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Microchip Technology

Microchip MPF100TLS-FCG484I Field Programmable Gate Arrays (FPGAs)

FPGAs · Microchip Technology

MPNMPF100TLS-FCG484I

Microchip MPF100TLS-FCG484I FPGA MPF100T 109000 Logic Elements 28nm Technology 1V 484-Ball BGA Tray

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Product Overview

Product narrative for the Microchip Technology part MPF100TLS-FCG484I. Read this before you compare alternates or open an RFQ.

Microchip MPF100TLS-FCG484I FPGA MPF100T 109000 Logic Elements 28nm Technology 1V 484-Ball BGA Tray

Microchip MPF100TLS-FCG484I Field Programmable Gate Arrays (FPGAs) Overview

The Microchip FPGA MPF100T is a cutting-edge field programmable gate array (FPGA) designed to deliver exceptional performance and flexibility for a wide range of applications. Utilizing advanced 28nm technology, this FPGA features 109,000 logic elements and operates at a low voltage of 1V, making it an ideal choice for power-sensitive designs. Housed in a compact 484-ball FCBGA package, the MPF100T is suitable for production environments, ensuring reliability and efficiency in your electronic projects.

Key Features of Microchip MPF100TLS-FCG484I Field Programmable Gate Arrays (FPGAs)

  • Optimized to advanced 28nm Technology, improving robustness in practical applications.
  • Designed to low Voltage Operation (1V), helping ensure consistent and reliable operation.
  • Optimized to compact 484-Ball FCBGA Package, improving robustness in practical applications.
  • Designed to lifecycle Status: Production, helping ensure consistent and reliable operation.
  • Engineered to 109,000 Logic Elements, supporting dependable performance in real-world designs.

Microchip MPF100TLS-FCG484I Field Programmable Gate Arrays (FPGAs) Applications

Wireless / SDR / RF

  • Often used in real-time RSSI/CSI aggregation for channel sounding — IQ stats, PTP/1588, Ethernet, timestamping, where predictable behavior and reliability are important.
  • Well-suited for multi-channel IF downconversion with CIC/FIR chain — multi-ADC, DSP, decimation, DDR, helping designers meet typical integration requirements.
  • Commonly applied in multi-rate decimation/interpolation filter banks for SDR — FIR, polyphase, CIC, AXI-Stream, supporting stable and efficient system performance.
  • Often used in fPGAs are widely used in wireless and RF systems to implement deterministic, low-latency DSP chains (DDC/DUC, FFTs, FEC), precise timing (TDD/beamforming), and high-throughput IQ data movement between converters and memory/hosts. They commonly sit between high-speed ADC/DACs, RF transceivers, and transport links, enabling rapid waveform iteration and real-time compute under tight latency budgets, where predictable behavior and reliability are important.
  • Often used in oFDM FFT/IFFT pipeline for custom radio modem — AXI-Stream, DSP slices, fixed-point FFT, low-latency, where predictable behavior and reliability are important.

Medical / Healthcare Devices

  • Often used in eEG multi-channel spectral feature extraction engine — FFT, bandpower, DSP, where predictable behavior and reliability are important.
  • Often used in radiation therapy MLC leaf timing controller — timing, motors, safety, where predictable behavior and reliability are important.
  • Often used in medical cybersecurity secure update gatekeeper logic — secure boot, signatures, logging, where predictable behavior and reliability are important.
  • Often used in ventilator sensor capture and valve timing controller — ADC, PWM, safety interlocks, where predictable behavior and reliability are important.
  • Well-suited for defibrillator charge timing + ECG gating logic — timing, safety latch, ADC, helping designers meet typical integration requirements.

Aerospace & Defense (Radar / EW / Avionics)

  • Often used in mission computer deterministic I/O concentrator — GPIO, UART, PCIe sideband, where predictable behavior and reliability are important.
  • Often used in eW wideband channelizer (polyphase filter bank) — PFB, FFT, wideband IQ, where predictable behavior and reliability are important.
  • Commonly applied in eW emitter feature extraction pipeline — spectral features, DSP, low-latency, supporting stable and efficient system performance.
  • Well-suited for a&D applications leverage FPGA parallelism for wideband signal processing, radar/EW algorithms, secure communications, and rugged I/O bridging. Deterministic timing and high-throughput SERDES make them core to real-time mission payloads and avionics, helping designers meet typical integration requirements.
  • Commonly applied in avionics display compositor with symbology overlay — overlay, timing, DDR, supporting stable and efficient system performance.

Display / HDMI / DP / LED Wall

  • Commonly applied in local dimming backlight PWM and zone mapping logic — PWM, zones, HDR, supporting stable and efficient system performance.
  • Commonly applied in touch controller aggregator (multi-panel) with timestamping — I2C, SPI, timestamp, supporting stable and efficient system performance.
  • Commonly applied in display interface format conversion (RGB↔YUV) — CSC, pipeline, supporting stable and efficient system performance.
  • Well-suited for kVM extender EDID/HID management controller — USB HID, EDID, HDMI, helping designers meet typical integration requirements.
  • Often used in hDMI input switching and hot-plug event controller — HDMI, HPD, I2C/DDC, where predictable behavior and reliability are important.

Space / Rad-Tolerant / Satellite Payload

  • Well-suited for spaceWire endpoint/router prototype — SpaceWire, LVDS, routing, helping designers meet typical integration requirements.
  • Well-suited for spacecraft power sequencing and telecommand I/O — sequencing, GPIO, safe states, helping designers meet typical integration requirements.
  • Often used in reaction wheel control timing assist — PWM, encoder, control timing, where predictable behavior and reliability are important.
  • Well-suited for telemetry encryption and authentication engine — AES, MAC, secure keys, helping designers meet typical integration requirements.
  • Often used in gN&C sensor time alignment and voting logic — voting, redundancy, timestamp, where predictable behavior and reliability are important.

Design Resources

Tutorial and application reading tied to MPF100TLS-FCG484I. These are editorial guides on this site, not manufacturer PDFs.

Frequently Asked Questions

Short answers for sourcing MPF100TLS-FCG484I from Microchip Technology: what to confirm before you place the order.

What is MPF100TLS-FCG484I?

Microchip MPF100TLS-FCG484I FPGA MPF100T 109000 Logic Elements 28nm Technology 1V 484-Ball BGA Tray

What type of component is MPF100TLS-FCG484I?

MPF100TLS-FCG484I is a FPGAs from Microchip Technology.

Is MPF100TLS-FCG484I in stock at MOZ Electronics?

MPF100TLS-FCG484I is listed as in stock. Order online when a price is shown, or submit an RFQ for volume pricing and lead time.

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