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ZS-HL
Precyzyjny, modułowy czujnik laserowy z możliwością rozbudowywania
Inteligentny czujnik ZS-HL posiada znakomity zasięg dynamicznej detekcji wszystkich powierzchni - od czarnej gumy po szklane i lustrzane powierzchnie. Czujnik ZS-HL jest rozszerzoną wersją modelu ZS-L, umożliwiającą wykonywanie pomiarów na dalsze odległości i z jeszcze większą precyzją.
- najwyższy zakres dynamicznej detekcji wszystkich powierzchni
- koncepcja modułowej i łatwej do rozbudowania platformy z możliwością użycia do 9 czujników
- prostota eksploatacji, instalacji i konserwacji na wszystkich poziomach użytkowania
- krótki czas reakcji rzędu 110 µs
- wielozadaniowość, która oznacza zarządzanie maksymalnie 4 narzędziami pomiarowymi za pomocą jednego kontrolera
Modele i specyfikacja
Ordering information
Sensors
ZS-HL-series sensor heads
ZS-HL-series sensor heads (for nozzle gaps) also compatible with ZS-L controller
ZS-L-series sensor heads
3
3.
This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
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ZS-HL-series sensor controllers
Multi-controllers
Data storage units
Accessories (sold separately)
Controller link
Panel mount adapter
Cables for connecting to a Personal Computer
Extension cables for sensor heads
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Logging software
Memory card
Safety precautions for using laser equipment
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Specifications
Sensor heads
ZS-HL-series sensor heads
*1 Defined as 1/e² (13.5%) of the center optical intensity in the measurement center distance. The beam diameter is sometimes influenced by the ambient conditions of the workpiece such as leaked light from the main beam.
*2 This is the error on the measured value with respect to an ideal straight line. Linear curve may change according to the workpiece. The following lists the workpieces
*3 This is the “peak-to-peak” displacement conversion value of the displacement output in the measurement center distance when high-resolution mode and the average number in the table are set (For ZS-HLDS60, the maximum resolution at 250 mm is also included). The following lists the workpieces.
*4 Value obtained when the sensor part and object part are fixed with an aluminum jig.
ZS-L-series sensor heads
Visible semiconductor laser (wavelength: 650 nm, 1 mW max., JIS Class 2) |
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8
8.
This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
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110 µs (high-speed mode), 500 µs (standard mode), 2.2 ms (high-precision mode), 4.4 ms (high-sensitivity mode) |
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Lights near the measuring center distance, and nearer than the measuring center distance inside the measuring range. Flashes when the measurement target is outside of the measuring range or when the received light amount is insufficient. |
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Lights near the measuring center distance, and further than the measuring center distance inside the measuring range. Flashes when the measurement target is outside of the measuring range or when the received light amount is insufficient. |
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Illumination on received light surface: 3,000 lx or less (incandescent light) |
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Operating: 0 to 50°C, storage: -15 to 60°C (with no icing or condensation) |
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Laser labels (1 each for JIS/EN, 3 for FDA), ferrite cores (2), insure Locks (2), instruction sheet |
Laser safety labels (1 each for JIS/EN),ferrite cores (2), insure locks (2) |
ZS-L-series sensor heads
Visible semiconductor laser (wavelength: 650 nm, 1 mW max., JIS Class 2) |
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13
13.
This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
|
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110 µs (high-speed mode), 500 µs (standard mode), 2.2 ms (high-precision mode), 4.4 ms (high-sensitivity mode) |
||||||||||||
Lights near the measuring center distance, and nearer than the measuring center distance inside the measuring range. Flashes when the measurement target is outside of the measuring range or when the received light amount is insufficient. |
||||||||||||
Lights near the measuring center distance, and further than the measuring center distance inside the measuring range. Flashes when the measurement target is outside of the measuring range or when the received light amount is insufficient. |
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Illumination on received light surface: 3,000 lx or less (incandescent light) |
Illumination on received light surface: 2,000 lx or less (incandescent light) |
Illumination on received light surface: 3,000 lx or less (incandescent light) |
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Operating: 0 to 50°C, storage: -15 to 60°C (with no icing or condensation) |
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Laser labels (1 each for JIS/EN, 3 for FDA), ferrite cores (2), insure Locks (2), instruction sheet |
Sensor controllers
ZS-HL-series sensor controllers
ZS-MDC11/MDC41 multi controllers
Basic specifications are the same as those for the sensor controllers.
The following points, however, are different.
(1) Sensor heads cannot be connected.
(2) A maximum 9 of controllers can be connected. Control link units are required to connect controllers.
(3) Processing functions between controllers: Math functions
Controller link unit
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Data storage units
3. This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
6. Defined as 1/e² (13.5%) of the center optical intensity at the actual measurement center distance (effective value). The beam diameter is sometimes influenced by the ambient conditions of the workpiece, such as leaked light from the main beam.
7. This is the error in the measured value with respect to an ideal straight line. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode of the ZS-LD20T/40T/50. Linearity may change according to the workpiece.
8. This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
9. This is the value obtained at the measuring center distance when the Sensor and workpiece are fixed by an aluminum jig.
11. Defined as 1/e² (13.5%) of the center optical intensity at the actual measurement center distance (effective value). The beam diameter is sometimes influenced by the ambient conditions of the workpiece, such as leaked light from the main beam.
12. This is the error in the measured value with respect to an ideal straight line. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode of the ZS-LD20T/40T/50. Linearity may change according to the workpiece.
13. This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
*1 Defined as 1/e² (13.5%) of the center optical intensity in the measurement center distance. The beam diameter is sometimes influenced by the ambient conditions of the workpiece such as leaked light from the main beam.
*2 This is the error on the measured value with respect to an ideal straight line. Linear curve may change according to the workpiece. The following lists the workpieces
*3 This is the “peak-to-peak” displacement conversion value of the displacement output in the measurement center distance when high-resolution mode and the average number in the table are set (For ZS-HLDS60, the maximum resolution at 250 mm is also included). The following lists the workpieces.
3. This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
6. Defined as 1/e² (13.5%) of the center optical intensity at the actual measurement center distance (effective value). The beam diameter is sometimes influenced by the ambient conditions of the workpiece, such as leaked light from the main beam.
7. This is the error in the measured value with respect to an ideal straight line. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode of the ZS-LD20T/40T/50. Linearity may change according to the workpiece.
8. This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
9. This is the value obtained at the measuring center distance when the Sensor and workpiece are fixed by an aluminum jig.
11. Defined as 1/e² (13.5%) of the center optical intensity at the actual measurement center distance (effective value). The beam diameter is sometimes influenced by the ambient conditions of the workpiece, such as leaked light from the main beam.
12. This is the error in the measured value with respect to an ideal straight line. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode of the ZS-LD20T/40T/50. Linearity may change according to the workpiece.
13. This is the peak-to-peak displacement conversion value in the displacement output at the measuring center distance in high-precision mode when the number of samples to average is set to 128 and the measuring mode is set to the high-resolution mode. The standard workpiece is white aluminum ceramics in diffuse reflection mode and glass in the regular reflection mode.
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Proszę o kontakt ZS-HL
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Dziękujemy za wysłanie zapytania. Otrzymasz od nas odpowiedź tak szybko, jak to tylko będzie możliwe.
Problem techniczny. Akcja nie została wykonana. Przepraszamy - spróbuj ponownie.
DownloadOferta dla ZS-HL
Poniżej możecie Państwo wysłać zapytanie cenowe dotyczące naszych produktów. Prosimy wypełnić wszystkie pola oznaczone *. Twoje dane osobowe będą oczywiście traktowane jako poufne.
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Dziękujemy za zlecenie wyceny. Dostarczymy Ci niezbędnych informacji tak szybko, jak to tylko będzie możliwe.
Problem techniczny. Akcja nie została wykonana. Przepraszamy - spróbuj ponownie.
DownloadCechy
Pomiar odległości — Powierzchnia dysku
Czujnik weryfikuje kozłowanie dysku poprzez precyzyjny pomiar odległości od powierzchni wysoce odbijającej.
Grubość szkła — Przednia szyba
System ZS jest w stanie zmierzyć grubość przezroczystego obiektu przy użyciu jednej głowicy czujnika.
Pomiar wysokości – Warstwy kleju
Czujnik precyzyjnie mierzy wysokość półprzezroczystej warstwy kleju.
Pomiar grubości – Czarna guma
System ZS mierzy grubość materiału gumowego w kolorze czarnym matowym przy użyciu dwóch czujników i jednostki obliczeniowej.
Kontrola płaskości – Tłok
Kilka czujników mierzy płaskość powierzchni odbijającej, przygotowanej obróbką skrawaniem.