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Electronics | Free Full-Text | Low-Power, Subthreshold Reference Circuits  for the Space Environment: Evaluated with γ-rays, X-rays, Protons and Heavy  Ions | HTML
Electronics | Free Full-Text | Low-Power, Subthreshold Reference Circuits for the Space Environment: Evaluated with γ-rays, X-rays, Protons and Heavy Ions | HTML

Design of a Temperature Independent MOSFET-Only Current Reference |  Semantic Scholar
Design of a Temperature Independent MOSFET-Only Current Reference | Semantic Scholar

Design of a Radiation-Hardened Curvature Compensated Bandgap Reference  Circuit
Design of a Radiation-Hardened Curvature Compensated Bandgap Reference Circuit

A High-linearity CMOS Temperature Sensor Using a PTAT-voltage Driving  Common-source Amplifier with a Source Resistor – topic of research paper in  Materials engineering. Download scholarly article PDF and read for free on
A High-linearity CMOS Temperature Sensor Using a PTAT-voltage Driving Common-source Amplifier with a Source Resistor – topic of research paper in Materials engineering. Download scholarly article PDF and read for free on

PTAT 2 current generation circuit. | Download Scientific Diagram
PTAT 2 current generation circuit. | Download Scientific Diagram

Design of a Radiation-Hardened Curvature Compensated Bandgap Reference  Circuit
Design of a Radiation-Hardened Curvature Compensated Bandgap Reference Circuit

PTAT 2 current generation circuit. | Download Scientific Diagram
PTAT 2 current generation circuit. | Download Scientific Diagram

Electronics | Free Full-Text | Low-Power, Subthreshold Reference Circuits  for the Space Environment: Evaluated with γ-rays, X-rays, Protons and Heavy  Ions | HTML
Electronics | Free Full-Text | Low-Power, Subthreshold Reference Circuits for the Space Environment: Evaluated with γ-rays, X-rays, Protons and Heavy Ions | HTML

PDF) A sub-1V bandgap voltage reference in 32nm FinFET technology | A.  Annema and Gerben Doornbos - Academia.edu
PDF) A sub-1V bandgap voltage reference in 32nm FinFET technology | A. Annema and Gerben Doornbos - Academia.edu

The complementary to absolute temperature (CTAT) and proportional to... |  Download Scientific Diagram
The complementary to absolute temperature (CTAT) and proportional to... | Download Scientific Diagram

Design of a Radiation-Hardened Curvature Compensated Bandgap Reference  Circuit
Design of a Radiation-Hardened Curvature Compensated Bandgap Reference Circuit

Sensors | Free Full-Text | Ultra-Low Power High Temperature and Radiation  Hard Complementary Metal-Oxide-Semiconductor (CMOS) Silicon-on-Insulator  (SOI) Voltage Reference | HTML
Sensors | Free Full-Text | Ultra-Low Power High Temperature and Radiation Hard Complementary Metal-Oxide-Semiconductor (CMOS) Silicon-on-Insulator (SOI) Voltage Reference | HTML

The current profiles of I CTAT and I PTAT with respect to temperature.... |  Download Scientific Diagram
The current profiles of I CTAT and I PTAT with respect to temperature.... | Download Scientific Diagram

Figure 1 from A new all-in-one bandgap reference and robust zero  temperature coefficient (TC) point current reference circuit | Semantic  Scholar
Figure 1 from A new all-in-one bandgap reference and robust zero temperature coefficient (TC) point current reference circuit | Semantic Scholar

Radiation Hardened Bandgap References | SpringerLink
Radiation Hardened Bandgap References | SpringerLink

Proposed current source: a constant current source; b PTAT current source |  Download Scientific Diagram
Proposed current source: a constant current source; b PTAT current source | Download Scientific Diagram

A Radiation Hardened Mutually Compensated Mobility and Threshold Voltage  Reference Approach
A Radiation Hardened Mutually Compensated Mobility and Threshold Voltage Reference Approach

Design of a Radiation-Hardened Curvature Compensated Bandgap Reference  Circuit
Design of a Radiation-Hardened Curvature Compensated Bandgap Reference Circuit

A 4.5 MGy TID-Tolerant CMOS Bandgap Reference Circuit Using a Dynamic Base  Leakage Compensation Technique
A 4.5 MGy TID-Tolerant CMOS Bandgap Reference Circuit Using a Dynamic Base Leakage Compensation Technique

A radiation-hard curvature compensated bandgap voltage reference |  SpringerLink
A radiation-hard curvature compensated bandgap voltage reference | SpringerLink

JLPEA | Free Full-Text | A Low-Power Voltage Reference Cell with a 1.5 V  Output | HTML
JLPEA | Free Full-Text | A Low-Power Voltage Reference Cell with a 1.5 V Output | HTML

New Radiation-Hardened Design of a CMOS Instrumentation Amplifier and its  Tolerant Characteristic Analysis
New Radiation-Hardened Design of a CMOS Instrumentation Amplifier and its Tolerant Characteristic Analysis

CHAPTER 4 - CMOS SUBCIRCUITS
CHAPTER 4 - CMOS SUBCIRCUITS

Design of a radiation-hardened curvature compensated bandgap reference  circuit
Design of a radiation-hardened curvature compensated bandgap reference circuit

PDF) A Radiation Hard Bandgap Reference Circuit in a Standard 0.13 μm CMOS  Technology | Ruud Kluit - Academia.edu
PDF) A Radiation Hard Bandgap Reference Circuit in a Standard 0.13 μm CMOS Technology | Ruud Kluit - Academia.edu

A Radiation Hard Current Reference Circuit in a Standard 0.13µm CMOS  Technology.
A Radiation Hard Current Reference Circuit in a Standard 0.13µm CMOS Technology.

Self-Cascode PTAT generator schematic. | Download Scientific Diagram
Self-Cascode PTAT generator schematic. | Download Scientific Diagram

Design of a Radiation-Hardened Curvature Compensated Bandgap Reference  Circuit
Design of a Radiation-Hardened Curvature Compensated Bandgap Reference Circuit

A Radiation Hard Current Reference Circuit in a Standard 0.13um CMOS  Technology.
A Radiation Hard Current Reference Circuit in a Standard 0.13um CMOS Technology.