

Microsemi JANS1N5304-1
Manufacturer No:
JANS1N5304-1
Tiny WHSLManufacturer:
Utmel No:
1619-JANS1N5304-1
Package:
-
Description:
CURRENT REGULATOR DIODE Diode Rectifier
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- TypeParameter
- Surface Mount
having leads that are designed to be soldered on the side of a circuit board that the body of the component is mounted on.
NO - Diode Element Material
The parameter "Diode Element Material" refers to the specific semiconductor material used in the construction of a diode. This material determines the electrical characteristics and performance of the diode, including its forward voltage drop, reverse breakdown voltage, and switching speed. Common diode element materials include silicon, germanium, and gallium arsenide, each offering different advantages for various applications. The choice of material impacts the diode's efficiency, thermal stability, and overall suitability for specific electronic circuits.
SILICON - Number of Terminals2
- Package DescriptionO-LALF-W2
- Package StyleLONG FORM
- Package Body MaterialGLASS
- Operating Temperature-Min-65 °C
- Operating Temperature-Max175 °C
- Rohs CodeYes
- Manufacturer Part NumberJANS1N5304-1
- Power Dissipation (Max)0.5 W
- Package ShapeROUND
- ManufacturerVPT Components
- Number of Elements1
- Part Life Cycle CodeActive
- Ihs ManufacturerVPT COMPONENTS
- Risk Rank5.71
- Additional Feature
Any Feature, including a modified Existing Feature, that is not an Existing Feature.
HIGH SOURCE IMPEDANCE - Technology
In the context of electronic components, the parameter "Technology" refers to the specific manufacturing process and materials used to create the component. This includes the design, construction, and materials used in the production of the component. The technology used can greatly impact the performance, efficiency, and reliability of the electronic component. Different technologies may be used for different types of components, such as integrated circuits, resistors, capacitors, and more. Understanding the technology behind electronic components is important for selecting the right components for a particular application and ensuring optimal performance.
FIELD EFFECT - Terminal Position
In electronic components, the term "Terminal Position" refers to the physical location of the connection points on the component where external electrical connections can be made. These connection points, known as terminals, are typically used to attach wires, leads, or other components to the main body of the electronic component. The terminal position is important for ensuring proper connectivity and functionality of the component within a circuit. It is often specified in technical datasheets or component specifications to help designers and engineers understand how to properly integrate the component into their circuit designs.
AXIAL - Terminal Form
Occurring at or forming the end of a series, succession, or the like; closing; concluding.
WIRE - Reach Compliance Code
Reach Compliance Code refers to a designation indicating that electronic components meet the requirements set by the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation in the European Union. It signifies that the manufacturer has assessed and managed the chemical substances within the components to ensure safety and environmental protection. This code is vital for compliance with regulations aimed at minimizing risks associated with hazardous substances in electronic products.
compliant - Reference Standard
In the context of electronic components, the term "Reference Standard" typically refers to a specific set of guidelines, specifications, or requirements that serve as a benchmark for evaluating the quality, performance, and characteristics of the component. These standards are established by organizations such as the International Electrotechnical Commission (IEC), the Institute of Electrical and Electronics Engineers (IEEE), or specific industry bodies.Reference standards help ensure consistency and interoperability among different components, as they provide a common framework for manufacturers, designers, and users to adhere to. They outline parameters such as electrical properties, mechanical dimensions, environmental conditions, and safety considerations that the component must meet to be considered compliant.By referencing these standards, manufacturers can design and produce components that meet industry-recognized criteria, which in turn helps users select the right components for their applications with confidence. Adhering to reference standards also facilitates regulatory compliance and promotes overall quality and reliability in electronic systems.
MIL-19500 - JESD-30 Code
JESD-30 Code refers to a standardized descriptive designation system established by JEDEC for semiconductor-device packages. This system provides a systematic method for generating designators that convey essential information about the package's physical characteristics, such as size and shape, which aids in component identification and selection. By using JESD-30 codes, manufacturers and engineers can ensure consistency and clarity in the specification of semiconductor packages across various applications and industries.
O-LALF-W2 - Configuration
The parameter "Configuration" in electronic components refers to the specific arrangement or setup of the components within a circuit or system. It encompasses how individual elements are interconnected and their physical layout. Configuration can affect the functionality, performance, and efficiency of the electronic system, and may influence factors such as signal flow, impedance, and power distribution. Understanding the configuration is essential for design, troubleshooting, and optimizing electronic devices.
SINGLE - Diode Type
In electronic components, the parameter "Diode Type" refers to the specific type or configuration of a diode, which is a semiconductor device that allows current to flow in one direction only. There are various types of diodes, each designed for specific applications and functions. Common diode types include rectifier diodes, zener diodes, light-emitting diodes (LEDs), and Schottky diodes, among others. The diode type determines the diode's characteristics, such as forward voltage drop, reverse breakdown voltage, and maximum current rating, making it crucial for selecting the right diode for a particular circuit or application. Understanding the diode type is essential for ensuring proper functionality and performance in electronic circuits.
CURRENT REGULATOR DIODE - Case Connection
Case Connection refers to the method by which an electronic component's case or housing is connected to the electrical circuit. This connection is important for grounding purposes, mechanical stability, and heat dissipation. The case connection can vary depending on the type of component and its intended application. It is crucial to ensure a secure and reliable case connection to maintain the overall performance and safety of the electronic device.
ISOLATED - JEDEC-95 Code
JEDEC-95 Code is a standardized identification system used by the Joint Electron Device Engineering Council to categorize and describe semiconductor devices. This code provides a unique alphanumeric identifier for various memory components, ensuring consistency in documentation and communication across the electronics industry. The format includes information about the type, capacity, and technology of the device, facilitating easier specification and understanding for manufacturers and engineers.
DO-7 - Regulation Current-Nom (Ireg)
Regulation Current-Nom (Ireg) is a parameter that defines the nominal output current level at which a power supply or voltage regulator is designed to operate optimally. It indicates the maximum current the device can deliver while maintaining the specified output voltage regulation. This parameter is critical for ensuring that the connected load can be powered effectively without exceeding the limits of the regulator's capability, thereby preventing overheating or damage.
1.8 mA - Limiting Voltage-Max
Limiting Voltage-Max is a parameter in electronic components that specifies the maximum voltage level that the component can safely handle without being damaged. This value is crucial for ensuring the reliability and longevity of the component in a circuit. Exceeding the specified limiting voltage-max can lead to permanent damage, malfunction, or even complete failure of the component. It is important to carefully consider and adhere to this parameter when designing and operating electronic circuits to prevent any potential damage or safety hazards.
1.75 V