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Minimize power domain leakage and design margins while shortening Time-To-Market

Low-power SoCs rely on two design techniques, namely multiple operating frequencies and supply voltages to minimize dynamic power and coarse grain power gating by shutting down parts in sleep mode to save a large amount of leakage power (e.g. up to 99% saving). The implementation of such design techniques requires the insertion of specific cells

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Hisense selects their SoC Fabric for IoT from Dolphin Integration

Launching any SoC on a highly competitive market demands a differentiation for which Hisense was searching for an ultra low-power solution to extend battery life-time of wireless-connected devices. Designing such an integrated circuit introduces new challenges: silicon area, power consumption and BoM cost must be aggressively reduced, while dealing with noise issues in a mixed-signal

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Pairing Sensitive RF with Voltage Regulators for Noise-Free IoT Modules
A. Lacourse

Internet of Things (IoT) applications are getting numerous, more power-stringent and smaller with every generation, requiring tighter control of power management and maximized function integration. This includes the integration within the same SoC of power-efficient voltage regulators and noise-sensitive modules (e.g. RF) that must be supplied with the appropriate level of noise immunity. This article

Pairing Sensitive RF with Voltage Regulators for Noise-Free IoT Modules
A. Lacourse
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Amazing improvement of power and density for RFID chips with standard cell libraries at 180 nm

For RFID Tags, dynamic power is a critical factor as the capability for lower power translates immediately into a wider range of detection (RFID tag read range) and/or a highest identification rate in the same range. The main degree of freedom to improve power and area of RFID tag is located in the digital block.

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Dolphin Integration unveils a Smart Modulator for lowest power-consumption of digital microphones

The trend for intuitive and simple user interfaces is driving the growing demand for voice control, either for complementing or for replacing keyboards, touchscreens and other traditional controls. This need for a new generation of green microphones leads to embedding the capability for waking up the rest of the system as soon as a voice

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