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Supplier: Amphenol Cables on Demand
Description: 1x, 2x, 4x & 8x rated devices. Each SFP28 transceiver utilizes a high-reliability low-power 850nm VCSEL laser driver for flexible link distances up to 300m when used with OM3 or OM4 fiber. Perhaps the best feature of Amphenol's new 25GBASE-SR SFP28 Short-Range Optical
- Wavelength: 850 nm
- Data Rate: 28 Gbps
- Connector Type: LC
- Cable Type: Multimode
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Supplier: Amphenol Cables on Demand
Description: backwards compatibility with previous-generation QSFP devices including 40-Gigabit Ethernet (40GbE) QSFP+. Each QSFP28 transceiver utilizes a high-reliability low-power 850nm VCSEL laser driver for flexible link distances up to 300m when used with standard off-the-shelf
- Wavelength: 850 nm
- Data Rate: 112 Gbps
- Connector Type: MTP
- Cable Type: Multimode
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Supplier: Hamamatsu Photonics Europe
Description: rate is 1.25 Gbps, and this characteristic is maintained even when communicating between a 360˚ rotating object and stationary object. This product also has a built-in transmitter and receiver. For the transmitter we use a 850 nm VCSEL, and by combining it with a driver IC that can
- Operating Temperature: -40 to 85 C
- Photodiode Type: PIN Photodiode
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Supplier: e-con Systems™ Inc
Description: is equipped with VCSEL (Vertical Cavity Surface Emitting Laser) technology, emitting light at either 940nm or 850nm wavelengths, ensuring it is safe for human eyes. This versatile camera is suitable for both outdoor and indoor applications. It offers far and close-range modes,
- Horizontal Resolution: 640 lines
- Maximum Frame Rate: 30 fps
- Width / Diameter: 1.4960638 inch
- Height: 1.4960638 inch
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Supplier: Amphenol Cables on Demand
Description: & 4x rated devices. Each SFP+ transceiver utilizes a high-reliability low-power 850nm VCSEL laser driver for flexible link distances up to 300m when used with OM3 fiber. Perhaps the best feature of Amphenol's new 10GBASE-SR SFP+ Optical Modules is the fact that they offer
- Wavelength: 850 nm
- Data Rate: 11.3 Gbps
- Connector Type: LC
- Cable Type: Multimode
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design with firmware and software, mechanical design, fiber pigtailing of laser diodes and laser modules. 375, 445, 450, 473, 488, 515, 520, 525, 532, 561, 594, 633. 637, 640, 642, 647, 650, 658, 660, 670, 685, 690, 705, 730, 780, 830 and 852 nm lasers are available. We will be (read more)
Browse Lasers Datasheets for World Star Tech -
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wavelengths from 355 nm to 1550 nm, covering UV, visible, and near-infrared laser systems. Matched RF Driver Solutions:Compatible RF driver modules are available for simplified implementation and system optimization (read more)
Browse Laser Optics, Heads, and Beam Delivery Components Datasheets for CASTECH, Inc. -
-term system stability. Key Features and Engineering Benefits: • High extinction ratio (>5000:1 ICR @1064nm) for cleaner pulse generation and improved laser switching precision • Low insertion loss (read more)
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With capabilities in crystal processing, optical design, broadband RF driver development, and customized AOD solutions, CASTECH supports engineers in developing advanced laser scanning and optical control systems. (read more)
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drivers and fiber-coupling options, CASTECH AOTFs provide a comprehensive solution for high-precision optical control. Wide Operating Range: 400–1450 nm coverage for use in visible to near (read more)
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recognition, eye tracking, multimodal human machine interface (HMI), and automotive LiDAR. Evaluation of 850 or 940 nm light sources for accurate radiant intensity output at all angles. Measurement of NIR LEDs, lasers, and patterns produced by diffractive optical elements (DOE (read more)
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CASTECH 2D Acousto-Optic Deflectors (2D-AODs) are engineered for high-speed solid-state laser beam scanning without mechanical inertia. By varying the RF driving frequency, the system enables precise beam steering with random positioning, continuous line (read more)
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1. Product overview The lSL700DE is a highly-integrated CMOs photoelectric sensor lC designed forhigh-speed, programmable diffuse-reflective sensing. lt integrates an LED/laser emitter driver, a transimpedance/analog chain with sample (read more)
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An LTCC optical transceiver for radio-over-fiber
The transmitter shown in Fig. 1 consists of a 10 GHz 850 nm VCSEL and laser driver chips while the receiver has photodiode and linear amplifier chips mounted on it.
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Multiwavelength Approach to Unidentified Gamma-Ray Sources
ThePMTsignalsareamplifiedatthecameraandtransmittedover162mlongoptical fibers using Vertical Cavity Emitting Laser Drivers ( VCSELs , 850 nm wavelength).
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Status and First Results of the MAGIC Telescope
The PMT signals are amplified at the camera and transmitted over 162 m long optical fibers using Vertical Cavity Emitting Laser Drivers ( VCSELs , 850 nm wavelenght).
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The MAGIC Project: Contributions to ICRC 2005, Pune, India, Part 3:
MAGIC Detector and Analysis Details
The PMT signals are transmitted over 162 m long optical fibers using Vertical Cavity Emitting Laser Drivers ( VCSELs , 850 nm wavelength).
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The trigger system of the MAGIC telescope
The signals from the PMTs are amplified inside the camera enclosure and transmitted over 162 m long optical fibers using Vertical Cavity Emitting Laser Drivers ( VCSELs , 850 nm wavelength) to reduce the weight and size of standard copper cables and to minimize …
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The Trigger System of the MAGIC Telescope
The signals from the PMTs are amplified inside the camera enclosure and transmitted over 162 m long optical fibers using Vertical Cavity Emitting Laser Drivers ( VCSELs , 850 nm wavelength) to reduce the weight and size compared to stan- dard copper cables and …
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Status and First Results of the Magic Telescope
ThePMTsignalsareamplifiedatthecameraandtransmittedover162mlongoptical fibers using Vertical Cavity Emitting Laser Drivers ( VCSELs , 850 nm wavelength).
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An optical centralized shared-bus architecture demonstrator for microprocessor-to-memory interconnects
A transmitter module consists of an 850 – nm VCSEL and a laser driver that accepts differential PECL inputs and pro- vides complementary modulation currents.
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High bit rate polymer optical fiber links: Design and demonstration
A COB transmitter was assembled from a COTS laser driver IC, an 850 nm VCSEL die, and the insert, encapsulated as shown in Figure 5.
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Technology development of a high-density 32-channel 16-Gb/s optical data link for optical interconnection applications for the optoelectronic technology consor...
The main com- ponents of the transmitterand the receiver modules are a GaAs- based vertical cavity surface emitting laser ( VCSEL ) array at 850 nm with its IC driver array chip and an integrated metal- semiconductor-metal(MSM) receiver (photodetectorand signal processing circuits …
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