MAX3395EETC+ Level Translator IC, 5V-3.3V, 16-TSSOP Package

  • MAX3395EETC+ provides robust signal level shifting for reliable communication in mixed-voltage systems.
  • Supports multiple voltage levels, ensuring compatibility between various devices in your design.
  • Compact package design saves board space, allowing for more efficient layouts in tight spaces.
  • Ideal for interfacing different GPIOs in embedded systems, enhancing functionality and device integration.
  • Designed for high reliability with consistent performance across various environmental conditions.
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MAX3395EETC+ Overview

The MAX3395EETC+ is a high-performance, low-power level shifter designed for reliable communication between different voltage systems. With a versatile design, it supports a wide range of applications in industrial and consumer electronics. This device provides seamless integration and superior reliability, making it an ideal choice for engineers looking to enhance their designs. Visit IC Manufacturer for more details.

MAX3395EETC+ Key Features

  • Voltage Level Shifting: Enables communication between devices operating at different voltage levels, enhancing design flexibility.
  • Low Power Consumption: Designed for power efficiency, which helps reduce energy costs in battery-operated applications.
  • Wide Operating Voltage Range: Supports a broad voltage range, allowing for integration in various systems without additional components.
  • High Data Rate Capability: Facilitates fast signal transmission, making it suitable for high-speed applications requiring quick response times.

MAX3395EETC+ Technical Specifications

ParameterValue
Supply Voltage Range1.65V to 5.5V
Input Voltage Levels0 to VCC
Output Voltage Levels0 to VCC
Data RateUp to 1 Mbps
Operating Temperature Range-40??C to +85??C
Power Supply Current1 ??A (typical)
Package Type16-TQFN (3mm x 3mm)
Number of Channels4

MAX3395EETC+ Advantages vs Typical Alternatives

The MAX3395EETC+ offers significant advantages over typical alternatives, such as enhanced sensitivity and accuracy in voltage level shifting. Its low power consumption and high-speed data capabilities make it an efficient choice for various applications, providing reliable performance without compromising on integration simplicity.

Typical Applications

  • Microcontroller Communication: Ideal for interfacing different microcontrollers operating at varying voltage levels, ensuring seamless data transfer and system compatibility.
  • Level Shifting for Sensors: Enables accurate data communication from sensors operating at different voltage levels to the main processing unit.
  • IoT Devices: Facilitates reliable communication in Internet of Things applications where devices may operate at different voltages.
  • Consumer Electronics: Commonly used in consumer devices needing smooth integration between components with varying power requirements.

MAX3395EETC+ Brand Info

The MAX3395EETC+ is produced by a leading manufacturer in the semiconductor industry, known for delivering high-quality electronic components. This product exemplifies the brand’s commitment to innovation, reliability, and performance, making it a trusted choice among engineers and design specialists.

FAQ

What is the primary function of the MAX3395EETC+?

The primary function of the device is to facilitate voltage level shifting between different voltage systems, allowing for reliable communication in mixed-voltage environments.

What voltage levels can the MAX3395EETC+ support?

This device can support a wide range of voltage levels from 1.65V to 5.5V, making it versatile for various applications.

How fast can the MAX3395EETC+ transmit data?

The MAX3395EETC+ can handle data rates of up to 1 Mbps, ensuring quick and efficient signal transmission for high-speed applications.

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What are the environmental specifications for this part?

The device operates within a temperature range of -40??C to +85??C, making it suitable for a variety of environmental conditions.

What package type is the MAX3395EETC+ available in?

The MAX3395EETC+ comes in a 16-TQFN package, which is compact and offers efficient space utilization in circuit designs.

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