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Dolphin Integration announce the availability of their Reusable Power Kit Library at TSMC 180 nm eLLGrenoble, France – August 18, 2014 -- In the connected world, the IoT is getting all the attention, for which battery lifetime is the biggest challenge. To reach the lowest power consumption, leading Fabless suppliers optimize their SoC architectures by implementing different power domains and by embedding the associated regulators. To help Fabless suppliers achieve their goals, Dolphin Integration have turned their offering for power regulation components into a Reusable Power Kit Library (RPKL) for a reduced Time-to-Market, thanks to the DELTA standard starting with TSMC 180 nm eLL. Both the Delta Standard and its RPKL implementation feature drastic improvements for low leakage. The latter enables specific regulation components for optimizing upstream with any battery or USB source and downstream with any charge. SoC users may get the benefit of not only controlling power consumption, but also addressing the optimization of efficiency, of silicon density or of Bill-of-Material cost. The RPKL Delta is comprised of a number of critical regulation components including:
Of course, no RPKL can be exhaustive, neither needed in its entirety, and Fabless providers may want to master some exceptional regulation components for some unique application, so that the Delta standard (its new rules and its new views) enables the match and mix of the RPKL Delta with third parties' regulation components. Furthermore, users of the Delta RPKL may take advantage of the library offering from Dolphin Integration at 180 nm to implement their power domains with the best trade-off between area & power. Typically, SESAME BIV Standard Cell Library, at any Battery Interface Voltage:
For more information contact regulators@dolphin-ip.com. About Dolphin Integration Dolphin Integration contribute to "enabling mixed signal Systems-on-Chip". Their focus is to supply worldwide customers with fault-free, high-yield and reliable kits of CMOS Virtual Components of Silicon IP, based on innovative libraries of standard cells, flexible registers and low-power memories. They provide high-resolution converters for audio and measurement, regulators for efficient power supply networks, application optimized micro-controllers.
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