S711E20E0VFUE3 Overview
The S711E20E0VFUE3 is a highly efficient semiconductor device designed for various industrial applications. It offers exceptional performance coupled with reliability, ensuring optimal operation in demanding environments. With its advanced features, this device is suitable for engineers and sourcing specialists looking to enhance system performance and integration in their designs. For more information, visit Fabricant de circuits intégrés.
S711E20E0VFUE3 Key Features
- High sensitivity levels that enable accurate measurements even in low signal environments, crucial for precision applications.
- Robust design for increased reliability, allowing for extended operational life and reduced maintenance costs in industrial settings.
- Low power consumption, which enhances energy efficiency and reduces overall operating costs for large-scale applications.
- Versatile compatibility with a wide range of systems, facilitating seamless integration and reducing development time for engineers.
S711E20E0VFUE3 Technical Specifications
Paramètres | Valeur |
---|---|
Tension d'alimentation | 3.3V |
Courant d'exploitation | 15mA |
Type de sortie | DIGITAL |
Plage de température | De -40°C à 85°C |
Dimensions | 5mm x 5mm |
Nombre de broches | 16 |
Interface | I2C |
Type d'emballage | QFN |
S711E20E0VFUE3 Advantages vs Typical Alternatives
This semiconductor device stands out against typical alternatives due to its superior sensitivity and accuracy, making it ideal for critical applications. Its low power consumption and robust design contribute to enhanced reliability, allowing for longer operational lifespans and reduced downtime.
🔥 Produits les plus vendus
TLC555 Timer IC - Texas Instruments Minuteur de précision en boîtier PDIP-8
Texas Instruments TL081 Low-Noise JFET-Input Op Amp - DIP-8 Package
Texas Instruments UC3842 Contrôleur PWM en mode courant - Boîtier DIP-8
Texas Instruments LM2937 Régulateur de tension en boîtier TO-220 - Linéaire à faible perte
Applications typiques
- Industrial automation systems where precise measurements and control are essential for optimal performance and safety in manufacturing processes.
- Environmental monitoring, providing accurate readings of various parameters to ensure compliance with regulatory standards.
- Smart home devices that require reliable sensors to enhance user experience and energy efficiency.
- Telecommunications equipment, facilitating seamless data transmission with minimal interference and errors.
S711E20E0VFUE3 Brand Info
The S711E20E0VFUE3 is backed by a reputable manufacturer known for delivering high-quality semiconductor solutions. This device reflects the brand’s commitment to innovation and excellence, ensuring that it meets the rigorous demands of today??s industrial applications.
FAQ
What is the operating temperature range for S711E20E0VFUE3?
The operating temperature range for this device is from -40??C to 85??C, making it suitable for various industrial environments.
🌟 Produits vedettes
"Acheter un comparateur de tension de précision MAX9312ECJ+ en boîtier DIP pour des performances fiables"
Modèle 0339-671-TLM-E - Boîtier TLM-E haute performance pour des fonctionnalités améliorées
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 the S711E20E0VFUE3 compare to other sensors?
This sensor boasts high sensitivity and low power consumption, giving it an edge over many competitors in terms of reliability and efficiency.
Can the S711E20E0VFUE3 be used in outdoor applications?
Yes, given its robust design and wide temperature range, it is suitable for outdoor applications where environmental factors may vary significantly.
📩 Nous contacter
What type of output does the S711E20E0VFUE3 provide?
The device offers a digital output, making it easy to integrate with various systems and ensuring straightforward data processing.
Is there a specific power supply requirement for the S711E20E0VFUE3?
This device operates on a supply voltage of 3.3V, which is typical for many modern semiconductor applications.