802.11 ax IP

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Compare 10 IP from 7 vendors (1 - 10)
  • 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
  • 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.
  • IEEE 802.11 n/ac/ax LDPC Decoder
    • LDPC Decoder, support all IEEE 802.11 n/ac/ax defined block lengths (648, 1296, 1944) and code rates (1/2, 2/3, 3/4 and 5/6).
    Block Diagram -- IEEE 802.11 n/ac/ax LDPC Decoder
  • IEEE 802.11 n/ac/ax LDPC Encoder
    • Encoder and decoder, support all IEEE 802.11 n/ac/ax de-fined block lengths (648, 1296, 1944) and code rates (1/2, 2/3, 3/4 and 5/6).
    Block Diagram -- IEEE 802.11 n/ac/ax LDPC Encoder
  • IEEE 802.11 ah WiFi HaLow
    • STA Infrastructure BSS
    • Single stream
    • Channel Bandwidth: 1MHz and 2MHz
    Block Diagram -- IEEE 802.11 ah WiFi HaLow
  • IEEE 802.11ax MAC/PHY for STA
    • Wireless standard 20MHz IEEE 802.11 ax STA
  • SDIO Card Device IP
    • The SDIO Card Device IP core is used to implement SDIO cards that are connected to a Host processor over a standard SD bus. The flexible architecture of the SDIO Device IP core is targeted to develop a range of portable, low-power cards such as the WiFi (802.11), GPS, WiMAX, UWB, LTE.
    • The SDIO Card Device IP core is fully compliant with the SD Specification Part E1 SDIO 3.0. It supports SPI, SD1, and SD4 bit transfer modes, and multiple functions per card. High-speed and full-speed SD data transfers are also supported.
    Block Diagram -- SDIO Card Device IP
  • Motion JPEG Over IP – HD Video Encoder Subsystem
    • This Video Over IP Subsystem employs JPEG compression and RTP/UDP/IP encapsulation to enable the rapid development of complete motion JPEG video streaming products. Hardware reference designs and customization services complete the solution. 
    • The subsystem uses CAST’s JPEG-E-S, JPEG2RTP, and UDPIP IP cores.
    Block Diagram -- Motion JPEG Over IP – HD Video Encoder Subsystem
  • H.264 Video Over IP – HD Decoder Subsystem
    • This Video Over IP Subsystem integrates H.264 Decompression, Transport Stream and RTP/UDP/IP de-capsulation to enable the rapid development of complete video streaming products.
    • Hardware reference designs and customization services complete the solution.
    Block Diagram -- H.264 Video Over IP – HD Decoder Subsystem
  • H.264 Video Over IP – HD Encoder Subsystem
    • This Video Over IP Subsystem integrates H.264 compression, Transport Stream and RTP/UDP/IP encapsulation to enable the rapid development of complete video streaming products.
    • Hardware reference designs and customization services complete the solution. 
    Block Diagram -- H.264 Video Over IP – HD Encoder Subsystem
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Semiconductor IP