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Conducted Immunity
EUT's resilience to an injected disturbance through associated cable.
See Also: Immunity Test, Coupling Decoupling Network
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Conducted Immunity Test System
Conducted RF immunity tests acc. to IEC/EN61000-4-6 and BCI tests acc. to ISO 11452-4 and MIL-STD 461 CS 114 Signal generator,RF-power amplifier, RF-power meter and directional coupler (optional) in one 19”-caseStand-alone operation possible with optional available netbookControl-software includedMost important parameters are shown on an integrated displayAutomatic EUT-monitoringOperation via USB port of a PC or NotebookComplete range of CDNs available
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RF Conducted Immunity Testing
AR RF/Microwave Instrumentation
If you are tired of mixing and matching various components, try AR’s complete line of RF Conducted Immunity Test Systems. We now make one fully configured and standalone CI System from 4 kHz to 400 MHz with output powers designed to meet the latest commercial, custom, and military standards. In addition, AR provides configurable systems meeting your specific requirements of increased power and frequency range.
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Conducted Immunity Test Systems
Includes library of 1000+ pre-entered Automotive and Industry Standards’ test routinesOperate as a free- standing system using the included monitor, keyboard and mouse, or control via LANVery easy to modify existing tests or build new test sequencesModels from 25A to 200A continuous output current available
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RF Conducted Immunity Test System
RFCI61000-4-6
RFCI61000-4-6 RF Conducted Immunity Test System is an automatic test system which is for the conduction sensitivity testing, it is fully meets IEC61000-4-6.2006, ISO11452-4, GB/T17626.6-2008 and GTB152B-CS114 etc standards. RFCI61000-4-6 internal source and broadband power amplifier can be generated 3 voltage test levels: 1v, 3v and 10v, and has the function of the real detect output level. It has two operation software which is calibration software and test software. When measuring, the signal is in 1 KHZ sine wave amplitude modulation system (80%) to simulate the actual harassment, and can through the coupling/decoupling network (CDN or electromagnetic clamp) to make the harassment signal coupled to the device.
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Coupling Decoupling Network for Conducted Common Mode Immunity Testing According to IEC 61000-4-6
CDN
The CDN M5 is intended to inject common mode disturbance signals to power supply of mains lines (unscreened) in the frequency range from 150KHz to 230MHz. A variety of calibration adapters and other accessories are available as an option. RF Standard connector: BNC type, AC socket 4mm safety bananas.
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EMC Testing Knowledge & Equipment
Creating, delivering, installing, and training on EMC test systems; RF Immunity systems, RF Radiated and Conducted Emissions systems, Conducted Immunity and Pre-compliant EMC systems.
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EMC Testing Services
Our sophisticated technology can meet the diversified needs of customers. Component Tests: Immunity, Radiated Immunity, ALSE, TEM cell, Bulk Current Injection, Stripline, Conducted Immunity, Transient Immunity, Power Supply Variations, Electrostatic Discharge Emissions, Radiated Emissions, Conducted Emissions, Transient Emissions. Vehicle Tests - Radiated Immunity, Radiated Emissions.
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RF Shielded Chamber
MIL-STD
A high performance RF-shielded chamber specifically designed for radiated emissions testing in accordance with MIL-STD-461E/F. This chamber can be used for conducted emissions, conducted immunity, radiated emissions, and radiated immunity testing.
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Immunity
RF coupling
is used for the conducted measurement of the immunity according to IEC 62132-4.
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Coupling Decoupling Network
TBCDN-M3
The TBCDN-M3 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6.
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Coupling Decoupling Network
TBCDN-M2
The TBCDN-M2 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6.
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Coupling Decoupling Network
TBCDN-M1
The TBCDN-M1 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6.
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Coupling Decoupling Network
TBCDN-M4
The TBCDN-M4 is a Coupling Decoupling Network for conducted immunity testing according to IEC 61000-4-6.
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Multi-Tone Test Systems
AR RF/Microwave Instrumentation
AR’s state-of-the-art multi-tone systems are designed to test RF Radiated and Conducted Immunity faster than ever before. Both the MT2IEC10V3M and MT4IEC10V3M fully comply with IEC 61000-4-3:2020 Edition 4, allowing for multiple tone testing, reducing test time by up to 74%. Commercial, aviation, and automotive industries, will perform RF radiated and conducted immunity testing faster, more accurately, more efficiently, and more closely to a real-world environment.
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150 kHz-230 MHz Broadband Power Amplifiers
Output power up to 80W for standard conducted immunity testing. Our 150 kHz-230 MHz amplifier range covers output power ranging from 20 W to 80 W.
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RF Synthesiser
The Laplace Synthesisers cover both conducted and radiated RF immunity test requirements. The frequency coverage extends from 100KHz to 230MHz for conducted tests and 30MHz - 6GHz for radiated tests. They are all controlled from the users PC via a USB link, and powerful Windows software is included to enable the user to control all the parameters of the test, to monitor the test in progress, and to view the results.
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Automotive Supply Simulation System
Spitzenberger & Spies GmbH & Co. KG
The modularly constructed Automotive Supply Simulation System is a compact EMC-Test System for the execution of immunity measurements for pulse-shaped, line conducted disturbances at electronic equipment of motor vehicles. The high performance version enables tests of current-intense consumers or even complete vehicles
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Current Probes
Com-Power's Current Injection Probes are used for RF conducted immunity testing per IEC 61000-4-6, CISPR 16-1-2, RTCA DO-160 and MIL-STD 461. Current injection Probes are to be used only when there is no commercially available CDN for the type of port(s) to be tested.
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Inducitive Switch Transient Test Circuit
NSG 5071
The basic philosophy of this test circuit is better reproducibility of actual switching transients. The reproducibility of this test circuit comes not from the output characteristics as in traditional conducted automotive immunity tests, but from a fixed design of the generator using several pre-defined components. Many of these components are defined in the standard as "critical" with no substitutions allowed. These components are used as required in the standard.
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Automotive EMC test systems
Dozens of manufacturer's and other automotive immunity standards with their roots in ISO 7637 continue to evolve bringing new challenges to users of conducted immunity testing. Teseq continues to advance the state of the art, bringing simple, flexible solutions for the challenging and fast-changing requirements that are 42 V ready.Teseq has been at the forefront of the pioneering work to establish EMC tests for motor vehicle electronics. Automotive manufacturers and suppliers worldwide have come to trust test systems from Teseq. Active involvement in the standardization committees ensures that the latest advances are continously reflected in our test systems.
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CDN - Coupling / Decoupling Networks
The Coupling- / Decoupling Networks are used to inject common mode disturbances to Equipment under Test (EuT). Further the CDNs provide sufficient decoupling between Auxiliary Equipment (AE) and disturbance signal. The requirements for CDN and their application are described in the standard IEC 61000-4-6 (Immunity to conducted disturbances, induced by radio-frequency fields). CDNs have a common mode impedance of 150 Ohm and are available for a multitude of cable types and connectors.
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EMC Testing
Does your product send or receive electromagnetic data? This can be analyzed using various tests. We investigate the interference immunity and emitted interference of simple electrical devices and complex machinery. Our EMC measurements and tests conducted in accordance with standards recognize all activity in the electromagnetic field and ascertain how immune to interference a piece of equipment is. We will also offer guidance on optimizing the product in terms of its EMC properties during the development phase.
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ESD Protection
Protection against electrostatic discharges (ESD) is part of EMC Immunity (Electro Magnetic Compatibility) requirements. It is the ability for equipment to properly operate in its electromagnetic environment by limiting the reception of electromagnetic energy that may cause physical damage. ESD can be either conducted under the form of a transient voltage or can be radiated due to its fast rising time: powerful harmonics will generate erratic behavior by the application by coupling with other signals. Printed circuit boards must be protected against the effects of electrostatic discharge.
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EMC Testing
Keystone Compliance is a unique EMC test facility because of our focus on assisting our customers achieve the measurements and certifications that they are seeking. Our lab features three 3-meter EMC chambers and two military/aerospace EMC chambers. In addition to the chambers, the lab significant ground planes, equipment and software that optimize the efficiency of the testing. EMC TestingKeystone Compliance is a unique EMC test facility because of our focus on assisting our customers achieve the measurements and certifications that they are seeking. Our lab features three 3-meter EMC chambers and two military/aerospace EMC chambers. In addition to the chambers, the lab significant ground planes, equipment and software that optimize the efficiency of the testing.Our EMC/EMI testing capabilities include but are not limited to:Radiated immunity testing up to 200 V/m from 10 kHz to 40 GHzRadiated emissions testing up to 40 GHzSurge testing to 10kV/10kA – and higherElectrostatic Discharge “ESD” testing up to 30 kVConducted immunity testing to levels well above the highest defined “standard” levelsMagnetic field immunity testing up to 100 A/m continuous and 1000 A/m short/impulseCustomized transient waveforms to extend level, duration and/or repetition of the standard’s definitionShielding Effectiveness from small panels and boxes all the way up to large enclosures and cabling, with a wide dynamic range all the way to 40 GHzWhat differentiates Keystone Compliance from other EMI test labs is our consultative engineering and expedited EMI test reports. Our staff understand EMC/EMI testing and has extensive experience with radiated immunity, radiated emissions, conducted immunity, conducted emissions, surge, ESD and shielding effectiveness testing. We also cater to specialized testing requirements. If you do not see the test standard or testing requirement you are looking for, please contact us as we may still be able to assist you.For more information about our scope of accreditation, please visit the links below.CISPR StandardsIEC/EN Product Family StandardsIEC/EN Test StandardsISO, SAE and Vehicle StandardsMilitary StandardsFCC, North American and International StandardsShielding Effectiveness TestingLightning and Surge Testing
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Immunity Testing Systems
CIS Series
The CIS series test systems are configured to perform conducted immunity testing according to IEC 61000-4-6. The system includes an ACS series power amplifier, coupling/decoupling Network (CDN), directional coupler, 150Ω to 50Ω adapters, power attenuators, cables and [optional] CSAT software. These systems, when properly configured, are capable of testing your products to all levels given in IEC 61000-4-6 up to 230 MHz. You can choose from three systems. Follow the links below for detailed information, including a comprehensive datasheet listing system specs.
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Bulk Current Monitoring Probe
MP-50
The Current Monitoring probes may be used whenever RF current measurements are required. Current measurements are made by placing a current carrying conductor within the “sensing” window of the probe and measuring the probe’s output voltage with an RF detector. Calibration of the probe permits the conversion of the voltages measured to current. Current measurements can be made over the frequency range shown in the transfer impedance curve furnished with each probe. There is virtually no loading of the circuit and the technique permits normal operation of the device under test during measurements. The MP-50 can be used for the procedure for clamp injection when the common- mode impedance requirements cannot be met given in chapter 7.4 of IEC/EN 61000-4-6 „Immunity to conducted disturbances, induced by radio frequency fields”. The MP-50 can also be used as current monitor for BCI testing as per ISO11452-4, RTCA/DO-160 section 20, MIL-STD-461 and various automotive standards.