Turner Designs C3 Analog Output Adapter

The Analog Output Adapter allows users to convert the standard digital output from the C3 to a 0 - 5 VDC analog signal.

Features

  • Converts the signal from 1, 2, or 3 channels installed on a C3
  • Designed to connect directly to the C3
  • 2300-603 battery bracket holds adapter in place
List Price $$$$$
Your Price Check Price
Stock Check Availability  

The Analog Output Adapter allows users to convert the standard digital output from the C3 to a 0 - 5 VDC analog signal. The Adapter can convert the signal from 1, 2, or 3 channels installed on a C3. The voltage output is proportional to the fluorescence intensity measured by the sensors. Modeled after the C3 Submersible Fluorometer’s battery pack, the Analog Adapter is designed to connect directly to the C3. The C3 Battery Bracket is required to hold the Analog Adapter in place and secure it, preventing any break in communication or power. With the Analog Output Adapter users can integrate their C3 Submersible Fluorometers into any CTD or multi-parameter platform that will accept a 0 – 5 volt output signal.

Questions & Answers
No Questions
Please, mind that only logged in users can submit questions

Select Options

  Products 0 Item Selected
Image
Part #
Description
Price
Stock
Quantity
Turner Designs C3 Analog Output Adapter
2300-480
C3 analog output adapter, requires 2300-603 battery bracket
Check Price
Check Availability  
  Accessories 0 Item Selected
Notice: At least 1 product is not available to purchase online
×
Multiple Products

have been added to your cart

There are items in your cart.

Cart Subtotal: $xxx.xx

Go to Checkout

In The News

Applied Research and Innovative Solutions: Creating CHNGES at Western Kentucky University

Long-standing environmental monitoring programs have the power to support a large number of research initiatives and policy changes—however, actually starting these networks can prove challenging. Not only is starting the program difficult, but keeping things operational for decades to come has also been challenging for environmental professionals hoping to make an impact with applied research. Jason Polk, Professor of Environmental Geoscience and Director of the Center for Human GeoEnvironmental Studies (CHNGES) at Western Kentucky University, is all too familiar with this process.

Read More

Combating Water Insecurity in Saskatchewan with Real-Time Data

The prairies of Saskatchewan can be described as one of the least water-secure parts of Canada, making water quality monitoring essential for informed resource management in a region already facing water insecurity. While natural physical properties worsen some of the poor water quality conditions in the region, others are connected to land use. Having grown up spending summers on the shores of Lake Huron, Helen Baulch, an associate professor at the School of Environment and Sustainability at the University of Saskatchewan , has always been dedicated to the protection of water resources. Looking back fondly at her childhood playing along the shore, Baulch also recalls the invasion of quagga mussels during her teenage years and watching the lake change as a result.

Read More

Seametrics Turbo Turbidity Logger: Boost your Turbidity Monitoring

The Seametrics Turbo Turbidity Logger is a self-cleaning turbidity sensor capable of internally logging over 260,000 data records. The sensor enables researchers, compliance officers, and contractors to monitor turbidity in various applications, from construction and dredging sites to wastewater effluent.  Due to its narrow width, this device can be deployed in a range of areas, from small well spaces to rivers and streams. The stainless steel housing and built-in wiper allow the sensor to withstand long-term deployments and reduce the need for maintenance trips.  The logger accurately records temperature and turbidity up to a depth of 50 meters.

Read More