Kingston FURY Beast DDR5-6000 1x32GB CL30 vs TeamGroup T-Force Delta RGB DDR5-6000 2x16GB
10.00 ns of true latency for Kingston FURY Beast DDR5-6000 1x32GB CL30 against 12.67 ns for TeamGroup T-Force Delta RGB DDR5-6000 2x16GB, so the first of those is the quicker to respond. TeamGroup T-Force Delta RGB DDR5-6000 2x16GB is the cheaper of the two at the prices tracked here, so each kit leads on one axis and neither leads on both.
| Specification | KingstonFURY Beast DDR5-6000 1x32GB CL30 | TeamGroupT-Force Delta RGB DDR5-6000 2x16GB |
|---|---|---|
| Capacity (GB) | 32 | 32 |
| Speed (MT/s) | 6000 | 6000 |
| 30 | 38 | |
| True latency (ns) | 10.00better | 12.67 |
| Current best price | 603,51 €at Amazon.fr · captured 2026-09-13 | 513,53 €betterat Amazon.fr · captured 2026-09-13 |
| Price per GB | 18,86 € | 16,05 €better |
Kingston FURY Beast DDR5-6000 1x32GB CL30 vs TeamGroup T-Force Delta RGB DDR5-6000 2x16GB in detail
True latency
Kingston FURY Beast DDR5-6000 1x32GB CL30 is the lower-latency kit at 10.00 ns against 12.67 ns for TeamGroup T-Force Delta RGB DDR5-6000 2x16GB, 2.67 ns between them. That is the figure that reconciles the two spec sheets: a CAS number counts cycles, and cycles mean nothing apart from the rate they are counted at. Kingston FURY Beast DDR5-6000 1x32GB CL30 runs 6000 MT/s at CL30; TeamGroup T-Force Delta RGB DDR5-6000 2x16GB runs 6000 MT/s at CL38.
Transfer rate
Both kits are rated 6000 MT/s, or 48000 MB/s per module. They part company on CAS latency instead of on clock, so the true-latency figures above are what tells them apart.
Price and tracked history
Kingston FURY Beast DDR5-6000 1x32GB CL30 is tracked at 603,51 €, or 18,86 € per gigabyte; TeamGroup T-Force Delta RGB DDR5-6000 2x16GB at 513,53 €, or 16,05 €. At the same 32GB, that puts TeamGroup T-Force Delta RGB DDR5-6000 2x16GB 89,98 € less than Kingston FURY Beast DDR5-6000 1x32GB CL30. TeamGroup T-Force Delta RGB DDR5-6000 2x16GB's 513,53 € sits 2% under its own 90-day median.
Kit layout
Kingston FURY Beast DDR5-6000 1x32GB CL30 ships as 2 × 16GB and TeamGroup T-Force Delta RGB DDR5-6000 2x16GB ships as 2 × 16GB — the same number of sticks on both sides, so they populate a board's slots the same way.
Voltage
Kingston FURY Beast DDR5-6000 1x32GB CL30 is specified at 1.4 V and TeamGroup T-Force Delta RGB DDR5-6000 2x16GB at 1.35 V. That is the supply each kit's published profile requests from the board.
Lighting and timings
On lighting: Kingston FURY Beast DDR5-6000 1x32GB CL30 is published with no RGB lighting, and TeamGroup T-Force Delta RGB DDR5-6000 2x16GB has RGB lighting. On the full timing tuple — the numbers after CAS — Kingston FURY Beast DDR5-6000 1x32GB CL30 is 30-36-36, and TeamGroup T-Force Delta RGB DDR5-6000 2x16GB publishes none.
Which to buy
The two split the axes this page measures, so no one kit is the answer. The lower tracked price belongs to TeamGroup T-Force Delta RGB DDR5-6000 2x16GB; the lower true latency to Kingston FURY Beast DDR5-6000 1x32GB CL30, 10.00 ns against 12.67 ns. Weighing money against latency is a decision about the machine, and it stays with the reader.
Common questions about this pair
- Is Kingston FURY Beast DDR5-6000 1x32GB CL30 faster than TeamGroup T-Force Delta RGB DDR5-6000 2x16GB?
- Yes, on true latency: 10.00 ns for Kingston FURY Beast DDR5-6000 1x32GB CL30 against 12.67 ns for TeamGroup T-Force Delta RGB DDR5-6000 2x16GB. Kingston FURY Beast DDR5-6000 1x32GB CL30 runs 6000 MT/s at CL30 and TeamGroup T-Force Delta RGB DDR5-6000 2x16GB runs 6000 MT/s at CL38, and the CAS numbers alone will not settle it — they count clock cycles, not time.
- Which one costs less?
- TeamGroup T-Force Delta RGB DDR5-6000 2x16GB, tracked at 513,53 € against 603,51 €: 89,98 € between them at the same 32GB.
- Which of these two should I buy?
- The two split the axes this page measures, so no one kit is the answer. The lower tracked price belongs to TeamGroup T-Force Delta RGB DDR5-6000 2x16GB; the lower true latency to Kingston FURY Beast DDR5-6000 1x32GB CL30, 10.00 ns against 12.67 ns. Weighing money against latency is a decision about the machine, and it stays with the reader.