MAX5078BATT/V+T Allicdata Electronics
Allicdata Part #:

MAX5078BATT/V+T-ND

Manufacturer Part#:

MAX5078BATT/V+T

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC MOSFET DVR 4A 20NS 6-TDFN
More Detail: Low-Side Gate Driver IC Inverting, Non-Inverting 6...
DataSheet: MAX5078BATT/V+T datasheetMAX5078BATT/V+T Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Logic Voltage - VIL, VIH: 0.8V, 2.1V
Base Part Number: MAX5078
Supplier Device Package: 6-TDFN-EP (3x3)
Package / Case: 6-WDFN Exposed Pad
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 150°C (TJ)
Rise / Fall Time (Typ): 32ns, 26ns
Input Type: Inverting, Non-Inverting
Current - Peak Output (Source, Sink): 4A, 4A
Series: Automotive, AEC-Q100
Voltage - Supply: 4 V ~ 15 V
Gate Type: N-Channel MOSFET
Number of Drivers: 1
Channel Type: Single
Driven Configuration: Low-Side
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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The MAX5078BATT/V+T is an important piece of technology for power management applications. It is a gate driver, which is a type of integrated circuit (IC) that is used in various power systems and is essential to the operation of the entire system. This gate driver provides a high-voltage and high-power driving capability, making it a necessary component for managing the flow of energy. The MAX5078BATT/V+T is specifically designed for battery, Voltage Regulators, and Temperature regulators. In this article, we will discuss the application field and working principle of the MAX5078BATT/V+T.

The MAX5078BATT/V+T is designed to provide rapid switching, as well as high-current and voltage for both battery and voltage regulator applications. Because of its high power capability, it is often used to provide the necessary driving power for DC-DC converters, switching power supplies, and motor drivers. This gate driver also provides a strong drive capability for controlling power stages, such as MOSFETs and IGBTs. Additionally, the MAX5078BATT/V+T offers excellent current transfer ratio, in addition to its wide operating temperature range.

The MAX5078BATT/V+T also includes several integrated protection features to ensure the safe and reliable operation of the system. This includes an under-voltage lockout and thermal shutdown option which will protect the system if any sudden drop in voltage or an increase in temperature is detected. Additionally, if the system reaches a critical level of output and current, the gate driver will automatically shut down to prevent further damage.

The working principle of the MAX5078BATT/V+T is relatively straightforward. It works by using a high-voltage device to drive the MOSFET or IGBT power stage, which is then connected to the load. The voltage applied to the gate of the device is then adjusted to control the output power. When the gate voltage is applied, the device will conduct current from the source to the load and the output will be inversely proportional to the applied voltage. By adjusting the gate voltage, the output can be regulated to achieve the desired power levels.

In addition to the high-voltage capability, the MAX5078BATT/V+T also provides a slew rate control feature. This feature allows the user to adjust the switching speed of the transistor, which helps to reduce the power consumption from the device and maintain the system\'s peak efficiency. Additionally, the gate driver also provides thermal protection by automatically shutting down the system if the temperature reaches a certain upper limit.

In summary, the MAX5078BATT/V+T is an important component for power management applications. It is a gate driver which provides a rapid switching, high-current and voltage, as well as integrated protection features for the safe and reliable operation of the system. Its working principle is based on adjusting the gate voltage to regulate the output power, and its slew rate control feature helps to reduce power consumption from the device. As such, the MAX5078BATT/V+T is an invaluable piece of technology for power management applications.

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

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