onsemi_NCV7601P
original

onsemi
NCV7601P

726-NCV7601P
PDF Datasheet
Quad Driver, PDIP-16, 25-TUBE

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Tech Specifications

Package/Case
DIP
Fault Protection
Over Temperature
Interface
On/Off
Lead Free
Contains Lead
Max Operating Temperature
125°C
Min Operating Temperature
-40°C
Max Output Current
1.8A
Number of Channels
4
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NCV7601P Description

NCV7601P Description

The NCV7601P is a high-performance power driver IC designed for demanding automotive and industrial applications. Manufactured by onsemi, this device features a bipolar output type and a low-side output configuration, making it ideal for driving relays and solenoids. With a maximum output current of 1.8A, the NCV7601P can handle significant loads while maintaining reliability and efficiency. The device operates within a load voltage range of 4V to 5.5V, ensuring compatibility with a wide range of power sources.

The NCV7601P is housed in a robust through-hole package, specifically a tube, which enhances its mechanical stability and thermal performance. It features four outputs, each capable of driving individual loads, providing flexibility in system design. The device also includes advanced fault protection mechanisms such as fixed current limiting and over-temperature protection, ensuring safe operation under various conditions.

NCV7601P Features

  • Output Type: Bipolar, ensuring high efficiency and reliability.
  • Output Configuration: Low Side, suitable for applications requiring ground-referenced outputs.
  • Output Current: Maximum of 1.8A per channel, capable of driving heavy loads.
  • Load Voltage Range: 4V to 5.5V, providing compatibility with various power sources.
  • Fault Protection: Fixed current limiting and over-temperature protection to safeguard against damage.
  • Output Ratio: 1:1, maintaining a direct relationship between input and output.
  • Number of Outputs: Four, offering flexibility in system design.
  • Mounting Type: Through Hole, ensuring robust mechanical stability.
  • Package: Tube, enhancing thermal performance and reliability.
  • Interface: On/Off, providing simple and effective control.
  • Moisture Sensitivity Level (MSL): 1 (Unlimited), ensuring the device can be stored and used in various environmental conditions.
  • REACH Status: REACH Unaffected, ensuring compliance with environmental regulations.
  • ECCN: EAR99, indicating compliance with export regulations.
  • HTSUS: 8542.39.0001, facilitating accurate classification for customs purposes.

NCV7601P Applications

The NCV7601P is particularly well-suited for applications requiring high current and voltage handling capabilities. Its robust design and advanced protection features make it ideal for automotive and industrial environments where reliability and performance are paramount. Specific use cases include:

  • Automotive Applications: Driving relays and solenoids in automotive systems, such as fuel injectors, power windows, and seat adjustments.
  • Industrial Automation: Controlling actuators and solenoids in industrial machinery, ensuring precise and reliable operation.
  • Power Management Systems: Managing power distribution in complex systems, providing efficient and safe load handling.

Conclusion of NCV7601P

The NCV7601P is a versatile and reliable power driver IC designed to meet the demands of high-current and high-voltage applications. Its bipolar output type, low-side configuration, and robust fault protection mechanisms make it a standout choice in the power management IC market. While it is marked as obsolete, the NCV7601P remains a valuable component for existing systems and legacy designs. Its compatibility with various power sources and its ability to handle multiple outputs make it an excellent solution for automotive, industrial, and power management applications.

FAQ

What voltage specification is listed for NCV7601P?
The listed voltage-related specification for NCV7601P is 40V.
What package or case is NCV7601P available in?
Does NCV7601P have quantity-based pricing?
What operating temperature range does NCV7601P support?
What is NCV7601P?
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