Allicdata Part #: | TISP4070J1BJR-S-ND |
Manufacturer Part#: |
TISP4070J1BJR-S |
Price: | $ 0.32 |
Product Category: | Circuit Protection |
Manufacturer: | Bourns Inc. |
Short Description: | PROTECTOR SINGLE BIDIRECTIONAL |
More Detail: | N/A |
DataSheet: | TISP4070J1BJR-S Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
12000 +: | $ 0.28224 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Lead Free Status / RoHS Status: | -- |
Part Status: | Active |
Moisture Sensitivity Level (MSL): | -- |
Voltage - Breakover: | 70V |
Voltage - Off State: | 58V |
Current - Peak Pulse (8/20µs): | 800A |
Current - Peak Pulse (10/1000µs): | 200A |
Current - Hold (Ih): | 20mA |
Number of Elements: | 1 |
Capacitance: | 200pF |
Mounting Type: | Surface Mount |
Package / Case: | DO-214AA, SMB |
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Thyristors are components that are both solid state and voltage controlled. The term “Thyristor” derives from the Greek words for turning or switching and refers to the electronic behavior of the component. The TISP4070J1BJR-S Thyristor is a switching device with a bidirectional blocking capacity of up to 70A at 600V and can be used as an overvoltage protection device or an active switch in a variety of electronic circuits. This type of Thyristor is especially suitable for higher power applications, such as those found in renewable energy, motive and data center facilities.
The TISP4070J1BJR-S is constructed with a reverse-blocking MOSFET structure and features a high immunity to ambient noise. The device is also designed to be highly tolerant to well-defined transient overvoltage events and its gate drive is non-sensitive to temperature-induced speed variations. The Thyristor also features a high level of electrostatic discharge (ESD) protection.
The TISP4070J1BJR-S can be used in a broad range of applications such as AC-DC, DC-DC and inverter motor control, lighting and solar photovoltaic systems, renewable energy power conversion, IGBT drive systems, and high-power rail switching. The device is also suitable for phase-shifting and phase-control applications.
The TISP4070J1BJR-S Thyristor has multiple extremely important features and benefits. The key feature is its bi-directional blocking capability. This means that the Thyristor is able to block both current flow directions in an AC-DC or DC-DC circuit, functioning as an active switch in those circuits.
Another chievable benefit of the TISP4070J1BJR-S is its high surge capability. This allows the device to protect circuits from extremely high surge currents or by diverting these currents to ground safely while still staying within environmental regulations. This is an important feature that makes the Thyristor suitable for a range of applications.
The working principle of a Thyristor is relatively simple. The Thyristor has three terminals – an anode, a cathode, and a gate – with the gate controlling the state of the device. When a positive bias voltage is applied to the gate when the applied voltage between the anode and cathode is below the breakover voltage, the Thyristor will turn on and allow current to flow from the anode to the cathode. If the applied voltage between the anode and cathode is above the breakover voltage, the device will stay off and no current will flow.
When the gate is no longer under positive bias, the device will remain in its off state and no current will flow in the circuit. The device will only turn off when the voltage between the anode and the cathode drops below the breakover voltage. The conduction angle of the device is the time between the turn on and the turn off of the device.
The TISP4070J1BJR-S can be used to control the flow of current in AC-DC and DC-DC applications as well as applications such as inverter motor control and high-power rail switching. The device is a highly reliable and cost-effective solution for protecting circuits from transients as well as providing active circuit switching. The Thyristor is an essential component of various power electronic systems and its utilization is set to grow as more and more power electronic-based systems are developed.
The specific data is subject to PDF, and the above content is for reference
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