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Excelitas X-Cite XLED1 Microscope LED Fluorescence Light Source, Excelitas (CAT#: STEM-M-0318-LGZ)

Highlights

1. Maximum power, independent LED control. Use up to four high-power LED modules with fine excitation control while balancing illumination intensity between channels and protecting specimens from photodamage.
2. The X-Cite Microscope Adapter leads the industry in field uniformity, requires no calibration, saves maintenance time, and ensures confidence in experimental results.
3. Fast wavelength switching captures fast cellular dynamics. Each LED module and associated optical components can be quickly swapped in the field for another wavelength as required by your application.

Cat Number: STEM-M-0318-LGZ

Application: X-Cite XLED1 is a high-power LED light source designed for optimized fluorophore excitation with unmatched LED switching speed.

Model: X-Cite XLED1

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Description

The manufacturer of Excelitas X-Cite XLED1 Microscope LED Fluorescence Light Source is Excelitas. Model is X-Cite XLED1. The X-Cite XLED1 configuration includes: X-Cite XLED1 illumination system, four modules, user manual (CD) with GUI and USB drive, quick start rail, liquid light rail, microscope adapter, power cord, four excitation filter holders, USB cable. The X-Cite XLED1 is a high-power LED light source designed for optimized fluorophore excitation with unmatched LED switching speed. Its unique plug-and-play module enables the system to evolve with changing research applications, featuring easily interchangeable LED modules. With unprecedented wavelength switching speed to capture rapid cellular dynamics and advanced triggering options including X-Cite Live Cell Mode to extend live cell imaging experiments, the X-Cite XLED1 represents the next generation of fluorescence in the industry LED lighting.

Specification

Condition: used
Wavelengths: Wavelengths and configurator available at http: //www.excelitas.com/X-Cite-LED-Module-Configurator.aspx
Dimensions: 8.5″ (W) x 8″ (H) x 15″ (D) (22 cm x 20 cm x 39 cm)
Weight: ~7.3 kg, ~16 lbs (full system)
Supply: Universal input of 100-240 Volts AC, 50-60 Hz. Fused at 6.3 A
Connectivity:
USB type-B female
Trigger Input BNC (TTL-compatible)
Sync Output BNC (TTL-compatible)
Triggering:
Internal/External User-defined per channel
Global trigger input
User-defined free-running or single shot pulse modes
Internal triggering generated from internal pulse generator 10µs (min), up to 18 hours (max)
Sync Out: Mapped echo of LED cycles on separate output pins
Sync Out Phase Control: Individual control of sync phase advance/retard (half of max cycle duration)
Channel Switching Speeds: USB < 1 ms; Internal/External TTL Triggering down to10 μs
Minimum Duty Cycle: 10 µs

X-Cite XLED1 Touch Screen Controller (Optional)
Screen: Medical/Industrial grade 7″ touch screen; 16: 9 aspect ratio and LED backlight with adjustable intensity
Resolution: 800 x 480 pixels
Display Viewing Area: 6″ (W) x 3.5″ (H) (15 cm x 9 cm)
External Dimensions: 8″ (W) x 2.5″ (H) x 5.5″ (D) (20 cm x 7 cm x 14 cm)
Program: Lumen Dynamics proprietary graphical user interface
Connectivity: ~2.5 m connectorized power and data combo cable
Power: < 10 watts
Certifications: CE Marked, Certified to IEC, Canadian and US standards, RoHS compliant

Features

1. Maximum power, independent LED control. Use up to four high-power LED modules with fine excitation control while balancing illumination intensity between channels and protecting specimens from photodamage.
2. The X-Cite Microscope Adapter leads the industry in field uniformity, requires no calibration, saves maintenance time, and ensures confidence in experimental results.
3. Fast wavelength switching captures fast cellular dynamics. Each LED module and associated optical components can be quickly swapped in the field for another wavelength as required by your application.
4. Each LED module is designed to integrate and easily swap individual excitation filters, allowing accelerated wavelength switching beyond the reach of motorized filter wheels.
5. Flexible trigger sequence or simultaneous imaging. Trigger sequences can be combined with a high degree of control over the intensity of a single LED to excite and image multiple fluorophores, when examining very fast-moving specimens or for live-cell ratio imaging.
6. Researchers can extend the time frame of their live-cell imaging experiments by reducing the extent of free radical formation caused by continuous irradiation of fluorescent proteins.

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