
Allicdata Part #: | MC100E164FN-ND |
Manufacturer Part#: |
MC100E164FN |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | ON Semiconductor |
Short Description: | IC MUX 16:1 5V ECL 28-PLCC |
More Detail: | Multiplexer 1 x 16:1 28-PLCC (11.51x11.51) |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | 100E |
Packaging: | Tube |
Part Status: | Obsolete |
Type: | Multiplexer |
Circuit: | 1 x 16:1 |
Independent Circuits: | 1 |
Current - Output High, Low: | -- |
Voltage Supply Source: | Dual Supply |
Voltage - Supply: | ±4.2 V ~ 5.7 V |
Operating Temperature: | 0°C ~ 85°C |
Mounting Type: | Surface Mount |
Package / Case: | 28-LCC (J-Lead) |
Supplier Device Package: | 28-PLCC (11.51x11.51) |
Base Part Number: | 100E164 |
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Logic - Signal Switches, Multiplexers and Decoders are a type of electronic components used in a variety of applications. The MC100E164FN is one such component that is used for signal switching and high speed multiplexing. This article will provide an overview of the application field and working principle of this component.
The MC100E164FN is a high-speed, low-power multiplexer/demultiplexer which is designed for signal switching and frequency synthesizing applications. With programmable timing and data rate, this component is suitable for applications such as video switching, high-speed multiplexing and digital signal processing. It provides a high-speed, low-power alternative to traditional multiplexing architectures, such as field programmable gate arrays (FPGA).
The MC100E164FN operates at speeds up to 1.5 GHz and can be programmed to switch between data rates of up to 64MHz. The component is capable of switching from one data rate to another without having to reprogram the component. The component is designed for low power operation, dissipating no more than 140mW. The component has a fully differential input/output pin structure which ensures very high signal integrity in applications with high data rates. The component also allows for a low-voltage operation of 1.8 to 3.3V, further reducing its power consumption.
The component contains two independent 4-bit multiplexers/demultiplexers, each having four single-ended outputs and two differential inputs. The component can be programmed to switch between the two different data rates or can switch between data rates while continuously eliminating data rates within the same range. The component also offers a range of power-saving modes, including a programmable low-power mode which can be used to reduce power consumption for certain data rates.
In terms of its working principle, the MC100E164FN is designed to switch between data rates using an asynchronous control signal. The component contains two 4-bit multiplexers/demultiplexers, each having two differential inputs and four single-ended outputs. Once the control signal is activated, the component will switch between the two different data rates, enabling it to switch between data rates without having to reprogram it. The component also offers a range of power-saving modes, such as low-power mode, allowing it to reduce power consumption for certain data rates.
The MC100E164FN is suitable for a wide range of applications, including but not limited to video switching, high-speed multiplexing, and digital signal processing. By combining the component’s high data rate and low power consumption, designers can create low-power and high-performance system solutions. The component is also suitable for applications requiring high signal integrity, due to its fully differential input/output pin structure. The component also offers a range of power-saving modes, giving designers greater flexibility when designing their system.
In conclusion, the MC100E164FN is a high-speed, low-power multiplexer/demultiplexer which is suitable for applications requiring a high data rate and low power consumption. The component is designed for applications such as video switching, high-speed multiplexing, and digital signal processing, and offers a range of power-saving modes and fully differential input/output pin structure. By combining the component\'s high data rate and low power consumption, designers can create low-power and high-performance system solutions.
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