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What is TS27M2C?

This electronic component, produced by the manufacturer "STMicroelectronics", performs the same function as "PRECISION LOW POWER CMOS DUAL OPERATIONAL AMPLIFIERS".


TS27M2C Datasheet PDF - STMicroelectronics

Part Number TS27M2C
Description PRECISION LOW POWER CMOS DUAL OPERATIONAL AMPLIFIERS
Manufacturers STMicroelectronics 
Logo STMicroelectronics Logo 


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TS27M2C,I,M
PRECISION LOW POWER
CMOS DUAL OPERATIONAL AMPLIFIERS
s LOW POWER CONSUMPTION : 150µA/op
s OUTPUT VOLTAGE CAN SWING TO
GROUND
s EXCELLENT PHASE MARGIN ON
CAPACITIVE LOADS
s STABLE AND LOW OFFSET VOLTAGE
s THREE INPUT OFFSET VOLTAGE
SELECTIONS
DESCRIPTION
These devices are low cost, low power dual oper-
ational amplifiers designed to operate with single
or dual supplies. These operational amplifiers use
the ST silicon gate CMOS process allowing an ex-
cellent consumption-speed ratio. These series are
ideally suited for low consumption applications.
Three power consumptions are available allowing
to have always the best consumption-speed ratio:
u ICC = 10µA/amp.: TS27L2 (very low power)
u ICC = 150µA/amp.: TS27M2 (low power)
u ICC = 1mA/amp.: TS272 (standard)
These CMOS amplifiers offer very high input im-
pedance and extremely low input currents. The
major advantage versus JFET devices is the very
low input currents drift with temperature (see fig-
ure 2).
ORDER CODE
Part Number Temperature Range
TS27M2C/AC/BC
0°C, +70°C
TS27M2I/AI/BI
-40°C, +125°C
TS27M2M/AM/BM -55°C, +125°C
Example : TS27M2ACN
Package
NDP
•••
•••
•••
N = Dual in Line Package (DIP)
D = Small Outline Package (SO) - also available in Tape & Reel (DT)
P = Thin Shrink Small Outline Package (TSSOP) - only available
in Tape & Reel (PT)
N
DIP8
(Plastic Package)
D
SO8
(Plastic Micropackage)
P
TSSOP8
(Thin Shrink Small Outline Package)
PIN CONNECTIONS (top view)
1
2-
3+
4
8
7
-6
+5
1 - Output 1
2 - Inverting Input 1
3 - Non-inverting Input 1
4 - V CC -
5 - Non-inverting Input 2
6 - Inverting Input 2
7 - Output 2
8 - V CC +
November 2001
1/9

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TS27M2C equivalent
TYPICAL CHARACTERISTICS
Figure 1 : Supply Current (each amplifier) versus
Supply Voltage
200
TAMB = 25˚C
AV= 1
150 VO = VCC / 2
100
50
0 4 8 12 16
SUPPLY VOLTAGE, V CC (V)
Figure 2 : Input Bias Current versus Free Air
Temperature
100
VCC = 10V
V i = 5V
10
1
25
50 75 100
TEMPERATURE, TAMB (˚C)
125
Figure 3a : High Level Output Voltage versus
High Level Output Current
5
TAMB = 25˚ C
4 VID = 100mV
3 VCC= 5V
2
VCC = 3V
1
0
-10
-8 -6
-4 -2
OUTPUT CURRENT, I OH (mA)
0
TS27M2C,I,M
Figure 3b : High Level Output Voltage versus
High Level Output Current
20
TAMB = 25˚C
16 VID = 100mV
12
VCC = 16V
8 VCC = 10V
4
0
-50
-40 -30 -20 -10
OUTPUT CURRENT, I OH (mA)
0
Figure 4a : Low Level Output Voltage versus Low
Level Output Current
1.0
VCC = 3V
0.8
VCC = 5V
0.6
0.4
TAMB = 25˚C
0.2 Vi = 0.5V
VID = -1V
0 1 23
OUTPUT CURRENT, I OL (mA)
Figure 4b : Low Level Output Voltage versus Low
Level Output Current
3
VCC = 10V
2 VCC = 16V
1
TAMB = 25˚C
Vi = 0.5V
VID = -1V
0 4 8 12 16 20
OUTPUT CURRENT, I OL (mA)
5/9


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Part Details

On this page, you can learn information such as the schematic, equivalent, pinout, replacement, circuit, and manual for TS27M2C electronic component.


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