NPN open-collector transistor (Judgment output) Current / voltage output (Linear output)
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1 Ultra-compact Sensor SERIES 144 ORDER GUIDE s Type Appearance Model No. Output NPN output HL-AC1 NPN open-collector transistor (Judgment output) Current / voltage output (Linear output) PNP output HL-AC1P PNP open-collector transistor (Judgment output) Current / voltage output (Linear output) PARTICUR Calculation unit Appearance Model No. HL-AC1-CL Designation Model No. Description Side-view attachment mounting bracket SV1 SV MS-HC1-1 For 1A(F)/ T1A(F) (1 pc.) For 1A(F) (1 pc.) The beam axis can be bent to a right angle making universal mounting possible. Use when mounting the controller with screws. Side-view attachment SV1 SV INTERCES Extension cable CCJ4 CCJ Length: 4 m 1.1 ft Net weight: g approx. Length: m 6.47 ft Net weight: g approx. Extension cable for use between the controller and its cable linking it with the sensor head. Cabtyre cable with connectors on both ends Cable outer diameter: ø. mm ø. in Connector outer diameter: ø. mm ø.61 in max. Mounted on both sides Mounted on one side only mounting bracket MS-HC1-1 Extension cable CCJ4 CCJ
2 14 Ultra-compact Sensor SERIES SPECIFICATIONS PARTICUR INTERCES Sensor heads Type diameter ø1 mm ø. in type Sensing width mm.17 in type Sensing width 1 mm.4 in type IEC / JIS standards conforming type 1A A 1A Item FDA regulations conforming type 1F F 1F Applicable controller HL-AC1, HL-AC1P Sensing range to mm to 1.6 in to, mm 1.6 to 7.74 in mm 1.6 in Sensing width ø1 mm ø. in ø1 to ø. mm ø. to ø. in mm.17 in 1 mm.4 in Model No. Min. sensing object Repeatability (During the state in which light is half blocked) ø µm ø. mil opaque object 4 µm.7 mil (Note ) ø µm ø1.6 mil opaque object ø. mm ø. in opaque object ø.1 mm ø.4 in opaque object 4 µm.7 mil (Note ) Linear output resolution 4 µm.7 mil (Note ) (Note, 4) 4 µm.7 mil (Note ) Emission indicator Green LED (lights up during laser emission) Interference prevention Two units of sensors can be mounted close together. (When the controller interference prevention is used) Pollution degree (industrial environment) Ambient temperature to + C + to +1 F (No dew condensation), Storage: to +7 C 1 to + F Ambient humidity to % RH, Storage: to % RH Ambient illuminance Incandescent light: 1, lx at the light-receiving face EMC EN 61-6-, EN Voltage withstandability 1, V AC for one min. between all supply terminals connected together and enclosure Insulation resistance 1 MΩ, or more, with V DC megger between all supply terminals connected together and enclosure Vibration resistance 1 to Hz frequency, 1. mm. in amplitude in X, Y and Z directions for two hours each Shock resistance m/s acceleration ( G approx.) in X, Y and Z directions for three times each Environmental resistance Emitting element IEC / JIS standards conforming type FDA regulations conforming type Red semiconductor laser Class 1 (IEC / JIS) modulated, max. output:. mw, peak emission wavelength: 6 nm.6 mil Red semiconductor laser Class II (FDA) modulated, max. output:. mw, peak emission wavelength: 6 nm.6 mil (IEC / JIS: Class 1) Red semiconductor laser Class 1 (IEC / JIS) modulated, max. output:. mw, peak emission wavelength: 6 nm.6 mil Red semiconductor laser Class II (FDA) modulated, max. output:. mw, peak emission wavelength: 6 nm.6 mil (IEC / JIS: Class 1) Material Enclosure: Polyetherimide, Case cover: Polycarbonate, Front cover: Glass Cable.mm -core shielded cable with connector,. m 1.64 ft long Cable extension Extension up to total 1 m. ft is possible, with the optional cable. Net weight Emitter: g approx., : g approx. Emitter: g approx., : g approx. Accessories MS-HLT1-1(Sensor head mounting bracket): One set of two brackets for both the emitter and the receiver CN-HLT1-1(Sensor head to controller connection cable): 1 cable beam alignment sticker: pcs. Label set (FDA regulations conforming type only): 1 set MS--1 (Sensor head mounting bracket): One set of two brackets for both the emitter and the receiver CN-HLT1-1 (Sensor head to controller connection cable): 1 cable beam alignment sticker: pcs. Label set (FDA regulations conforming type only): 1 set Notes: 1) Where measurement conditions have not been specified precisely, the conditions used were an ambient temperature of + C +6 F. ) In case of an average sampling rate of 64 times. ) Value calculated with the linear output allowance factor (± σ) when connected to the controller included in the calculation of the detection width. 4) This value was obtained by converting the range of linear output fluctuation (± σ) into a sensing width, assuming that the smallest sensing object blocks the beam at the approximate center of the beam diameter of ø1 mm ø. in. Calculation unit Model No. Item HL-AC1-CL Connected controller HL-AC1, HL-AC1P Current consumption 1 ma or less (supplied from the controller) Connecting method Connector Connection indicator Orange LED (lights up when connected to the controller) Ambient temperature to + C + to +1 F (No dew condensation), Storage: to +6 C + to + F Ambient humidity to % RH, Storage: to % RH Voltage withstandablity 1, V AC for one min. between all supply terminals connected together and enclosure Insulation resistance 1 MΩ, or more, with V DC megger between all supply terminals connected together and enclosure Vibration resistance 1 to Hz frequency,.7 mm. in amplitude in X, Y and Z directions for min. Shock resistance m/s acceleration ( G approx.) in X, Y and Z directions for three times each Material Enclosure: ABS, Indicator part: Acrylic Weight Net weight: g approx. Environmental resistance Note: Where measurement conditions have not been specified precisely, the conditions used were an ambient temperature of + C +6 F.
3 Ultra-compact Sensor SERIES 146 SPECIFICATIONS s Type NPN output PNP output Item Model No. HL-AC1 HL-AC1P Applicable sensor head Supply voltage / Current consumption Measuring cycle 1A/T11F, A/T1F, 1A/T11F 1 to 4 V DC ± 1 % Ripple P-P 1 % or less / 1 ma or less (when connected to the sensor head) Notes: 1) Where measurement conditions have not been specified precisely, the conditions used were an ambient temperature of + C +6 F. ) Switching between current and voltage is accomplished by a switch on the bottom of the controller. ) These are the temperature characteristics of the linear output when the sensor head is connected. 4) The judgment output and linear output and linear output response time is calculated by (Measuring cycle) (Set average sampling rate + 1). ) The calculation unit is necessary. 6) If the extension cable is longer than 1 m. ft, then it will not qualify for CE marking. μs Current / voltage output switchable (Note ) During current output: 4 to ma/f.s., Maximum load resistance: Ω Linear output During voltage output: ±4 V/F.S., Output impedance 1 Ω (In the monitor focus, it can also be set at ± V, to V, etc.) Temperature characteristics ±. % F.S./ C (Note ) Settable average sampling rate (Note 4) 1 / / 4 / / / / 64 / 1 / 6 / 1 / 1,4 /,4 / 4,6 Judgment outputs (HIGH, PASS, LOW) Utilization category Number of outputs Output operation Short-circuit protection OFF input Zero reset input Timing input Reset input Indicators emitting ( ON) Judgment outputs Enable (ENABLE) Zero reset (ZERO) Main digital display Sub-digital display Main s NPN open-collector transistor Maximum sink current: ma Applied voltage: V DC or less (between judgment output and V) Residual voltage: 1. V or less (at ma sink current) PNP open-collector transistor Maximum source current: ma Applied voltage: V DC or less (between judgment output and +V) Residual voltage: V or less (at ma source current) DC-1 or DC-1 HIGH / PASS / LOW values output HIGH: ON when measured value > HIGH threshold value PASS: ON when HIGH threshold value measured value LOW threshold value LOW: ON when LOW threshold value > measured value V connection: emission halt Open: emission V connection: Zero reset operates Open: Zero reset ineffective V connection: Effective Open: Ineffective V connection: Effective Open: Ineffective Incorporated +V connection: emission halt Open: emission +V connection: Zero reset operates Open: Zero reset ineffective +V connection: Effective Open: Ineffective +V connection: Effective Open: Ineffective Green LED (lights up during laser emission) HIGH: Orange LED (lights up when measured value > HIGH threshold value) PASS: Green LED (lights up when HIGH threshold value measured value LOW threshold value) LOW: Yellow LED (lights up when LOW threshold value > measured value) Green LED (lights up during normal operation) Green LED (lights up when the zero reset is enabled) digit red LED display digit yellow LED display Measured value display Setting value, light amount value resolution display Standard received light setting Automatic scaling Scaling RUN mode: Either the measured value (mm) or the hold value will be displayed. Reverse mode: The display orientation will be reversed. RUN mode: Either the resolution or laser beam reception amount will be displayed. THR mode: The threshold value will be displayed., Reverse mode: The display orientation will be reversed. Display reverse ECO display Display digits limitation Sample hold Peak hold Bottom hold Peak to peak hold Self peak hold Self bottom hold Zero reset Initial reset ON-delay timer OFF-delay timer ONE SHOT timer Differentiation Sensitivity selection Threshold value direct setting Positioning teaching -level teaching Automatic teaching Hysteresis width variablily Monitor focus Non-measuring time setting (A B) calculation (Note ) Pollution degree (industrial environment) Ambient temperature to + C + to +1 F (No dew condensation), Storage: to +6 C 1 to + F Ambient humidity to % RH, Storage: to % RH EMC EN 61-6-, EN Voltage withstandability 1, V AC for one min. between all supply terminals connected together and enclosure Insulation resistance MΩ, or more, with V DC megger between all supply terminals connected together and enclosure Vibration resistance 1 to Hz frequency,.7 mm. in amplitude in X, Y and Z directions for min. Shock resistance m/s acceleration ( G approx.) in X, Y and Z directions for three times each Material Enclosure: Polybutylene terephthalate, Transparent cover: Polycarbonate I/O cable. mm 1-core composite cable, m 6.6 ft long I/O cable extension Extension up to total 1 m. ft is possible, with. mm or more, cable. (Note 6) Weight Net weight: g approx. Environmental resistance (A + B) calculation (Note ) Mutual interference prevention (Note ) deterioration detection Key lock Zero reset memory PARTICUR INTERCES
4 147 Ultra-compact Sensor SERIES I/O CIRCUIT DIAGRAMS HL-AC1 NPN output type HL-AC1P PNP output type PARTICUR Main circuit Tr1 D ZD1 Tr Tr Color code (Brown) +V (White) HIGH Load judgment output Load ma max. Load (Green) PASS judgment output + ma max. ZD (Gray) LOW judgment output ma max. ZD (Blue) GND ( V) (Pink) -OFF input (Violet) Timing input (Orange / Violet) Zero reset input (Red) Reset input 1 to 4 V DC ±1 % Main circuit D Tr1 Tr ZD1 Tr ZD ZD Color code (Brown) +V ma max. (White) HIGH judgment output ma max. Load (Green) PASS judgment output ma max. Load (Gray) LOW judgment output Load (Blue) GND ( V) (Pink) -OFF input (Violet) Timing input (Orange / Violet) Zero reset input (Red) Reset input + 1 to 4 V DC ±1 % 1Ω Current output 4 to ma Voltage output ±4 V Internal circuit (Black) Linear output (Shield) Linear GND Users circuit Current output: Load Ω or less Voltage output: 1 kω or more 1Ω Current output 4 to ma Voltage output ±4 V Internal circuit (Black) Linear output Load (Shield) Linear GND Users circuit Current output: Ω or less Voltage output: 1 kω or more Symbols D: Reverse supply polarity protection diode ZD1, ZD, ZD: Surge absorption zener diode Tr1, Tr, Tr: NPN output transistor Non-voltage contact or NPN open-collector transistor Symbols D: Reverse supply polarity protection diode ZD1, ZD, ZD: Surge absorption zener diode Tr1, Tr, Tr: PNP output transistor Non-voltage contact or PNP open-collector transistor INTERCES or -OFF input, Timing input, Zero reset input, Reset input Low ( to 1. V): Effective High (+V or open): Ineffective SENSING CHARACTERISTICS (TYPICAL) 1A 1F or -OFF input, Timing input, Zero reset input, Reset input Low ( V or open): Ineffective High [ +V to ( +V 1. V)]: Effective A F Correlation between transverse deviation and output voltage Horizontal direction Vertical direction m 6.6 ft m 6.6 ft 6 Emitter l Emitter l 4 Vertical direction Horizontal direction The graph depicts the correlation between transverse deviation and output voltage when the full-scale setting ranges from V (light beam is interrupted) to V (light beam is fully incident), using the Monitor Focus (Up) Left Center Right (Down) Deviation l (mm in) 1A 1F Correlation between transverse deviation and output voltage Horizontal direction Vertical direction mm 1.6 in mm 1.6 in 6 Emitter l Emitter l 4 Vertical direction Horizontal direction The graph depicts the correlation between transverse deviation and output voltage when the full-scale setting ranges from V (light beam is interrupted) to V (light beam is fully incident), using the Monitor Focus (Up) Left Center Right (Down) Deviation l (mm in) Correlation between interrupted beam width and output voltage mm.4 in Sensing object Emitter l + 6 mm 1.6 in Screeing edge position l (mm in) Correlation between transverse deviation and output voltage Horizontal direction Vertical direction mm 1.6 in mm 1.6 in 6 Emitter l Emitter l 4 Vertical direction The graph depicts the correlation between transverse deviation and Horizontal direction output voltage when the full-scale setting ranges from V (light beam is interrupted) to V (light beam is fully incident), using the Monitor Focus (Up) Left Center Right (Down) Deviation l (mm in) Correlation between interrupted beam width and output voltage mm.4 in Sensing object Emitter l mm 1.6 in Screeing edge position l (mm in)
5 Ultra-compact Sensor SERIES 14 PRECAUTIONS FOR PROPER Refer to General precautions and About laser beam. This catalog is a guide to select a suitable product. Be sure to read instruction manual attached to the product prior to its use. Never use this product as a sensing device for personnel protection. In case of using sensing devices for personnel protection, use products which meet laws and standards, such as OSHA, ANSI or IEC etc., for personnel protection applicable in each region or country. This product is classified as a Class 1 Product in IEC / JIS regulations and a Class II Product in FDA regulations 1 CFR Do not look at the laser beam through optical system such as a lens. The following label is attached to the product. Handle the product according to the instruction given on the warning label. Safe use of laser products The English warning label based on FDA regulations is pasted on the FDA regulations conforming type. Safety standards for laser beam products A laser beam can harm human being s eyes, skin, etc., because of its high energy density. IEC has classified laser products according to the degree of hazard and the stipulated safety requirements. The series is classified as Class 1 laser. (Refer to About laser beam.) Classification by IEC 6-1 Classification For the purpose of preventing users from suffering injuries by laser products, IEC 6-1 Safety of laser products. Kindly check the standards before use. (Refer to About laser beam.) Class 1 Class 1M Class Class M Class R Class B Description s that are safe under reasonably foreseeable conditions of operation, including the use of optical instruments for intrabeam viewing. s emitting in the wavelength range from. nm to 4, nm which are safe under reasonably foreseeable conditions of operation, but may be hazardous if the user employs optics within the beam. s that emit visible radiation in the wavelength range from 4 nm to 7 nm where eye protection is normally afforded by aversion responses, including the blink reflex. This reaction may be expected to provide adequate protection under reasonably foreseeable conditions of operation including the use of optical instruments for intrabeam viewing. s that emit visible radiation in the wavelength range from 4 nm to 7 nm where eye protection is normally afforded by aversion responses, including the blink reflex. However, viewing of the output may be more hazardous if the user employs optics within the beam. s that emit in the wavelength range from. nm to 1 6 nm where direct intrabeam viewing is potentially hazardous but the risk is lower than for Class B lasers, and fewer manufacturing requirements and control measures for the user apply than for Class B lasers. s that are nomally hazardous when direct intrabeam exposure occurs (i.e. within the NOHD). Viewing diffuse reflections is normally safe. s that are also capable of producing hazardous diffuse reflections. They may cause skin injuries and could also constitute a fire hazard. Summary of user precautions (IEC 6-1) * Quoted from Safety of laser products, Annex Table D. Requirements Classification subclause Class 1 Class 1M Class Class M Class R Class B Class 4 safety officer Class 4 Not required but recommended for applications that involve direct viewing of the laser beam Not required for visible emisson Required for nonvisible emission Required Remote interlock Not required Connect to room or door circuits Key control Not required Remove key when not in use attenuator Not required When in use prevents inadvertent exposure Emission indicator device Not required Indicates laser is energized for nonvisible wavelengths Indicates laser is energized Warning signs Not required Follow precautions on warning signs path Specular reflection Eye protection Not required Class 1M (Note 1) a s for Class B Class 1M (Note 1) as for Class B Not required Class M (Note ) as for Class B Class M (Note ) as for Class B Terminate beam at end of useful length Prevent unintentional reflections Required if engineering and administrative procedures not practicable and MPE exceeded Protective clothing Sometimes required Specific requirements Training Class 1M (Note 1) as for Class R Class M (Note ) as for Class R Required for all operator and maintenance personnel Notes: 1) Class 1M laser products that failed condition 1 of table 1. Not required for Class 1M laser products that failed condition of table 1. ) Class M laser products that failed condition 1 of table 1. Not required for Class M laser products that failed condition of table 1. Remarks: This table is intended to provide a convenient summary of precautions. See text of this standard for complete precautions. PARTICUR INTERCES
6 14 Ultra-compact Sensor SERIES PRECAUTIONS FOR PROPER Refer to General precautions and About laser beam. PARTICUR INTERCES Functions Function Zero reset Auto scaling Standard received light setting Scaling Hysteresis width setting Monitor focus Differential Display reverse ECO display Display digits limitation Zero reset memory Key lock Connection Details The following tasks can be done by executing zero reset. The display value can be set at. The linear output when the display reads is made the center output value of the points set by monitor focus. (In the default state, the current output is 1 ma and the voltage output is V.) The auto scaling selects whether to display the laser beam reception amount in the main-digital display in mm units or in % units, and determines whether the amount of laser beam received or the amount of laser beam interrupted is displayed. With the set standard laser beam reception amount as the reference value, the current laser beam reception amount (laser beam interrupted amount) is scaled automatically and is displayed as well as being output. This registers and stores the current laser beam reception amount in memory as the standard laser beam reception amount. The laser beam reception amount during full laser beam entry becomes the 1 % laser beam reception amount s full scale (F.S.). If this is used, the display and the linear output are set on the full scale (F.S.) automatically. It can also be used to correct the laser beam reception amount when there is a change in the laser beam reception amount due to dirt, etc. on the front glass. The scaling is a that changes the display value to the desired amount with respect to the setting value. At the desired distance, the display value can be input and changed. This sets the hysteresis to the desired value. With this, the linear output range and inclination, etc. with respect to the display value can be specified. Setting is done by determining the output values with respect to the desired display values. This makes the amount of change in the measured value an output value. Use this when measuring if you are paying attention to changes in measured values, as when counting the number of workpieces, etc. The digital display s direction can be selected. The forward direction or the reverse direction to match the direction of installation on the equipment can be selected. This makes the display dark and saves electric power. This determines the number of display digits in the main-digital and sub-digital displays. If the number of digits is limited, the digits are turned off beginning with the lowest order digit. This selects whether or not to save the zero reset level in memory when the power is turned OFF. If you desire to reproduce the zero reset level from the previous operating session when you turn the power ON again, then enable this. If this is enabled, the zero reset level data are written into the EEPROM each time. The controller s key input can be disabled. Once the key input is disabled, the controller will not accept any key inputs until the key lock is released. Use this to avoid changing the setting by mistake. This product is made to satisfy the specifications when the sensor head is combined with the controller. In any other combination, not only may it not satisfy the specifications, but could be the cause of breakdown. So by all means, use it so that there is a combination of the sensor head and the controller. Functional description Others Description emitting indicator ( ON) (Green LED) Judgment output indicators (HIGH / PASS / LOW) (Orange / Green / Yellow LED) Main digital display ( digit red LED) Sub-digital display ( digit yellow LED) Enable indicator (ENABLE) (Green LED) Zero reset indicator (ZERO) (Green LED) Mode selection switch Threshold value select switch UP key DOWN key RIGHT key LEFT key ENT key Function This product outputs the judgment of the laser light analog quantity. Since there is variation in the light intensity between the center and the edges of the detection area, and the emitter side and the receiver side, the display value does not equal the actual dimensions, so caution is necessary. Use the displayed dimensional value as a criterion. If the object being measured has a mirror surface or is a transparent body, it may be impossible to measure it accurately, so please exercise caution. Absolutely do not attempt to disassemble this product. Lights up when the sensor head is emitting laser beam. HIGH: Orange LED (lights up when measured value HIGH threshold value) PASS: Green LED ( lights up when HIGH threshold value measured value LOW threshold value) LOW: Yellow LED (lights up when LOW threshold value measured value) When in the RUN mode, it displays the measured value (mm/%). During measurement hold, it displays the hold value (mm/%). In Reverse mode, the top and bottom are displayed in reverse. When in the RUN mode, it displays the threshold value, voltage / current value, light reception amount or resolution. When in the THR mode, it displays the respective threshold values. In reverse mode, the top and bottom are displayed in reverse. Lights up when operation is normal. Goes off when operation is abnormal (if the sensor head is not connected when the power is turned on). Lights up when the zero reset is enabled. The following modes can be selected. RUN mode: Measuring mode THR mode: The threshold values are set in this mode. FUN mode: Each of the settings are set in this mode. When in the THR / RUN mode, this switches the set threshold value (HIGH / LOW). RUN mode: Timing input THR mode: Changes the threshold value (forward direction) FUN mode: Changes the setting value (forward direction) RUN mode: Press for sec. or more: Standard light reception amount setting input THR mode: Changes the threshold value (reverse direction) FUN mode: Changes the setting value (reverse direction) RUN mode: Changes the contents of the sub-digital display (forward direction) THR mode: Changes the threshold value digit (forward direction) FUN mode: Sets selection (forward direction) RUN mode: Changes the contents of the sub-digital display (reverse direction) THR mode: Changes the threshold value digit (reverse direction) FUN mode: Sets selection (reverse direction) RUN mode: Pressing for 1 sec. or more, executes zero reset. Pressing together with the RIGHT key for sec. or more, cancels zero reset. THR mode: When threshold value is blinking, the threshold value is set. When the threshold value lights up, teaching is executed. FUN mode: When the set value is blinking, the value is set. When the setting is being initialized, pressing for a long time executes initialization.
7 Ultra-compact Sensor SERIES 1 DIMENSIONS (Unit: mm in) The CAD data in the dimensions can be downloaded from our website. 1A(F) A(F) ø.6 ø.1 cable,. m 1.64 ft long (Gray) J.S.T. Mfg. Co., Ltd. XARR-4VF* Emitter..11 (6.) (1.47) (1.) (.).4 (6.) (.7) Certification / identification label (Note 1) ( µm 1.6 mil polyester film) (1) (.4) Light beam shielding plate (Note 1) Emission indicator (Green) Notes: 1) IEC / JIS conforming products do not contain light beam shielding plate, or certification / identification label. ) The receiver of 1A(F) does not incorporate a slit. 1A 1F ø.6 ø.1 cable,. m 1.64 ft long (Gray) J.S.T. Mfg. Co., Ltd. (6.) XARR-4VF* (1.47) Emission indicator (Green) (1) (.4) Light beam shielding plate (Note) Emitter.. (6.)(.7) (1.) (.) Note: IEC / JIS conforming products do not contain light beam shielding plate, or certification / identification label. HL-AC1 HL-AC1P Certification / identification label (Note) ( μm 1.6 mil polyester film) Mounting drawing with a mounting bracket MS-HC1-1 (Optional) approx. ø.1 ø.1 cable (.6) (.) Connector for sensor head connection Connector for calculation unit connection (on each side) ø. ø. cable, m 6.6 ft long Suitable for mm 1.7 in width DIN rail Sensor head ø.6 ø.1 cable,. m 1.64 ft long (Black) J.S.T. Mfg. Co., Ltd. XARR-4VF* * The sensor heads that were produced before January 6 use the connector shown below. Please note that the new connector and previous connector are incompatible. 1.4 axis (Note ).4 axis Molex 1-41 Molex 1-41 Sensor head ø.6 ø.1 cable,. m 1.64 ft long (Black)..11 J.S.T. Mfg. Co., Ltd. XARR-4VF* * The sensor heads that were produced before January 6 use the connector shown below. Please note that the new connector and previous connector are incompatible. HL-AC1-CL Calculation unit (Optional) Linking connector Connection indicator (Orange) Suitable for mm 1.7 in width DIN rail PARTICUR INTERCES
8 11 Ultra-compact Sensor SERIES DIMENSIONS (Unit: mm in) The CAD data in the dimensions can be downloaded from our website. PARTICUR INTERCES MS-HLT MS ø. ø MS-HC1-1 t 1. t t 1.6 t ø. ø Sensor head mounting bracket for 1A(F) / A(F) [Accessory for 1A(F) / A(F)] mounting bracket (Optional) Material: Cold rolled carbon steel (SPCC) (Uni-chrome plated) Two M (length mm in) screws with washers are attached Material: Cold rolled carbon steel (SPCC) (Uni-chrome plated) Two M (length mm.4 in) screws with washers are attached t 1.6 t.6 -M.... t 1. t M.. t 1.6 t.6 Assembly dimensions Mounting drawing with A s receiver Sensor head mounting bracket for 1A(F) [Accessory for 1A(F)] Assembly dimensions Mounting drawing with 1A s receiver CN-HLT1-1 ø ø (4.6). (1.6) (4.1) (1.776) t 1.6 t t 1. t.47.6 Sensor head to controller connection cable (Accessory for sensor head) Hirose Electric Co.,Ltd. RP17-1P-1PC , Gray Black ø.6 ø.1 J.S.T. Mfg. Co., Ltd. XAP-4V-1* * The sensor heads that were produced before January 6 use the connector shown below. Please note that the new connector and previous connector are incompatible. Molex
9 Ultra-compact Sensor SERIES 1 DIMENSIONS (Unit: mm in) The CAD data in the dimensions can be downloaded from our website. SV1 SV ø. ø Material: Polyetherimide (Enclosure), Glass (Front cover) Two M (length 6 mm.6 in) screws with washers are attached..7. axis Side-view attachment for 1A(F) / A(F) (Optional) Assembly dimensions Mounting drawing with A s receiver axis Assembly dimensions (4) (1.) Side-view attachment for 1A(F) (Optional) Mounting drawing with 1A s receiver PARTICUR..11 (46) (1.11).6.6 -ø. ø.7 axis axis INTERCES Material: Polyetherimide (Enclosure), Glass (Front cover) Two M (length 6 mm.6 in) screws with washers are attached. 1.7
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