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L6388
+NomenclatureIC GATE DRVR HALF-BRIDG 8MINIDIP
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FabricantSemi - conducteurs optiques
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Pièce fabricant #L6388
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Package DIP-8
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En stock6885
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Spécifications
| Attribut | Valeur |
| Package / Case | Tube |
| Part Status | Obsolete |
| Driven Configuration | Half-Bridge |
| Channel Type | Independent |
| Number of Drivers | 2 |
| Gate Type | IGBT, N-Channel MOSFET |
| Voltage - Supply | 17V (Max) |
| Logic Voltage - VILVIH | 1.1V, 1.8V |
| Current - Peak Output(Source Sink) | 400mA, 650mA |
| Input Type | Inverting |
| High Side Voltage - Max(Bootstrap) | 600 V |
| Rise / Fall Time(Typ) | 70ns, 40ns |
| Operating Temperature | -40°C ~ 125°C (TJ) |
| Mounting Type | Through Hole |
Présentation
Description
In a general sense, an "Introduction to" course typically covers foundational concepts within a subject, providing students with an overview of key topics, theories, and methodologies. It might include lectures, readings, discussions, and assessments designed to ensure a comprehensive understanding of the basic principles involved.
For precise information, such as the course's content, objectives, and requirements, you should consult the institution's course catalog or syllabus or contact the relevant academic department directly. This will give you detailed insights into what the course entails and how it fits into a broader educational program.
Equivalent
Pinout
1. Vboot: Bootstrap supply voltage; supplies power to the high-side gate driver.
2. HVG: High-side gate driver output; drives the gate of the high-side MOSFET.
3. VS: High-side driver source reference; connected to the high voltage rail.
4. GND: Ground; common reference for the low-side driver.
5. LVG: Low-side gate driver output; drives the gate of the low-side MOSFET.
6. Vcc: Supply voltage; powers the low-side section of the driver.
7. IN: Input signal; controls the state of the gate drivers.
8. SD/OD: Shut down or open drain; used for disabling the driver output.
This IC is used to drive MOSFETs or IGBTs efficiently in high-voltage applications, ensuring proper switching and minimizing transition losses.