F5F Stay Refreshed Hardware Desktop Combining various frequency DIMMs.

Combining various frequency DIMMs.

Combining various frequency DIMMs.

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Lucass123
Member
108
10-21-2017, 08:44 AM
#1
I have an 8GB 2400MHz module on my Ryzen 1600X, and I feel the amount isn’t enough lately. I explored cheaper RAM options and noticed prices have dropped a lot. A 3000MHz 8GB module (Corsair LPX) is now half what I spent on the first one. My question: Should I buy the faster 3000MHz model and combine it with my 2400MHz one? Also, I’m curious about possible trade-offs—like channel modes and performance impacts if I switch.
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Lucass123
10-21-2017, 08:44 AM #1

I have an 8GB 2400MHz module on my Ryzen 1600X, and I feel the amount isn’t enough lately. I explored cheaper RAM options and noticed prices have dropped a lot. A 3000MHz 8GB module (Corsair LPX) is now half what I spent on the first one. My question: Should I buy the faster 3000MHz model and combine it with my 2400MHz one? Also, I’m curious about possible trade-offs—like channel modes and performance impacts if I switch.

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chenglee1998
Member
147
10-21-2017, 09:12 AM
#2
Both will operate at 2400, but combining kits might not always succeed—it depends on factors like XMP settings—and it's not a certainty. However, it should function technically, though both will likely run at 2400.
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chenglee1998
10-21-2017, 09:12 AM #2

Both will operate at 2400, but combining kits might not always succeed—it depends on factors like XMP settings—and it's not a certainty. However, it should function technically, though both will likely run at 2400.

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JU5T_M4X
Member
113
10-24-2017, 05:42 AM
#3
Occasionally combining various memory types leads to problems, but if they function together, they should operate at the same pace. By default, this matches the current’s speed (which is usually slower), though you might increase it if the system handles overclocking well. It’s unlikely you can make both reach the faster stick’s speed, so you’ll need to weigh whether tolerating a performance drop is acceptable or if swapping in the faster memory is worthwhile.
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JU5T_M4X
10-24-2017, 05:42 AM #3

Occasionally combining various memory types leads to problems, but if they function together, they should operate at the same pace. By default, this matches the current’s speed (which is usually slower), though you might increase it if the system handles overclocking well. It’s unlikely you can make both reach the faster stick’s speed, so you’ll need to weigh whether tolerating a performance drop is acceptable or if swapping in the faster memory is worthwhile.

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_RiuZ_
Junior Member
18
10-26-2017, 05:38 AM
#4
He mentioned both sticks should function around 2400 MHz, though a fresh set of 2x8 at 3000MHz or above would be better. It really adds a noticeable improvement.
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_RiuZ_
10-26-2017, 05:38 AM #4

He mentioned both sticks should function around 2400 MHz, though a fresh set of 2x8 at 3000MHz or above would be better. It really adds a noticeable improvement.

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mentality_man
Member
123
10-26-2017, 07:16 AM
#5
I wouldn't try it with a first-generation Ryzen processor because the memory controller seems uncertain. Still, it might function.
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mentality_man
10-26-2017, 07:16 AM #5

I wouldn't try it with a first-generation Ryzen processor because the memory controller seems uncertain. Still, it might function.

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sydaves5418
Member
66
10-26-2017, 12:47 PM
#6
Thanks for the quick reply. Running both sticks at the same pace really makes a big difference, so I’ll need to replace the old one entirely. Your encouragement helped me improve my memory setup too. Appreciate it!
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sydaves5418
10-26-2017, 12:47 PM #6

Thanks for the quick reply. Running both sticks at the same pace really makes a big difference, so I’ll need to replace the old one entirely. Your encouragement helped me improve my memory setup too. Appreciate it!

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ICrazy_PvP
Member
125
10-26-2017, 01:45 PM
#7
The setup can easily accommodate matching frequencies and timings, usually meaning the lowest common denominator. You can boost one component while slowing another down. On my current Ryzen first-gen rig I use a 3600MHz CL18 and a 2133MHz CL14 for four 8GB DIMMs, running at 2666MHz CL18 to free up more RAM. I manually adjusted the clock speeds to 2666MHz with 1.2v, letting the system auto-select timings—this works well within typical tolerances. For a first-gen Ryzen, aiming for 2666MHz should be fine. Just keep in mind enabling XMP/DOCP might cause issues, as I do everything manually.
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ICrazy_PvP
10-26-2017, 01:45 PM #7

The setup can easily accommodate matching frequencies and timings, usually meaning the lowest common denominator. You can boost one component while slowing another down. On my current Ryzen first-gen rig I use a 3600MHz CL18 and a 2133MHz CL14 for four 8GB DIMMs, running at 2666MHz CL18 to free up more RAM. I manually adjusted the clock speeds to 2666MHz with 1.2v, letting the system auto-select timings—this works well within typical tolerances. For a first-gen Ryzen, aiming for 2666MHz should be fine. Just keep in mind enabling XMP/DOCP might cause issues, as I do everything manually.

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purplebelt4
Member
61
10-26-2017, 08:21 PM
#8
In summary, the first-gen Ryzen chips won't automatically boost past 2666MHz using XMP or DOCP; you'll need to adjust them manually for stability.
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purplebelt4
10-26-2017, 08:21 PM #8

In summary, the first-gen Ryzen chips won't automatically boost past 2666MHz using XMP or DOCP; you'll need to adjust them manually for stability.