ADGM1002BCCZ-RL7 Overview
The ADGM1002BCCZ-RL7 is a high-performance photonic integrated circuit designed for advanced optical switching and modulation applications. This dual Mach-Zehnder modulator driver offers excellent bandwidth and linearity, making it ideal for high-speed optical communication systems. Featuring a compact 24-pin LFCSP package, it supports precise signal control with low power consumption and high reliability. Engineers and sourcing specialists will find this component well-suited for integration into complex photonic networks, enhancing system performance and efficiency. For more information, visit Produttore di circuiti integrati.
ADGM1002BCCZ-RL7 Technical Specifications
Parametro | Specifiche |
---|---|
Tipo di confezione | 24-Lead LFCSP |
Tensione di esercizio | 5 V |
Larghezza di banda | Up to 40 GHz |
Tipo di segnale di ingresso | Differential |
Output Signal Type | Push-Pull |
Corrente di alimentazione | 85 mA (typical) |
Intervallo di temperatura operativa | Da -40 a +85 °C |
Rise/Fall Time | 12 ps (typical) |
Impedenza di ingresso | 50 ?? |
Modulation Type | Mach-Zehnder Modulator Driver |
ADGM1002BCCZ-RL7 Key Features
- High bandwidth operation: Supports data rates up to 40 GHz, enabling ultra-fast modulation for next-generation optical communication systems.
- Basso consumo energetico: Operates with a typical supply current of 85 mA, reducing thermal management needs and improving overall system efficiency.
- Differential input with push-pull output: Ensures signal integrity and linearity, critical for minimizing distortion in high-speed optical modulation.
- Compact LFCSP package: Facilitates easy integration into densely packed photonic circuits and reduces PCB footprint.
- Ampio intervallo di temperatura operativa: Suitable for industrial environments from -40??C to +85??C, ensuring reliable performance in harsh conditions.
- Fast rise and fall times: 12 ps typical switching speeds enable precise optical signal shaping and modulation.
- Impedance matching: 50 ?? input impedance supports seamless interface with standard RF and microwave equipment.
ADGM1002BCCZ-RL7 Advantages vs Typical Alternatives
This modulator driver offers superior high-frequency bandwidth and low power consumption compared to typical alternatives. Its differential input and push-pull output architecture enhance signal linearity and reduce distortion, while the compact LFCSP package supports advanced integration. The wide temperature range and fast switching speeds make it especially reliable for demanding photonic applications, providing engineers with a robust solution for high-speed optical modulation challenges.
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Applicazioni tipiche
- High-speed optical communication systems requiring precise Mach-Zehnder modulator control to achieve data rates up to 40 GHz, ensuring efficient and reliable signal transmission.
- Photonic integrated circuits where compact, low-power modulator drivers are essential for dense packaging and thermal management.
- Industrial data centers using advanced optical networking equipment for high-bandwidth data transfer and low latency.
- Research and development setups focused on next-generation modulation schemes, benefiting from fast rise/fall times and linear signal amplification.
ADGM1002BCCZ-RL7 Brand Info
The ADGM1002BCCZ-RL7 is part of a specialized portfolio of photonic integrated circuits tailored for high-frequency optical modulation applications. Engineered with precision and reliability, this device exemplifies the brand??s commitment to cutting-edge technology in the photonics sector. Its design emphasizes performance, integration ease, and operational stability, making it a preferred choice for system designers aiming to enhance optical communication infrastructures with innovative semiconductor solutions.
FAQ
What is the maximum operating bandwidth of this photonic modulator driver?
The device supports bandwidths up to 40 GHz, enabling modulation at very high data rates suitable for advanced optical communication systems.
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What type of input and output signals does it support?
It features differential input signals and push-pull output signals,