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EMC Test System For Civil Products
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- Electrostatic Discharge Immunity
- Radiated, radio-frequency,electromagnetic field immunity
- Electrical Fast Transient Burst Immunity
- Surge immunity
- Immunity To Conducted Disturbance Induced by Radio Frequency Field
- Power Frequency Magnetic Field Immunity
- Voltage dips, short interruptions and voltage variations immunity
- Harmonics and interharmonics including mains signalling at AC power port, low frequency immunity
- Voltage Fluctuation Immunity Test
- Common mode disturbances in the frequency range 0 Hz to 150 kHz Immunity
- Ripple on DC input power port immunity
- Three-phase Voltage Unbalance Immunity Test
- Power Frequency Variation Immunity Test
- Oscillatory Wave Immunity Test
- Damped Oscillatory Magnetic Field Immunity Test
- Differential mode disturbances immunity test
- DC power input port voltage dip, short interruption and voltage variations test
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Automotive Electronic EMC Test System
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- Electrostatic Discharge Immunity
- Electrical Transient Conducted Immunity
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Anechoic Chamber Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Transverse Wave (TEM) Cell Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-large Current injection (BCI) method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Stripline Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-direct Injection Of Radio Frequency (RF) Power
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Magnetic Field Immunity Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Portable Transmitter Simulation Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Conduction Immunity Method For Extended Audio Range
- High Voltage Electrical Performance ISO 21498-2 Test System
- High Voltage Transient Conducted Immunity (ISO 7637-4)
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- CE101(25Hz ~ 10kHz power line conduction emission)
- CE102(10kHz ~ 10MHz power line conduction emission)
- CE106(10kHz ~ 40GHz antenna port conducted emission)
- CE107 (Power Line Spike (Time Domain) Conducted Emission)
- RE101(25Hz ~ 100kHz magnetic field radiation emission)
- RE102(10kHz ~ 18GHz electric field radiation emission)
- RE103(10kHz ~ 40GHz antenna harmonic and spurious output radiated emission)
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- CS101(25Hz ~ 150kHz power line conduction sensitivity)
- CS102(25Hz ~ 50kHz ground wire conduction sensitivity)
- CS103(15kHz ~ 10GHz Antenna Port Intermodulation Conducted Sensitivity)
- CS104(25Hz ~ 20GHz antenna port unwanted signal suppression conduction sensitivity)
- CS105(25Hz ~ 20GHz antenna port intermodulation conduction sensitivity)
- CS106 (Power Line Spike Signal Conduction Sensitivity)
- CS109(50Hz ~ 100kHz shell current conduction sensitivity)
- CS112 (Electrostatic Discharge Sensitivity)
- CS114(4kHz ~ 400MHz cable bundle injection conduction sensitivity)
- CS115 (Conduction sensitivity of cable bundle injection pulse excitation)
- CS116(10kHz to 100MHz Cable and Power Line Damped Sinusoidal Transient Conduction Sensitivity)
- RS101(25Hz ~ 100kHz magnetic field radiation sensitivity)
- RS103(10kHz ~ 40GHz electric field radiation sensitivity)
- RS105 (Transient Electromagnetic Field Radiated Susceptibility)
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EMC Test System For Civil Products
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- Electrostatic Discharge Immunity
- Radiated, radio-frequency,electromagnetic field immunity
- Electrical Fast Transient Burst Immunity
- Surge immunity
- Immunity To Conducted Disturbance Induced by Radio Frequency Field
- Power Frequency Magnetic Field Immunity
- Voltage dips, short interruptions and voltage variations immunity
- Harmonics and interharmonics including mains signalling at AC power port, low frequency immunity
- Voltage Fluctuation Immunity Test
- Common mode disturbances in the frequency range 0 Hz to 150 kHz Immunity
- Ripple on DC input power port immunity
- Three-phase Voltage Unbalance Immunity Test
- Power Frequency Variation Immunity Test
- Oscillatory Wave Immunity Test
- Damped Oscillatory Magnetic Field Immunity Test
- Differential mode disturbances immunity test
- DC power input port voltage dip, short interruption and voltage variations test
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Automotive Electronic EMC Test System
-
- Electrostatic Discharge Immunity
- Electrical Transient Conducted Immunity
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Anechoic Chamber Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Transverse Wave (TEM) Cell Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-large Current injection (BCI) method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Stripline Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-direct Injection Of Radio Frequency (RF) Power
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Magnetic Field Immunity Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Portable Transmitter Simulation Method
- Immunity Test To Narrowband Radiated Electromagnetic Energy-Conduction Immunity Method For Extended Audio Range
- High Voltage Electrical Performance ISO 21498-2 Test System
- High Voltage Transient Conducted Immunity (ISO 7637-4)
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- CE101(25Hz ~ 10kHz power line conduction emission)
- CE102(10kHz ~ 10MHz power line conduction emission)
- CE106(10kHz ~ 40GHz antenna port conducted emission)
- CE107 (Power Line Spike (Time Domain) Conducted Emission)
- RE101(25Hz ~ 100kHz magnetic field radiation emission)
- RE102(10kHz ~ 18GHz electric field radiation emission)
- RE103(10kHz ~ 40GHz antenna harmonic and spurious output radiated emission)
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- CS101(25Hz ~ 150kHz power line conduction sensitivity)
- CS102(25Hz ~ 50kHz ground wire conduction sensitivity)
- CS103(15kHz ~ 10GHz Antenna Port Intermodulation Conducted Sensitivity)
- CS104(25Hz ~ 20GHz antenna port unwanted signal suppression conduction sensitivity)
- CS105(25Hz ~ 20GHz antenna port intermodulation conduction sensitivity)
- CS106 (Power Line Spike Signal Conduction Sensitivity)
- CS109(50Hz ~ 100kHz shell current conduction sensitivity)
- CS112 (Electrostatic Discharge Sensitivity)
- CS114(4kHz ~ 400MHz cable bundle injection conduction sensitivity)
- CS115 (Conduction sensitivity of cable bundle injection pulse excitation)
- CS116(10kHz to 100MHz Cable and Power Line Damped Sinusoidal Transient Conduction Sensitivity)
- RS101(25Hz ~ 100kHz magnetic field radiation sensitivity)
- RS103(10kHz ~ 40GHz electric field radiation sensitivity)
- RS105 (Transient Electromagnetic Field Radiated Susceptibility)
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Product
EMC Testing Solution Provider
VCS 500N12 series surge simulator
Brand:
EM TEST
- Product Description
- Main features
- Technical parameters
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- Commodity name: VCS 500N12 series surge simulator
- Commodity ID: 1064637964559732736
- 品牌11: EMTEST
- 行业: 民用
- 描述: The occurrence of surge pulses is caused by lightning directly or indirectly hitting outdoor circuits.
- 品牌: EM TEST
Combined Wave Simulator
Surge pulses are caused by lightning directly or indirectly hitting outdoor circuits. This will cause a transient high voltage or high current from an electrical current or electromagnetic field. In addition, switching transients from switching glitches and system faults are another source of surges. Due to the nature of this phenomenon, almost all electrical and electronic equipment is affected by surges, which further justifies the need for extensive surge testing. The surge voltage to be tested should be as large as several thousand volts, and the surge current should be several thousand amperes.
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main feature:
Surge pulse voltage/current up to 12 kV/6 kA
Single-phase or three-phase coupling network up to 100 A (external option)
Failure detection function
warning light control
Security lock
Standard Test Procedure
USB and GPIB interface
Standards compliant:
EN 61000-4-5
IN 61000-4-9
IEC 60255-22-5
IEC 61000-4-5
IEC 61000-4-9
IEC 61326
IEC 61850-3
IEC 62477-1
ITU-T K.12
ITU-T K.20
ITU-T K.45
advantage:
VCS 500N12 - 12 kV / 6 kA Surge Combined Wave Simulator
VCS 500N12 surge combined wave simulator can generate surge pulses with a test voltage up to 12 kV and a test current up to 6 kA, which is suitable for testing electronic components (eg: overvoltage protection test for communication equipment). The surge pulse generated by the simulator can be applied to the power line through an external single-phase or three-phase coupling/decoupling network. The coupling network is controlled by VCS 500N12, which can automatically set the coupling mode and source impedance.
VCS 500N12 has a failure detection function for monitoring the level of the equipment under test. Peak voltage and peak current can not only be displayed on the front panel, but also can be uploaded to the software and recorded in the test report. In addition, the VCS 500N12 includes safety features such as access control warning lights and safety interlocks.
Pre-programmed standard test routines are easy to use. Through the quick start test program of VCS 500N12, the user can adjust the test parameters online during the test, so as to evaluate the sensitivity threshold of a single device under test. This feature is most suitable for product development testing.
Through the front panel menu and function keys, users can quickly and accurately edit the test program. The control cursor is used to quickly control all test parameters of the programmed test program, which makes the test process very simple and ensures that each test step can be carried out correctly.
controlling software:
Control and report generation software iec.control
iec.control is a very user-friendly control software. It is easy to use, has a clear user interface structure and strong flexibility. Various operating functions and EM TEST standard information library allow users to easily complete custom test procedures. It can automatically identify the connected EM TEST test equipment and perform automatic configuration. Its powerful reporting function can help users generate test reports that meet international requirements.
iec.control supports Windows 7, Windows 8 (64Bit) and Windows 10 operating systems. Remote control is done via USB or GPIB interface. iec.control is compatible with various GPIB cards of National Instruments.
Accessory equipment:
CNI 503 - Three-phase coupling/decoupling network for burst and surge testing
EM TEST provides a series of fully automatic three-phase coupling/decoupling networks for burst and surge testing to expand the testing capabilities for three-phase equipment under test. The nominal current of the network can be up to 100 A.
CNV 503 - Three-phase coupling/decoupling network for surge testing
EM TEST provides a series of fully automatic three-phase coupling/decoupling networks for surge testing, which can expand the test capability for three-phase equipment under test, and the rated current of the network can reach up to 100 A.
CNV 504N/508N - Signal/Data Line Coupling/Decoupling Networks for Surge Testing
CNV 504N / 508N coupling/decoupling network can couple surge pulses to I/O lines, signal/data lines and communication lines, meeting the requirements of IEC 61000-4-5 Ed 3.0 standard.
appendix:
MS 100N - Magnetic field coil for power frequency and pulsed magnetic field testing
MS 100N is a 1 m * 1 m magnetic field coil, which meets the requirements of IEC / EN61000-4-8 and IEC / EN 61000-4-9 standards. The coil moves easily, is height-adjustable, and swivels 360 degrees. When it is necessary to generate low-level power frequency magnetic field strength, the current transformer MC 2630 can be used together. For high-level field strength tests above 100 A/m, MC 26100 current transformers are required.
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Specific indicators:
VCS 500N12 Series
VCS 500N12 model
VCS 500N12
12 kV surge simulator
waveform 1.2 / 50 us - 8 / 20 us
Coupling method complies with IEC and ANSI Cat.B standard
Equipped with external three-phase 3 x 480 V coupling networkVCS 500N12.2
12 kV surge simulator
waveform 1.2 / 50 us - 8 / 20 us
Coupling method complies with IEC and ANSI Cat.B standards
Equipped with external three-phase 3 x 690 V coupling network
to be used with CNV 503S21Combined Waveform 1.2 / 50 US - 8 / 20 US
open circuit voltage
500 V - 12,000 V ± 10%
Rise Time
1.2 us ± 30%
Pulse half peak time
50 us ± 20%
short circuit current
6,000 A max ± 10%
Rise Time
8 us ± 20%
Pulse half peak time
20 us ± 20%
polarity
positive, negative, alternating
counter
1 - 30,000 or unlimited
trigger circuit
trigger method
Automatic, manual, external trigger
CRO trigger
Oscilloscope 5 V trigger signal
Synchronize
0° - 360°, resolution 1°
repetition rate
6 s - 999 s, depending on voltage
output
direct output
Output via high voltage connector:
- Zi = 2 ohm
- connection to external surge coupling networkMeasurement
CRO voltage monitoring
10 Vp corresponds to 12,000 V
CRO current monitoring
10 Vp corresponds to 6,000 A
peak voltage
12,000 V, LCD display
peak current
6,000 Amps, LCD display
test program
Quick Start
Parameters can be adjusted online, simple and fast
Standard Test Procedure
Compliant with IEC 61000-4-5 standard, test level 1 - 4
manual setting standard test procedureuser testing program
Change polarity after N pulses
Change coupling after N pulses
Change voltage after N pulses
Change phase angle after N pulsesServe
Service, Setup, Self-Test
interface
serial interface
Optical link with 3 m long cable, USB Type A connector
parallel interface
IEEE 488, addresses 1 - 30
Coupled network interface
Control external coupling network
Safety
safety circuit
Control input (24 V DC)
Warning Light
floating output contact
general data
VCS 500N12
size and weight
19"/9 HU, about 35 kg
supply voltage
115 / 230 V +10 / -15%
fuse
2 x T 2 AT(230 V)或 2 X T 4 AT(115 V)
VCS 500N12.2
size and weight
19" /12 HU, about 40 kg
supply voltage
115 / 230 V +10 / -15%
fuse
2 x T 2 AT(230 V)或 2 X T 4 AT(115 V)
Environmental requirements
temperature
10 °C -35 °C
Relative humidity
30 % - 75 %, non-condensing
atmospheric pressure
86 kPa - 106 kPa
option
MS 100N
Field coils with field strengths up to 3,200 A/m
iec.control
Remote control and reporting software including standard test procedures and report generation.
appendix
Power Line Coupling/Decoupling Networks
CNV 501S6
Single phase coupling and decoupling network for surge test, 250V/16A
CNV 501S7
Single phase coupling and decoupling network for surge test, 250V/32A
CNV 503S14
Three-phase coupling and decoupling network for surge test, 3×440V/16A
CNV 503S15
Three-phase coupling and decoupling network for surge test, 3×440V/32A
CNV 503S21
Three-phase coupling and decoupling network, used for surge test, 3×690V/32A
needs to be used with VCS 500N12.2Signal line/communication line coupling/decoupling network
CNV 504N series
4-wire signal line/data line coupling network
according to IEC 61000-4-5 Ed 3.0 fig. 9
Surge voltage: up to 10 kV
EUT current: up to 4 ACNV 508N series
8-wire signal line/data line coupling network
according to IEC 61000-4-5 Ed 3.0 fig. 9
Surge voltage: up to 10 kV
EUT current: up to 4 ACNV 504T5
4-wire unshielded symmetrical line (communication line) coupling and decoupling network
according to IEC 61000-4-5 standard Ed 3.0 (fig. 10)CNV 508T5
8-wire unshielded symmetrical line (communication line) coupling and decoupling network
conforming to IEC 61000-4-5 standard Ed 3.0 (fig. 10)CNI 508N2 Network Group
Coupling/decoupling network and protection network group for unshielded and shielded high-speed communication line (Ethernet line) testing
SPN 508N1
Surge protection network for unshielded and shielded cables and 4 twisted pairs, residual voltage up to 10 V