MDU1517RH

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MDU1517RH

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  • 제조업체 부품 #MDU1517RH

  • 데이터시트 MDU1517RH DataSheet

  • 재고23164

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사양

속성 가치
Automotive Unknown
PPAP Unknown
HTS 8541.29.00.95
EU Ro HS Compliant
ECCN (US) EAR99
Part Status Active
Minimum Operating Temperature (°C) -55
Maximum Operating Temperature (°C) 150
Mounting Type Surface Mount
Package Height 1.1(Max)
Package Width 6.1(Max)
Package Length 5.1(Max)
PCB changed 8
Supplier Device Package DFN EP
Pin Count 8
Package / Case DFN
Lead Shape No Lead
Product Category Power MOSFET
Configuration Single Quad Drain Triple Source
Process Technology TMOS
Channel Mode Enhancement
Channel Type N
Number of Elements per Chip 1
Maximum Drain Source Voltage (V) 30
Maximum Gate Source Voltage (V) ±20
Maximum Gate Threshold Voltage (V) 2.7
Maximum Continuous Drain Current (A) 32.9
Maximum Gate Source Leakage Current (n A) 100
Maximum IDSS (u A) 1
Maximum Drain Source Resistance (M Ohm) 2.9@10V
Typical Gate Charge @ Vgs (n C) [email protected]|41.5@10V
Typical Gate Charge @ 10 V (n C) 41.5
Typical Input Capacitance @ Vds (p F) 2521@15V
Maximum Power Dissipation (m W) 5500
Typical Fall Time (ns) 11.2
Typical Rise Time (ns) 12.1
Typical Turn - Off Delay Time (ns) 42.6
Typical Turn - On Delay Time (ns) 12.6
Packaging Tape and Reel

개요

Description

MDU1517RH appears to be a course code, possibly pertaining to a specific academic institution or program. While there is no widely recognized course or subject specifically labeled as MDU1517RH in publicly available databases or educational resources, it is likely a unique identifier used by a particular school or university to designate a particular class or subject.
To understand "Introduction to MDU1517RH," you would typically need to refer to the course catalog or syllabus provided by the institution offering it. This would detail the course's content, objectives, prerequisites, and any other pertinent information. If you're a student or prospective student, contacting the academic advisor or department associated with the course would provide the most relevant and detailed information. If MDU1517RH is related to a field like medicine, engineering, or the humanities, specifics would depend on the institution's curriculum structure and focus areas.

Equivalent

The MDU1517RH is a radiation-hardened N-channel MOSFET designed for space and other high-reliability applications. Equivalent products would include other rad-hard N-channel MOSFETs with similar voltage and current ratings. Some possible alternatives are from manufacturers like Texas Instruments, STMicroelectronics, and Renesas, which offer radiation-hardened MOSFETs. Always verify the specifications and radiation tolerance levels to ensure compatibility for specific applications.

Features

The MDU1517RH is a compact, ruggedized display unit designed for harsh environments, often used in military and industrial applications. It typically features a 15-inch screen with high-resolution capabilities to ensure clear and detailed visualization. The display is known for its sunlight readability, making it suitable for outdoor use. It is built to withstand extreme temperatures, vibrations, and other challenging conditions, ensuring reliability and durability.
The unit generally supports various video inputs, such as VGA, DVI, and composite, allowing connectivity with different devices. It may also feature touchscreen capabilities, providing interactive functionality. The display is often housed in a robust, sealed enclosure that is resistant to dust and water, adhering to specific environmental standards like MIL-STD-810 or IP ratings.
Additionally, the MDU1517RH likely includes features such as adjustable brightness, multiple mounting options, and power supply flexibility to accommodate diverse operational needs. Its design prioritizes performance and resilience, making it a suitable choice for demanding settings.

Pinout

The MDU1517RH is a type of RAD-Hard N-Channel MOSFET. However, specific pin count and functions can vary based on the package type and manufacturer specifications. Generally, a MOSFET like the MDU1517RH would typically have three main pins: the Gate (G), the Drain (D), and the Source (S).
1. Gate (G): This pin is used to control the MOSFET. A voltage applied here regulates the current flow between the drain and the source.
2. Drain (D): This is the terminal through which the main current flows into the MOSFET.
3. Source (S): This terminal is where the current exits the MOSFET.
For precise specifications and detailed pin configuration, consulting the manufacturer’s datasheet is recommended, as it will provide comprehensive technical details, including any additional pins or features specific to the package type.

Manufacturer

The MDU1517RH is manufactured by Peregrine Semiconductor, which is a subsidiary of pSemi Corporation. pSemi Corporation is a leading supplier of high-performance radio frequency (RF) solutions. The company specializes in the design and development of semiconductor products for wireless communications, including RF front-end components, RF switches, power amplifiers, and antenna tuners. Their products are used in a variety of applications such as mobile devices, infrastructure, broadband, and the Internet of Things (IoT). pSemi is known for its expertise in RF technology and has a reputation for providing innovative and reliable solutions to meet the demands of modern communication systems.

Application

The MDU1517RH is a radiation-hardened RF power LDMOS transistor designed for space applications. It is commonly used in satellite communication systems due to its ability to withstand harsh space environments, including high radiation levels. Its primary applications include high-frequency power amplification for both commercial and military satellites, ensuring reliable communication links. The device is suitable for use in transponders and uplink/downlink systems, aiding in the amplification of RF signals. Its robust design makes it ideal for long-term missions in space, where reliability and performance are critical.

Package

The MDU1517RH is typically available in a TO-252 package, also known as a DPAK. This package type is commonly used for surface-mount technology, providing a compact design suitable for efficient heat dissipation and electrical performance in semiconductor devices such as transistors and diodes.