Agilent Keysight N7762A Dual Channel Singlemode...
Agilent (Keysight/HP) 81570A Optical Attenuator
The JDSU HA107 is a Singlemode 9/125 µm optical attenuator. The JDS Uniphase Programmable Attenuator HA107 model has a wavelength range of 1520-1630 nm. It has an attenuation range of 30 dB and a resolution of 0.01 dB . This HA107+20ANC4 has no built-in option. The port type is 2.5 meters pigtails on back with NO connectors. However, we can install the connector of your choice on this HA107. JDSU HA107 attenuators can also be fitted with 10/90, 50/50, 2/98, 30/70 couplers or 1:2 switch. The H107 Series has a SCPI/HP8156A compatible command set and they can be controlled either from the front panel keypad or by GPIB (IEEE 488.2) and RS232 interfaces ..
The JDS (Viavi) HA107+20ANC4 Optical Attenuator is a high-precision optical component designed for superior control in singlemode fiber networks. With an attenuation range of 30 dB and fine resolution of 0.01 dB, it provides exceptional accuracy and stability for optical testing, research, and network maintenance. Its advanced design ensures low insertion loss and high return loss, making it an essential tool for professionals working with fiber optic systems.
| Specification | Details |
|---|---|
| Operating Wavelength Range | 1520 to 1630 nm |
| Fiber Type | 9/125 µm |
| Attenuation Range | 30 dB |
| Attenuation Resolution | 0.01 dB |
| Insertion Loss | <0.8 dB |
| Return Loss (Analog) | > 60 dB |
| Built-in Options | None |
| Port Type | Pigtails on back |
| Connector Type | No connector |
| Remote Interface | GPIB and RS232 |
The JDS (Viavi) HA107+20ANC4 Optical Attenuator is calibrated before shipping to meet OEM specifications. It includes a Calibration Certificate, a Calibration Label, and Calibration Data, ensuring immediate usability in precision applications.
Designed for professionals, this attenuator is perfect for laboratory experiments, fieldwork, and network diagnostics. Its combination of accuracy, low loss, and customization makes it a highly reliable choice for demanding optical environments.
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