SY10EP33VKI Overview
The SY10EP33VKI is a high-speed, low-power differential line driver, designed for applications requiring reliable data transmission. With its advanced technology, it ensures minimal signal degradation while maintaining optimal power efficiency. This device is ideal for high-performance systems where precision and reliability are critical. Its robust features and compact design make it a preferred choice for engineers and sourcing specialists looking for dependable semiconductor solutions. For more information, visit Produttore di circuiti integrati.
SY10EP33VKI Key Features
- High-speed operation: Achieves data rates of up to 3.5 Gbps, enabling faster data transmission crucial for modern communication systems.
- Basso consumo energetico: Designed to operate at low voltages, promoting energy efficiency and reducing overall system power requirements.
- High signal integrity: Maintains excellent signal quality across long distances, essential for minimizing errors in high-frequency applications.
- Flexible packaging: Available in a compact package that simplifies integration into various circuit designs while saving valuable board space.
SY10EP33VKI Technical Specifications
Parametro | Valore |
---|---|
Tensione di alimentazione (Vcc) | 3.3V or 5.0V |
Intervallo di tensione in ingresso | -0.5V to Vcc + 0.5V |
Tensione di uscita | 2.0V (typical) |
Ritardo di propagazione | 1.5 ns (typical) |
Rise/Fall Time | 0.8 ns (typical) |
Dissipazione di potenza | 50 mW (max) |
Intervallo di temperatura operativa | Da -40 a +85 °C |
Tipo di confezione | TSSOP |
SY10EP33VKI Advantages vs Typical Alternatives
This device stands out against typical alternatives through its enhanced signal integrity and low power operation, making it a superior choice for high-speed data applications. Users benefit from its efficient design, which supports longer transmission distances without compromising performance or reliability.
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Applicazioni tipiche
- Data Communication Systems: Ideal for high-speed data transmission in networking equipment, ensuring reliable communication in enterprise environments and data centers.
- Telecomunicazioni: Perfect for use in telecom equipment, facilitating efficient data transfer with minimal signal loss.
- Elettronica di consumo: Can be utilized in various consumer devices that require high-speed data handling, enhancing user experience with faster processing.
- Automazione industriale: Suitable for applications in automation systems where robust and reliable signal transmission is critical for operational efficiency.
SY10EP33VKI Brand Info
The SY10EP33VKI is produced by a leading semiconductor manufacturer known for its commitment to innovation and quality in electronic components. This brand is recognized for developing high-performance solutions that meet the demanding requirements of modern electronic applications, making it a trusted name among engineers and industry specialists.
FAQ
What makes the SY10EP33VKI suitable for high-speed applications?
The SY10EP33VKI features a propagation delay of only 1.5 ns and a rise/fall time of 0.8 ns, making it exceptionally capable of handling high data rates up to 3.5 Gbps, ideal for applications that require quick data transfer.
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Can the SY10EP33VKI operate at different voltage levels?
Yes, this device can operate at supply voltages of either 3.3V or 5.0V, providing flexibility for integration into various systems that require different voltage levels.
What temperature range can the SY10EP33VKI operate in?
The SY10EP33VKI is designed to function effectively within a broad temperature range of -40??C to +85??C, making it suitable for industrial and automotive applications.
📩 Contattaci
Is the SY10EP33VKI energy-efficient?
Yes, with a maximum power dissipation of only 50 mW, the SY10EP33VKI is designed to be energy-efficient, helping to reduce overall power consumption in applications where it is deployed.
What packaging options are available for the SY10EP33VKI?
The SY10EP33VKI is offered in a TSSOP package, which provides a compact footprint, facilitating easier integration into circuit designs while conserving board space.