Thyristors

Results:
3,099
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Series
Capacitance
Voltage - Breakover
Voltage - Off State
Supplier Device Package
Package / Case
Current - Peak Pulse (8/20µs)
Current - Peak Pulse (10/1000µs)
Current - Hold (Ih)
Voltage - On State
Number of Elements
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Current - Off State (Max)
Voltage - On State (Vtm) (Max)
Current - Non Rep. Surge 50, 60Hz (Itsm)
Operating Temperature
Current - Hold (Ih) (Max)
Voltage - Gate Trigger (Vgt) (Max)
Current - Gate Trigger (Igt) (Max)
Current - On State (It (AV)) (Max)
Grade
Qualification
Current - On State (It (RMS)) (Max)
Fuseholder Type
Current Rating (Amps)
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For Use With/Related Products
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Results remaining3,099
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeNumber of ElementsPackage / CaseSeriesVoltage - BreakoverVoltage - Off StateVoltage - On StateCurrent - Peak Pulse (8/20µs)Current - Peak Pulse (10/1000µs)Current - Hold (Ih)CapacitanceGradeQualificationSupplier Device Package
P3602AALRP
THYRISTOR 170V/340V 150A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
220V, 440V
170V, 340V
4 V
150 A
45 A
150 mA
20pF, 35pF
-
-
TO-220 Modified
P3002ACL
THYRISTOR 140V/280V 400A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
180V, 360V
140V, 280V
4 V
400 A
100 A
150 mA
55pF, 95pF
-
-
TO-220 Modified
P2702ACL
THYRISTOR 120V/240V 400A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
160V, 320V
120V, 240V
4 V
400 A
100 A
150 mA
60pF, 105pF
-
-
TO-220 Modified
P1402ACL
THYRISTOR 58V/116V 400A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
77V, 154V
58V, 116V
4 V
400 A
100 A
150 mA
90pF, 155pF
-
-
TO-220 Modified
P4802ACL
THYRISTOR 220V/440V 400A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
300V, 600V
220V, 440V
4 V
400 A
100 A
150 mA
50pF, 85pF
-
-
TO-220 Modified
P3602ACL
THYRISTOR 170V/340V 400A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
220V, 440V
170V, 340V
4 V
400 A
100 A
150 mA
50pF, 90pF
-
-
TO-220 Modified
P3602ABL60
THYRISTOR 170V/340V 250A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
220V, 440V
170V, 340V
4 V
250 A
80 A
150 mA
50pF, 90pF
-
-
TO-220 Modified
P2703AAL60
THYRISTOR 230V 150A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
3
3-SIP
SIDACtor®
300V
230V
8 V
150 A
45 A
150 mA
25pF, 35pF
-
-
TO-220 Modified
P2703UALRP
THYRISTOR 230V 150A 6SMD GW
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
3
6-SMD, Gull Wing
SIDACtor®
300V
230V
8 V
150 A
45 A
150 mA
50pF, 75pF
-
-
Modified MS-013
P1602AAL60
THYRISTOR 65V/130V 150A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
95V, 190V
65V, 130V
4 V
150 A
45 A
150 mA
35pF, 60pF
-
-
TO-220 Modified
THBT15011DRL
THYRISTOR 150V 30A 8SOIC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
3
8-SOIC (0.154", 3.90mm Width)
THBT, TRISIL™
210V
150V
-
-
30 A
150 mA
80pF
-
-
8-SOIC
P2702AALRP
THYRISTOR 120V/240V 150A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
160V, 320V
120V, 240V
4 V
150 A
45 A
150 mA
25pF, 45pF
-
-
TO-220 Modified
P1602AALRP
THYRISTOR 65V/130V 150A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
95V, 190V
65V, 130V
4 V
150 A
45 A
150 mA
35pF, 60pF
-
-
TO-220 Modified
P2702AAL
SIDACTOR 2CP 120 240V 50A TO220
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
160V, 320V
120V, 240V
4 V
150 A
45 A
150 mA
25pF, 45pF
-
-
TO-220 Modified
P2202AAL
THYRISTOR 90V/180V 150A TO220-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
2
3-SIP
SIDACtor®
130V, 260V
90V, 180V
4 V
150 A
45 A
150 mA
30pF, 50pF
-
-
TO-220 Modified
TPA62RL
THYRISTOR 62V 150A DO204AC
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
1
DO-204AC, DO-15, Axial
TPA, TRISIL™
82V
62V
-
150 A
50 A
150 mA
40pF
TPA220RL
THYRISTOR 220V 150A DO204AC
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
1
DO-204AC, DO-15, Axial
TPA, TRISIL™
293V
220V
-
150 A
50 A
150 mA
25pF
-
-
DO-15 (DO-204AC)
TPA100RL
THYRISTOR 100V 150A DO204AC
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
1
DO-204AC, DO-15, Axial
TPA, TRISIL™
133V
100V
-
150 A
50 A
150 mA
35pF
TLP270G-1
THYRISTOR 100A TO262-3
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
1
TO-262-3 Long Leads, I²Pak, TO-262AA
TLP
400V
-
-
-
100 A
150 mA
110pF
-
-
I2PAK
THDT6511DRL
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
1
8-SOIC (0.154", 3.90mm Width)
LCP
68V
-
-
-
40 A
150 mA
500pF
-
-
8-SOIC

Thyristors

Thyristors are semiconductor devices commonly used in Transient Voltage Suppression (TVS) applications to protect electronic systems from voltage surges or transients. They are specifically designed to provide over-voltage protection by acting as a switch that can rapidly respond to high voltage events. Thyristors have three main states of operation: off-state, on-state, and latching state. In the off-state, the thyristor acts as an open circuit and allows normal current flow in the system. When a voltage surge occurs and exceeds a specific threshold called the breakover voltage, the thyristor enters the on-state. In this state, it behaves like a short circuit, diverting excess current away from sensitive components and protecting them from potential damage. The thyristor remains in the on-state until the current flowing through it drops below a certain level known as the hold current. This drop in current can be triggered by external factors such as a decrease in the transient voltage or the presence of other components in the circuit. Once the hold current is reached, the thyristor returns to the off-state, ready to protect the system against future voltage surges. Thyristors used in TVS applications are designed to handle high surge currents and fast response times, making them suitable for protecting sensitive electronic equipment. They can provide effective protection against various types of transient events, including lightning strikes, electrostatic discharge, and switching noise. Thyristor-based TVS devices are commonly used in a wide range of applications, including power supplies, telecommunications equipment, industrial machinery, automotive electronics, and more. They are reliable and robust devices that help prevent damage to electronic systems caused by voltage surges, ensuring the smooth operation and longevity of the protected equipment. In summary, thyristors are semiconductor devices utilized in TVS applications to protect electronic systems from voltage surges. They function as switches, rapidly transitioning between open and short circuit states in response to over-voltage events. Thyristors offer high surge current handling capabilities and fast response times, making them an effective solution for safeguarding sensitive electronic equipment from transient voltage spikes.