ISL21080CIH325Z-TK by Renesas Electronics Corporation

Overview of ISL21080CIH325Z-TK by Renesas Electronics Corporation

The ISL21080CIH325Z-TK is a highly optimized product described as a 300nA NanoPower Voltage References with a stable 2.5V output, housed in a SOT23 package configured into a 3-pin setup. Designed by Renesas Electronics Corporation, this voltage reference component is distinguished by its very low supply current, an outstanding feature for power-sensitive applications. Offering a nominal output voltage at 2.5V, it ensures reliability across a voltage range from 2.7V to 5.5V, incorporating a CMOS technology that assists in achieving its low power consumption and stable output.

The packaging in SOT23, also known as a small-outline transistor, is ideal for surface-mounted design which favors modern compact electronic assemblies. The part also complies with various standards including Pb-free and REACH, dictating safe usage in electronic products. With a considerable temperature range of -40 °C to 85 °C, it suits applications working under varied environmental conditions. Furthermore, its precision is supported by a maximum voltage tolerance of 0.3% ensuring efficient performance in critical applications. As of current writing, the factory lead time for this component is 16 weeks and 4 days.

Industry Applications for ISL21080CIH325Z-TK

The ISL21080CIH325Z-TK could potentially fit into a variety of technical applications across different industries due to its robust design and specifications. Here are illustrative examples where the ISL21080CIH325Z-TK might be utilized:

  • Industrial Automation: In automation systems where precise voltage control is necessary for sensor and actuator operation, the ISL21080CIH325Z-TK could potentially be used to provide stable reference voltages. The accurate voltage output and low power consumption might be especially useful in remote sensing devices distributed across large industrial plants.
  • Financial Technology (Fintech): For financial systems that rely on advanced data processing equipment, the stability offered by ISL21080CIH325Z-TK might be suitable. Devices such as ATMs or mobile transaction devices potentially benefit from its minimal power draw and precision, which could contribute to longer operational hours and reliability.

Please note that these potential industry applications are purely illustrative and require analysis and verification by engineering and design teams to ensure compliance with industry standards and specific application needs.

About Renesas Electronics Corporation

Renesas Electronics Corporation specializes in semiconductor solutions including microcontrollers, advanced memory devices, analog ICs, and particularly in Voltage References.< Their typical offer includes components that provide precise voltage accuracy, enhanced temperature stability, and minimal power loss, suitable for high-demand systems. Aside from ISL21080CIH325Z-TK, Renesas designs a wide array of similar products, leveraging advanced technology to cater to a robust and evolving global market. This specialization ensures that Renesas products like ISL21080CIH325Z-TK are at the forefront of voltage reference design, aligning with current technology trends and user needs.

Where to Find ISL21080CIH325Z-TK by Renesas Electronics Corporation

To purchase the ISL21080CIH325Z-TK, potential buyers should explore the range availability on platforms like FindChips.com. This site allows users to compare current stock levels and pricing among various distributors. Historically, this part has been available at distributors such as New Advantage Corporation, DigiKey, Future Electronics, and Mouser Electronics, to name a few. By visiting FindChips.com, you can verify which distributors currently have this component in stock and at what price. Additionally, if you consider alternative parts, the same site allows you to browse through other Voltage References that might be suitable for your specific needs.

Compare pricing for ISL21080CIH325Z-TK and other Voltage References / Power Circuits at findchips.com