Qorvo Brochures
-
Modelithics® Qorvo GaN Library Brochure
1/11/2019
The Modelithics® Qorvo GaN Library is a collection of precision nonlinear simulation models for Qorvo GaN die and packaged transistor devices. It provides designers with a very flexible and accurate design tool that offers many advantages over ideal for file-base models.
-
Qorvo Customer Premise Equipment Solutions
10/17/2017
Qorvo’s portfolio of products are designed for Wi-Fi applications including customer premises equipment (CPE), enterprise systems, and the Internet of Things (IoT). These solutions focus on reducing power consumption and interference solutions while maintaining high throughput and coverage. The products can enable up to 802.11 ac Wave 2 features, such as 1024 QAM modulation schemes and 160 MHz bandwidth channels. Products also perform well against the requirements for 802.11 ax systems.
-
Broadband DOCSIS 3.1 Solutions
10/17/2017
Qorvo's next-generation DOCSIS 3.1 products for cable networking applications include the 1.2 GHz power amplifiers as both hybrids and multi-chip modules (MCMs) that use the GaN HEMT process technology, and offer optimal linearity and output power while providing robust reliability.
-
Qorvo IoT Solutions
1/29/2021
Qorvo® technology is advancing and expanding the Internet of Things (IoT) by solving the difficult challenges of connecting people, places, and things – including smart homes and smart cars. Qorvo leads the industry with solutions that support all wireless communication protocols, including IEEE 802.15.4, Zigbee, Thread/CHIP, Bluetooth® Low Energy, Wi-Fi, and cellular IoT (LTE, NB-IoT) – creating a future-proof foundation for the connected world. Download the brochure for more information.
-
Coexistence And Bandedge: Wi-Fi Filter Solutions
9/7/2017
As LTE deployments accelerate worldwide, Qorvo designs LowDrift filters specifically for solving LTE coexistence issues. For example, the 2400-2482MHz spectrum used by Wi-Fi lies between bands 40 and 41, which are used to deliver TDD-LTE service in China.
-
Qorvo Smart Energy Solutions Brochure
8/18/2020
Qorvo offers a portfolio of front-end modules as smart energy solutions for high performance AMI and Zigbee applications in the 2.4 GHz to 2.5 GHz frequency range. Features include an integrated PA, Tx harmonic filtering, an LNA and the appropriate switches. These solutions can operate up to greater than 2 W of power with high gain from 28 to 31 dB.
-
Qorvo Carrier Aggregation
3/27/2018
Enabling CA requires simultaneous communication on multiple CCs. In some cases the RF front end must support multiple transmit and/or receive paths between the antenna(s) and transceiver. Isolation of these paths requires multiplexed RF filters or physically separated antennas.
-
Qorvo Automotive Solutions
1/29/2021
Qorvo offers an expanding portfolio of automotive related products for Wi-Fi applications which includes high-linearity front end modules (FEMs), low-loss switches, and filters. These products are designed to reduce the time it takes to develop Wi-Fi systems, making it easier to implement onto and an automotive PCB design.
-
Optical Solutions
9/27/2017
Qorvo offers innovative optical fiber network limiting and linear modulator drivers and TIAs enabling local access, data center interconnect, regional, metro and long-haul optical networks with cost effective transmit, and receive solutions for 100/400 Gb/s and beyond.
-
Qorvo Communications SOI Switch/Attenuator Solutions
10/17/2017
Qorvo offers a family of broadband SOI (silicon-on-insulator) based switches, DSAs (digital step attenuators), TCAs (temperature compensating attenuators), and PACs (programmable array capacitors) are built to enable the integration of RF, analog, and mixed signal functionality into single monolithic devices with excellent ESD rating, high isolation, low insertion loss, and stable performance across PVT conditions. These devices are ideal for smartphones, cellular infrastructure, broadband communication, industrial, automotive, defense communication, and test and measurement markets.