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KFDO310 Online Fluorescence Dissolved Oxygen Sensor no electrolytes no polarization no need to consume oxygen

KFDO310 Online Fluorescence Dissolved Oxygen Sensor no electrolytes no polarization no need to consume oxygen

Place of Origin:

CHINA

Nama merek:

kacise

Sertifikasi:

CE

Model Number:

KFDO310

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Rincian produk
Measuring principle:
fluorescence
Range:
0ー20 mg/L (0ー200% saturation, 25 °C)
Resolution:
0.01 mg/l, 0.1 °C
Precision:
± 2% f.s. , ± 0.5 °C
Temperature compensation:
Automatic temperature compensation (PT1000)
Output mode:
RS-485 bus, Modbus-RTU protocol
Syarat Pembayaran & Pengiriman
Minimum Order Quantity
0-100
Harga
$0-$2000
Packaging Details
Common package or custom package
Delivery Time
3-10days
Payment Terms
L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability
100
Deskripsi Produk

1.Principle

 

KFDO310 integrated on-line fluorescence dissolved oxygen sensor is designed and made based on the quenching principle of excited fluorescence of specific substances in physics. The blue light from the light-emitting diode illuminates the fluorescent material on the inner surface of the fluorescent cap. The fluorescent material on the inner surface is excited and emits red light. By detecting the phase difference between the red light and the blue light, and comparing it with the internal calibration value, the concentration of oxygen molecule can be calculated, and the final value can be output by temperature automatic compensation.

 

2.Feature

 

  • No electrolytes, no polarization
  • No need to consume oxygen, not affected by the flow rate
  • Built-in temperature sensor, automatic temperature compensation
  • Free from chemicals like sulfides
  • Small drift, fast response, more accurate measurement
  • Maintenance-free, long service life, lower use cost
  • Fluorescent caps are easy to replace
  • RS-485 interface, Modbus-RTU protocol

 

3.Technical Specifications

 

Model number KFDO310
Measuring principle fluorescence
Range 0ー20 mg/L (0ー200% saturation, 25 °C)
Resolution 0.01 mg/l, 0.1 °C
Precision ± 2% f.s. , ± 0.5 °C
Temperature compensation Automatic temperature compensation (PT1000)
Output mode RS-485 bus, Modbus-RTU protocol
Working conditions 0ー45 °C, < 0.2 mpa
Storage temperature - 5 ~ 65 °C
Installation mode Immersion mounting
Cable length 5 meters, other length can be customized
Power consumption < 0.05 W
Power supply 12 ~ 24 VDC ± 10%
Protection level IP68
Calibration Two-point calibration
Fluorescent cap life Guaranteed Use for one year (under normal use)
Material for sensor housing Pom and 316L stainless steel
 

4.Dimensional Drawing

 

KFDO310 Online Fluorescence Dissolved Oxygen Sensor no electrolytes no polarization no need to consume oxygen 0

 

 

 

 

5.Installation and Electrical Connection

Installs

KFDO310 Online Fluorescence Dissolved Oxygen Sensor no electrolytes no polarization no need to consume oxygen 1

The temperature sensing part should be immersed below the liquid surface to avoid collision with the film head surface. The head part of the membrane should be free from sediment.

 

Tips:

 

Dissolved Oxygen and Aquatic Life

KFDO310 Online Fluorescence Dissolved Oxygen Sensor no electrolytes no polarization no need to consume oxygen 2

Dissolved oxygen is important to many forms of aquatic life.

 

Dissolved oxygen is necessary to many forms of life including fish, invertebrates, bacteria, and plants. These organisms use oxygen in respiration, like organisms on land. Fish and crustaceans obtain oxygen for respiration through their gills, while plant life and phytoplankton require dissolved oxygen for respiration when there is no light for photosynthesis 4. The amount of dissolved oxygen needed varies from creature to creature. Bottom feeders, crabs, oysters and worms need minimal amounts of oxygen (1-6 mg/L), while shallow water fish need higher levels (4-15 mg/L) .

Microbes such as bacteria and fungi also require dissolved oxygen. These organisms use DO to decompose organic material at the bottom of a body of water. Microbial decomposition is an important contributor to nutrient recycling. However, if there is an excess of decaying organic material (from dying algae and other organisms), in a body of water with infrequent or no turnover (also known as stratification), the oxygen at lower water levels will get used up quicker.

 

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