Reed, Electronic. MOVEMENT > Series CST-CSV-CSH proximity switches GENERAL DATA
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1 > Series CST-CSV-CSH proximity switches Series CST - CSV and CSH magnetic proximity switches Reed, Electronic» Designed to fit into the grooves provided in the profile barrel of the cylinder» The three Series CST - CSV - CSH are suitable for the whole Camozzi range of cylinders» With or without M8 connector These switches are available in two different versions: Reed with mechanical switching and electronic with electronic switching. The electronic versions are suggested for heavy duty with frequent operations and strong vibrations. Series CST-CSV-CSH magnetic proximity switches define the position of the cylinder piston. When the internal contact is actuated by a magnetic field, the sensors complete an electrical circuit and provide an output signal to actuate directly a solenoid valve or a PLC. A yellow LED diode shows when the internal magnetic contact is closed. Models GENERAL DATA Operation Type of output Type of contact Voltage Max current Max load CST-... CSV-... CSH-... Protection IP 67 Materials Mounting Signalling Protections Switching time Reed contact Electronic Static or electronic PNP Normally Open (NO) or Normally Closed (NC) contacts See model characteristics See model characteristics Reed switches 8 W DC and 0 VA AC Electronic switches 6 W DC Plastic body encapsulating epoxy resin cable in PVC connector PVR connector body in PU Directly into the grooves, or by means of adapters. By means of yellow diode Led See model characteristics Reed switches <,8 ms Electronic switches < ms Operating temperature -0 ºC 80 ºC Electrical duration Electrical connection Reed switches cycles Electronic switches cycles cable 2x0,4 (2m) high flexibility cable 3x0,4 (2m) high flexibility connector M8 and cable 0,3 m /9.05.0
2 > Series CST-CSV-CSH proximity switches CODING EXAMPLE CS T N - 5 CS SERIES T N 5 SLOT TYPE T = T-slot V = V-slot H = frontal inserting slot OPERATION 2 = reed NO 3 = electronic 4 = reed NC CONNECTIONS 2 = 2 wires (Reed only ) 3 = 3 wires 5 = 2 wires with M8 connector (Reed only ) 6 = 3 wires with M8 connector POWER SUPPLY VOLTAGE 0 = 0-0V DC; 0-230V AC (PNP) = 30-0V DC; V AC (PNP) 2 = 3 wires cst (PNP) 3 = 0-30V AC/DC (PNP) 4 = 0-27V DC (PNP) NOTE N = ACCORDING TO NORM (CST/CSV-250N only) LENGTH OF THE CABLE (for CSH only): 2 = 2 m 5 = 5 m 652 SWITCHES ELECTRICAL CONNECTIONS Reed switches BN = brown BU = blue BK = black Electronic switches BN = brown BU = blue BK = black /
3 > Series CST-CSV-CSH proximity switches Connecting schemes in series The Reed version with 3 wires allows the connection of several sensors in series, as there is no voltage drop between the supply and the load (see connecting scheme). The voltage drop is 2,8V for the Reed sensors with 2 wires and V for Hall effect sensors with 3 wires. BN = brown BU = blue BK = black L = load Useful information for correct use of the magnetic sensors The magnetic sensors consist of a reed switch which is enclosed in a glass bulb containing a rarified gas. The contacts, which are made of magnetic material (nickel-iron), are flexible and are coated, at the contact points with a high quality non-arcing material. Switching is effected by means of a suitable magnetic field and actuation is achieved by means of the permanent magnet inside the piston. The two sensors are of the normally open type and, therefore, when they are subject to the effect of the magnetic field, they close the circuit. The operating field of the sensors with respect to the magnetic piston is shown in this picture. The dimension b indicates the amplitude of the magnetic field or switching field during which the circuit is closed. The value H represents the operational hysteresis of the sensor with respect to the form and amplitude of the magnetic field. The operating field, as a result of hysteresis, is displaced by the dimension H in the opposite direction to movement of the piston. The values b and H are shown in the table and are classified according to bore. The maximum speed permitted for each cylinder is a function of the value b and the response time of the various components connected after the sensor. The maximum speed for a cylinder guided by magnetic sensors is calculated as follows: b / t = Speed where: b = contact stroke in mm (see table) t = total reaction time in milli seconds of electric control components connected after the sensor Speed = maximum speed in m/second /
4 > Series CST-CSV-CSH proximity switches CONTACT STROKE AND HYSTERESIS Useful information for correct use of the magnetic sensors: H = operational hysteresis of the sensor with respect to the form and amplitude of the magnetic field b = contact stroke in mm Series Ø b ( mm ) H ( mm ) ,2, ,7, ,5, ,9, ,7, ,, ,, ,,3 QP 2 0,3 QP 6,8,5 QP 20,,6 QP 25 0,6,6 QP 32 2,7,2 QP 40 2,5, QP 50 5,4,6 QP 63 6,7,5 QP 80 3,2,7 QP 00 6,8, ,2, ,9, ,, ,6,5 3 32,9, ,9 2, ,7, ,2, ,6, ,8, Series Ø b ( mm ) H ( mm ) , ,9, , ,9, ,5, ,9, ,3,3 6 50, ,4, ,2, ,2, ,, ,8, ,2, ,6, ,,7 QCT 20 0,7 QCT 25,4,8 QCT 32 2,,8 QCT 40 2,4,8 QCT 50 3,7,9 QCT 63 3,5, ,5 3, ,6 4, ,5 4, ,3 3, , ,6 2, ,,7 Series Ø b ( mm ) H ( mm ) , /
5 > Series CST-CSV-CSH proximity switches Load curves Load curve - CSH Load curve - CST/CSV Load curve - CSH Load curve - CST/CSV Load curve - CST/CSV Load curve - CSH, CST/CSV /
6 > Series CST-CSV-CSH proximity switches Electric circuit with protection against voltage spikes DC applications: there is no protection on the Reed sensors on the inductive load, therefore it is advisable to use an electric ciruit with protection against the voltage spikes. See picture above for a typical example. Legend: = Sensor 2 = Load 3 = Protection diode Electric circuit with protection against voltage spikes DC and AC applications: there is no protection on the Reed sensors on the inductive load, therefore it is advisable to use an electric ciruit with protection against the voltage spikes. See picture above for a typical example. Legend: = Sensor 2 = Load 3 = Protection varistor AC applications: there is no protection on the Reed sensors on the inductive load, therefore it is advisable to use an electric circuit with protection against the voltage spikes. See picture above for a typical example. Legend: = Sensor 2 = Load C + R = Series of resistor and protection capacitor /
7 > Series CST-CSV-CSH proximity switches Magnetic proximity switches with cable Suitable for T and V slots In case of polarity reversing the sensor will still be operating, but the LED diode won t turn on. Mod. Operation Connections Voltage Output Max. current Max Load Protection L = cable CST-220 Reed 2 wires 0 0 V AC/DC-230 V AC ma 0 VA / 8W None 2 m CSV-220 Reed 2 wires 0 0 V AC/DC-230 V AC ma 0 VA / 8 W None 2 m CST Reed 2 wires 0 0 V AC/DC-230 V AC ma 0 VA / 8 W None 5 m CST-232 Reed 3 wires 5 30 V AC/DC PNP 250 ma 0 VA / 8 W Against polarity reversing 2 m CSV-232 Reed 3 wires 5 30 V AC/DC PNP 250 ma 0 VA / 8W Against polarity reversing 2 m CST-332 Magnetoresistive 3 wires 0 27 V DC PNP 00 ma 6 W Against polarity reversing and overvoltage 2 m CSV-332 Magnetoresistive 3 wires 0 27 V DC PNP 00 ma 6 W Against polarity reversing and overvoltage 2 m CST-532 Hall effect 3 wires 0 27 V DC PNP 00 ma 6 W Against polarity reversing and overvoltage 2 m Magnetic proximity switches with connector Suitable for T and V slots In case of polarity reversing the sensor will still be operating, but the LED diode won t turn on. Mod. Operation Connections Voltage Output Max. current Max Load Protection CST-250N Reed 2 wires M8 male 3 pin 0 0 V AC/DC ma 0 VA / 8 W None CSV-250N Reed 2 wires M8 male 3 pin 0 0 V AC/DC ma 0 VA / 8 W None CST-262 Reed 3 wires M8 male 3 pin 5 30 V AC/DC PNP 250 ma 0 VA / 8 W Against polarity reversing CSV-262 Reed 3 wires M8 male 3 pin 5 30 V AC/DC PNP 250 ma 0 VA / 8 W Against polarity reversing CST-362 Magnetoresistive 3 wires M8 male 3 pin 0 27 V DC PNP 00 ma 6 W Against polarity reversing and overvoltage CSV-362 Magnetoresistive 3 wires M8 male 3 pin 0 27 V DC PNP 00 ma 6 W Against polarity reversing and overvoltage CST-562 Hall effect 3 wires M8 male 3 pin 0 27 V DC PNP 00 ma 6 W Against polarity reversing and overvoltage /
8 > Series CST-CSV-CSH proximity switches Magnetic proximity switches with cable - vertical insertion Suitable for T and H slots In case of polarity reversing the sensor will still be operating, but the LED diode won t turn on. Mod. Operation Connections Voltage Output Max current Max Load Protection L = cable CSH Reed 2 wires 0 30 V AC/DC ma 0 VA / 8 W Against polarity reversing 2 m CSH Reed 2 wires 0 30 V AC/DC ma 0 VA / 8 W Against polarity reversing 5 m CSH-22-2 Reed 2 wires V AC V DC ma 0 VA / 8 W Against polarity reversing 2 m CSH-22-5 Reed 2 wires V AC V DC ma 0 VA / 8 W Against polarity reversing 5 m CSH Reed 3 wires 0 30 V AC/DC PNP 250 ma 0 VA / 8 W Against polarity reversing 2 m CSH Reed 3 wires 0 30 V AC/DC PNP 250 ma 0 VA / 8 W Against polarity reversing 5 m CSH Magnetoresistive 3 wires 0 27 V DC PNP 250 ma 6 W Against polarity reversing and overvoltage 2 m CSH Magnetoresistive 3 wires 0 27 V DC PNP 250 ma 6 W Against polarity reversing and overvoltage 5 m Magnetic proximity switches wtih connector - vertical insertion Suitable for T and H slots In case of polarity reversing the sensor will still be operating, but LED diode won t turn on. Mod. Operation Connections Voltage Output Max current Max Load Protection CSH-253 Reed NO 2 wires M8 male 3 pin 0 30 V AC/DC ma 0 VA / 8 W Against polarity reversing CSH-263 Reed NO 3 wires M8 male 3 pin 0 30 V AC/DC PNP 250 ma 0 VA / 8 W Against polarity reversing CSH-364 Magnetoresistive 3 wires M8 male 3 pin 0 27 V DC PNP 250 ma 6 W Against polarity reversing and overvoltage CSH-463 Reed NC 3 wires M8 male 3 pin 0 30 V AC/DC PNP 250 ma 0 VA / 8 W Against polarity reversing /
9 > Series CST-CSV-CSH proximity switches Sensors Series CST - CSH CST/CSH sensors can be directly mounted on the following cylinders: Series 3-3R Series 32-32R Series 52 Series 6 Series 62 (CSH only) Series 69 Series QC - QCBF - QCTF Series CSV Sensors CSV sensors must be assembled directly into the groove of cylinders: Series 50 ø 6 25 Series QP - QPR ø 2 6 Circular connectors M8, 3 Pin Female With PU sheathing, non shielded cable. Protection class: IP65 BN = Brown BK = Black BU = Blue In case of the use of sensors with two wires with connector M8 models CST-250N, CSV-250N, CSH-253 connect the brown wire to the input (+) and the black wire to the load. Mod. CS-2 CS-5 CS-0 Length 2 m 5 m 0 m /
10 > Series CST-CSV-CSH proximity switches Extension with connector M8, 3 Pin Male / Female Non shielded Mod. cable length A (m) CS-DW03HB-C250 2,5 CS-DW03HB-C500 5 Mounting brackets for sensors Series CST-CSH Mod. Cylinders series Ø S-CST-0 QP-QPR S-CST Mounting brackets for sensors Series CST - CSH Materials: - from S-CST-05 2 stainless steel - from S-CST and S-CST-8 2 technopolymer. Mod. Cylinders series Ø S-CST S-CST S-CST S-CST-05 94, (94), 6-20 (95) S-CST , ( ), 25 (95) S-CST S-CST S-CST S-CST S-CST S-CST S-CST S-CST S-CST S-CST /9.05.0
11 > Series CST-CSV-CSH proximity switches Mounting brackets for sensors Series CST and CSH Mod. Cylinders series Ø S-CST S-CST S-CST S-CST Mounting brackets for sensors Series CST and CSH For cylinders series 60 mounted with guides series 45NHT or 45NHB. Mod. Cylinders series Ø S-CST-45N S-CST-45N Slot cover profile Mod. S-CST-500 Supplied with 500 mm tube Slot cover profile for cylinders Series: 3-3 tandem and multi-position - QCT - QCB - QCBT-QCBF tandem and multi-position. Mod. S-CST-500 /9.05.
12 > Series CSB and CSC proximity switches Series CSB and CSC magnetic proximity switches Reed switches Series CSB/CSC magnetic proximity switches define the position of the magnetic piston. When the internal contact is actuated by a magnetic field, the sensors complete an electrical circuit and provide an output signal to actuate directly a solenoid valve or a PLC. A red Led shows when the internal magnetic contact is closed. The reed switch that has a mechanical switching element, is suitable for voltages, AC and DC up to 0 V. Proximity switches mod. CSC are suitable for gripper mod. CGL. The proximity switches are impregnated in a sealed isolating cover. These sensors are designed to fit into the grooves provided in the profile barrel of the grippers. For electrical connections see schemes. GENERAL DATA Model CSB-220 CSC-220 Operation Reed contact Voltage 3 0 V AC/DC Protection IP66 Material Plastic body encapsulating epoxy resin Mounting directly into the groove Signalling by means of LED (red) Electrical connections 2 x 0,4 cable ( 2 m ) Switching current 3 50 ma Max. load 8 W, 0 VA Switching time < ms (/000 sec) Operating temperature -0 C 60 C Type of contact NO Weight 8 g Protection circuit None Output - /9.5.0
13 > Series CSB and CSC proximity switches CODING EXAMPLE CS B - D CS SERIES B D 2 SLOT SHAPE: B = Square C = Round CABLE TYPE: D = straight H = 90 OPERATION: 2 = reed 20 CONNECTION: 20 = 2 wires (Reed only) 652 ELECTRICAL CONNECTORS BN = brown BU = blue /9.5.02
14 > Series CSB and CSC proximity switches Electric circuits with protection against voltage spikes There is no protection on the Reed sensors on the inductive load, therefore it is advisable to use electric circuits with protection against the voltage spikes: the first for direct current (DC), the second for alternating current (AC). = Reed sensor 2 = Load 3 = Diode / Varistor When the wire length of sensor connection load is more than 0m, inductors shall be installed in series near the sensor to avoid ripple. = Reed sensor 2 = Load R = Resistor C = Capacitor Electric circuits with protection against voltage spikes There is no protection on the Reed sensors on the inductive load, therefore it is advisable to use electric circuits with protection against the voltage spikes. BN = Brown BU = Blue C = Load When the wire length of sensor connection load is more than 0m, inductors shall be installed in series near the sensor to avoid ripple. BN = Brown BU = Blue C = Load When L is more than 0mt. the cable has to be considered as an inductive load. /9.5.03
15 > Series CSB and CSC proximity switches Connectors Mod. CSB-D-220 Mod. CSB-D-220 Connectors Mod. CSB-H-220 Mod. CSB-H-220 Connectors Mod. CSC-D-220 Mod. CSC-D-220 Connectors Mod. CSC-H-220 Mod. CSC-H-220 /9.5.04
16 > Series CSN proximity switches Series CSN proximity switches Reed switch It is designed so that it can be fixed directly on the tie-rod by means of two screws which assure the position longitudinal to the cylinder axle; and with a third screw for the anti-rotation positioning. The three terminals are indicated by the numbers, 2 and 3 and enable the following connections to be made (see the scheme). The electrical proximity switch Mod. CSN consists of a Reed switch complete with an electronic protection circuit and a red LED indicator. The resin inside the casing ensures high protection and insulation. GENERAL DATA Mod. CSN Voltage from 2 to 220V AC and DC Protection IP54 / IP65 with connector DIN Material glass-reinforced PA Mounting bracket for tie rod ø 6 ø 0 Signalling integrated red LED Electrical connection DIN connector, Mod Max. current.5 A Max. load 20 W DC - 30 VA AC Actuating time 2 ms Actuating tolerance ± mm Operating temperature - 25 C + 75 C Type of contact NO (normally open) /9.0.0
17 > Series CSN proximity switches TECHNICAL DATA CONNECTION - For inductive loads = solenoid valves, electrical magnets, relay. To connectors = terminals For capacitive loads = circuit with remaining tension (see PLC controls) To connectors = - 3 Note: For connections with wires of approximately 0m, the connection shall be made as for a capacitive load. MAXIMUM LOADS For maximum loads see relative diagram, those loads are valid only for inductive loads. For capacitive loads, using clamp 3 (or black wire) load must not exceed 80 ma and load must be given by PLC or, for electrical circuits, by microrelay or micro solenoid valves with 2W maximum consumption. Note: When operating with direct current, clamp must always be connected to the positive outlet (+). In cases where commands are given from the PLC and logic NPN, clamp must be connected to the inlet. In cases where commands are given from the PLC and logic PNP, clamps 2 or 3 must be connected to the inlet. LEGEND: C = capacitive load C2 = inductive load Maximum contact load The maximum load (W) which the contacts are able to tolerate is that indicated in the section General data, i.e W for direct current ( DC ) - 30 VA for alternating current ( AC ) The effective load allowed depends on the operating voltage (minimum 2 V, maximum 220 V) as shown in the following graph. Note: this graph was obtained from practical tests performed using a load consisting of our Series A and 6 solenoid valves, at an operating speed of one stroke per second. For higher operating speeds, your are advised to contact our technical department. /9.0.02
18 > Series CSN proximity switches Switches Series CSN Mod. for cylinders Series 40 - ø for cylinders Series 40 - ø for cylinders Series 4 - ø CSN mounting band to be ordered separately direct mounting mounting band to be ordered separately Mounting bracket for sensor Mod. S2 for cylinders Series 40 ø 60 and 200 S53 for cylinders Series 4 ø 60 and 200 /9.0.03
Reed, Electronic. MOVEMENT > Series CST-CSV-CSH proximity switches GENERAL DATA
> Series CST-CSV-CSH proximity switches Series CST - CSV and CSH magnetic proximity switches Reed, Electronic»» Designed to fit into the grooves provided in the profile barrel of the cylinder»» The three
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