74ALVT16827DGGS Overview
The 74ALVT16827DGGS is a high-performance bus switch designed for reliable digital signal routing. It enables seamless communication between multiple components in complex electronic systems, ensuring minimal signal degradation and low power consumption. Its robust architecture supports high-speed operations while maintaining signal integrity, making it ideal for applications in telecommunications, data communication, and other industrial sectors. For engineers and sourcing specialists, this device represents a reliable choice for enhancing circuit efficiency and performance in demanding environments. For more information, visit Fabricant de circuits intégrés.
74ALVT16827DGGS Key Features
- Fonctionnement à grande vitesse: The device supports fast switching times, enabling quick data transmission and reducing latency in signal processing.
- Faible consommation d'énergie: Designed to operate efficiently, this device minimizes energy usage, which is crucial in battery-operated and energy-sensitive applications.
- Signal integrity: The architecture ensures that signals remain stable and reliable, reducing the risk of data corruption in high-frequency environments.
- Wide voltage range: The device accommodates various voltage levels, making it versatile for different circuit designs.
74ALVT16827DGGS Technical Specifications
Paramètres | Valeur |
---|---|
Tension d'alimentation (Vcc) | 2,5V à 3,6V |
Input Voltage (Vin) | -0.5V to Vcc + 0.5V |
Output Voltage (Vout) | -0.5V to Vcc + 0.5V |
Plage de température de fonctionnement | De -40°C à +85°C |
Délai de propagation | 3.5ns (typical) |
On-Resistance (Ron) | 5?? (typical) |
Channel Count | 16 |
Dissipation de puissance | 0.5W (max) |
74ALVT16827DGGS Advantages vs Typical Alternatives
This device offers significant advantages over typical alternatives, including superior intégrité du signal et lower power consumption. Its high-speed switching capabilities enable efficient data handling in complex applications, while its robust design enhances reliability under various operating conditions.
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Applications typiques
- High-speed data communication systems benefit from the device’s quick switching and low latency, ensuring efficient data transfer in networking hardware.
- Telecommunications equipment utilizes the device to maintain signal integrity across multiple channels, reducing the risk of data loss.
- Industrial automation systems leverage the low power consumption for energy-efficient operation in demanding environments.
- Consumer electronics applications, such as smartphones and tablets, rely on this device for reliable signal routing in compact designs.
74ALVT16827DGGS Brand Info
The 74ALVT16827DGGS is produced by a leading semiconductor manufacturer known for its commitment to quality and innovation in the electronics sector. This brand has established a reputation for delivering reliable and cutting-edge solutions that meet the evolving needs of engineers and industries worldwide.
FAQ
What is the maximum operating voltage for the 74ALVT16827DGGS?
The maximum operating voltage for this device is 3.6V, ensuring compatibility with various digital logic levels in typical circuit designs.
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What applications are suitable for the 74ALVT16827DGGS?
This device is ideal for high-speed data communication, telecommunications, industrial automation, and consumer electronics, providing versatile performance across multiple sectors.
How does the low power consumption benefit users?
Low power consumption is crucial for battery-operated devices, extending battery life and reducing heat generation, which enhances overall system reliability and longevity.
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Can the 74ALVT16827DGGS be used in harsh environments?
Yes, with an operating temperature range of -40??C to +85??C, this device is well-suited for harsh conditions, making it reliable for industrial applications.
What is the typical propagation delay for the 74ALVT16827DGGS?
The typical propagation delay for this device is 3.5ns, allowing for quick signal transitions, which is essential for high-speed data processing.