Reference voltage 2
Shutdown
Output
Supply voltage
Reference voltage 1
Positive input
Description
DS13057
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Rev 4
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TSC2010, TSC2011, TSC2012
Maximum ratings
3
Maximum ratings
Table 2.
Absolute maximum ratings
Symbol
V
CC
V
ICM
V
DIF
V
REF1
V
REF2
V
OUT
I
IN
T
STG
T
J
Supply voltage
(1)
Common mode voltage on input pins
Differential voltage between input pins (In+, In-)
Voltage present on pins Ref1, Ref2, Out
Input current to any pins
(2)
Storage temperature
Junction temperature
Thermal resistance junction to ambient
(3)(4)
R
THJA
SO8
MiniSO8
ESD
Human body model (HBM)
(5)
Charged device model (CDM)
(6)
Latch-up immunity
125
190
2000
1000
200
V
mA
°C/W
Parameter
Value
-0.3 to 7
-25 to 76
7
Gnd - 0.3 to V
cc
+ 0.3
5
-65 to 150
150
Unit
V
V
V
V
mA
°C
°C
1. All voltage values, except the differential voltage are with respect to the network ground terminal.
2. Input voltage can go beyond supply voltage but input current must be limited. Using a serial resistor with the input is highly
recommended in that case.
3. Short-circuits can cause excessive heating and destructive dissipation.
4. R
th
are typical values.
5. According to JEDEC standard JESD22-A114F.
6. According to ANSI/ESD STM5.3.1.According to ANSI/ESD STM5.3.1.
Table 3.
Operating conditions
Symbol
V
cc
V
icm
V
ref
T
Supply voltage
Common mode voltage on input pins
Output offset adjustment range
Operating free-air temperature range
Parameter
Value
2.7 to 5.5
-20 to +70
0 to V
cc
-40 to 125
Unit
V
V
V
°C
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Rev 4
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TSC2010, TSC2011, TSC2012
Electrical characteristics
4
Electrical characteristics
Table 4.
Electrical characteristics V
cc
= 2.7 V, V
icm
= 12 V, T = 25 °C (unless otherwise specified).
Symbol
Power supply
V
icm
= -20 to 70 V
T
min
< T < T
max
V
icm
= - 20 to 70 V
T
min
< T < T
max
20
1.5
2.3
2.3
50
150
Parameter
Conditions
Min.
Typ.
Max.
Unit
Current consumption
I
cc
Current consumption with
shutdown active
Input
mA
µA
V
icm
= 1 V
|V
os
|
Offset voltage (RTI)
(1)
200
700
µV
500
1100
5
8
90
85
350
-400
100
-150
350
123.6
122.4
40.5
39.3
23.9
22.7
mV
600
µA
115
µV/°C
T
min
< T < T
max
V
icm
= 12 V
T
min
< T < T
max
|ΔV
os
/ΔT|
Offset drift vs. temperature
V
icm
= 1 V, T
min
< T < T
max
V
icm
= 12 V, T
min
< T < T
max
V
icm
= -20 to 70 V, DC mode
T
min
< T < T
max
V
icm
= 12 V
T
min
< T < T
max
, V
icm
= -20 to 70 V
V
icm
= 12 V
T
min
< T < T
max
, V
icm
= - 20 to 70 V
TSC2010
T
min
< T < T
max
CMR
Common mode rejection
dB
I
ib+
Input bias current
I
ib-
Input bias current
|V
sense
|
Vsense operating range with
Eg ≤ 0.3%
(2)
TSC2011
T
min
< T < T
max
TSC2012
T
min
< T < T
max
Output
TSC2010
G
Gain
TSC2011
TSC2012
Eg
ΔEg/ΔT
NLE
V
cc
- V
oh
Gain error vs. temperature
Gain error drift
Linearity error
Drop voltage output high
ΔV
out
= 100 mV to (V
cc
- 100 mV)
T
min
< T < T
max
T
min
< T < T
max
V
icm
= 12 V
I
source
= 0.2 mA
T
min
< T < T
max
0.03
8
15
20
20
60
100
0.3
0.3
25
%
ppm/°C
%
mV
V/V
DS13057
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Rev 4
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