Specifications
Table Of Contents
- Imprint
- Documentation Representative
- © HYDAC FILTER SYSTEMS GMBH
- Contents
- Preface
- Safety information
- Storing the CS
- Decoding the model code label
- Checking the scope of delivery
- CS1000 Features
- CS1000 Restrictions on use
- CS1x1x dimensions (without display)
- CS1x2x dimensions (with display)
- Hydraulic connection types
- Fastening / mounting the CS1000
- Display rotatable/Adjustable As Needed
- CS1000 hydraulic installation
- Electrical connection of the CS1000
- Setting the measuring mode
- Operating the CS1x2x using the keypad
- Overview of menu structure
- Using switching output
- Setting limit values
- Reading the analog output
- Status Messages
- Connecting CSI-D-5 (Condition Sensor Interface)
- Connecting the CS1000 to an RS-485 bus
- Communicating with the CS1000 via the RS-485 bus
- Taking the CS1000 out of operation
- Disposing of CS1000
- Spare Parts and Accessories
- Cleanliness classes - brief overview
- Checking/resetting default settings
- Technical data
- Recalibration
- Customer Service
- Model Code
- EC declaration of conformity

ContaminationSensor CS 1000 Reading the analog output
HYDAC FILTER SYSTEMS GMBH
en(us)
Page 85/112
BeWa CS1000 3764916 300 en-us 2012-08-29.doc 2012-08-29
The current I or voltage U can be calculated for a given temperature as follows:
I = 4.8 mA + (temperature [°C] + 25) x (19.2 mA - 4.8 mA) / 125
I = 4.8 mA + (temperature [°F] +13) x (19.2 mA - 4.8 mA) / 225
U = 2.4 V + (temperature [°C] + 25) x (9.6 V - 2.4 V) / 125
U = 2.4 V + (temperature [°F] + 13) x (9.6 V-2.4 V) / 225
The temperature in °C or °F can be calculated for a given current I or voltage U as
follows:
Temperature [°C]= ((I - 4.8 mA) x (125 / 14.4 mA)) - 25
Temperature [°F]= ((I - 4.8 mA) x (225 / 14.4 mA)) - 13
Temperature [°F]= ((U - 2.4 V) x (125 / 7.2 V)) - 25
Temperature [°F]= ((U - 2.4 V) x (225 / 7.2 V)) - 13