Business > Industrial Devices > Automation Controls Top > FA Sensors & Components > Sensors > Photoelectric Sensors / Laser Sensors > LED Type Wafer Alignment Sensor Controller HD-T1 > Specifications
Model No. | HD-T1030 | |
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Applicable controller | HD-T1C | |
Sensing width | 30 mm 1.181 in (Linearity is specified at 28 mm 1.102 in width.) | |
Sensing range | 30 mm 1.181 in (fixed) (Note 2) | |
Pollution degree | 3 (Industrial environment) | |
Ambient temperature | 0 to +40 ℃ +32 to +104 ℉ (No dew condensation), Storage: -20 to +55 ℃ -4 to +131 ℉ |
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Ambient humidity | 35 to 85 % RH, Storage: 35 to 85 % RH | |
Ambient illuminance | Incandescent light: 3,000 lx or less at the light-receiving face, Fluorescent light: 3,000 lx or less at the light-receiving face |
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Voltage withstandability | 1,000 V AC for one min. between all supply terminals connected together and enclosure | |
Insulation resistance | 20 MΩ, or more, with 250 V DC megger between all supply terminals connected together and enclosure | |
Vibration resistance | 10 to 150 Hz frequency, 0.75 mm 0.030 in double amplitude in X, Y and Z directions for two hours each | |
Shock resistance | 490 m/s2 acceleration (50 G approx.) in X, Y and Z directions three times each | |
Emitting element | Red LED (Peak emission wavelength: 650 nm 0.026 mil) | |
Receiving element | Photodiode | |
Material | Enclosure: PEI, Front cover: Glass, Mounting base: Aluminum | |
Cable | Heat-resistant PVC cable, 0.5 m 1.640 ft long, with a connector at the end | |
Weight | Net weight: 150 g approx. |
Note 1: | Where measurement conditions have not been specified precisely, the conditions used were an ambient temperature of +20 ℃ +68 ℉. |
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Note 2: | The value is in a state that the sensor is mounted on the mounting base at the time of factory shipment. |
Model No. | HD-T1C | |
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Applicable sensor head | HD-T1030 | |
Supply voltage | 24 V DC ± 10 % Ripple P-P 10 % or less | |
Current consumption | 70 mA or less (Including sensor head) | |
Analog output | Analog voltage - Output voltage: 1 ± 0.5 V (all light interrupted) to 5 ± 0.5 V (all light received) - Output impedance: 75 Ω |
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Response time | 0.5 ms or less (8 V/ms or more) | |
Resolution | 30 μm 1.181 mil (Note 2) | |
Linearity | ±1.0 % F.S. (at 28 mm 1.102 in sensing width of the sensing center) (Note 3) | |
Temperature characteristics | ±0.1 % F.S./℃ (at 24 ± 2 ℃ 75.2 ± 35.6 ℉) (Note 3) | |
Span adjustment function | Span of the analog output voltage is adjusted. 15-turn endless adjuster | |
Shift adjustment function | Offset of the analog output voltage is adjusted. 15-turn endless adjuster | |
Warming-up period | 30 min. or more | |
Environmental resistance | Pollution degree | 3 (Industrial environment) |
Ambient temperature | 0 to +40 ℃ +32 to +104 ℉ (No dew condensation), Storage: -20 to +70 ℃ -4 to +158 ℉ |
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Ambient humidity | 35 to 85 % RH, Storage: 35 to 85 % RH | |
Voltage withstandability | 1,000 V AC for one min. between all supply terminals connected together and enclosure | |
Insulation resistance | 20 MΩ, or more, with 250 V DC megger between all supply terminals connected together and enclosure | |
Vibration resistance | 10 to 150 Hz frequency, 0.75 mm 0.030 in double amplitude in X, Y and Z directions for two hours each | |
Shock resistance | 490 m/s2 acceleration (50 G approx.) in X, Y and Z directions three times each | |
Material | Enclosure: Heat-resistant ABS, Connector cover: Heat-resistant ABS, Adjuster cover: Polycarbonate | |
Cable | 0.22 mm2 3-core heat-resistant PVC cable, 0.3 m 0.984 ft long | |
Cable extension | Extension up to total 3 m 9.843 ft is possible with 0.3 mm2, or more, heat-resistant PVC cable. | |
Weight | Net weight: 85 g approx. |
Note 1: | Where measurement conditions have not been specified precisely, the conditions used were an ambient temperature of +20 ℃ +68 ℉. |
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Note 2: | Resolution refers to the peak to peak distance conversion value of analog output (in the frequency band below 20 MHz). |
Note 3: | This is the representative example of measurement with a combination of sensor head and controller. |
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