Reproduce the radio conditions.Solve them through RF and antennas.Reproduce theradio conditions.Solve them throughRF and antennas.
We reproduce radio profiles with base-station simulators and validate TDD, DCI, RF, antennas and certification conditions in one evaluation system.
5G performance,validated in the IDY lab.5G performance,validated inthe IDY lab.
IDY operates an in-house 5G/LTE lab capable of controlling radio conditions equivalent to a base-station environment. Frequency, bandwidth, carrier aggregation, MIMO, modulation and uplink/downlink slot configurations are set so products and complete 10GbE end-to-end paths can be evaluated repeatedly under the same conditions.

Semi-synchronous TDD3 / UL profile
Asynchronous / UL-maximized
These three figures are reference throughputs confirmed on the MT8000A base-station simulator under each DCI configuration. They are not iR800B or iS201B product throughput figures. Device and path measurements are shown in the following section.


IDY continuously performs 5G product performance validation as part of its in-house development cycle.
Profile: 5G SA n79, 2CC CA, 200MHz total bandwidth, 4×4 MIMO and 10GbE. The 3.2Gbps figure identifies the evaluation profile; 3.15Gbps is the confirmed downlink throughput under that setup. The following USB and PCIe comparisons connect the product and 10GbE path to these controlled radio conditions.
Choose the radio design throughthe uplink–downlink balance,not transmit power alone.Choose the radiodesign through theuplink–downlink balance,not transmit power alone.
Compare HPUE PC1.5 with PC3 plus a high-gain antenna across link budgets, EIRP, thermal and power impact, installation and certification.