Sequans adopts Imagination's MIPS Aptiv CPUs for next-generation LTE products
Multi-threaded MIPS interAptiv cores to enable high efficiency single-mode solutions
London, UK – 19 December, 2013 – Imagination Technologies (IMG.L) announces that Sequans Communications S.A. (NYSE: SQNS) is leveraging its MIPS Aptiv CPUs in the creation of next-generation low-power, cost-effective single-mode LTE solutions targeting a broad range of markets including tablets, M2M, Internet of Things (IoT), wearables and other consumer products.
Sequans’ MIPS-based 4G products are already shipping to OEMs globally, and its MIPS-based EZLinkLTE™ VZ20Q, VZ20M and VZ21M LTE Release 9 Category 4 modules are certified by Verizon. Now, thanks to using Imagination’s MIPS interAptiv cores with hardware multi-threading, Sequans will deliver a new generation of highly-efficient single-mode LTE solutions.
Imagination’s MIPS interAptiv CPUs provide leading performance efficiency in their class. Hardware multi-threading technology within the interAptiv cores enables better overall throughput, quality of service (QoS), and power/performance efficiency for a wide range of applications. Imagination has demonstrated that multi-threaded MIPS CPUs can achieve as much as 45% performance improvements compared to single-threaded platforms for LTE and LTE Advanced baseband processing.
Says Tony King-Smith, EVP marketing, Imagination: “We are delighted to extend our relationship with Sequans to enable their new generation of high performance, cost-effective LTE solutions. Our multi-threaded MIPS cores such as interAptiv are a perfect example of our leadership in power and architectural efficiency – features across all our IP families. We look forward to working closely with Sequans to help them to leverage the power of our MIPS CPU IP cores to achieve further success in emerging high-growth single-mode LTE markets such as IoT.”
Says Craig Miller, VP marketing, Sequans: “With our single-mode LTE chips and modules, Sequans makes it easy and affordable for our customers to enable 4G connectivity in all types of products. The power and cost efficiencies embodied in Imagination’s multi-threaded MIPS CPUs help us to create high-performance LTE solutions that deliver high throughput, low power consumption and high reliability in a small form factor at a competitive price.”
About MIPS processors
Imagination’s family of MIPS CPU IP cores are ideal for products where ultra-low power, compact silicon area and high levels of integration are required. The comprehensive portfolio of MIPS processor IP cores range from the smallest 32-bit microcontrollers to high-performance 32-bit and 64-bit multi-core solutions. Based on a heritage of continuous innovations built over more than three decades, including full support for 64-bit for more than 20 years, Imagination’s MIPS architecture is the industry’s most mature and efficient RISC architecture, delivering the highest performance and lowest power consumption in a given silicon area. Thanks to the clean architecture, small silicon area and advanced power and thermal efficiency of the MIPS architecture, SoC designers have the ideal CPU solution for any application from the highest performance network servers, to the most power-efficient mobile applications processors, down to the smallest deeply embedded microcontrollers for IoT.
About Imagination Technologies
Imagination Technologies - a global leader in multimedia, processor, communication and cloud technologies - creates and licenses market-leading processor solutions including graphics, video, vision, CPU and embedded processing, multi-standard communications, cross-platform V.VoIP and VoLTE and cloud connectivity. These silicon and software intellectual property (IP) solutions for systems-on-chip (SoC) are complemented by an extensive portfolio of software, tools and ecosystems. Target markets include mobile phone, connected home consumer, mobile and tablet computing, in-car electronics, networking, telecoms, health, smart energy and connected sensors. Imagination’s licensees include many of the world’s leading semiconductor manufacturers, network operators and OEM/ODMs. Corporate headquarters are located in the United Kingdom, with sales and R&D offices worldwide. See: www.imgtec.com.
|
Imagination Technologies Group plc Hot IP
Related News
- Imagination's MIPS CPUs power Sequans' newest Colibri and Calliope LTE chipset platforms for IoT and M2M
- Blu Wireless combines Imagination's MIPS Aptiv CPUs in groundbreaking 60GHz System IP for WiGig and backhaul markets
- Imagination's multi-threaded MIPS CPUs streamline system development in Valens' new automotive solution
- Imagination and Altair report growing traction for Altair's LTE devices with MIPS CPUs
- MIPS multi-threaded CPUs from Imagination push performance to new levels for Altair's new LTE chipsets
Breaking News
- Frontgrade Gaisler Unveils GR716B, a New Standard in Space-Grade Microcontrollers
- Blueshift Memory launches BlueFive processor, accelerating computation by up to 50 times and saving up to 65% energy
- Eliyan Ports Industry's Highest Performing PHY to Samsung Foundry SF4X Process Node, Achieving up to 40 Gbps Bandwidth at Unprecedented Power Levels with UCIe-Compliant Chiplet Interconnect Technology
- CXL Fabless Startup Panmnesia Secures Over $60M in Series A Funding, Aiming to Lead the CXL Switch Silicon Chip and CXL IP
- Cadence Unveils Arm-Based System Chiplet
Most Popular
- Cadence Unveils Arm-Based System Chiplet
- CXL Fabless Startup Panmnesia Secures Over $60M in Series A Funding, Aiming to Lead the CXL Switch Silicon Chip and CXL IP
- Esperanto Technologies and NEC Cooperate on Initiative to Advance Next Generation RISC-V Chips and Software Solutions for HPC
- Eliyan Ports Industry's Highest Performing PHY to Samsung Foundry SF4X Process Node, Achieving up to 40 Gbps Bandwidth at Unprecedented Power Levels with UCIe-Compliant Chiplet Interconnect Technology
- Arteris Selected by GigaDevice for Development in Next-Generation Automotive SoC With Enhanced FuSa Standards
E-mail This Article | Printer-Friendly Page |