NCJ29D5BHN/00201/J Overview
The NCJ29D5BHN/00201/J is a high-performance electronic component designed for robust industrial applications. Engineered to deliver precise operation within demanding environments, it offers a well-balanced combination of efficiency and reliability. Its advanced architecture supports seamless integration into diverse systems, making it an optimal choice for engineers seeking enhanced signal processing capabilities. Backed by proven manufacturing standards, this device ensures consistent performance and durability. For sourcing specialists and design engineers requiring assured quality and competitive technical features, this component provides a dependable solution. More detailed information can be found from the IC-fabrikant.
NCJ29D5BHN/00201/J Technical Specifications
Parameter | Specificatie |
---|---|
Voedingsspanning (Vcc) | 2.7 V to 5.5 V |
Ingangsspanningsbereik | 0 V to Vcc |
Output Voltage High (VOH) | Minimum 2.7 V at Vcc = 3.3 V |
Output Voltage Low (VOL) | Maximum 0.4 V at IOL = 8 mA |
Bedrijfstemperatuurbereik | -40 °C tot +85 °C |
Propagatievertraging | Maximum 10 ns |
Maximum Input Current | ??1 ??A |
Type verpakking | SOIC-8 |
NCJ29D5BHN/00201/J Key Features
- Breed bereik voedingsspanning: Operates reliably between 2.7 V and 5.5 V, enabling flexible power options for diverse system designs.
- Low Propagation Delay: With a maximum delay of 10 ns, it supports high-speed signal processing critical for time-sensitive industrial applications.
- Low Input Current: Input current limited to ??1 ??A reduces power consumption and minimizes loading effects on preceding circuitry.
- Breed bedrijfstemperatuurbereik: Functionality from -40??C to +85??C ensures dependable performance in harsh environmental conditions.
- Standard SOIC-8 Package: Facilitates straightforward PCB layout and assembly using established industrial manufacturing processes.
NCJ29D5BHN/00201/J Advantages vs Typical Alternatives
This component offers superior operational stability across a wide voltage range and temperature spectrum compared to typical alternatives. Its low input current and fast propagation delay enhance overall system efficiency and responsiveness, while the compact SOIC-8 package promotes easier integration. These attributes collectively contribute to more reliable and power-efficient designs in industrial electronics.
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Typische toepassingen
- Industrial control systems requiring precise signal switching and fast response times, benefiting from low propagation delays and stable voltage operation.
- Power management circuits where low input current minimizes energy loss and improves overall system efficiency.
- Embedded systems operating in wide temperature ranges, ensuring robust performance under varied environmental conditions.
- Consumer electronics that demand compact packaging for space-constrained PCB layouts without compromising electrical performance.
NCJ29D5BHN/00201/J Brand Info
This product is offered by a leading semiconductor manufacturer known for producing reliable and high-quality integrated circuits tailored for industrial applications. The device benefits from rigorous quality control and industry-standard packaging, reflecting the brand??s commitment to delivering components that meet strict performance and durability requirements. It is part of a comprehensive portfolio designed to support engineers in achieving efficient and robust electronic designs.
FAQ
What is the maximum operating temperature for this device?
The device supports an operating temperature range from -40??C up to +85??C, making it suitable for use in both standard and harsh industrial environments where temperature extremes are common.
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Which package type is used for this product?
It is housed in an SOIC-8 package, a widely accepted surface-mount form factor that simplifies PCB assembly and is compatible with automated manufacturing processes.
How does the supply voltage range benefit system design?
The broad supply voltage range from 2.7 V to 5.5 V allows flexible power supply options, enabling the component to be used in various system architectures without requiring additional voltage regulation.
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What is the significance of the low input current specification?
Low input current, limited to ??1 ??A, reduces power consumption and minimizes interference with other circuit elements, which is critical in sensitive analog and digital signal processing applications.
Can this device be used in high-speed signal processing?
Yes, with a maximum propagation delay of 10 ns, it is well-suited for applications requiring rapid switching and fast response times, supporting efficient high-speed signal processing tasks.