TD250N16KOFTIMHPSA1 Allicdata Electronics

TD250N16KOFTIMHPSA1 Discrete Semiconductor Products

Allicdata Part #:

TD250N16KOFTIMHPSA1-ND

Manufacturer Part#:

TD250N16KOFTIMHPSA1

Price: $ 102.64
Product Category:

Discrete Semiconductor Products

Manufacturer: Infineon Technologies
Short Description: SCR MODULE 1800V 410A MODULE
More Detail: SCR Module 1.8kV 410A Series Connection - SCR/Diod...
DataSheet: TD250N16KOFTIMHPSA1 datasheetTD250N16KOFTIMHPSA1 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: $ 93.30930
10 +: $ 88.89580
Stock 1000Can Ship Immediately
$ 102.64
Specifications
Series: --
Part Status: Active
Lead Free Status / RoHS Status: --
Structure: Series Connection - SCR/Diode
Moisture Sensitivity Level (MSL): --
Number of SCRs, Diodes: 1 SCR, 1 Diode
Voltage - Off State: 1.8kV
Current - On State (It (AV)) (Max): 250A
Current - On State (It (RMS)) (Max): 410A
Voltage - Gate Trigger (Vgt) (Max): 2V
Current - Gate Trigger (Igt) (Max): 200mA
Current - Non Rep. Surge 50, 60Hz (Itsm): 8000A @ 50Hz
Current - Hold (Ih) (Max): 300mA
Operating Temperature: -40°C ~ 125°C
Mounting Type: Chassis Mount
Package / Case: Module
Description

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Thyristors, also known as silicon controlled rectifiers (SCRs), are classified under electronic components that switch rapidly between on and off states and are used to control electrical currents. One specific type of Thyristors — the TD250N16KOFTIMHPSA1 — are widely used due to their fast switching times, high surge capability, and current ratings. This article discusses the application field and working principle of TD250N16KOFTIMHPSA1 components.

Application Field

TD250N16KOFTIMHPSA1 Thyristors are suitable for a range of applications, including:

  • Constant temperature regulators
  • Timer circuits
  • DC motor controllers
  • Rectifier circuits
  • Controllers used in industrial drives

The fast switching aspect of TD250N16KOFTIMHPSA1 Thyristors makes them useful for controlling high speed electrical currents with fast responses. Another aspect of the TD250N16KOFTIMHPSA1 components that makes them suitable for a variety of applications is their high surge capability. TD250N16KOFTIMHPSA1 Thyristors can handle large amounts of current before switching into a protective state, which makes them more reliable in a variety of commonly used electrical applications.

Working Principle

The core of TD250N16KOFTIMHPSA1 Thyristors are three semiconductor layers that control the flow of current. It is a unidirectional device as it can conduct current only in a single direction and features a positive temperature coefficient, meaning its resistance increases with rising temperature. Direct current flows through its emitter and collector terminals, and a gate terminal controls the flow of its power. The TD250N16KOFTIMHPSA1 Thyristors are made of silicon and they switch into an ON state when their gate terminal current exceeds a certain Gate Trigger Current (GTC) level. This gate input signal is used to generate an extension of the base voltage that causes current to pass between its emitter and collector terminals, thus enabling it to switch into an on state. When the gate input current drops below the GTC level, the TD250N16KOFTIMHPSA1 Thyristor switches into an OFF state and current can no longer pass between its emitter and collector terminals.

In summary, TD250N16KOFTIMHPSA1 Thyristors are widely used due to their high surge capabilities, fast switching times, and current ratings. The components are suitable for a variety of applications, including constant temperature regulators, timer circuits, and DC motor controllers. They work by having three semiconductor layers with an emitter and collector terminal, as well as a gate terminal that controls the flow of power. When the gate input current is greater than the GTC level, the Thyristor switches into an ON state and current flows between its terminals. Once the gate input current drops below the GTC level, the Thyristor switches into an OFF state and current can no longer flow between its terminals.

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

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