Inside an RF Anechoic Chamber: OTA Test Setup
A short engineering lab moment: preparing a wireless terminal for OTA testing inside an RF anechoic chamber. The setup includes DUT placement, laser alignment, and operation checks before measurement.

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@geemcsolutions
Inside an RF Anechoic Chamber: OTA Test Setup
A short engineering lab moment: preparing a wireless terminal for OTA testing inside an RF anechoic chamber. The setup includes DUT placement, laser alignment, and operation checks before measurement.
Inside an EMC Anechoic Chamber
walkthrough inside an EMC anechoic chamber, showing the absorber-lined walls, test area, antenna mast, and RF testing environment.
This kind of chamber setup is used to support radiated EMC / RF testing and compliance preparation for electronic products.
https://ge-emc.com/solutions/
EMC Test Equipment Running Inside an Anechoic Chamber
Showing EMC / RF test equipment in operation inside an anechoic chamber.
https://ge-emc.com/solutions/
Broadband Dual Ridged Horn Antenna OBH-230
Frequency range: 0.2-3GHz Gain: 6-15dBi. VSWR: 1.5:1 Typ. Power handling: 2000W Max. with N-Type and 3000W Max. with DIN connector OBH-230 Broadband dual ridged horn antenna is effective for EMC testing systems and Telecommunication applications
Ultra Wide-Band Dual Ridged Horn Antenna OBH-460-HG
Frequency range: 0.4-6GHz Gain: 6-19dBi. Input Power: 0.4-1.4kW VSWR: <2typ. Impedance: 50 Ohm Wide bandwidth. Linear Polarized with high polarization purity OBH-460-HG Ultra wide-band dual ridged horn antenna stands out for EMC/EMI.
FEATURES Frequency range: 0.4-6GHz Gain: 6-19dBi. Input Power: 0.4-1.4kW VSWR: <2typ. Impedance: 50 Ohm Wide bandwidth. Linear Polarized wit
A Detail on the EMC Chamber Door
A closer look at the chamber door — Focusing on the shielding finger structure along the EMC chamber door frame.
Inside an EMC Shielded Enclosure
More than just hardware — this is where signal control begins. Absorbers, shielding, and precision all in one compact setup.
A look inside a real EMC lab
Radiated emission testing in a controlled environment where precision matters.
Log-Periodic Antenna OLP-00810
Frequency range: 80 MHz to 1 GHz Gain: 7.5 dBi (typ.) VSWR: 1.5:1 (typ.) Impedance: 50Ω Connector Type: N-Type, female
Log-Periodic Antenna OLP-213
Frequency range: 200 MHz to 1.3 GHz Gain: ≥ 6 dBi (typ.) VSWR:<2:1 Impedance: 50Ω Connector Type: N-Type, female
Triple Loop Antenna & Conducted Disturbance Power Setup | EMC Lab
High-Performance Log – Periodic Antenna OVLP-00360
Frequency Range: 30MHz∼6GHz Polarization: linear Max InputPower(W): 225 W RF connector: N female Nominal impedance: 50Ohm Gain(dBi): 8.5 dBi (typ.) VSWR: < 2 (typ.)
Biconical Antenna OBC-530-20W-1
Frequency Range: (500-3000)MHz Nominal lmpedance: 50 Ω Polarization: Linear Connector: N type female Power Handling: 20 W VSWR: 2.0:1 Impedance: 50 Ohms Pattern Type: Omnidirectional
EMC Anechoic Chamber Construction in Progress ⚡ Supporting EMC testing from design to final compliance.
High-Performance Log-Periodic Antenna OVLA-0083
The High Gain Log-Periodic Antenna frequency range is 80MHz to 3GHz. The High Gain Log-Periodic Antenna offers excellent broadband characteristics, aradiation pattern that is approximately rotation-symmetrical as well as high gain, making it particularly suitable for EMS immunity measurements.
In comparison with existing systems, the required field strengths can beachieved with a lower amplifier power. This is due to the high antenna gain.
Its small size, wide frequency range and folding mechanism make the antenna ideal for use in test chambers.
High-Performance Log-Periodic Antenna OVLP-00330
Wide bandwidth from 30 MHz to 3 GHz. High gain of 8dBi above 200MHz. Detailed calibration data with 533 points. Compact and study design. MTBF over 200,000 hours.
Comb Generator 1313-C250M18G
Rapid, Predictive Site Validation Wide Frequency Range 1GHz to 18 GHz Battery Operated – Extended Battery Life Operates > 5 Hours Per Charge Stable RF Output