Vultr High Frequency Intel (2 GB) vs. Vultr High Performance AMD (2 GB, 2 Cores)
Fresh benchmarks coming at ya. Today I've spun up brand new instance from Vultr to run some benchmarks on. Each instance was running Ubuntu 24.04 LTS x64 and were created in the New York area (or close to it). Time to see who showed up today.
Overview
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Last Benchmarked
Sat, 30 May 2026 04:00:53 GMT
Sun, 31 May 2026 07:00:52 GMT
Linux Distro
Ubuntu 24.04 LTS x64
Ubuntu 24.04 LTS x64
Kernel Version
6.8.0-117-generic
6.8.0-117-generic
MySQL Version
8.0.45-0ubuntu0.24.04.1
8.0.45-0ubuntu0.24.04.1
Redis Version
7.0.15
7.0.15
Location
Newark, NJ
Newark, NJ
Monthly Price
$12.00
$18.00
RAM (GB)
2
2
CPU Cores
1
2
Storage (TB)
64
60
Storage Type
NVMe
NVMe
Transfer (TB)
2
4
CPU
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Vendor
GenuineIntel
AuthenticAMD
Model Name
Intel Core Processor (Skylake, IBRS, no TSX)
AMD EPYC-Genoa Processor
Clock Speed (MHz)
3,791.97
2,899.99
CPU Cache Size (KB)
16,384.00
1,024.00
BogoMips
7,583.94
5,799.98
Events per Second
1,593.09
4,648.14
Minimum Latency (ms)
0.6
0.2
Average Latency (ms)
0.63
0.21
Maximum Latency (ms)
2.66
1.26
95th Percentile Latency (ms)
0.65
0.23
Memory
Memory Read
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Operations per second
7,916,351.10
7,548,502.85
Mebibytes per second
7,730.81
7,371.58
Minimum Latency (ms)
0
0
Average Latency (ms)
0
0
Maximum Latency (ms)
0.16
0.08
95th Percentile Latency (ms)
0
0
Memory Write
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Operations per second
7,863,886.09
7,544,807.09
Mebibytes per second
7,679.58
7,367.98
Minimum Latency (ms)
0
0
Average Latency (ms)
0
0
Maximum Latency (ms)
1.38
0.12
95th Percentile Latency (ms)
0
0
File I/O
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Reads per Second
5,077.93
5,114.79
Writes per Second
3,385.29
3,409.86
Fsyncs per Second
10,834.84
10,914.44
Read Mebibytes per Second
79.34
79.92
Written Mebibytes per Second
52.90
53.28
Minimum Latency (ms)
0
0
Average Latency (ms)
0.05
0.05
Maximum Latency (ms)
1.74
3.7
95th Percentile Latency (ms)
0.17
0.12
Mutex
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Minimum Latency (ms)
1,082.69
574.03
Average Latency (ms)
1,093.56
637.47
Maximum Latency (ms)
1,099.59
663.74
95th Percentile Latency (ms)
1,109.09
657.93
MySQL
MySQL Read-only
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
10,304.00
9,622.00
Queries per second
103,040.00
96,220.00
Minimum Latency (ms)
0.91
0.73
Average Latency (ms)
0.97
1.04
Maximum Latency (ms)
3.2
2.22
95th Percentile Latency (ms)
1.01
1.12
MySQL Write-only
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
9,808.00
9,585.00
Queries per second
98,080.00
95,850.00
Minimum Latency (ms)
0.67
0.8
Average Latency (ms)
1.02
1.04
Maximum Latency (ms)
2.58
2.18
95th Percentile Latency (ms)
1.3
1.32
MySQL Read/Write
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
4,518.00
4,686.00
Queries per second
45,180.00
46,860.00
Minimum Latency (ms)
1.83
1.57
Average Latency (ms)
2.21
2.13
Maximum Latency (ms)
4.79
4.26
95th Percentile Latency (ms)
2.48
2.52
MySQL INSERT
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
17,151.00
15,965.00
Queries per second
171,510.00
159,650.00
Minimum Latency (ms)
0.37
0.45
Average Latency (ms)
0.58
0.62
Maximum Latency (ms)
2.16
2.23
95th Percentile Latency (ms)
0.77
0.74
MySQL Bulk INSERT
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
2,220,467.00
3,065,092.00
Queries per second
22,204,670.00
30,650,920.00
Minimum Latency (ms)
0
0
Average Latency (ms)
0
0
Maximum Latency (ms)
218.23
208.51
95th Percentile Latency (ms)
0
0
MySQL SELECT
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
228,285.00
217,035.00
Queries per second
2,282,850.00
2,170,350.00
Minimum Latency (ms)
0.04
0.02
Average Latency (ms)
0.04
0.05
Maximum Latency (ms)
0.95
0.61
95th Percentile Latency (ms)
0.05
0.06
MySQL SELECT (Random Points)
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
10,858.00
14,818.00
Queries per second
108,580.00
148,180.00
Minimum Latency (ms)
0.33
0.24
Average Latency (ms)
0.92
0.67
Maximum Latency (ms)
2.91
1.94
95th Percentile Latency (ms)
1.18
0.86
MySQL SELECT (Random Ranges)
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
11,191.00
14,341.00
Queries per second
111,910.00
143,410.00
Minimum Latency (ms)
0.28
0.27
Average Latency (ms)
0.89
0.7
Maximum Latency (ms)
3.59
1.67
95th Percentile Latency (ms)
1.16
0.89
MySQL UPDATE (Indexed)
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
16,366.00
14,864.00
Queries per second
163,660.00
148,640.00
Minimum Latency (ms)
0.37
0.47
Average Latency (ms)
0.61
0.67
Maximum Latency (ms)
2.14
2.36
95th Percentile Latency (ms)
0.83
0.87
MySQL UPDATE (Non-Indexed)
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
16,708.00
15,284.00
Queries per second
167,080.00
152,840.00
Minimum Latency (ms)
0.37
0.46
Average Latency (ms)
0.6
0.65
Maximum Latency (ms)
1.68
1.65
95th Percentile Latency (ms)
0.75
0.83
MySQL DELETE
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
Transactions per second
147,811.00
151,536.00
Queries per second
1,478,110.00
1,515,360.00
Minimum Latency (ms)
0.04
0.02
Average Latency (ms)
0.07
0.07
Maximum Latency (ms)
1.52
4.83
95th Percentile Latency (ms)
0.09
0.08
Redis
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
PING_INLINE per Second
55,401.66
55,991.04
PING_MBULK per Second
55,803.57
57,903.88
SET per Second
55,309.73
57,703.40
GET per Second
55,959.71
57,703.40
INCR per Second
55,401.66
57,372.34
LPUSH per Second
55,005.50
57,836.90
RPUSH per Second
55,096.42
58,173.36
LPOP per Second
54,229.93
58,343.06
RPOP per Second
54,764.51
58,343.06
SADD per Second
55,741.36
58,241.12
HSET per Second
55,370.98
58,858.15
SPOP per Second
56,116.72
58,892.82
ZADD per Second
54,945.05
57,504.31
ZPOPMIN per Second
56,211.35
57,870.37
LRANGE_100 (first 100 elements) per Second
37,707.39
49,236.83
LRANGE_300 (first 300 elements) per Second
20,802.99
34,818.94
LRANGE_500 (first 500 elements) per Second
14,297.97
26,766.60
LRANGE_600 (first 600 elements) per Second
12,594.46
24,207.21
MSET (10 keys) per Second
51,975.05
58,548.01
Redis Average Latency (ms)
Vultr – High Frequency Intel (2 GB)
Vultr – High Performance AMD (2 GB, 2 Cores)
PING_INLINE
0.58
0.48
PING_MBULK
0.58
0.44
SET
0.58
0.45
GET
0.57
0.45
INCR
0.58
0.45
LPUSH
0.59
0.44
RPUSH
0.59
0.44
LPOP
0.60
0.44
RPOP
0.60
0.44
SADD
0.58
0.44
HSET
0.58
0.44
SPOP
0.57
0.44
ZADD
0.59
0.45
ZPOPMIN
0.57
0.44
LRANGE_100 (first 100 elements)
0.91
0.53
LRANGE_300 (first 300 elements)
1.67
0.74
LRANGE_500 (first 500 elements)
2.50
0.95
LRANGE_600 (first 600 elements)
2.85
1.05
MSET (10 keys)
0.67
0.44
Conclusion
From the friendly robots:
Both instances offer strong performance but differ in key areas suited to different workloads. The High Frequency Intel instance has higher Redis throughput and lower latency across most operations, making it ideal for applications requiring high-speed data access and low latency, such as high-frequency trading platforms or real-time analytics. In contrast, the High Performance AMD instance excels with slightly higher CPU benchmark scores and slightly better MySQL performance, suggesting it might be more suitable for compute-heavy applications or workloads benefiting from additional CPU power, like large-scale data processing or complex calculations. While the Intel instance is marginally superior in raw data handling speed, the AMD instance's performance in CPU-intensive tasks could edge it out for certain workloads, especially where multi-threading efficiency is critical.
From the friendly human:
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