8 Pack 385Z2.5 IC - Shunt Voltage Reference Diodes
แƒ”แƒ แƒ—แƒ”แƒฃแƒšแƒ˜แƒก #: 52708072

8 Pack 385Z2.5 IC - Shunt Voltage Reference Diodes

แƒ”แƒ แƒ—แƒ”แƒฃแƒšแƒ˜แƒก #: 52708072

GEL 87

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Note: Step Down Voltage Transformer required for using electronics products of แƒแƒจแƒจ store (110-120). Recommended power converters แƒ˜แƒงแƒ˜แƒ“แƒ” แƒแƒฎแƒšแƒ.

What Stands Out

High Precision
Delivers stable voltage references, ensuring accurate measurements in circuits, crucial for applications demanding strict tolerances.
Low Noise
Minimizes output noise, enhancing overall circuit performance and reliability in sensitive electronic applications like audio and precision instrumentation.
Multiple Units
Pack of 8 provides cost-effective solutions for bulk projects, ideal for engineers and hobbyists working on multiple prototypes or circuit designs.

แฒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ˜แƒก แƒแƒฆแƒฌแƒ”แƒ แƒ˜แƒšแƒแƒ‘แƒ

Shop Now for 8 Pack of Micropower Shunt Voltage Reference Diodes. Exceptionally low dynamic impedance and good temperature stability. Worldwide Shipping. Great Prices! Shop at Ubuy Georgia
Item Weight0.05 lbs (20 grams)

Who Should Buy?

Suitable For
  • Electronics Engineers

    Ideal for designers creating precise voltage regulation circuits in various electronic applications, ensuring accurate voltage output.

  • Hobbyist Projects

    Great for electronics enthusiasts building DIY projects needing reliable voltage reference components for stability and accuracy.

  • Educational Use

    Useful for students learning about voltage references and semiconductor devices, providing hands-on experience with practical components.

Not Suitable For
  • High-Power Applications

    Not suitable for high-power circuits that require greater voltage handling or power dissipation capabilities.

แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ˜แƒก แƒแƒฆแƒฌแƒ”แƒ แƒ˜แƒšแƒแƒ‘แƒ

8 Pack 385Z2.5 IC - Shunt Voltage Reference Diodes

About This Item

Introducing the 385Z2.5 IC Shunt Voltage Reference Diode - the perfect solution for accurate voltage regulation and reference in your electronic projects. Designed to provide a stable and precise voltage reference, this shunt voltage reference diode is a must-have for any electronic enthusiast or professional. With its advanced 385Z2.5 IC technology, this diode offers exceptional performance and reliability.

It ensures a consistent voltage output, allowing you to maintain the desired voltage level without any fluctuations. This makes it ideal for applications such as precision measurement tools, power supplies, and voltage regulators. Not only does the 385Z2.5 IC Shunt Voltage Reference Diode deliver exceptional performance, but it also boasts a compact and durable design. Built with high-quality materials, it offers excellent heat dissipation and protection against environmental factors.

This ensures the longevity and reliability of the diode, making it suitable for even the most demanding applications. Whether you are a hobbyist working on DIY projects or a professional in need of precise voltage reference, the 385Z2.5 IC Shunt Voltage Reference Diode is a versatile and essential component. Its easy installation and compatibility with various circuit designs make it a convenient choice for both experienced and novice users. Choose the 385Z2.5 IC Shunt Voltage Reference Diode for unrivaled accuracy, stability, and durability in your voltage regulation needs. Order now and experience the difference it can make in your electronic projects.

แƒ’แƒแƒฅแƒ•แƒ— แƒ แƒแƒ˜แƒ›แƒ” แƒจแƒ”แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ? แƒ›แƒแƒ’แƒ•แƒ›แƒแƒ แƒ—แƒ”แƒ— แƒฉแƒแƒ—แƒจแƒ˜

แƒ›แƒแƒ›แƒฎแƒ›แƒแƒ แƒ”แƒ‘แƒ”แƒšแƒ—แƒ แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ”แƒ‘แƒ˜ แƒ“แƒ แƒžแƒแƒกแƒฃแƒฎแƒ”แƒ‘แƒ˜

  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: What is a shunt voltage reference diode?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: A shunt voltage reference diode is a semiconductor device designed to provide a stable reference voltage. It operates in reverse breakdown, maintaining a constant voltage across its terminals despite variations in load current or supply voltage. These components are crucial in precision applications, such as analog circuits and voltage regulation. They are commonly used in applications like power management systems and reference voltage generators to ensure accuracy and reliability in electronic designs.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: How does the 385Z2.5 IC perform in electronic circuits?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: The 385Z2.5 IC is specifically designed to deliver a precise output voltage of 2.5V, making it ideal for use as a voltage reference in precision applications. Its low temperature coefficient and high stability render it suitable for various electronic devices, such as ADCs (Analog-to-Digital Converters) and DACs (Digital-to-Analog Converters). By integrating this IC into your circuit, you gain the advantage of improved accuracy and minimized drift, enhancing overall circuit performance.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: What are the typical applications for the 385Z2.5 diodes?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: The 385Z2.5 diodes are employed in a wide variety of applications including power regulation, signal conditioning, and sensor interfacing. They play a critical role in precision analog signal processing, where maintaining an accurate voltage reference is essential. Applications can range from medical devices needing precise readings to automotive electronics requiring reliable voltage regulation for control systems, showcasing their versatility in modern electronics.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: What is the package type of the 385Z2.5 IC?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: The 385Z2.5 IC typically comes in a TO-92 or similar package, which supports easy integration into both PCB designs and prototyping projects. This form factor not only favors low-profile applications but also facilitates efficient heat dissipation. For designers and engineers, selecting a compact package like TO-92 enables maximum flexibility in layout designs, ensuring that they can create efficient, space-saving electronic devices.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: What voltage tolerance should I consider when using the 385Z2.5?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: When using the 385Z2.5, it is crucial to accommodate its output voltage tolerance, which is typically within ±1%. This tolerance allows for some variations in application environments but emphasizes the importance of careful design to maintain circuit accuracy. Understanding these tolerances helps engineers design more robust circuits that are resilient to minor fluctuations in reference voltage, essential for applications demanding high precision.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: Can the 385Z2.5 be used in battery-operated devices?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: Absolutely, the 385Z2.5 is highly suitable for battery-operated devices due to its low power consumption characteristics. This makes it an excellent choice for portable electronics seeking energy efficiency, such as handheld medical instruments or wireless sensors. Utilizing this diode optimizes battery life while ensuring the electronic device operates with reliable voltage references that are crucial for performance.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: How do I determine the output voltage stability of the 385Z2.5?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: Output voltage stability can typically be evaluated through the device’s specifications, which provide insight into its temperature coefficient and load regulation characteristics. The 385Z2.5 is engineered with minimal drift across its operating range, making it stable under various conditions. By analyzing these factors, engineers can assure that the output voltage remains consistent throughout differing loads and temperatures, an essential aspect for high-performance applications.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: Is it necessary to use capacitors with the 385Z2.5?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: While it is not strictly necessary to use capacitors with the 385Z2.5, adding a bypass capacitor can enhance stability and transient response in the circuit. A small capacitor, typically in the range of 0.1µF, can help in smoothing out noise and ensuring that the voltage reference remains stable during sudden load changes. This is particularly advantageous in applications where signal integrity is critical, such as in high-frequency analog circuits.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: What is the temperature range for the 385Z2.5 operation?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: The 385Z2.5 operates effectively across a defined temperature range, typically about -40°C to +85°C, making it suitable for a wide array of environments. This range allows for diverse applications, from consumer electronics to industrial devices, ensuring reliability even under extreme conditions. Understanding the operational temperature range helps engineers ensure that their devices maintain accuracy and functionality in real-world applications.
  • แƒ™แƒ˜แƒ—แƒฎแƒ•แƒ: Where can I buy 8 Pack 385Z2.5 IC - Shunt Voltage Reference Diodes?

    แƒžแƒแƒกแƒฃแƒฎแƒ˜: You can purchase the 8 Pack 385Z2.5 IC - Shunt Voltage Reference Diodes on Ubuy, which offers a reliable platform for sourcing electronics components. Ubuy provides a straightforward shopping experience with options for international customers, making it convenient to find the products you need with just a few clicks.

EX ELECTRONIX EXPRESS Communication Integrated Circuits Editorial Review

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แƒ›แƒœแƒ˜แƒจแƒ•แƒœแƒ”แƒšแƒแƒ•แƒแƒœแƒ˜ แƒ˜แƒœแƒคแƒแƒ แƒ›แƒแƒชแƒ˜แƒ

  • แƒจแƒ”แƒ–แƒฆแƒฃแƒ“แƒ•แƒ”แƒ‘แƒ˜: แƒ’แƒ—แƒฎแƒแƒ•แƒ—, แƒ’แƒแƒ˜แƒ—แƒ•แƒแƒšแƒ˜แƒกแƒฌแƒ˜แƒœแƒแƒ—, แƒ แƒแƒ› แƒกแƒแƒ–แƒฆแƒ•แƒแƒ แƒ’แƒแƒ แƒ”แƒ— แƒ’แƒแƒ’แƒ–แƒแƒ•แƒœแƒ˜แƒšแƒ˜ แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ”แƒ‘แƒ˜แƒกแƒ—แƒ•แƒ˜แƒก แƒ›แƒฌแƒแƒ แƒ›แƒแƒ”แƒ‘แƒšแƒ˜แƒก แƒ’แƒแƒ แƒแƒœแƒขแƒ˜แƒ แƒจแƒ”แƒ˜แƒซแƒšแƒ”แƒ‘แƒ แƒแƒ  แƒ˜แƒงแƒแƒก แƒ›แƒแƒฅแƒ›แƒ”แƒ“แƒ˜; แƒ›แƒฌแƒแƒ แƒ›แƒแƒ”แƒ‘แƒšแƒ˜แƒก แƒ›แƒแƒ›แƒกแƒแƒฎแƒฃแƒ แƒ”แƒ‘แƒ˜แƒก แƒžแƒแƒ แƒแƒ›แƒ”แƒขแƒ แƒ”แƒ‘แƒ˜ แƒจแƒ”แƒ˜แƒซแƒšแƒ”แƒ‘แƒ แƒแƒ  แƒ˜แƒงแƒแƒก แƒฎแƒ”แƒšแƒ›แƒ˜แƒกแƒแƒฌแƒ•แƒ“แƒแƒ›แƒ˜; แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ˜แƒก แƒ˜แƒœแƒกแƒขแƒ แƒฃแƒฅแƒชแƒ˜แƒ”แƒ‘แƒ˜ แƒ“แƒ แƒฃแƒกแƒแƒคแƒ แƒ—แƒฎแƒแƒ”แƒ‘แƒ˜แƒก แƒ’แƒแƒคแƒ แƒ—แƒฎแƒ˜แƒšแƒ”แƒ‘แƒ”แƒ‘แƒ˜ แƒจแƒ”แƒ˜แƒซแƒšแƒ”แƒ‘แƒ แƒแƒ  แƒ˜แƒงแƒแƒก แƒ“แƒแƒœแƒ˜แƒจแƒœแƒฃแƒšแƒ”แƒ‘แƒ˜แƒก แƒฅแƒ•แƒ”แƒงแƒœแƒ˜แƒก แƒ”แƒœแƒแƒ–แƒ”; แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ”แƒ‘แƒ˜ (แƒ“แƒ แƒ›แƒแƒกแƒ—แƒแƒœ แƒ“แƒแƒ™แƒแƒ•แƒจแƒ˜แƒ แƒ”แƒ‘แƒฃแƒšแƒ˜ แƒ›แƒแƒกแƒแƒšแƒ”แƒ‘แƒ˜) แƒจแƒ”แƒ˜แƒซแƒšแƒ”แƒ‘แƒ แƒแƒ  แƒ˜แƒงแƒแƒก แƒจแƒ”แƒ›แƒฃแƒจแƒแƒ•แƒ”แƒ‘แƒฃแƒšแƒ˜ แƒ“แƒแƒœแƒ˜แƒจแƒœแƒฃแƒšแƒ”แƒ‘แƒ˜แƒก แƒฅแƒ•แƒ”แƒงแƒœแƒ˜แƒก แƒกแƒขแƒแƒœแƒ“แƒแƒ แƒขแƒ”แƒ‘แƒ˜แƒก, แƒกแƒžแƒ”แƒชแƒ˜แƒคแƒ˜แƒ™แƒแƒชแƒ˜แƒ”แƒ‘แƒ˜แƒกแƒ แƒ“แƒ แƒ›แƒแƒ แƒ™แƒ˜แƒ แƒ”แƒ‘แƒ˜แƒก แƒ›แƒแƒ—แƒฎแƒแƒ•แƒœแƒ”แƒ‘แƒ˜แƒก แƒจแƒ”แƒกแƒแƒ‘แƒแƒ›แƒ˜แƒกแƒแƒ“; แƒ“แƒ แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ”แƒ‘แƒ˜ แƒจแƒ”แƒ˜แƒซแƒšแƒ”แƒ‘แƒ แƒแƒ  แƒจแƒ”แƒ”แƒกแƒแƒ‘แƒแƒ›แƒ”แƒ‘แƒแƒ“แƒ”แƒก แƒ“แƒแƒœแƒ˜แƒจแƒœแƒฃแƒšแƒ”แƒ‘แƒ˜แƒก แƒฅแƒ•แƒ”แƒงแƒœแƒ˜แƒก แƒซแƒแƒ‘แƒ•แƒ˜แƒกแƒ แƒ“แƒ แƒกแƒฎแƒ•แƒ แƒ”แƒšแƒ”แƒฅแƒขแƒ แƒ แƒกแƒขแƒแƒœแƒ“แƒแƒ แƒขแƒ”แƒ‘แƒก (แƒกแƒแƒญแƒ˜แƒ แƒแƒ”แƒ‘แƒ˜แƒก แƒจแƒ”แƒ›แƒ—แƒฎแƒ•แƒ”แƒ•แƒแƒจแƒ˜ แƒกแƒแƒญแƒ˜แƒ แƒแƒ แƒแƒ“แƒแƒžแƒขแƒ”แƒ แƒ˜ แƒแƒœ แƒ’แƒแƒ“แƒแƒ›แƒงแƒ•แƒแƒœแƒ˜). แƒ›แƒ˜แƒ›แƒฆแƒ”แƒ‘แƒ˜ แƒžแƒแƒกแƒฃแƒฎแƒ˜แƒกแƒ›แƒ’แƒ”แƒ‘แƒ”แƒšแƒ˜แƒ แƒฃแƒ–แƒ แƒฃแƒœแƒ•แƒ”แƒšแƒงแƒแƒก, แƒ แƒแƒ› แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ˜ แƒ™แƒแƒœแƒแƒœแƒ˜แƒ”แƒ แƒแƒ“ แƒจแƒ”แƒ›แƒแƒ˜แƒขแƒแƒœแƒแƒก แƒ“แƒแƒœแƒ˜แƒจแƒœแƒฃแƒšแƒ”แƒ‘แƒ˜แƒก แƒฅแƒ•แƒ”แƒงแƒแƒœแƒแƒจแƒ˜. Ubuy-แƒก แƒแƒœ แƒ›แƒ˜แƒกแƒ˜ แƒแƒคแƒ˜แƒšแƒ˜แƒ แƒ”แƒ‘แƒฃแƒšแƒ˜ แƒžแƒ˜แƒ แƒ”แƒ‘แƒ˜แƒก แƒ›แƒ”แƒจแƒ•แƒ”แƒแƒ‘แƒ˜แƒ— แƒจแƒ”แƒ™แƒ•แƒ”แƒ—แƒ˜แƒกแƒแƒก แƒ›แƒ˜แƒ›แƒฆแƒ”แƒ‘แƒ˜ แƒแƒ แƒ˜แƒก แƒ แƒ”แƒ’แƒ˜แƒกแƒขแƒ แƒ˜แƒ แƒ”แƒ‘แƒฃแƒšแƒ˜ แƒ˜แƒ›แƒžแƒแƒ แƒขแƒ˜แƒแƒ แƒ˜ แƒ“แƒ แƒ›แƒแƒœ แƒฃแƒœแƒ“แƒ แƒ’แƒแƒ˜แƒ—แƒ•แƒแƒšแƒ˜แƒกแƒฌแƒ˜แƒœแƒแƒก แƒ“แƒแƒœแƒ˜แƒจแƒœแƒฃแƒšแƒ”แƒ‘แƒ˜แƒก แƒฅแƒ•แƒ”แƒงแƒœแƒ˜แƒก แƒงแƒ•แƒ”แƒšแƒ แƒ™แƒแƒœแƒแƒœแƒ˜ แƒ“แƒ แƒ“แƒ”แƒ‘แƒฃแƒšแƒ”แƒ‘แƒ.
  • Ubuy-แƒ–แƒ” แƒฉแƒแƒ›แƒแƒ—แƒ•แƒšแƒ˜แƒšแƒ˜ แƒงแƒ•แƒ”แƒšแƒ แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ˜ แƒแƒ  แƒแƒ แƒ˜แƒก แƒ’แƒแƒงแƒ˜แƒ“แƒ•แƒแƒจแƒ˜, แƒ แƒแƒ“แƒ’แƒแƒœ Ubuy แƒแƒ แƒ˜แƒก แƒ’แƒšแƒแƒ‘แƒแƒšแƒฃแƒ แƒ˜ แƒกแƒแƒซแƒ˜แƒ”แƒ‘แƒ แƒกแƒ˜แƒกแƒขแƒ”แƒ›แƒ แƒ“แƒ แƒžแƒ แƒแƒ“แƒฃแƒฅแƒขแƒ”แƒ‘แƒ˜ แƒ”แƒฅแƒ•แƒ”แƒ›แƒ“แƒ”แƒ‘แƒแƒ แƒ”แƒ‘แƒ แƒกแƒแƒ”แƒฅแƒกแƒžแƒแƒ แƒขแƒ/แƒกแƒแƒ•แƒแƒญแƒ แƒ แƒ แƒ”แƒ’แƒฃแƒšแƒแƒชแƒ˜แƒ”แƒ‘แƒก.