Combining two sets of RAM units of identical specifications but varying storage sizes
Combining two sets of RAM units of identical specifications but varying storage sizes
You currently have 32GB of RAM. A 4-stack 64GB kit would bring your total to 96GB, which could improve performance if needed. For installation, placing the 16GB sticks in the four available slots is recommended rather than staggering them unevenly. The model you mentioned uses a 1950x Threadripper and includes the ROG Zenith Extreme with specific RAM configurations. The "GTZRX" and "GTZR" refer to different memory modules, likely indicating variations in speed or compatibility.
I'm not a big gamer, but I'm thinking about opening hundreds of browser tabs (just kidding). I also want to map drives for Chia coin and use as much RAM as possible. I might consider a 64GB setup for around $300 or opt for a 128GB one for about $800. If this sounds like a good solution, I'm okay saving some money.
The last digit in the model number indicates a specific variant or batch code.
They are identical in brand, speed, and timing. The motherboard should adapt to the memory without issues. Be aware that the initial startup after adding extra RAM might take several minutes, as the system is learning how to utilize it correctly.
According to common reports, the X model includes a unique feature that enhances performance with Ryzen processors. However, the GTZR remains a viable option as well.
This approach would combine all four channels together initially, aiming for the best performance. If it fails, adjust by splitting one set into two channels and another into the remaining two, using patterns like 16-16-8-8 or similar variations to maintain compatibility.
Reviewed the manual and found the recommended setup is 8-8-16-16-CPU-16-16-8-8. For maximum capacity, place the high-capacity drives near the CPU since they handle double the load compared to standard 8 GB sticks. The configuration I proposed ensures each CCX gets an equal share of memory, minimizing data transfer between them. Using a 16-16-16-16-CPU-8-8-8 arrangement would cause significant data movement through the interconnect from left to right CCX, increasing latency.