74HC245 Octal Bus Tranceiver
74HC245 specs: pinout, direction control, and voltage translation. Learn how to use it in data buses for Arduino/STM32. Application examples and datasheet breakdown!
74HC245 specs: pinout, direction control, and voltage translation. Learn how to use it in data buses for Arduino/STM32. Application examples and datasheet breakdown!
MCP2551 Overview The MCP2551 is a high-speed and high-fault-tolerant device used as a connection interface between the CAN protocol controller and the physical bus. It provides differential transmission and reception functions to the CAN protocol controller, fully compliant with the ISO-11898 standard, including 24V requirements. In a typical CAN system, each node must have a
MCP2551 Interface Integrated Circuits (ICs) CAN Transceiver Read More »
PCB antennas are an integral part of many modern electronic devices. They enable wireless communication, allow for remote control of devices, and provide a means for transmitting data to and from the device. With the right design and implementation, PCB antennas can significantly improve the performance of any device. In this blog article, we will
Harnessing the Power of PCB Antenna Technology for Maximum Performance Read More »
UWB basics: high-data rate, precision ranging, and applications in IoT/Auto. Learn frequency bands, standards, and PCB design considerations. Expert insights inside!
New to RF? Understand radio frequency circuits: components, impedance matching, and signal propagation. Applications in wireless devices. Beginner’s guide inside!
RF Circuits Explained: Basics & Working Principles Read More »
The adoption and implementation of 5G connectivity are underway, as mobile carriers race to be the first company with a 5G network. A key enabler of 5G is low latency, high bandwidth, and high cell density. These three capabilities require operators to adopt new technologies that support denser antennas and millimeter wave frequencies in their
5G PCB Manufacturing: The Next Generation of Mobile Connectivity Read More »