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Functionality of NCV7513BFTR2G
The NCV7513BFTR2G serves as a six-channel low-side pre-driver, designed to manage N-Channel Power MOSFETs utilized in various automotive applications. By taking in low-current control signals and converting them into higher current signals, the NCV7513BFTR2G effectively drives the gates of power MOSFETs, thus ensuring proper device operation.
Application Scenarios of NCV7513BFTR2G
Given its characteristics and functionality, the NCV7513BFTR2G is ideal for several automotive applications. These include applications like body control modules, power distribution switches, junction box applications, and various other types of electrical loads in vehicles. It's also relevant in non-automotive scenarios that require the control of multiple power MOSFETs.
Characteristics of NCV7513BFTR2G
In terms of its key specifications, the NCV7513BFTR2G is equipped with six low-side outputs, each capable of sourcing 450mA. It operates in a wide voltage range from 5.5V to 28V, making it suitable for a variety of automotive electrical systems. The chip also includes features like overcurrent limiting, thermal shutdown, and output stage diagnostics, ensuring safe and reliable operation. The NCV7513BFTR2G comes in a 24-Lead SOIC wide body package.
Circuit Connection of NCV7513BFTR2G
When implementing NCV7513BFTR2G in a typical automotive electrical load management application, follow these steps:
1. Power Supply: Connect the positive terminal of your power supply to Pin 23 (VBAT). This should be within the 5.5V to 28V operating range.
2. Ground Connection: Connect Pin 4, Pin 13, Pin 14, and Pin 24 (GND) to the ground of your system.
3. Outputs: Pins 1-3 and Pins 5-7 (OUT1 to OUT6) are your output pins. Each of these pins needs to be linked to the matching power MOSFET's gate.
4. Inputs: Pins 8-10 and Pins 20-22 (IN1 to IN6) are the control inputs. These pins should be connected to the control signals from your microcontroller or other logic circuit.
5. Enable and Reset: Pin 11 (EN) is for enabling the chip, while Pin 12 (RST) is for resetting the chip. Connect these as per your requirements.
Design Considerations
In designing a circuit with the NCV7513BFTR2G, you should keep several points in mind:
- Power Dissipation: As with all power devices, it's essential to take into account power dissipation and thermal management.
- Protection Mechanisms: The chip has built-in overcurrent and thermal shutdown mechanisms. However, these should not be relied upon as the only form of protection.
- Output Load: Make sure that the load connected to the outputs doesn't exceed the maximum current specification of 450mA per channel.
- Control Signals: The timing of the control signals should be meticulously managed to avoid shoot-through or cross conduction.
The NCV7513BFTR2G is indeed a beneficial asset for controlling multiple power MOSFETs, particularly in automotive applications. Its robust protection mechanisms and wide operating voltage range make it a solid choice for a multitude of electronic designs.
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