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STMICROELECTRONICS STEVAL-IFP029V1
Development Boards, Kits, Programmers

STEVAL-IFP029V1

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STMicroelectronics

QUAD LOW SIDE DRIVER DEMONSTRATION BOARD BASED ON IPS4260L

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DocumentsDB3337+2
STMICROELECTRONICS STEVAL-IFP029V1
Development Boards, Kits, Programmers

STEVAL-IFP029V1

Active
STMicroelectronics

QUAD LOW SIDE DRIVER DEMONSTRATION BOARD BASED ON IPS4260L

Deep-Dive with AI

DocumentsDB3337+2

Technical Specifications

Parameters and characteristics for this part

SpecificationSTEVAL-IFP029V1
ContentsBoard(s)
EmbeddedFalse
FunctionLow Side Driver (Internal FET)
Primary Attributes [custom]4-Channel (Quad)
Secondary AttributesOn-Board LEDs
Supplied ContentsBoard(s)
TypePower Management
Utilized IC / PartIPS4260L

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyBulk 1$ 70.00
N/A 0$ 71.14
NewarkEach 1$ 77.26

Description

General part information

IPS4260 Series

The IPS4260L is a monolithic high speed (fSW up to 250 kHz) device, which can drive four independent capacitive, resistive or inductive loads with one side connected to supply voltage. The channels can be parallelized to reduce power dissipation. When connected to Vcc rail, four integrated catch diodes clamp the turn-off transients generated by inductive loads even with huge inductance; combined with proper external TVS connected to VCC or to GND the IC allows fast decay, too. Each channel is protected against overload or short circuit event: the intervention level can be set by an external resistor on ILIM pin . Built-in thermal shutdown protects the chip against overtemperature even in case of short-circuit. If enabled, the integrated cut-off protection features a non-dissipative protection in case of overload; it limits both the output average current value and, consequently, the device overheating. Cut-off delay/restart can be programmed by external resistors on CoD pin; it can be disabled by shorting CoD to GND. Two common diagnostic open drains pins (OL, for open load and FLT for cut-off and thermal shutdown) together with the four open drain on each INx pin (cut-off and thermal shutdown) feature an extensive diagnostic of the chip.