We're Redefining High-Performance RF Technology

The future of semiconductors continues to evolve, and current trends foreshadow even higher levels of innovation and competition. MMRFIC offers custom design services to give our customers an edge by complementing your team and accelerating your RF, Analog, Digital, and Mixed-Signal ASIC/SOC development. Our team has developed robust and trusted design flows from specification to silicon to help you achieve your design goals.
At MMRFIC, we utilize automated IT tools and technologies to
streamline every phase of the manufacturing process.

MMRFIC has developed custom RF modules for single and multi-channel use cases up to 110GHz and delivered custom RF ICs like LNAs in Ka and W bands. The company focuses on next-generation SiGe designs for beam former core chips across multiple frequency bands.

RF Circuit Design

  • Design & validating LNA & PA
  • Modeling & simulation of RF chain
  • Algorithm expertise on DPD, CFR

Antenna Design

  • Design custom antennas
  • Modeling & characterization
  • Antenna matching expertise

RF Mechanical Design

  • Thermal analysis
  • ID design of enclosure
  • Cavity design for high-power RF

RF Testing & Validation

  • Board bring-up
  • RF calibration
  • RF confirmation test

Our MMIC designs using GaN technology is focused on custom modules for applications that demand high-power efficient Driver amplifiers and Power amplifiers with exceptional PAE. Further, our GaAs-based design targets, among other critical specifications, exception Noise Figures needed by end-use applications across a wide frequency spectrum from S to Ka-Band.

Over the years, through the breadth of IC development spanning varied technology nodes, the company has developed a very close working relationship with best-in-class Fabs worldwide.

The custom designs that go through these diverse technologies are in most cases go processed beyond fabrication to custom packaging with an in-house design team and assembly of packaged ICs to demonstrate the virtuosity and performance of the ICs in end applications like Front End Modules, RF Transceiver solutions, RF ID applications, WLAN SOC with integrated sensors so on so forth through its partnership and engagement with customers across the globe!

MMRFIC focuses on creating RF front ends, Analog core blocks such as ADCs (Analog-to-Digital Converters), DACs (Digital-to-Analog Converters), clock circuitry, and power management systems optimized for CMOS technology nodes. These designs cater to mass-market applications in the communication, medical, and industrial sectors, achieving optimal performance while maintaining cost efficiency for the end user.

Some notable fabless Mixed Signal RF ASIC designs developed so far

  • Ultra-low power battery-powered RFID SOC with integrated RF Front End
  • WLAN AD RF Transceiver Front End with Integrated Power Management
  • Wideband Programmable Giga-bits PLL IP for custom Serdes solution
  • Base Band I/Q transmit receive modules for WLAN A/N
  • Low Power custom SpO2 Transmit receive IP for medical application
  • MMRFIC offers the following AMS capabilities

    Analog Circuit Design

    • Circuit design, extraction, simulations
    • Reliability, Power, and performance simulations
    • Collateral Generation

    Analog Mask Design

    • Floorplan and Backend Methodology
    • Mask Design work
    • Layout Verification

    Analog & Mised Signal Verification

    • AMS Verification (XA/Discovery AMS)
    • Behavioural Modelling
    MMRFIC engages specialist partners to provide a range of comprehensive services from the initial specification to the delivery of the parts. Our partners expertise spans architecture, micro-architecture, RTL design and verification, DFT, Physical design, tape-out, and Packaging.

    We're Redefining High-Performance RF Technology

    RTL Design

    • Design & Micro Architecture
    • RTL coding
    • Chip-level and Block level integration

    Verification

    • Block level verification
    • SoC level verification
    • CPU based verification
    • Gate-level simulations

    Design For Test (DFT)

    • DFT Architecture Planning
    • BSD
    • Scan & ATPG
    • LBIST
    • MBIST
    • ATE Support

    Physical Design

    • Synthesis
    • Logic Equivalence Check (LEC)
    • Low Power Check (CLP)
    • Place & Route (P&R)
    • Static Timing Analysis (STA)
    • IR Analysis
    • Physical Verification

    MPW & Packaging

    • Foundry Support (Direct/VCA)
    • Packaging through 3rd Party
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