Vendor: Shortlink Category: LDO Voltage Regulator

Voltage Regulator LDO, Adjustable 1.1V Output

The ShortLink voltage regulator 'SL40LP_1V1LDO_1' is an analogue Low Drop-Out regulator based on a two-stage architecture.

TSMC 40nm LP Pre-Silicon View all specifications

Overview

The ShortLink voltage regulator 'SL40LP_1V1LDO_1' is an analogue Low Drop-Out regulator based on a two-stage architecture. The architecture allows the output voltage to be selected based on digital input control signals. The output voltage is based on the 1 V input reference voltage. The output voltage range is 1.00 to 1.15 V, selectable in 50 mV steps. Matching VREF & IBIAS Generator IP Block available: 'SL40LP_1V2BG_1'. Detailed technical information available under NDA, please contact us.

Key features

  • Low Drop-Out Voltage Regulator
  • Current effiency up to 99%
  • Selectable Output Voltage 1.00 to 1.15V
  • Start-up time 10µs (typical)
  • Deep N-Well isolated design for increased noise isolation
  • Matching VREF & IBIAS Generator Block available: SL40LP_1V2BG_1
  • Supply Voltage: 1.68-3.63V
  • Junction Temperature Range: -40 to +125C

Silicon Options

Foundry Node Process Maturity
TSMC 40nm LP Pre-Silicon

Specifications

Identity

Part Number
SL40LP_1V1LDO_1
Vendor
Shortlink
Type
Silicon IP

Provider

HQ: Sweden

Learn more about LDO Voltage Regulator IP core

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.

Power Management for Internet of Things (IoT) System on a Chip (SoC) Development

There are many factors that must be considered when developing a custom System on a Chip (SoC) for Internet of Things (IoT) applications. Chief among these are the power management circuits on the die. Vidatronic offers this white paper to discuss these considerations and all of the various circuit blocks that can be found in this application. Vidatronic IP solutions are discussed and the benefits they bring to IoT SoC designers.

Tradeoffs of LDO Architectures and the Advantages of Advanced Architecture "Capless" LDOs

Power management of battery-powered electronic devices is becoming increasingly more important for the present and future microelectronics industry. This application note details the difference between low dropout (LDO) voltage regulators that use output capacitance and those that do not and how your system designs can benefit from or be improved by not using an output capacitor.

Introduction to Low Dropout (LDO) Linear Voltage Regulators

Linear voltage regulators are key components in any power-management system that requires a stable and ripple-free power supply. A subset of linear voltage regulators is a class of circuits known as low dropout (LDO) regulators. This paper explains the fundamentals of LDOs and introduces Vidatronic’s LDO technology which solves many of the known shortcomings of LDO circuits.

Frequently asked questions about LDO Voltage Regulator IP cores

What is Voltage Regulator LDO, Adjustable 1.1V Output?

Voltage Regulator LDO, Adjustable 1.1V Output is a LDO Voltage Regulator IP core from Shortlink listed on Semi IP Hub. It is listed with support for tsmc Pre-Silicon.

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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