VeriSilicon 400MHz 802.15.4g RF IP
LIGHT is a RF IP supporting general modulation modes on 433MHz~510MHz band.
- SMIC
- 55nm
- LL
- Silicon Proven
Wireless IP cores provide the radio, baseband, protocol, and positioning technologies required to enable wireless connectivity in modern SoC and ASIC designs.
This category includes Bluetooth, Wi-Fi, Cellular, GNSS, NFC, UWB, IEEE 802.15.4, Sub-GHz ISM, and Broadcast IP solutions. These technologies support a wide range of applications, from low-power IoT connectivity and secure device pairing to high-speed wireless networking, cellular communications, precise positioning, asset tracking, and broadcast reception.
This catalog enables semiconductor engineers to evaluate and compare Wireless IP cores from leading vendors based on supported standards, data throughput, RF performance, receiver sensitivity, power consumption, spectrum efficiency, coexistence capabilities, security features, and semiconductor process node compatibility.
Whether developing IoT devices, smart home products, wearables, smartphones, automotive systems, industrial automation equipment, asset tracking solutions, or wireless infrastructure platforms, engineers can identify the wireless connectivity IP best suited to their coverage, performance, power, and integration requirements.
VeriSilicon 400MHz 802.15.4g RF IP
LIGHT is a RF IP supporting general modulation modes on 433MHz~510MHz band.
VeriSilicon Bluetooth Low Energy (BLE) RF IP
Bluetooth Low Energy (BLE) RF IP provides a transceiver designed for Bluetooth Smart applications.
BLE & BT 5.2 dual mode RFIP in UMC 55nm~22nm
ACTT’s Bluetooth 5.2 Radio IP available in 55nm~22nm logic process node.
BLE & BT 5.2 dual mode RFIP in SMIC 55nm~28nm
ACTT’s Bluetooth 5.2 Radio IP available in 55nm~22nm logic process node.
BLE & BT 5.2 dual mode RFIP in TSMC 55nm~22nm
ACTT’s Bluetooth 5.2 Radio IP available in 55nm~22nm logic process node.
ACTT’s Bluetooth Low Energy 5.2 Radio IP available from 55nm~22nm logic process node.
ACTT’s Bluetooth Low Energy 5.2 Radio IP available from 55nm~22nm logic process node.
ACTT’s Bluetooth Low Energy 5.2 Radio IP available from 55nm~22nm logic process node.
O-RAN Fronthaul Transport Subsystem
Pre – Integrated IP solution tailored to work together efficiently, thus simplifying the integration into an FPGA or ASIC O-RAN F…
Cobalt is an ultra-low-power GNSS receiver IP that supersize the market scope of your IoT System-on-Chip.
L5-direct GNSS receiver IP Core
The challenges of today’s GNSS Today’s mobile GNSS technology has significant reliability and accuracy limitations because it sti…
Open Radio Access Networks (Open-RAN) for 5G
5G radio, improves spectral efficiency while offering unrivaled network capacity.
GNSS (GPS, Galileo, GLONASS, Beidou3, QZSS, SBAS) Ultra-low power RF Receiver IP
This GNSS RF Receiver IP is silicon-proven in TSMC40nm ULP process node, offers comprehensive support for all current satellite-b…
A RF Transceiver (IP/die) for adding Bluetooth Low Energy v5.2 (2.4GHz) capability to any SoC with embedded MCU via a standard SP…
This datasheet present s the verification e nvironment of Comsis IEEE 802.11n PHY IP, including a SystemVerilog test bench.
Mindtree's Metal to Cloud Solution for Wireless lighting industry based on Bluetooth Mesh
Mindtree has been one of the few companies with expertise in both Bluetooth as well as IoT technologies.
v1.0.1 Bluteooth Mesh Stack and Models
Bluetooth Mesh specifications are defined by the Bluetooth Special Interest Group to enable an interoperable mesh networking solu…
Bluetooth 5.0 LE and Sub-GHz Transceiver
The BLE5SUBGS40LP RF IP is designed for SMIC 40nm LP Process.
Bluetooth 5.0 LE,Zigbee, and Sub-GHz Transceiver
The BLE5ZSUBGS40LP RF IP is designed for SMIC 40nm LP Process.
Bluetooth 5.0 LE,Zigbee, and Sub-GHz Transceiver
The BLE5ZSUBGS40LP RF IP is designed for SMIC 40nm LP Process.