Vendor: Dolphin Semiconductor Category: LDO Voltage Regulator

Retention Alternative Regulator, combines a linear regulator and an ultra-low quiescent regulator for sleep mode in TSMC 40uLPeF

RAR-iLR-qLR-ref-1.62-3.63-0.55-2.5.01_TSMC_40_uLPeF is a Retention Alternating Regulator in TSMC 40uLPeF combining two regulation…

TSMC 40nm ULP View all specifications

Overview

RAR-iLR-qLR-ref-1.62-3.63-0.55-2.5.01_TSMC_40_uLPeF is a Retention Alternating Regulator in TSMC 40uLPeF combining two regulation sub-components: a linear regulator for logic (iLR) and an ultra low quiescent linear regulator (qLR). A Regulation Control Unit (RCU) manages booting and transitions between each regulation functions.

PARAMETERS CONDITION

Minimum value

Typical value

Maximum value

Input Voltage

- 1.62 V   3.63 V

Output Voltage

- 0.55 V   2.5 V

Key features

  • Support input supply voltage up to 3.63V
  • Programmable output voltage from 0.5V to 3.3V
  • Performances in sleep mode: 150 nA quiescent current
  • From 100 to 500 mA output current for main LDO (configurable upfront)

Benefits

  • Ideal regulator for power and voltage islets
  • Secured integration in the SoC Embedded RCU (Regulator Control Unit) to manage booting and mode transitions and to ensure data integrity
  • Configurable output drive before delivery to fit the application
  • Performances in sleep mode: qLR with low quiescent current: 0.2 uA
  • Can supply always-on loads up to 300 µA
  • Accessible voltage reference can be used by wake-up circuitry
  • Low area compared to a combinaison with a switching regulator
  • Low Bill-of-Material: fully integrated feedback and active compensation loop to reduce the number of additional external passive components
  • Low Output Ripple
  • Over-temperature/Over-current protected Output

Applications

  • AR - VR
  • Bluetooth
  • Cellular IoT
  • GNSS
  • Hearing aids
  • Home Appliance
  • Infotainment
  • NB-IoT
  • Smart Headset
  • Smart Speaker
  • TWS Earpods
  • ULP MCU
  • Voice-controlled devices
  • Voice Assistant
  • WiFi

Silicon Options

Foundry Node Process Maturity
TSMC 40nm ULP

Specifications

Identity

Part Number
RAR-iLR-qLR-ref-1.62-3.63-0.55-2.5.01_TSMC_40_uLPeF
Vendor
Dolphin Semiconductor
Type
Silicon IP

Files

Note: some files may require an NDA depending on provider policy.

Provider

Dolphin Semiconductor
HQ: France
Dolphin Semiconductor is a leading provider of semiconductor IP solutions, specializing in IP design. We excel in crafting high-performance audio IP, analog/mixed-signal IP, and comprehensive silicon platforms. Our offerings include semiconductor IP cores and design expertise, tailored for mobile devices, consumer electronics, automotive systems, and IoT applications. By prioritizing energy efficiency in our designs, we enable longer battery life and lower power consumption, contributing to sustainable and eco-friendly technology solutions. Utilizing our deep understanding of silicon technology, we guide our clients from concept to market-leading products.

Learn more about LDO Voltage Regulator IP core

Silicon Qualified SuperViC: the only way to safe SoC integration

System integrators often encounter problems on application boards too late in the design cycle, when bringing together Virtual Components (ViCs of silicon IPs) into a system. Some ViC performances may be degraded at higher levels (SoC and PCB), and thus the final system does not perform as well as expected. In other words, assembling high-performance ViCs together does not guarantee high-performance SoCs or systems when fundamental integration aspects are not addressed or key issues are violated during the integration process.

Improving Battery-Powered Device Operation Time Thanks To Power Efficient Sleep Mode

Allowing battery-powered devices to run, without battery recharge, for years rather than months, partakes in enhancing significantly end-user satisfaction and is a key point to enabling the emergence of IoT applications. Numerous applications, such as M2M, BLE, Zigbee…, have an activity rate (duty cycle) such that the power consumption in sleep mode dominates the overall current drawn by the SoC (System on Chip). For such applications, the design of the “Always-On power domain" (a.k.a AON power domain) is pivotal.

Breaking new energy efficiency records with advanced power management platform

The free lunch offered for decades by Moore’s law is now over and scaling down to the next technology node no longer offers the required energy efficiency gains. Design teams must now pursue their gains by deploying increasingly complex power management techniques to meet the demands of the new IoT markets.

The Tradeoffs of Low Dropout (LDO) Voltage Regulator Architectures and the Advantages of "Capless" LDOs

Power management of battery-powered electronic devices is becoming increasingly more important for the microelectronics industry. This white paper details the difference between low dropout (LDO) voltage regulators that use external output capacitors and those that do not, and how your system designs can benefit from not using an output capacitor. Well-designed capless LDO voltage regulators can have multiple benefits, and they are presented here.

Frequently asked questions about LDO Voltage Regulator IP cores

What is Retention Alternative Regulator, combines a linear regulator and an ultra-low quiescent regulator for sleep mode in TSMC 40uLPeF?

Retention Alternative Regulator, combines a linear regulator and an ultra-low quiescent regulator for sleep mode in TSMC 40uLPeF is a LDO Voltage Regulator IP core from Dolphin Semiconductor listed on Semi IP Hub. It is listed with support for tsmc.

How should engineers evaluate this LDO Voltage Regulator?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this LDO Voltage Regulator IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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