The GLN-5040A two-line V-network is used for EMI testing. It provides a stable impedance for the EUT terminals and reference ground for conducted emissions. The GLN5040A also isolates unwanted mains signals from the power supply and connects only the interference voltage of the measured device to the receiver. of the receiver. The product's performance complies with. is compliant with the requirements of CISPR16-1-2 for V mains with a simulated impedance of 50μH + 5 Ω) | 50 Ω over a frequency range of 9kHz to 30MHz. It uses a standard BNC output connector with an output impedance of 50 Ω. 50 Ω output impedance, which allows it to be matched to any measurement devices
such as receivers and spectrum analyzers. Product The product is equipped with artificial hand function artificial hand function, which simulates handheld measurement hand measurement, 9kHz high pass filter selection function and 150kHz filter selection function, which enables the product to select the correct filters according to the relevant standard. GLN-5040A is also suitable for. phase conduction of signals (voltage disturbances). Due to the design rules,
high leakage current may occur. Page It is recommended that the device be grounded while in use, and if necessary, it should also be used with an isolation transformer. You can use the GIT-5060, whose output power is 900VA, meeting the requirements of most test equipment.
GLN-5040A specifications
Frequency range 9kHz-30MHz
Line impedance (50uH+5Ω)|50Ω Type V, Two-Line VNetwork
Number of phases of the circuit under test Single phase
AC voltage range 0~240V AC+10%.
AC frequency range 50~60Hz ±5%.
DC voltage range 0~50V DC
Maximum allowable current (continuous) 16A
High pass filter (alternative) 150kHz
Voltage divider between
EUT and the measuring receiver port 10dB
Response threshold of the built-in
impulse limiter 130dBuV
RF output BNC(female)/50Ω
Artificial hand function Built-in
EUT power interface German standard power socket
Operating temperature range +5°C~+45°C
Storage temperature -40°C~+70°.