802.11ax IP

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Compare 15 IP from 7 vendors (1 - 10)
  • 802.11ax PHY Layer C Floating-Point Code IP for the STA mode
    • This IP includes a recommendation-compliant 802.11ax PHY layer C floating-point code for the Station (STA) mode.
    • The code is integrated into a simulation environment that allows the configuration of mandatory features and the performance evaluation in terms of frame error rate.
    • It is designed to generate fixed-point sequences in order to accelerate the development of both C fixed-point code and HDL code for prototyping environments.
    Block Diagram -- 802.11ax PHY Layer C Floating-Point Code IP for the STA mode
  • IEEE 802.11ax MAC/PHY for STA
    • Wireless standard 20MHz IEEE 802.11 ax STA
  • Multi-protocol wireless plaform integrating 802.11ax (Wi-Fi 6), Bluetooth 5.4 Dual Mode, 802.15.4 (for Thread, Zigbee and Matter)
    • Highly versatile multi-protocol wireless connectivity solutions leveraging the latest and market proven Ceva-Waves integrated hardware IP and software platforms, including Wi-Fi, Bluetooth (Classic and LE), 802.15.4 (for Thread, Zigbee and Matter) and UWB
    • Optimized co-existence schemes for each specific configuration
    • Pre-integrated radio solutions, including RF from Ceva and various partners addressing a wide range of configurations and foundry process nodes
    • Easily adaptable to other RF implementations including customer’s own in-house developments
    Block Diagram -- Multi-protocol wireless plaform integrating 802.11ax (Wi-Fi 6), Bluetooth 5.4 Dual Mode, 802.15.4 (for Thread, Zigbee and Matter)
  • WIFI 11AX IP
    • High-performance Wi-Fi 6 (802.11ax) IP for enhanced, efficient wireless connectivity.
    Block Diagram -- WIFI 11AX IP
  • WIFI 11AX IoT IP
    • Energy-efficient Wi-Fi 6 (802.11ax) IoT IP designed for high-speed, reliable smart device connectivity.
    Block Diagram -- WIFI 11AX IoT IP
  • 802.11 AX
    •  Increased Throughput: 802.11ax is designed to provide higher data rates compared to its predecessors, with a target throughput of at    least 4 times higher than 802.11ac Wave 2
    •  MU-MIMO (Multi-User, Multiple Input, Multiple Output): While MU-MIMO was introduced in 802.11ac, 802.11ax takes it a step further by    supporting both downlink and uplink MU-MIMO. This means that the access point can communicate with multiple devices    simultaneously, improving overall network efficiency.
  • All Digital Fractional-N RF Frequency Synthesizer PLL in TSMC N6/N7
    • Fractional Multiplication with frequencies up to 8GHz
    • Extremely low jitter (sub 300fs RMS)
    • Small size  (< 0.05 sq mm)
    • Low Power (< 7mW)
    Block Diagram -- All Digital Fractional-N RF Frequency Synthesizer PLL in TSMC N6/N7
  • Wi-Fi 802.11 ax/Wi-Fi 6 /Bluetooth LE v5.4/15.4-2.4GHz RF Transceiver IP for IOT Application in TSMC22 ULL
    • Metal Layer- 1P7M, 4X1Z1U
    • BW support for 20/ 40MHz
    • Supports 256 QAM (quadrature amplitude modulation)
    • Max Tx output power: +20dBm
    Block Diagram -- Wi-Fi 802.11 ax/Wi-Fi 6 /Bluetooth LE v5.4/15.4-2.4GHz RF Transceiver IP for IOT Application in TSMC22 ULL
  • All Digital Fractional-N RF Frequency Synthesizer PLL in Samsung 14LPP
    • Ultra-low jitter, less than 300fs RMS integrated between 12kHz to 20MHz.
    • Suitable for many RF applications, including LO, clocks for, ADC, DAC, high-speed PHY
    • Small die area (< 0.05 sq mm), using a LC tank oscillator
    • Output frequency can be from 1 to 2047 times the input reference, up to 8GHz
    Block Diagram -- All Digital Fractional-N RF Frequency Synthesizer PLL in Samsung 14LPP
  • All Digital Fractional-N RF Frequency Synthesizer PLL in Samsung 8LPP
    • Fractional Multiplication with frequencies up to 8GHz
    • Extremely low jitter (< 300fs RMS)
    • Small size  (< 0.05 sq mm)
    • Low Power (< 7mW)
    Block Diagram -- All Digital Fractional-N RF Frequency Synthesizer PLL in Samsung 8LPP
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