Overview of 1N459ATR by onsemi
The 1N459ATR is a high conductance low leakage diode with an axial lead design, enabling versatile application in various electronic circuits. This diode operates with a maximum reverse voltage of 200V and is classified under the Rectifier Diodes subcategory. Compliant with RoHS standards, the 1N459ATR ensures a minimum environmental impact in electronic manufacturing processes. The part features a forward voltage maximum (VF) of 1V and a maximum output current of 0.2A, while it is built from silicon diode element material that allows efficient conduction.
This diode is characterized by its capability to handle a non-repetitive peak forward current of up to 4A and a power dissipation rating of 0.5W. The package conforms to the JEDEC-95 DO-35 standards, which indicates its suitability for integration into a wide variety of electronic systems. Additionally, the part has a maximum operating temperature of 175 °C and provides a reliable performance under various environmental conditions. According to the current data, the factory lead time is indicated as around 10 weeks, which may influence procurement decisions.
Industry Applications for 1N459ATR
The potential applications of the 1N459ATR could span several industries due to its electrical characteristics. Here are some industries that might benefit from the utilization of this rectifier diode:
- Aerospace and Defense: The 1N459ATR could potentially be used in power management systems and signal processing applications, where reliability under high temperatures is crucial. Its low leakage specification might make it suitable for systems requiring energy efficiency and minimal signal distortion.
- Energy and Power Systems: In renewable energy applications, this diode might be considered in solar inverters where high efficiency is needed. The capability to handle transient surges could possibly protect circuits from voltage spikes, thereby enhancing overall system longevity.
- Space Technology: Given the rigorous standards in space applications, the 1N459ATR might be utilized within systems that require components to withstand extreme temperatures. Its general-purpose nature could allow it to be part of various subsystems, from telemetry to satellite communications.
The above applications are conceptual and illustrative; they require thorough analysis and verification by engineering and design teams to ensure adherence to specific industry standards and application requirements. Similar rectifier diodes could also provide comparable functionalities across these sectors, depending on design needs.
About onsemi
onsemi is a manufacturer recognized for its diverse range of electronic components, including rectifier diodes. The company is involved in the design and production of semiconductor solutions that support high performance and energy efficiency across various applications. The 1N459ATR is part of their robust portfolio in the diode market, which includes similar components optimized for different performance metrics and operational needs.
Their rectifier diodes are designed to provide reliable power conversion in various systems, and onsemi continues to innovate in this area by improving efficiency and reducing overall environmental impact. Other comparable parts include a variety of diodes with functionalities tailored for high-frequency applications, general-purpose use, or specific thermal management needs.
Where to Find 1N459ATR by onsemi
- Master Electronics
- DigiKey
- Mouser Electronics
- Arrow Electronics
Note, however, that stock availability may vary, and it is essential to consult findchips.com for the most current pricing and stock levels. In addition to the 1N459ATR, the linked site can also guide you through a selection of alternative Rectifier Diodes offered by onsemi or other manufacturers that may suit your application needs.
Compare pricing for 1N459ATR and other Rectifier Diodes / Diodes at findchips.com
For additional insights into the 1N459ATR and similar Rectifier Diodes, visit findchips.com for up-to-date pricing and availability.