GTCR37-401M-P10 Allicdata Electronics
Allicdata Part #:

GTCR37-401M-P10-ND

Manufacturer Part#:

GTCR37-401M-P10

Price: $ 0.00
Product Category:

Circuit Protection

Manufacturer: Littelfuse Inc.
Short Description: GDT 400V 20% 10KA THROUGH HOLE
More Detail: Gas Discharge Tube 400V 10000A (10kA) ±20% 3 Pole ...
DataSheet: GTCR37-401M-P10 datasheetGTCR37-401M-P10 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: GT
Packaging: Tray 
Lead Free Status / RoHS Status: --
Part Status: Obsolete
Moisture Sensitivity Level (MSL): --
Voltage - DC Spark Over (Nom): 400V
Impulse Discharge Current (8/20µs): 10000A (10kA)
Tolerance: ±20%
Number of Poles: 3
Fail Short: No
Mounting Type: Through Hole
Package / Case: Radial Cylinder, 3 Lead
Description

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Gas Discharge Tube Arresters, or GDT, are used in a variety of fields to protect electrical circuits against intense transients and surges. GTCR37-401M-P10 Gas Discharge Tube Arresters are specialized protection devices which utilize Gas Discharge Tubes to provide effective protection from high energy transients.

The GTCR37-401M-P10 Gas Discharge Tube Arresters differ from other GDTs in that they are designed to limit voltages to a predefined level and divert transient pulses of higher energy away from sensitive circuits. This type of arrester also has a corona-suppression capability, which allows it to minimize the spread of corona around the arrester itself, and thus protect nearby circuits from interference.

The working principle of the GTCR37-401M-P10 Gas Discharge Tube Arresters involves a gaseous discharge medium that serves to reduce the amount of energy transmitted to circuits and components. This gas medium is contained within the arrester, which consists of an outer insulating layer, typically made of a polymeric material, and a conductive path inside.

When a surge or transient power strike occurs, the current is diverted through the gaseous arc inside the arrestor. This arc will reduce the peak voltage of the transient and disperse the energy over a longer period of time, thus minimizing any damage it could cause to sensitive circuits and components.

The GTCR37-401M-P10 Gas Discharge Tube Arresters have a wide range of application fields, including commercial, residential, industrial, and even military equipment. These types of arrestors provide cost-effective protection against transient surges and can be used in any wiring network that uses voltage components such as control circuits, motor circuits, and power supplies.

The GTCR37-401M-P10 Gas Discharge Tube Arresters are highly effective and efficient in their protection role, thanks to their complex design that includes layers of electrostatic capacitance, inductance, and resistance in their working principle.

The main advantage of the GTCR37-401M-P10 Gas Discharge Tube Arresters is that they provide an effective and reliable bulk protection of surrounding electric circuits. They are also able to dissipate most discharge transients by allowing them to travel through the GDT, thus protecting sensitive connected systems.

In addition, the GTCR37-401M-P10 Gas Discharge Tube Arresters provide good environmental safety, as they are designed to keep emissions and other environmental hazards to a minimum. The arrestors also have an advantage in that they can effectively protect equipment and circuits in areas with varying power levels, such as those found in rural areas.

All in all, the GTCR37-401M-P10 Gas Discharge Tube Arresters are an excellent protection device, thanks to their ability to reduce transient energy without causing damage to sensitive components, and their highly reliable operation. The arrestors are highly efficient in their operation and provide effective bulk protection of electrical circuits and connected systems, which makes them an increasingly popular choice in the protection of electrical circuits.

The specific data is subject to PDF, and the above content is for reference

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GTCR38-251M-Q10 Littelfuse I... 0.0 $ 1000 GDT 250V 20% 10KA THROUGH...
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GTCR36-231M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 230V 20% 10KA T/H FAI...
GTCR36-351M-P05-FS Littelfuse I... 0.0 $ 1000 GDT 350V 20% 5KA T/H FAIL...
GTCR36-900M-P05-FS Littelfuse I... 0.0 $ 1000 GDT 90V 20% 5KA T/H FAIL ...
GTCR37-151M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 150V 20% 10KA T/H FAI...
GTCR37-201N-P10-FS Littelfuse I... 0.0 $ 1000 GDT 200V 25% 10KA T/H FAI...
GTCR37-231M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 230V 20% 10KA T/H FAI...
GTCR37-261M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 260V 20% 10KA T/H FAI...
GTCR37-301M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 300V 20% 10KA T/H FAI...
GTCR37-351M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 350V 20% 10KA T/H FAI...
GTCR37-401M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 400V 20% 10KA T/H FAI...
GTCR37-551M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 550V 20% 10KA T/H FAI...
GTCR37-900M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 90V 20% 10KA T/H FAIL...
GTCR38-151M-Q10-FS Littelfuse I... 0.0 $ 1000 GDT 150V 20% 10KA T/H FAI...
GTCR38-231M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 230V 20% 10KA T/H FAI...
GTCR38-231M-Q10-FS Littelfuse I... 0.0 $ 1000 GDT 230V 20% 10KA T/H FAI...
GTCR38-251M-P10-FS Littelfuse I... 0.0 $ 1000 GDT 250V 20% 10KA T/H FAI...
GTCR38-251M-Q10-FS Littelfuse I... 0.0 $ 1000 GDT 250V 20% 10KA T/H FAI...
GTCR38-351M-P20-FS Littelfuse I... 0.0 $ 1000 GDT 350V 20% 20KA T/H FAI...
GTCR38-351M-Q10-FS Littelfuse I... 0.0 $ 1000 GDT 350V 20% 10KA T/H FAI...
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