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What does TID stand for?

Total Ionizing Dose (radiation hardness)


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This definition appears very rarely and is found in the following Acronym Finder categories:

  • Science, medicine, engineering, etc.

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<< PreviousAbbreviation Database SurferNext >>
Thermal Interface Document
Thermal Interface Drawing
Thermionic Detector
Thermionic Ionization Detector
This Is Dumb
Thread Identification
Tool Install Design (Intel)
Tools for Integrated Diagnostics
Total Integrated Dose
Total Ion Detector
Touch Interactive Display
Tracking Identification
Traffic Identifier
Tráfico Ilícito de Drogas (Spanish: Illegal Drug Trafficking)
Transaction Identifier
Transient Ischaemic Dilation (cardiology)
Traveling Ionospheric Disturbance
Tree Identifier
Triple Information Display (car instrument)
Troop Information Division



Samples in periodicals archive:
The devices are characterized with total ionizing dose (TID) of greater than 100K Rad(Si), and single event effect (SEE) linear energy transfer (LET) of heavy ions greater than 82 MeV.
The RAD-Hard ULDOs are characterized to single event effect (SEE), with a linear energy transfer (LET) of 84MeV/(mg per square cm), as well as total ionizing dose (TID) of up to 1Mrad (Si) and enhanced low dose rate sensitivity (ELDRS) of up to 500krad (Si) in accordance with MIL-STD-883, Method 1019.
The AMA, AMF and AMR converters feature high tolerance to total ionizing dose (TID greater than 25krads), heavy ion single event effects (SEE greater than 60 MeV-cm2/mg) and environmental stresses such as temperature extremes, mechanical shock and vibration.
Technical Details The new RAD-Hard MOSFETs have high radiation hardness against total ionizing dose in excess of one Mrads (Si) and high immunity to single event effects.
Radiation Survivability Details The new IRHY7G30SE 1000V RAD-Hard MOSFET is an enhancement-mode N-channel device, made with IR's proprietary radiation-hardened gate- and field-oxidation process to achieve stringent single-event upset and total ionizing dose hardness requirements.
The Actel RH1280 FPGA provides good performance for missions requiring high reliability and the capability to withstand a moderate-to-high total ionizing dose (TID).

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