Allicdata Part #: | DME500-ND |
Manufacturer Part#: |
DME500 |
Price: | $ 194.19 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Microsemi Corporation |
Short Description: | TRANS RF BIPO 1700W 40A 55KT1 |
More Detail: | RF Transistor NPN 55V 40A 1.025GHz ~ 1.15GHz 1700W... |
DataSheet: | DME500 Datasheet/PDF |
Quantity: | 1000 |
25 +: | $ 176.53800 |
Noise Figure (dB Typ @ f): | -- |
Gain: | 6dB ~ 6.5dB |
Power - Max: | 1700W |
DC Current Gain (hFE) (Min) @ Ic, Vce: | 10 @ 500mA, 5V |
Current - Collector (Ic) (Max): | 40A |
Operating Temperature: | 200°C (TJ) |
Mounting Type: | Chassis Mount |
Package / Case: | 55KT |
Supplier Device Package: | 55KT |
Series: | -- |
Packaging: | Bulk |
Part Status: | Active |
Transistor Type: | NPN |
Voltage - Collector Emitter Breakdown (Max): | 55V |
Frequency - Transition: | 1.025GHz ~ 1.15GHz |
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The DME500 is a bipolar transistor designed specifically for use in RF applications, such as radio and television broadcasting, mobile communication systems, and other high-frequency and high-efficiency RF systems. It is a versatile device consisting of an NPN (positive-negative-positive) junction-connected bipolar transistor and a PNP (positive-negative-positive) depletion-mode field-effect transistor. The DME500 provides a unique combination of gain, output power, frequency range, and temperature stability in an easy-to-use and compact package.
The DME500 achieves very low noise due to its low-noise transistors and high-performance circuit designs. This allows the DME500 to deliver a high power output for a given input signal level. In addition, the DME500\'s wide dynamic range ensures that even small signals are amplified with excellent fidelity. The DME500 is designed to operate with low input levels and up to. 5A of current.
The working principle of the DME500 can be summed up in three steps. First, the input signal is amplified by the NPN transistor. This amplification is amplified further by the PNP transistor. This amplified signal is then fed back to the base of the NPN transistor, resulting in an increased amplification level. Finally, the output signal is taken from the emitter of the NPN transistor.
The DME500 is used in a variety of applications including broadcast, mobile communication, avionics, automotive and medical systems. The DME500 is particularly useful in AM/FM broadcasting, offering significantly higher gain and output power than conventional transistors. This allows the DME500 to be used in small-sized radios with excellent sensitivity and selectivity. Additionally, the DME500\'s high power capability makes it ideal for use in power amplifiers for wireless communication systems.
In medical applications, DME500\'s wide dynamic range makes it an ideal solution for applications such as X-ray imaging and ultrasound scanning. The low noise and high gain levels of the DME500 ensure that small signals are amplified with excellent fidelity, producing clear images with high image quality. Additionally, the DME500\'s high power capability is beneficial in particle accelerators and other high-energy medical applications.
The DME500 is also popular in avionics. Its low noise and wide dynamic range make it ideal for cockpit instrumentation and navigation systems. Additionally, its high power capability allows the DME500 to be used in high-end avionics systems such as airborne radar, missile guidance systems and other radio-detection-and-ranging systems.
In automotive applications, the DME500 is used for its low noise and high power capability. It is an ideal choice for amplifying audio signals from the car speakers, as well as for amplifying signals from the car stereo. Additionally, the DME500 is used in monitoring systems for vehicle control, as well as in automotive communications systems.
The DME500 is a versatile device offering excellent gain, output power, frequency range, and temperature stability in an easy-to-use and compact package, making it an ideal choice for RF applications. Its low noise and wide dynamic range make it well-suited for broadcast, mobile communication, avionics, automotive, and medical systems. Finally, its high power capability makes it perfect for use in power amplifiers for wireless communication systems, particle accelerators, and various radar systems.
The specific data is subject to PDF, and the above content is for reference
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