M12 A-Coded Circular Connectors

M12 circular connectors exist in several codings, for example A, B, D or X among others. However, in this application note, we are going to focus on the use cases of the M12 A-Coded from Würth Elektronik product range in physical layers. The focus will be on industry-oriented interconnect

Getting started with PSoC™ 4 MCU

This application note introduces you to PSoC™ 4, an Arm® Cortex® -M0/M0+ based programmable system-on-chip.

S-Parameter Measurements

Johanson Technology offers downloadable S-Parameter libraries for our RF Capacitors, EMI Filters, and Inductors.

Layout Considerations when Adding Energy Monitoring to a System Using the ADE9153A

Analog Devices' layout considerations when adding energy monitoring to a system using the ADE9153A.

Getting Started with CAPSENSE™

Infineon's application note on getting started with their CAPSENSE™ solutions.

Silicone Bleed

This application will address silicone which migrates out of the TIM and onto other surfaces.

PCB Layout Thermal Design Guide

This application note provides some key points on how to reduce thermal resistance in designing the PCB.

Operation Amplifier, Comparator (Tutorial)

This application note explains the general terms and basic techniques that are necessary for configuring application circuits with op-amps and comparators.

Basics of Thermal Resistance and Heat Dissipation

This application note provides the basics of thermal resistance and heat dissipation considering semiconductor parts such as the ICs and transistors used in electronic equipment.

Snubber Circuit Design Methods

This application note illustrates a way to design snubber circuit, which is one of the methods to suppress surges voltages and currents.

How to Use LTspice® Models

ROHM provides the LTspice models for simulating electrical circuits. This application note explains how to add models to LTspice.

Leveraging Magnetic Sensitivity for Better Device Design

Coto Technology has comprehensive knowledge in the topic of magnetic sensitivity; therefore, Coto’s Tunneling Magnetoresistance (TMR) magnetic sensors are featured in this generalized explanation of magnetic sensitivity.

ANP113 Feedback Loop Compensation of a Current-Mode Flyback Converter with Optocoupler

Würth's application note with information on feedback loop compensation of a current-mode Flyback converter with optocoupler.

Wearable Injectors

Using magnetic sensors for metering drug volume in wearable injectors.

ANO007 Understanding Phototransistor Optocouplers

Würth's application note with information on phototransistor optocouplers.

Next-Gen Medical Devices Incorporating RedRock® TMR Magnetic Sensor Technology

RedRock® TMR sensors offer the lowest power, highest sensitivity, smallest packaged magnetic sensors on the market – addressing the many constraining requirements of next-generation medical devices.

Evolution of Magnetic Sensing Technology: From Hall Effect to Tunneling Magnetoresistance (TMR)

Competing with yesterday’s solutions, TMR inspires and empowers designers of emerging technologies requiring the lowest power consumption coupled with the highest sensitivity and the tiniest of size.

How RedRock® TMR Magnetic Sensors Work in Typical Device Applications

Offering ultra-low power consumption, high sensitivity, miniature package size and short lead times, Coto’s RedRock® series of analog and digital TMR magnetic sensors are ideally suited to the demands of next generation security, metering, medical, automotive, instrumentation, and industrial markets.

Improving a Simple 3-Wire Level Sensor Assembly by Using the RedRock® RR132 TMR Digital Switch

The RR132 is an integrated digital magnetic switch based on Tunneling MagnetoResistance (TMR) technology, with integrated CMOS circuitry and an open-drain MOSFET switch.