Vendor: Ceva, Inc. Category: UWB

Low Power Ultra-wideband (UWB) IP

The Ceva-Waves UWB platform cuts the development time and risk for implementing a wide range of UWB functionality in SoCs.

Overview

The Ceva-Waves UWB platform cuts the development time and risk for implementing a wide range of UWB functionality in SoCs. It provides optimized MAC and PHY hardware IP and supporting software for secure and accurate ranging, and Doppler Radar presence detection applications. It can be implemented in an SoC independently or in conjunction with the Ceva-Waves Bluetooth platform, as well as part of the Ceva-Waves Links family of multiprotocol platforms.

The Solution

The Ceva-Waves UWB platform includes hardware IP for an optimized UWB MAC and PHY meeting 802.15.4 HRP, FiRa 3.0, and the Car Connectivity Consortium Digital Key 3.0 (CCC DK3.0) requirements. The platform includes advanced Wi-Fi interference suppression.

A comprehensive suite of CPU-agnostic software stacks that support FiRa 3.0 MAC, CCC DK3.0 MAC, and radar for implementing applications such as automotive digital keys and in-cabin child-presence detection (CPD), general power-saving presence detection in laptops, TVs and smart buildings, asset tracking tags, real-time location services (RTLS), and tap-free payment.

Key features

  • UWB MAC and PHY IP with support of enhanced ranging and security based on IEEE 802.15.4z HRP in accordance with FiRa 2.0 and CCC Digital Key 3.0 requirements
  • UWB Doppler Radar support for automotive in-cabin Child Presence Detection (CPD) and general Human Presence Detection (HPD)
  • Low power hardware PHY, implementing a high sensitivity coherent receiver with power optimized synchronization and advanced Wi-Fi interference suppression
  • PHY supports centimeter-level accuracy for ranging and angle-of-arrival (AoA) estimation using multiple antennas
  • Portable MAC layer software, with hardware offloading for encryption/authentication (CCM AES) and key management, autonomous ACK handshaking and other real-time-critical operations
  • Supports secured data transfer up to 27Mbps using pulse based ultra-wideband communication with 500 MHz bandwidth
  • Flexible low power modes applicable to FiRa and CCC ranging scenarios
  • Easy interface to Ceva NPU and DSP cores, and Ceva-partner or third-party radios

Block Diagram

Benefits

  • With proven MAC and PHY hardware IP and a wide range of application software, the Ceva-Waves UWB platform provides a fast, reliable route to FiRa and CCC UWB functionality in an SoC, separately or in conjunction with Ceva-Waves Bluetooth.
  • In the latter configuration, operation of the two platforms can be orchestrated to minimize power consumption over long operating periods.
  • The platform complies with major standards such as FiRa 2.0 and CCC DK 3.0. An optimized hardware and software architecture assures precise and robust location and radar data sufficient to detect human respiration remotely even in the presence of complex multipath environments and strong Wi-Fi signals.

Applications

  • Consumer IoT
  • Automotive
  • Industrial 
  • Mobile
  • PC 

What’s Included?

  • Hardware: verilog RTL, testbench, compilation, simulation and synthesis scripts
  • Software: C code, with software packages for FiRa 2.0 MAC, CCC DK3.0 MAC, Radar (CPD)
  • Documents

Specifications

Identity

Part Number
Ceva-Waves UWB
Vendor
Ceva, Inc.
Type
Silicon IP

Files

Note: some files may require an NDA depending on provider policy.

Provider

HQ: USA

Learn more about UWB IP core

UWB, Digital Keys, and the Quest for Greater Range

Ultra-Wideband (UWB) technology is rapidly becoming a household name, and for good reason. This isn’t just another wireless standard, it’s a game-changer for how we interact with the world around us.

FiRa 3.0 Use Cases: Expanding the Future of UWB Technology

UWB technology has gained significant attention in recent years, especially after being added to Apple’s iPhones since iPhone 11 back in 2019. In addition to Apple, other device manufacturers such as Samsung and Google have also adopted UWB technology in their devices, and UWB is becoming standard in the latest generation of smartphones, smartwatches, and other wearables.

The Rise of Physical AI: When Intelligence Enters the Real World

Artificial Intelligence has largely lived in the digital realm, analyzing text, images, speech, and data streams inside servers, clouds, and devices. A new phase is now emerging: Physical AI. Physical AI extends intelligence beyond perception and reasoning into action, enabling machines to sense, decide, and interact with the physical world in real-time.

Frequently asked questions about UWB IP cores

What is Low Power Ultra-wideband (UWB) IP?

Low Power Ultra-wideband (UWB) IP is a UWB IP core from Ceva, Inc. listed on Semi IP Hub.

How should engineers evaluate this UWB?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this UWB IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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