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Gates
Designed to ensure effective transitions and provide different voltage thresholds, these robust devices are compatible with 3.3V, 5V and 20V automotive applications. ST's automotive-grade Gate ICs are qualified according to AEC-Q100 and available in TSSOP or SO packages.
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Delays And Gates
Delays, Gate and Delay Generators, Logic Modules, and Linear Gates are used in many research or teaching experiments and in non-research applications such as actively shielded spectroscopy systems. Delay modules allow the alignment in time of signals from different paths, so that a logical decision can be made within a logic module which will often result in an electronic go/no-go decision as to whether a particular detector analog output will be processed within an associated multichannel analyzer.
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Gate Drivers
A necessary companion for discrete power MOSFETs and IGBTs as well as digital – microcontrollers, DSPs and FPGs – or analog controllers in any switched-mode power converter, STDRIVE gate drivers generate the necessary voltage and current level required to accurately and efficiently activate the power stage in industrial, consumer, computer and automotive applications.
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Gate Scanner
SR200`
Stanford Research Systems, Inc.
The SR200 Gate Scanner module is designed to automate waveform recovery with the SR250 and SR255 Gated Integrator modules. Waveform recovery is done by slowly scanning the gate of the integrator over the waveform of interest.
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Logic Gates
Analog Devices logic gate products offer logic functions such as AND, NAND, OR, and NOR, and include both –3.3 V and +3.3 V single supply options. Our products feature low power consumption, fast rise and fall times, differential and single-ended operation, and support high data rates up to 45 Gbps in an RoHS compliant package.
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Boolean Logic Gates
Advanced Science and Novel Technology, Co., Inc.
High speed broadband Exclusive-OR (XOR) Boolean logic gateExhibits low jitter and limited temperature variation over industrial temperature rangeIdeal for high speed proof-of-concept prototypingFully differential CML input interfacesFully differential CML output interface with 400mV single-ended swingSingle +3.3V or -3.3V power supplyPower consumption: 415mWFabricated in SiGe for high performance, yield, and reliabilityCustom CQFP 24-pin package
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Dual Gate LCU
Abaco Systems’ Dual Gate local control unit (LCU) provides an ideal user interface for the ADEPT line of automatic video trackers and can be used in a prototyping, development or production project phase.
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Isolated Gate Drivers
Analog Devices’ isolated gate driver portfolio offers designers performance and reliability advantages over designs utilizing optocouplers or pulse transformers. Utilizing ADI’s proven iCoupler® technology, the isolated gate driver family offers the advantage of a maximum propagation delay of 50 ns, less than 5 ns channel-to-channel matching, a 50-year lifetime for 400 V rms working voltage and galvanic isolation in a single package.
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USB Network Gate
With USB Network Gate you will never experience any issues accessing and using the USB devices that are plugged into remote computers. You can work with those devices as if they were physically connected to your local machine. All that is needed to do for that is install USB over Network Connector on the computer with USB device physically attached (server) and on the computer where you want to use this device (client). USB over IP Connector will do all the rest. No additional hardware needed! BTW you can choose whether Mac, Linux or Windows machine will be a client or a server.
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Insulated Gate Bipolar Transistors
The Bourns® IGBT discrete BID series combines technology from a MOS gate and a bipolar transistor, creating the right component for high voltage and high current applications. This device uses advanced Trench-Gate Field-Stop technology providing greater control of the dynamic characteristics while resulting in a lower Collector-Emitter Saturation Voltage (VCE(sat)) and fewer switching losses. In addition, this structure increases the robustness of the device and gives a lower RTH. The Bourns® IGBT solution is suitable for SMPS, UPS and PFC applications.
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Photo Gate Logger Sensor
NUL-209
This sensor can be used to study various kinds of motion. With six modes of operation, time, velocity or acceleration can be measured with one or two photo gates and associated timing cards, as well as showing pictorially the status (digital 1 or 0) of the voltage output of the photo gate as timing cards pass through it.
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Slide Gate & Shaft Position
All six Shaft Angle Position Feedback Monitors in the SG1000 Series utilize absolute rotary encoders to provide independent and accurate feedback of a slide gate's or a valve's position to an external device such as a PLC or optional PM500 Process Meter Display Unit. Models are housed in a rugged, Explosion-Proof/Dust-Ignition Proof cast aluminum enclosure that is dirt, dust, grease-proof, and water resistant. In the case of a power failure, all SG1000s are designed to retain accurate gate position.
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32 Channel Multievent Individual Gate QDC
V862
The Model V862 is a 1-unit wide VME 6U module housing 32 Charge-to-Digital Conversion channels with current integrating negative inputs. Each channel has an independent gate input (GATE i) logically ANDed with a COMMON GATE input; the input charge on the i-th channel is converted to a voltage level by a QAC (Charge to Amplitude Conversion) section when both the GATE i and COMMON GATE signal are active.
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Gated Integrator, 2 ns Minimum Gate Width
SR250
Stanford Research Systems, Inc.
The SR250 Gated Integrator is a versatile, high-speed, NIM module designed to recover fast analog signals from noisy backgrounds
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Field-Programmable Gate Arrays (FPGAs) And Other Programmable Logic Devices (PLDs)
Are both programmable logic devices
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PCI-7811, 1M Gate Virtex-II FPGA, Digital Reconfigurable I/O Device
779363-01
The PCI‑7811 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. The PCI‑7811 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware‑in‑the‑loop (HIL) test, custom communications protocols, bit error rate test, and other applications that require precise timing and control.
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PCI-7813, 3M Gate Virtex-II FPGA, Digital Reconfigurable I/O Device
779370-01
The PCI‑7813 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. The PCI‑7813 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware-in‑the‑loop (HIL) test, custom communications protocols, bit error rate test, and other applications that require precise timing and control.
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0.1Hz-3.7GHz Frequency Counter
FC-3000
Features:*Frequency measuring range: 0.1Hz to 100MHz in A input, 80 MHz to 3.0GHz in C input.*Period,Total and RPM measurement for input A*9 Digit display with 0.01mHz resolution in 1 Sec (By Ext.Reference signal).*RS-232C serial interface function for communication with computer.*High sensitivity Extemal reference input function(>=1.5Vrms).*Peciprocal technique for high resolution at low counting frequencies .*Self check function executed to perform a automatic self diagnosis of various counter function.*Push-scanning for selecting Function and Gate time.*Low-pass filter(100KHz,-3dB)installed for removing noise signsl in low frequency measuring.*AC/DC coupling function(Selectable AC/CD Coupling)*10:1 Input Attenuation(Selectable×1/×10 Attenuator)*Data hold function
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10Hz-150KHz Frequency Counter
HCF-F1000L
FEATURE:*Period,totalize measurement self test*High sensitioity:85dBV (25mVrms)*Stability:±3x10-9/s*8 digit LED display*Gate Time:0.01s,0.1s,1s*Power supply:AC 220V(110V optional)
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12-Bit, 2.5 GSPS Digitizer Optimized for Pulse Detection
ADQ32-PDRX
ADQ32-PDRX acquires the input signal via a single connector and uses an onboard splitter to separate the signal into two paths with different gain settings. The high gain path is used to accurately capture low-amplitude portions of the input signal whereas the low gain path ensures the acquisition of high-amplitude peaks without causing saturation. The two signal paths are then combined in real-time inside the onboard field-programmable gate array (FPGA) to create a digitized output with improved performance.PDRX increases the dynamic range by 3 bits and is fully integrated into the digitizer for fast and easy system-level integration. ADQ32-PDRX is therefore comparable with a 16-bit digitizer in terms of dynamic range, but with the benefit of offering a higher sampling rate.
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1.3GHz Frequency Counter
Model 1122 / 1122X
- Wide Frequency Range 0.2Hz to 1.3GHz- 2 Separate Channels, for LOW & HIGH Frequencies- High Sensitivity- 8 Digit Green LED Display- Microcontroller based Advance Technology- Optional RS232 Interface- Reciprocal Counting Technique for High Resolution at Low Frequency- Period Measurement- Low Pass Filter for Noisy Low Frequency (<100KHz)- 4 Selectable Gates (10ms, 100ms, 1sec, 10sec)
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20MHz Pulse / Function Generator
Model 2019A
- Versatile Waveform Generation for a Wide Range of Testing Application- Wide Range of Frequencies from 0.0002Hz (i.e. 5000s) to 20MHz (i.e. 50ns)- Choice of Eight Selectable Waveforms- All Outputs can Drive 50 ohms Terminations- Trigger and Gate Modes with Adjustable Start/Stop Control
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2-26.5 GHz Traveling Wave Amplifier
1GG7-8045
The 1GG7-8045 is a broadband GaAs MMIC Traveling Wave Amplifier designed for high output power and moderate gain over the full 2 to 26.5 GHz frequency range. Seven MESFET cascode stages provide a flat gain response, making the 1GG7-8045 an ideal wideband power block. Ebeam lithography is used to produce gate lengths of ~0.3 mm. The 1GG7-8045 incorporates advanced MBE technology, TiPtAu gate metallization, silicon nitride passivation, and polyimide for scratch protection.
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24 TTL Channels, Enhanced, Programmable I/O
TL2
Function module TL2 provides 24 channels of TTL/CMOS transceiver functionality as either inputs or outputs. The transistor-transistor logic (TTL) employs transmitters with multiple emitters in gates having more than one input. TTL offers high switching speed and relative immunity to noisy systems. CMOS sensors provide image sensing technology by converting light waves into signals that are small bursts of current. These waves can be light or other electromagnetic radiation.
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24 TTL Channels, Programmable I/O
TL1
Function module TL1 provides 24 channels of TTL/CMOS transceiver functionality as either inputs or outputs. The transistor-transistor logic (TTL) employs transmitters with multiple emitters in gates having more than one input. TTL offers high switching speed and relative immunity to noisy systems. CMOS sensors provide image sensing technology by converting light waves into signals that are small bursts of current. These waves can be light or other electromagnetic radiation.
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2 GHz to 6 GHz, 25 W Power Amplifier Module
HMC7748
The HMC7748 is a multistage power amplifier (PA) that provides 25 W of saturated output power across the band of 2 GHz to 6 GHz. It draws 0.7 A from a 12 V supply and up to 4 A from a 28 V supply. Input signals of as much as −8 dBm are acceptable, and the module has small signal gain of 60 dB. The 12 V supply is regulated internally and generates the negative voltage required for the gate bias. Built-in bias sequencing prevents the drain voltages for the amplifier stages from being applied without the negative voltage present, which protects the amplifiers if 28 V is applied without 12 V supply applied.
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360 EC-ASIC
ASIC synthesis verification from RTL code to final netlist.Systematic design errors, introduced by automated design refinement tools, such as ASIC synthesis, can be hard to detect, and damaging if they make it into the final device. Formal Equivalency Checking (EC) has become a standard part of the ASIC development flow, replacing almost all gate level simulation with a rigorous consistency check between pre- and post-synthesized code.
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360 EC-RTL
During a typical development process, there are many occasions where a change needs to be made to a block, which must then be retested to ensure functional equivalence. For example, once a block has been proven to operate correctly, a designer may wish to optimize some section, maybe to improve the coding style, reduce the gate count or streamline operation. Today, an engineer must execute an entire simulation regression run to verify each change. This often requires a lot of time and may also need additional stimulus, with no guarantee that an exhaustive functional check will be performed.
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3U VPX FPGA Cards
Curtiss-Wright Defense Solutions
FPGAs have revolutionized the way digital signal processing (DSP) subsystems are configured. With a large number of gates, hardware multipliers, and high-speed serial interfaces, FPGAs enable sophisticated applications, including radar, signal intelligence, and image processing, which rely on repetitive processing that can be expressed in highly parallel form. FPGAs perform exceptionally well in FFTs, pulse compression, filters, and digital up/down converters. In deployed systems, an FPGA's technical advantage translates to smaller, lower power, and lower cost systems. Our commercial off-the-shelf (COTS) 3U VPX FPGA cards include a wide complement of I/O functionality and are engineered to succeed in the most demanding rugged applications.
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40-67 GHz Power Amplifier
1GG6-8070
The 1GG6-8070 is a high gain, medium power mmwave amplifier. It can be used as part of a banded solution to achieve respectable mmwave power. Input and output ports are matched to 50W. The amplifier is biased with a single positive drain supply (VDD) and a single negative gate supply (VG1).