E3S-CR62/67. Ideal for detecting transparent glass and plastic containers. Transparent bottle sensor. Features
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1 bottle sensor Ideal for detecting transparent glass and plastic containers Features Stable operation even if container interval is shortened for higher productivity. Stable detection of 5 mm gaps that previous regression reflection models were unable to detect because of a speed increase for higher productivity. 5mm Bottle detection seen from the upper side Application Count of the number of bottles Positioning of a bottle, and stopping Conventional element emission : 0. mm Approx. 5 mm Reflection beam Clear glass sensor element emission : 0.5 mm Reflection beam 5mm OK Lens beam Reflection beam The conventional reflector Cube size.8 mm Lens beam Reflection beam New reflector Cube size 0.92 mm A-57
2 Application Narrow pin interval detection Stable detection of 5 mm gaps that are not detectable by previous regression reflection models. Wide detection range. Stable detection even at long distances. Use of hyper-point LED as light source (/2 light emission of previous models) enables stable long-distance detection. Stable detection of ampules and other small containers. Visible spotlight for easy adjustment. m Features We significantly increased the S/N ratio to enable a stable detection of PET bottles and various other transparent containers Problem NG Chattering A state without a transparent bottle Sensor Clear glass sensor Adoption of the coaxial retroreflective model Stable detection can be carried out also to the transparent bottle of various form and surface states. Received element Reflector Reflection beam width beam width Polarized filter A state without a transparent bottle Sensor element The Chattering by the angle of a bottle Reflection beam width beam width Reflector Pin hole element All the reflected light is received. is certainly intercepted by the transparent bottle. Sensor Received element Corner cube Reflector Polarized filter Received element Problem 2 NG Received light Incorrect operation A part of emitted light is received. Pin hole (Example) element Refraction of the lens effect of a bottle Using E9-R6 (The characteristic in a short distance) S / N Using E9-R (The characteristic in a long distance).8 Conventional model Distance (mm) The increase light by a transparent bottle Sensor element Received element The increase light by refraction of the lens effect of a bottle Reflector S / N Conventional model Distance (mm) A-58 Standard Photoelectric Sensors
3 Ordering Information Sensors Red light Sensor type Shape Connection method Retroreflective Models Pre-wired type Connector type Sensing distance Reflector E9-R6 Reflector E9-R 250mm m [250mm] * Model ES-CR62-C ES-CR67-C * Values in parentheses indicate the minimum required distance between the sensor and reflector. Accessories (Order Separately) Reflectors Name Sensing distance Model Quantity Remarks Reflectors 250 mm E9-R6 m (250 mm) * E9-R * Values in parentheses indicate the minimum required distance between the sensor and reflector. --- Mounting Brackets Shape Model Quantity Remarks E9-L0 Supplied with the product. E9-L Sensor I/O Connectors Cable Shape Cable length Model Straight 2 m XS2F-D42-DC0-A 5 m XS2F-D42-GC0-A Standard cable -wire type 2 m XS2F-D422-DC0-A L-shape 5 m XS2F-D422-GC0-A A-59
4 Rating/performance Sensor type Retroreflective Models (M.S.R. function) Item Model ES-CR62-C ES-CR67-C Sensing distance Standard sensing object Directional angle 2 to 6 source (wave length) Power supply voltage Current consumption Control output Protective circuits Response time Sensitivity adjustment Ambient illuminance Ambient temperature Ambient humidity 250 mm (When using the E9-R6), m (250 mm)* (When using the E9-R) 0 mm dia. X 50 mm glass tube (thickness:.8 mm) Red LED (660 nm) 0 to 0 VDC, ripple (p-p) : 0 % max. 40 ma max. supply voltage: 0 VDC or less; load current 00 ma or less (residual voltage: NPN output.2 V or less, PNP output 2 V or less); open collector model (NPN/PNP output switching) light / dark switching short protection, reverse connection protection, mutual interference protection function Operation or reset: ms max. 2-turn endless adjuster (with ) Incandescent lamp: 5,000 lux max. Sunlight 0,000 lux max. Operating: -25 C to 55 C, Storage: -40 C to 70 C (with no icing or condensation) Insulation resistance 20 M min. at 500 VDC Dielectric strength Vibration resistance Shock resistance Protective structure Operating: 5% to 85% RH, Storage: 5% to 95% RH (with no icing or condensation),000 VAC at 50/60 Hz for minute Destruction:0 to 2,000 Hz,.5 mm double amplitude or 00 m/s 2 (approx. 0G) for 0.5 hrs each in x, y, and Z directions 000 m/s 2 (approx. l00g) times each in X, Y, and Z directions IEC Standard IP67 NEMA 6P (restricted to indoor use) *2 Mounting Brackets Stainless steel (SUS04) Accessories Brackets (with screws), adjustment driver, operation manual *. Values in parentheses indicate the minimum required distance between the sensor and reflector. *2. NEMA (National Electrical Manufacturers Association) Standard IEC Standard IP67 NEMA 6P (restricted to indoor use) Connection method Pre-wired models (standard length: 2 m) Connector type Weight (Packed state) Approx. 5 g Approx. 80 g Case Zinc diecast Lens Acrylics Material Display operation panel Polyethyl sulfon A-60 Standard Photoelectric Sensors
5 Output Circuit Diagram NPN output Model ES-CR62-C ES-CR67-C Operating status of output Dark Output (Relay) Output (Relay) Incident Interrupted Operate Timing chart Reset (Between brown and black) Incident Interrupted Operate Reset (Between brown and black) Mode selection switch L (LIGHT ) D (DARK ) Stability Main circuit Output circuit PNP output NPN and PNP output selector NPN output ZD ZD Connector Pin arrangement Note: Pin 2 is not used. * Brown 0 to 0 VDC Black 4 Blue * Please make a changeover switch into the NPN side. 2 4 current Control output 0V PNP output Model Operating status of output Timing chart Mode selection switch Output circuit ES-CR62-C ES-CR67-C Dark Output (Relay) Output (Relay) Incident Interrupted Operate Reset (Between blue and black) Incident Interrupted Operate Reset (Between blue and black) L (LIGHT ) D (DARK ) Stability Main circuit PNP output NPN and PNP output selector NPN output ZD ZD * Please make a changeover switch into the NPN side. Connector Pin arrangement 2 4 * Note: Pin 2 is not used. * Brown 0 to 0 VDC Black 4 Blue Control output current 0V Connectors (Sensor I/O connectors) 2 4 Terminal No. 2 4 XS2F-D42-DC0-A Brown Blue Black Class Wire, outer Connector pin Application Brown A +V For DC - B - Blue C 0V Black D Output Note: Pin 2 is open. A-6
6 Nomenclature Stability NPN and PNP output selector * S PNP NPN D L SENS L Min Max Sensitivity adjustment volume L--D- changeover switch * 2 *. Output switching is possible by means of NPN/PNP output switch. *2. Operation mode can be switched using L /D switch. Operation Sensitivity adjustment The light source switch and reflective plate can be moved horizontally and vertically to set them in the center of the illumination area of the red incident light lamp, allowing the operator to check whether the green stability lamp is illuminated. Sensing object Detection state Sensitivity adjuster Indicator state Adjustment procedure pin or glass plate Without sensing object Min Max Stability Turn sensitivity control from minimum to maximum and set at point where incoming light stabilizes. Opaque object Object detected, object not detected Min Max Stability If the object is larger than the lens, set the sensitivity control to the maximum setting. If the object is the same size or smaller, turn the sensitivity control from minimum to maximum and set at point where incoming light stabilizes. A-62 Standard Photoelectric Sensors
7 Precautions Design Fuzzy mutual interference prevention If the light source switches for the reflective plates are arranged in a row, light from a neighboring light source switch may be received, causing erroneous light reception signals and errors. The fuzzy reciprocal interference prevention function monitors interference light for a certain period of time before illumination, and gathers data on the strength of the interference light and the frequency of incidence. It then determines the risk of error due to these two factors using fuzzy logic and controls the timing of illumination to reduce the risk. (When risk is low) is emitted after interfering light is gone. Interference light pattern Correct Use (In case of high risk) is emitted after shifting to a gap of interfering light. Interference light Installation Sensor installation When installing a photoelectric switch, avoid tapping with a hammer. This may damage the water resistance function. Use an M4 screw, tightened to a torque of no more than.8 Nm. (When using the mounting bracket) To set the sensor on the mechanical axis, use the optical axis locking holes. When it is not possible to mount on the mechanical shift, move the photoelectric switch vertically or horizontally so that it is located in the center of the area illuminated by the incident light lamp. Verify that the stability lamp is on. (Direct installation) Install the photoelectric switch as shown in the following diagram. Tighten M4 screw Tighten M screw pattern M4 hole M4 hole Bottles In some cases, factors such as the shape of a bottle prevent stable detection. Please confirm that a correct detection is performed before use. M4 M4 hole M4 hole M Wiring Considerations Cable An oil resistant cable is used to ensure oil resistance. Avoid repeated bending of the cable. The bending radius should be 25 mm or more. Avoiding Malfunctions When using a photoelectric switch with an inverter or sub-motor, be sure to connect FG (frame ground pin) and G (ground pin). If not connected, errors may result. Two, 4.5 dia. through holes 2-M For adjustment axis adjustment Adjust the optical axis of the clamp to the direction of detection object approach. The optical axis of the photoelectric switch is the same as the mounting axis of the clamp, enabling easy adjustment. Optical axis locking hole By fitting screws into the optical axis locking holes, the mounting bracket is set onto the mounting shaft of the mounting bracket. Four M4 optical axis lock holes Optical axis Mounting axis A-6
8 Dimensions (Unit: mm) Sensors Retroreflective Models Pre-wired ES-CR62-C With Mounting Blanket Attached 57 Optical axis Lens (0. 0.5) Vinyl-insulated round cable of 4 dia. cores conductor cross-sectional area: 0.2mm²; insulation :.2mmStandard length: 2 m Optical axis Receiver, Emitter Mounting Holes 2-M Stability Stainless steel (SUS04) (A) * M 5 2-M4 2 * Mounting Bracket can be attached to side A. 2.2 ().5 Connector type ES-CR67-C With Mounting Blanket Attached Optical axis Lens (0. 0.5) M2 Optical axis Receiver, Emitter Mounting Holes 2-M Stability Stainless steel (SUS04) (A) * M 5 2-M4 2 * Mounting Bracket can be attached to side A. 2.2 ().5 Accessories (Order Separately) H- ALL DIMENSIS SHOWN ARE IN MILLIMETERS. To convert millimeters into inches, multiply by To convert grams into ounces, multiply by Cat. No. E268-E2-0-X In the interest of product improvement, specifications are subject to change without notice. A-64 Standard Photoelectric Sensors
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