Free Lattice MachXO Development Board for New Lattice FPGA Designs

Lattice MachXO2 Breakout Board

The MachXO2 breakout board is a simple, low-cost board that provides convenient access to densely-spaced I/Os. Each I/O on the device is connected to a 100-mil header hole.

MachXO3L Starter Kit

The MachXO3L Starter Kit is a small size basic breakout board allowing simple evaluation and development of MachXO3L based designs.

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Which 2 Lattice FPGA features are most interesting to you (select up to 2)?

  Small size package (down to 1.4 x 1.4mm)

  Low price

  Low power

  Free development tools and ease of use

What is your current interest in Lattice?

  I am interested in using a Lattice FPGA for a new design

  I have an existing design with another FPGA that I am considering Lattice for

  I have a project that may need Lattice connectivity products (WiHD, HDMI, MHL, products)

  I do not have a current design, but would like more information about Lattice products


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The Lattice Semiconductor MachXO3 FPGA family provides instant-on, non-volatile, small-footprint FPGAs (as small as 2.5mm x 2.5mm) that use advanced package technology. MachXO3 offers enhanced performance for bridging applications, such as MIPI DSI/CSI-2 interfaces. The family has the highest I/O density in the lowest cost packages available.

Key Features

Available in amazingly small WLCSP packages from 2.50 mm x 2.50 mm and BGA packages with 0.50 mm and 0.80 mm pitches

Instant-on 1 ms boot-up, with Dual Boot and background upgrade

Available with low voltage 1.2 V or 3.3/2.5 V cores

High I/O to LUT ratio with up to 335 I/O pins

Add SPI, I2C, CSI-2 and DSI interfaces to legacy designs

Non-volatile, MachXO3L includes multi-time programmable NVCM and MachXO3LF supports infinitely reconfigurable Flash


The award-winning, instant-on Lattice Semicondcutor MachXO2 FPGA is the perfect device for quick implementation of system control functions. Reliable and affordable - it's what all other PLDs aspire to be for routers, base stations, servers, storage, industrial and medical applications.

Key Features

Up to 256 Kbits of user Flash memory and up to 240 Kbits sysMEM™ embedded block RAM

Up to 334 hot-socketable I/Os that avoid excess leakage

Programmable through JTAG, SPI, I2C or Wishbone

TransFR feature allows in-field design update without interrupting equipment operation

Programmable sysIO™ buffer supports LVCMOS, LVTTL, PCI, LVDS, BLVDS, MLVDS, RSDS, LVPECL, SSTL, HSTL and more

Lattice Advantages

  • Lattice products are commonly used to replace competitor products
  • Lattice is the leader in mid to ultra-low density FPGA products
  • Lattice software tools use the same design flow making code conversion easy. Part replacement gives opportunity to optimize based on product.
  • Power: Lattice has the lowest power in mid-to to low-density FPGAs available
  • Size: Lattice has the largest selection of package sizes including WLCSP
  • Partner: Lattice is a safe partner in a dynamically changing FPGA market dedicated to supporting your projects
  • Cost: Lattice's mid-to low-density FPGAs offer low cost options

ECP5 Versa Development Kit

The Lattice ECP5 Versa Devlopment Kit includes the updated Rev B version of the Versa board with the latest hardware fixes. Designers can evaluate key connectivity features of the ECP5 FPGA, including PCI Express, Gigabit Ethernet, DDR3 and generic SERDES performance using the board and associated demos.

USB Type-C

USB Type-C enables products to provide faster charging, faster downloads and supports other standards, such as DisplayPort and MHL over Type-C. Lattice Type-C solutions provide Cable Configuration (CC) and Power Delivery (PD) communication, which are required to unlock these benefits. Additionaly, some parts include integrated switches to simplify the implementation of video output.


  • Cost optimized CC/PD-PHY options
  • Integrated USB 3.1 and video switch options
  • Fully integrated CC/PD full stack options
  • FPGA options allow full customization
  • Standby power as low as 150uW
  • ASSP options minimize discrete component requirements