EP1584107A2

Adaptive negative differential resistance device

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 17 December 2023, 2.8 years ago.

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21 claims: 4 independent, 17 dependent

  1. 1
    Claims of equivalent WO 2004059697 A2 A method of operating an adaptive silicon based negative differential resistance (NDR) device in an integrated circuit, comprising the steps of:operating the adaptive silicon-based NDR device with a first current- voltage relationship during a first time period;and operating the adaptive silicon-based NDR device with a second current- voltage relationship during a second time period;and wherein said first current-voltage relationship and said second current- voltage relationship NDR characteristic are suffidentiy different so as to permit the adaptive silicon based NDR device to have two distinct operational modes, including a first operational mode and a second operational mode respectively;switching the adaptive silicon-based NDR device between said first operational mode and said second operational mode in response to a control signal generated by a control circuit on the integrated circuit. The method of claim 1, wherein said first current-voltage relationship and said second current-voltage relationship are caused by applying a first gate bias potential and a second gate bias potential respectively to a gate terminal of the silicon based NDR device. The method of claim 1, wherein said first current-voltage relationship and said second current-voltage relationship are caused by applying a first gating signal at a first clocking frequency and a second gating signal at a second clocking frequency respectively to the adaptive silicon based NDR device. The method of claim 1, wherein said control signal is based on a power consumption mode used in the integrated circuit, such that during said second operational mode said adaptive silicon based NDR device consumes less power than during said first operational mode. The method of claim 1, wherein a first current used by the adaptive silicon based NDR device during said first operational mode for a given bias condition is greater than a second current used by the adaptive silicon based NDR device during said second operational mode.
  2. 6
    10. A method of operating a circuit that includes an adaptive negative differential resistance (NDR) element, comprising the steps of:(a) operating the adaptive NDR element with a first peak-to-valley ratio (PVR) during a first period in which the circuit is performing a processing operation;and (b) operating the adaptive NDR element with a second PVR during a second period in which the circuit is not performing a processing operation, so as to reduce a current consumed by the adaptive NDR element, said first PVR being at least 50% greater than said second PVR;wherein a peak-to-valley ratio (PVR) characteristic of the adaptive NDR element is adaptable to an operational requirement of the circuit.
  3. 9
    13. A method of making a semiconductor circuit comprising the steps of:forming a silicon-based adaptive NDR device which can operate with a first current-voltage relationship during a first time period and a second current- voltage relationship during a second time period;and wherein said first current-voltage relationship and said second current- voltage relationship are suffidentiy different so as to permit said silicon based adaptive NDR device to have two distinct operational modes, including a first operational mode and a second operational mode respectively;forming a control circuit for switching said silicon-based adaptive NDR device between said first operational mode and said second operational mode.
  4. 14
    18. A semiconductor circuit comprising:an adaptive silicon-based NDR device which is adapted to operate with a first current-voltage relationship during a first time period and a second current- voltage relationship during a second time period;and wherein said first current-voltage relationship and said second current- voltage relationship NDR characteristic are suffidentiy different so as to permit said adaptive silicon based NDR device to have two distinct operational modes, including a first operational mode and a second operational mode respectively;a control drcuit for switching said adaptive silicon-based NDR device between said first operational mode and said second operational mode.
  5. 18
    22. The semiconductor circuit of claim 18, further including a second control circuit, and wherein said control circuit controls a peak-to-valley current ratio (PVR) of a plurality of a first type of said adaptive silicon-based NDR device used in a memory circuit, and said second control circuit controls a peak-to- valley current ratio (PVR) of a plurality of a second type of said adaptive silicon-based NDR device used in a logic circuit.
  6. 19
    23. In a silicon-based negative differential resistance (NDR) device, the improvement comprising:the NDR device being configured to be self-adaptive such that a valley current decreases during a first time period to cause a corresponding increase in a peak-to-valley current ratio (PVR) during said first time period;wherein an external control signal is not required to modify said PVR for the NDR device.