IPure IP purity check

IP purity report

9.142.111.234

99/ 100

Excellent

confidence: high

No risk signals found in any dimension we check; the IP itself is not an obstacle.

Based on signals observed from public and partner data sources at 2026-09-21 15:58 UTC. This describes IP-level risk only; platforms' internal risk data is not visible to us.

Profile

What this IP is

Country / region
United States · California · Los Angeles
IP type
Mobile network
Native / broadcast
Native IP
Network
AS33667 IP-NET-MOBILITY
Reverse DNS
none
Devices seen in subnet
no data

Suitability

What it is good for

Each use case weighs the evidence differently; these are not one overall score.

AI services

ChatGPT · Claude · Gemini

82

Good fit

Main issue: Proxy IP

Least tolerant of data center and proxy exits: more likely to get degraded service, verification prompts or account limits. Spam history does not matter here

Social sign-up

X · Discord · Telegram · Reddit

80

Good fit

Main issue: Proxy IP

Sign-up is the strictest checkpoint: data center / proxy exits are more likely to be asked for phone verification or refused, and IPs with bulk-registration history are blocked far more often

Streaming / short video

TikTok · Netflix · YouTube

89

Excellent fit

No notable obstacle found for this use case

Native IP and low sharing matter most: a broadcast IP reads as a region mismatch, and shared exits get throttled

Gaming platforms

Steam · PSN · Epic · Nintendo

88

Excellent fit

No notable obstacle found for this use case

Region locks, regional pricing and gifting all follow the IP's location, so broadcast IPs tend to be treated as cross-region; data center exits carry a high risk of restrictions

Cross-border e-commerce

Amazon · eBay · Shopee

92

Excellent fit

No notable obstacle found for this use case

Linked-account store closures are driven first by shared IPs, and only then by data center ranges

Email sending

SMTP · marketing email

98

Excellent fit

No notable obstacle found for this use case

Blocklists make or break deliverability, while sending from a data center IP is normal and is not penalised

Evidence

Why it got this score

  • −15

    Proxy IP

    Only 1 data source flags it as a proxy; the evidence is limited, so it counts at half weight

  • −5

    No rDNS record

    No PTR record; IPs allocated by established carriers usually have one

  • +3

    No open ports

    Network scans have not observed any open service on this IP

  • +5

    IP type: Mobile network

    Mobile IPs are heavily shared but are generally treated as real users

  • +5

    Native IP

    Registered and used in the same country, allocated directly by a local carrier

  • +6

    Spamhaus ZEN: residential range declaration

    PBL — range judged dynamic by Spamhaus

Reputation

Blocklists and abuse history

Not listed on any of the 8 blocklists checked (Spamhaus ZEN, SpamCop, PSBL, blocklist.de, UCEPROTECT L1, s5h.net, DroneBL, SpamRats).

  • abuseipdb abuse confidence 0%

Limits

What an IP check cannot tell you

Each platform's internal risk labels
Platforms keep their own IP reputation data and ban records and do not publish them. No hit in public sources does not mean a platform has nothing on this IP.
Whether the IP is truly exclusive
Sharing is only the number of devices observed in the same subnet. It cannot show who else is using this exit right now, or what they are doing.
Which accounts this IP has been tied to
Account-to-IP links exist only inside each platform. Accounts previously banned on this IP are invisible to us.
Device, browser and behaviour
Risk systems look at IP + device fingerprint + behavioural rhythm together. A clean IP with an odd fingerprint or behaviour still gets blocked.
Whether the account profile matches the IP
When sign-up country, phone number, payment method, language or time zone disagree with the IP's location, platforms verify further. That is unrelated to IP purity.

Sources

Data sources and responses

  • rdap
    614ms
  • team-cymru
    61ms
  • ip-api.com
    84ms
  • proxycheck.io
    175ms
  • abuseipdb
    202ms
  • cloud-ranges
    12ms
  • tor-exits
    12ms
  • rdns
    313ms
  • shodan-internetdb
    616ms
  • ipwho.is
    101ms
  • dnsbl
    198ms

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