Circuit Breaker

Document created by Fabian Ramirez Employee on Nov 18, 2019Last modified by Fabian Ramirez Employee on Nov 26, 2019
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An Arc fault circuit breaker is an automatically operated electrical switch designed to protect an electrical circuit from damage caused by excess current, typically resulting from an overload or short circuit.

Block Diagram


Category Name 1Microcontroller
Product URL 1Arm Cortex-M0+|Kinetis KV1x Motor Control MCUs | NXP 
Product Description 1The Kinetis KV1x MCU has dual 16-bit analog-to-digital controllers (ADCs) sampling at up to 1.2 mega samples per second (MS/s) in 12-bit mode, it also has 12-bit DAC and 2 x ACPMs (analog comparators)— over-current and over-voltage fault detection, reduced BOM costs.


Category Name 1Secure Authenticator IC
Product URL 1A1006 | Secure Authenticator IC: Embedded Security Platform | NXP 
Product Description 1

The A1006 Secure Authenticator IC is manufactured in a high-density submicron technology. It is a secure tamper-resistant authentication IC, which offers a strong

a cryptographic solution intended to be used by device manufacturers to prove the authenticity of their genuine products.


Category Name 1NTAG i2c Interface
Product URL 1NTAG I2C | NXP 
Product Description 1A 32-bit password protected interface, designed to be the perfect enabler for NFC in home-automation and consumer applications. The NT3H2111 NFC tag is the fastest, least expensive way to add tap-and-go connectivity to just about any electronic device.


Category Name 1Transceiver
Product URL 1SA636 | NXP 
Product Description 1The SA636 is a low-voltage high-performance monolithic FM IF system with high-speed RSSI incorporating a mixer/oscillator, two limiting intermediate frequency amplifiers, quadrature detector, logarithmic Received Signal Strength Indicator (RSSI), voltage regulator, wideband data output and fast RSSI op-amps


Category Name 1SMPS Controller
Product URL 1TEA172x | NXP 
Product Description 1These highly integrated devices enable low no-load power consumption below 10 mW, reduce component count for cost-effective application design, and provide advanced control modes that deliver exceptional efficiency.

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