The MAXREFDES71# subsystem reference design has two high-speed and high-accuracy analog inputs and analog outputs for industrial motion control applications. Hardware, firmware, design files, and lab measurements provide complete system information for rapid prototyping and development.
PEGODA contactless smart card reader based on MFRC523
NXPThe High Voltage Development Platform is an evaluation and development platform for Kinetis ® V Series MCUs and NXP DSCs.
This design is a digitally controlled DCDC converter. MCU is used to control the output voltage of the DCDC converter to achieve the purpose of numerical control. Considering the time and cost, finished modules are used for verification. This design idea is simple and reliable. And it has the advantages of low cost and high flexibility. The function to be realized is to control the output voltage of the DCDC module with buttons and digitally display the voltage and current values.
15 V / 1.2 A SSR Flyback converter based on VIPer318L
60 W isolated flyback adapter with StackFET™ using MinE-CAP ICs to achieve the highest possible power density and design simplicity
16-bit 6 MSPS SAR ADC system with integrated low-power input driver and reference, optimized for multiplexed applications
High-performance, high-IF, 75 MHz bandwidth, 14-bit, 250 MSPS receiver front-end with bandpass anti-aliasing filter
The MAXREFDES73# reference design is a wearable, mobile galvanic skin response system. Featuring the MAX32600 wellness measurement microcontroller, this battery-powered platform takes high-precision AC impedance measurements while consuming minimal power.
Maxim's MAXREFDES36# reference design is an IO-Link, low-power, 16-channel digital input hub compliant with IEC 61131-9. It contains two octal digital input serializers, an IO-Link transceiver and efficient step-down converter. The entire design fits in a standard DIN rail printed circuit board (PCB) holder.
The QorIQ LS1088A Development Board is a comprehensive platform for designing and evaluating the QorIQ LS1088A processor. This RDB comes preloaded with the standard Linux kernel-based Board Support Package (BSP).
Three-phase high voltage inverter power board for FOC and scalar motor control based on STGIPN3H60 (SLLIMM™-nano)
The FRDMFS6523CAEVM evaluation module demonstrates the capabilities of the MC33FS6523, supporting CANFD & FS1B, Vcore SMPS regulators up to 1.5A.
With the help of GD32F350, the latest cost-effective arm processor launched by GigaDevice, the initial construction of a home security system can be realized. Effective communication of home conditions through sensors. With the help of OV5640 camera, pyroelectric sensor, raindrop sensor, etc., and relying on the hardware structure of GD32F350, a low-cost, high-accuracy home security solution is realized.
72 W ultra-compact charger/adapter for appliances and industrial applications
15 V/100 mA High Voltage Buck Converter Reference Design Based on VIPER26K
FreeEEG32 is a stackable, open source, 32-channel, 24-bit, sigma-delta, simultaneous sampling board designed to meet the needs of scientists and brain hackers who require high-quality, affordable research-grade equipment. We have been developing this EEG for many years as we worked to create the ultimate open source solution to expensive proprietary EEG technology. FreeEEG32 combines four 8-channel AD7771 ADCs with ultra-low noise (<0.22 μV measured) sources and references, all driven by the powerful STM32H7 ARM Cortex-M7, while handling pre-processing. It's sensitive enough to handle high-quality EEG data collection and more.
The ultrasonic ranging system based on a single-chip microcomputer measures the output pulse width, that is, the time interval between transmitting and receiving ultrasonic waves. It controls the peripheral circuits in a timely manner through the single-chip microcomputer and provides signals such as frequency oscillation, data processing, and decoding display to the peripheral circuits. The ultrasonic transmitting circuit includes a gate control circuit (RS flip-flop) and a differential/shaping circuit, while the receiving circuit consists of receiving, amplifying, signal filtering, and shaping circuits.