Bluetooth 4.0 IP

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Compare 39 IP from 10 vendors (1 - 10)
  • Bluetooth LE v5.3 / IEEE 15.4 RF IP in TSMC 40nm & SMIC 55nm (Silicon proven IP)
    • BTLE 5 Compliant with 2Mbps data rate and Long Range support; IEEE 802.15.4 Compliant
    • Radio analog hard IP area < 0.5mm2. BTLE & digital soft IP is 150K gates.
    • Excellent RX Sensitivity at -97 dBm (Uncoded PHY, 1Mbps), -93.5 dBm (2Mbps)
    • Ultra-Low Power Operation (analog hard IP + modem)
  • 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)
  • 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
  • Bluetooth 5.3 Dual Mode PHY IP
    • The icyTRX-DM ultra-low-power RF transceiver IP is designed to meet 2.4 GHz standards like Bluetooth Classic (BR/EDR), Bluetooth Low Energy (BLE), 802.15.4 PHY Layer (e.g. ZigBee), and proprietary standards.
    • icyTRX-DM IP targets by far the lowest power consumption together with state-of-the-art performances (sensitivity, interferers rejection) and with minimal cost.
    • Thanks to its built-in LDOs, its fully programmable modem and its interface compatible with leading BT baseband controllers, the icyTRX-DM IP is optimized for easy integration into ASICs and SoCs
    Block Diagram -- Bluetooth 5.3 Dual Mode PHY IP
  • LC3plus Audio Codec IP for Bluetooth LE Audio
    • All Sampling Frequencies (8kHz, 16 kHz, 32 kHz, 44.1 kHz, and 48 kHz, For high-resolution Mode LC3 Plus also supports 96 kHz)
    • Supports 16, 24, and 32 bits per audio sample
    • Supports 2.5ms, 5 ms and 10ms frame interval
    • Supports 20 to 400 bytes per frame and channel for 10 ms
  • Dual-mode Bluetooth RF IP
    • Process Technology: GLOBALFOUNDRIES 22nmFDX
    • Supply voltage: 1.5 ~1.8v
    • Operating temperature: -40°C to 85°C
    • Support 6 modes including BT BR/EDR2M/EDR3M and BLE 1M/2M, Coded PHY S2/S8
    Block Diagram -- Dual-mode Bluetooth RF IP
  • Bluetooth Low Energy (BLE) IP
    • Process technology: GLOBALFOUNDRIES22FDX or SMIC55LL
    • No other special mask layers or devices such as MIM, HRP, or ESD are required
    • Compliant with the Bluetooth 5.4 Low Energy Single Mode RF Standard
    • Supply voltage: 1.1V +/-10%
    • Operating junction temperature: -40°C to 85°C
    Block Diagram -- Bluetooth Low Energy (BLE) IP
  • VeriSilicon Bluetooth Low Energy (BLE) RF IP
    • Single supply voltage: 1.5V to 3.6V
    • Operating junction temperature: -40ºC to 85ºC
    • RF output power: +8dBm
    • Low power consumption: RX: <12mW; TX: <14mW@0dBm
  • ultra Low power Bluetooth v5.3 Dual-Mode RF IP in TSMC40nm
    • Compliant with Bluetooth 5.2 dual mode
    • Single-ended antenna with internal matching network
    • Minimum mask layers
    • Minimum IO pins
  • Bluetooth 5.0 LE and Sub-GHz Transceiver
    • Sub-GHz bands : Up to request
    • Bluetooth 5 TX power: +10 dBm, RX sensitivity: -96 dBm
    • Sub-GHz TX power: +20dBm, RX sensitivity: -120 dBm
    Block Diagram -- Bluetooth 5.0 LE and Sub-GHz Transceiver
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