t13i1010h1_61a7ad8aa9b6_881d5e41be7c
Presented a User-Agent we cannot attribute to a known client.
What this fingerprint encodes
t13i1010h1
handshake shape, human-readable
61a7ad8aa9b6
truncated hash of the cipher list
881d5e41be7c
truncated hash of extensions + signature algorithms
- Transport
- TCP
- TLS version
- TLS 1.3
- Server name
- no server name (IP literal)
- Cipher suites offered
- 10
- Extensions offered
- 10
- ALPN
- h1
Same tool, different options
These 1 other fingerprints share this one's JA4_c — the extension and signature-algorithm hash. A client that keeps its extension set constant while varying its cipher list produces exactly this pattern, which is what a scanner iterating cipher suites looks like. A JA3 cannot show you this: its single MD5 collapses ciphers and extensions together, so every variation looks like an unrelated client.
The hello it was computed from
Recovered because the proxy now stores the pre-hash JA3 string alongside the digest. Every number below came out of this client's ClientHello; anything we cannot name in the IANA registry is shown as its raw value rather than guessed at.
- Version
- TLS 1.2
Cipher suites 10
-
TLS_AES_256_GCM_SHA384 -
TLS_AES_128_GCM_SHA256 -
TLS_CHACHA20_POLY1305_SHA256 -
TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384 -
TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256 -
TLS_ECDHE_ECDSA_WITH_CHACHA20_POLY1305_SHA256 -
TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384 -
TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256 -
TLS_ECDHE_RSA_WITH_CHACHA20_POLY1305_SHA256 -
TLS_EMPTY_RENEGOTIATION_INFO_SCSV
Extensions 10
-
session_ticket -
supported_versions -
application_layer_protocol_negotiation -
ec_point_formats -
supported_groups -
psk_key_exchange_modes -
extended_master_secret -
status_request -
key_share -
signature_algorithms
Named groups 3
-
x25519 -
secp256r1 -
secp384r1
Point formats 1
-
uncompressed
Raw JA3 string
771,4866-4865-4867-49196-49195-52393-49200-49199-52392-255,35-43-16-11-10-45-23-5-51-13,29-23-24,0
Seen in live traffic
- Connections
- 27
- First seen
- 2026-10-11 01:58 UTC
- Last seen
- 2026-10-11 01:58 UTC
- Transport
- TCP
- JA3 hashes absorbed
- 27
The same client, 27 different JA3s
This one JA4 covers 27 distinct JA3 hashes. A JA3 hashes the cipher and extension lists in the order they arrived, so a client that shuffles them — which Chrome and its derivatives do on purpose — produces a new JA3 almost every connection and fragments into what looks like 27 unrelated clients. JA4 sorts those lists before hashing, which is why all of it lands here instead.
8571cca7cc3ab33d35fe439c20b09fd2c720103f96d42a25f25a8b818fdad796dfd60650ebc91284b08b35d342807c22bf10b6eeb0b3d2ecce02245619e516cf23c933e72443ab3e672a83331b430f859bf983bf2074091f538012754019098123370c5bbd46708d5988431216eb923cb9589b23c4b76ddf864067d708dfa4331919e217b6c1f942f11eae9e32db64115189e837b8386b39fe47f3097b7e1a4de8de9a24750fbada26c44d77af3982f0890c3c422b1acd13b7e09c7da14872a2- … and 15 more
User-Agents seen on this fingerprint
WebSiphon/next-0.124×
A User-Agent is self-declared and trivially forged, so this names an observation rather than proving an identity. It is still the strongest signal available: the fingerprint comes off the TLS handshake and the User-Agent off the request that followed, and one client build keeping a stable JA4 while changing what it calls itself is a finding in its own right.
This entry is an observation, not a policy decision. It is here because the edge saw it, not because anyone reviewed it, and it blocks nothing on its own. Only the curated tier drives classification and banning.