Vendor: Chipus Microelectronics Category: Temperature Sensor

GP ULP Temperature Sensor - Built-in Sigma-Delta modulator – Low Quiescent Current - Silterra 0.18um

This macro-cell is an ultra-low-power, general purpose temperature sensor core.

Silterra 180nm G View all specifications

Overview

This macro-cell is an ultra-low-power, general purpose temperature sensor core. This IP features a built-in Sigma-Delta modulator that is responsible to convert the analog signals to digital bit stream.

This IP requires an external 80nA bias current and a 200kHz clock signal.

The core is easily retargeted to any other CMOS technology because it uses typical devices of standard CMOS technologies.

Key features

  • 10bit equivalent resolution
  • Ultra low power consumption (8µA)
  • Built-in Sigma-Delta modulator
  • From -40°C to 125°C

Block Diagram

Silicon Options

Foundry Node Process Maturity
Silterra 180nm G

Specifications

Identity

Part Number
CM6214ff
Vendor
Chipus Microelectronics
Type
Silicon IP

Files

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

Provider

Learn more about Temperature Sensor IP core

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.

Smart Transit Solution

Surveillance and security has become increasingly important during modern days for government/law enforcement, public or private transit authorities and for the fleet management. To monitor or investigate accidental damage, theft, harassment or left packages, producing/collecting evidences and analyze the occurrence of situation is challenge. This white paper describes how smart transit solution can generate evidences and help in analyze the situation of an incident. Smart transit solution improves profitability by enabling batter safety, security and service.

Design and Development of a Neuromorphic Silicon Suite: PVT Sensing, Stochastic LIF Inference, On-Chip STDP Learning, and Crossbar Programming

The authors present four interface-compatible digital IP blocks implemented as standard-cell CMOS on the SkyWater 130 nm process: a process, voltage and temperature (PVT) sensor built from five selectable ring oscillators that also provides a jitter-based true-random-number generator and a frequency-bounds health monitor; a stochastic leaky integrate-and-fire (LIF) neuron with a configurable LFSR, a programmable activation table, and a refractory period; an on-chip spike-timing-dependent plasticity (STDP) controller with a programmable curve and reward-modulated, eligibility-trace, and anti-Hebbian modes; and a memristive-crossbar controller supporting forming, set, reset, read, and automated current-voltage sweep with current-compliance limiting and half-select biasing.

Context Based Clock Gating Technique For Low Power Designs of IoT Applications - A DesignWare IP Case Study

This paper discusses about the intelligent low power techniques such as context based clock gating and how they are useful for IoT applications. It also describes how it improves the overall power efficiency of the system. The power statistics shared shows how the overall idle power and functional power consumption is significantly reduced. Further we discuss about how it can be combined with few other low power techniques to reduce the overall power

Frequently asked questions about Temperature Sensor IP cores

What is GP ULP Temperature Sensor - Built-in Sigma-Delta modulator – Low Quiescent Current - Silterra 0.18um?

GP ULP Temperature Sensor - Built-in Sigma-Delta modulator – Low Quiescent Current - Silterra 0.18um is a Temperature Sensor IP core from Chipus Microelectronics listed on Semi IP Hub. It is listed with support for silterra.

How should engineers evaluate this Temperature Sensor?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this Temperature Sensor 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.

×
Semiconductor IP