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Journal ArticleDOI

A 0.9-V 33.7-ppm/°C 85-nW Sub-Bandgap Voltage Reference Consisting of Subthreshold MOSFETs and Single BJT

TLDR
A low temperature coefficient (TC) and high power supply ripple rejection (PSRR) CMOS sub-bandgap voltage reference (sub-BGR) circuit using subthreshold MOS transistors and a single BJT is presented in this brief.
Abstract
A low temperature coefficient (TC) and high power supply ripple rejection (PSRR) CMOS sub-bandgap voltage reference (sub-BGR) circuit using subthreshold MOS transistors and a single BJT is presented in this brief. The proposed sub-BGR consists of a novel complementary-to-absolute-temperature (CTAT) voltage generator based on a scaled emitter-base voltage of a BJT, and an improved proportional-to-absolute-temperature (PTAT) voltage generator based on stacking of $\Delta V_{\mathbf {GS}}$ of sub- $V_{\mathbf {TH}}$ MOSFETs. As the CTAT circuit achieves a reduced absolute value of the negative TC, the PTAT circuit achieves reduced power consumption without consuming a large chip area. The proposed sub-BGR circuit is implemented in a standard 0.18- $\mu \text{m}$ CMOS process. Measured results show that the sub-BGR circuit can run with a supply voltage down to 0.9 V while the power consumption is only 85 nW. An average TC of 33.7 ppm/°C and a PSRR of better than −40 dB over the full frequency range are achieved.

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Citations
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Design Of Analog Cmos Integrated Circuits

TL;DR: The design of analog cmos integrated circuits is universally compatible with any devices to read and is available in the book collection an online access to it is set as public so you can download it instantly.
Journal ArticleDOI

A 48 pW, 0.34 V, 0.019%/V Line Sensitivity Self-Biased Subthreshold Voltage Reference With DIBL Effect Compensation

TL;DR: A compensation structure utilizing the drain-induced-barrier-lowering (DIBL) effect is proposed to sink a supply dependent current from the output branch of a self-biased CMOS reference, which cancels the bias current’s dependence on the supply voltage due to the DIBL effect.
Journal ArticleDOI

A 28 ppm/°C, 2.54 ppm/V, −77 dB@100 Hz pico-ampere voltage reference for high-end IoT systems

TL;DR: In this article, a pico-ampere voltage reference for IoT systems with high performance in line regulation and power supply rejection ratio (PSRR) was obtained by taking advantage of the threshold voltage differences between two types of MOSFETs with different gate oxide thicknesses.
Journal ArticleDOI

All–MOS self-powered subthreshold voltage reference with enhanced line regulation

TL;DR: In this article, a self-powered voltage reference configuration was developed for the integrated microsystems in standard CMOS technology, which can be made very insensitive to the power supply glitches originating from the simple regulation mechanisms used to harvest energy from the environment.
Journal ArticleDOI

0.7-V supply, 21-nW All–MOS voltage reference using a MOS-Only current-driven reference core in digital CMOS

TL;DR: A nano-power all-MOS voltage reference circuit is proposed without any integrated resistor or bipolar transistor to generate multiple voltage sources in inexpensive digital CMOS technologies.
References
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Book

Design of Analog CMOS Integrated Circuits

Behzad Razavi
TL;DR: The analysis and design techniques of CMOS integrated circuits that practicing engineers need to master to succeed can be found in this article, where the authors describe the thought process behind each circuit topology, but also consider the rationale behind each modification.

Design Of Analog Cmos Integrated Circuits

TL;DR: The design of analog cmos integrated circuits is universally compatible with any devices to read and is available in the book collection an online access to it is set as public so you can download it instantly.
Journal ArticleDOI

A CMOS bandgap reference circuit with sub-1-V operation

TL;DR: In this paper, the authors proposed a CMOS bandgap reference (BGR) circuit, which can successfully operate with sub-1-V supply, and measured V/sub ref/ is 518/spl plusmn/15 mV (3/spl sigma/) for 23 samples on the same wafer at 27-125/spl deg/C.
Journal ArticleDOI

A 300 nW, 15 ppm/ $^{\circ}$ C, 20 ppm/V CMOS Voltage Reference Circuit Consisting of Subthreshold MOSFETs

TL;DR: A low-power CMOS voltage reference was developed using a 0.35 mum standard CMOS process technology and would be suitable for use in subthreshold-operated, power-aware LSIs.
Journal ArticleDOI

A Portable 2-Transistor Picowatt Temperature-Compensated Voltage Reference Operating at 0.5 V

TL;DR: The proposed voltage reference for use in ultra-low power systems, referred to as the 2T voltage reference, which has been demonstrated in silicon across three CMOS technologies, is proposed, showing the design exhibits comparable spreads in TC and output voltage to existing voltage references in the literature.
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