20240085968.Dynamic Interface Circuit to Reduce Power Consumption simplified abstract (apple inc.)

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Dynamic Interface Circuit to Reduce Power Consumption

Organization Name

apple inc.

Inventor(s)

Tzach Zemer of Haifa (IL)

Lior Zimet of Kerem Maharal (IL)

Sagi Lahav of Kiryat Bialik (IL)

Dynamic Interface Circuit to Reduce Power Consumption - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240085968 titled 'Dynamic Interface Circuit to Reduce Power Consumption

Simplified Explanation

The patent application describes a system for a device with multiple systems on a chip (SoCs) that communicate with each other through interface and bridge circuits. The system can enter an idle mode, triggering the bridge circuit to put some communication devices into a low power state.

  • Explanation of the patent/innovation:

- The system includes multiple SoCs with interface and bridge circuits. - The interface circuit has communication devices for data transfer. - The bridge circuit controls functions of the interface circuit. - When the system enters idle mode, the bridge circuit signals to put some communication devices in low power state.

Potential Applications

This technology could be applied in: - Mobile devices - Internet of Things (IoT) devices - Networking equipment

Problems Solved

- Power consumption optimization - Efficient communication between SoCs - Enhanced system performance

Benefits

- Improved energy efficiency - Enhanced system reliability - Better overall system performance

Potential Commercial Applications

Optimizing power consumption in: - Smartphones - Smart home devices - Networking hardware

Possible Prior Art

One possible prior art could be similar systems used in mobile devices or networking equipment to optimize power consumption and improve communication efficiency.

Unanswered Questions

How does this technology impact overall system cost?

This article does not address the potential impact of implementing this technology on the overall cost of the system. The cost-effectiveness of integrating these features would be crucial for widespread adoption.

What are the potential security implications of this technology?

The article does not discuss the security aspects of the system. It would be important to understand how the transition to a low power state in some communication devices could affect the overall security of the system.


Original Abstract Submitted

a system for a given device may include a plurality of systems on a chip (socs). each soc may include an interface circuit and a bridge circuit for communicating with other socs. the interface circuit of an soc may include a plurality of communication devices to transfer data packets from/to the soc to the other socs. the bridge circuit may provide various control functions for the interface circuit. an indication may be generated when the system enters an idle mode. in response, the bridge circuit may generate signal(s) to cause some of the communication devices of the interface circuit into a low power state. the interface circuit may obtain the signal(s) and accordingly transition some of the communication devices to the low power state.