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Johnston, A.

Publications and source records attributed to Johnston, A..

At least 37 records · Page 2

The Effects of Space Radiation on Linear Integrated Circuit

Permanent and transient effects are discussed that are induced in linear integrated circuits by space radiation. Recent developments include enhanced damage at low dose rate, increased damage from protons due to displacement effects, and transients in digital comparators that can cause circuit malfunctions.

space radiation total dose single event upset↗

Proton Damage in Linear and Digital Optocouplers

This paper discusses proton degradation of linear and digital optocouplers. One obvious way to harden optocoupler technologies is to select LEDs that are more resistant to displacement damage.

optocoupler↗

Proton Degradation of Light-Emitting Diodes

The severe degradation of optocouplers in space has been shown to be mainly due to proton displacement damage in the light-emitting diodes that are used within the optocouplers.

photonics proton degradation light-emitting diodes↗

Displacement Damage in Bipolar Linear Integrated Circuits

Although many different processes can be used to manufacture linear integrated circuits, the process that is used for most circuits is optimized for high voltage -- a total power supply voltage of about 40 V -- and low cost.

Bipolar↗

The Effects of Space Radiation on Optocouplers

Space radiation effects on optocouplers are discussed, including permanent degradation from protons and electrons, and short-duration transients from protons and heavy ions.

Space radiation Optocouplers LED Proton power conv↗

Proton Damage Effects in Linear Integrated Circuts

Proton testing of linear circuits has identified devices where significantly more damage occurs at equivalent total dose levels with protons than tests with gamma rays.

lateral pnp transistors proton damage effects line↗

Total Ionizing Dose Effects on Voltage-to-Frequency Converters

This paper discusses total dose effects on voltage-to-frequency converters which impose different requirements on internal circuitry, and are also very high-precision devices (for example, linearity is typically specified between 0.002 and 0.05%).

low dose rate (LDR) Voltage-to-Frequency Converter↗