BCM846SH6327XTSA1 Allicdata Electronics
Allicdata Part #:

BCM846SH6327XTSA1TR-ND

Manufacturer Part#:

BCM846SH6327XTSA1

Price: $ 0.06
Product Category:

Discrete Semiconductor Products

Manufacturer: Infineon Technologies
Short Description: TRANS 2NPN 65V 0.1A SOT363
More Detail: Bipolar (BJT) Transistor Array 2 NPN (Dual) 65V 10...
DataSheet: BCM846SH6327XTSA1 datasheetBCM846SH6327XTSA1 Datasheet/PDF
Quantity: 1000
15000 +: $ 0.05014
Stock 1000Can Ship Immediately
$ 0.06
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Last Time Buy
Transistor Type: 2 NPN (Dual)
Current - Collector (Ic) (Max): 100mA
Voltage - Collector Emitter Breakdown (Max): 65V
Vce Saturation (Max) @ Ib, Ic: 650mV @ 5mA, 100mA
Current - Collector Cutoff (Max): 15nA (ICBO)
DC Current Gain (hFE) (Min) @ Ic, Vce: 200 @ 2mA, 5V
Power - Max: 250mW
Frequency - Transition: 250MHz
Operating Temperature: 150°C (TJ)
Mounting Type: Surface Mount
Package / Case: 6-VSSOP, SC-88, SOT-363
Supplier Device Package: PG-SOT363-6
Description

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The BCM846SH6327XTSA1 is an array of transistors, which can be classified under transistors - bipolar (BJT) - arrays. It provides excellent DC characteristics and superior microwave performance over a wide frequency range. The BCM846SH6327XTSA1 is typically used in applications such as 5G wireless communication, communications infrastructure, automotive, consumer, and industrial markets.

The BCM846SH6327XTSA1 is advertised as a “complete solution” providing higher levels of integration and reduced design cycles. It is known as an “Easy-to-Design” transistor in that it integrates six single transistors on a single package. This saves space and simplifies the design process when integrating multiple components.

The BCM846SH6327XTSA1 offers multiple advantages to the user. First, by having the six transistors on one package, the total package size is significantly reduced compared to what would be required if the same number of transistors were used on separate packages. This not only reduces board space but also allows for higher current and power handling capabilities.

Second, the package has been designed with input signals and output signals on separate sides of the device. This allows for easy placement and better signal isolation since the input signals are not connected directly with the output signals. The integrated single transistors are also better shielded from external noise.

Third, the integrated transistors have increased current carrying capabilities due to their larger surface area. This allows much higher levels of performance in applications where currents are very fast or intense. The lower resistance of these transistors also results in lower noise and better linearity.

Finally, the BCM846SH6327XTSA1 package has been designed with surface mount technology, which means that it can be easily placed on a PCB. This further increases its usability for multiple products since it can be place in a much smaller space than what is required for regular transistors.

The working principle of the BCM846SH6327XTSA1 array is relatively simple. Each of the six transistors is connected in a parallel configuration, with each transistor having its own input, collector and emitter. The collector pins of the transistors are connected to the package ground, while the emitter pins are connected to a single output terminal. When a voltage is applied to the input terminals, it causes the current passing through the transistor to increase, which in turn causes the output voltage to increase. This output voltage is then used to drive higher power circuits.

In summary, the BCM846SH6327XTSA1 array is designed for a number of different applications, from 5G wireless communication to communications infrastructure and automotive. Being a “complete solution”, it offers many advantages including reduced design cycles, higher current and power handling capabilities, better shielding from noise, and improved linearity. Its simple working principle involves six transistors connected in a parallel configuration, with the total output voltage being a function of the input voltages.

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

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