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    The future in a beam

    Enhancing the future with laser technology: El.En. fosters dynamic research and development, to shape a future of excellent innovation. With 40 years of experience rooted in our passion, we ensure a solid foundation for our customers, paving the way for tomorrow's success.

    Three product series with high customization levels to meet even the most demanding production requests.

    CO₂ lasers

    Our laser sources are developed to be versatile and with high efficiency, productivity and performance across various applications and industries.

    Blade RF Self-Refilling (from 350W to 1500W) powered by NEP Technology. Blade RF Sealed-Off (from 80W to 600W)
    Scan Heads

    Our compact and versatile scanning heads are designed for CO2 laser systems with  precision and excellent dynamics for countless application fields.

    Laser Scanning Heads 3-Axis scan heads

    Laser Scanning Heads 2-Axis scan heads

    Galvanometers

    The new G-Series Galvanometers feature four different sizes, designed to deliver excellent performance in a wide range of applications. Equipped with an internally designed optical position sensor, they ensure high dynamic performance, accuracy, precision, reliability, and minimal thermal drift.

    Scanner Components XY Galvanometer Axes

    Scanner Components Z Axes motors

    Every day we work sinergically with our customers to develop cutting-edge solutions.

    Customized solutions

    Our team with its advanced skills and consolidated expertise in laser technology offers comprehensive support to customers throughout the entire process, from design to installation. Innovation and easy integration set us apart. Our technical experts and R&D team provide you with cutting-edge solutions, from start-up to post-sales.

     

    Our Technical Support department works diligently to understand the needs of our partners and manage each request effectively and promptly.

    Support

    Technical expertise, spare parts availability and timely intervention guarantee efficient production processes. Internal design and production, combined with passionate and qualified teams, are the key to our success. Global coverage ensures user and integrator satisfaction worldwide.

    The Future in a beam
    The Future in a beam
    The Future in a beam
    The Future in a beam
    The Future in a beam
    The Future in a beam
    The Future in a beam
    The Future in a beam
    The laser industry is constantly evolving. Keeping up to date with the latest technological developments is part of our job.
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    The laser industry is constantly evolving. Keeping up to date with the latest technological developments is part of our job.

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    sales@elen.it

    TELEFONO

    +39 055 882 6807

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    All rights reserved - Technical data and pictures are not binding. Aiming to product improvement El.En. S.p.A. reserves the right to change specifications without prior notice. Purchaser acknowledges that the products must comply with applicable regulations before they can be resold to customers. El.En. lasers are produced under a quality assurance system certified according to ISO 9001.
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    © Copyright 2025 - El.En. S.p.A. Cod. Fisc. e Reg. Imp. FI e P.Iva n. 03137680488 REA FI: 304871 - Cap.Soc. 2.600.200,59€ i.v.
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    CO₂ Lasers
    Laser Scan Heads
    Scanner Components
    CO₂ Lasers

    Blade RF Self Refilling (from 350W to 1500W)

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    Blade RF 1555

    Pure Powerhouse CO₂ laser with 1,5kW: compactness and never ending power

    View

    Rated power (W)

    1500

    Effective peak power (W)

    2400

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    9.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    2.0 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    65 (almost 1 cartridge per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 1555
    View

    Pure Powerhouse CO₂ laser with 1,5kW: compactness and never ending power

    Blade RF 1222

    A Powerful and strong CO₂ laser reaching 1,2kW average nominal power

    View

    Rated power (W)

    1200

    Effective peak power (W)

    2400

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    9.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    2.0 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    65 (almost 1 cartridge per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 1222
    View

    A Powerful and strong CO₂ laser reaching 1,2kW average nominal power

    Blade RF 899

    High reliability and stability thanks to Self Refilling technology with optimal laser beam parameters

    View

    Rated power (W)

    850

    Effective peak power (W)

    1800

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    10.5 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    0.8 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.1

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    24/36 (2/3 cartridges per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 899
    View

    High reliability and stability thanks to Self Refilling technology with optimal laser beam parameters

    Blade RF 888

    High reliability and stability thanks to Self Refilling technology with 850W average power

    View

    Rated power (W)

    850

    Effective peak power (W)

    1800

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    11.8 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    1.0 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    24/36 (2/3 cartridges per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 888
    View

    High reliability and stability thanks to Self Refilling technology with 850W average power

    Blade RF 777

    High reliability and stability thanks to Self Refilling technology with 750W average power

    View

    Rated power (W)

    750

    Effective peak power (W)

    1750

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    11.5 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    0.9 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    70%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    24 (2 cartridges per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 777
    View

    High reliability and stability thanks to Self Refilling technology with 750W average power

    Blade RF 555

    Stable and Robust thanks to Self Refillng technology, countless installations around the world prove its reliability

    View

    Rated power (W)

    550

    Effective peak power (W)

    1650

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    11.5 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    0.9 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    24 (2 cartridges per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 555
    View

    Stable and Robust thanks to Self Refillng technology, countless installations around the world prove its reliability

    Blade RF 333 P

    High reliability and stability thanks to Self Refilling technology with wide range of wavelengths

    View

    Rated power (W)

    320 ÷ 350

    Effective peak power (W)

    750

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.2 ± 0.2

    Polarization

    linear (parallel to base)

    Beam diameter (1/e² at the exit)

    7.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    2.0 ± 0.2

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.1

    Beam ellipticity

    1.1 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    24 (2 cartridges per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 333 P
    View

    High reliability and stability thanks to Self Refilling technology with wide range of wavelengths

    Blade RF 333

    High reliability and stability thanks to Self Refillng technology with wide range of wavelengths

    View

    Rated power (W)

    320 ÷ 350

    Effective peak power (W)

    850

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (parallel to base)

    Beam diameter (1/e² at the exit)

    7.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    2.0 ± 0.2

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.1

    Beam ellipticity

    1.1 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    24 (2 cartridges per year)

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 333
    View

    High reliability and stability thanks to Self Refillng technology with wide range of wavelengths

    Blade RF Sealed (from 80W to 600W)

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    Blade RF 606

    RF Sealed Pulsed Laser high peak power and wide range of wavelengths

    View

    Rated power (W)

    600

    Effective peak power (W)

    1650

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    Linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    10 ± 1

    Beam divergence (1/e² full angle) (mrad)

    ≤2

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    <1.2 : 1

    Optical pulse rise/fall time (μs)

    ≤50

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 606
    View

    RF Sealed Pulsed Laser high peak power and wide range of wavelengths

    Blade RF 505

    RF Sealed Pulsed Laser high peak power and wide range of wavelengths

    View

    Rated power (W)

    500

    Effective peak power (W)

    1650

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    Linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    10 ± 1

    Beam divergence (1/e² full angle) (mrad)

    ≤2

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    <1.2 : 1

    Optical pulse rise/fall time (μs)

    ≤50

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 505
    View

    RF Sealed Pulsed Laser high peak power and wide range of wavelengths

    Blade RF 404 G

    RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    View

    Rated power (W)

    400

    Effective peak power (W)

    >1200

    Power stability (long term)

    ±5%

    Wavelength (μm)

    9.3 ± 0.1

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    8.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    ≤3.0

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    <1.2 : 1

    Optical pulse rise/fall time (μs)

    ≤60 / ≤80

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 404 G
    View

    RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    Blade RF 404

    RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    View

    Rated power (W)

    400

    Effective peak power (W)

    >1200

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    8.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    ≤3.0

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    <1.2 : 1

    Optical pulse rise/fall time (μs)

    ≤60 / ≤100

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 404
    View

    RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    Blade RF 303 P

    Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    View

    Rated power (W)

    300

    Effective peak power (W)

    1100

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.2 ± 0.2

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    8.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    ≤2.0 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    50%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 303 P
    View

    Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    Blade RF 303 G

    Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    View

    Rated power (W)

    300

    Effective peak power (W)

    1100

    Power stability (long term)

    ±5%

    Wavelength (μm)

    9.3 ± 0.2

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    8.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    ≤2.0 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    50%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 303 G
    View

    Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    Blade RF 303

    Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    View

    Rated power (W)

    300

    Effective peak power (W)

    1100

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    8.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    ≤2.0 ± 0.1

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 150

    Maximum duty cycle

    50%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 303
    View

    Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths

    Blade RF 177

    Low Power RF Sealed Off Pulsed Laser, high peak power and wide range of wavelengths

    View

    Rated power (W)

    150

    Effective peak power (W)

    600

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (perpendicular to base)

    Beam diameter (1/e² at the exit)

    6.0 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    3.0 ± 0.3

    Maximum pulse frequency (kHz)

    100

    Pulse width range (μs)

    2 ÷ 1000

    Maximum duty cycle

    50%

    Mode quality (M²)

    < 1.15

    Beam ellipticity

    1.15 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 177
    View

    Low Power RF Sealed Off Pulsed Laser, high peak power and wide range of wavelengths

    Blade RF 88

    Low Power RF Sealed Pulsed Laser and  Optimal laser beam parameters

    View

    Rated power (W)

    80

    Effective peak power (W)

    200

    Power stability (long term)

    ±5%

    Wavelength (μm)

    10.6 ± 0.4

    Polarization

    linear (parallel to base)

    Beam diameter (1/e² at the exit)

    9.4 ± 0.5

    Beam divergence (1/e² full angle) (mrad)

    3.0 ± 0.3

    Maximum pulse frequency (kHz)

    50

    Pulse width range (μs)

    2 ÷ 1000

    Maximum duty cycle

    60%

    Mode quality (M²)

    < 1.2

    Beam ellipticity

    1.2 : 1

    Optical pulse rise/fall time (μs)

    < 50

    Typical gas mix consumption (NL/year)

    NA

    Operating ambient temperature range (°C)

    5 ÷ 35

    Storage Temperature range (°C)

    5 ÷ 50

    Maximum humidity

    Non condensing at inlet water temperature

    Blade RF 88
    View

    Low Power RF Sealed Pulsed Laser and  Optimal laser beam parameters

    Laser Scan Heads

    3-Axis scan heads

    View all
    AZSCAN 20
    View
    AZSCAN 20
    View
    AZSCAN HRTRIPLE

    Triple Modular High Speed Cutting, up to 2500W CO₂ laser power

    View

    Description

    3-axis triple scanning head

    Working area (mm)

    770×390

    Working distance (mm)

    535

    Wavelength (μm)

    10.6 ± 0.4

    Dimensions (mm)

    939x816x372

    Weight (kg)

    133

    AZSCAN HRTRIPLE
    View

    Triple Modular High Speed Cutting, up to 2500W CO₂ laser power

    AZSCAN HR70

    Designed for High Laser power and Large Working Area application

    View

    Description

    3-axis scanning head

    Working area (mm)

    from 500x500mm to 1800x1800mm

    Working distance (mm)

    depending on working area (***)

    Wavelength (μm)

    10.6 ± 0.4

    Dimensions (mm)

    750x405x381.5

    Weight (kg)

    46,5

    AZSCAN HR70
    View

    Designed for High Laser power and Large Working Area application

    AZSCAN S35

    High reliability and easy integration with El.En Lasers

    View

    Description

    3-axis scanning head

    Working area (mm)

    from 150x150mm to 800x800mm

    Working distance (mm)

    depending on working area (**)

    Wavelength (μm)

    10.6 ± 0.4

    Dimensions (mm)

    382x220x222

    Weight (kg)

    10,5

    AZSCAN S35
    View

    High reliability and easy integration with El.En Lasers

    2-Axis scan heads

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    FLEXISCAN M230

    High Speed, Precision and Compactness

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    Description

    2-axis scanning head

    Working area (mm)

    from 50x50mm to 300x300mm

    Working distance (mm)

    depending on f-theta

    Wavelength (μm)

    10.6 ± 0.4

    Dimensions (mm)

    220x148x203

    Weight (kg)

    6

    FLEXISCAN M230
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    High Speed, Precision and Compactness

    FLEXISCAN M220

    High Speed, Precision and Compactness

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    Description

    2-axis scanning head

    Working area (mm)

    from 50x50mm to 300x300mm

    Working distance (mm)

    depending on f-theta

    Wavelength (μm)

    10.6 ± 0.4

    Dimensions (mm)

    220x148x203

    Weight (kg)

    6

    FLEXISCAN M220
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    High Speed, Precision and Compactness

    Scanner Components

    XY Galvanometer Axes

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    G4080

    High dynamic performance assured on big size mirrors

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    Rated excursion rotor (°mech.)

    40

    Note
    42° mechanically limited

    Rotor inertia (g•cm²)

    55

    Note
    ± 10%

    Recommended aperture size (mm)

    40 ÷ 100

    Torque constant (mN•m/A)

    103

    Note
    ± 10%

    Back EMF (mV/(rad/s))

    103

    Note
    ± 10%

    Coil resistance (Ohm)

    2

    Note
    ± 10%

    Coil inductance (μH)

    1.1

    Note
    ± 10%

    Thermal resistance coil to case (°K/W)

    0.3

    Note
    Max

    RMS Coil current (A)

    10

    Note
    Max Stator’s temperature 60°C

    RMS Power (W)

    200

    Note
    Max Stator’s temperature 60°C

    Peak Coil current (A)

    35

    Note
    10 ms @ 20 Hz

    Weight (g)

    1400

    Linearity (%)

    99.9
    99.8

    Note
    Min over +/-15° mecc excursion
    Min over +/-20° mecc excursion

    Scale drift (ppm/K)

    +/-50

    Note
    Max, over 20 to 60°C case temperature

    Zero drift (μrad/°K)

    +/-15

    Note
    Max, over 20 to 60°C case temperature

    Long term drift (% f.s./year)

    0.1

    Repeatibility (μrad)

    15

    Note
    Short term, no temperature change

    Output signal, differential mode (μA/°mech)

    6*

    Output signal, common mode (μA)

    150

    Note
    Recommended

    Sensor power requirements (V ; mA)

    4.5-7
    15-30

    G4080
    View

    High dynamic performance assured on big size mirrors

    G3060

    High dynamic performance and a very low thermal drift

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    Rated excursion rotor (°mech.)

    40

    Note
    42° mechanically limited

    Rotor inertia (g•cm²)

    9

    Note
    ± 10%

    Recommended aperture size (mm)

    15 ÷ 40

    Torque constant (mN•m/A)

    48

    Note
    ± 10%

    Back EMF (mV/(rad/s))

    48

    Note
    ± 10%

    Coil resistance (Ohm)

    2.8

    Note
    ± 10%

    Coil inductance (μH)

    650

    Note
    ± 10%

    Thermal resistance coil to case (°K/W)

    0.65

    Note
    Max

    RMS Coil current (A)

    6

    Note
    Max Stator’s temperature 60°C

    RMS Power (W)

    90

    Note
    Max Stator’s temperature 60°C

    Peak Coil current (A)

    20

    Note
    10 ms @ 20 Hz

    Weight (g)

    330

    Linearity (%)

    99.95
    99.9

    Note
    Min over +/-15° mecc excursion
    Min over +/-20° mecc excursion

    Scale drift (ppm/K)

    +10/-35

    Note
    Max, over 20 to 60°C case temperature

    Zero drift (μrad/°K)

    ±8

    Note
    Max, over 20 to 60°C case temperature

    Long term drift (% f.s./year)

    0.05

    Repeatibility (μrad)

    10

    Note
    Short term, no temperature change

    Output signal, differential mode (μA/°mech)

    21.5

    Output signal, common mode (μA)

    280

    Note
    Recommended

    Sensor power requirements (V ; mA)

    20
    25

    G3060
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    High dynamic performance and a very low thermal drift

    G2860

    Largest size for low power lasers with high dynamic performance

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    Rated excursion rotor (°mech.)

    40

    Note
    42° mechanically limited

    Rotor inertia (g•cm²)

    1.9

    Note
    ± 10%

    Recommended aperture size (mm)

    8 ÷ 30

    Torque constant (mN•m/A)

    17.2

    Note
    ± 10%

    Back EMF (mV/(rad/s))

    17.2

    Note
    ± 10%

    Coil resistance (Ohm)

    1.6

    Note
    ± 10%

    Coil inductance (μH)

    270

    Note
    ± 10%

    Thermal resistance coil to case (°K/W)

    0.9

    Note
    Max

    RMS Coil current (A)

    5

    Note
    Max Stator’s temperature 60°C

    RMS Power (W)

    50

    Note
    Max Stator’s temperature 60°C

    Peak Coil current (A)

    20

    Note
    10 ms @ 20 Hz

    Weight (g)

    210

    Linearity (%)

    99.9
    99.8

    Note
    Min over +/-15° mecc excursion
    Min over +/-20° mecc excursion

    Scale drift (ppm/K)

    +/-50

    Note
    Max, over 20 to 60°C case temperature

    Zero drift (μrad/°K)

    +/-15

    Note
    Max, over 20 to 60°C case temperature

    Long term drift (% f.s./year)

    0.1

    Repeatibility (μrad)

    15

    Note
    Short term, no temperature change

    Output signal, differential mode (μA/°mech)

    6*

    Output signal, common mode (μA)

    150

    Note
    Recommended

    Sensor power requirements (V ; mA)

    4.5-7
    15-30

    G2860
    View

    Largest size for low power lasers with high dynamic performance

    G1222

    High dynamic performance for low-power laser

    View

    Rated excursion rotor (°mech.)

    40

    Note
    42° mechanically limited

    Rotor inertia (g•cm²)

    0.015

    Note
    ± 10%

    Recommended aperture size (mm)

    3 ÷ 8

    Torque constant (mN•m/A)

    2.2

    Note
    ± 10%

    Back EMF (mV/(rad/s))

    2.2

    Note
    ± 10%

    Coil resistance (Ohm)

    3.6

    Note
    ± 10%

    Coil inductance (μH)

    100

    Note
    ± 10%

    Thermal resistance coil to case (°K/W)

    4

    Note
    Max

    RMS Coil current (A)

    1.6

    Note
    Max Stator’s temperature 60°C

    RMS Power (W)

    10

    Note
    Max Stator’s temperature 60°C

    Peak Coil current (A)

    5

    Note
    10 ms @ 20 Hz

    Weight (g)

    27

    Linearity (%)

    99.9
    99.8

    Note
    Min over +/-15° mecc excursion
    Min over +/-20° mecc excursion

    Scale drift (ppm/K)

    +/-50

    Note
    Max, over 20 to 60°C case temperature

    Zero drift (μrad/°K)

    +/-15

    Note
    Max, over 20 to 60°C case temperature

    Long term drift (% f.s./year)

    0.1

    Repeatibility (μrad)

    15

    Note
    Short term, no temperature change

    Output signal, differential mode (μA/°mech)

    6

    Output signal, common mode (μA)

    150

    Note
    Recommended

    Sensor power requirements (V ; mA)

    4.5-7
    15-30

    G1222
    View

    High dynamic performance for low-power laser

    Z Axes motors

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    GZ2520

    Optimal Focusing for large laser beam

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    Optical aperture (mm)

    24

    Linearity (%)

    99.9% min

    over 20mm

    Scale drift (ppm/K)

    100 max

    Zero drift (μrad/°K)

    10 max

    Long term drift (% f.s./year)

    200 max

    Repeatibility (μrad)

    5 max

    Moving trolley excursion (mm)

    20 Typical / 21 Max

    Moving lens housing

    Ø 1”  * 4mm thickness Max

    Moving trolley speed (mm/s)

    1400 Max

    Moving trolley acceleration (G)

    25 Max

    Setting time (ms)

    3.6 @ Dx = 2mm Max

    15  @ Dx = 20mm Max

    Weight (g)

    510 ± 10%

    GZ2520
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    Optimal Focusing for large laser beam

    GZ1920

    Optimal Focusing with high speed lens movement

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    Moving trolley excursion (mm)

    20 Typical / 21 Max

    Moving lens housing

    Ø ¾” * 3mm thickness Max

    Optical aperture (mm)

    18

    Moving trolley mass (g)

    20 ± 10% (without lens)

    Moving trolley speed (mm/s)

    1600 Max

    Moving trolley acceleration (G)

    35 Max

    Setting time (ms)

    3.4 @ Dx = 2mm Max 

    12  @ Dx = 20mm Max

    Static friction (N)

    0.08 Max

    Coupling Constant (N/A)

    2 ± 20%

    Coil current (A)

    1.6 RMS Max

    8 Peak (10 ms @ 10 Hz) Max

    Coil Resistance (Ohm)

    2.8 ± 10%

    Coil inductance (μH)

    800 ± 10%

    Back EMF Voltage (mV/ (mm*s))

    2.3 ± 10% 

    Thermal Resistance, coil to stator (K/W)

    9 Max

    Coil Temperature (°C)

    120 Max

    Scanner Weight (g)

    460 ± 10%

    GZ1920
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    Optimal Focusing with high speed lens movement