TSV7722IYDT STMicroelectronics, Operational Amplifier, 22 MHz, 8-Pin 5.5V SO-8

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Subtotal (1 pack of 15 units)*

PHP1,246.56

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PHP1,396.14

(inc. VAT)

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Units
Per Unit
Per Pack*
15 - 15PHP83.104PHP1,246.56
30 - 75PHP79.393PHP1,190.90
90 - 225PHP77.909PHP1,168.64
240 - 465PHP76.425PHP1,146.38
480 +PHP74.94PHP1,124.10

*price indicative

Packaging Options:
RS Stock No.:
239-5550
Mfr. Part No.:
TSV7722IYDT
Manufacturer:
STMicroelectronics
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Brand

STMicroelectronics

Product Type

Operational Amplifier

Mount Type

Surface

Package Type

SO-8

Number of Channels

2

Pin Count

8

GBP - Gain Bandwidth Product

22MHz

Maximum Supply Voltage

5.5V

Minimum Supply Voltage

1.8V

Vos - Input Offset Voltage

50 μV

Minimum Operating Temperature

-40°C

Input Bias Current

75 pA

Slew Rate

11V/μs

Maximum Operating Temperature

125°C

Length

3mm

Standards/Approvals

ESDA-JS-001-2017

Series

TSV7722

Height

1.1mm

Automotive Standard

AEC-Q3, AEC-Q100

Input Offset Current

20 pA

The STMicroelectronics TSV7721, TSV7722 and TSV7723 are single and dual 22 MHz-bandwidth unity-gain-stable amplifiers. The input offset voltage of 200 μV max. (50 μV typ.) at room temperature, optimized for common-mode close to ground makes the TSV772x ideal for low-side current measurements. The TSV772x can operate from 1.8 V to 5.5 V single supply and it is fully specified on a load of 47 pF, therefore allowing easy usage as A/D converters input buffer. The TSV772x series offers rail-to-rail output, excellent speed/power consumption ratio, and 22 MHz gain bandwidth product, while consuming just 1.7 mA at 5 V.

Gain bandwidth product 22 MHz, unity gain stable

High accuracy input offset voltage

Low input bias current

Output rail-to-rail

Input common-mode range includes low rail

Automotive grade and shutdown versions available

The devices also feature an ultra-low input bias current that enables connection to photodiodes and other sensors where current is the key value to be measured. These features make the TSV772x series ideal for high-accuracy, high-bandwidth sensor interfaces.