Daily ISP report

Tuesday 11 August 2026

Ozot — UNI-D2 on nbn FTTP

Midnight to midnight, Australia/Perth · Browse all reports

Packet loss0.0356%3,692 of 10,367,988 packets
Data coverage100%0 endpoint-minutes with gaps
Endpoints won12 / 12Lowest average latency
Avg latency rank1.00Across all endpoints
Incidents494Loss or coverage events
Counter resets0Agent restarts excluded from loss
By endpoint

Latency and packet loss, past 24 hours

Min, average and max are the headline numbers. The percentiles sit beside them because a single spike moves an average — p95 means 95% of packets were faster than this.

EndpointMinAvgMax p50p95p99Jitter LossCoverage
Perth best 1.8ms 2.6ms 106.6ms 2.5ms 3.1ms 7.3ms 0.33ms 0.0054% 100%
Sydney best 43.0ms 43.8ms 167.4ms 43.7ms 44.2ms 48.8ms 0.33ms 0.0086% 100%
Singapore best 48.3ms 49.5ms 536.5ms 49.2ms 49.8ms 52.7ms 0.40ms 0.0367% 100%
Seoul best 127.0ms 128.4ms 959.4ms 127.7ms 129.4ms 136.7ms 0.46ms 0.0297% 100%
Tokyo best 115.5ms 130.6ms 668.5ms 130.5ms 131.0ms 135.6ms 0.32ms 0.0238% 100%
Los Angeles best 180.3ms 181.1ms 696.0ms 181.0ms 181.6ms 186.0ms 0.36ms 0.0134% 100%
Chicago best 219.2ms 220.0ms 518.9ms 219.9ms 220.4ms 224.2ms 0.33ms 0.0199% 100%
Paris best 197.4ms 204.4ms 984.0ms 204.3ms 204.8ms 208.3ms 0.35ms 0.0589% 100%
Frankfurt best 197.9ms 208.5ms 666.7ms 208.4ms 209.0ms 213.3ms 0.33ms 0.0539% 100%
Amsterdam best 202.2ms 212.6ms 837.5ms 212.5ms 213.1ms 217.5ms 0.35ms 0.059% 100%
London best 200.4ms 210.6ms 759.9ms 210.3ms 210.9ms 216.3ms 0.33ms 0.0616% 100%
Stockholm best 219.9ms 231.0ms 679.2ms 230.2ms 230.8ms 246.2ms 0.32ms 0.0563% 100%
Loss timeline

24 hours, five minutes per cell

No loss< 0.01%0.01 – 0.1%0.1 – 1%> 1%No data
Perth
Sydney
Singapore
Seoul
Tokyo
Los Angeles
Chicago
Paris
Frankfurt
Amsterdam
London
Stockholm
00:0006:0012:0018:0024:00
Incidents

Worst events of the day

Consecutive minutes with packet loss or missing data, ranked by packets lost.

WindowEndpointDuration Packets lostLossCoverage
17:10 – 17:11 Paris 1 min 408 67.887%
17:10 – 17:11 Stockholm 1 min 408 67.887%
17:10 – 17:11 Frankfurt 1 min 407 67.72%
17:10 – 17:11 London 1 min 407 67.72%
17:10 – 17:11 Amsterdam 1 min 404 67.221%
18:03 – 18:31 Singapore 28 min 157 0.935%
15:53 – 15:54 Seoul 1 min 75 12.5%
14:39 – 14:40 Chicago 1 min 67 11.167%
07:29 – 07:30 Tokyo 1 min 54 9%
14:39 – 14:40 Los Angeles 1 min 54 9%
14:39 – 14:41 Tokyo 2 min 50 4.167%
15:53 – 15:54 Singapore 1 min 47 7.833%
Over the day

Latency by endpoint

Perth
0123
Ozot
Sydney
0163349
Ozot
Singapore
0193756
Ozot
Seoul
057114171
Ozot
Tokyo
04998147
Ozot
Los Angeles
068136203
Ozot
Chicago
082164247
Ozot
Paris
076153229
Ozot
Frankfurt
078156234
Ozot
Amsterdam
079159238
Ozot
London
087173260
Ozot
Stockholm
0109218327
Ozot
Methodology

How these numbers were produced

Every ISP in this report is measured on identical hardware, with an identical probe configuration, through the same nbn FTTP NTD at the same premises, over the same time window. Each ISP terminates on its own UNI-D port.

  • ProbeUDP to port 1337, 10 packets per second per endpoint, 1000ms timeout.
  • BucketCounters aggregated in 60-second buckets.
  • LossPacket loss is the sum of reset-safe counter deltas. Buckets where a counter decreases are treated as an agent restart and excluded rather than counted as loss.
  • CoverageCoverage is delivered samples divided by expected samples. Missing data is reported as a gap, never as zero loss.
  • Percentilesp50/p95/p99 are computed over the full day of samples, not averaged from buckets. Approximate (t-digest) quantiles.
  • TimeoutsA sample with latency <= 0 or null is a timeout.
  • RankingEndpoints are ranked ordinally. No weighted composite score is used.
  • Ingest delay75s ingest settling delay applied before a day is generated.

Scope. This is a single-premises measurement against one nbn point of interconnect. It reflects each ISP’s backhaul, peering and congestion as experienced at this location on this date. It is not a nationwide comparison, and results at other locations may differ. All four UNI-D ports share the same physical fibre and GPON access path, so access-network conditions affect every ISP equally and cancel out of the comparison.

Generated 2026-08-12T00:15:27+08:00. The complete underlying dataset for this report is published as JSON.