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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
-
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
Broadband artificial network BAN 8530
Brand:
SCHWARZBECK
- Product Description
- Main features
- Technical parameters
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- Commodity name: Broadband artificial network BAN 8530
- Commodity ID: 1064824110535299072
- 品牌11: SCHWARZBECK
- 描述: Broadband artificial networks (BANs) are used in the automotive industry to directly inject RF power into signals or power lines, a method known as "direct power injection".
- 品牌: SCHWARZBECK
Broadband artificial networks (BANs) are used in the automotive industry to inject RF power directly into signals or power lines, a method known as "direct power injection."
BAN provides good isolation between the AE port and the EUT port, therefore, the injected RF signal mainly points to the EUT port, from the EUT port, BAN provides the standard minimum impedance, and the RF signal from the amplifier is loaded by this impedance. Higher current BAN requires larger ferrites with lower impedance and poor decoupling. Therefore, BAN8530 can only be used in the range of 8A - 30A, and for currents less than 8A, BAN 8530 is not suitable.
The basic circuit is an L/C low-pass filter with a wideband monolithic ceramic capacitor at the AE terminal and an inductor consisting of five toroidal coils connected in series.
The choice of BAN depends on the maximum current and signal transmission rate, and the BAN8530 specifies currents between 8A and 30A.
Test arrangements and measurement methods are described in manufacturer standards such as ISO 11452-7 or DaimlerChrysler DC-10614 (2005-03).
BAN must be connected in series with the device under test (DUT), so a 4mm socket is used, and for higher currents, a hook-type cable terminal is used because its contact resistance is lower and heat dissipation is less. The red AE connector in ISO 11452-7 is called "Terminal 2" and is connected to the power supply of our auxiliary equipment.
The black terminal post on the AE side is connected to the reference ground, which can be used to measure the electrical characteristics of the BAN or as an additional ground connection, which is already provided by the metal plate of the BAN 8530 base.
BNC connectors can be used to inject RF signals from generators/amplifiers into DUTs, and in the above standards, BNC connectors are also referred to as "Terminal 3".
According to the standard, it is necessary to use a DC blocking capacitor, which must be connected to the BNC jack and provide isolation between the DC on-board voltage and the RF injection device, so as to avoid the possibility of damaging the connected measurement equipment by the DC current of the on-board voltage, and the appropriate DC-blocking capacitor can be selected, which is "DC Block 500".
For less than 8A, it is recommended to use BAN 8508, other current or transmission rate BAN is available upon request.
The solder joint of the EUT power line is defined as the reference surface for measuring the impedance of the BAN8530.
Security Recommendations:
BAN 8530 has an open frame design, so it does not have protection against accidental contact, depending on the operating voltage, dangerous voltages may occur, therefore, conductive objects must not be placed on or near the ban. Any user must be aware of the possible dangers. The device must be set up in a closed environment to prevent accidental contact with the wires.
If BAN is operated at high current for a long time, the coil will heat up, only technicians can use BAN, and the safety standards of the country that use BAN must be observed.
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model
BAN 8530
Frequency Range
250 kHz – 500 MHz
Nominal rated range
8 A – 30 A
linear
Single
DUT/AEinterface
6mmTerminal post, 4mm banana head jack
Maximum linear voltage
100 V DC
Maximum linear current
30 A DC
port
50 Oh BNC
RFMaximum output power
5 watts
Decoupling (EuT/BNC to AE terminal)
250 kHz – 500 MHz ,>20 dB
impedance
250 kHz – 1 MHz,>200 Ω
1 MHz – 150 MHz,>400 Ω
150 MHz – 250 MHz,>200 Ω
250 MHz – 500 MHz,>100 Ω
W x H x D
160 mm x 68 mm x 50 mm
weight
Approx. 385 g
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model
BAN 8508
Frequency Range
250KHz~500MHz
Nominal rated range
2A~8A
DUT/AEinterface
6mmTerminal post, 4mm banana head jack
Maximum linear voltage
100V DC
Maximum linear current
8A DC
port
BNC
RFMaximum output power
5W
Decoupling (EuT/BNC to AE terminal)
0.25 MHz to 1 MHz,>20 dB
1 MHz to 500 MHz,>35 dB
impedance
0.25 MHz to 0.5 MHz,>200 Ω
0.50 MHz to 250 MHz,>500 Ω
250 MHz to 500 MHz,>200 Ω
W x H x D
128 mm x 54 mm x 41 mm
weight
Approx. 160 g
standard
- DIN ISO 11452-7: 2002-07
DC-10614:2005-03
Attenuation from BNC (Eut) to AE:

Impedance:
