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Charge Controller
The intelligence of an AC charging station or an AC charging infrastructure is largely determined by the charge controller used. A smart charge controller has the primary task of controlling and monitoring the charging process of an electrical vehicle.The features that characterise a smart charge controller include communication with a backend system and the associated authorisation of users, as well as the efficient distribution of load currents by means of dynamic load management to prevent an overload of the existing AC system.
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LabVIEW And TestStand Solutions
As a National Instruments Alliance Member, AB Controls offers turn-key solutions based on LabVIEW and TestStand products. Our relationship with LabVIEW goes far back. Our familiarity with LabVIEW and National Instruments DAQ products plus our experience in system integration makes us the perfect candidate for your next LabVIEW project. Here are some of the past solutions we have provided. Advantages of automated test systems are innumerous.
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Single 32 To 1 Terminated 50Ω 600MHz PXI RF Multiplexer
40-767A-001
The terminated single 32 to 1 multiplexer is part of a range of RF multiplexers available in the following configurations: dual, quad and octal 4 to 1, single, dual and quad 8 to 1, single and dual 16 to 1 and single 32 to 1. All multiplexers have the option of automatic terminations which offer advantages at system level by reducing the presence of standing waves in the system which can cause degradation in isolation and crosstalk.
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PXI/PXIe MEMS RF Multiplexer, Quad 4-Channel, 4GHz, 50Ω, MCX
40-878-242
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Quad 4-Channel, 4GHz, 50Ω, MCX
42-878-242
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Quad 4-Channel, 4GHz, 50Ω, SMB
42-878-241
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Quad 4-Channel, 4GHz, 50Ω, SMB
40-878-241
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Dual 4-Channel, 4GHz, 50Ω, SMB
40-878-221
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Dual 4-Channel, 4GHz, 50Ω, MCX
40-878-222
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Dual 4-Channel, 4GHz, 50Ω, SMB
42-878-221
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Dual 4-Channel, 4GHz, 50Ω, MCX
42-878-222
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Single 4-Channel, 4GHz, 50Ω, SMB
40-878-211
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Single 4-Channel, 4GHz, 50Ω, MCX
40-878-212
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Single 4-Channel, 4GHz, 50Ω, SMB
42-878-211
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXI/PXIe MEMS RF Multiplexer, Single 4-Channel, 4GHz, 50Ω, MCX
42-878-212
The module is based on the latest micro-electromechanical system (MEMS) switching technology and has low insertion loss and VSWR. In addition, MEMS devices have a long operational life of >3 billion operations and benefit from an operating time of <20 μs allowing greater test system throughput. The multiplexers have excellent and repeatable RF characteristics beyond 4 GHz with each path having a nominally equal insertion loss.
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PXIe-1066DC, 18-Slot, DC Power Supply PXI Chassis
781812-01
PXIe, 18-Slot, DC Power Supply PXI Chassis—The PXIe‑1066DC adds high-availability features to the PXI Express platform to maximize system uptime. Built on the PXIe‑1065 backplane architecture, the PXIe‑1066DC incorporates hot-swappable, redundant DC power supplies as well as hot-swappable, front-accessible, redundant cooling fans. These high-availability features improve the mean time between failure (MTBF) and mean time to repair (MTTR) of the PXI system.
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Octal 4 to 1 Terminated 50 600MHz PXI RF Multiplexer
40-761-008
This terminated octal 4 to 1 multiplexer is part of a range of RF multiplexers available in the following configurations: dual, quad and octal 4 to 1, single, dual and quad 8 to 1, single and dual 16 to 1 and single 32 to 1. All multiplexers have the option of automatic terminations which offer advantages at system level by reducing the presence of standing waves in the system which can cause degradation in isolation and crosstalk.
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Atomic Clocks And Oscillators
Safran is a world leader in rubidium atomic clocks and oscillators, quartz crystal (OCXO), maser, integrated GPSGlobal Positioning System is a navigation satellite system. See also/GNSS, and related testing instrument technologies that rely on accurate atomic time and the rubidium standard. Whether you need short or long term stability, our decades of experience designing and manufacturing products is trusted by companies ranging from global enterprises to space initiatives.
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Open Frame Chassis
The Hartmann Electronic Open Frame Development Chassis Series is our most diverse system yet. Available for 3U or 6U, with 34HP or 50HP with space for up to 12 slots, this versatile test system is sure to be an engineer’s best friend. A strong frame with an adjustable locking grab handle, along with a light-weight design make our Open Frame Chassis the perfect companion for easy transport from the lab to the testing grounds.
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Dual 16 to 1 Terminated 50 600MHz PXI RF Multiplexer
40-765-002
This terminated dual 16 to 1 multiplexer is part of a range of RF multiplexers available in the following configurations: dual, quad and octal 4 to 1, single, dual and quad 8 to 1, single and dual 16 to 1 and single 32 to 1. All multiplexers have the option of automatic terminations which offer advantages at system level by reducing the presence of standing waves in the system which can cause degradation in isolation and crosstalk.
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RX Family of 32-bit High Power Efficiency MCUs
RX100
The RX100 Series is the RX Family's entry-level 32-bit MCUs with excellent cost performance and ultra-low power consumption. It delivers a max. of 32MHz CPU operation with 8 to 512KB of embedded flash memory. In addition it features cutting-edge peripherals like capacitive touch and LCD drive as well as USB. The RX100 Series can be used for system control or user interface applications systems such as healthcare devices, home appliances, office equipment, and measuring equipment.
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Compact PCI AE Chassis
MICRO-II
The Micro-II is an industrial chassis built to enable powerful AE testing capabilities in a compact form factor. Its 4 PCI slots allow it to hold up to 32 AE channels, using Physical Acoustics’ PCI-8 AE boards. It has been designed to operate either as a benchtop system via direct connection to a monitor, keyboard, and mouse, or as a remote system controlled by a notebook computer over its Gigabit Ethernet interface.
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PSG RF Analog Signal Generator, 100 kHz to 9 GHz
E8663D
Tackle demanding radar & satcom measurements with metrology-grade performance, including high output power & superior level accuracyUse as an ideal reference in phase noise test systems or for analog-to-digital converter testing with the lowest phase noise in a commercial sourceCharacterize devices & circuits by adding AM, FM, M & pulse modulation to your signalImprove existing test system performance: E8663D is built on the outstanding legacy of the 8663A & is fully code compatible
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Brake Testing
Vehicle Brake Test and ABS TestingWe offer an easy-to-use measurement system for brake testing and ABS testing according to ECE, ISO, FMSSV, and SAE international standards. Our test system offers automated workflow, is flexible and robust and used for brake R&D, brake comfort and vehicle testing with regenerative braking. High-accuracy GPS and IMU hardware are available to achieve the highest possible velocity and distance accuracy.
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3U Enclosure with 32-Bit Backplane and ATX/CompactPCI® Redundant Power Supply
cPCIS-1100A Series
*3U CompactPCI® single system, seven peripheral slot configuration or dual system, five peripheral slot configuration*Equipped with single PS/2 form factor 400 W ATX power supply or CompactPCI® redundant power supply (Max. output 500 W)*Suitable for both rackmount and desktop applications*Comprehensive EMC shielding*Optional rear I/O configuration (cPCI 50mm depth RTM
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Boundary-Scan Test Executive
ScanExpress Runner
Efficiency in engineering means managing your most precious resources: time and effort. Automated testing is essential and boundary-scan is a critical component; no other structural test system provides the same value.When down to the wire, your boundary-scan test system needs to be built both for ease-of-use and reliability; a robust and powerful mechanism to ensure that no matter the state of production, all boundary-scan tests can be quickly and faithfully executed to maintain forward momentum.
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Controls
Our modular controls range from simple power supplies to more complex inspection systems. These controls are easy to setup, simple to install and easy to maintain.
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Digital Automated Interferometer for Surface Inspection
DAISI
DAISI (Digital Automated Interferometer for Surface Inspection) achieves the high workability and repeatability with the features such as auto-focus function, auto-calibration function and auto connector fixing system.
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Gas Chromatograph
GC112A
Zhengzhou Nanbei Instrument Equipment Co. Ltd
◆Brand-new designed microcomputer temperature control system of world advanced control technology. High accuracy of temperature control (optimum: 0.05C), high reliability and anti-interference.
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Gas Mixers / Gas Blenders
WITT offers high-quality gas mixers and gas dosing systems for two or more gases, especially for high and strongly fluctuating gas mixture flow rates.