Tehnilised dokumendid
Spetsifikatsioonid:
Brand
OptekPeak Sensor Distance
6.35mm
Output Device
Phototransistor
Number of Channels
1
Number of Pins
4
Mounting Type
Screw Mount
Dimensions
29.59 x 7.62 x 13.34mm
Height
13.34mm
Length
29.59mm
Maximum Operating Temperature
+85°C
Minimum Operating Temperature
-40°C
Width
7.62mm
Operating Temperature Range
-40 → +85°C
Toote üksikasjad
Tube Liquid Sensor
The OPB350 series liquid sensor is designed to work with 3.2mm (1/8 inch) and 6.3mm (1/4 inch) outside diameter clear tubes. Used in conjunction with suitably designed output reference circuitry, output states such as "fluid present", "no fluid present" and "no tube present" can be recognised. Clear liquid present causes the phototransistor to sink the maximum current, while dark liquid present causes it to sink the minimum current. As bubbles pass through the tube, the signal will vary between the liquid present and no liquid states. If no liquid is present, the phototransistor sinks only a small amount of current. If no tube is present, the phototransistor sinks a larger current than in the no liquid state.
€ 10,80
€ 10,80 tk (ilma käibemaksuta)
€ 13,18
€ 13,18 tk (koos käibemaksuga)
1
€ 10,80
€ 10,80 tk (ilma käibemaksuta)
€ 13,18
€ 13,18 tk (koos käibemaksuga)
1
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Tehnilised dokumendid
Spetsifikatsioonid:
Brand
OptekPeak Sensor Distance
6.35mm
Output Device
Phototransistor
Number of Channels
1
Number of Pins
4
Mounting Type
Screw Mount
Dimensions
29.59 x 7.62 x 13.34mm
Height
13.34mm
Length
29.59mm
Maximum Operating Temperature
+85°C
Minimum Operating Temperature
-40°C
Width
7.62mm
Operating Temperature Range
-40 → +85°C
Toote üksikasjad
Tube Liquid Sensor
The OPB350 series liquid sensor is designed to work with 3.2mm (1/8 inch) and 6.3mm (1/4 inch) outside diameter clear tubes. Used in conjunction with suitably designed output reference circuitry, output states such as "fluid present", "no fluid present" and "no tube present" can be recognised. Clear liquid present causes the phototransistor to sink the maximum current, while dark liquid present causes it to sink the minimum current. As bubbles pass through the tube, the signal will vary between the liquid present and no liquid states. If no liquid is present, the phototransistor sinks only a small amount of current. If no tube is present, the phototransistor sinks a larger current than in the no liquid state.