TSZ182IYST STMicroelectronics, High Bandwidth, Op Amp, 2.8MHz, Maximum of 5.5 V, 8-Pin MiniSO

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Subtotal (1 pack of 5 units)*

£18.95

(exc. VAT)

£22.75

(inc. VAT)

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Units
Per unit
Per Pack*
5 - 5£3.79£18.95
10 - 95£3.206£16.03
100 - 495£2.67£13.35
500 - 995£2.604£13.02
1000 +£2.54£12.70

*price indicative

Packaging Options:
RS Stock No.:
175-0753
Mfr. Part No.:
TSZ182IYST
Brand:
STMicroelectronics
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Brand

STMicroelectronics

Amplifier Type

High Bandwidth

Mounting Type

Surface Mount

Package Type

MiniSO

Power Supply Type

Single

Number of Channels per Chip

2

Pin Count

8

Typical Single Supply Voltage

Maximum of 5.5 V

Typical Gain Bandwidth Product

2.8MHz

Output Type

Rail to Rail

Typical Slew Rate

4.5V/µs

Maximum Operating Temperature

+125 °C

Minimum Operating Temperature

-40 °C

Output Current

11 mA @ ISource, 15 mA @ Isink

Offset Voltage

45µV

Typical Voltage Gain

130 dB

Maximum Input Voltage

5.5 V

Minimum Input Voltage

2.2 V

Width

3.1mm

Length

3.2mm

Height

0.95mm

Typical Input Voltage Noise Density

40nV/√Hz

Input Voltage Range

2.2 → 5.5 V

Dimensions

3.2 x 3.1 x 0.95mm

Input Offset Current

600pA

COO (Country of Origin):
PH
The TSZ181, TSZ182 are single and dual operational amplifiers featuring very low offset voltages with virtually zero drift versus temperature changes.
The TSZ181, TSZ182 offer rail-to-rail input and output, excellent speed/power consumption ratio, and 3 MHz gain bandwidth product, while consuming just 1 mA at 5 V. The device also features an ultra-low input bias current.
These features make the TSZ18x ideal for high-accuracy high-bandwidth sensor interfaces

Very high accuracy and stability: offset voltage 25 μV max. at 25 °C, 35 μV over full temperature range (-40 °C to 125 °C)
Rail-to-rail input and output
Low supply voltage: 2.2 - 5.5 V
Low power consumption: 1 mA max. at 5 V
Gain bandwidth product: 3 MHz
Automotive qualification
Extended temperature range: -40 to 125 °C
Micropackages: DFN8 2x2, SO8 and MiniSO8
Benefits:
Higher accuracy without calibration
Accuracy virtually unaffected by temperature change