ZX-L
Capteur de mesure laser intelligent, rapide et précis
Le capteur intelligent ZX-L propose une technologie 'plug & measure' pour les applications nécessitant une résolution élevée et un temps de réponse rapide. Une large gamme de têtes de capteur interchangeables offre une plus grande flexibilité pour les applications les plus exigeantes.
- Têtes de capteur petites et légères pour faciliter l'intégration
- Temps de réponse ultrarapide de 150 µs
- Remplacement facile des têtes de capteurs
- Système évolutif grâce à son concept de plateforme modulaire
- Mesure multipoint avec jusqu'à 5 capteurs
Caractéristiques et références
Ordering information
Sensors
Sensor head (reflection type)
Resolution 1 |
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Sensor head (through-beam)
Resolution 2 |
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Amplifier units
Note: Compatible with sensor head connection.
Accessories (order separately)
Calculating unit
Side-view attachments
SmartMonitor sensor setup tool for Personal Computer connection
ZX-SW11EV31 |
Cables with connectors on both ends (for extension)1
9 m2 |
*1 Robot cable models are also available. The model numbers are ZX-XC_R.
*2 For use only with reflective sensors.
Specifications
Sensor head (reflection type)
Visible-light semiconductor laser (wavelength 650 nm, 1 mW or less, Class 2) |
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Beam diameter5 |
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Resolution6 |
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Linearity7 |
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Temperature characteristic8 |
±0.03% FS/°C (except for ZX-LD300 and ZX-LD300L, which are ±0.1% FS/°C.) |
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Operating: 0 to 50°C, storage: -15 to 60°C (with no icing or condensation) |
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10 to 150 Hz, 0.7-mm double amplitude 80 min each in X, Y, and Z directions |
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300 m/s2 3 times each in six directions (up/down, left/right, forward/backward) |
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Case: PBT (polybutylene terephthalate), |
Case: PBT (polybutylene terephthalate), |
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Note: Highly reflective objects can result in incorrect detection by causing out-of-range measurements.
Sensor head (through-beam)
Visible-light semiconductor laser (wavelength 650 nm, 1 mW or less, Class 1) |
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Resolution9 |
4 µm10 |
4 µm11 |
12 µm12 |
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Operating: 0 to 50°C, storage: -25 to 70°C (with no icing or condensation) |
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Amplifier units
Possible average count settings13 |
1, 2, 4, 8, 16, 32, 64, 128, 256, 512, 1,024, 2,048, or 4,096 |
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When connected to a reflective sensor head: 0.01% FS/°C, when connected to a through-beam sensor head: 0.1% FS/°C |
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Linear output14 |
4 to 20 mA/FS, max. load resistance: 300 Ω, ± 4 V ( ± 5 V, 1 to 5 V 15), output impedance: 100 Ω |
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Judgement outputs |
NPN open-collector outputs, 30 VDC, 50 mA max. |
PNP open-collector outputs, 30 VDC, 50 mA max. |
Laser OFF input, zero reset input, timing input, reset input |
ON: Short-circuited with 0-V terminal or 1.5 V or less |
ON: Supply voltage short-circuited or supply voltage within 1.5 V |
Measurement value display, present value/set value/light level/resolution display, scaling, display reverse, display OFF mode, ECO mode, number of display digit changes, sample hold, peak hold, bottom hold, peak-to-peak hold, self-peak hold, self-bottom hold, average hold, delay hold, intensity mode, zero reset, initial reset, ON-delay timer, OFF-delay timer, one-shot timer, deviation, previous value comparison, sensitivity adjustment, keep/clamp switch, direct threshold value setting, position teaching, 2-point teaching, automatic teaching, hysteresis width setting, timing inputs, reset input, monitor focus, linear output compensation, (A-B) calculations16, (A+B) calculations4, mutual interference4, laser deterioration detection, zero reset memory, zero reset display, key lock |
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Operation indicators: High (orange), pass (green), low (yellow), 7-segment main display (red), 7-segment subdisplay (yellow), laser ON (green), zero reset (green), enable (green) |
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140 mA max. with power supply voltage of 24 VDC (with sensor connected) |
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Operating: 0 to 50°C, storage: -15 to 60°C (with no icing or condensation) |
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10 to 150 Hz, 0.7-mm double amplitude 80 min each in X, Y, and Z directions |
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300 m/s2 3 times each in six directions (up/down, left/right, forward/backward) |
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Case: PBT (polybutylene terephthalate), cover: Polycarbonate |
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Calculating unit
ZX-series Communications Interface Unit
CompoWay/F17 |
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Data bits: 8, parity: none, start bits: 1, stop bits: 1, flow control: none |
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Power supply: green, sensor communications: green, sensor communications error: red, external terminal communications: green, external |
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Operating: 0 to 50°C, storage: -15 to 60°C (with no icing or condensation) |
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Case: PBT (polybutylene terephthalate), cover: Polycarbonate |
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3.
When using the ZX-TDA11/41 with the SmartMonitor, either the ZX-SFW11EV3 or the
ZX-SW11EV3 SmartMonitor must be used. Earlier versions cannot be used.
5. Beam diameter: This is the value of the measurement center distance (actual value), and is defined at 1/e2 (13.5%) of the central light intensity. If there is stray light outside, the defined area and the area around the object has a higher reflectance than the object.
6. Resolution: Indicates the amount of fluctuation (±3 δ) in the linear output when connected to the ZX-LDA. (The measured value when the average count of the ZX-LDA is set to 4,096 and our standard object (white ceramic) is used for the central distance.) This indicates the repeatability precision when the work is in a static state, and does indicate the distance precision. The resolution performance may not be satisfactory in a strong electromagnetic field.
7. Linearity: This indicates the error with respect to the ideal straight line of the displacement output when measuring our standard object.
8. Temperature characteristic: The temperature characteristic is measured at the measurement point with the sensor and reference object (Omron’s standard reference object) secured with an aluminum jig.
9. The amount of fluctuation (±3 δ) of the linear output when connected to an amplifier unit, converted to a detection span.
10. When the average count is 64. 5 µm when the count is 32. The value when the smallest detection object shades the vicinity of the center of the 1 mm dia. detection span.
13.
The response speed of the linear output is calculated as the measurement period x (average count setting + 1) (with fixed sensitivity).
The response speed of the judgement outputs is calculated as the measurement period x (average count setting + 1) (with fixed sensitivity).
3.
When using the ZX-TDA11/41 with the SmartMonitor, either the ZX-SFW11EV3 or the
ZX-SW11EV3 SmartMonitor must be used. Earlier versions cannot be used.
5. Beam diameter: This is the value of the measurement center distance (actual value), and is defined at 1/e2 (13.5%) of the central light intensity. If there is stray light outside, the defined area and the area around the object has a higher reflectance than the object.
6. Resolution: Indicates the amount of fluctuation (±3 δ) in the linear output when connected to the ZX-LDA. (The measured value when the average count of the ZX-LDA is set to 4,096 and our standard object (white ceramic) is used for the central distance.) This indicates the repeatability precision when the work is in a static state, and does indicate the distance precision. The resolution performance may not be satisfactory in a strong electromagnetic field.
7. Linearity: This indicates the error with respect to the ideal straight line of the displacement output when measuring our standard object.
8. Temperature characteristic: The temperature characteristic is measured at the measurement point with the sensor and reference object (Omron’s standard reference object) secured with an aluminum jig.
9. The amount of fluctuation (±3 δ) of the linear output when connected to an amplifier unit, converted to a detection span.
10. When the average count is 64. 5 µm when the count is 32. The value when the smallest detection object shades the vicinity of the center of the 1 mm dia. detection span.
13.
The response speed of the linear output is calculated as the measurement period x (average count setting + 1) (with fixed sensitivity).
The response speed of the judgement outputs is calculated as the measurement period x (average count setting + 1) (with fixed sensitivity).
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