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LTC4359HMS8#TRPBF
+Lista de MateriaisIC OR CTRLR N+1 8MSOP
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FabricanteAnalog Devices Inc.
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Peça do Fabricante #LTC4359HMS8#TRPBF
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Ficha Técnica LTC4359HMS8#TRPBF DataSheet
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Pacote TSSOP-8
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Em Estoque2378
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Especificações
| Atributo | Valor |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Type | N+1 ORing Controller |
| FETType | N-Channel |
| Ratio-Input:Output | N:1 |
| InternalSwitch(s) | No |
| DelayTime-ON | 200 µs |
| DelayTime-OFF | 300 ns |
| Current-Output(Max) | 220µA |
| Current-Supply | 150 µA |
| Voltage-Supply | 4V ~ 80V |
| Applications | Automotive, Redundant Power Supplies, Telecom Infrastructure |
| OperatingTemperature | -40°C ~ 125°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 8-TSSOP, 8-MSOP (0.118, 3.00mm Width) |
Visão Geral
Description
Key features include:
1. Low Voltage Drop: By using a MOSFET instead of a diode, it achieves a significantly lower forward voltage drop, reducing losses.
2. Reverse Current Blocking: It prevents reverse current flow, protecting power sources.
3. Wide Operating Voltage Range: It operates across a wide input voltage range, making it versatile for different applications.
4. Fast Turn-On and Turn-Off: Ensures quick response to changes in power conditions.
5. Thermal Protection: Includes features to prevent overheating, enhancing reliability.
The LTC4359HMS8#TRPBF is suitable for use in computing, telecommunications, and automotive applications, where efficient power management and protection are critical.
Equivalent
1. MAX40203 from Maxim Integrated: It offers similar ideal diode controller functionality.
2. LM74700-Q1 from Texas Instruments: An ideal diode controller suited for automotive applications.
3. MIC2545A from Microchip Technology: Offers similar load protection features.
4. NCP4305 from ON Semiconductor: Provides ideal diode operation.
Ensure compatibility by checking key specifications such as voltage and current ratings.
Features
1. Ideal Diode Functionality: It controls an external N-channel MOSFET to operate as an ideal diode, minimizing forward voltage drop and power loss compared to a standard diode.
2. Reverse Input Protection: The device protects against reverse polarity input voltages.
3. Low Quiescent Current: It offers low standby current, enhancing power efficiency and extending battery life in portable applications.
4. Wide Operating Voltage Range: The device supports a broad input voltage range from 4V to 80V, making it versatile for various applications.
5. Fast Turn-On and Turn-Off: It provides rapid response times for turning on and off, ensuring efficient power management.
6. Thermal Protection: Built-in thermal shutdown protects the system from overheating.
7. SOT-23 Package: It is available in a compact 8-lead MSOP package, which is ideal for space-constrained designs.
Overall, the LTC4359HMS8#TRPBF is suitable for applications requiring efficient power management, reverse voltage protection, and minimal power loss.
Pinout
1. GATE: Controls the gate of the external N-channel MOSFET.
2. OUT: Senses the voltage on the drain of the MOSFET to control the gate voltage.
3. VSS: Connected to the ground.
4. VCC: Powers the device; connected to the positive supply voltage.
5. SNS: Used for detecting forward voltage drop across the MOSFET.
6. ADJ: Used to adjust the forward regulation voltage.
7. SHDN: Shutdown control; active low input to turn off the MOSFET.
8. NC: No connection.
This part is commonly used in applications where low forward voltage drop, efficient power management, and compact size are important.
Manufacturer
Application
1. Redundant Power Supplies: Facilitates seamless switching between multiple power sources.
2. Battery-Powered Systems: Protects against reverse current and maximizes battery life.
3. Automotive Electronics: Ensures reliable power distribution and protection against load dump.
4. Industrial Power Systems: Enhances power efficiency and reliability in harsh environments.
5. Telecommunications Equipment: Supports uninterrupted power supply and minimizes losses.
6. Consumer Electronics: Provides battery protection and extends device longevity.
These applications benefit from the component's ability to prevent reverse current flow, minimize power loss, and enhance system reliability.