STEVAL-AETKT4V1

STMicroelectronics
511-STEVAL-AETKT4V1
STEVAL-AETKT4V1

Mfr.:

Description:
Amplifier IC Development Tools Evaluation kit TSC202x family, high voltage, precision current sense amplifier

Lifecycle:
New Product:
New from this manufacturer.

In Stock: 16

Stock:
16 Can Dispatch Immediately
Factory Lead Time:
3 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1   Maximum: 10
Unit Price:
-,-- kr.
Ext. Price:
-,-- kr.
Est. Tariff:

Pricing (DKK)

Qty. Unit Price
Ext. Price
266,92 kr. 266,92 kr.

Product Attribute Attribute Value Select Attribute
STMicroelectronics
Product Category: Amplifier IC Development Tools
RoHS:  
Evaluation Kits
Current Sense
TSC200, TSC201, TSC202
Bulk
Brand: STMicroelectronics
For Use With: Automotive Motor Control
Product Type: Amplifier IC Development Tools
Factory Pack Quantity: 1
Subcategory: Development Tools
Unit Weight: 13,700 g
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Attributes selected: 0

USHTS:
9023000000
ECCN:
EAR99

STEVAL-AETKT4V1 Evaluation Kit

STMicroelectronics STEVAL-AETKT4V1 Evaluation Kit incorporates bidirectional current sense amplifiers and includes a motherboard and three daughter boards designed for specific gain configurations. The STMicroelectronics STEVAL-AET041V1B motherboard supports interchangeable daughter boards for different gains. The STEVAL-AET042V1B features a TSC2020 amplifier with a gain of 20. The STEVAL-AET043V1B includes a TSC2021 amplifier with a gain of 50. The STEVAL-AET044V1B uses a TSC2022 amplifier with a gain of 100. The TSC202x family of current sense amplifiers accurately measures current by amplifying the voltage across a shunt resistor at its input. It uses a zero-drift topology to achieve a high common-mode rejection ratio (CMRR) of at least 100dB and a low input offset voltage of 200µV, even at a common-mode voltage of 12V and over temperature. The TSC202x ensures precise gain and excellent CMRR performance, even at high frequencies, thanks to thin-film resistors. Additionally, the amplifier can be configured for unidirectional or bidirectional current sensing by setting the output common-mode voltage. A built-in system optimizes PWM rejection, minimizing the effects of fast common-mode voltage variations on the output signal.