Ideal for RF modulation applications requiring high S/N! It allows for external monitoring of operating conditions.
The "LN-SD24-E01" is a Quad Lock LN bias board designed for equipment integration. It is compatible with LN modules from various manufacturers, including EOspace, and outputs a maximum DC bias voltage of ±15V. Additionally, since it is designed for equipment integration, it can be used immediately by simply connecting the power supply. The output noise of the DC bias voltage is ultra-low, with less than 3μV/√Hz up to 10kHz and less than 20nV/√Hz above 100kHz, making it suitable for RF modulation applications that require high S/N. 【Features】 ■ Compatible with various LN modules ■ Designed for equipment integration ■ ±15V DC bias output ■ Ultra-low noise ■ Built-in PD *For more details, please refer to the PDF document or feel free to contact us.
Inquire About This Product
basic information
【Other Features】 ■ Manual operation ■ Automatic operation ■ Auto-tuning function ■ Monitor output for PD current and DC bias voltage ■ ±24V power supply *For more details, please refer to the PDF document or feel free to contact us.
Price range
Delivery Time
Applications/Examples of results
【Application】 ■Communication Infrastructure ■Inspection Equipment ■Observation Equipment ■Defense Equipment ■Various Research Purposes *For more details, please refer to the PDF document or feel free to contact us.
catalog(1)
Download All CatalogsCompany information
Remuf Craft Co., Ltd. is a manufacturer of embedded laser boards. With the evolution of digital technology, more advanced analog techniques are required because all physical quantities in the natural world are analog. The electronic technologies required for laser control include RF technology reaching GHz, noise technologies that achieve high S/N, high dynamic range circuits, discrete circuits, ultra-low drift DC technology, digital signal processing technology, and power electronics technology, all of which are needed seamlessly. Remuf Craft has a proven track record in these areas.