Lattice Introduces New Low-Power PLD Control Device - MachXO3-9400 Device

Lattice Semiconductor Corporation (NASDAQ: LSCC), a leading provider of customized smart interconnect solutions, today announced the popular MachXO3.aspx? The pr110617 "MachXO3TM Controlled PLD Series welcomes new members to meet the ever-changing design needs of the communications and industrial markets. The new MachXO3-9400 devices offer a low-power 1.2 V core package option for demanding thermal requirements. Environment, providing more FPGA logic resources for motor control and board management functions, providing more I/O for server and storage applications. To help customers with MachXO3 devices for design development, Lattice also offers powerful performance and More flexible evaluation boards support a variety of system architectures, including board management, embedded microcontroller I/O expansion, and video protocol bridging.

Joel Coplen, Product Marketing Manager, Lattice Semiconductor, said: "The MachXO3-9400 low-power device is available to help customers achieve more intelligent power-sensitive network edge applications. Now use our MachXO3-9400 The EV kit develops a variety of solutions, including hardware management and I/O expansion, or adds logic to embedded microcontrollers."

Features of the new devices introduced by Lattice include:

Optional MachXO3-9400E (1.2 V core voltage) device, 60% lower power consumption compared to MachXO3-9400C (3.3 V core voltage)

Supports pin migration from the MachXO3-6900, providing more FPGA logic resources for factory automation and server board management applications

Up to 384 I/Os - the highest number of I/Os in the MachXO3 product line

The advantages of the MachXO3 product family, such as internal configuration memory, flexible programmable I/O, and embedded memory

The MachXO3-9400 evaluation board uses the MachXO3-9400 control PLD and the LatTIce Hardware Management Expander L-ASC10. The EV kit also includes connectors for the Raspberry Pi 3, Arduino Zero, and other expansion boards. It is ideal for design engineers to quickly and well build I/O expansion, co-processing, motor control and video bridging for the latest computing and industrial applications.

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