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sensors:lsm111 [2012/09/10 14:56] karina [Specifications] |
sensors:lsm111 [2021/08/14 04:21] (current) |
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| LMS 1XX | LMS 1XX | ||
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| + | LMS 1XX | ||
| + | {{: | ||
| {{: | {{: | ||
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| + | SOPAS | ||
| + | {{: | ||
| ====== Specifications ====== | ====== Specifications ====== | ||
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| |[[sensors: | |[[sensors: | ||
| |[[sensors: | |[[sensors: | ||
| + | |[[sensors: | ||
| |[[sensors: | |[[sensors: | ||
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| ^ ^Minimum^Typical^Maximum^ | ^ ^Minimum^Typical^Maximum^ | ||
| |Laser protection class|Laser class 1 according IEC 60825H1 (2007H3) (complies with 21 CFR 1040.10 with the exception of the deviations as per Laser Notice No. 50, July 26, 2001)||| | |Laser protection class|Laser class 1 according IEC 60825H1 (2007H3) (complies with 21 CFR 1040.10 with the exception of the deviations as per Laser Notice No. 50, July 26, 2001)||| | ||
| - | |Enclosure rating|As per EN 60529 (1991H10); A1 (2002H02)||| | + | |**Enclosure rating**|As per EN 60529 (1991H10); A1 (2002H02)||| |
| |- LMS100/ | |- LMS100/ | ||
| |- LMS111/ | |- LMS111/ | ||
| Line 61: | Line 67: | ||
| |**Operating temperature range**|||| | |**Operating temperature range**|||| | ||
| |- LMS100/ | |- LMS100/ | ||
| - | ||||| | + | |- LMS111/ |
| - | ||||| | + | |Storage temperature range|–30 °C (86 °F)| |+70 °C (158 °F) max. 24 h| |
| - | ||||| | + | |Humidity (taking into account the operating temperature range)|DIN EN 60068H2H61, method 1||| |
| - | ||||| | + | |**Vibration resistance**|As per EN 60068H2H6 (1995H04)||| |
| - | ||||| | + | |- Frequency range|10 Hz| |150 Hz| |
| - | ||||| | + | |- Amplitude|5 g RMS| | | |
| - | ||||| | + | |**Shock resistance**|As per EN 60068H2H27 (1993H03), EN 60068H2H29 (1993H04)||| |
| - | ||||| | + | |- Single shock|15 g (0.53 oz), 11 ms||| |
| - | ||||| | + | |- Continuous shock|10 g (0.35 oz), 16 ms||| |
| - | ||||| | + | |**Sender**|Pulsed laser diode||| |
| - | ||||| | + | |- Wave length|895 nm|905 nm|915 nm| |
| - | ||||| | + | |- Divergence of the collimated beam (solid angle)| |15 mrad| | |
| - | ||||| | + | |- Light spot size at the optics cover| |8 mm (0.32 in)| | |
| - | ||||| | + | |- Light spot size at 18 m (59.05 ft) scanning range| |300 mm (11.82 in)| | |
| - | ||||| | + | |**Housing**|||| |
| - | ||||| | + | |- Material|GDHALSI12 3.2582.05||| |
| - | ||||| | + | |- Colour LMS100|RAL 5012 (blue)||| |
| - | ||||| | + | |- Colour LMS122|RAL 9005 (black)||| |
| + | |- Colour LMS123|RAL 9003 (white)||| | ||
| + | |- Colour LMS111/ | ||
| + | |- Alloy|Excellent weather resistance as per DIN EN 106:1988, plate 3||| | ||
| + | |**Optics cover**|||| | ||
| + | |- Material|Polycarbonate||| | ||
| + | |- Surface finish|Outside with scratch-resistant coating||| | ||
| + | |**System plug** (LMS100/ | ||
| + | |- Material|GDHALSI12 3.2582.05||| | ||
| + | |- Colour LMS100/ | ||
| + | |- Colour LMS123|RAL 9003 (white)||| | ||
| + | |**Cable entries **(LMS111/ | ||
| + | |- Material|Stainless steel/ | ||
| + | |**Dimensions**(3*)|||| | ||
| + | |- Height LMS100/ | ||
| + | |- Height LMS111/ | ||
| + | |- Width| | |102 mm (4.02 in)| | ||
| + | |- Depth| | |106 mm (4.18 in)| | ||
| + | |- Total weight (without connecting cables)| |1.1 kg (2.43 lb)|| | ||
| + | |||
| + | |||
| + | ===== Electrical data ===== | ||
| + | ^ ^Minimum^Typical^Maximum^ | ||
| + | |Supply voltage LMS100/ | ||
| + | |Supply voltage LMS122/ | ||
| + | |Permissible residual ripple| | |±5%| | ||
| + | |Supply voltage for the LMS111/ | ||
| + | |Switch on current| | |2 A| | ||
| + | |Operating current at 24 V without output load| |0.35 A|0.5 A| | ||
| + | |Operating current with max. output load| |0.65 A|0.8 A| | ||
| + | |Operating current with maximum heating performance| |2.3 A|2.5 A| | ||
| + | |Power consumption without output load| |8.4 W|12 W| | ||
| + | |Power consumption with maximum output load| |16 W |20 W| | ||
| + | |Power consumption with maximum heating performance| |55 W| 60 W| | ||
| + | |Electrical connection LMS111/ | ||
| + | |Electrical connection LMS100/ | ||
| + | |**Technical specifications**, | ||
| + | |- Cross-section of rigid cores (American Wire Gauge — AWG)|0.14 mm2 (approx. 26 AWG)| |1.5 mm2 (approx. 16 AWG)| | ||
| + | |- Cross-section of flexible cores (American Wire Gauge — AWG)|0.14 mm2 (approx. 26 AWG)| |1.0 mm2 (approx. 18 AWG)| | ||
| + | |- Insulation stripping length for the cores| |5 mm (0.2 in)| | | ||
| + | |- Screw tightening torque|0.22 Nm| |0.3 Nm| | ||
| + | |**Cable length** for device power supply at 24 V|||| | ||
| + | |- With 1 mm2 wire cross-section (approx. 18 AWG)| | |220 m (721.78 ft)| | ||
| + | |- With 0.5 mm2 wire cross-section (approx. 22 AWG)| | |110 m (360.89 ft)| | ||
| + | |With 0.25 mm2 wire cross-section (approx. 24 AWG)| | |50 m (164.04 ft)| | ||
| + | |**Cable length** for heating at 24 V|||| | ||
| + | |- With 1 mm2 wire cross-section (approx. 18 AWG)| | |45 m (147.64 ft)| | ||
| + | |- With 0.5 mm2 wire cross-section (approx. 22 AWG)| | |20 m (65.62 ft)| | ||
| + | |- With 0.25 mm2 wire cross-section (approx. 24 AWG)| | |10 m (32.81 ft)| | ||
| + | |**Cable length** for device power supply at 12 V|||| | ||
| + | |- With 1 mm2 wire cross-section (approx. 18 AWG)| | |20 m (65.62 ft)| | ||
| + | |- With 0.5 mm2 wire cross-section (approx. 22 AWG)| | |10 m (32.81 ft)| | ||
| + | |- With 0.25 mm2 wire cross-section (approx. 24 AWG)| | |5m (16.40 ft)| | ||
| + | |**Switching inputs**|||| | ||
| + | |- Number|2||| | ||
| + | |- Input resistance on HIGH| |2 kΩ| | | ||
| + | |- Voltage for HIGH|11 V|24 V|30 V| | ||
| + | |- Voltage for LOW| |0 V|5 V| | ||
| + | |- Input capacity| |15 nF| | | ||
| + | |- Static input current|6 mA| |15 mA| | ||
| + | |**Dynamic control inputs**|||| | ||
| + | |- Number|2||| | ||
| + | |- Input resistance on HIGH| |2 kΩ| | | ||
| + | |- Voltage for HIGH|11 V|24 V|30 V| | ||
| + | |- Voltage for LOW|-3 V|0 V|5 V| | ||
| + | |- Input capacity| |1 nF| | | ||
| + | |- Static input current|6 mA| |15 mA| | ||
| + | |- Duty cycle (Ti/T)| |0.5| | | ||
| + | |- Input frequency| | |100 kHz| | ||
| + | |- Current load per incremental encoder| |50 mA|100 mA| | ||
| + | |**Velocity range that can be sampled**|||| | ||
| + | |- Forward|From +100 mm/s to +20,000 mm/s (3.94 in/s to +788 in/s)||| | ||
| + | |- Backward|From –10 mm/s to –20,000 mm/s (–0.39 in/s to –788 in/s)||| | ||
| + | |**Incremental encoders that can be evaluated**|||| | ||
| + | |- Type|Two-channel rotary encoder with 90° phase offset||| | ||
| + | |- Enclosure rating|IP 54| | | | ||
| + | |- Supply voltage|U< | ||
| + | |- Outputs required on the incremental encoders|Push&/ | ||
| + | |- Pulse frequency| | |100 kHz| | ||
| + | |- Number of pulses per cm|50| | | | ||
| + | |- Cable length (screened)| | |10 m (32.81 ft)| | ||
| + | |**Digital switching outputs** LMS100/ | ||
| + | |- Number|3||| | ||
| + | |- Voltage drop load| |2 V| | | ||
| + | |- Maximum switching current| | |140 mA| | ||
| + | |- Current limiting (after 5 ms at 25°C (77 °F)|100 mA| |200 mA| | ||
| + | |- Power-up delay|Negligible||| | ||
| + | |- Switch off time| |0.8 ms|2 ms| | ||
| + | |**Relay switching outputs** LMS122/ | ||
| + | |- Number|2||| | ||
| + | |- Switching capacity| | |DC 30 W/ AC 37,5 VA| | ||
| + | |- Switching voltage| | |DC 110 V/ AC 125 V| | ||
| + | |- Switching current| | |0.5 A at DC 30 V| | ||
| + | |- Switching capacity| | |10μA DC 10 mV| | ||
| + | |- Switching cycles|10< | ||
| + | |- Power-up delay| |2 ms|4 ms| | ||
| + | |- Switch off time| |2 ms|4 ms| | ||
| + | |**Serial auxiliary interface**|||| | ||
| + | |- Communication protocol|RSH232 (proprietary)||| | ||
| + | |- Transmission speed|9,600 Baud|57.6 kBd|115.2 kBd| | ||
| + | |**Serial host interface**|||| | ||
| + | |- Communication protocol|RSH232 (proprietary)||| | ||
| + | |- Transmission speed (selectable)|9, | ||
| + | |- Cable length at 38.400 kBd and wire cross- section 0.25 mm2 (approx. 24 AWG)| | |15 m (49.21 ft)| | ||
| + | |- Galvanic de-coupling|Yes||| | ||
| + | |- Wire cross-section of the connecting cable| | |0.25 mm2 (approx. 24 AWG)| | ||
| + | |Ethernet|10/ | ||
| + | |CAN|20 kBit/s, 500 kBit/s, 1 Mbit/s||| | ||
| - | ==== (1*)(2*)(3*) ==== | + | ===== (1*)(2*)(3*) |
| |(1*) Corresponds to Diamond Grade 3000XTM (approx. 1,250 cd/lx × m2).|||| | |(1*) Corresponds to Diamond Grade 3000XTM (approx. 1,250 cd/lx × m2).|||| | ||