
Allicdata Part #: | 1727-6479-2-ND |
Manufacturer Part#: |
BSS138PS,115 |
Price: | $ 0.06 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Nexperia USA Inc. |
Short Description: | MOSFET 2N-CH 60V 0.32A 6TSSOP |
More Detail: | Mosfet Array 2 N-Channel (Dual) 60V 320mA 420mW Su... |
DataSheet: | ![]() |
Quantity: | 1000 |
3000 +: | $ 0.05622 |
Series: | Automotive, AEC-Q101, TrenchMOS™ |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
FET Type: | 2 N-Channel (Dual) |
FET Feature: | Logic Level Gate |
Drain to Source Voltage (Vdss): | 60V |
Current - Continuous Drain (Id) @ 25°C: | 320mA |
Rds On (Max) @ Id, Vgs: | 1.6 Ohm @ 300mA, 10V |
Vgs(th) (Max) @ Id: | 1.5V @ 250µA |
Gate Charge (Qg) (Max) @ Vgs: | 0.8nC @ 4.5V |
Input Capacitance (Ciss) (Max) @ Vds: | 50pF @ 10V |
Power - Max: | 420mW |
Operating Temperature: | 150°C (TJ) |
Mounting Type: | Surface Mount |
Package / Case: | 6-TSSOP, SC-88, SOT-363 |
Supplier Device Package: | 6-TSSOP |
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BSS138PS,115 Application Field and Working Principle
BSS138PS,115 is a type of transistor array, which is a device consists of multiple transistors. It is specifically made of dual N-ch non-volatile memory, a triple comparator, a timer, and an input-output flip-flop. The device has an SN65LVDS32E driver featured in it. This provides the transistor array with lower power, higher reliability and high-speed data rate. It is used in a wide range of applications, including mobile and embedded systems, audio systems, and logic circuits.
Field of Applications for BSS138PS,115
The BSS138PS,115 is used in a number of applications for its low power, high reliability and versatility. It is commonly used in mobile and embedded systems such as cell phones, tablets, and navigation systems. The dual N-ch non-volatile memory is especially versatile as it can hold information even when the power is disconnected. The triple comparator is extremely useful in audio systems, where an accurate and consistent sound level is necessary, while the timer increases the accuracy of these systems.
The BSS138PS,115 can be used in logic circuits to control, sense and measure. It can significantly improve the efficiency and accuracy of the circuit. The input-output flip-flop is used in providing multiplexing functions, which can register and decode information. The SN65LVDS32E driver increases the reliability of the system by providing high-speed data rate.
Working Principle of BSS138PS,115
The BSS138PS,115 uses an N-type transistor to create a larger, composite device. The N-type transistor receives a signal, positively or negatively, and then amplifies and inverts that signal to create the desired output. The dual N-ch non-volatile memory stores information that can be retrieved even when the device is turned off. The triple comparator compares two analog signals, typically from two potentiometers, and triggers an output when the comparison conditions are met.
The timer measures the time between inputs and can be used to control communication timing, pulse length, and other characteristics of the circuit. The input-output flip-flop stores information, such as the data stored in the flip-flop, and provides multiplexing functions. Finally, the SN65LVDS32E driver safely transfers digital data between the isolated supplies at the same time.
The working principle of the BSS138PS,115 is to receive and amplify an incoming signal. The device then processes the signal and provides an amplified output in the form of data, which is then stored in the non-volatile memory. The other components of the device can be used to measure, control and compare signals, allowing for more complex operations.
Conclusion
In conclusion, the BSS138PS,115 is a type of transistor array which comes with the features of dual N-ch non-volatile memory, triple comparator, timer and input-output flip-flop with the SN65LVDS32E driver. It is used in a wide range of applications, including mobile and embedded systems, audio systems, and logic circuits. The working principle of the BSS138PS,115 is to receive and amplify an incoming signal and then provide an output based on the processed signal.
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