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ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB vs Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB

ADATAXPG Lancer Blade RGB DDR5-6400 2x16GB32 GB · 6400 MT/s · 32 CL · 10.00 nsLeads on Speed
Silicon PowerXPOWER Zenith RGB DDR5-6000 2x16GB32 GB · 6000 MT/s · 30 CL · 10.00 ns
In short

ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB and Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB arrive at the same true latency, 10.00 ns apiece. The latency is level, and ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB is the one tracked at the lower price, so cost is the only difference.

SpecificationADATAXPG Lancer Blade RGB DDR5-6400 2x16GBSilicon PowerXPOWER Zenith RGB DDR5-6000 2x16GB
Capacity (GB)3232
Speed (MT/s)6400better6000
3230
True latency (ns)10.0010.00
Current best price394,00 €betterat Amazon.fr · captured 2026-09-13509,99 €at Amazon.fr · captured 2026-09-13
Price per GB12,31 €better15,94 €

ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB vs Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB in detail

True latency

Both kits land on 10.00 ns by different routes: ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB at 6400 MT/s at CL32, Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB at 6000 MT/s at CL30. A CAS number counts cycles rather than time, so a higher clock absorbs a looser one and the two arrive together — which is why these spec sheets look different and the memory does not.

Transfer rate

ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB is rated 6400 MT/s against 6000 MT/s for Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB — 51200 MB/s per module, against 48000 MB/s. That is peak transfer rate, not access time: reaching a higher clock costs more cycles on each access, which is why the CAS numbers differ too, and why the true latency above is the figure that compares directly.

Price and tracked history

ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB is tracked at 394,00 € — 12,31 € per gigabyte — and Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB at 509,99 €, or 15,94 €. Both are 32GB kits, so the totals compare directly: ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB is 115,99 € less than Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB. At 394,00 €, ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB is running 36% below its own 90-day median.

Kit layout

ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB ships as 2 × 16GB and Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB ships as 2 × 16GB — the same number of sticks either way, so both populate a board's slots identically.

Voltage

ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB is specified at 1.4 V and Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB at 1.35 V. That is the supply each kit's published profile asks the board for.

Lighting and timings

On the lighting question: ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB is published with RGB lighting, and Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB is published with RGB lighting. On the full timing tuple, the numbers that follow CAS: ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB runs 32-39-39, and Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB runs 30-38-38-96.

Which to buy

ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB costs less than Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB at the prices tracked here, and the two are identical on true latency at 10.00 ns. It is the cheaper kit, not the faster one — nothing here suggests it will feel quicker.

Common questions about this pair

Is ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB faster than Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB?
Neither. Both come out at 10.00 ns of true latency: ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB runs 6400 MT/s at CL32 and Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB runs 6000 MT/s at CL30, and the two reconcile to one figure.
Which one costs less?
ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB, at 394,00 € against 509,99 € — 115,99 € apart at the same 32GB.
Which of these two should I buy?
ADATA XPG Lancer Blade RGB DDR5-6400 2x16GB costs less than Silicon Power XPOWER Zenith RGB DDR5-6000 2x16GB at the prices tracked here, and the two are identical on true latency at 10.00 ns. It is the cheaper kit, not the faster one — nothing here suggests it will feel quicker.
How we track prices

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