Description
The M6-12.5-PY is an advanced integrating sphere detector designed for accurate laser energy measurements up to 20 mJ. Ideal for high-repetition rate applications, this detector can capture pulse-to-pulse data at frequencies up to 200 kHz without any sampling. It features a pyroelectric absorber that ensures precise energy readings across a broad spectral range of 0.35 - 2.5 μm. With the ability to store up to 4 million pulses (40 seconds of data at 100 kHz), users can track missed pulses and those below the energy threshold, providing complete data for analysis.
Equipped with full-speed USB 2.0 for high data rate transfer, the M6-12.5-PY also includes user-friendly software with diagnostic features like live mode, FFT display, and life test mode for automating laser testing. The detector offers high repeatability (±1%) and is compatible with several heads, including silicon, InGaAs, and pyroelectric variants, making it versatile for various applications. The M6-12.5-PY is also compatible with the STAND-D-233 for secure installation.
Gentec-EO M6-12.5-PY Integrating Sphere Detector
Specifications
Max Measurable Energy: | 200 mJ |
---|---|
Max Repetition Rate: | 200000 Hz |
Effective Aperture: | 12.5 mm |
Spectral Range: | 0.35 – 2.5 um |
Maximum Measurable Energy: | 20 mJ |
Noise Equivalent Energy: | 0.5 μJ |
Maximum Pulse Width: | 100 ns |
Energy Calibration Uncertainty: | ±4 % |
Maximum Power: | 25 W |
Absorber: | Pyroelectric |
Dimensions: | 76H x 111W x 76D mm |
Typical Rise Time: | 150 ns |
Energy Calibration Uncertainty: | ±4 % |
Maximum Power: | 25 W |
Features
- Broad Spectral Range: Covers wavelengths from 0.35 to 2.5 μm, ensuring versatility for different laser sources
- Fast Response Time: With a typical rise time of 150 ns, it captures rapid laser pulses with precision
- High Repeatability: Provides ±1% repeatability for consistent and dependable measurements
- High Repetition Frequency: Suitable for applications with a maximum repetition frequency of up to 200,000 Hz
- Accurate Calibration: Energy calibration uncertainty of ±4% ensures measurement accuracy
- Low Noise: Noise equivalent energy of 0.5 μJ allows for precise detection of low-energy laser pulses
Applications
- Laser Energy Measurement: Ideal for accurately measuring laser energy output in a wide spectral range
- Pulse Energy Analysis: Well-suited for capturing and analyzing pulse energies, ensuring laser system performance
- High-Frequency Applications: Capable of handling high-repetition-frequency laser systems
Frequently Asked Questions
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