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TS274ACNSTN/a996avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274ACNSTMN/a3000avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274AIDSTN/a2500avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274AIDTSTN/a2500avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274BCNSTMN/a11avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274CDSTN/a1950avaiHIGH SPEED QUAD CMOS OP-AMPS
TS274CDTSTN/a60000avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274CNSTN/a12254avaiHIGH SPEED QUAD CMOS OP-AMPS
TS274IDTSTN/a2500avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274INSTMN/a250avaiHIGH SPEED QUAD CMOS OP-AMPS
TS274ACDSTN/a2500avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274ACDTSTN/a4963avaiHIGH PERFORMANCE CMOS QUAD OP-AMPS
TS274IDSTMN/a15000avaiHIGH SPEED QUAD CMOS OP-AMPS


TS274CDT ,HIGH PERFORMANCE CMOS QUAD OP-AMPSBLOCK DIAGRAM VCCCurrentx IOutputInputsource Secondstagedifferential OutputstageVCCE E
TS274CN ,HIGH SPEED QUAD CMOS OP-AMPSTS274C,I,MHIGH PERFORMANCECMOS QUAD OPERATIONAL AMPLIFIERS ■ OUTPUT VOLTAGE CAN SWING TO GROUN ..
TS274I ,HIGH SPEED CMOS QUAD OPERATIONAL AMPLIFIERSBLOCK DIAGRAMVCCCurrentxIOutputInputsource Secondstagedifferential OutputstageVCCE EMAXIMUM RATINGS ..
TS274ID ,HIGH SPEED QUAD CMOS OP-AMPSABSOLUTE MAXIMUM RATINGS Symbol Parameter TS274C/AC/BC TS274I/AI/BI TS274M/AM/BM Unit+ 1)V 18 ..
TS274IDT ,HIGH PERFORMANCE CMOS QUAD OP-AMPSapplications.Three power consumptions are available allowingto have always the best consumption-spe ..
TS274IN ,HIGH SPEED QUAD CMOS OP-AMPSTS274C,I,MHIGH PERFORMANCECMOS QUAD OPERATIONAL AMPLIFIERS ■ OUTPUT VOLTAGE CAN SWING TO GROUN ..
U62256ADC07LLG1 , STANDARD 32K X 8 SRAM
U62256AS2C07LLG1 , STANDARD 32K X 8 SRAM
U62256AS2K07LLG1 , STANDARD 32K X 8 SRAM
U6264ADC-07LL , STANDARD 8K X 8 SRAM
U6264ADK07LL , STANDARD 8K X 8 SRAM
U6264ADK-07LL , STANDARD 8K X 8 SRAM


TS274ACD-TS274ACDT-TS274ACN-TS274AID-TS274AIDT-TS274BCN-TS274CD-TS274CDT-TS274CN-TS274ID-TS274IDT-TS274IN
HIGH PERFORMANCE CMOS QUAD OP-AMPS
OUTPUT VOLTAGE CAN SWING TOGROUND EXCELLENT PHASE MARGIN ON
CAPACITIVE LOADS GAIN BANDWIDTH PRODUCT: 3.5MHz STABLE AND LOW OFFSET VOLTAGE THREE INPUT OFFSET VOLTAGE
SELECTIONS
DESCRIPTION

The TS274 devices are low cost, quad operational
amplifiers designed to operate with single or dual
supplies. These operational amplifiers use the ST
silicon gate CMOS process allowing an excellent
consumption-speed ration. These series are ideal-
ly suited for low consumption applications.
Three power consumptions are available allowing
to have always the best consumption-speed ratio: ICC = 10μA/amp.: TS27L4 (very low power)ICC = 150μA/amp.: TS27M4 (low power)ICC = 1mA/amp.: TS274 (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
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)

PIN CONNECTIONS (top view)
TS274C,I,M

HIGH PERFORMANCE
CMOS QUAD OPERATIONAL AMPLIFIERS
TS274C,I,M
BLOCK DIAGRAM
ABSOLUTE MAXIMUM RATINGS
OPERATING CONDITIONS
All values, except differential voltage are with respect to network ground terminal. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal. The magnitude of the input and the output voltages must never exceed the magnitude of the positive supply voltage.
TS274C,I,M
SCHEMATIC DIAGRAM (for 1/4 TS274)
TS274C,I,M
ELECTRICAL CHARACTERISTICS

VCC+ = +10V, VCC- = 0V, Tamb = +25°C (unless otherwise specified) Maximum values including unavoidable inaccuracies of the industrial test.
TS274C,I,M
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
TS274C,I,M
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
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