TS27M4C, TS27M4I, TS27M4M Electrical characteristics
7/14
Figure 3. Supply current (each amplifier)
versus supply voltage
Figure 4. Input bias current versus free air
temperature
CC
SUPPLY VOLTAGE, V (V)
CC
AMB
V
O CC
˚
0 4 8 12 16
200
150
100
50
μ
SUPPLY CURRENT, I ( A)
T = 25 C
A = 1
V = V / 2
25 50 75 100 125
AMB
INPUT BIAS CURRENT, I (pA)
IB
TEMPERATURE, T ( C)
˚
V = 10V
V = 5V
CC
i
100
10
1
Figure 5. High level output voltage versus
high level output current
Figure 6. High level output voltage versus
high level output current
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)
Figure 7. Low level output voltage versus low
level output current
Figure 8. Low level output voltage versus low
level output current
1.0
0.8
0.6
0.4
0.2
AMB
i
ID
V = 3V
V = 5V
CC
CC
˚
OUTPUT CURRENT, I (mA)
OL
OL
OUTPUT VOLTAGE, V (V)
0 1 2 3
T = 25 C
V = 0.5V
V = -1V
3
2
1
0 4 8 12 16 20
OUTPUT CURRENT, I (mA)
OL
OUTPUT VOLTAGE, V (V)
OL
AMB
ID
i
T = 25 C
V = 0.5V
V = -1V
˚
CC
V = 10V
CC
V = 16V
Electrical characteristics TS27M4C, TS27M4I, TS27M4M
8/14
Figure 9. Open loop frequency response and
phase shift
Figure 10. Gain bandwidth product versus
supply voltage
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 = 100k
Ω
C = 100pF
A = 100
amb
CC
L
L
VCL
PHASE
GAIN
Phase
Margin
Gain
Bandwidth
Product
+
SUPPLY VOLTAGE, V (V)
CC
0 4 8 12 16
1800
1400
1000
600
200
T = 25˚C
R = 100kΩ
C = 100pF
A = 1
amb
L
L
V
GAIN BANDW. PROD., GBP (kHz)
Figure 11. Phase margin versus supply
voltage
Figure 12. Phase margin versus capacitive
load
0 4 8 12 16
SUPPLY VOLTAGE, V (V)
CC
PHASE MARGIN, m (Degrees)
φ
50
40
30
20
T = 25˚C
R = 100kΩ
C = 100pF
A = 1
amb
L
L
V
0 20 40 60 80 100
CAPACITANCE, C (pF)
L
PHASE MARGIN, m (Degrees)
φ
80
70
60
50
40
T = 25˚C
R = 100kΩ
A = 1
V = 10V
amb
L
V
CC
Figure 13. Slew rate versus supply voltage Figure 14. Input voltage noise versus
frequency
4 6 8 10 12 14 1
SUPPLY VOLTAGE, V (V)
CC
SLEW RATES, SR (V/
μ
s)
amb
L
L
T = 25˚C
R = 100kΩ
C = 100pF
SR
SR
0.9
0.8
0.7
0.6
0.5
0.4
300
200
100
0
EQUIVALENT INPUT NOISE
VOLTAGE (nV/VHz )
1
10
100
1000
FREQUENCY (Hz)
= 10V
= 25˚C
T
am b
V
CC
= 100
Ω
R
S
TS27M4C, TS27M4I, TS27M4M Package information
9/14
4 Package information
In order to meet environmental requirements, STMicroelectronics offers these devices in
ECOPACK
®
packages. These packages have a lead-free second level interconnect. The
category of second level interconnect is marked on the package and on the inner box label,
in compliance with JEDEC Standard JESD97. The maximum ratings related to soldering
conditions are also marked on the inner box label. ECOPACK is an STMicroelectronics
trademark. ECOPACK specifications are available at: www.st.com
.
4.1 DIP14 package information
Figure 15. DIP14 package mechanical drawing
Table 4. DIP14 package mechanical data
Ref.
Millimeters Inches
Min. Typ. Max. Min. Typ. Max.
a1 0.51 0.020
B 1.39 1.65 0.055 0.065
b0.5 0.020
b1 0.25 0.010
D200.787
E8.5 0.335
e 2.54 0.100
e3 15.24 0.600
F 7.1 0.280
I 5.1 0.201
L3.3 0.130
Z 1.27 2.54 0.050 0.100

TS27M4CDT

Mfr. #:
Manufacturer:
STMicroelectronics
Description:
Operational Amplifiers - Op Amps Quad Prec Low-Power
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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