Yeah, I know that it has been a few years since I posted my last FCC OET (Office of Engineering and Technology) regulatory filing analysis, but when the news came down recently that the US variant iPhone 18 Pro Max (model A3473, FCC ID BCG-E9187A) would continue to utilize the Qualcomm X80 modem while the international variant (model A3716, FCC ID BCG-E9195A) would incorporate the new Apple C2 modem, my Spidey sense told me that a comparison between their two FCC OET filings might divulge some interesting data. And, indeed, that proved to be true.
The executive summary is that the Qualcomm X80 based US variant and Apple C2 based international variant are not at parity with one another in their antenna configurations. Generally speaking, the Apple modem international model is at an advantage, the Qualcomm modem US model at a disadvantage.
To illustrate, I examined the band n41 antenna configuration data from the two separate FCC OET filings and created the following graph:
Furthermore, do not assume that Apple is or is not stacking the deck in favor of its own modem silicon. Some or all of the antenna design and performance disparity could come down to improved physical hardware layout from the Apple C2 modem integration and 5G NR mmWave absence in the international model. The unfortunate takeaway, however, is that this creates an impediment to a true apples to apples modem comparison -- or Apple to Qualcomm modem comparison in this instance. Any statistical or empirical differences in wireless performance (transmission and reception) out in the real world could boil down to the modems, the antennas, or both.
Oh, and for reference, I also checked antenna gains across multiple bands in the smaller iPhone 18 Pro US (model A3472, FCC ID BCG-E9186A) and international (model A3713, FCC ID BCG-E9192A) variants, both of which use the Apple C2 modem. The important point of comparison is that their respective antenna gains are the same. Only the iPhone 18 Pro Max is the outlier in this regard.
Source: FCC OET
