2R-5 Series, Gas Discharge Tube Arresters (GDT)

Results:
21
Manufacturer
Series
Voltage - DC Spark Over (Nom)
Package / Case
Impulse Discharge Current (8/20µs)
Mounting Type
Fail Short
Tolerance
Number of Poles
Results remaining21
Applied Filters:
2R-5
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeToleranceNumber of PolesSeriesVoltage - DC Spark Over (Nom)Impulse Discharge Current (8/20µs)Fail ShortPackage / Case
2RM230L-5/B
GDT 230V 10KA 2 POLE TH
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
230 V
10000A (10kA)
No
Axial Cylinder
2RM090L-5/B
GDT 90V 10KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
90 V
10000A (10kA)
No
Axial Cylinder
2RL090M-5
GDT SMD 2R-5, 90V20% 5KA, REEL 1
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Quantity
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PCB Symbol, Footprint & 3D Model
User Defined
±20%
2
2R-5
90 V
5000A (5kA)
No
Cylinder No Lead
2RL075M-5
GDT 75V 5KA 2 POLE SMD REEL
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
±20%
2
2R-5
75 V
5000A (5kA)
No
2-SMD Cylinder Square End
2RL090L-5/B
GDT 90V 5KA 2 POLE TH BOX
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
90 V
5000A (5kA)
No
Axial Cylinder
2RL600L-5/B
GDT 600V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
600 V
5000A (5kA)
No
Axial Cylinder
2RM120L-5/B
GDT 120V 10KA 2 POLE TH
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
120 V
10000A (10kA)
No
Axial Cylinder
2RK3600L-5/B
GDT 3600V 3KA 2 POLE TH
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
3600 V
3000A (3kA)
No
Axial Cylinder
2RL070L-5/TR
GDT 70V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
70 V
5000A (5kA)
No
Axial Cylinder
2RL600L-5/TR
GDT 600V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
600 V
5000A (5kA)
No
Axial Cylinder
2RL070L-5/B
GDT 70V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
70 V
5000A (5kA)
No
Axial Cylinder
2RL400L-5/B
GDT 400V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
400 V
5000A (5kA)
No
Axial Cylinder
2RL250L-5/B
GDT 250V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
250 V
5000A (5kA)
No
Axial Cylinder
2RL350L-5/B
GDT 350V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
350 V
5000A (5kA)
No
Axial Cylinder
2RL800L-5/B
GDT 800V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
800 V
5000A (5kA)
No
Axial Cylinder
2RL230M-5
GDT 230V 5KA 2 POLE SMD REEL
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
±20%
2
2R-5
230 V
5000A (5kA)
No
2-SMD Cylinder Square End
2RL075L-5/B
GDT 75V 5KA 2 POLE TH BOX
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
75 V
5000A (5kA)
No
Axial Cylinder
2RL150L-5/B
GDT 150V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
150 V
5000A (5kA)
No
Axial Cylinder
2RL300L-5/B
GDT 300V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
300 V
5000A (5kA)
No
Axial Cylinder
2RL470L-5/B
GDT 470V 5KA 2 POLE THROUGH HOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
±20%
2
2R-5
470 V
5000A (5kA)
No
Axial Cylinder

About  Gas Discharge Tube Arresters (GDT)

A gas discharge tube (GDT) is a specialized type of electrical protection component that is designed to protect sensitive electronic equipment from voltage spikes and surges. It is typically used in high-voltage applications and is designed to handle large currents and high voltages. The GDT consists of a glass or ceramic tube that is filled with a mixture of inert gases, such as neon, argon, or a combination of both. The tube contains two electrodes at either end and is sealed to prevent the gas from escaping. When a voltage greater than the GDT's rating is applied across the electrodes, the electric field within the tube becomes strong enough to ionize the gas molecules, causing them to release electrons and become conductive. This allows the excess electrical energy to be safely diverted to ground, protecting the connected equipment from damage. GDTs are commonly used in telecommunications equipment, power distribution systems, and other applications where high-voltage surges and transients can pose a risk to sensitive electronics. They are a reliable and effective way to protect against electrical damage and ensure the safe operation of electrical systems.