Allicdata Part #: | DPPSL3-ND |
Manufacturer Part#: |
DPPSL3 |
Price: | $ 22.41 |
Product Category: | Uncategorized |
Manufacturer: | 3M |
Short Description: | DPPSL3 MICROWYND LF CTG 29.25" 5 |
More Detail: | N/A |
DataSheet: | DPPSL3 Datasheet/PDF |
Quantity: | 1000 |
15 +: | $ 20.37630 |
Specifications
Series: | * |
Part Status: | Active |
Description
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Introduction
The DPPSL3 is a type of semiconductor structure, referred to as a double-gate p-type Shottky-Laminate (DPPSL) structure, which plays an important role in signal processing. This technology is mainly used in devices where noise-tolerant performance is required, such as image sensors and optical communication systems.DPPSL3 Application field
The DPPSL3 structure is mainly used in devices such as image sensors and optical communication systems where noise-tolerant performance is required. Image sensors such as CMOS image sensors (CIS) are widely used in consumer electronics, including mobile phones, digital cameras, and video cameras. The DPPSL3 structure is used to reduce the noise associated with correlation double sampling (CDS) operation that occurs in such CISs. This reduces the overall number of erroneous signals, improving image quality in devices utilizing the structure.Optical communication systems are often used for transmitting data over an optical fiber in a variety of applications. The DPPSL3 structure is also used in such systems to reduce the noise associated with polarization mode dispersion (PMD), improving data transmission.The DPPSL3 structure is also used in other applications, such as radio-frequency identification (RFID), automatic teller machines (ATMs), and DSL-modem systems.Working Principle of DPPSL3
The working principle of the DPPSL3 structure is based on the use of two gates to reduce noise levels. When a signal passes through the first gate, the noise level is reduced. The second gate then further reduces the noise. The two gates used in the DPPSL3 structure can be connected in either series or parallel, depending on the application. When connected in series, the two gates work together to reduce the noise level even further. When connected in parallel, the two gates have different functions, allowing for more flexibility in noise reduction.The DPPSL3 structure also reduces the capacitance of the device, leading to increased device speed. The device also increases the output signal speed due to the improved power-to-noise ratio.Conclusion
The DPPSL3 is a semiconductor structure used in image sensors, optical communication systems, RFID, automatic teller machines, and DSL-modem systems. It reduces the noise associated with correlation double sampling and polarization mode dispersion, allowing for better signal processing in such devices. The two gates in the structure are connected in either series or parallel, depending on the application, resulting in even lower noise levels and improved device speed.The specific data is subject to PDF, and the above content is for reference
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