Surge Protection Devices (SPDs)

Results:
8,186
Manufacturer
Series
Voltage - Continuous Operating (Max) (MCOV)
Approval Agency
Voltage - Protection Level (VP) (2416)
Current - Discharge (Max) (8/20µS)
Operating Temperature
Voltage - Protection Rating (VPR)
Current - Discharge (Nom) (8/20µS)
Current - Short Circuit Rating (SCRR)
Type
Mounting Type
Number of Poles
Features
Form
For Use With/Related Products
Accessory Type
Results remaining8,186
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesOperating TemperatureMounting TypeNumber of PolesTypeFormVoltage - Continuous Operating (Max) (MCOV)Current - Discharge (Nom) (8/20µS)Current - Discharge (Max) (8/20µS)Current - Short Circuit Rating (SCRR)Voltage - Protection Level (VP) (2416)FeaturesApproval AgencyVoltage - Protection Rating (VPR)
BSPH2275TTR
SURGE ARRESTER 230V FOR 2 POLE P
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
2
Type 2
Base + Module
275VAC
20 kA
40 kA
50 kA
1.5 kV
Remote Signaling Contacts
CE, KEMA
-
BSPH31200YPVR
1200 VDC 3 POLE Y CONFIGURATION
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
3
Type 2, Type 4
Base + Module
1.2kVDC
-
25 kA
-
-
Remote Signaling Contacts
UL
-
BSPH3600YPVR
600 VDC 3 POLE Y CONFIGURATION S
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
3
Type 2, Type 4
Base + Module
700VDC
12.5 kA
40 kA
-
2.5 kV
Remote Signaling Contacts
CE, UL
600 V
BSPM11000WER
VARISTOR 1KV 30KA MOD PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
1kVAC
15 kA
30 kA
25 kA
4.2 kV
Remote Signaling Contacts, Thermally Protected
-
-
BSPM1347S2G
VARISTOR 40KA MODULE PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-
DIN Rail
1
Type 2
Base + Module
600VAC
20 kA
40 kA
125 kA
-
Thermally Protected
CE, UL
2 kV
BSPM1347S2GR
VARISTOR 40KA MODULE PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-
DIN Rail
1
Type 2
Base + Module
600VAC
20 kA
40 kA
125 kA
-
Remote Signaling Contacts, Thermally Protected
CE, UL
2 kV
BSPM1385TNR
VARISTOR 230V 40KA MOD PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
385VAC
20 kA
40 kA
25 kA
1.75 kV
Remote Signaling Contacts, Thermally Protected
CE, CSA, KEMA
-
BSPM1400WER
VARISTOR 400V 40KA MOD PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
440VAC
20 kA
40 kA
25 kA
2 kV
Remote Signaling Contacts, Thermally Protected
CE, CSA, KEMA
-
BSPM1440TNR
VARISTOR 400V 40KA MOD PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
440VAC
20 kA
40 kA
25 kA
2 kV
Remote Signaling Contacts, Thermally Protected
CE, CSA, KEMA
-
BSPM1600TNR
VARISTOR 480V 30KA MOD PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
600VAC
15 kA
30 kA
25 kA
2.5 kV
Remote Signaling Contacts, Thermally Protected
CE, CSA, KEMA
-
BSPG1230WE
GDT DIN SPD 1P 230V
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPG
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
255VAC
20 kA
40 kA
-
1.5 kV
Remote Signaling Contacts, Thermally Protected
CE, CSA, KEMA
-
BSPG1230WER
GDT DIN SPD REMOTE 1P 230V
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPG
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
255VAC
20 kA
40 kA
-
1.5 kV
Remote Signaling Contacts, Thermally Protected
CE, CSA, KEMA
-
BSPH2230WE
HYBRID DIN SPD 1+1 CIRCUIT 2P 23
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
2
Type 2
Base + Module
275VAC
20 kA
40 kA
50 kA
1.25 kV
Thermally Protected
CE, KEMA
-
BSPH2230WER
HYBRID DIN SPD 1+1 CIRCUIT REMOT
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
2
Type 2
Base + Module
275VAC
20 kA
40 kA
50 kA
1.25 kV
Remote Signaling Contacts, Thermally Protected
CE, KEMA
-
BSPH2600PVR
600 VDC 2 POLE CONFIGURATION SPD
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
2
Type 2
Base + Module
700VDC
12.5 kA
25 kA
1 kA
2.5 kV
Remote Signaling Contacts, Thermally Protected
CE, UL
600 V
BSPH31200YPV
1200 VDC 3 POLE Y CONFIGURATION
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
3
Type 2, Type 4
Base + Module
1.2kVDC
12.5 kA
30 kA
-
4.5 kV
-
CE, UL
1.2 kV
BSPH4230WE
HYBRID DIN SPD N&G SEPARATE 4P 2
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
4
Type 2
Base + Module
275VAC
20 kA
40 kA
50 kA
1.5 kV
Remote Signaling Contacts
CE, KEMA-KEUR
-
BSPH4275TT
SURGE ARRESTER 230/400V FOR 3 PO
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPH
-40°C ~ 80°C
DIN Rail
4
Type 2
Base + Module
275VAC
20 kA
40 kA
50 kA
1.5 kV
Thermally Protected
CE, KEMA
-
BSPM11000WE
VARISTOR 1KV 30KA MOD PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
1kVAC
15 kA
30 kA
25 kA
4.2 kV
Remote Signaling Contacts, Thermally Protected
-
-
BSPM1275TN
VARISTOR 230V 40KA MOD PLUG-IN
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Quantity
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PCB Symbol, Footprint & 3D Model
BSPM
-40°C ~ 80°C
DIN Rail
1
Type 2
Base + Module
275VAC
20 kA
40 kA
50 kA
1.5 kV
Remote Signaling Contacts, Thermally Protected
CE, CSA, KEMA
-

About  Surge Protection Devices (SPDs)

Surge Protection Devices (SPDs) are both designed to protect electronic systems from voltage surges or transients, but they serve different purposes and operate in distinct ways. TVS diodes are semiconductor devices that are specifically designed to suppress transient voltage spikes by limiting or clamping the voltage at a specific level. They provide protection by diverting excess current away from sensitive components and can respond quickly to voltage spikes. TVS diodes are typically used at the circuit level to protect individual components or small groups of components within electronic devices. On the other hand, Surge Protection Devices (SPDs) are designed to protect entire electrical and electronic systems from temporary power surges or transients on AC or DC power lines. These surges can result from lightning strikes, switching operations, or other electrical disturbances. SPDs are installed at the point of entry of power lines into a building or within individual electrical circuits to safeguard connected equipment from potential damage caused by overvoltage. While TVS diodes are focused on protecting specific components from transient events, SPDs are geared towards safeguarding entire systems from power surges. SPDs utilize a combination of protective components such as metal oxide varistors (MOVs), gas discharge tubes (GDTs), or silicon avalanche diodes (SADs) to absorb and dissipate excessive energy generated during a surge event. In summary, TVS diodes and SPDs both play crucial roles in protecting electronic systems from voltage surges, but they operate at different levels of the system. TVS diodes are used to protect individual components within electronic circuits, while SPDs are employed to safeguard entire electrical and electronic systems from power surges on AC or DC power lines.