Vultr - Intel Xeon 1 Core 1 GB Ram SG
Comprehensive VPS benchmark results from Singapore tested on Feb 20, 2023. Learn our methodology.
System Specifications
Additional Benchmarks
UnixBench
System Performance Index
WordPress Bench
Web Application Performance
Benchmark Steps
# | Suite | Run At | Raw Output |
---|---|---|---|
1 |
UnixBench
|
Feb 20, 2023 13:11 |
View Raw Output------------------------------------------------------------------------ Benchmark Run: Mon Feb 20 2023 13:11:17 - 13:56:04 1 CPU in system; running 1 parallel copy of tests Dhrystone 2 using register variables 46114973.5 lps (10.0 s, 10 samples) Double-Precision Whetstone 7693.5 MWIPS (9.9 s, 10 samples) Execl Throughput 3996.2 lps (30.0 s, 4 samples) File Copy 1024 bufsize 2000 maxblocks 541205.1 KBps (30.0 s, 4 samples) File Copy 256 bufsize 500 maxblocks 140633.4 KBps (30.0 s, 4 samples) File Copy 4096 bufsize 8000 maxblocks 1696727.0 KBps (30.0 s, 4 samples) Pipe Throughput 717292.7 lps (10.0 s, 10 samples) Pipe-based Context Switching 178801.4 lps (10.0 s, 10 samples) Process Creation 9959.3 lps (30.0 s, 4 samples) Shell Scripts (1 concurrent) 9168.2 lpm (60.0 s, 4 samples) Shell Scripts (8 concurrent) 1213.6 lpm (60.0 s, 4 samples) System Call Overhead 345181.1 lps (10.0 s, 10 samples) System Benchmarks Index Values BASELINE RESULT INDEX Dhrystone 2 using register variables 116700.0 46114973.5 3951.6 Double-Precision Whetstone 55.0 7693.5 1398.8 Execl Throughput 43.0 3996.2 929.4 File Copy 1024 bufsize 2000 maxblocks 3960.0 541205.1 1366.7 File Copy 256 bufsize 500 maxblocks 1655.0 140633.4 849.7 File Copy 4096 bufsize 8000 maxblocks 5800.0 1696727.0 2925.4 Pipe Throughput 12440.0 717292.7 576.6 Pipe-based Context Switching 4000.0 178801.4 447.0 Process Creation 126.0 9959.3 790.4 Shell Scripts (1 concurrent) 42.4 9168.2 2162.3 Shell Scripts (8 concurrent) 6.0 1213.6 2022.6 System Call Overhead 15000.0 345181.1 230.1 ======== System Benchmarks Index Score 1112.1 |
2 |
Bench
|
Feb 20, 2023 14:07 |
View Raw Output-------------------- A Bench.sh Script By Teddysun ------------------- Version : v2022-06-01 Usage : wget -qO- bench.sh | bash ---------------------------------------------------------------------- CPU Model : Intel Core Processor (Skylake, IBRS) CPU Cores : 1 @ 3695.996 MHz CPU Cache : 16384 KB AES-NI : Enabled VM-x/AMD-V : Disabled Total Disk : 30.0 GB (4.3 GB Used) Total Mem : 976.6 MB (72.2 MB Used) Total Swap : 1024.0 MB (33.9 MB Used) System uptime : 0 days, 2 hour 8 min Load average : 0.07, 3.32, 3.38 OS : Debian GNU/Linux 11 Arch : x86_64 (64 Bit) Kernel : 5.10.0-21-amd64 TCP CC : bbr Virtualization : KVM Organization : AS20473 The Constant Company, LLC Location : Singapore / SG Region : Singapore ---------------------------------------------------------------------- I/O Speed(1st run) : 1.1 GB/s I/O Speed(2nd run) : 1.1 GB/s I/O Speed(3rd run) : 1.1 GB/s I/O Speed(average) : 1126.4 MB/s ---------------------------------------------------------------------- Node Name Upload Speed Download Speed Latency Speedtest.net 7266.40 Mbps 10048.66 Mbps 0.71 ms Los Angeles, US 456.17 Mbps 2.70 Mbps 184.98 ms Dallas, US 392.16 Mbps 10.65 Mbps 231.32 ms Montreal, CA 308.60 Mbps 892.04 Mbps 260.66 ms Paris, FR 896.29 Mbps 4923.88 Mbps 145.82 ms Amsterdam, NL 377.72 Mbps 1.93 Mbps 222.37 ms Shanghai, CN 227.59 Mbps 58.23 Mbps 301.30 ms Nanjing, CN 39.23 Mbps 1860.02 Mbps 235.97 ms Guangzhou, CN 5.49 Mbps 108.36 Mbps 246.97 ms Hongkong, CN 3296.48 Mbps 1761.83 Mbps 34.41 ms Singapore, SG 4301.60 Mbps 7926.80 Mbps 2.58 ms Tokyo, JP 1048.97 Mbps 8500.90 Mbps 66.85 ms ---------------------------------------------------------------------- Finished in : 6 min 11 sec Timestamp : 2023-02-20 14:07:32 UTC ---------------------------------------------------------------------- |
3 |
PassMark
|
Feb 20, 2023 14:07 |
View Raw OutputPassMark PerformanceTest Linux Intel Core Processor (Skylake, IBRS) (x86_64) 1 cores @ 3695 MHz | 976 MiB RAM Number of Processes: 1 | Test Iterations: 3 | Test Duration: Very Long -------------------------------------------------------------------------- CPU Mark: 1738 Integer Math 4378 Million Operations/s Floating Point Math 3590 Million Operations/s Prime Numbers 14.3 Million Primes/s Sorting 2822 Thousand Strings/s Encryption 561 MB/s Compression 21151 KB/s CPU Single Threaded 2199 Million Operations/s Physics 204 Frames/s Extended Instructions (SSE) 1208 Million Matrices/s Memory Mark: 1104 Database Operations 842 Thousand Operations/s Memory Read Cached 23106 MB/s Memory Read Uncached 10866 MB/s Memory Write 10020 MB/s Available RAM 798 Megabytes Memory Latency 45 Nanoseconds Memory Threaded 11982 MB/s -------------------------------------------------------------------------- |
4 |
Speedtest Global
|
Feb 20, 2023 14:23 |
View Raw Outputversion : 1.7.0 your ip : 2401:c080:1400:658d:5400:4ff:fe50:584f your ISP : None test location code : SIN test location city : Singapore test location region: Asia Pacific latency ms : 3.2 Jitter ms : 1.22 100kB download Mbps : 920.63 1MB download Mbps : 1383.09 10MB download Mbps : 1049.31 25MB download Mbps : 1137.6 90th percentile download speed: 1587.47 Mbps 100kB upload Mbps : 24.66 1MB upload Mbps : 124.77 10MB upload Mbps : 495.46 90th percentile upload speed : 471.84 Mbps |
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Start 14-day TrialCPU Performance (Geekbench)
CPU benchmarks measure processing power for compute-intensive tasks. Learn how we test CPU performance.
I/O Speed Summary (dd)
IOPS Performance by Block Size
Combined IOPS Performance
Total IOPS across all block sizes (4K, 64K, 512K, 1M)
FIO Benchmark Details
Detailed I/O performance test results
Test 1 - Block Size: 4k (mixed_rw_50_50)
Test 2 - Block Size: 64k (mixed_rw_50_50)
Test 3 - Block Size: 512k (mixed_rw_50_50)
Test 4 - Block Size: 1m (mixed_rw_50_50)
Detailed I/O Benchmark (FIO)
IOPS Performance by Block Size
Bandwidth Performance by Block Size
Detailed Test Results
Block Size | Read IOPS | Write IOPS | Read MB/s | Write MB/s |
---|---|---|---|---|
4k | 53,000 | 53,200 | 212.4 | 212.9 |
64k | 9,600 | 9,700 | 619.9 | 623.2 |
512k | 1,300 | 1,400 | 687.8 | 724.4 |
1m | 707 | 754 | 724.6 | 772.8 |
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Testing Methodology
Learn about our comprehensive testing procedures and tools.
Understanding VPS Benchmark Results
This comprehensive benchmark report provides detailed performance analysis for Vultr Intel Xeon 1 Core 1 GB Ram SG VPS in Singapore. Our standardized testing methodology measures CPU performance, disk I/O operations, network bandwidth, and real-world application performance to give you complete insights into VPS capabilities. Browse more VPS benchmarks to compare performance across providers.
Each benchmark metric serves a specific purpose in evaluating VPS performance. CPU benchmarks reveal processing power for applications, disk I/O tests measure storage performance for databases and file operations, network tests show bandwidth capacity for content delivery, and application benchmarks demonstrate real-world hosting performance. Together, these metrics provide a complete performance profile. Use our VPS comparison tool to analyze multiple plans side-by-side.
Benchmark Metrics & Features
Performance Analysis Use Cases
- Evaluating VPS CPU performance for compute-intensive applications
- Testing disk I/O performance for database workloads
- Comparing VPS performance across different providers
- Analyzing WordPress site performance on specific VPS plans
- Assessing value-for-money based on performance and pricing
- Checking real-world application performance metrics
- Understanding geographic performance variations by location
- Reviewing detailed benchmark metrics before VPS purchase
- Comparing single-core vs multi-core CPU performance
- Validating provider performance claims with actual data
- Making informed hosting decisions based on comprehensive benchmarks
How to Interpret Benchmark Results
1. CPU Performance (Geekbench)
Geekbench measures CPU performance through single-core and multi-core scores. Single-core scores (typically 800-2000) indicate performance for single-threaded applications and general responsiveness. Multi-core scores (1500-8000) show performance when all CPU cores are utilized for parallel processing. Higher scores mean better performance. Visit our testing methodology to learn more about CPU benchmarks.
2. Disk I/O Performance (FIO)
FIO benchmarks measure disk performance through IOPS (Input/Output Operations Per Second) and bandwidth (MB/s). High IOPS (10,000+ for NVMe, 5,000-10,000 for SSD) is crucial for database workloads with many small operations. High bandwidth is important for large file transfers and media applications. Compare disk performance across different providers in our database.
3. Application Performance
Real-world application benchmarks (WordPress, UnixBench) show how the VPS handles typical web workloads including PHP processing, database queries, and static file serving. These results measured in requests per second and page load times directly apply to web hosting scenarios. Need help choosing the right VPS? Visit about us to learn more about VPSMetrics.
Frequently Asked Questions
How do I interpret the Geekbench single-core and multi-core scores?
Geekbench single-core scores indicate CPU performance for single-threaded applications, important for general responsiveness and web applications. Multi-core scores show performance when all CPU cores are utilized, crucial for parallel processing and multi-threaded applications. Higher scores indicate better performance. Modern VPS typically score 800-2000 (single) and 1500-8000 (multi) depending on the plan.
What do IOPS numbers mean in disk I/O benchmarks?
IOPS (Input/Output Operations Per Second) measures how many read/write operations your disk can handle per second. Higher IOPS means better performance for database operations and applications with many small file operations. NVMe SSD VPS typically delivers 10,000+ IOPS, while traditional SSD offers 5,000-10,000 IOPS.
What is UnixBench and why does it matter?
UnixBench is a comprehensive system-level benchmark suite that tests various aspects of Unix-like system performance including process creation, file operations, and system calls. It provides a holistic view of overall system performance beyond just CPU or disk metrics. Higher UnixBench scores indicate better overall system efficiency.
How reliable are WordPress benchmark results?
WordPress benchmarks provide real-world application performance metrics by testing actual WordPress installations. These results show how the VPS handles typical web application workloads including PHP processing, database queries, and static file serving. Results are measured in requests per second and page load times, directly applicable to web hosting scenarios.
Can I trust these benchmark results for my use case?
Our benchmarks provide standardized, reproducible test results using industry-standard tools. While they offer excellent performance indicators, your actual experience may vary based on your specific workload, application optimization, and usage patterns. Use these benchmarks as a reliable starting point for comparison between providers.
Why do benchmark results vary by location?
Different data center locations may have different hardware configurations, CPU generations, storage types, and network infrastructure. Providers often upgrade facilities at different rates across regions. Location-specific benchmarks help you choose a VPS in the right region with the best performance for your target audience.
Making Informed VPS Decisions
Use these comprehensive benchmark results to make data-driven hosting decisions. Compare multiple metrics together rather than focusing on a single aspect - a balanced VPS performs well across CPU, disk, and network benchmarks. Consider your specific workload requirements: CPU-intensive applications need high Geekbench scores, database-heavy applications require high IOPS, and content delivery services benefit from high network bandwidth.
Our benchmarks provide standardized, reproducible test results using industry-standard tools. While they offer excellent performance indicators, your actual experience may vary based on specific workload patterns and application optimization. Use these benchmarks as a reliable starting point for comparison between providers and configurations.
Compare More VPS Options
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