ISL78226EVKIT1Z
ActiveKIT EVAL FOR ISL78226
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ISL78226EVKIT1Z
ActiveKIT EVAL FOR ISL78226
Deep-Dive with AI
Technical Specifications
Parameters and characteristics for this part
| Specification | ISL78226EVKIT1Z |
|---|---|
| Contents | Board(s) |
| Function | Special Purpose: Mobiles |
| Supplied Contents | Board(s) |
| Type | Power Management |
| Utilized IC / Part | ISL78226 |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
| Distributor | Package | Quantity | $ | |
|---|---|---|---|---|
| Digikey | Box | 1 | $ 918.00 | |
Description
General part information
ISL78226 Series
The ISL78226 is a 6-phase, bidirectional, synchronous PWM controller designed to perform power conversion between 12V and 48V buses up to 3. 75kW at >95% conversion efficiency. One ISL78226 supports both Buck and Boost power conversion enabling a compact and robust design with minimum components. ISL78226 regulates both voltage and current to control power transfer from bus to bus. The multiphase architecture uses interleaved timing to support up to six parallel power stages per ISL78226. By interleaving the power stages, the ripple frequency is multiplied, reducing input and output ripple voltage and current. Lower ripple results in fewer input/output capacitors and therefore, lower component cost and smaller circuit implementation. The IC is designed to be interleaved in a master/slave architecture to be scalable for higher power. Also integrated within the device is a dual-output Flyback controller that generates both a 12V supply for the power stage FET drivers as well as a 6V supply for the ISL78226 from either of the two buses. A 200mA auxiliary linear regulator is provided to supply a local microcontroller or interface devices. A PMBus interface provides system control and diagnostics to support functional safety requirements. This digital interface offers the system controller the ability to program operating modes, voltage and current limit warning, protection thresholds, individual fault response, and rapid fault condition detection.
Documents
Technical documentation and resources