JAN1N5314-1/TR Overview
The JAN1N5314-1/TR is a precision voltage regulator diode designed for high-reliability applications. Engineered to provide a stable reference voltage with excellent temperature stability, this component ensures consistent performance in demanding industrial environments. Its robust design supports a voltage rating suitable for a broad range of electronic circuits, making it ideal for power regulation and voltage stabilization tasks. Sourced from a trusted IC Manufacturer, this device meets stringent quality standards required in aerospace, defense, and industrial control systems.
JAN1N5314-1/TR Technical Specifications
| Parameter | Specification |
|---|---|
| Device Type | Voltage Regulator Diode |
| Nominal Voltage | 14 V |
| Maximum Power Dissipation | 1 W |
| Voltage Tolerance | ??5% |
| Operating Temperature Range | -65??C to +175??C |
| Package Type | Axial Leaded |
| Surge Current | 5 A Peak |
| Reverse Leakage Current | Maximum 5 ??A at Rated Voltage |
| Marking Code | 1N5314A |
JAN1N5314-1/TR Key Features
- Stable Voltage Regulation: Provides a precise 14 V reference voltage, ensuring reliable circuit operation under varying load conditions.
- Wide Operating Temperature Range: Functionality from -65??C to +175??C supports use in harsh environments, critical for aerospace and military applications.
- High Surge Current Capability: Withstands peak surge currents up to 5 A, enhancing durability during transient events.
- Low Reverse Leakage Current: Minimizes power loss and improves efficiency in sensitive electronic circuits.
JAN1N5314-1/TR Advantages vs Typical Alternatives
This diode offers superior voltage stability and temperature tolerance compared to standard voltage regulators. Its high surge current capability and low leakage current ensure enhanced reliability and efficiency. The robust axial leaded package provides mechanical strength and ease of integration, making it a preferred choice for high-performance industrial and military-grade voltage regulation.
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Typical Applications
- Voltage reference and regulation in aerospace and defense systems requiring rigorous environmental and electrical performance standards.
- Industrial control systems needing stable voltage supplies under fluctuating load and temperature conditions.
- Power supply circuits demanding precise voltage stabilization for sensitive components.
- Test and measurement equipment benefiting from consistent voltage references for accurate readings.
JAN1N5314-1/TR Brand Info
Produced by a reputable manufacturer known for high-reliability semiconductor components, this voltage regulator diode is part of a legacy series designed to meet stringent military and industrial standards. The product??s manufacturing processes and quality control ensure compliance with rigorous performance criteria, making it a dependable choice for engineers and sourcing specialists seeking long-term stability and durability.
FAQ
What is the nominal voltage rating of this voltage regulator diode?
The device is rated for a nominal voltage of approximately 14 V, delivering a stable reference voltage suitable for various high-reliability circuit applications.
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What temperature range can this component reliably operate within?
This diode is qualified for operation across a wide temperature range from -65??C to +175??C, making it suitable for use in extreme environmental conditions including aerospace and industrial applications.
How does the diode handle transient surge currents?
It supports peak surge currents up to 5 A, allowing the device to withstand sudden voltage spikes and transient events without degradation or failure.
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What type of packaging does this diode use?
The product is supplied in an axial leaded package, which offers mechanical durability and ease of installation in through-hole PCB assemblies commonly used in industrial and military electronics.
What are the leakage current characteristics of this voltage regulator diode?
The reverse leakage current is specified to be a maximum of 5 microamperes at the rated voltage, which contributes to low power losses and enhances overall circuit efficiency.






