TS27L2BIDT

TS27L2C,I,M
4/9
ELECTRICAL CHARACTERISTICS
V
CC
+
= +10V, V
CC
-
= 0V, T
amb
= +25°C (unless otherwise specified)
Symbol Parameter
TS27L2C/AC/BC
TS27L2I/AI/BI
TS27L2M/AM/BM
Unit
Min. Typ. Max. Min. Typ. Max.
V
io
Input Offset Voltage
V
O
= 1.4V, V
ic
= 0V TS27L2C/I/M
TS27L2AC/AI/AM
TS27L2B/C/I/M
T
min
T
amb
T
max
TS27L2C/I/M
TS27L2AC/AI/AM
TS27L2B/C/I/M
1.1
0.9
0.25
10
5
2
12
6.5
3
1.1
0.9
0.25
10
5
2
12
6.5
3.5
mV
DV
io
Input Offset Voltage Drift 2 2 µV/°C
I
io
Input Offset Current note
1)
V
ic
= 5V, V
O
= 5V
T
min
T
amb
T
max
1. Maximum values including unavoidable inaccuracies of the industrial test.
1
100
1
200
pA
I
ib
Input Bias Current - see note 1
V
ic
= 5V, V
O
= 5V
T
min
T
amb
T
max
1
150
1
300
pA
V
OH
High Level Output Voltage
V
id
= 100mV, R
L
= 1M
T
min
T
amb
T
max
8.8
8.7
98.8
8.6
9V
V
OL
Low Level Output Voltage
V
id
= -100mV
50 50
mV
A
vd
Large Signal Voltage Gain
V
iC
= 5V, R
L
= 1M
Ω,
V
o
= 1V to 6V
T
min
T
amb
T
max
60
45
100 60
40
100 V/mV
GBP
Gain Bandwidth Product
A
v
= 40dB, R
L
= 1M
Ω,
C
L
= 100pF, f
in
= 100kHz
0.1 0.1
MHz
CMR
Common Mode Rejection Ratio
V
iC
= 1V to 7.4V, V
o
= 1.4V
65 80 65 80
dB
SVR
Supply Voltage Rejection Ratio
V
CC
+
= 5V to 10V, V
o
= 1.4V
60 80 60 80
dB
I
CC
Supply Current (per amplifier)
A
v
= 1, no load, V
o
= 5V
T
min
T
amb
T
max
10 15
17
10 15
18
µA
I
o
Output Short Circuit Current
V
o
= 0V, V
id
= 100mV
60 60
mA
I
sink
Output Sink Current
V
o
= V
CC
, V
id
= -100mV
45 45
mA
SR
Slew Rate at Unity Gain
R
L
= 1M
, C
L
= 100pF, V
i
= 3 to 7V
0.04 0.04
V/
µ
s
φ
m
Phase Margin at Unity Gain
A
v
= 40dB, R
L
= 1M
, C
L
= 100pF
45 45
Degrees
K
OV
Overshoot Factor 30 30 %
e
n
Equivalent Input Noise Voltage
f = 1kHz, R
s
= 100
68 68
V
o1
/V
o2
Channel Separation 120 120 dB
nV
Hz
------------
TS27L2C,I,M
5/9
TYPICAL CHARACTERISTICS
Figure 1 : Supply Current (each amplifier) versus
Supply Voltage
Figure 2 : Input Bias Current versus Free Air
Temperature
Figure 3a : High Level Output Voltage versus
High Level Output Current
Figure 3b : High Level Output Voltage versus
High Level Output Current
Figure 4a : Low Level Output Voltage versus Low
Level Output Current
Figure 4b : Low Level Output Voltage versus Low
Level Output Current
CC
SUPPLY VOLTAGE, V (V)
CC
amb
V
OCC
°
0481216
20
µ
SUPPLY CURRENT, I ( A)
T=25C
A=1
V=V /2
15
10
5
25 50 75 100 125
amb
INPUT BIAS CURRENT, I (pA)
IB
TEMPERATURE, T ( C)
°
V = 10V
V=5V
CC
i
100
10
1
5
4
3
2
1
0
-10 -8 -6 -4 -2 0
OH
OUTPUT CURRENT, I (mA)
OUTPUT VOLTAGE, V (V)
OH
amb
id
T = 25 C
V = 100mV
°
V=5V
V=3V
CC
CC
20
16
12
8
4
0
-50 -40 -30 -20 -10 0
amb
id
°
T = 25 C
V = 100mV
V = 16V
CC
CC
V = 10V
OUTPUT CURRENT, I (mA)
OH
OH
OUTPUT VOLTAGE, V (V)
1.0
0.8
0.6
0.4
0.2
amb
ic
id
T=25°C
V = 0.5V
V = -100mV
V=3V
V=5V
CC
CC
OL
OUTPUT VOLTAGE, V
(V)
0123
OUTPUT CURRENT, I (mA)
OL
0 4 8121620
OUTPUT VOLTAGE, V (V)
OL
amb
id
i
T = 25°C
V=0.5V
V = -100mV
CC
V=10V
CC
V=16V
OUTPUT CURRENT, I (mA)
OL
3
2
1
TS27L2C,I,M
6/9
Figure 5 : Open Loop Frequency Response and
Phase Shift
Figure 6 : Gain Bandwidth Product versus Supply
Voltage
Figure 7 : Phase Margin versus Supply Voltage
Figure 8 : Phase Margin versus Capacitive Load
Figure 9 : Slew Rate versus Supply Voltage
Figure 10 : Input Voltage Noise versus
Frequency
50
40
30
20
10
0
-10
6
10
10
23
10
4
10
5
10
7
10
GAIN (dB)
PHASE (Degrees)
0
45
90
135
180
FREQUENCY, f (Hz)
T = 25°C
V=10V
R=1M
C = 100pF
A=100
amb
CC
L
L
VCL
PHASE
GAIN
Phase
Margin
Gain
Bandwidth
Product
+
0481216
GAIN BANDW. PROD., GBP (MHz)
amb
L
L
V
T = 25°C
R=1M
C = 100pF
A=1
SUPPLY VOLTAGE, V (V)
CC
120
100
80
60
40
60
04 8 1216
SUPPLY VOLTAGE, V (V)
CC
amb
L
L
T=25°C
R=1M
C = 100pF
A=1
V
PHASE MARGIN, m (Degrees)
φ
50
40
30
80
70
60
50
40
L
CAPACITANCE, C (pF)
PHASE MARGIN, m (Degrees)
φ
200
80
100
6040
T=25°C
R=1M
A=1
V=10V
amb
L
V
CC
0.05
0.04
0.03
0.02
4 6 8 10 12 14 16
SUPPLY VOLTAGE, V (V)
CC
SLEW RATES, SR (V/
µ
s)
amb
L
L
T=25°C
R=1M
C = 100pF
SR
SR
300
200
100
0
EQUIVALENT INPUT NOISE
VOLTAGE (nV/VHz)
110
100
1000
FREQUENCY (Hz)
= 10V
=25°C
T
amb
V
CC
=100
R
S

TS27L2BIDT

Mfr. #:
Manufacturer:
STMicroelectronics
Description:
Operational Amplifiers - Op Amps Dual Prec Low-Power
Lifecycle:
New from this manufacturer.
Delivery:
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Payment:
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