Bourns Inc. Mini-TRIGARD™ 2038 series Gas Discharge Tube Arresters (GDT)

Introduction, stock information and FAQs of Mini-TRIGARD™ 2038 series GDT

In this post, you will learn features, applications, PDF datasheets, substitute products and the latest stock and pricing information of Bourns Inc. Mini-TRIGARD™ 2038 series GDT.

Applications

  • Industrial transport (non-car & non-light truck)
  • Medical
  • Lighting
Associated Products

Part NumberDescriptionStockRFQ
2036-15-B2FLFGAS DISCHARGE TUBE47BUY
2036-20-AGas Discharge Tubes - GDTs / Gas Plasma Arrestors Sparkover100V/s 200V Miniature 3 Pole0RFQ
2036-07-AGDT 75V 20% 10KA0RFQ
2036-47-AGas Discharge Tubes - GDTs / Gas Plasma Arrestors Sparkover100V/s 470V Miniature 3 Pole32BUY
2036-35-ALFGas Discharge Tubes 350VDC 10KADC 10AAC 2pF Solder Pad SMD0RFQ
2036-15-C2LFGDT 150V 20% 10KA THROUGH HOLE0RFQ
2036-23-C2FLFGDT 230V 20% 10KA T/H FAIL SHORT0RFQ
2026-26-ALFGDT 260V 20% 20KA0RFQ
2036-23-C2LFGDT 230V 20% 10KA THROUGH HOLE0RFQ
2036-25-C2FLFGas Discharge Tubes 250VDC 10KADC 10AAC 2pF Radial Thru-Hole0RFQ
2036-09-C2LFGas Discharge Tubes 90VDC 10KADC 10AAC 2pF Radial Thru-Hole0RFQ
ST-0400-BLT-STDGas Discharge Tubes - GDTs / Gas Plasma Arrestors 400volts +12 % STRAIGHT LEADS0RFQ
ST-0600-BLB-STDGas Discharge Tubes - GDTs / Gas Plasma Arrestors 600volts +12 % STRAIGHT LEADS0RFQ
ST-0840-BLB-STDGas Discharge Tubes - GDTs / Gas Plasma Arrestors 840volts +12 % STRAIGHT LEADS0RFQ
ST-0350-BLB-STDGas Discharge Tubes - GDTs / Gas Plasma Arrestors 350volts +12 % STRAIGHT LEADS0RFQ
2026-30-ALFGDT 300V 20KA 3 POLE0RFQ
ST-0620-BLT-STDGas Discharge Tubes - GDTs / Gas Plasma Arrestors 620volts +12 % STRAIGHT LEADS0RFQ
2026-35-A1LFGDT 350V 20% 20KA 3POLE0RFQ
ST-0800-BCB-OGDT SPARCTUBE 800V0RFQ
ST-0840-BCT-OGDT SPARCTUBE 840V0RFQ
Technical Documents

Description


Bourns Inc. Mini-TRIGARD™ 2038 series Gas Discharge Tube Arresters (GDT) are designed to protect sensitive electronic equipment from transient overvoltage caused by lightning and other sources. These GDTs are designed to provide superior protection against high-energy transients, while maintaining a low capacitance and low leakage current. The Mini-TRIGARD™ 2038 series GDTs feature a compact design, making them ideal for use in space-constrained applications. The GDTs are available in a variety of configurations, including single-pole, dual-pole, and three-pole designs. The GDTs are also available with a variety of voltage ratings, making them suitable for a wide range of applications.



Features


-High surge current capability

-Low capacitance

-Low leakage current

-High insulation resistance

-High reliability

-Compact size

-RoHS compliant



Applications


-Telecommunications

-Data networks

-Industrial control systems

-Power supplies

-Lighting systems

-Medical equipment

-Automotive electronics

-Consumer electronics


Frequently Asked Questions

What are the Alternative Products of Bourns Inc. Mini-TRIGARD™ 2038 series Gas Discharge Tube Arresters (GDT)?

1. Littelfuse GDT Series 2. Eaton GDT Series 3. TE Connectivity GDT Series 4. Phoenix Contact GDT Series 5. ABB GDT Series 6. Siemens GDT Series 7. Weidmuller GDT Series 8. Molex GDT Series 9. Bel Fuse GDT Series 10. Bussmann GDT Series

What are the differences between the types of Bourns Inc. Mini-TRIGARD™ 2038 series Gas Discharge Tube Arresters (GDT)?

The Mini-TRIGARD™ 2038 series Gas Discharge Tube Arresters (GDT) from Bourns Inc. come in three different types: Type 1, Type 2, and Type 3.   Type 1 GDTs are designed for use in low-voltage applications, such as telecommunications and data networks. They are designed to protect against transient overvoltages and provide a low-impedance path to ground.   Type 2 GDTs are designed for use in medium-voltage applications, such as power distribution systems. They are designed to protect against transient overvoltages and provide a low-impedance path to ground.   Type 3 GDTs are designed for use in high-voltage applications, such as power transmission systems. They are designed to protect against transient overvoltages and provide a low-impedance path to ground. They also provide additional protection against high-frequency transients.