MAX3394EEBL+T Overview
The MAX3394EEBL+T is a high-performance device designed for reliable signal communication in various industrial applications. This integrated circuit excels in level shifting and features robust ESD protection, ensuring durability in demanding environments. Its compact package and low power consumption make it an ideal choice for engineers seeking efficiency and reliability in their designs. For more details, visit IC-fabrikant.
MAX3394EEBL+T Key Features
- High ESD Protection: This device offers robust electrostatic discharge protection, which enhances the reliability of electronic systems in noisy environments.
- Laag stroomverbruik: Operating with minimal energy requirements, it contributes to the overall efficiency of battery-operated and low-power devices.
- Compact Package Size: The small form factor allows for easier integration into space-constrained applications, promoting design flexibility.
- Wide Voltage Range: Its capability to operate across a broad voltage range ensures compatibility with various digital logic levels, enhancing versatility in applications.
MAX3394EEBL+T Technical Specifications
Parameter | Waarde |
---|---|
Supply Voltage (V) | 1,8 tot 5,5 |
Input Voltage Range (V) | -0.3 to 6.5 |
Output Voltage Swing (V) | 0 to Vcc |
ESD Protection (kV) | ??15 |
Power Supply Current (??A) | 1 |
Propagation Delay (ns) | 20 |
Operating Temperature (??C) | -40 to +85 |
Type verpakking | 8-Pin TDFN |
MAX3394EEBL+T Advantages vs Typical Alternatives
This device stands out against typical alternatives due to its exceptional ESD protection and low power consumption. These features not only enhance reliability but also allow for seamless integration in various applications, promoting overall system performance and longevity.
Best verkochte producten
Typische toepassingen
- Data Communication: The MAX3394EEBL+T is ideal for interfacing different logic levels in data communication systems, ensuring accurate signal transmission between devices.
- Industriële automatisering: Its robust design makes it suitable for various industrial automation tasks, where reliability and efficiency are paramount.
- Consumentenelektronica: The low power consumption is beneficial for battery-operated consumer devices, extending their operational life.
- Automotive Systems: This device can also be utilized in automotive applications, providing reliable performance in harsh conditions.
MAX3394EEBL+T Brand Info
The MAX3394EEBL+T is a product from a leading manufacturer known for its innovative semiconductor solutions. This brand focuses on delivering high-quality, reliable electronic components designed to meet the evolving needs of various industries, including automotive, industrial, and consumer electronics.
FAQ
What is the maximum supply voltage for the MAX3394EEBL+T?
The maximum supply voltage for this device is 5.5V, allowing it to operate effectively across a range of applications.
Uitgelichte producten
"Koop MAX9312ECJ+ Precisie-spanningsvergelijker in DIP-pakket voor betrouwbare prestaties"
0339-671-TLM-E Model - TLM-E pakket met hoge prestaties voor verbeterde functionaliteit
1-1415898-4 Connector Housing, Electrical Wire-to-Board, Receptacle, Packaged
1-1462039-7 Electrical Connector, PCB Mount, Through-Hole, 2-Pin Header Socket
How does ESD protection benefit the MAX3394EEBL+T?
The ESD protection enhances the durability of the device, safeguarding it against voltage spikes that can occur in industrial environments, thereby ensuring long-term reliability.
Can the MAX3394EEBL+T be used in battery-powered devices?
Yes, its low power consumption makes it highly suitable for battery-powered applications, helping to extend the operational life of such devices.
Contact
What is the temperature range for the MAX3394EEBL+T?
The device operates effectively within a temperature range of -40??C to +85??C, making it versatile for various environmental conditions.
What package type does the MAX3394EEBL+T come in?
This product is available in an 8-Pin TDFN package, which supports compact designs and facilitates easier integration into electronic systems.