CEVA and Mindspeed expand partnership to meet LTE-Advanced small cell

CEVA and Mindspeed, a small cell system-on-chip (SoC) solution manufacturer, announced the expansion of their strategic partnership. CEVA provides Mindspeed with the CEVA-XC4000 DSP for the next-generation LTE-Advanced multimode small cell Transcede SoC Licensing. Mindspeed was licensed and used CEVA-X and CEVA-XC DSP in its previous generation LTE SoC. Currently, Mindspeed is working with multiple operators for mass deployment.

Mindspeed's first CEVA-XC4000-based products are Transcede T3400 and T4400 SoCs. These SoCs utilize CEVA-XC4000 1GHz DSP processing speed and advanced multi-core functions to meet the needs of dual-mode smart enterprise small base stations and metrocells. Support the simultaneous operation of 3G (HSPA / HSPA + or TD-SCDMA) and LTE / LTE-Advanced (LTE FDD or TD-LTE), CEVA-XC4000 provides a powerful software-defined platform for the Transcede product line to achieve a clear The roadmap from 3GPP Release 10 (LTE-A) to Release 12 (LTE-B).

Raouf Y. Halim, Chief Executive Officer of Mindspeed, said: "CEVA and Mindspeed have a strong and successful partnership in small cell SoCs and launched commercial LTE products for the first time in 2012. By deploying the CEVA-XC4000 DSP in the design, we can significantly improve the performance and flexibility of the SoC and provide mobile operators with a cost-effective, excellent, and high-performance small cell solution. "

CEVA CEO Gideon Wertheizer said: "Since the launch of the Transcede product line, Mindspeed has been at the forefront of small cell product innovation. The company's SoC products for LTE-Advanced microcell and metrocell continue to develop strongly. T3400 and T4400 use our CEVA -XC4000 DSP to implement a software-based small base station architecture, providing operators with a seamless transition to implement next-generation multimode HSPA / LTE / LTE-A networks. "

CEVA-XC4000 uses an innovative instruction set to implement highly complex software-based baseband processing that meets advanced communication standards such as LTE-Advanced and Wi-Fi 802.11ac 4x4. The architecture integrates a series of features specifically designed to meet the requirements of base station applications, provides powerful support for high-dimensional MIMO and high precision, and also provides advanced support for DSP offloading to dedicated pre-optimized tightly coupled coprocessor units. In addition, this architecture also includes advanced data communication management, for easy integration of DSP clusters and ARM? Special multi-core features such as fast system interconnection support for local processor connections, and a complete set of baseband software libraries and advanced C language compilers are provided to achieve full processor utilization at the C language level, simplifying software development.

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