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Fiber Optic Sensor Head Variations
FU Series
11 Fiber Optic Sensor Head Variations. Flexible Stainless Steel Jacket. Wide Area Detection. Hex-shaped Heads for Trouble-free Mounting. Heat resistant. Small Beam Spot. Thin-sleeve Thrubeams
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RGB Digital Fiber Optic Amplifier
CZ Series
RGB Digital Fiber Optic Type. RGB three-light source. Wide detection range of up to 7020 mm. High-speed response of 300 s. Water-resistant sensor head IP-67 rated
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1/4-Inch Cube Corner
10713D
The Keysight 10713D is one component of a family of measurement optics that tailor interferometer systems for the physical layout and measurement requirements of individual applications. Configured with appropriate laser head and system electronics, the optics are part of a precise positioning system that improves product quality, increases yields, and facilitates manufacture of precision products.
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Fiber Optic Sensors
Leuze electronic GmbH + Co. KG
Plastic fiber optics are suitable for universal applications with low space requirements for object detection. Glass fiber optics are used in demanding environmental conditions with high temperatures and are resistant to chemicals. For radiation through foils or applications with high light power, they offer further advantages through the especially low damping. The flexible fiber optics with various head shapes can be integrated in nearly any system design. The detection range is dependent on the fiber optics and amplifiers used. Fiber optics can be used with the throughbeam principle or with scanning function. As a fiber array with multiple light beams, they can be used to detect especially small objects.
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Tripod
10753B
The Keysight 10753B Tripod provides a mounting for the Keysight 5519A/B laser head. The tripod allows Keysight 5530Laser Calibrationsystem optics to be located remotely from the laser head, yielding greater accuracy and simplifying fixturing. The remote setup also eliminates heat-caused distortions. The Keysight 10753B adjusts for height, rotation, tilt, and lateral offset. The tripod is collapsible, covers a height range of 900 mm (35.5 in) to 1630 mm (64.0 in), and has a net weight of 14 kg (31 lb). The Keysight 10753B tripod complements a family of measurement optics and lasers that comprise Keysight laser interferometer calibration systems.
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GigE® Fiberoptic
Teledyne Princeton Instruments
This specifically designed fiber optic data interface kit allows the computer and the GigE® camera head to be separated by up to 550 m without the loss of data. The kit consists of two compact, high speed transceivers (interface modules) for completely transparent operation between the host computer and the camera.
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USB 2.0 Fiberoptic
Teledyne Princeton Instruments
This specially designed fiber optic data interface kit allows the computer and the USB 2.0 camera head to be separated by up to 500 m without the loss of data. This kit consists of two compact, high speed transceivers (interface modules) for completely transparent operation between the host computer and the camera.
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Laser Trackers
Radian Series
The smallest, lightest, most accurate laser measurement tool. API’s compact and rigid UNIBODY tracker design allows for shaft mounted motors, encoders and laser. The UNIBODY shaft mounted laser innovation minimizes Abbe offset errors, while also housing laser source, optics, camera and major head electronics in the center of the tracker body.
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Receiver
10780C
The Keysight 10780C is a highly-sensitive, lowest-cost Keysight receiver used with laser interferometer positioning systems. One receiver is used per measurement axis (including wavelength tracker). Configured with Keysight electronics, laser heads, cables and optics, the Keysight 10780C receiver allows you tailor a precise positioning system for your exact application requirements.
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Yamasaki Optical Fiber Identifier
TF916
The Yamasaki TF916 Optical Fiber Identifier is an essential part of any professional fiber optic toolkit. By inserting fiber into the Yamasaki TF916 Optical Fiber Identifier head, the Yamasaki TF916 Optical Fiber Identifier can be used to identify traffic, traffic direction, frequency and optical power within any singlemode optical fiber. The sleek black outer housing is comprised of an anodized aluminum to make it lightweight and tough. Also included with the Yamasaki TF916 Optical Fiber Identifier are four adaptor heads that are specifically designed to suit various optical fiber types with minimal bend loss. The easy to read ultra-bright LED display and audible tone make operation easier and can save you valuable time in the field.
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Portable Bar Code Verifier
Inspector Model D4000 Auto Optic
The Model D4000 Auto Optic provides ISO 15416 and ANSI X3.182 Method. This unique portable bar code verifier can interface with either the patented RJS Auto-Optic scan head or a laser scanner (either in a single piece or connected with a cable). Store and print capability, multiple scan averaging and subsymbology choices are easily accessed through a simple four-button user interface. The scanners are easily installed by the user, which makes the unit quickly adaptable to practically any verification requirement.
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Portable Bar Code Verifier
Inspector 5000 Auto Optic
The Inspector 5000 Auto Optic provides ISO 15416 and ANSI X3.182 Method. This unique portable bar code verifier can interface with either the patented RJS Auto-Optic scan head or a laser scanner. Store and print capability, multiple scan averaging and subsymbology choices are easily accessed through a simple seven-button user interface with a large color LCD display. The scanners are easily installed by the user, which makes the unit quickly adaptable to practically any verification requirement.
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Panoramic Boroscope
H Series
The H Series Rigid Borescope is a Borescope with a Revolving Prism that allows for a 140 Degree total Field of View instantly from Straight Forward to 110 Degree to the rear. Totally eliminated are the different Borescopes each with their own viewing angle or sleeves with similar limitations.One unit viewed directly or connected to Video allows 100 percent examination of any cavity without any limitations.The rotating Prism located in the front of the rigid Borescope swings over a 95 Degree arc, to allow for this major accomplishment with a 45 Degree Field of View within its arc. This rotating capability necessitates a slightly larger head diameter than the body of the Multiscope.The H Series Rigid Borescope uses a Fiber Optic Illumination, which necessitates the purchase of a fiber optic bundle to connect to a Halogen Light Source either the FOI-150 150 Watt Halogen.
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Bit Error Test & Arbitrary Waveform Generation
SHF Communication Technologies AG
SHF’s Bit Pattern Generators (BPG) or Pulse Pattern Generators (PPG), Error Analyzers (EA) and remote heads form a Bit Error Ratio Tester (BERT) suite, which supports a vast number of different applications including high speed Ethernet rates like 100GbE, 200GbE, 400GbE and 1TbE. When it comes to signal generation an Arbitrary Waveform Generator (AWG) is the all-in-one device suitable for every purpose in Telecommunication, Optics, Medicine, Radar, Physics or even Quantum Computing.
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Goniophotometers
Goniometer has the capability not to only fit into almost every optical laboratory, but also to provide measurement data on concise level. The type C set up of this instrument enables the developer of single LEDs, LED modules or chips to study angular performance in many development stages; fast and most important: reliable. The detector head of the goniometer is a high-quality, visible-range spectrometer, equipped with diffuser optics to collect all important measurement quantities over the customer required angular range. With a maximum allowable source sample size of 300mmx100mm and 25kg, the new benchtop goniometer covers a wide range of LED measurement requirements. The footprint of the instrument itself with 1.65mx0.60mx1.73m allows the usage also in small dark rooms and optical laboratories.
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Benchtop Goniometer
This small goniometer has the capability not to only fit into almost every optical laboratory, but also to provide measurement data on concise level. The type C set up of this instrument enables the developer of single LEDs, LED modules or chips to study angular performance in many development stages; fast and most important: reliable. The detector head of the goniometer is a high-quality, visible-range spectrometer, equipped with diffuser optics to collect all important measurement quantities over the customer required angular range. With a maximum allowable source sample size of 300mmx100mm and 25kg, the new benchtop goniometer covers a wide range of LED measurement requirements. The footprint of the instrument itself with 1.65mx0.60mx1.73m allows the usage also in small dark rooms and optical laboratories.
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Optical Power And Energy Meters
Thorlabs' expanding line of optical power and energy meters includes power meter consoles, a large selection of sensor heads, a wireless power meter with a built-in photodiode sensor, and a fiber optic power meter designed for use in the field. The consoles (PM100, PM400, and PM300 Series) when paired with our extensive line of power and energy sensors provide calibrated (NIST traceable) measurements across a broad range of powers, energies, and wavelengths. The console(s) and sensor(s) can be purchased individually or as bundles based on our most popular console and sensor pairings. The sensor calibration data is stored in the sensor head and is automatically read by the console, which allows the user to use multiple sensors with the same console. Compatible sensors are easily identified by the red c-series connector. All of our old A/B-Type sensors are available with the new connector; plus, we have continued to expand our power and energy sensor product lines.
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Picosecond Laser
PIXEA
The PIXEA is a high-quality laser system for OEM and R&D applications generating ultra-short optical pulses by using gain-switched laser diode technologies. The laser features high-quality picosecond laser pulses with no satellite pulses and minimize pulse tail. The PIXEA series offer a large variety of centered wavelengths between 375 nm and 2 um. The pulse duration down to 20 ps is optimized for each wavelength. The system is based in two modules or one module, the laser head and the dedicated Control Unit including the GUI software. Different optical output options are available, including free space collimating optics and fiber coupled.
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CPRI Interface Panel Kits for Connectivity Testing
RFS’ CPRI Interface Panels are used to test fiber connectivity between Optical Base Band Units (BBU) and Remote Radio Heads (RRH), allowing cell operations and system performance engineers to ensure the best performance without having to disconnect the fiber optical system or disrupt service. In addition, the CPRI panel enables easy RF over CPRI testing at the bottom of the tower, reducing the need for unnecessary tower climbs, thus minimizing maintenance cost and overall OPEX for customers. The RFS CPRI panel is bundled with RFS’ high-quality fiber optic jumpers, providing an end-to-end solution that includes HYBRIFLEX® fiber-to-the-antenna DC and F/O solutions.