007.Cricket - Info 007.cricket

007.cricket receives about n/a unique visitors and n/a page views per day which should earn about n/a/day from advertising revenue. Estimated site value is n/a. According to Alexa Traffic Rank 007.cricket is ranked number 0 in the world and 0% of global Internet users visit it. Site is hosted in Scottsdale, Arizona, 85260, United States and links to network IP address 148.72.208.132. This server supports HTTPS and HTTP/2.

About - 007.cricket


007.cricket Profile

Title: Index of /
Last update was 15 hours ago
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*HypeStat.com is not linking to, promoting or affiliated with 007.cricket in any way. Only publicly available statistics data are displayed.

How popular is 007.cricket?

Daily Unique Visitors:
 n/a
Monthly Unique Visitors:
n/a
Pages per Visit:
n/a
Daily Pageviews:
n/a
Alexa Rank:
Currently Not Available visit alexa
Alexa Reach:
n/a   (of global internet users)
Avg. visit duration:
00:00
Bounce rate:
n/a
*All traffic values are estimates only.

Alexa Traffic Ranks
Search Traffic

Traffic sources

Direct:
0%
Referral:
0%
Search:
0%
Social:
0%
Paid:
0%

Visitors by country

Currently Not Available

Where do visitors go on this site?

Currently Not Available

Competitive Data

SEMrush
Domain:
  007.cricket
Rank:
(Rank based on keywords, cost and organic traffic)
  n/a
Organic Keywords:
(Number of keywords in top 20 Google SERP)
  0
Organic Traffic:
(Number of visitors coming from top 20 search results)
  0
Organic Cost:
((How much need to spend if get same number of visitors from Google Adwords)
  $0.00
Adwords Keywords:
(Keywords a website is buying in Google AdWords for ads that appear in paid search results)
  0
Adwords Traffic:
(Number of visitors brought to the website via paid search results)
  0
Adwords Cost:
(Estimated budget spent for buying keywords in Google AdWords for ads that appear in paid search results - monthly estimation)
  $0.00

Data

Domain Authority:
  n/a
Page Authority:
  n/a
MozRank:
  n/a

How socially engaged is 007.cricket?

Facebook:
  0
Google +:
  0
Linkedin:
  0
Stumbles:
  0
Buffer:
  0
Pins:
  0

Ad Experience Report

Summary of the ad experience rating of a site for a specific platform.

Desktop summary

Root domain:
007.cricket
Region:
(The Ad Standard region to which this site has been assigned.)
Pending
Ad filtering:
(Chrome is not filtering ads on your site.)
Off
Status:
(The status of the site that is reviewed for the Better Ads Standards.)
Not reviewed


Mobile summary

Region:
(The Ad Standard region to which this site has been assigned.)
Pending
Ad filtering:
(Chrome is not filtering ads on your site.)
Off
Status:
(The status of the site that is reviewed for the Better Ads Standards.)
Not reviewed

Abusive Experience Report

Root domain:
007.cricket
Last Change Time:
(The last time that the site changed status.)
2019-09-03 15:27:49
Enforcement:
(Filtering is pending.)
Pending
EnforcementTime:
2019-10-03 15:27:49
Status:
(The status of the site reviewed for the abusive experiences.)
Not reviewed

How much 007.cricket can earn?

Daily Revenue:
n/a
Monthly Revenue:
n/a
Yearly Revenue:
n/a
*All earnings values are estimates only.

Daily earning by country

Currently Not Available

How much money do 007.cricket lose due to Adblock?

Daily Revenue Loss:
n/a
Monthly Revenue Loss:
n/a
Yearly Revenue Loss:
n/a
Daily Pageviews Blocked:
n/a
Monthly Pageviews Blocked:
n/a
Yearly Pageviews Blocked:
n/a
*All earnings values are estimates only.

Daily revenue loss by country

Currently Not Available

How much is 007.cricket worth?

Website Value:
n/a

Where is 007.cricket hosted?

Server IP:
148.72.208.132
ASN:
AS26496 
ISP:
GoDaddy.com, LLC 
Server Location:
Scottsdale
Arizona, AZ
85260
United States, US
 

Other sites hosted on 148.72.208.132

How fast does 007.cricket load?

Average Load Time:
n/a ms n/a % of sites are slower

Page Speed (Google PageSpeed Insights) - Desktop

100
0-49 50-89 90-100 i

Field Data

Over the last 30 days, the field data shows that this page has a speed compared to other pages in the Chrome User Experience Report.We are showing the 90th percentile of FCP and the 95th percentile of FID.

Origin Data

All pages served from this origin have an speed compared to other pages in the Chrome User Experience Report. over the last 30 days.To view suggestions tailored to each page, analyze individual page URLs.

Lab Data

First Meaningful Paint 0.2 s
First Meaningful Paint measures when the primary content of a page is visible. Learn more.
Max Potential First Input Delay 20 ms
The maximum potential First Input Delay that your users could experience is the duration, in milliseconds, of the longest task. Learn more.
Time to Interactive 0.2 s
Time to interactive is the amount of time it takes for the page to become fully interactive. Learn more.
Third-Party Usage
Third-party code can significantly impact load performance. Limit the number of redundant third-party providers and try to load third-party code after your page has primarily finished loading. Learn more.
Total Blocking Time 0 ms
Sum of all time periods between FCP and Time to Interactive, when task length exceeded 50ms, expressed in milliseconds.
Estimated Input Latency 10 ms
Estimated Input Latency is an estimate of how long your app takes to respond to user input, in milliseconds, during the busiest 5s window of page load. If your latency is higher than 50 ms, users may perceive your app as laggy. Learn more.
Speed Index 0.6 s
Speed Index shows how quickly the contents of a page are visibly populated. Learn more.
First CPU Idle 0.2 s
First CPU Idle marks the first time at which the page's main thread is quiet enough to handle input. Learn more.
First Contentful Paint 0.2 s
First Contentful Paint marks the time at which the first text or image is painted. Learn more.
Performance budget
Keep the quantity and size of network requests under the targets set by the provided performance budget. Learn more.

Screenshot Thumbnails

This is what the load of your site looked like.

Keep request counts low and transfer sizes small - 1 request • 1 KB
To set budgets for the quantity and size of page resources, add a budget.json file. Learn more.

Resource Type
RequestsTransfer Size
Document
11 KB
Total
11 KB
Stylesheet
00 KB
Image
00 KB
Media
00 KB
Font
00 KB
Script
00 KB
Other
00 KB
Third-party
00 KB
Network Requests
Lists the network requests that were made during page load.

URL
Start TimeEnd TimeTransfer SizeResource SizeStatus CodeMIME TypeResource Type
http://007.cricket/
0 ms921 ms1 KB1 KB200text/htmlDocument
Tasks
Lists the toplevel main thread tasks that executed during page load.

Start Time
End Time
950 ms
7 ms
959 ms
23 ms
Avoids enormous network payloads - Total size was 1 KB
Large network payloads cost users real money and are highly correlated with long load times. Learn more.

URL
Size
http://007.cricket/
1 KB
Minimizes main-thread work - 0.0 s
Consider reducing the time spent parsing, compiling and executing JS. You may find delivering smaller JS payloads helps with this.

Category
Time Spent
Style & Layout
20 ms
Other
10 ms
Script Evaluation
4 ms
Rendering
2 ms
Parse HTML & CSS
1 ms
Script Parsing & Compilation
1 ms
Avoids an excessive DOM size - 26 elements
Browser engineers recommend pages contain fewer than ~1,500 DOM elements. The sweet spot is a tree depth < 32 elements and fewer than 60 children/parent element. A large DOM can increase memory usage, cause longer [style calculations](https://developers.google.com/web/fundamentals/performance/rendering/reduce-the-scope-and-complexity-of-style-calculations), and produce costly [layout reflows](https://developers.google.com/speed/articles/reflow). Learn more.

Statistic
ElementValue
Total DOM Elements
26
Maximum DOM Depth
6
Maximum Child Elements
5
Avoid multiple page redirects
Redirects introduce additional delays before the page can be loaded. Learn more.

User Timing marks and measures
Consider instrumenting your app with the User Timing API to measure your app's real-world performance during key user experiences. Learn more.

Use video formats for animated content
Large GIFs are inefficient for delivering animated content. Consider using MPEG4/WebM videos for animations and PNG/WebP for static images instead of GIF to save network bytes. Learn more.

Reduce server response times (TTFB) - Root document took 920 ms
Time To First Byte identifies the time at which your server sends a response. Learn more.

Eliminate render-blocking resources
Resources are blocking the first paint of your page. Consider delivering critical JS/CSS inline and deferring all non-critical JS/styles. Learn more.

Efficiently encode images
Optimized images load faster and consume less cellular data. Learn more.

Enable text compression
Text-based resources should be served with compression (gzip, deflate or brotli) to minimize total network bytes. Learn more.

Uses efficient cache policy on static assets - 0 resources found
A long cache lifetime can speed up repeat visits to your page. Learn more.

Network Round Trip Times - 0 ms
Network round trip times (RTT) have a large impact on performance. If the RTT to an origin is high, it's an indication that servers closer to the user could improve performance. Learn more.

All text remains visible during webfont loads
Leverage the font-display CSS feature to ensure text is user-visible while webfonts are loading. Learn more.

Preconnect to required origins
Consider adding preconnect or dns-prefetch resource hints to establish early connections to important third-party origins. Learn more.

Minify CSS
Minifying CSS files can reduce network payload sizes. Learn more.

JavaScript execution time
Consider reducing the time spent parsing, compiling, and executing JS. You may find delivering smaller JS payloads helps with this. Learn more.

Defer offscreen images
Consider lazy-loading offscreen and hidden images after all critical resources have finished loading to lower time to interactive. Learn more.

Server Backend Latencies - 0 ms
Server latencies can impact web performance. If the server latency of an origin is high, it's an indication the server is overloaded or has poor backend performance. Learn more.

Properly size images
Serve images that are appropriately-sized to save cellular data and improve load time. Learn more.

Remove unused CSS
Remove dead rules from stylesheets and defer the loading of CSS not used for above-the-fold content to reduce unnecessary bytes consumed by network activity. Learn more.

Serve images in next-gen formats
Image formats like JPEG 2000, JPEG XR, and WebP often provide better compression than PNG or JPEG, which means faster downloads and less data consumption. Learn more.

Minimize Critical Requests Depth
The Critical Request Chains below show you what resources are loaded with a high priority. Consider reducing the length of chains, reducing the download size of resources, or deferring the download of unnecessary resources to improve page load. Learn more.

Preload key requests
Consider using to prioritize fetching resources that are currently requested later in page load. Learn more.

Minify JavaScript
Minifying JavaScript files can reduce payload sizes and script parse time. Learn more.


Page Speed (Google PageSpeed Insights) - Mobile

100
0-49 50-89 90-100 i

Field Data

Over the last 30 days, the field data shows that this page has a speed compared to other pages in the Chrome User Experience Report.We are showing the 90th percentile of FCP and the 95th percentile of FID.

Origin Data

All pages served from this origin have an speed compared to other pages in the Chrome User Experience Report. over the last 30 days.To view suggestions tailored to each page, analyze individual page URLs.

Lab Data

Performance budget
Keep the quantity and size of network requests under the targets set by the provided performance budget. Learn more.
First Meaningful Paint 0.6 s
First Meaningful Paint measures when the primary content of a page is visible. Learn more.
Max Potential First Input Delay 20 ms
The maximum potential First Input Delay that your users could experience is the duration, in milliseconds, of the longest task. Learn more.
Time to Interactive 0.6 s
Time to interactive is the amount of time it takes for the page to become fully interactive. Learn more.
Third-Party Usage
Third-party code can significantly impact load performance. Limit the number of redundant third-party providers and try to load third-party code after your page has primarily finished loading. Learn more.
Estimated Input Latency 10 ms
Estimated Input Latency is an estimate of how long your app takes to respond to user input, in milliseconds, during the busiest 5s window of page load. If your latency is higher than 50 ms, users may perceive your app as laggy. Learn more.
Total Blocking Time 0 ms
Sum of all time periods between FCP and Time to Interactive, when task length exceeded 50ms, expressed in milliseconds.
First Contentful Paint (3G) 1230 ms
First Contentful Paint 3G marks the time at which the first text or image is painted while on a 3G network. Learn more.
Speed Index 1.5 s
Speed Index shows how quickly the contents of a page are visibly populated. Learn more.
First CPU Idle 0.6 s
First CPU Idle marks the first time at which the page's main thread is quiet enough to handle input. Learn more.
First Contentful Paint 0.6 s
First Contentful Paint marks the time at which the first text or image is painted. Learn more.

Screenshot Thumbnails

This is what the load of your site looked like.

Avoids an excessive DOM size - 26 elements
Browser engineers recommend pages contain fewer than ~1,500 DOM elements. The sweet spot is a tree depth < 32 elements and fewer than 60 children/parent element. A large DOM can increase memory usage, cause longer [style calculations](https://developers.google.com/web/fundamentals/performance/rendering/reduce-the-scope-and-complexity-of-style-calculations), and produce costly [layout reflows](https://developers.google.com/speed/articles/reflow). Learn more.

Statistic
ElementValue
Total DOM Elements
26
Maximum DOM Depth
6
Maximum Child Elements
5
Keep request counts low and transfer sizes small - 1 request • 1 KB
To set budgets for the quantity and size of page resources, add a budget.json file. Learn more.

Resource Type
RequestsTransfer Size
Document
11 KB
Total
11 KB
Stylesheet
00 KB
Image
00 KB
Media
00 KB
Font
00 KB
Script
00 KB
Other
00 KB
Third-party
00 KB
Network Requests
Lists the network requests that were made during page load.

URL
Start TimeEnd TimeTransfer SizeResource SizeStatus CodeMIME TypeResource Type
http://007.cricket/
0 ms938 ms1 KB1 KB200text/htmlDocument
Tasks
Lists the toplevel main thread tasks that executed during page load.

Start Time
End Time
959 ms
7 ms
968 ms
7 ms
JavaScript execution time - 0.0 s
Consider reducing the time spent parsing, compiling, and executing JS. You may find delivering smaller JS payloads helps with this. Learn more.

URL
Total CPU TimeScript EvaluationScript Parse
Other
85 ms7 ms3 ms
Avoids enormous network payloads - Total size was 1 KB
Large network payloads cost users real money and are highly correlated with long load times. Learn more.

URL
Size
http://007.cricket/
1 KB
Minimizes main-thread work - 0.1 s
Consider reducing the time spent parsing, compiling and executing JS. You may find delivering smaller JS payloads helps with this.

Category
Time Spent
Other
39 ms
Style & Layout
25 ms
Script Evaluation
7 ms
Rendering
7 ms
Parse HTML & CSS
3 ms
Script Parsing & Compilation
3 ms
Minimize Critical Requests Depth
The Critical Request Chains below show you what resources are loaded with a high priority. Consider reducing the length of chains, reducing the download size of resources, or deferring the download of unnecessary resources to improve page load. Learn more.

Preload key requests
Consider using to prioritize fetching resources that are currently requested later in page load. Learn more.

Minify JavaScript
Minifying JavaScript files can reduce payload sizes and script parse time. Learn more.

Avoid multiple page redirects
Redirects introduce additional delays before the page can be loaded. Learn more.

User Timing marks and measures
Consider instrumenting your app with the User Timing API to measure your app's real-world performance during key user experiences. Learn more.

Use video formats for animated content
Large GIFs are inefficient for delivering animated content. Consider using MPEG4/WebM videos for animations and PNG/WebP for static images instead of GIF to save network bytes. Learn more.

Reduce server response times (TTFB) - Root document took 940 ms
Time To First Byte identifies the time at which your server sends a response. Learn more.

Eliminate render-blocking resources
Resources are blocking the first paint of your page. Consider delivering critical JS/CSS inline and deferring all non-critical JS/styles. Learn more.

Enable text compression
Text-based resources should be served with compression (gzip, deflate or brotli) to minimize total network bytes. Learn more.

Efficiently encode images
Optimized images load faster and consume less cellular data. Learn more.

Uses efficient cache policy on static assets - 0 resources found
A long cache lifetime can speed up repeat visits to your page. Learn more.

Network Round Trip Times - 0 ms
Network round trip times (RTT) have a large impact on performance. If the RTT to an origin is high, it's an indication that servers closer to the user could improve performance. Learn more.

All text remains visible during webfont loads
Leverage the font-display CSS feature to ensure text is user-visible while webfonts are loading. Learn more.

Preconnect to required origins
Consider adding preconnect or dns-prefetch resource hints to establish early connections to important third-party origins. Learn more.

Minify CSS
Minifying CSS files can reduce network payload sizes. Learn more.

Server Backend Latencies - 0 ms
Server latencies can impact web performance. If the server latency of an origin is high, it's an indication the server is overloaded or has poor backend performance. Learn more.

Defer offscreen images
Consider lazy-loading offscreen and hidden images after all critical resources have finished loading to lower time to interactive. Learn more.

Properly size images
Serve images that are appropriately-sized to save cellular data and improve load time. Learn more.

Remove unused CSS
Remove dead rules from stylesheets and defer the loading of CSS not used for above-the-fold content to reduce unnecessary bytes consumed by network activity. Learn more.

Serve images in next-gen formats
Image formats like JPEG 2000, JPEG XR, and WebP often provide better compression than PNG or JPEG, which means faster downloads and less data consumption. Learn more.

Page Speed (Google PageSpeed Insights) - v2

Suggestions Summary

Use legible font sizes

The following text on your page renders in a way that may be difficult for some of your visitors to read. Use legible font sizes to provide a better user experience.

The following text fragments have a small font size. Increase the font size to make them more legible.

Last modified and 3 others render only 6 pixels tall (16 CSS pixels) .
cgi-bin/ renders only 6 pixels tall (16 CSS pixels) .
2019-02-04 06:19 and 1 others render only 6 pixels tall (16 CSS pixels) .

Size tap targets appropriately

Some of the links/buttons on your webpage may be too small for a user to easily tap on a touchscreen. Consider making these tap targets larger to provide a better user experience.

The following tap targets are close to other nearby tap targets and may need additional spacing around them.

The tap target <a href="?C=N;O=D">Name</a> and 1 others are close to other tap targets .
The tap target <a href="cgi-bin/">cgi-bin/</a> is close to 1 other tap targets .

Configure the viewport

Your page does not have a viewport specified. This causes mobile devices to render your page as it would appear on a desktop browser, scaling it down to fit on a mobile screen. Configure a viewport to allow your page to render properly on all devices.

Configure a viewport for this page.

Enable compression

Compressing resources with gzip or deflate can reduce the number of bytes sent over the network.

Enable compression for the following resources to reduce their transfer size by 308B (50% reduction).

Compressing http://007.cricket/ could save 308B (50% reduction).
Avoid landing page redirects
Your page has no redirects. Learn more about avoiding landing page redirects.
Avoid plugins
Your page does not appear to use plugins, which would prevent content from being usable on many platforms. Learn more about the importance of avoiding plugins.
Leverage browser caching
You have enabled browser caching. Learn more about browser caching recommendations.
Reduce server response time
Your server responded quickly. Learn more about server response time optimization.
Minify CSS
Your CSS is minified. Learn more about minifying CSS.
Minify HTML
Your HTML is minified. Learn more about minifying HTML.
Minify JavaScript
Your JavaScript content is minified. Learn more about minifying JavaScript.
Eliminate render-blocking JavaScript and CSS in above-the-fold content
You have no render-blocking resources. Learn more about removing render-blocking resources.
Optimize images
Your images are optimized. Learn more about optimizing images.
Prioritize visible content
You have the above-the-fold content properly prioritized. Learn more about prioritizing visible content.
Size content to viewport
The contents of your page fit within the viewport. Learn more about sizing content to the viewport.
Download optimized image, JavaScript, and CSS resources for this page.

Does 007.cricket use compression?

007.cricket use gzip compression.
Original size: 623 B
Compressed size: 7.4 KB
File reduced by: n/a

Google Safe Browsing

This site is not currently listed as suspicious

MyWot.com Reputation Ratings

Trustworthiness:
  n/a
Vendor reliability:
  n/a
Privacy:
  n/a
Child safety:
  n/a

SSL Checker - SSL Certificate Verify

007.cricket supports HTTPS
loader
Verifying SSL Support. Please wait...
Common Name: sni.cloudflaressl.com
Organization:
Location:
Issuer: CloudFlare Inc ECC CA-2
Valid from: Aug 9 00:00:00 2019 GMT
Valid until: Aug 8 12:00:00 2020 GMT
Authority:
Keysize:

Verify HTTP/2 Support

007.cricket supports HTTP/2
loader
Verifying HTTP/2.0 Support. Please wait...

Http Header

Date: Sat, 21 Sep 2019 00:03:44 GMT
Server: Apache
Content-Length: 623
Content-Type: text/html;charset=ISO-8859-1

DNS Lookup

Type Ip Target TTL
MX 007.cricket 3600
SOA 3600
Mname ns1.divinehost360.com
Rname divinehost360.gmail.com
Serial Number 2019020403
Refresh 3600
Retry 7200
Expire 1209600
Minimum TTL 0
TXT 3600
A 148.72.208.132 3584
NS ns2.divinehost360.com 3584
NS ns1.divinehost360.com 3584

Whois Lookup

Domain Created:
2018-04-07
Domain Age:
1 years 5 months 13 days  
WhoIs:
 

whois lookup at whois.nic.cricket...
Domain Name: 007.cricket
Registry Domain ID: DB1F1C7AA1AFF4FC09F57A8E6CFCC8016-NSR
Registrar WHOIS Server: whois.namecheap.com
Registrar URL: http://www.namecheap.com
Updated Date: 2019-09-10T07:12:57Z
Creation Date: 2018-04-07T07:48:16Z
Registry Expiry Date: 2023-04-07T07:48:16Z
Registrar: NameCheap, Inc.
Registrar IANA ID: 1068
Registrar Abuse Contact Email: email
Registrar Abuse Contact Phone: +1.6613102107
Domain Status: clientTransferProhibited https://icann.org/epp#clientTransferProhibited
Registry Registrant ID:
Registrant Name:
Registrant Organization: WhoisGuard, Inc.
Registrant Street:
Registrant Street:
Registrant Street:
Registrant City:
Registrant State/Province: Uttarakhand
Registrant Postal Code:
Registrant Country: IN
Registrant Phone:
Registrant Phone Ext:
Registrant Fax:
Registrant Fax Ext:
Registrant Email: Please query the RDDS service of the Registrar of Record identified in this output for information on how to contact the Registrant, Admin, or Tech contact of the queried domain name.
Registry Admin ID:
Admin Name:
Admin Organization:
Admin Street:
Admin Street:
Admin Street:
Admin City:
Admin State/Province:
Admin Postal Code:
Admin Country:
Admin Phone:
Admin Phone Ext:
Admin Fax:
Admin Fax Ext:
Admin Email: Please query the RDDS service of the Registrar of Record identified in this output for information on how to contact the Registrant, Admin, or Tech contact of the queried domain name.
Registry Tech ID:
Tech Name:
Tech Organization:
Tech Street:
Tech Street:
Tech Street:
Tech City:
Tech State/Province:
Tech Postal Code:
Tech Country:
Tech Phone:
Tech Phone Ext:
Tech Fax:
Tech Fax Ext:
Tech Email: Please query the RDDS service of the Registrar of Record identified in this output for information on how to contact the Registrant, Admin, or Tech contact of the queried domain name.
Name Server: ns1.divinehost360.com
Name Server: ns2.divinehost360.com
DNSSEC: unsigned
URL of the ICANN Whois Inaccuracy Complaint Form: https://www.icann.org/wicf/
>>> Last update of WHOIS database: 2019-09-21T00:08:56Z <<<
The above WHOIS results have been redacted to remove potential personal data. The full WHOIS output may be available to individuals and organisations with a legitimate interest in accessing this data not outweighed by the fundamental privacy rights of the data subject. To find out more, or to make a request for access, please visit: RDDSrequest.nic.cricket.
For more information on Whois status codes, please visit https://icann.org/epp

The WHOIS service offered by the Registry Operator, and the access to the records in the Registry Operator WHOIS database, are provided for information purposes only and is designed (i) to assist persons in determining whether a specific domain name registration record is available or not in the Registry Operator database and (ii) to obtain information related to the registration records of existing domain names. The Registry Operator cannot, under any cir***stances, be held liable in such instances where the stored information would prove to be wrong, incomplete, or not accurate in any sense.
By submitting a WHOIS query, you, the user, agree that you will not use this data:
(i) to allow, enable or otherwise support in any way the transmission of unsolicited, commercial advertising or other solicitations whether via direct mail, email, telephone or otherwise;(ii) to enable high volume, automated, electronic processes that apply to the registry (or its systems);
(iii) for target advertising in any possible way;
(iv) to cause nuisance in any possible way to the registrants by sending (whether by automated, electronic processes capable of enabling high volumes or other possible means) messages to them;
(v) to violate any law, rule, regulation or statute; and/or
(vi) in contravention of any applicable data and privacy protection acts.

Without prejudice to the above, it is explicitly forbidden to extract, copy and/or use or re-utilize in any form and by any means (electronically or not) the whole or a quantitatively or qualitatively substantial part of the contents of the WHOIS database without prior and explicit permission by Registry Operator, nor in any attempt hereof, or to apply automated, electronic processes to Registry Operator (or its systems or their designated third party Registry Service Provider's systems).

You agree that any reproduction and/or transmission of data for commercial purposes will always be considered as the extraction of a substantial part of the content of the WHOIS database. By utilizing this website and/or submitting a query you agree to abide by this policy and accept that Registry Operator can take measures to limit the use of its WHOIS services in order to protect the privacy of its registrants or the integrity of the database.

We reserve the right to make changes to these Terms and Conditions at any time without prior notice to you. It is your responsibility to review these Terms and Conditions each time you access or use the WHOIS service and to familiarise yourself with any changes. If you do not agree to the changes implemented by Registry Operator, your sole and exclusive remedy is to terminate your use of the WHOIS service.

By executing a query, in any manner whatsoever, you agree to abide by these Terms and Conditions. NOTE: FAILURE TO LOCATE A RECORD IN THE WHOIS DATABASE IS NOT INDICATIVE OF THE AVAILABILITY OF A DOMAIN NAME.
Last update was 15 hours ago
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*HypeStat.com is not linking to, promoting or affiliated with 007.cricket in any way. Only publicly available statistics data are displayed.

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