Shanghai Lioncel Electromagnetic Technology Co., Ltd. specializes in the maintenance of electromagnetic compatibility (EMC) immunity test equipment. It is composed of engineers with more than ten years of experience in the maintenance of imported equipment. It specializes in the maintenance of various imported brands
Shanghai Lioncel Electromagnetic Technology Co., Ltd., as a professional company studying electromagnetic compatibility technology, has always been adhering to the service concept of "providing professional products and more professional technology", committed to the promotion of electromagnetic compatibility technology in China
As a professional electromagnetic compatibility testing solution supplier, Shanghai Lioncel Electromagnetic Technology Co., Ltd. has complete domestic electromagnetic compatibility testing equipment and testing environment measurement and calibration capabilities in accordance with the latest international standards.
According to IEC61000-4-2 standard, the current waveform calibration target of electrostatic discharge generator, ect-1 is the target meeting the requirements of IEC61000-4-2 ed1.0, ect-1 is the target meeting the requirements of IEC61000-4-2 ed2.0, users can choose according to the calibration requirements of different versions of electrostatic discharge generator.
For the installation of electrostatic gun target, the current characteristics of electrostatic discharge generator are simply confirmed according to IEC61000-4-2 standard.
The Faraday cage is used for the waveform calibration of electrostatic generator, and its characteristic indexes fully meet the requirements of GB / t17626.2, IEC61000-4-2 and ed.2. It also reserves space for the upgrade of calibration requirements, has advanced technology and reasonable structure, and provides a good basis for the waveform calibration of electrostatic discharge simulator.
The discharge gun has excellent characteristics and fully meets the requirements of the standard for electrostatic discharge waveform. It can be used with various specifications of resistance and capacity kits to realize the standard capacity expansion, and can be used with all kinds of Lingshi electrostatic discharge generators.
The test environment configuration is specially designed for electrostatic discharge test in strict accordance with the requirements of IEC61000-4-2 and GB / t17626.2 standards. It is fully solid wood structure, divided into bench type equipment and floor type configuration. It can also be used for fast transient pulse group, damped oscillation and on-board electronic immunity test.
Series B ESD generator is a new intelligent electrostatic discharge generator developed independently by LIONCEL. It is also the first full-color touch-screen ESD generator in China. It has mature technology and high market share. With its powerful testing function and excellent discharge characteristics, it provides users reliable guarantee for EMC testing.
Series B ESD generator is a new intelligent electrostatic discharge generator developed independently by LIONCEL. It is also the first full-color touch-screen ESD generator in China. It has mature technology and high market share. With its powerful testing function and excellent discharge characteristics, it provides users reliable guarantee for EMC testing.
LIONCEL’s ESD Simulator(Series A) is an economical product for IEC 61000-4-2. It is designed to meet the requirements of the latest IEC 61000-4-2 standard, also many other standards including ISO 10605, ITU, GR1089, etc. The equipment can provide comprehensive and perfect plan in order to evaluate the electrostatic discharge immunity ability. The maximum output voltage of this series can be 30kV.
LIONCEL’s ESD Simulator(Series A) is an economical product for IEC 61000-4-2. It is designed to meet the requirements of the latest IEC 61000-4-2 standard, also many other standards including ISO 10605, ITU, GR1089, etc. The equipment can provide comprehensive and perfect plan in order to evaluate the electrostatic discharge immunity ability. The maximum output voltage of this series can be 20kV.
EFTC capacitor coupling clamp is a complete set of electrical fast transient pulse group immunity test equipment. The coupling clamp, in cooperation with EFT series generator, can complete the immunity test of input / output line, communication line and control line of the tested equipment; if necessary, it can also be used for the test of AC / DC power port, fully meeting the requirements of iec61000-4-4 and GB / t17626.4 standards.
As an important part of Lingshi EMC puzzle (magic cube) series, EFT series intelligent pulse train generator is composed of powerful host and excellent pulse train module, which fully meets the requirements of the latest standards and provides an effective evaluation method for electromagnetic compatibility fast transient pulse train immunity test of products.
As an important part of Lingshi EMC puzzle (magic cube) series, EFT series intelligent pulse train generator is composed of powerful host and excellent pulse train module, which fully meets the requirements of the latest standards and provides an effective evaluation method for electromagnetic compatibility fast transient pulse train immunity test of products.
As an important part of Lingshi EMC puzzle (magic cube) series, EFT series intelligent pulse train generator is composed of powerful host and excellent pulse train module, which fully meets the requirements of the latest standards and provides an effective evaluation method for electromagnetic compatibility fast transient pulse train immunity test of products.
Eft-405cn is a highly integrated and efficient test system of impulse group immunity developed by Lingshi. The whole equipment fully meets the requirements of the latest iec61000-4-4 standard, which not only provides excellent interference performance, but also integrates the latest operation and control technology of the instrument, bringing different experience to EMC test.
Lse-545cb is a highly integrated and efficient testing surge and pulse group immunity test system developed by Lingshi. The whole equipment fully meets the requirements of the latest iec61000-4-4 and-5 standards. It not only provides excellent interference performance, but also integrates the latest operation and control technology of the instrument, bringing different experience to EMC test.
In January 2019, Shanghai Lioncel Electromagnetic Technology Co., Ltd. signed up to participate in the 8th China Innovation and entrepreneurship competition 2019 "entrepreneurship in Shanghai", relying on our company
In January 2019, Shanghai Lioncel Electromagnetic Technology Co., Ltd. signed up to participate in the 8th China Innovation and entrepreneurship competition 2019 "entrepreneurship in Shanghai", relying on our company
In January 2019, Shanghai Lioncel Electromagnetic Technology Co., Ltd. signed up to participate in the 8th China Innovation and entrepreneurship competition 2019 "entrepreneurship in Shanghai", relying on our company
In January 2019, Shanghai Lioncel Electromagnetic Technology Co., Ltd. signed up to participate in the 8th China Innovation and entrepreneurship competition 2019 "entrepreneurship in Shanghai", relying on our company
In January 2019, Shanghai Lioncel Electromagnetic Technology Co., Ltd. signed up to participate in the 8th China Innovation and entrepreneurship competition 2019 "entrepreneurship in Shanghai", relying on our company
In January 2019, Shanghai Lioncel Electromagnetic Technology Co., Ltd. signed up to participate in the 8th China Innovation and entrepreneurship competition 2019 "entrepreneurship in Shanghai", relying on our company
With the cooperation of EFT series generator, the network capacity can be upgraded. It has excellent coupling and decoupling performance, can meet the requirements of the latest standard IEC 61000-4-4 Ed.3. The network for EUT whose current capacity reaches 100A is specially designed for testing new energy, electric vehicle charging pile and other products
With the cooperation of EFT series generator, the network capacity can be upgraded. It has excellent coupling and decoupling performance, can meet the requirements of the latest standard IEC 61000-4-4 Ed.3. The network for EUT whose current capacity reaches 100A is specially designed for testing new energy, electric vehicle charging pile and other products
CDN-433P is a 3 phase, 5 channel burst coupling/decoupling network, which is designed based on the request of electric fast transients test. It is used with the EFT generator series, and easy for upgrade in disturbance channel and network capacity. The coupling and decoupling function is compliant with IEC61000-4-4 and GB/T17626.4.
The new energy special lightning surge generator is used to evaluate the performance of power line and internal connecting line of new energy equipment when they are subjected to high-energy transient interference caused by switching
The new energy special lightning surge generator is used to evaluate the performance of power line and internal connecting line of new energy equipment when they are subjected to high-energy transient interference caused by switching and natural lightning stroke.
LSE-545CB is the test system which combined surge testing with burst testing, so that it is highly integrated and efficient. The module could fully qualified kinds of standards IEC61000-4-4/-5. Provide you more efficient and accurate EMC
LSG series intelligent lightning surge test system, as an important part of "EMC puzzle" series, is composed of powerful host, excellent surge generator and coupling decoupling network module, which fully meets the requirements of the latest standards
As an important part of “EMC PUZZLE” of Shanghai Lioncel, the newest smart lighting surge generator includes host computer with a variety of functions and surge module with excellent performance. Our equipment meets the latest standard for the profession, and can provide an effective means to EMC immunity test.
As the main component of lightning surge/ringing wave test system, surge coupling/decoupling network directly determines the consistency and repeatability of test results.
The special lightning surge coupling decoupling network for high-voltage and high-current EUT match with LIONCEL New Energy Lightning Surge Generator are used to evaluate the performance of the power-lines of new energy equipment under the high-energy transient interference caused by switch switching and natural lightning strike.
CDN-508SUS is a coupling decoupling network especially for outside testing unshielded high-speed signal lines in lightning surge test. It can satisfy the test of unshielded symmetrical line. Able to do online test of EUT and can achieve maximum communication rate of 100KHz.
As the main component of lightning surge/ringing wave test system, surge coupling/decoupling network directly determines the consistency and repeatability of test results
Mainly according to the test requirements of GB / T 17215.321 and GB / t15284-2002 for frequency and phase modulation test, it is used to collect the phase and frequency of the power grid, so as to generate a magnetic
All standards above mainly related to power frequency magnetic immunity test, impulse magnetic immunity test and damped-oscillatory immunity test, and mainly measure immunity capability of electric equipments when they are suffering from current caused electromagnetic interference of conductor or other equipments(like leaked transformer) under environment such as residence, business and industry.
All standards above mainly related to power frequency magnetic immunity test, impulse magnetic immunity test and damped-oscillatory immunity test, and mainly measure immunity capability of electric equipments when they are suffering from current caused electromagnetic interference of conductor or other equipments(like leaked transformer) under environment such as residence, business and industry.
All standards above mainly related to power frequency magnetic immunity test, impulse magnetic immunity test and damped-oscillatory immunity test, and mainly measure immunity capability of electric equipments when they are suffering from current caused electromagnetic interference of conductor or other equipments(like leaked transformer) under environment such as residence, business and industry.
SWCS-103CB damped oscillating wave magnetic field immunity test system consists of generator SWCS-103CB and single-loop coil PFM-801C-A. The system adopts the EMC PUZZLE framework, which is composed of powerful mainframe and excellent damping oscillation wave module. It fully meets the requirements of the latest standards and provides an effective evaluation method for the test of magnetic field immunity to damping oscillation.
SS-DIP three-phase AC high-voltage dip simulator is a special voltage dip and short interruption immunity testing equipment developed by LIONCEL in China according to "General Technical Requirements for High Voltage Watt-hour Meters". This project fills the blank of high-voltage watt-hour meter test in China, and it is also another high-tech product of Shanghai LIONCEL to unswervingly do professional products.
LIONCEL VDS-1103 single-phase AC voltage dip simulator is a high-reliability and high-precision test equipment specially designed for the characteristics and requirements of voltage dip, short interruption and voltage variation immunity test. The unique modular product structure makes it the best scalable AC-power-supply voltage fault simulation test equipment on the market. The performance of the equipment fully meets the requirements of IEC 61000-4-11 and GB/T17626.11 standards.
The voltage regulating power module can cooperate with the VDS-1103 voltage dip simulator to realize automatic control and regulation of voltage in testing. One module can support automatic regulation of voltage dip, and two modules can easily realize the simulation of the universal power-grid. Users can configure it according to their needs.
The voltage regulating power module can cooperate with the VDS-1103 voltage dip simulator to realize automatic control and regulation of voltage in testing. One module can support automatic regulation of voltage dip, and two modules can easily realize the simulation of the universal power-grid. Users can configure it according to their needs.
The voltage regulating power module can cooperate with the VDS-1103 voltage dip simulator to realize automatic control and regulation of voltage in testing. One module can support automatic regulation of voltage dip, and two modules can easily realize the simulation of the universal power-grid. Users can configure it according to their needs.
LIONCEL VDS-1132A 3-phase AC voltage dip simulator with high-reliability and high-precision, specially designed for the characteristics and requirements of voltage dip, short interruption and voltage variation immunity test of 3-phase electrical equipment.
LIONCEL VDS-2903 DC voltage dip simulator with high reliability and high precision specially designed for the characteristics and requirements of DC voltage dip and short interruption immunity test.
Pulsed magnetic field test system of LIONCEL can simulate the pulsed magnetic field generated near industrial facilities, power plants, medium/high voltage substations. It has the advantages of smooth pulse waveform, stable performance, easy operation and reducing repeated investment. It provides a standard and ideal basis for evaluating the performance of pulsed magnetic field immunity of electrical and electronic equipment.
Pulsed magnetic field test system of LIONCEL can simulate the pulsed magnetic field generated near industrial facilities, power plants, medium/high voltage substations. It has the advantages of smooth pulse waveform, stable performance, easy operation and reducing repeated investment. It provides a standard and ideal basis for evaluating the performance of pulsed magnetic field immunity of electrical and electronic equipment.
GTEM RF radiation immunity test system is developed by LIONCEL according to IEC 61000-4-3 standard and based on GTEM technology. With reliable performance, convenient operation and comparable test results,it can be comparable with chamber. It has been widely used in power, communications, military industry, quality inspection and other fields to evaluate the sensitivity of equipment to radiated electromagnetic interference of small electronics.
The L-TEM chamber is a test environment developed by LIONCEL according to ISO11452-3 and CISPR25 standards and based on the principle of transverse electromagnetic wave generation. It also provides a predictive test system for the immunity and emission measurement of automotive electronic components. The TEM chamber is a professional automobile with excellent fabrication, excellent characteristics and complete functions which is professional automotive electronic parts testing environment.
Strip line L-SL50 is a test environment developed by LIONCEL according to the requirements of ISO11452-5 standard with the principle of transverse electromagnetic wave generation. It also provides a predictive test system for automotive electronic components based on this test environment. The strip-line is well-made and has excellent characteristics. It is a professional testing environment for automotive electronic parts.
The new intelligent damped oscillatory wave generator adopts the technical framework of EMC PUZZLE. It is composed of powerful mainframe and excellent damped oscillatory wave module. It fully meets the requirements of the latest standard for slow-speed damped oscillatory wave and provides an accurate evaluation method for the test of damping oscillation immunity of electronic products.
CDN-184S is a 4-line coupling/decoupling network for Damped oscillatory waves. It is used to inject damp oscillatory interference into the signal-line port of EUT for manual control.
PMF-801C Series power-frequency magnetic field immunity testing system is developed and manufactured by LIONCEL, which meets the requirements of the latest IEC 61000-4-8 standards and GB/T17626.8-2006 standards. It can fulfill all the test requirements specified in the standards.
The power frequency magnetic field short time generator module is mainly used for short time test of power frequency magnetic field immunity, which meets the test requirements of IEC 61000-4-8 and GB/T17626.8 latest standards.
Power frequency magnetic field antenna,it meets the requirements of IEC 61000-4-8, IEC 61000-4-9 and IEC 61000-4-10 standards. It can be tested by proximity method and immersion method.
LSG2551 series impulse voltage test system is used to test insulation performance of electronic and electrical products. The system is developed by LIONCEL with our Surge Generator Manufacturing Technology.
LSG-6510 Audio & Video Impulse Voltage Generator is mainly used to test the insulation performance of audio & video products according to the requirements of IEC60065 and GB/T8898 standards.
LSG-7284 line impulse voltage generator is mainly used for impulse voltage test of telephone, fax and other communication lines according to YD/T728 standard.
LIONCEL SOC-321A/B short-time overcurrent generator is a special testing equipment for watt-hour meter products according to the testing requirements of GB/T17215.301, GB/T17215.321 and GB/T17215.322.
LIONCEL SOC-321A/B short-time overcurrent generator is a special testing equipment for watt-hour meter products according to the testing requirements of GB/T17215.301, GB/T17215.321 and GB/T17215.322.
LSS series electromagnetic compatibility shielding room is a professional electromagnetic compatibility testing environment designed and constructed by LIONCEL especially for electromagnetic compatibility testing.
LSA Series Chamber is a professional electromagnetic compatibility test environment designed and manufactured by LIONCEL. This series of products is compact electromagnetic compatibility chamber.
LIONCEL LAS-7600 Vehicle Electronic Interference Simulation Test System is a complete set of vehicle electronic immunity test system developed according to the latest requirements of ISO 7637-2 " Road vehicles—Electrical disturbances from conduction and coupling— Part 2: Electrical transient conduction along supply lines only " The system is an indispensable test and evaluation basis for quality assurance and product testing of electrical and electronic equipment for automobile matching.
Complete test system for IEC 61000-3-2 and - 3-3 Single phase test system up to 16 Amps Analog flicker impedance without expensive physical impedance Power supply suitable for testing immunity standard
Complete test system For IEC 61000-3-2, - 3-3, - 3-11 and - 3-1 Three phase test system up to 43 amps per phase Power supply suitable for testing immunity standard
This type of antenna is called the Van Veen loop defined in CISPR 16-1-4 and consists of three orthogonal loops that surround the platform where the EUT is located.
The VDH 30 consists of a conductive sphere with a diameter of 210 mm, a connecting wire with a length of 300 mm, a protection network for the EMI receiver, and a wooden tripod.
The coil adopts a large wire section to ensure the continuous current carrying capacity. In a short time (10 minutes), twice the high current is allowed.
In the conduction test, the high spike signal (including very high spectral density/pulse energy) from LISN may cause damage to the input attenuator, preamplifier, preselector or input mixer in the EMI test receiver.
It complies with the CISPR 16-1-2 international standard conducted electromagnetic interference measurement requirements, according to the electromagnetic interference international European standard and product standard measurement requirements, the measurement range is from 9KHz to 30MHz, used for DC-63Hz power measurement, manual and program control are both possible.
Exquisite design and manufacturing comply with CISPR 16 standards, and fully comply with CISPR 14-1 for discontinuous interference test (called "click") international standard specifications.
F-52B is a clamp-type probe designed for EMI testing and measuring RF current on conductors. It is often used in the training and engineering practice of radio frequency technicians in the laboratory.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The FCC-BCICF-150-2 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high-current test procedures. The FCC-BCICF-150-1 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The FCC-BCICF-150 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
FCC-BCICF-6-150 is designed to meet the standard IEC 61000-4-6 Ed 4.0 section 6.2.3.1–6.2.3.2, which stipulates that "...when the current injection clamp is inserted, the test fixture transmission loss shall not increase More than 1.6dB". This 1.6dB requirement is verified by subtracting the insertion loss when the calibration fixture is not in place from the insertion loss when the calibration fixture is in place.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The FCC-BCICF-4-HV calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The FCC-BCICF-3 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The FCC-BCICF-2 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
FCC-BCICF-1-HV is designed for high voltage applications. This calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test program specifications. The FCC-BCICF-1 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The F-170421-1008-1 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high-current test procedures. This test fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The F-080728-1008-2 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The F-080409-1008-2 calibration fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
The injection probe calibration fixture is part of the test equipment required by most high current test procedures. The test fixture allows users to quickly and easily calibrate the injection probe before performing compliance testing.
F-170701-1008-1 is an efficient high-power injection probe for 10MHz-400MHz frequency band. Its typical insertion loss data is shown below, the input rated continuous power can reach 1000W for 30 minutes.
F-170501-1008-1 can inject very large RF currents into signal or power circuits. The probe has an inner diameter of 40mm, and the usable frequency range is 10MHz-400MHz. The typical insertion loss in the 10MHz-400MHz frequency band is less than 7dB, and the input rated power can reach 2.5kW, lasting 30 minutes.
F-161012-1008-1 is a high-efficiency injection probe, mainly used for low frequency conduction immunity test. The input rated power of the injection probe reaches 2.5kW, which can last for 30 minutes.
F-080915-1008-1 is designed for the conducted immunity test in the 3.0GHz-4.0GHz frequency band. It has high efficiency, high power and small size. It can be used to test independent cable bundles and in-vehicles during bench tests. Cable harness.
F-080409-1008-1 is designed for conducted immunity testing in the 2.0GHz-3.0GHz frequency band, with high efficiency, high power and small size. It can be used to test independent cable bundles and cable bundles in vehicles during bench tests.
F-070601-1008-1 is suitable for BCI testing in accordance with the automotive specification ISO 11452-4 and diagnostic high current injection testing up to 1 GHz. The usable frequency range is 100 kHz-1 GHz. Input continuous power of 500W, which can last for 30 minutes.
F-150-2 is designed for conduction immunity test in the 800MHz-2.1GHz frequency band, with high efficiency, high power and small size. It can be used to test independent cable bundles and cable bundles in vehicles during bench tests.
F-150-1 is designed for conducted immunity testing in the 2.3GHz-7.0GHz frequency band. In order to achieve this goal, the probe has high efficiency, high power and small size. It can be used to test independent cable bundles and cable bundles in vehicles during bench tests.
F-150 is designed for conduction immunity test in the 800MHz-2.1GHz frequency band, with high efficiency, high power and small size. It can be used to test independent cable bundles and cable bundles in vehicles during bench tests.
The electromagnetic clamp is a high-efficiency broadband fixed-aperture clamp injection device, which is used to test the immunity of electronic equipment when direct capacitive coupling technology is not feasible or inappropriate.
The electromagnetic clamp F-203I-A-32mm is a high-efficiency broadband clamp injection device used to test the immunity of electronic equipment when direct capacitive coupling technology is not feasible or inappropriate. When F-203I-A-32mm is used together with F-203I-A-CF3-32mm-150 and F-203I-A-CF3-32mm-50 calibration fixtures, it is fully compliant with IEC61000-4-6 version 4.0.
Radio frequency electromagnetic fields can degrade the performance of electronic devices by generating common-mode currents on the cables. By injecting common-mode current into the cable of the device under test, it is possible to verify the RF immunity of the device under test to these fields.
FCC-TEM-JM5 extends the operating frequency range beyond existing equipment and now allows 3GHz conducted emission and immunity tests on integrated circuits.
FCC-STRPL-8G extends the operating frequency range beyond the existing equipment, and now allows the conducted emission and immunity test of integrated circuits to reach 8 GHz.
F-140 is suitable for BCI testing in compliance with automotive specifications and diagnostic high-current injection testing up to 1 GHz. The available frequency range is 100 kHz-1 GHz.
F-120-9A is designed for conducting immunity test in the frequency band of 10kHz-230MHz. The usable frequency range is 10kHz-230MHz, the insertion loss between 150kHz-200MHz is less than 8dB, the input rated power is 100W, and it can last for 30 minutes.
F-120-8F is designed for conducted immunity test in the frequency band of 10 kHz-400 MHz. The available frequency range is 10 kHz-400 MHz. The typical calibration diagram is as follows.
The F-120-8 clamp injection probe is a high-efficiency, broadband injection probe developed to meet the performance requirements of GM 3100 and ISO 11452-4.
F-120-6A-3 is a broadband, high-efficiency injection probe that can couple large RF currents to the signal or power circuit under test in the 10kHz-400MHz frequency band.
F-120-5 is designed for conducted immunity testing in the 10 kHz-100 MHz frequency band. This probe is an efficient injection probe, mainly used for low-frequency conducted immunity testing.
FCC-MPCF-3-32-40/71/19 is a calibration fixture for current probe calibration. Four latches fix the upper cover to the upper half of the fixture. When the upper cover of the fixture is removed, the current probe can It is easily clipped around the center conductor.
FCC-MPCF-3-32/71/19 is a calibration fixture for current probe calibration. Four latches fix the upper cover to the upper part of the fixture. When the upper cover of the fixture is removed, the current probe can be easily The ground is clamped around the center conductor.
FCC-MPCF-2K is a calibration fixture for current probe calibration. Two thumb screws fix the upper cover to the upper part of the fixture. When the upper cover of the fixture is removed, the current probe can be easily clamped around the center conductor .
FCC-MPCF-2-70/125/38 is a calibration fixture for current probe calibration. Four latches fix the upper cover to the upper part of the fixture. When the upper cover of the fixture is removed, the current probe can be easily The ground is clamped around the center conductor.
FCC-MPCF-2-67/142/53 is a calibration fixture for current probe calibration. Four latches fix the upper cover to the upper part of the fixture. When the upper cover of the fixture is removed, the current probe can be easily The ground is clamped around the center conductor.
FCC-MPCF-2-32-40/71/19 is a calibration fixture for current probe calibration. Four latches fix the upper cover to the upper part of the fixture. When the upper cover of the fixture is removed, the current probe can It is easily clipped around the center conductor.
F-170804-1005-1 is suitable for laboratory and field testing. The available frequency range is 10kHz-400MHz. The typical calibration curve is shown below.
The available frequency range of F-170329-1005-1 is 10kHz-30MHz. The primary power supply current can reach 1000A (DC-400Hz) without changing the transmission impedance.
F-170317-1005-1 is suitable for laboratory and field testing. The probe has a large inner diameter of 305mm, which can accommodate large cable bundles.
F-170308-1005-1 is used to measure the conducted emission in the 10Hz-50MHz frequency band. It can handle the 50A primary power line current from DC-400 Hz without saturation or affecting the transmission impedance.
-2000-40mm-1 is suitable for laboratory and field testing. The outer diameter of the probe is small, about 80 mm, and the inner diameter is 40 mm. DC-400Hz power supply current can reach 350A, RF (CW) current 3A, peak pulse current 100A.
F-2000-32mm-1 is suitable for laboratory and field testing. The outer diameter of the probe is small, about 71 mm, and the inner diameter is 32 mm. DC-400Hz power supply current can reach 350A, RF (CW) current 3A, peak pulse current 100A.
The advantage of F-75B is that it is equipped with a large aperture of 70 mm, which is ideal for large cable bundles. F-75B can be used to measure pulse currents up to 100A, with a rise time of 800 picoseconds and a pulse width of 40 nanoseconds.
F-65 is suitable for laboratory and field testing. It can measure pulse transients with a rise time of 200 picoseconds and a pulse width of 35 nanoseconds. The probe has a small outer diameter of about 71mm, an inner diameter of 32 mm, and a transmission impedance of 1Ω in the 1MHz-1GHz frequency band. DC-400Hz power supply current can reach 350A, RF (CW) current 3A, peak pulse 100A.
F-57 is suitable for laboratory and field testing. The typical calibration diagram is as follows. This clip-on current probe can be used for: Mil-Std 461F CS114, Mil-Std. 461F CS115, Mil-Std. 461F CS116, DO-160 Section 20, CISPR 32.
F-55A is suitable for laboratory and field testing. It can measure pulse transients with a rise time of 800 picoseconds and a pulse width of 3 microseconds. The probe has a small outer diameter of about 71mm, an inner diameter of 32 mm, and a transmission impedance of 0.1Ω in the 100kHz-500MHz frequency band. DC-400Hz power supply current can reach 350A, RF (CW) current 10A, peak pulse 100A.
F-52A is a clamp-on probe designed for EMI testing and measuring RF current on conductors. It is often used in the training and engineering practice of radio frequency technicians in the laboratory.
F-42A is suitable for laboratory and field testing, and the available frequency range is 1kHz-100MHz. A typical calibration curve is shown below. The outer diameter of the probe is small, about 71 mm, and the inner diameter is 32 mm.
The available frequency range of F-40-5 is 10Hz-50MHz. DC-400Hz primary power supply current can reach 1000A, pulse 5000A, without changing the transmission impedance.
F-39-4 current probe adopts split core mechanical design, which can be easily clamped and separated. It has a very small shape and is suitable for clamping conductors in small spaces. F-39-4 provides broadband measurement capabilities for laboratory and workbench environments.
F-39-2 current probe adopts split core mechanical design, which can be easily clamped and separated. It has a very small shape and is suitable for clamping conductors in small spaces. F-39-2 provides broadband measurement capabilities for laboratory and workbench environments.
The F-39-1 current probe adopts a split core mechanical design, which can be easily clamped and separated. It has a very small shape and is suitable for clamping conductors in small spaces. F-39-1 provides broadband measurement capabilities for laboratory and workbench environments.
F-38-4 current probe adopts split core mechanical design, which can be easily clamped and separated. It has a very small shape and is suitable for clamping conductors in small spaces. F-38-4 provides broadband measurement capabilities for laboratory and workbench environments.
The F-38-2 current probe adopts a split core mechanical design, which can be easily clamped and separated. It has a very small shape and is suitable for clamping conductors in small spaces. F-38-2 provides broadband measurement capabilities for laboratory and workbench environments.
The F-38-1 current probe adopts a split core mechanical design, which can be easily clamped and separated. It has a very small shape and is suitable for clamping conductors in small spaces. F-38-1 provides broadband measurement capabilities for laboratory and workbench environments.
F-37-2 is suitable for laboratory and field testing, and the available frequency range is 10kHz-1GHz. The typical transmission impedance of F-37-2 in the 500kHz – 1GHz frequency band is 1Ω (+ 2 dB), the RF current range is a continuous maximum 10A, and the duty cycle is 0.1 peak pulse 100A. The maximum primary power line current is 60A (DC-400 Hz).
F-33-2 is suitable for laboratory and field testing, and the available frequency range is 1kHz-250MHz. A typical calibration curve is shown below. The outer diameter of the probe is small, about 71 mm, and the inner diameter is 32 mm.
F-35A-L is suitable for laboratory and field testing, and is used for emission measurement in the 10Hz-108MHz frequency band. The F-35A-L test current can reach 200A (DC-400 Hz), and the peak pulse can reach 100A.
F-33-1 is suitable for laboratory and field testing. The outer diameter of the probe is small, about 71 mm, and the inner diameter is 32 mm. The available frequency range of F-33-1 is 10kHz-250MHz.
F-14A is used to measure the current on 50Hz, 60Hz and 400Hz power lines, and the available frequency is 10Hz-500kHz. The test current of F-14A can reach 400A (DC-400 Hz) without changing the transmission impedance.
The NNBL 8226 line impedance stabilization network (LISN) conforms to the military standard MIL-STD-461E/F, which is equivalent to the single channel of CISPR 16–1-2 chapter 4.2, with an impedance of 50µH+5Ω)||50Ω.
Broadband Artificial Networks (BAN) are used in the automotive industry to directly inject RF power into signals or power lines. This method is called "direct power injection."
Broadband Artificial Networks (BAN) are used in the automotive industry to directly inject RF power into signals or power lines. This method is called "direct power injection."
An der Hoofden test head VDHH 9502 is used to measure the effects of lighting equipment on human exposure in accordance with the standards DIN IEC 62493:2015 and VDE 0848-493.
NNHV 8123 series asymmetric single-channel artificial power network (AMN) is mainly used to measure the electromagnetic interference of shielded cables in accordance with CISPR 25 ed4 or BMW GS 95025-1, with a frequency range of 0.1-150 MHz.
NNHV 8123-800 series asymmetric single-channel artificial power network (AMN) is mainly used to measure the electromagnetic interference of shielded cables in accordance with CISPR 25 ed4 or BMW GS 95025-1. The frequency range is 0.1-150 MHz.
NNHV 8123-400 series asymmetric single-channel artificial power network (AMN) is mainly used to measure the electromagnetic interference of shielded cables in accordance with CISPR 25 ed4 or BMW GS 95025-1. The frequency range is 0.1-150 MHz.
NNHV 8123-200 series asymmetric single-channel artificial power network (AMN) is mainly used to measure the electromagnetic interference of shielded cables in accordance with CISPR 25 ed4 or BMW GS 95025-1. The frequency range is 0.1-150 MHz.
The hand-held magnetic field sensor coil FESP 5134-40 is designed to determine the magnetic field strength during the immunity test together with an appropriate voltmeter
The CDN coupling and decoupling network can be used for EMI testing. Typically, the lighting products are tested according to the standard CISPR 15, and the CDN can also be tested for conducted immunity according to the standard IEC 61000-4-6.
The CDN coupling and decoupling network can be used for EMI testing. Typically, the lighting products are tested according to the standard CISPR 15, and the CDN can also be tested for conducted immunity according to the standard IEC 61000-4-6.
Open, asymmetrical 50W strip line, used for immunity test of auto parts. (The wooden frame structure needs to bear the ribbon line, which is not included in the delivery).
Linear dual-polarization log-period broadband antenna (aluminum tube) for receiving and transmitting. XSLP9142 has two perpendicularly intersecting polarization planes, each of which can be accessed through an N-type connector.
Log-period broadband antenna, linear polarization, aluminum. Receiving and transmitting signals, equipped with N connector, can withstand high-power operation.
Log-period broadband antenna, linear polarization, aluminum. Receiving and transmitting signals, equipped with N connector, can withstand high-power operation.
Log-period broadband antenna, linear polarization, aluminum. Receiving and transmitting signals, equipped with N connector, can withstand high-power operation.
Log-period broadband antenna, linear polarization, aluminum. Receiving and transmitting signals, equipped with N connector, can withstand high-power operation.
Log-period broadband antenna, linear polarization, aluminum. Receiving and transmitting signals, equipped with N connector, can withstand high-power operation.
Log-period broadband antenna, linear polarization, aluminum. Receiving and transmitting signals, equipped with N connector, can withstand high-power operation.
Log-period broadband antenna, linear polarization, aluminum. Receiving and transmitting signals, equipped with N connector, can withstand high-power operation.
VULB 9168 is a hybrid antenna of a biconical antenna and a log periodic antenna. The frequency range can cover the frequency range of the two antennas.
VULB 9163 is a hybrid antenna of a biconical antenna and a log periodic antenna. The frequency range can cover the frequency range of the two antennas.
VULB 9162 is a hybrid antenna of a biconical antenna and a log periodic antenna. The frequency range can cover the frequency range of the two antennas.
VULB 9161 is a hybrid antenna of a biconical antenna and a log periodic antenna. The frequency range can cover the frequency range of the two antennas.
VULB 9160 is a hybrid antenna of a biconical antenna and a log periodic antenna. The frequency range can cover the frequency range of the two antennas.
The diode pulse limiter, built-in 10dB high-power attenuator, and built-in fuse lamp, strictly control the overload situation and find it in time, which can protect sensitive equipment from damage during high-power measurement.
VHBD9134 High Power Gunella Balun 4:1, with 10 mm component fixing device. The BBAL9136 biconical vibrator is installed on the VHBD 9134 antenna handle (Guanella Balun 4:1) to form a complete biconical antenna with an input power of up to 2.5kW. It is generally used for the radiation immunity test of automotive electronics and military standards. .
The BBA 9106 biconical vibrator, installed on the VHBA 9123 Balun, forms a complete biconical antenna. Generally used for EMI testing of automotive electronics, military standards, etc., and for NSA testing in accordance with ANSI C63.4.
The VHA9103 half-wave tuned dipole antenna, with a maximum effective transmission power of 10 watts, is used for field strength testing and reference for generating preset VHF electromagnetic fields.
The BBA 9106 biconical vibrator, installed on the VHA 9103B Balun, forms a complete biconical antenna. Generally used for EMI testing of automotive electronics, military standards, etc., and for NSA testing in accordance with ANSI C63.4.
The active whip antenna VAMP 9243 consists of a vertically placed whip rod and an impedance matching amplifier. The standard length of the whip rod is 1 meter. In the frequency range of 9kHz-30MHz, the conversion factor (antenna factor) is a constant value (10dB), independent of frequency. If you need to measure very strong field strength, you can add a 20dB attenuator option.
The comb generator SG 9302 C generates a spectrum composed of lines separated by 100 MHz up to 18 GHz. Combined with an antenna, it can be used as an emission source for testing open area test sites, anechoic chambers or GTEM units. Individual components such as measurement receivers, spectrum analyzers, cables and attenuators can also be tested.
The UHA9105 half-wave tuned dipole antenna has a maximum effective transmission power of 10 watts. It is used for field strength testing and reference for generating preset UHF electromagnetic fields.
It is specially designed for measuring power electronic equipment, such as switching power supply with strong interference spectrum in the kHz frequency range.
SY 9501 balanced/unbalanced converter is used to measure the insertion loss of lighting equipment according to EN 55015 (CISPR 15), with a frequency range of 150kHz-1.605MHz.
STLP 9149 is a linearly polarized microwave log-period antenna that can be used for receiving and transmitting. It is laser-cut from brass. In order to protect the structure from damage, a low-loss plastic protective cover is installed on the outside.
STLP 9148 is a laminated log-period broadband antenna for linearly polarized reception and transmission applications in the microwave frequency range. The antenna structure is made of laser-cut brass. To protect the delicate antenna structure from damage, the antenna is equipped with a removable plastic protective cover.
Linearly polarized laminated log-period broadband antenna with N or 7/16 connector for receiving and transmitting applications. Main purpose: to generate the specified field strength level for the immunity test.
Linearly polarized laminated log-period broadband antenna with N or 7/16 connector for receiving and transmitting applications. Main purpose: to generate the specified field strength level for the immunity test.
Linearly polarized laminated log-period broadband antenna with N or 7/16 connector for receiving and transmitting applications. Main purpose: to generate the specified field strength level for the immunity test.
Linearly polarized laminated log-period broadband antenna with N or 7/16 connector for receiving and transmitting applications. Main purpose: to generate the specified field strength level for the immunity test.
Linearly polarized laminated log-period broadband antenna with N or 7/16 connector for receiving and transmitting applications. Main purpose: to generate the specified field strength level for the immunity test.
Linearly polarized laminated log-period broadband antenna with N or 7/16 connector for receiving and transmitting applications. Main purpose: to generate the specified field strength level for the immunity test.
SBA9119 meets CISPR 16-1-4 for site verification above 1GHz. Used in combination with SBA 9112, it can become an excellent antenna covering the frequency range of 1-18 GHz.
It is used to measure the disturbance voltage of unshielded twisted pair (UTP) or communication ports with 2/4/6/8 wires according to CISPR 22:2005 or EN 55022:2006.
The main application of the asymmetric single-channel AMN (artificial power grid) NNBM 8124 is to measure the interference voltage of vehicles, aircraft and ships in the HF-VHF frequency range of 0.1-150MHz.
IGUU 2918 is used by various EMI receiver manufacturers and measurement organizations, and is the most widely used calibration pulse source in the world.
IGUU 2916 is used by various EMI receiver manufacturers and measurement organizations, and is the most widely used calibration pulse source in the world.
The passive LC filter and the N-type female connector are installed in a metal shielded enclosure. The basic frequency is 27.12MHz, which is mainly used for stray measurement of medical diathermy equipment.
Linear polarization standard gain horn antenna, made of aluminum. Far field gain optimization. Receive and transmit signals, equipped with 7-16 connectors, suitable for high-power operation.
Linear polarization standard gain horn antenna, made of aluminum. Far field gain optimization. Receive and transmit signals, equipped with 7-16 connectors, suitable for high-power operation.
The active loop antenna FMZB 1519 B can be used for frequency selective measurement of magnetic fields (virtual electric fields) in the long-wave, medium-wave and short-wave frequency ranges.
FESP 5133 is mainly used in the anti-interference test of magnetic field, and it complies with EN 55103 and MIL-STD-461 E, VG 95377 part 13. According to the characteristics of the current source, a magnetic field of up to 1000 A/m can be generated in a short time. The generated magnetic field is proportional to the coil current. A distance ring allows the precise distance between the coil and the EUT surface to be 50 mm and 100 mm.
FCKL1528's unique radio frequency and analog circuits provide accurate measurements, whether computer-controlled or not. The receiver is a complete electromagnetic interference measurement, but can be equipped with useful options.
BBV9743 is a universal broadband preamplifier with high gain and low internal noise. The wide frequency range of up to 6 GHz allows measurements according to CISPR 22.
BBV9743B is a universal broadband preamplifier with high gain and low internal noise. The wide frequency range of up to 6 GHz allows measurements according to CISPR 22.
Low-noise and low-power broadband amplifiers are used to improve the sensitivity of field strength testing and general attenuation testing, up to 28GHz.
Broadband amplifiers with low noise and low power consumption are used to improve the sensitivity of field strength testing and general attenuation testing, up to 18GHz.
Broadband amplifiers with low noise and low power consumption are used to improve the sensitivity of field strength testing and general attenuation testing, up to 18GHz.
Broadband amplifiers with low noise and low power consumption are used to improve the sensitivity of field strength testing and general attenuation testing, up to 18GHz.
Linearly polarized broadband horn antenna (brass fixed in a plastic body) for receiving and radiation. It can be used as a receiving antenna for EMI testing and as a transmitting antenna for radio frequency radiation immunity testing.
The double-ridge broadband horn antenna has the characteristics of broadband, high gain, and high power. It can be used as a receiving antenna for EMI testing and as a transmitting antenna for radio frequency radiation immunity testing.
Double ridge broadband horn antenna, linear polarization, aluminum. Receive and transmit signals for sensitivity testing, equipped with 7-16 connectors, can withstand high-power operation.
Double ridge broadband horn antenna, linear polarization, aluminum. Receive and transmit signals, equipped with 7-16 connectors, can withstand high-power operation.
AM-9144 double telescopic tripod, the height is adjustable between 1.2 meters and 2 meters, the height adjustment is very simple, the main body is made of glass fiber material to avoid reflection.
AM 9104 is mainly used for radiation emission testing that requires highly scanning. AM9104 is particularly suitable for electromagnetic compatibility radiation emission testing in an open field. With horizontal and vertical polarity switching.
Flat vibrator 420NJ., linearly polarized, its shape is flat, it is suitable for SBA9113 balun transformer, and it also matches SBA9113B and SBA9113 simplified version. Effective anti-jamming test can be carried out at close range.
ESD-202E Electrostatic Discharge Generator is an intelligent touchscreen ESD generator product developed by Linsir, with mature technology, ergonomic design, and lightweight construction. It provides reliable support for users' electromagnetic compatibility testing with its powerful testing functions and excellent discharge characteristics.
ESD-202G/203G electrostatic discharge generator is a new intelligent full-color touch screen electrostatic discharge generator developed by Lingshi. With mature technology, it provides reliable basis for users' electromagnetic compatibility testing with its powerful testing functions and excellent discharge characteristics.
VDS-1120A three-phase AC voltage drop simulator is a high-reliability, high-precision test equipment specially designed for the characteristics and requirements of voltage transient and short-time interruption immunity tests of single/three-phase electrical equipment. It has a unique modular product structure and powerful scalability to achieve phase shift function during LL calibration.
RWG-126H is a ring wave generator developed by Lingshi, with an output of up to 6kV and full-color capacitive touch screen control. It has a built-in three-phase coupling and decoupling network, providing a reliable and unified basis for users
The LSG-512 series is a lightning surge generator developed by Lingshi with an output of up to 12 kV. It is controlled by a full-color capacitive touch screen, has leading technology, and is a mature product. It provides a reliable and unified basis for lightning surge testing in user products. The 1.2/50 µs generator is equipped with a pulse magnetic field function as standard.
CDN-508S is a manual coupling and decoupling network specially designed for testing unshielded symmetrical lines and unshielded asymmetrical signal lines in lightning surge tests. This network can simultaneously meet the test methods required by the standard for unshielded asymmetrical lines with one device.
CDN-508SUD is a test device for unshielded symmetrical lines and manual coupling and decoupling networks in lightning surge tests. It is a high-bandwidth and high-communication rate test device. It is compact and can be used for testing requirements of 1.2/50µs surge waveforms.
The CDN-5432H series coupling and decoupling network is the coupling and decoupling network product with small enough power capacity, high enough integration and high enough test voltage in the market. It can realize the automatic interference injection function with Lingshi pulse group surge two-in-one generator. The performance meets the calibration requirements of the output waveform in IEC61000-4-5 ed.3 and IEC61000-4-4 standards.
As the main component of the lightning surge/ring wave test system, the lightning surge/ring wave coupling and decoupling network directly determines the consistency and repeatability of the test results. The power line coupling and decoupling network developed and produced by Lingshi meets the calibration requirements for the output waveform in IEC61000-4-5 Ed.3 and IEC61000-4-12, providing an accurate evaluation method for product electromagnetic compatibility immunity testing.
The CDN-4320H coupling and decoupling network, in conjunction with the pulse group generator independently developed by Lingshi, achieves an upgrade of network capacity. Its excellent coupling and decoupling performance meets the requirements of standard IEC 61000-4-4 Ed.3. The current capacity of the test product of the upgradeable pulse group generator reaches 200 A; it is mainly designed for the testing requirements of new energy, electric vehicle charging piles and other products.
The DHV-30A High-Impedance High Voltage Meter, developed by Shanghai Lingshi, is specifically designed for calibrating air discharge voltage in electrostatic discharge (ESD) testing, complying with the IEC 61000-4-2 standard. With an input impedance of ≥100 GΩ, it provides a reliable reference for voltage calibration of ESD equipment.
The CDN-508SUS is a specialized coupling/decoupling network designed for lightning surge testing on indoor/outdoor unshielded high-speed symmetric signal lines, enabling online testing of equipment under test (EUT) with a communication bandwidth of up to 100 kHz
The VDS-2903/2906 DC voltage dip simulator is designed to evaluate the immunity of electrical and electronic products to DC grid fluctuations. It complies with IEC 61000-4-29 and GB/T 17626.29 standards for voltage transient, short interruption, and dip testing
The VDS-1103B is a high-reliability, precision test equipment designed for evaluating the immunity of single-phase electrical devices to voltage transients, dips, and short interruptions. It meets IEC 61000-4-11 and GB/T 17626.11 standards for immunity testing under power quality disturbances.
The DOW-3010 is a two-in-one integrated generator for damped oscillatory wave (DOW) and damped oscillatory magnetic field (DOM) immunity testing. It delivers outputs up to 3 kV (voltage) and 100 A/m (magnetic field), with a maximum current of 120 A for magnetic field testing. Compliant with international standards, it provides precise evaluation for product immunity to oscillatory disturbances.
The DOW-183F is a high-performance fast damped oscillatory wave (DOW) generator designed for immunity testing against rapid oscillatory transients. With an output voltage of up to 4.4 kV, it supports testing at 3 MHz, 10 MHz, and 30 MHz, ensuring compliance with international standards for magnetic field immunity evaluation.