πΊπΈ New York Ping & Network Latency (NYC) | AS203314
New York (NYC) ping, RTT, jitter and packet loss, theoretical fiber floor, and route efficiency to 19 Hats Network (AS203314) backbone PoPs.
πΊπΈ New York (NYC)
New York City is a top-tier global internet hub, home to major carrier hotels at 60 Hudson Street. Hats Network's NYC PoP anchors the transatlantic corridor to Europe.
Measurement round: 2026-08-15T04:03:13Z.
This page provides round-trip time (RTT) latency metrics between the New York (NYC) PoP and every other node on the Hats Network (AS203314) global backbone.

Average RTT from New York to every other PoP
Round average of 19 measured routes, sorted slowest first Β· whiskers mark Β±1 standard deviation within each round
How to read this chart
Each bar is the average round-trip time of one 50-probe ICMP echo round from New York (NYC) to the destination PoP. The whisker at the end of each bar spans the average Β± one standard deviation of that round β long whiskers mark jittery routes, short whiskers mark stable ones.
Full 19-destination dataset
| Destination | Avg RTT (ms) | Stdev (ms) | Distance (km) |
|---|---|---|---|
| Johannesburg (JNB) | 222.30 | 3.86 | 12,833 |
| Singapore (SIN) | 207.70 | 8.92 | 15,347 |
| Melbourne (MEL) | 205.90 | 8.80 | 16,672 |
| Sydney (SYD) | 193.60 | 4.14 | 15,988 |
| Hong Kong (HKG) | 186.00 | 4.57 | 12,980 |
| Taipei (TPE) | 172.90 | 7.97 | 12,549 |
| Tokyo (TYO) | 142.60 | 3.67 | 10,873 |
| SΓ£o Paulo (GRU) | 108.30 | 4.41 | 7,658 |
| Moscow (MOW) | 104.80 | 2.85 | 7,531 |
| Marseille (MRS) | 79.70 | 2.78 | 6,322 |
| Berlin (BER) | 78.90 | 3.36 | 6,402 |
| Frankfurt (FRA) | 74.20 | 2.22 | 6,219 |
| Amsterdam (AMS) | 68.50 | 1.18 | 5,878 |
| Paris (PAR) | 68.40 | 2.12 | 5,853 |
| London (LON) | 64.30 | 1.22 | 5,585 |
| Seattle (SEA) | 59.00 | 2.61 | 3,876 |
| Los Angeles (LAX) | 58.00 | 1.59 | 3,944 |
| Miami (MIA) | 34.30 | 0.86 | 1,753 |
| Ashburn (IAD) | 6.00 | 0.12 | 351 |
RTT vs. distance from New York
Average RTT against great-circle distance for the same 19 routes Β· shaded bands mark latency tiers Β· points are colored by continent
How to read this chart
Each point is one destination PoP: the horizontal axis is the measured average RTT, the vertical axis is the WGS-84 great-circle distance from New York. Points close to the bottom-left are routes that run near the physical fiber limit; points drifting upward-right follow longer paths. The shaded vertical bands mark the latency tiers (Ultra-Low <30 ms, Low 30β80 ms, Mid 80β150 ms, High >150 ms).
Underlying measurements
| Destination | Avg RTT (ms) | Distance (km) |
|---|---|---|
| Johannesburg (JNB) | 222.30 | 12,833 |
| Singapore (SIN) | 207.70 | 15,347 |
| Melbourne (MEL) | 205.90 | 16,672 |
| Sydney (SYD) | 193.60 | 15,988 |
| Hong Kong (HKG) | 186.00 | 12,980 |
| Taipei (TPE) | 172.90 | 12,549 |
| Tokyo (TYO) | 142.60 | 10,873 |
| SΓ£o Paulo (GRU) | 108.30 | 7,658 |
| Moscow (MOW) | 104.80 | 7,531 |
| Marseille (MRS) | 79.70 | 6,322 |
| Berlin (BER) | 78.90 | 6,402 |
| Frankfurt (FRA) | 74.20 | 6,219 |
| Amsterdam (AMS) | 68.50 | 5,878 |
| Paris (PAR) | 68.40 | 5,853 |
| London (LON) | 64.30 | 5,585 |
| Seattle (SEA) | 59.00 | 3,876 |
| Los Angeles (LAX) | 58.00 | 3,944 |
| Miami (MIA) | 34.30 | 1,753 |
| Ashburn (IAD) | 6.00 | 351 |
Fastest routes into New York
Measured RTT from 19 other PoPs into New York (NYC), sorted fastest first Β· each row spans minβmax with a dot at the average
How to read this chart
Each row is one 50-probe ICMP echo round from another PoP into New York (NYC): the line spans the minimum to maximum round-trip time observed, and the dot marks the average. Short rows are stable routes; rows sitting far right are slow ones. RTT is not symmetric β the path back into New York can differ from the outbound path shown in the charts above.
Full 19-source dataset
| Source | Avg RTT (ms) | Min (ms) | Max (ms) | Distance (km) |
|---|---|---|---|---|
| Ashburn (IAD) | 6.00 | 5.87 | 6.27 | 351 |
| Miami (MIA) | 34.00 | 33.05 | 36.91 | 1,753 |
| Los Angeles (LAX) | 59.00 | 57.04 | 63.92 | 3,944 |
| Seattle (SEA) | 59.00 | 57.69 | 64.30 | 3,876 |
| London (LON) | 63.50 | 62.20 | 66.70 | 5,585 |
| Amsterdam (AMS) | 68.20 | 66.81 | 72.73 | 5,878 |
| Paris (PAR) | 68.60 | 65.63 | 74.84 | 5,853 |
| Frankfurt (FRA) | 73.60 | 69.67 | 82.96 | 6,219 |
| Berlin (BER) | 79.70 | 75.31 | 91.04 | 6,402 |
| Marseille (MRS) | 80.20 | 77.17 | 88.77 | 6,322 |
| Moscow (MOW) | 107.50 | 100.91 | 125.13 | 7,531 |
| SΓ£o Paulo (GRU) | 122.00 | 119.57 | 129.74 | 7,658 |
| Tokyo (TYO) | 144.10 | 138.11 | 165.69 | 10,873 |
| Taipei (TPE) | 173.60 | 168.39 | 190.79 | 12,549 |
| Hong Kong (HKG) | 187.80 | 179.48 | 220.50 | 12,980 |
| Sydney (SYD) | 193.50 | 185.80 | 212.89 | 15,988 |
| Melbourne (MEL) | 205.30 | 195.08 | 234.92 | 16,672 |
| Singapore (SIN) | 209.00 | 203.22 | 225.48 | 15,347 |
| Johannesburg (JNB) | 221.50 | 209.80 | 253.20 | 12,833 |
PoP Highlights
- Location: New York, USA (North America)
- Region: North America
- Role: Backbone interconnection point for Hats Network (AS203314)
- Public city reference: GeoNames 5128581 β 40.71427, -74.00597
- Coverage: RTT measurements to 19 other PoPs across 5 continents
Facility & Interconnection
- Facility: NYC1
Latency Summary
| Metric | Value |
|---|---|
| Fastest Route | πΊπΈ New York (NYC) β πΊπΈ Ashburn (IAD) (6 ms) β Ultra-Low |
| Slowest Route | πΊπΈ New York (NYC) β πΏπ¦ Johannesburg (JNB) (222.3 ms) |
| Average RTT | 112.4 ms |
| Average Jitter | 0.90 ms |
| Average Packet Loss | 0.07% |
| Best Fiber Efficiency | 85.1% |
| Intra-Region Peers | 4 PoPs in North America |
| Total Routes | 19 outbound / 19 inbound (100% coverage) |
Jitter, packet-loss, percentile, and trend fields are estimated comparative indicators. Read the theoretical fiber latency methodology.
Geographic & Network Position
New York sits on Hats Network's North America backbone. Measured round-trip times to its 4 intra-region peers range from 6 ms (Ashburn (IAD)) to 59 ms (Seattle (SEA)).
New York anchors the US end of the transatlantic corridor to Europe, centered on carrier hotels such as 60 Hudson Street.
Outbound Latency from New York (NYC)
Round-trip time in milliseconds from New York to all other backbone PoPs, sorted fastest to slowest.
| Destination | RTT (ms) | Fiber Floor | Efficiency | Jitter | Loss | Tier |
|---|---|---|---|---|---|---|
| πΊπΈ Ashburn (IAD) | 6 | 3.44 ms | 57.3% | 0.12 ms | 0.01% | Ultra-Low |
| πΊπΈ Miami (MIA) | 34.3 | 17.17 ms | 50.1% | 0.32 ms | 0.12% | Excellent |
| πΊπΈ Los Angeles (LAX) | 58 | 38.63 ms | 66.6% | 0.65 ms | 0.11% | Excellent |
| πΊπΈ Seattle (SEA) | 59 | 37.95 ms | 64.3% | 0.58 ms | 0% | Excellent |
| π¬π§ London (LON) | 64.3 | 54.69 ms | 85.1% | 0.69 ms | 0.08% | Excellent |
| π«π· Paris (PAR) | 68.4 | 57.31 ms | 83.8% | 0.41 ms | 0.01% | Excellent |
| π³π± Amsterdam (AMS) | 68.5 | 57.56 ms | 84% | 0.55 ms | 0.17% | Excellent |
| π©πͺ Frankfurt (FRA) | 74.2 | 60.9 ms | 82.1% | 0.74 ms | 0.05% | Excellent |
| π©πͺ Berlin (BER) | 78.9 | 62.7 ms | 79.5% | 0.64 ms | 0% | Excellent |
| π«π· Marseille (MRS) | 79.7 | 61.91 ms | 77.7% | 0.53 ms | 0% | Excellent |
| π·πΊ Moscow (MOW) | 104.8 | 73.75 ms | 70.4% | 0.93 ms | 0.18% | Good |
| π§π· SΓ£o Paulo (GRU) | 108.3 | 74.99 ms | 69.2% | 1.13 ms | 0.13% | Good |
| π―π΅ Tokyo (TYO) | 142.6 | 106.47 ms | 74.7% | 0.76 ms | 0.08% | Good |
| πΉπΌ Taipei (TPE) | 172.9 | 122.89 ms | 71.1% | 1.6 ms | 0.16% | Fair |
| ππ° Hong Kong (HKG) | 186 | 127.11 ms | 68.3% | 1.87 ms | 0% | Fair |
| π¦πΊ Sydney (SYD) | 193.6 | 156.57 ms | 80.9% | 1.97 ms | 0.13% | Fair |
| π¦πΊ Melbourne (MEL) | 205.9 | 163.27 ms | 79.3% | 1.1 ms | 0% | Fair |
| πΈπ¬ Singapore (SIN) | 207.7 | 150.29 ms | 72.4% | 1.12 ms | 0.07% | Fair |
| πΏπ¦ Johannesburg (JNB) | 222.3 | 125.67 ms | 56.5% | 1.44 ms | 0% | Fair |
Fastest Routes to New York (NYC)
The 10 fastest measured routes to New York, ranked by average RTT. Min / max / stdev are computed from the same measurement round (50 ICMP echo probes per route, 100 ms interval); routes without a published per-sample round show the measured average RTT only.
| Rank | Source | Avg RTT | Min | Max | Stdev |
|---|---|---|---|---|---|
| 1 | πΊπΈ Ashburn (IAD) | 6 ms | 5.87 ms | 6.27 ms | 0.11 ms |
| 2 | πΊπΈ Miami (MIA) | 34 ms | 33.05 ms | 36.91 ms | 0.84 ms |
| 3 | πΊπΈ Los Angeles (LAX) | 59 ms | 57.04 ms | 63.92 ms | 1.8 ms |
| 4 | πΊπΈ Seattle (SEA) | 59 ms | 57.69 ms | 64.3 ms | 1.27 ms |
| 5 | π¬π§ London (LON) | 63.5 ms | 62.2 ms | 66.7 ms | 0.99 ms |
| 6 | π³π± Amsterdam (AMS) | 68.2 ms | 66.81 ms | 72.73 ms | 1.21 ms |
| 7 | π«π· Paris (PAR) | 68.6 ms | 65.63 ms | 74.84 ms | 2.39 ms |
| 8 | π©πͺ Frankfurt (FRA) | 73.6 ms | 69.67 ms | 82.96 ms | 3.28 ms |
| 9 | π©πͺ Berlin (BER) | 79.7 ms | 75.31 ms | 91.04 ms | 3.35 ms |
| 10 | π«π· Marseille (MRS) | 80.2 ms | 77.17 ms | 88.77 ms | 2.82 ms |
Inbound Latency to New York (NYC)
Round-trip time in milliseconds from all other PoPs to New York. Network paths may be asymmetric β inbound and outbound RTT can differ for the same city pair.
| Source | RTT (ms) | Fiber Floor | Efficiency | Jitter | Loss | Tier |
|---|---|---|---|---|---|---|
| πΊπΈ Ashburn (IAD) | 6 | 3.44 ms | 57.3% | 0.12 ms | 0% | Ultra-Low |
| πΊπΈ Miami (MIA) | 34 | 17.17 ms | 50.5% | 0.22 ms | 0.12% | Excellent |
| πΊπΈ Los Angeles (LAX) | 59 | 38.63 ms | 65.5% | 0.36 ms | 0.13% | Excellent |
| πΊπΈ Seattle (SEA) | 59 | 37.95 ms | 64.3% | 0.54 ms | 0.16% | Excellent |
| π¬π§ London (LON) | 63.5 | 54.69 ms | 86.1% | 0.46 ms | 0% | Excellent |
| π³π± Amsterdam (AMS) | 68.2 | 57.56 ms | 84.4% | 0.37 ms | 0.12% | Excellent |
| π«π· Paris (PAR) | 68.6 | 57.31 ms | 83.5% | 0.65 ms | 0.13% | Excellent |
| π©πͺ Frankfurt (FRA) | 73.6 | 60.9 ms | 82.8% | 0.54 ms | 0% | Excellent |
| π©πͺ Berlin (BER) | 79.7 | 62.7 ms | 78.7% | 0.61 ms | 0.1% | Excellent |
| π«π· Marseille (MRS) | 80.2 | 61.91 ms | 77.2% | 0.63 ms | 0.02% | Good |
| π·πΊ Moscow (MOW) | 107.5 | 73.75 ms | 68.6% | 0.9 ms | 0.16% | Good |
| π§π· SΓ£o Paulo (GRU) | 122 | 74.99 ms | 61.5% | 0.86 ms | 0.17% | Good |
| π―π΅ Tokyo (TYO) | 144.1 | 106.47 ms | 73.9% | 1.3 ms | 0% | Good |
| πΉπΌ Taipei (TPE) | 173.6 | 122.89 ms | 70.8% | 1.63 ms | 0.11% | Fair |
| ππ° Hong Kong (HKG) | 187.8 | 127.11 ms | 67.7% | 1.99 ms | 0.06% | Fair |
| π¦πΊ Sydney (SYD) | 193.5 | 156.57 ms | 80.9% | 1.13 ms | 0% | Fair |
| π¦πΊ Melbourne (MEL) | 205.3 | 163.27 ms | 79.5% | 0.96 ms | 0.11% | Fair |
| πΈπ¬ Singapore (SIN) | 209 | 150.29 ms | 71.9% | 1.82 ms | 0% | Fair |
| πΏπ¦ Johannesburg (JNB) | 221.5 | 125.67 ms | 56.7% | 1.98 ms | 0% | Fair |
North America Peers
New York is one of 5 Hats Network PoPs in North America. Intra-region routes offer the lowest latency and highest path diversity.
| PoP | Code | Country | RTT (ms) | Tier |
|---|---|---|---|---|
| πΊπΈ Ashburn (IAD) | IAD | USA | 6 | Ultra-Low |
| πΊπΈ Los Angeles (LAX) | LAX | USA | 58 | Excellent |
| πΊπΈ Miami (MIA) | MIA | USA | 34.3 | Excellent |
| πΊπΈ Seattle (SEA) | SEA | USA | 59 | Excellent |
Frequently Asked Questions
What is the fastest route to New York?
The fastest measured route to New York (NYC) is Ashburn (IAD) β New York (NYC), averaging 6 ms RTT (Ultra-Low).
What is the fastest route from New York?
The fastest measured route from New York (NYC) is New York (NYC) β Ashburn (IAD), averaging 6 ms RTT (Ultra-Low).
How well connected is New York to the Hats Network backbone?
New York (NYC) maintains measured routes to all 19 other PoPs across 5 continents. The slowest route, New York (NYC) β Johannesburg (JNB), averages 222.3 ms RTT.
Open Data
Measured latency data for New York (NYC) is published daily under CC BY 4.0 as part of the Hats Network open latency dataset:
- Per-route files β every directed route from New York is published as
nyc-<destination>.pings.{csv,json,yaml}under/opendata/latency/latest/pairs/β for example nyc-iad.pings.csv, the 50-probe ICMP echo round for New York (NYC) β Ashburn (IAD). - Dataset documentation β /opendata/latency/ covers file formats, versioning, checksums, and the aggregated full-matrix releases.
Data auto-generated on August 15, 2026. Explore the full interactive latency matrix for side-by-side comparison across all 20 PoPs.
πΊπΈ Miami Ping & Network Latency (MIA) | AS203314
Miami (MIA) ping, RTT, jitter and packet loss, theoretical fiber floor, and route efficiency to 19 Hats Network (AS203314) backbone PoPs.
πΊπΈ Seattle Ping & Network Latency (SEA) | AS203314
Seattle (SEA) ping, RTT, jitter and packet loss, theoretical fiber floor, and route efficiency to 19 Hats Network (AS203314) backbone PoPs.