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ADATA Industrial AD4U3200716G22-BADZ vs Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB: Comparison

ADATA Industrial AD4U3200716G22-BADZ and Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB separate most on peak bandwidth: ADATA Industrial AD4U3200716G22-BADZ at 25.6 GB/s, Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB at 96.0 GB/s, 73% in favor of Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB. Capacity Per Module splits them by another 50%, this time favoring ADATA Industrial AD4U3200716G22-BADZ.

Pick the ADATA Industrial AD4U3200716G22-BADZ if that matters to you: 2x the capacity per module (16 GB vs 8 GB), which is what keeps browser tabs, games and editing apps from spilling to the SSD. Pick the Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB if that matters to you: 13% lower true latency (12.0 ns vs 13.8 ns), so it responds faster, which shows up in games on Ryzen. These kits use different memory generations and do not fit the same motherboard.

Which is better, ADATA Industrial AD4U3200716G22-BADZ or Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB?

On paper, Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB has the edge on peak bandwidth, at 96.0 GB/s vs ADATA Industrial AD4U3200716G22-BADZ at 25.6 GB/s.

What is the main difference between ADATA Industrial AD4U3200716G22-BADZ and Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB?

The ADATA Industrial AD4U3200716G22-BADZ and Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB are built for different jobs. The ADATA Industrial AD4U3200716G22-BADZ has 2x the capacity per module (16 GB vs 8 GB), which is what keeps browser tabs, games and editing apps from spilling to the SSD. The Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB has 13% lower true latency (12.0 ns vs 13.8 ns), so it responds faster, which shows up in games on Ryzen.

Specs and benchmarks

  • Speed Score

    ADATA Industrial AD4U3200716G22-BADZ
    –
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    7.3/10

    DDR4 and DDR5 kits are scored on separate scales, so these two scores can't be compared directly. Your motherboard supports only one of the two.

  • DDR Generation

    ADATA Industrial AD4U3200716G22-BADZ
    DDR4
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    DDR5
  • Brand

    ADATA Industrial AD4U3200716G22-BADZ
    ADATA
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    Silicon Power
  • Part Number

    ADATA Industrial AD4U3200716G22-BADZ
    AD4U3200716G22-BADZ
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    SP016GXLZU600BDB
  • Series

    ADATA Industrial AD4U3200716G22-BADZ
    ADATA Industrial
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    XPOWER Zenith RGB
  • CAS Latency

    ADATA Industrial AD4U3200716G22-BADZ
    22Best
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    36-64%
  • RAM Segment

    ADATA Industrial AD4U3200716G22-BADZ
    Industrial/Embedded
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    Desktop DDR5
  • Module Count

    ADATA Industrial AD4U3200716G22-BADZ
    1
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    2
  • Form Factor

    ADATA Industrial AD4U3200716G22-BADZ
    DIMM
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    Desktop DIMM
  • Capacity Per Module

    ADATA Industrial AD4U3200716G22-BADZ
    16 GBBest
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    8 GB-50%
  • True Latency

    ADATA Industrial AD4U3200716G22-BADZ
    13.8 ns-15%
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    12.0 nsBest
  • Warranty

    ADATA Industrial AD4U3200716G22-BADZ
    Limited Lifetime
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    Limited Lifetime
  • Peak Bandwidth

    ADATA Industrial AD4U3200716G22-BADZ
    25.6 GB/s-73%
    Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB
    96.0 GB/sBest

    Which one should you pick?

    Choose ADATA Industrial AD4U3200716G22-BADZ if you want the lower CAS latency (22 vs 36) and the higher capacity per module (16 GB vs 8 GB).

    Choose Silicon Power XPOWER Zenith RGB SP016GXLZU600BDB if you want the lower true latency (12.0 ns vs 13.8 ns) and the higher peak bandwidth (96.0 GB/s vs 25.6 GB/s).

    More comparisons in RAM