DMC961010R Allicdata Electronics
Allicdata Part #:

DMC961010RTR-ND

Manufacturer Part#:

DMC961010R

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Panasonic Electronic Components
Short Description: TRANS PREBIAS DUAL NPN SSMINI5
More Detail: Pre-Biased Bipolar Transistor (BJT) 2 NPN - Pre-Bi...
DataSheet: DMC961010R datasheetDMC961010R Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
DC Current Gain (hFE) (Min) @ Ic, Vce: 35 @ 5mA, 10V
Base Part Number: DMC96101
Supplier Device Package: SSMini5-F4-B
Package / Case: SOT-665
Mounting Type: Surface Mount
Power - Max: 125mW
Frequency - Transition: --
Current - Collector Cutoff (Max): 500nA
Vce Saturation (Max) @ Ib, Ic: 250mV @ 500µA, 10mA
Series: --
Resistor - Emitter Base (R2): 10 kOhms
Resistor - Base (R1): 10 kOhms
Voltage - Collector Emitter Breakdown (Max): 50V
Current - Collector (Ic) (Max): 100mA
Transistor Type: 2 NPN - Pre-Biased (Dual)
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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The DMC961010R is a silicon NPN monolithic pre-biased transistor array developed by Masimo Corporation. The array consists of two pairs of NPN transistors connected in series, with three pairs of electrodes integrated into a single package. This transistor array is specifically designed for use in high frequency, wide-bandwidth amplifiers, filters, and other applications requiring low noise and slow switching.

The working principle of the DMC961010R involves a transistor array configured with two pairs of NPN transistors connected in series. The two transistors in a pair are connected in parallel, such that their base-to-emitter voltage is shared. This configuration provides a higher voltage gain than a single transistor because of the increased device capability. The two transistors in each pair are also connected in series, allowing them to be coupled and synchronized for high frequency applications.

The DMC961010R offers a wide range of applications due to its integrated components and its high performance capabilities. One of the key features of this device is its ability to tolerate high power and temperature levels. This allows it to be used in high power applications such as power amplifier stages and power supplies, while still delivering excellent performance. Additionally, the device can be used in high-frequency switching circuits, allowing it to be used in low noise and high speed applications.

The DMC961010R is also suited for applications requiring low noise. Its integrated circuit design and components provide excellent noise reduction capability. The device has a high slew rate, meaning that it can quickly switch between voltage states while maintaining low noise. Additionally, the device can be used in low impedance circuits, as its low impedance design allows it to be used in high-impedance systems without significantly affecting circuit performance.

The DMC961010R is also particularly well suited for applications requiring precise control. Its integrated output transistors are able to be controlled with a precise feedforward network, allowing the device to be used in applications such as feedback oscillators, regulators, and precision timing. The device also offers a wide range of bias current settings, allowing it to be used in a wide range of applications.

The DMC961010R is an ideal choice for applications requiring high performance, low noise, precise control, and wide range of options. Its integrated components and design enable it to deliver excellent performance in high power, high frequency, and low noise applications. Additionally, the device can tolerate high temperatures and power levels, making it a great choice for power amplifier stages and power supplies. Finally, its low impedance design allows it to be used in high impedance systems without affecting circuit performance. As such, the DMC961010R is an excellent choice for any application that requires high performance, low noise, and precise control.

The specific data is subject to PDF, and the above content is for reference

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