
Understanding UWB Frame Structure: SYNC, SFD, PHR, Payload, and STS
An overview of UWB frame structures as defined by IEEE 802.15.4z, detailing the purpose and function of the SYNC, SFD, PHR, PHY Payload, and STS fields.
Showing 6 posts (Page 1 of 1)
Advertisement
An overview of UWB frame structures as defined by IEEE 802.15.4z, detailing the purpose and function of the SYNC, SFD, PHR, PHY Payload, and STS fields.
Explore UWB test equipment vendors like Litepoint, R&S, Keysight, and NI. Find tools for UWB measurements compliant with IEEE 802.15.4 standards.
Explore Wi-SUN PHY modes, including symbol rates and modulation indices, as defined by IEEE 802.15.4g/u/v standards.
Explore the similarities and differences between WirelessHART and ISA100.11a, two wireless technologies commonly used in process and plant automation.
An overview of Zigbee channels in the 2.4GHz, 868MHz, and 915MHz bands. Includes frequency allocations and data rates for each band as defined by IEEE 802.15.4.
Understand the Zigbee physical layer (PHY), including 868/915MHz and 2450MHz formats, modulation techniques, and the PPDU frame structure.
Advertisement