Third-party organizations confirm that ImaginaTIon's technology has the best power consumption efficiency in practical applications
Global Mobile Communications Conference, Barcelona, ​​Spain-February 25, 2013-ImaginaTIon Technologies (IMG.L), a leading provider of multimedia, processor, communications and cloud technologies, said that power consumption and thermal design have become mobile SoC design decisions The main considerations.
ImaginaTIon has invested a lot of resources in low-power design research in order to extend the increasingly important battery life for mobile and embedded computing systems. This low-power-first design philosophy has made ImaginaTIon a leading GPU supplier in the mobile market, as well as an important supplier in many markets including ultra-thin flat-screen TVs, complex car dashboards, networked audio / media players, and portable computers. These Market requirements for power consumption and thermal design are as strict as for mobile devices.
Tony King-Smith, executive vice president of marketing at Imagination, said: "The industry needs to take action to understand the power consumption and heat dissipation requirements of end products running real software systems, rather than just benchmarking on development boards. Everyone is discussing power consumption The importance of management, and this is where the industry ’s leading companies stay ahead, supporting advanced SoCs with complex power management. "
He added: "Unfortunately, the benchmark tests used to evaluate system performance rarely consider power consumption, even if this is already the most important consideration in all new projects. We are working closely with the benchmarking industry in the future Adapt to this requirement in the benchmark test, and encourage people in the industry to take into account the power consumption under the actual operating conditions of the end product when evaluating performance indicators. "
Imagination has deployed a wide range of fine power management features and functions in all of its IP core products, including:
-PowerGearing â„¢ adjustment and management function in PowerVR Series6 GPU architecture, built-in dedicated controller is responsible for local power consumption control, automatic gating, dynamic voltage and frequency adjustment (DVFS) and other methods.
-Hardware thread management and kernel-level DVFS functions provided in the MIPS® processor core.
-Ensigma communication and connection products use ultra-low clock PHY modules and encoding processors, as well as highly configurable hardware modules optimized for power consumption.
According to the analysis of third-party organizations, products with built-in Imagination technology can provide more excellent low power consumption and heat dissipation design than products developed with other IP.
Playwares, a well-known Korean hardware website, pointed out that when a leading tablet computer using PowerVR technology runs GLBenchmark 2.5 Egypt HD, it has a 20% lower heat than products using other competitor technologies. At the same time, the tablet can also provide nearly 50% higher 3D performance.
Anandtech, a leading technology evaluation media site, said that compared to its three major competitors, PowerVR has the lowest GPU power consumption when running 3D game content. PowerVR GPUs have set standards for OEMs and consumers ’power consumption expectations for high-end mobile products (power consumption must be less than 2W for longer battery life), while competitors’ power consumption often triples many.
PowerVR â„¢
The power consumption advantage of PowerVR GPU comes from the most basic architectural design, including various advanced power management functions that can significantly save power consumption, such as the handshake mechanism between the GPU and SoC power management module.
PowerVR Series6 GPUs are organized in programmable computing units in clusters, which minimizes power consumption and improves computing performance density. PowerGearing â„¢ is a powerful power management mechanism that enables the PowerVR Series6 'Rogue' core to provide mobile devices with proven best-in-class low power efficiency. The GPU processing cluster in operation can be dynamically adjusted according to the optimal power consumption. For example, the six-cluster PowerVR G6630 can manage each pair of clusters, implement three operation modes (X2, X4, and X6) and provide basic 2D drawing basic functions for simple UI modes.
The entire drawing pipeline is also designed and managed from the perspective of power consumption optimization. A built-in small processor can perform internal power control and automatic gating operations, and can be used to implement dynamic voltage and frequency adjustment (DVFS) and PowerGearing mechanism. .
By providing optimal computing and drawing data paths, more on-chip processing, and various lossless or lossy compression methods in the processing pipeline, the power consumption and performance are further optimized.
MIPS®
MIPS processor cores are ideal for products that require ultra-low power consumption, low cost, and high integration.
The MIPS core is designed for high performance and low power consumption. It uses power management techniques including multithreading, gated clock and gated voltage, voltage and frequency adjustment, and multicore scaling, and is licensed by MIPS and leading architecture Manufacturers provide advanced applications and network processing platforms from ultra-low power 32-bit microcontrollers to scalable 32-bit and 64-bit multi-core solutions.
Compared with the leading IP core competitive solution, the MIPS processor series can provide the same or better performance in a smaller chip area; using the same process technology, similar configuration and comprehensive method, the MIPS processor can use nearly half of the silicon The area achieves the same performance results. SoC designers can use this efficiency advantage to significantly reduce cost and power consumption, or deploy additional cores so that they can provide performance advantages over competing chips with the same power consumption, heat dissipation, and area budget.
Imagination's MIPS Aptiv â„¢ microprocessor core has been awarded the "Best Processor IP 2012" award at the annual analyst's choice award from the research institute The Linley Group.
Ensigma â„¢
The Ensigma communication core uses a low-power optimized architecture, combining fixed and programmable cores properly.
Tasks such as signal conditioning, transmission, and error correction processing are handled by highly efficient fixed-function components, while various modulation and demodulation and communication protocols, etc., are programmed on a complex vector processor with multiple parallel processing units through microcode programming.
This architecture has been verified in multiple low-power audio and connected devices.
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