ADGM1004JCPZ-R2 Overview
The ADGM1004JCPZ-R2 is a high-performance monolithic photonic integrated circuit designed for optical switching applications. It integrates a low-loss Mach-Zehnder interferometer (MZI) switch with low drive voltage and high extinction ratio, making it ideal for data communication and optical signal routing. This device offers a compact footprint and low power consumption, enabling efficient integration in complex photonic systems. Manufacturers and engineers rely on its proven reliability and precise switching capabilities for advanced industrial and telecom environments. For detailed sourcing and technical support, visit IC Manufacturer.
ADGM1004JCPZ-R2 Technical Specifications
| Parameter | Specification |
|---|---|
| Switch Type | Mach-Zehnder Interferometer (MZI) |
| Operating Wavelength | 1260 nm to 1650 nm |
| Insertion Loss | ?? 1.0 dB |
| Extinction Ratio | ?? 20 dB |
| Drive Voltage (V??) | Approximately 5 V |
| Switching Speed | Up to 1 ??s |
| Package Type | J-Lead Ceramic Package |
| Operating Temperature Range | -40 ??C to +85 ??C |
| Fiber Type | Polarization Maintaining (PM) Fiber Compatible |
| Polarization Dependent Loss (PDL) | ?? 0.3 dB |
ADGM1004JCPZ-R2 Key Features
- Low insertion loss: Ensures minimal signal attenuation, improving overall system efficiency and signal integrity.
- High extinction ratio: Provides clear optical switching with minimal crosstalk, critical for precise data routing.
- Compact ceramic package: Facilitates easy integration into dense photonic modules and industrial equipment.
- Wide operating wavelength range: Supports diverse telecommunications and sensing applications across standard optical bands.
- Fast switching speed: Enables rapid optical signal modulation, suitable for dynamic network configurations.
- Low drive voltage: Reduces power consumption and simplifies driver electronics design.
- Robust temperature tolerance: Maintains performance across industrial temperature ranges, ensuring reliability.
ADGM1004JCPZ-R2 Advantages vs Typical Alternatives
This photonic switch offers a superior balance of low insertion loss and high extinction ratio compared to typical alternatives, reducing signal degradation and improving system accuracy. Its low drive voltage and fast switching capability enhance power efficiency and responsiveness. The robust ceramic packaging supports reliability in harsh industrial environments, making it an excellent choice for demanding optical networking and sensing applications.
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Typical Applications
- Optical signal routing in telecommunications networks, enabling flexible data path management and dynamic bandwidth allocation with low latency and high precision.
- Optical sensing systems requiring stable, low-loss switching for accurate environmental or structural monitoring.
- Data center interconnects where fast and reliable optical switching improves network scalability and reduces latency.
- Instrumentation and test equipment leveraging precise optical control for calibration and measurement tasks.
ADGM1004JCPZ-R2 Brand Info
The ADGM1004JCPZ-R2 is part of a family of photonic integrated circuits developed to meet stringent optical communication standards. Manufactured with precision ceramic packaging and advanced planar lightwave circuit technology, this product embodies reliability and performance in optical switching. It is well-supported by comprehensive technical data and quality assurance processes, making it a trusted component for engineers and sourcing specialists in the photonics and semiconductor industries.
FAQ
What is the typical insertion loss of the ADGM1004JCPZ-R2?
The insertion loss typically does not exceed 1.0 dB, ensuring low signal attenuation when the device is integrated into an optical system. This helps maintain high overall system performance and signal quality.
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What wavelength range does the switch support?
This device operates effectively across a broad wavelength range from 1260 nm to 1650 nm, covering the O, E, S, C, and L bands commonly used in telecommunications and sensing applications.
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