DigitalOcean Premium AMD (8 GB, 4 Cores) vs. Vultr High Frequency Intel (1 GB)

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My friend, I'm so glad you're here! Today I've spun up brand new instance from DigitalOcean and Vultr and ran some benchmarks. Each instance was running Ubuntu 24.04 LTS x64 and all resided in or around the New York / New Jersey area. Time to see who showed up today.

Overview

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Last Benchmarked Sun, 31 May 2026 20:00:52 GMT Tue, 02 Jun 2026 13:00:52 GMT
Linux Distro Ubuntu 24.04 LTS x64 Ubuntu 24.04 LTS x64
Kernel Version 6.8.0-71-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 New York, NY Newark, NJ
Monthly Price $56.00 $6.00
RAM (GB) 8 1
CPU Cores 4 1
Storage (TB) 160 32
Storage Type NVMe NVMe
Transfer (TB) 5 1

CPU

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Vendor AuthenticAMD GenuineIntel
Model Name DO-Premium-AMD Intel Core Processor (Skylake, IBRS, no TSX)
Clock Speed (MHz) 1,996.25 3,792.00
CPU Cache Size (KB) 512.00 16,384.00
BogoMips 3,992.50 7,583.99
Events per Second 1,535.42 1,610.13
Minimum Latency (ms) 0.59 0.59
Average Latency (ms) 0.65 0.62
Maximum Latency (ms) 0.89 2.23
95th Percentile Latency (ms) 0.69 0.65

Memory

Memory Read

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Operations per second 4,867,578.39 7,926,735.23
Mebibytes per second 4,753.49 7,740.95
Minimum Latency (ms) 0 0
Average Latency (ms) 0 0
Maximum Latency (ms) 0.19 0.12
95th Percentile Latency (ms) 0 0

Memory Write

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Operations per second 4,347,879.44 7,829,978.57
Mebibytes per second 4,245.98 7,646.46
Minimum Latency (ms) 0 0
Average Latency (ms) 0 0
Maximum Latency (ms) 0.56 1.01
95th Percentile Latency (ms) 0 0

File I/O

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Reads per Second 2,384.51 4,623.06
Writes per Second 1,589.67 3,082.04
Fsyncs per Second 5,095.64 9,865.12
Read Mebibytes per Second 37.26 72.24
Written Mebibytes per Second 24.84 48.16
Minimum Latency (ms) 0 0
Average Latency (ms) 0.11 0.06
Maximum Latency (ms) 9.42 1.44
95th Percentile Latency (ms) 0.58 0.18

Mutex

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Minimum Latency (ms) 325.10 1,066.91
Average Latency (ms) 435.66 1,072.39
Maximum Latency (ms) 487.90 1,077.58
95th Percentile Latency (ms) 484.44 1,069.86

MySQL

MySQL Read-only

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 5,392.00 10,351.00
Queries per second 53,920.00 103,510.00
Minimum Latency (ms) 1.37 0.9
Average Latency (ms) 1.85 0.97
Maximum Latency (ms) 3 7.08
95th Percentile Latency (ms) 2.35 1.03

MySQL Write-only

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 3,296.00 9,881.00
Queries per second 32,960.00 98,810.00
Minimum Latency (ms) 1.47 0.63
Average Latency (ms) 3.03 1.01
Maximum Latency (ms) 19.45 3.54
95th Percentile Latency (ms) 4.41 1.3

MySQL Read/Write

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 1,930.00 4,464.00
Queries per second 19,300.00 44,640.00
Minimum Latency (ms) 3.41 1.81
Average Latency (ms) 5.18 2.24
Maximum Latency (ms) 26.77 14.82
95th Percentile Latency (ms) 6.55 2.76

MySQL INSERT

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 4,756.00 16,897.00
Queries per second 47,560.00 168,970.00
Minimum Latency (ms) 1.08 0.38
Average Latency (ms) 2.1 0.59
Maximum Latency (ms) 40.66 2.68
95th Percentile Latency (ms) 3.25 0.75

MySQL Bulk INSERT

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 1,434,092.00 2,133,092.00
Queries per second 14,340,920.00 21,330,920.00
Minimum Latency (ms) 0 0
Average Latency (ms) 0.01 0
Maximum Latency (ms) 418.16 261.58
95th Percentile Latency (ms) 0 0

MySQL SELECT

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 125,686.00 226,612.00
Queries per second 1,256,860.00 2,266,120.00
Minimum Latency (ms) 0.05 0.04
Average Latency (ms) 0.08 0.04
Maximum Latency (ms) 0.84 4.34
95th Percentile Latency (ms) 0.11 0.05

MySQL SELECT (Random Points)

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 7,055.00 11,104.00
Queries per second 70,550.00 111,040.00
Minimum Latency (ms) 0.33 0.31
Average Latency (ms) 1.42 0.9
Maximum Latency (ms) 7.12 3.85
95th Percentile Latency (ms) 2.07 1.16

MySQL SELECT (Random Ranges)

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 6,592.00 11,218.00
Queries per second 65,920.00 112,180.00
Minimum Latency (ms) 0.43 0.28
Average Latency (ms) 1.52 0.89
Maximum Latency (ms) 3.28 2.88
95th Percentile Latency (ms) 2.03 1.16

MySQL UPDATE (Indexed)

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 5,138.00 16,175.00
Queries per second 51,380.00 161,750.00
Minimum Latency (ms) 1.07 0.38
Average Latency (ms) 1.94 0.62
Maximum Latency (ms) 39.78 2.37
95th Percentile Latency (ms) 2.81 0.86

MySQL UPDATE (Non-Indexed)

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 4,781.00 16,898.00
Queries per second 47,810.00 168,980.00
Minimum Latency (ms) 1.13 0.37
Average Latency (ms) 2.09 0.59
Maximum Latency (ms) 19.23 5.32
95th Percentile Latency (ms) 3.07 0.8

MySQL DELETE

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
Transactions per second 41,513.00 151,969.00
Queries per second 415,130.00 1,519,690.00
Minimum Latency (ms) 0.05 0.04
Average Latency (ms) 0.24 0.07
Maximum Latency (ms) 11.7 5.32
95th Percentile Latency (ms) 1.67 0.09

Redis

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
PING_INLINE per Second 62,073.25 55,772.45
PING_MBULK per Second 58,719.91 56,401.58
SET per Second 54,171.18 55,928.41
GET per Second 64,308.68 56,818.18
INCR per Second 55,648.30 56,529.11
LPUSH per Second 55,493.89 55,463.12
RPUSH per Second 52,938.06 55,555.56
LPOP per Second 62,539.09 55,066.08
RPOP per Second 66,269.05 53,966.54
SADD per Second 62,189.05 55,865.92
HSET per Second 55,157.20 55,035.77
SPOP per Second 54,674.69 56,211.35
ZADD per Second 55,035.77 55,679.29
ZPOPMIN per Second 55,035.77 56,689.34
LRANGE_100 (first 100 elements) per Second 37,355.25 37,271.71
LRANGE_300 (first 300 elements) per Second 21,715.53 20,973.15
LRANGE_500 (first 500 elements) per Second 16,084.93 14,166.31
LRANGE_600 (first 600 elements) per Second 14,990.26 12,725.88
MSET (10 keys) per Second 57,770.08 51,786.64

Redis Average Latency (ms)

DigitalOcean – Premium AMD (8 GB, 4 Cores) Vultr – High Frequency Intel (1 GB)
PING_INLINE0.420.57
PING_MBULK0.440.56
SET0.480.57
GET0.400.56
INCR0.470.56
LPUSH0.470.58
RPUSH0.490.58
LPOP0.420.59
RPOP0.390.61
SADD0.420.58
HSET0.470.59
SPOP0.470.57
ZADD0.480.58
ZPOPMIN0.470.56
LRANGE_100 (first 100 elements)0.780.92
LRANGE_300 (first 300 elements)1.261.66
LRANGE_500 (first 500 elements)1.712.53
LRANGE_600 (first 600 elements)1.912.84
MSET (10 keys)0.470.67

Conclusion

From the friendly robots:

After analyzing the benchmark data for the DigitalOcean Premium AMD instance and the Vultr High Frequency Intel instance, it's clear that the DigitalOcean instance excels in handling larger workloads due to its higher CPU cores (4 vs 1), more RAM (8 GB vs 1 GB), and better performance metrics across various benchmarks, including Redis operations, CPU events per second, file I/O operations, and MySQL OLTP tasks. While the Vultr instance performs admirably for basic tasks, it is outmatched in performance for CPU-intensive, I/O-heavy, and memory-demanding applications. Therefore, the DigitalOcean instance is better suited for demanding applications requiring robust processing power and memory, whereas the Vultr instance could be ideal for lighter workloads, such as small web applications or testing environments.

From the friendly human:

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