Core i7-1065G7 benchmark puts it slightly below the Core i7-6700HQ
A benchmark of the Intel Core i7-1065G7 processor appears, ranking slightly below the Core i7-6700HQ in the Cinebench R20
The last part of the year begins and as usual, things are being known about Intel processors. As always, the last quarter of the year is very busy, with dozens of launches to take advantage of Black Friday and Christmas. This is how a benchmark of the Core i7-1065G7 processor based on Ice Lake and the 10nm manufacturing process has been leaked.
10nm processors will first arrive in laptops and then gradually make their way to desktops. It's unclear when Intel will launch its desktop processors using this node. What is certain is that the company's 14nm process is highly refined, efficient, and powerful.
Intel Core i7-1065G7 Processor Benchmark
Regarding the specifications, this Intel processor offers 4 cores and 8 processing threads. It works at a base frequency of 1.3GHz and in Boost mode it reaches 3.9GHz, yes, in all cores it will reach up to 3.5GHz. This processor has a TDP of 15W that goes up to 25W at full power.
They have used the Cinebench R20 benchmark to compare this Core i7-1065G7 to the Core i7-4850HQ. This processor has four cores and eight threads working at 2.3GHz and in Boost mode it reaches 3.5GHz, manufactured in 22nm with a TDP of 47W with 1 509 points. It has also been bought with the Core i7-6700HQ it has four cores and eight threads. This processor operates at 2.6GHz, reaching 3.5GHz in Boost mode, manufactured at 14nm with a TDP of 45W, yielding 1647 points.
The Intel Core i7-1065G7 has given a score of 1547 points, which is 100 less than the most modern 14nm. The thing is that 10nm lithography is still a bit green and as usually happens, it will improve over time.
Surely with future variations in 10nm the performance will improve significantly. It lacks a bit in terms of performance, although in temperature and consumption it has been significantly improved. Disappointing because it cost Intel its life to start releasing processors in 10nm

