Allicdata Part #: | MCZ33904D3EK-ND |
Manufacturer Part#: |
MCZ33904D3EK |
Price: | $ 3.16 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | NXP USA Inc |
Short Description: | SYSTEM BASIS CHIP 2X 3.3 V/400M |
More Detail: | System Basis Chip Interface |
DataSheet: | MCZ33904D3EK Datasheet/PDF |
Quantity: | 1000 |
42 +: | $ 2.86335 |
Series: | -- |
Part Status: | Active |
Applications: | System Basis Chip |
Interface: | CAN |
Voltage - Supply: | 5.5 V ~ 28 V |
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The MCZ33904D3EK is an integrated circuit designed for use in industrial, automotive and telecom applications, as well as other applications requiring reliable digital interface performance. The integrated circuit, developed by Littelfuse, Inc., offers substantial performance improvements over competitive devices. This monolithic device integrates a variety of functions, including the ability to operate in multiple operating modes and the incorporation of various voltage and temperature compensation mechanisms, into a single package. This article will discuss the application field and working principle of the MCZ33904D3EK.
The MCZ33904D3EK is an integrated circuit that helps to provide reliable digital performance in a range of applications. This device offers a variety of features, including multi-mode operation and temperature and voltage compensation, that make it suitable for applications involving a variety of challenging conditions. For example, the device can be used in automotive application involving extreme voltage, temperature or shock-induced conditions. Moreover, the device is suitable for industrial and telecom applications, since it will provide reliable performance under extreme operating conditions.
In terms of its functionality, the MCZ33904D3EK is designed to provide digital interface performance. This is achieved through the device\'s ability to operate in multiple modes. Specifically, this device is able to operate in either single-ended or differential mode, providing the flexibility to handle a range of digital interfaces. Moreover, the device offers a variety of integrated protection features, including over-current and electrostatic discharge protection, thereby ensuring its suitability for a range of applications.
In terms of its working principle, the MCZ33904D3EK operates based on the LED pulse width modulation (PWM) technique. This device employs an LED-based detection system to detect the transitions in the digital signal and convert them into PWM signals. The PWM signals are then used to switch the state of the device, allowing it to either drive or receive data. This technique is highly reliable and ensures the device will provide well-balanced output performance, even under challenging conditions.
Furthermore, the device also incorporates various temperature and voltage compensation mechanisms. This ensures that the device can operate in a wide range of environmental conditions and still provide reliable performance. Its temperature compensation feature ensures that the device will respond accurately to changes in temperature, allowing it to make appropriate adjustments to ensure reliable operation. In addition, its voltage compensation feature is capable of responding to changes in the voltage supply, ensuring the device will remain responsive, even when voltage fluctuations out of the device\'s operating range occur.
In summary, the MCZ33904D3EK is an integrated circuit designed for use in industrial, automotive and telecom applications, as well as other applications requiring reliable digital interface performance. This device offers a range of features, including multi-mode operation and temperature and voltage compensation, that make it suitable for a variety of challenging conditions. It operates on the LED pulse width modulation (PWM) technique, which is highly reliable and ensures the device will provide well-balanced output performance, even under challenging conditions. Additionally, the device also incorporates various temperature and voltage compensation mechanisms, ensuring it can operate in a wide range of environmental conditions and still provide reliable performance.
The specific data is subject to PDF, and the above content is for reference
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