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Categories | Optical Power Meter |
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Brand Name: | YOUCii |
Model Number: | U8728C |
Place of Origin: | CHINA |
MOQ: | 1pcs |
Price: | negotiate a price |
Payment Terms: | L/C,D/A,D/P,Western Union,T/T,MoneyGram |
Supply Ability: | 20 pcs+per month |
Delivery Time: | 20 work days |
Packaging Details: | Carton |
Fiber Type: | SMFiber |
Weight: | 3Kg |
Communication Interface: | RS232 / USB / LAN |
Warranty: | one year |
Measuring Range: | -75~+5dBm |
Probe Type: | InGaAs |
Supply Voltage: | 100~240V |
Company Info. |
Guangzhou UC Instruments., Co. Ltd. |
Verified Supplier |
View Contact Details |
Product List |
The Rapid Scanning Optical Power Meter Has A Sampling Rate Of 100K
The 8-channel rapid scanning optical power meter is an instrument capable of simultaneously and rapidly measuring the power of 8 optical channels. It features high-speed measurement, data processing and other functions, and is widely used in fields such as optical fiber communication and optical device testing.
U8724/8 technical specification:
Model # | U8724/8A | U8724/8B | U8724/8C |
Sensor Element | InGaAs | ||
Wavelength Range | 850 ~ 1700 nm | ||
Calibration Wavelength | 850/980/1310/1490/1550/1610 nm | 1510~1625 nm Continuous calibration | |
Power Range | +10 ~ -65dBm | +25~-55dBm | +5~-75dBm |
Sampling period | 100us (10KHz) | 10 us (100KHz) | |
Application Fiber Type | Standard SM and MM up to 62.5 um core size | ||
Uncertainty (accuracy) | ± 4% (1200 nm ~ 1610 nm) | ||
Relative Uncertainty (accuracy) | < 0.02 dB Typical | ||
Linearity (power) | ≤ ± 0.06 dB (1200 nm ~ 1610 nm, 0~ -60dBm) | ||
Return Loss | >40 dB | ||
Communication Interface | RS232, USB,Control by PC | ||
Operation Temperature | 0 ~ +40℃ | ||
Storage Temperature | -30 ~ +80℃ | ||
Recalibration Period | 2 years | ||
Dimensions | 235 mm W, 55mm H, 320 mm D | ||
Weight | 3.0 kg |
The 8-channel fast scanning optical power meter significantly enhances the testing efficiency of optical communication devices through multi-port parallel testing, high-speed sampling and dynamic range optimization, and is particularly suitable for scenarios such as high-density wavelength division multiplexing (DWDM) and optical splitters (PLC).
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