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L6599ATDTR
+BOMIC RESONANT CONVRTR CTRLR 16SOIC
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ManufacturerSTMicroelectronics
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Mfr. Part #L6599ATDTR
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Datasheet L6599ATDTR DataSheet
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Package SOP-16
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In Stock6967
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Specifications
| Attribute | Value |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Applications | Resonant Converter Controller |
| Voltage-Supply | 8.85V ~ 16V |
| Current-Supply | 3.5 mA |
| OperatingTemperature | -40°C ~ 125°C |
| MountingType | Surface Mount |
| Package/Case | 16-SOIC (0.154, 3.90mm Width) |
Overview
Description
Generally, part numbers like L6599ATDTR are used to identify specific items in catalogs for manufacturers and distributors. They can refer to anything from integrated circuits, transistors, diodes, or other electronic components. The prefix or numbering system often indicates the manufacturer, the type of component, and its specifications or features.
To get a comprehensive understanding of L6599ATDTR, one would typically refer to a datasheet provided by the manufacturer. This document would include detailed technical specifications, pin configurations, electrical characteristics, application circuits, and other relevant information that helps engineers and technicians understand how to implement or utilize the component in their designs or repairs.
For precise information, finding the datasheet or consulting the manufacturer's official resources would be essential.
Equivalent
1. Texas Instruments UCC256404 - An LLC resonant controller with similar functionalities.
2. Infineon ICE2HS01G - A resonant mode controller for half-bridge configurations.
3. ON Semiconductor NCP1397 - Another resonant mode controller that can serve similar applications.
It's essential to verify specific requirements like pin compatibility and operational specifications when selecting a substitute.
Features
1. Half-Bridge Topology: Supports half-bridge configurations commonly used in resonant converters.
2. Integrated High-Voltage Startup: Simplifies the design by reducing external components needed for startup.
3. Adaptive Dead-Time Control: Optimizes efficiency by adjusting the dead-time between the switching of the half-bridge MOSFETs.
4. Brownout Protection: Provides input voltage protection to prevent operation under unsafe conditions.
5. Overload and Short-Circuit Protection: Ensures robust operation by protecting against overcurrent conditions.
6. Burst-Mode Operation: Improves efficiency during light load conditions by reducing switching frequency.
7. Adjustable Soft-Start: Helps to control inrush current and reduce stress on components during startup.
8. Error Amplifier: Facilitates precise control of output voltage.
9. On-Chip Oscillator: Reduces the need for an external oscillator, simplifying the design.
These features make the L6599ATDTR suitable for various power supply designs, offering efficiency and protection enhancements for reliable performance.
Pinout
1. Supply Voltage (Vcc): Powers the IC.
2. Line Sense (LINE): Monitors input voltage.
3. CSoft-Start (SS): Soft-start control.
4. Timing Capacitor (CT): Sets the oscillator frequency.
5. Fault (FAULT): Detects and signals fault conditions.
6. Ground (GND): Reference ground.
7. Voltage Feedback (COMP): Receives feedback for output regulation.
8. Soft Start (SS): Controls the soft start procedure.
9. Synchronous Rectifier (SR): Drives the synchronous rectifier MOSFET.
10. Current Sense (CS): Monitors current.
11. Driver Output (OUT): Drives external MOSFETs.
12. Bootstrap Capacitor (BOOT): Provides a high-side supply voltage.
13. High-Side Driver Return (HVG): Return path for high-side driver.
14. High-Side Driver Supply (VBOOT): Powers high-side driver.
15. Low-Side Driver Output (LVG): Drives low-side MOSFET.
16. High Voltage Startup (HV): High-voltage startup circuit.
This IC is often used in power supplies and converters due to its capability to handle high voltage and power efficiently.
Manufacturer
Application
1. LED Drivers: Efficiently drives LED lighting systems.
2. Power Supplies: Used in switched-mode power supplies (SMPS) for various electronics.
3. LCD/LED TVs: Powers backlighting systems in display panels.
4. Battery Chargers: Enables efficient charging systems for various battery types.
5. Telecommunications: Supports power solutions in telecom equipment.
The device's ability to operate at high efficiency and manage various power conversion tasks makes it suitable for these applications.