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High Current / High Voltage Pulsers
DEI Division
Berkeley Nucleonics Corporation
is optimized for high impedance capacitive loads, driving extraction grids and deflection plates, and pulsing or gating power tube grids. It generates an output voltage of 6,000 volts with rise and fall times less than 60ns, with very flat voltage pulses from 160 nanoseconds to DC into a capacitive load.
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Dual Channel Driver Card
42460
Two channels of 32 MHz clock drivers with up to 20 volt amplitude. The output voltage range is ±20 V, with independent high and low voltage settings. The inputs to the Card can be optically isolated. The card also contains voltage and current sense capability, which allows muxing of the current or voltage output measurements from all the Driver Channels in the system to a single DVM. The card allows independent programming of the rise and fall time of each channel one nanosecond increments.
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SEM- Based Dectors
ScintiFast™
ScintiFast™ is El-Mul’s flagship scintillator technology enabling the next generation of detectors with shorter response time and higher sensitivity. Recently released, ScintFast™ has the highest available photon yield for the nanosecond scintillator category. ScintiFast™ is the scintillator of choice for detectors in SEM-based tools for the semiconductor market as well as in Time of Flight Mass Spectrometry instruments.
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SP1T RF Pin Diode Switches To 18 GHz
Pulsar Microwave manufactures pin diode RF switches that are controlled by TTL logic. This configuration is known as single pole, single throw and is often abbreviated SPST or SP1T. They have been engineered to function in 50-ohm systems, and are designed to operate from 40 MHz to 18 GHz. They have a switching time of 100 nanoseconds and input power rating of 200 mW (23 dBm). Performance of 1.6:1 or better VSWR and minimum isolation of 60 dB is typical of most models.All switches of this type require both +5VDC and -5VDC to operate. Typical current consumption is +/- 30 mA. TTL control logic of 0 to +5VDC is required. Units comes standard with SMA connectors.
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SparkFun GNSS Timing Breakout
ZED-F9T (Qwiic)
The SparkFun GNSS Timing Breakout offers a unique entry into SparkFun's geospatial catalog featuring the ZED-F9T GNSS receiver from u-blox. The ZED-F9T provides up to five nanosecond timing accuracy under clear skies with no external GNSS correction making it perfect for applications where timing accuracy is imperative. Need an extremely accurate time reference to maximize the efficiency of your IoT network of 5G devices? The ZED-F9T GNSS Timing Breakout could be the perfect solution.
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Flashlamp Pumped Actively Q-switched Lasers
NL300 Series
NL300 series electro-optically Q-switched nanosecond Nd:YAG lasers provide up to 800 mJ per pulse at 1064 nm. A wide range of harmonic generator modules for generation up to a 5th harmonic (213 nm) is available. The NL300 series nanosecond lasers are an excellent choice for many applications, including laser ablation and marking, OPO pumping and other critical tasks.
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Pulse generator
9355-1
Solar Model 9355-1 Pulse Generator is designed to provide impulse excitation by means of an injection probe placed around interconnecting cables or power wires. The unit uses a charged transmission line (50 ohms) to generate a pulse with less than 2 nanoseconds rise and fall time, and duration of approximately 30 nS, calibrated in a 50 ohm fixture to deliver up to 5 amperes at a rate of 30 p.p.s. for one minute as required by MIL-STD-461D/E, test method CS115.
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Jitter Free I/O Access Fast Data Acquisition
TiCoBasic
Shortest available reaction time for fast data acquisition, open- and closed-loop control! This focus of Jger Messtechnik is greatly intensified by the new TiCo processor, which enables real-time processing in the scale of nanoseconds. The TiCo (Timing Controller) being implemented into a Xilinx FPGA enhances the approved ADwin systems by a close-to-I/O, extremely fast pre-processing.
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Manage Power, Thermal & Control Planes In Real Time
Platform Manager 2 & L-ASC10
*Full fault coverage – monitor all rails and temperature nodes*Manage from 10 to 80 supplies using just the required number of L-ASC10 hardware management expanders*Minimize fault propagation by enabling individual hardware management sub-blocks (power, thermal & control path) to respond to faults in other blocks within nano-seconds*Save CPLD I/O pins by eliminating the need to monitor power-good signals of DC-DC converters*Reliable power & thermal fault detection in hardware, as opposed to software routines
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Interface
R15-EC
The R15-EC card provides the highest level of performance and density for MIL-STD-1553A/B in an ExpressCard form factor. The R15-EC card provides 1 or 2 channels integrated with powerful API software that provides instant access to all 1553 databus functionality and data. Standard features include real-time bus playback (with ability to edit out RTs), aperiodic message insertion, error injection/detection, conditional BC branching, 64-bit, 25 nanosecond message timetagging, and “Oneshot” BC operation. The Bus Monitor mode provides 100% bus monitoring of a fully loaded 1553 bus. IRIG-B Receiver (AM or DC/TTL) Generator (DC/TTL) optionally available.
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Intermittent Fault Detection & Isolation System
IFDIS
The IFDIS™ uses patented Intermittent Fault Detector technology that simultaneously and continuously monitors every circuit path within a Unit Under Test (UUT) - such as a Line Replaceable Unit (LRU) chassis' interconnects - for intermittent continuity failures that occur for as short as 50 nanoseconds. This state of the art technology is combined with an environmental chamber and vibration table, which simulate the UUT’s operational environment and cause intermittent faults to manifest, creating a system that is unsurpassed in intermittent fault detection.
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Dual Channel Driver Card
40461
Two channels of 8 to 10 MHz drivers (25 V amplitude). The output voltage range is ±25V, with independent high and low voltage settings. The inputs to the Card are optically isolated. The card also contains voltage and current sense capability, which allows muxing of the current or voltage output measurements from all the Driver Channels in the system to a single DVM. The card allows independent programming of the rise and fall time of each channel as low as one nanosecond increments.
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Ka-band Power Amplifier (33-37 GHz, 10 Watt Output Power)
*Frequency band, GHz: 33-37 *Output power, typical, W: 10 (40 dBm) *Gain, dB, typical: 30*Gain flatness: 2 dB Max *Pulse width, Max.: 100 nanoseconds - 60 microseconds *Pulse reptition frequency: up to 100 KHz *Oprating temparture: -40 deg. Celsius to 60 deg. Celsius *Dimensions: 245 mm x 124 mm x 30 mm
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Nanosecond Pulsed Lasers
Our nanosecond pulsed lasers feature pulses in the ns range. For picosecond and femtosecond lasers please see Ultrafast Lasers.
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SPDT PIN Diode Switches
Fairview offers a comprehensive selection of 23 different models of SPDT PIN diode switches that cover frequencies ranging from 10 MHz to 67 GHz. The high isolation levels up to 80 dB ensure that unwanted signals will not leak into the desired signal path. Other critical performance features include low insertion loss as low as 1.1 dB and fast switching speed performance as low as 50 nanoseconds. Both absorptive and reflective designs are available and every model utilizes integrated TTL compatible high speed driver logic circuitry. These SPDT switches are constructed using MIL-Grade rugged coaxial packages and several models support field replaceable connectors. All models are EAR99.
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Pulse & Delay Generators
The benchtop pulse generators feature a fast risetime and low jitter. Our most popular digital delay pulse series 575 and 577 generators are now available with selectable time references. With up to eight channels of delay and width control, each individual channel's reference can be set either to the trigger or to any other channel. So look below if you require a picosecond pulse generator or nanosecond pulse generator for your application.
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Intensified Cameras - Ultra-Sensitive CMOS Cameras from Deep UV to NIR Spectrum
iCameras
The cameras are equipped with a high-resolution sensor with high frame rate for excellent quality of image production, which is well‐suited to detect high speed moving objects or ultra-fast phenomenon.The mechanical architecture of the iCamera is small, compact and light-weight, especially designed for easy integration into any system.The iCamera features an exceptional sensitivity based on high QE image intensifier - ultra-fast gating technology down to a few nanoseconds, which allows it to be coupled with a laser source to perform high fidelity active imaging.
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GPS Master Clock
Signals & Systems India Private Limited
GPS Master Clock System – MCS-GPSMC-1010 is a 3U Card rack type, 19” Rack-mountable Redundant GPS Time Server which synchronizes and maintains the timing and frequency requirement of power and process industry equipment using a signal obtained from any one of the sources like GPS or GLONASS or Time protocols such as NTP and IRIG. It distributing the same time signal through several types of interfaces. It provides redundancy for Power and GPS receiver to increase reliability and offers protection against time synchronization failure. The system is field-upgradeable and an extremely flexible system, designed to handle time synchronization requirements today and in the future. It provides nanosecond accuracy when external time references are not available. It has a storage facility to store the system log file. It delivers NTP, SNTP, IRIG-B, PFC-Pulse, DCF77, BCD parallel data, Ethernet Fiber Optic & RS485/RS232 outputs. System enables configuration and monitoring through Web-based application. It supports a wide range of power supply either 90V-260V AC/DC or 18-36VDC or 36V-72VDC. Power supply model can be mixed and matched as required by the user, depending upon power supply options available at the installation site.
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Pulsed X-ray technology
Golden Engineering X-ray generators are based on Pulsed X-ray technology. Pulsed X-rays generate a high intensity X-ray burst (pulse) in a very short period of time (10 to 50 nanoseconds depending on the model). The output dose of each pulse is 3-6 mR measured 12 inches from the front of the X-ray generator. The operator varies the overall dose of each exposure by changing the pulse setting. The pulse rate varies from 10 pulses per second to 25 pulses per second depending on the model. The generators can fire up to 200 pulses before a four-minute rest period.
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*Pulse Characterization Sensors
Pulse Characterization Sensors provide the ability to see and measure the temporal characteristics of pulsed and CW laser beams. Ophir Fast Photodiode Detectors are designed to convert optical signals into electrical signals which are then measured with third-party instrumentation such as oscilloscopes and spectrum analyzers. Accessories are available to connect to IS6 integrating spheres or fiber optic cables. Attenuating filter accessories are also available to increase their dynamic range. Different models offer silicon, UV enhanced silicon and InGaAs PIN photodiodes, covering a combined spectral range of 193 nm to 1700 nm. Rise times range from 25 picoseconds to 3 nanoseconds. The fast rise times are achieved by an internal reverse bias voltage circuit. Power is supplied by internal batteries and/or an external power supply depending on the model. Detectors should be connected to a 50Ω impedance in order to maintain their nominal rise times. They can be connected to higher impedance loads, but this will result in a significant increase in the rise time. If higher output voltage is required, it is recommended to connect the detector to a trans-impedance amplifier with an Input impedance of 50Ω
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Radar Level Gauge
HRRD730 Series
HighReach Measuring & Controlling System Co.,Ltd
At The Radar Level gauge Antenna emits and Narrows at The Microwave Pulse. This Pulse propagates in Space AT at The Speed of Light. The When IT Encounters at The Surface of at The the Measured Medium, Part of the ITS Energy IS the REFLECTED the Back and Received by at The Same, Antenna. At The Time interval The Between the transmitted pulse and the received pulse is proportional to the distance from the antenna to the surface of the measured medium.Because the electromagnetic wave propagation speed is extremely high, the time interval between the transmitted pulse and the received pulse is very small (on the order of nanoseconds). It is difficult to confirm. The 90X series 26G radar level gauge uses a special demodulation technology To accurately identify the transmitted pulse and the time interval of the pulse is received to further calculate the distance of the antenna from the surface of the measured medium.
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Motor Termination Units
Since the rise time of IGBTs are in the range of a few tens of nanoseconds (between 50ns-200ns), even short cables between PWM motor drives and motors cause voltage doubling at the motor terminals due to Travelling Wave Phenomenon as in transmission lines. The insulation of motor windings are prone to failure due to high voltage spikes if necessary precautions are not sufficiently taken. RC Type Output Filter Modules reduce these high voltage spikes to protect motors by connecting to stator terminals.
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Pulsed And CW EPR/ESR: Synthesizers Up To 280 GHz
Insight Product Company offers synthesizers at frequencies from 30 to 280 GHz which can be used in EPR/ ESR experiments. These sythnesizers are designed to go swiftly from the generation to the non-generation mode and back. This process is controlled by external TTL signal. There is also the possibility to manipulate the phase, namely to shift it by 90 degrees and 180 degrees. ON/OFF switch time is approximately 2 nanoseconds.
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IRIG B to NTP/SNTP Converter
Signals & Systems India Private Limited
IRIG B TO NTP/SNTP CONVERTER – SPC-INS-1010 is a compact DIN rail mountable protocol converter unit which synchronizes and maintains the timing and frequency requirement of power and process industry equipment using IRIG-B signal obtained from GPS receiver. It provides nanosecond accuracy when external time references are not available. It has the storage facility to store the system log file. It delivers NTP, SNTP, PFC-Pulse, RS232 & RS485 outputs. The system enables configuration and monitoring through Web-based application. It supports a wide range of power supply input either 90V-260V AC/DC or 18-36VDC or 36V-72VDC.
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Single Photon Detector System For Near-Infrared (0.7 - 2.3 Um Wavelength)
*Frequency range includes coverage into higher frequencies than other photon counters on the market.*Short dead time (10 nanoseconds) compared to long dead time (microseconds) of alternatives. Therefore rapid repeition rate of 10s of MHz possible, whereas alternative have maximimum repetition rate of 1-10 kHz.*Very small dark counts (10/second) compared to high dark count (1,000s / second) of alternatives. Does not require gated mode unlike alternatives. Operates in continuous operation mode.
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GPS Time Synchronization Unit
Signals & Systems India Private Limited
GPS Time Server – GPS-DRM-1010 is a compact DIN rail mountable unit that synchronizes and maintains the timing and frequency requirement of power and process industry equipment using a signal obtained from different external sources such as GPS and GLONASS. It provides nanosecond accuracy when external time references are not available. It has a storage facility to store the system log file. It delivers NTP, SNTP, IRIG-B, PFC-Pulse, RS232 & RS485 outputs. The system enables configuration and monitoring through a Web-based application.
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*Tunable Wavelength
*Wide range of OPO and OPA systems*Ultra-broad tuning from 192 to 16 000 nm*Femtosecond, picosecond & nanosecond pulse durations*Narrow bandwidth models
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Camera Link Frame grabber
Cyton-CXP
CoaXPress (CXP) is a simple, yet powerful, standard for moving high speed serial data from a camera to a frame grabber. Video is captured at speeds of up to 6.25 Gigabits/Second (Gb/S). Simultaneously, control commands and triggers can be sent to the camera 20 Mb/S (with a trigger accuracy of +/- 2 nanoseconds). Up to 13 W of power can also supplied to the camera.
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Synchronization And ASOPS Systems
The asynchronous optical sampling (ASOPS) technique allows high-speed scanning over some nanoseconds of time delay without a mechanical delay line. The SYNCRO-RRE, also available as stand-alone unit, provides state-of-the art phase lock electronics.