TS914AIDT STMicroelectronics, CMOS, Op Amp, RRIO, 1.4MHz 100 kHz, 2.7 → 16 V, 14-Pin SO

Subtotal (1 reel of 2500 units)*

£2,195.00

(exc. VAT)

£2,635.00

(inc. VAT)

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Units
Per unit
Per Reel*
2500 +£0.878£2,195.00

*price indicative

RS Stock No.:
189-1891
Mfr. Part No.:
TS914AIDT
Brand:
STMicroelectronics
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Brand

STMicroelectronics

Amplifier Type

CMOS

Mounting Type

Surface Mount

Package Type

SO

Power Supply Type

Single

Number of Channels per Chip

4

Pin Count

14

Typical Single Supply Voltage

2.7 → 16 V

Typical Gain Bandwidth Product

1.4MHz

Output Type

Rail to Rail

Typical Slew Rate

1V/µs

Maximum Operating Frequency

100 kHz

Maximum Operating Temperature

+125 °C

Minimum Operating Temperature

-40 °C

Rail to Rail

Rail to Rail Input/Output

Output Current

40 (Sink) mA, 40 (Source) mA

Offset Voltage

5mV

Typical Voltage Gain

60 V/mV

Maximum Input Voltage

16 V

Minimum Input Voltage

2.7 V

Input Offset Current

200pA

Length

8.75mm

Typical Input Voltage Noise Density

30nV/√Hz

Dimensions

8.75 x 4 x 1.65mm

Input Voltage Range

2.7 → 16 V

Width

4mm

Height

1.65mm

The TS914 device is a rail-to-rail CMOS quad operational amplifier designed to operate with a single or dual supply voltage. The input voltage range Vicm includes the two supply rails VCC+and VCC-. The output reaches VCC- +50 mV, VCC+-50 mV, with RL= 10 kΩ, and VCC- +350 mV, VCC+-350 mV, with RL= 600 Ω. This product offers a broad supply voltage operating range from 2.7 to 16 V and a supply current of only 200 μA/amp (VCC= 3 V). The source and sink output current capability is typically 40 mA (at VCC= 3 V), fixed by an internal limitation circuit.

Rail-to-rail input and output voltage ranges
Single (or dual) supply operation from 2.7 to 16 V
Extremely low input bias current: 1 pA typical
Low input offset voltage: 5 mV max. (A grade)
Specified for 600 Ω and 100 Ω loads
Low supply current: 200 μA/ampli. (VCC= 3 V)
Latch-up immunity
Spice Macro model included in this specification
Related products
See TS56x series for better accuracy and smaller packages