power island IP

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Compare 212 IP from 8 vendors (1 - 10)
  • Linear Regulator for digital island
    • Low dropout: 380mV of dropout at ILOAD= IMAX
    • Low Bill-of-Material: optimized in density for the best trade-off for the given output current and input voltage range
    • A cost-efficient solution compared to external Power Management
    • Behavioral models: ease of integration in SoC and optimization of Power Management Network (PMNet) using models to verify mode transitions as well as noise propagation
  • Linear Regulator for digital island
    • Low Bill-of-Material: optimized in density for the best trade-off for the given output current and input voltage range
    • A cost-efficient solution compared to external Power Management
    • Behavioral models: ease of integration in SoC and optimization of Power Management Network (PMNet) using models to verify mode transitions as well as noise propagation
    • Safe integration in the SoC thanks to transfer functions, templates and profiles included in the specification
    Block Diagram -- Linear Regulator for digital island
  • CLICK - The universal solution of power gating for the whole SoC
    • - Fully automated island kit generator
    • - Automatic digital power switch controller TRC, single or distributed
    • - Scripts for easier and faster implementation
    • - Close or open ring implementation
  • CLICK - The universal solution of power gating for the whole SoC
    • - Fully automated island kit generator
    • - Automatic digital power switch controller TRC, single or distributed
    • - Scripts for easier and faster implementation
    • - Close or open ring implementation
  • CLICK - The universal solution of power gating for the whole SoC
    • - Fully automated island kit generator
    • - Automatic digital power switch controller (APC), single or distributed
    • - Scripts for easier and faster implementation
    • - Closed or open ring implementation
  • Linear Regulator for digital island
    • Low dropout: 380mV of dropout at ILOAD= IMAX
    • Low Bill-of-Material: optimized in density for the best trade-off for the given output current and input voltage range
    • A cost-efficient solution compared to external Power Management
    • Behavioral models: ease of integration in SoC and optimization of Power Management Network (PMNet) using models to verify mode transitions as well as noise propagation
    Block Diagram -- Linear Regulator for digital island
  • Linear Regulator for digital island
    • Low dropout: 380mV of dropout at ILOAD= IMAX
    • Low Bill-of-Material: optimized in density for the best trade-off for the given output current and input voltage range
    • A cost-efficient solution compared to external Power Management
    • Behavioral models: ease of integration in SoC and optimization of Power Management Network (PMNet) using models to verify mode transitions as well as noise propagation
    Block Diagram -- Linear Regulator for digital island
  • Linear Regulator for digital island
    • Low dropout: 380mV of dropout at ILOAD= IMAX
    • Low Bill-of-Material: optimized in density for the best trade-off for the given output current and input voltage range
    • A cost-efficient solution compared to external Power Management
    • Behavioral models: ease of integration in SoC and optimization of Power Management Network (PMNet) using models to verify mode transitions as well as noise propagation
    Block Diagram -- Linear Regulator for digital island
  • Linear Regulator for digital island
    • Low dropout: 380mV of dropout at ILOAD= IMAX
    • Low Bill-of-Material: optimized in density for the best trade-off for the given output current and input voltage range
    • A cost-efficient solution compared to external Power Management
    • Behavioral models: ease of integration in SoC and optimization of Power Management Network (PMNet) using models to verify mode transitions as well as noise propagation
    Block Diagram -- Linear Regulator for digital island
  • CLICK - The universal solution of power gating for the whole SoC
    • Flexibility of in-rush current and wake-up time management
    • Allows a smart control of the trade-off between wake-up time and in-rush current
    • Automated wake-up sequence including isolation and retention signal management
    • Programmable limitation of in-rush current controlled by Transition Ramp Controller enables a ? correct-by-construction ? implementation
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