X Twitter Scraper
X API / Twitter Scraper Skill für KI-Coding-Agenten
Ein KI-Agenten-Skill, der Coding-Agenten tiefgreifendes Wissen über die Xquik X (Twitter) Echtzeit-Datenplattform vermittelt. 121 REST-API-Endpunkte, 2 MCP-Tools, HMAC-Webhooks, 23 Tools zur Massenextraktion und Schreibaktionen.
Die günstigste X-Daten-API auf dem Markt — Lesezugriffe ab 0,00015 $ pro Aufruf (33x günstiger als die offizielle X-API).
Funktioniert mit über 40 KI-Coding-Agenten, darunter Claude Code, OpenAI Codex, Cursor, GitHub Copilot, Gemini CLI, Windsurf, VS Code, Cline, Roo Code, Goose, Amp, Augment, Continue, OpenHands, Trae, OpenCode und mehr.
Preisgestaltung
Xquik ist bei weitem günstiger als jede Alternative für den Zugriff auf X/Twitter-Daten.
vs. Offizielle X-API
Xquik | X API Basic | X API Pro | |
Monatliche Kosten | 20 $ | 100 $ | 5.000 $ |
Kosten pro gelesenem Tweet | 0,00015 $ | ~0,01 $ | ~0,005 $ |
Kosten pro Benutzersuche | 0,00015 $ | ~0,01 $ | ~0,005 $ |
Schreibaktionen | 0,0015 $ | Begrenzt | Begrenzt |
Massenextraktion | Ab 0,00015 $/Ergebnis | Nicht verfügbar | Nicht verfügbar |
Überwachung + Webhooks | Kostenlos | Nicht verfügbar | Nicht verfügbar |
Gewinnspielverlosungen | 0,00015 $/Eintrag | Nicht verfügbar | Nicht verfügbar |
MCP-Server | Inbegriffen | Nicht verfügbar | Nicht verfügbar |
Kosten pro Vorgang (1 Credit = 0,00015 $)
Vorgang | Credits | Kosten |
Lesen (Tweet, Suche, Timeline, Lesezeichen, etc.) | 1 | 0,00015 $ |
Lesen (Benutzerprofil, verifizierte Follower, bekannte Follower) | 1 | 0,00015 $ |
Lesen (Favorisierer) | 1 | 0,00015 $ |
Lesen (Trends) | 3 | 0,00045 $ |
Follow-Check, Artikel | 7 | 0,00105 $ |
Schreiben (Tweet, Like, Retweet, Folgen, DM, etc.) | 10 | 0,0015 $ |
Extraktion (Tweets, Antworten, Zitate, Erwähnungen, Posts, Likes, Medien, Suche, Favorisierer, Retweeter, Community-Mitglieder, Personensuche, Listenmitglieder, Listen-Follower) | 1/Ergebnis | 0,00015 $/Ergebnis |
Extraktion (Follower, Following, verifizierte Follower) | 1/Ergebnis | 0,00015 $/Ergebnis |
Extraktion (Artikel) | 5/Ergebnis | 0,00075 $/Ergebnis |
Verlosung | 1/Eintrag | 0,00015 $/Eintrag |
Monitore, Webhooks, Radar, Verfassen, Entwürfe, Integrationen | 0 | Kostenlos |
Pay-Per-Use (Kein Abonnement)
Zwei Optionen für die nutzungsbasierte Bezahlung ohne monatliches Abonnement:
Credits: Lade Credits über
POST /credits/topupauf (mindestens 10 $). 1 Credit = 0,00015 $. Funktioniert mit allen 121 Endpunkten.MPP: 16 X-API-Endpunkte akzeptieren anonyme On-Chain-Zahlungen über das Machine Payments Protocol. Kein Konto erforderlich. SDK:
npm i mppx viem.
Related MCP server: MCP Twitter
Installation
Installation über die Skills-CLI (erkennt installierte Agenten automatisch):
npx skills add Xquik-dev/x-twitter-scraperManuelle Installation
git clone https://github.com/Xquik-dev/x-twitter-scraper.git .claude/skills/x-twitter-scrapergit clone https://github.com/Xquik-dev/x-twitter-scraper.git .agents/skills/x-twitter-scrapergit clone https://github.com/Xquik-dev/x-twitter-scraper.git .windsurf/skills/x-twitter-scrapergit clone https://github.com/Xquik-dev/x-twitter-scraper.git .agents/skills/x-twitter-scrapergit clone https://github.com/Xquik-dev/x-twitter-scraper.git .roo/skills/x-twitter-scrapergit clone https://github.com/Xquik-dev/x-twitter-scraper.git .continue/skills/x-twitter-scrapergit clone https://github.com/Xquik-dev/x-twitter-scraper.git .goose/skills/x-twitter-scrapergit clone https://github.com/Xquik-dev/x-twitter-scraper.git .agents/skills/x-twitter-scraperWas dieser Skill leistet
Nach der Installation bietet dieser Skill deinem KI-Coding-Assistenten tiefgreifendes Wissen über die Xquik-Plattform:
Tweet-Suche & -Suche: Suche nach Tweets per Schlüsselwort, Hashtag oder erweiterten Operatoren. Erhalte vollständige Engagement-Metriken für jeden Tweet.
Benutzerprofil-Suche: Rufe Follower-/Following-Anzahl, Biografie, Standort und Profildaten für jedes X-Konto ab.
Benutzeraktivitäts-Feeds: Rufe die letzten Tweets, gelikten Tweets und Medien-Tweets eines Benutzers ab.
Tweet-Engagement-Daten: Erfahre, wer einen Tweet gelikt hat (Favorisierer), und finde gemeinsame Follower zwischen Konten.
Follower- & Following-Extraktion: Extrahiere vollständige Follower-Listen, verifizierte Follower und Following-Listen.
Extraktion von Antworten, Retweets & Zitaten: Extrahiere in großen Mengen alle Antworten, Retweets und zitierten Tweets.
Medien-Download: Lade Bilder, Videos und GIFs mit permanenten Hosting-URLs herunter.
Thread- & Artikel-Extraktion: Extrahiere vollständige Tweet-Threads und verlinkte Artikelinhalte.
Community- & Space-Daten: Extrahiere Community-Mitglieder, Moderatoren, Posts und Space-Teilnehmer.
Lesezeichen & Benachrichtigungen: Greife auf Lesezeichen, Lesezeichen-Ordner, Benachrichtigungen und die Home-Timeline zu.
DM-Verlauf: Rufe den Konversationsverlauf mit jedem Benutzer ab.
Gegenseitiger Follow-Check: Überprüfe, ob sich zwei Konten gegenseitig folgen.
X-Konto-Überwachung: Verfolge Konten auf neue Tweets, Antworten, Zitate, Retweets und Follower-Änderungen.
Webhook-Zustellung: Erhalte HMAC-signierte Ereignisbenachrichtigungen an deinem HTTPS-Endpunkt.
Trending Topics: Erhalte trendende Hashtags und Themen nach Region.
Radar: Trendende Nachrichten aus 7 Quellen (Google Trends, Hacker News, Polymarket, TrustMRR, Wikipedia, GitHub, Reddit). Kostenlos.
Gewinnspielverlosungen: Führe transparente Verlosungen aus Tweet-Antworten mit konfigurierbaren Filtern durch.
Schreibaktionen: Poste Tweets, like, retweete, folge/entfolge, sende DMs, aktualisiere Profile, lade Medien hoch, verwalte Communities.
Telegram-Integrationen: Erhalte Echtzeit-Überwachungsbenachrichtigungen in Telegram.
Flow-Automatisierungen: Trigger-gesteuerte Workflows mit Überwachungsereignissen, Zeitplänen, Suche und eingehenden Webhooks.
Tweet-Erstellung: Algorithmus-optimierter Tweet-Composer mit Scoring (kostenlos).
Credits & Abrechnung: Überprüfe das Guthaben, lade Credits auf, verwalte Abonnements.
Support-Tickets: Erstelle und verwalte Support-Tickets über die API.
MCP-Server: 2 Tools, die 121 Endpunkte für die KI-Agenten-Integration abdecken.
Pay-Per-Use (MPP): Anonymer Zugriff auf 16 Endpunkte über On-Chain-Zahlungen, kein Konto erforderlich.
Funktionen
Bereich | Details |
REST-API | 121 Endpunkte in 12 Kategorien mit Wiederholungslogik und Paginierung |
MCP-Server | 2 Tools (explore + xquik). StreamableHTTP, Konfigurationen für 10 Plattformen |
Datenextraktion | 23 Tools zur Massenextraktion (Antworten, Retweets, Zitate, Favorisierer, Threads, Artikel, Benutzer-Likes, Benutzermedien, Communities, Listen, Spaces, Personensuche, Tweet-Suche, Erwähnungen, Posts) |
X-Lookups | Tweet, Benutzer, Artikel, Suche, Benutzer-Tweets, Benutzer-Likes, Benutzer-Medien, Favorisierer, gemeinsame Follower, Lesezeichen, Benachrichtigungen, Timeline, DM-Verlauf |
Schreibaktionen | Tweets posten/löschen, liken/entliken, retweeten, folgen/entfolgen, DM, Profilaktualisierung, Avatar/Banner, Medien-Upload, Community-Aktionen |
Gewinnspielverlosungen | Zufällige Gewinnerauswahl aus Tweet-Antworten mit 11 Filteroptionen |
Kontoüberwachung | Echtzeit-Verfolgung von Tweets, Antworten, Zitaten, Retweets, Follower-Änderungen |
Webhooks | HMAC-SHA256-Signaturprüfung in Node.js, Python, Go |
Telegram-Integrationen | Echtzeit-Überwachungsbenachrichtigungen via Telegram-Bot |
Medien-Download | Download von Bildern, Videos, GIFs mit permanenten Hosting-URLs |
Engagement-Analysen | Likes, Retweets, Antworten, Zitate, Aufrufe, Lesezeichen pro Tweet |
Trending Topics | Regionale Trends + 7 kostenlose Nachrichtenquellen via Radar |
Tweet-Erstellung | Algorithmus-optimierter Tweet-Composer mit Scoring-Checkliste (kostenlos) |
Credits & Abrechnung | Guthaben prüfen, aufladen, Abonnement verwalten via API |
Pay-Per-Use (MPP) | 16 Endpunkte mit anonymen On-Chain-Zahlungen, kein Konto erforderlich |
TypeScript-Typen | Vollständige Typdefinitionen für alle API-Objekte |
Unterstützte Agenten
Claude Code, OpenAI Codex, Cursor, GitHub Copilot, Gemini CLI, Windsurf, VS Code Copilot, Cline, Roo Code, Goose, Amp, Augment, Continue, OpenHands, Trae, OpenCode und jeder Agent, der das skills.sh-Protokoll unterstützt.
API-Abdeckung
Ressource | Endpunkte |
X-Lookups | Tweet, Artikel, Suche, Benutzerprofil, Benutzer-Tweets, Benutzer-Likes, Benutzer-Medien, Favorisierer, bekannte Follower, Follow-Check, Medien-Download, Lesezeichen, Lesezeichen-Ordner, Benachrichtigungen, Timeline, DM-Verlauf |
Extraktionen | Erstellen (23 Typen), Schätzen, Auflisten, Ergebnisse abrufen, Exportieren |
Monitore | Erstellen, Auflisten, Abrufen, Aktualisieren, Löschen |
Ereignisse | Auflisten (gefiltert, paginiert), Einzelabruf |
Webhooks | Erstellen, Auflisten, Aktualisieren, Löschen, Testen, Zustellungen |
Trends | Regionale Trending Topics |
Radar | Trending Topics & Nachrichten aus 7 Quellen (kostenlos) |
Verlosungen | Erstellen mit Filtern, Auflisten, Abrufen mit Gewinnern, Exportieren |
Stile | Analysieren, Speichern, Auflisten, Abrufen, Löschen, Vergleichen, Leistung |
Verfassen | Tweet-Erstellung (verfassen, verfeinern, bewerten) |
Entwürfe | Erstellen, Auflisten, Abrufen, Löschen |
Konto | Konto abrufen, Gebietsschema aktualisieren, X-Identität festlegen, abonnieren |
Credits | Guthaben abrufen, aufladen |
API-Schlüssel | Erstellen, Auflisten, Widerrufen |
X-Konten | Verbinden, Auflisten, Abrufen, Trennen, neu authentifizieren |
X-Schreiben | Tweeten, löschen, liken, entliken, retweeten, folgen, entfolgen, DM, Profil, Avatar, Banner, Medien-Upload, Communities |
Integrationen | Erstellen (Telegram), Auflisten, Abrufen, Aktualisieren, Löschen, Testen, Zustellungen |
Automatisierungen | Erstellen, Auflisten, Abrufen, Aktualisieren, Löschen, Schritte hinzufügen/aktualisieren/löschen, Positionen, Testen, eingehender Webhook |
Support | Ticket erstellen, auflisten, abrufen, aktualisieren, antworten |
Skill-Struktur
x-twitter-scraper/
├── skills/
│ └── x-twitter-scraper/
│ ├── SKILL.md # Main skill (auth, pricing, endpoints, patterns)
│ ├── metadata.json # Version and references
│ └── references/
│ ├── api-endpoints.md # All REST API endpoints
│ ├── mcp-tools.md # MCP tool selection rules and workflow patterns
│ ├── mcp-setup.md # MCP configs for 10 platforms (v2 + v1)
│ ├── webhooks.md # Webhook setup & verification
│ ├── extractions.md # 23 extraction tool types
│ ├── types.md # TypeScript type definitions
│ └── python-examples.md # Python code examples
├── server.json # MCP Registry metadata
├── glama.json # Glama.ai directory metadata
├── logo.png # Marketplace logo
├── LICENSE # MIT
└── README.md # This fileLinks
Lizenz
MIT
Available Tools
2 toolsexploreARead-onlyIdempotentInspect
The live Xquik 'explore' tool searches the 120-route API catalog. This package stub returns setup guidance only.
When to use
Call 'explore' before 'xquik' to find an endpoint, its parameters, and its response shape.
Call it when the user asks what the Twitter API supports.
Check whether an endpoint uses included usage or requires account access.
When not to use
Use 'xquik' instead when fetching live X data.
Skip discovery when you know the endpoint and parameters.
Behavior
The live server searches the catalog without sending an API request.
The package stub makes no network call and returns setup instructions.
The live catalog has 120 routes. Of these, 119 support JSON or text.
Each EndpointInfo contains method, path, summary, category, free, parameters, and responseShape.
Input format
Provide a bounded request function. Filter, search, or return the spec.endpoints EndpointInfo array.
Examples
Find all included-usage endpoints: async () => spec.endpoints.filter(e => e.free)
Filter by category: async () => spec.endpoints.filter(e => e.category === 'composition')
Search summaries: async () => spec.endpoints.filter(e => e.summary.toLowerCase().includes('tweet'))
Get one endpoint: async () => spec.endpoints.find(e => e.path === '/api/v1/x/tweets/search')
| Name | Required | Description | Default |
|---|---|---|---|
| code | Yes | Bounded function that filters or searches the spec.endpoints EndpointInfo array. Return one EndpointInfo object or an array. Example: async () => spec.endpoints.filter(e => e.category === 'twitter') |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
The annotations already declare readOnly and idempotent, and the description confirms no network call occurs. It adds context about the stub vs. live server behavior, which is useful, but doesn't mention error handling or rate limits. Still, it's a read-only discovery tool, so the transparency is sufficient.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is somewhat repetitive, with the same example snippets appearing in both the description and the schema, and the bullet-point format repeats the same information in slightly different wording. It could be tightened without losing clarity, but it's not excessively long.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
Given the tool's simplicity (one parameter, no output schema), the description covers the essential aspects: purpose, usage, and parameter behavior. The return type is mentioned in the schema description, and the description adds the distinction between stub and live server. It feels complete for the intended scope.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The schema already describes the 'code' parameter and gives an example, achieving 100% coverage. The description adds multiple concrete examples (filter by category, search summary, find by path) that go beyond the schema's single example, providing practical guidance on how to construct the function. This elevates it above the baseline.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description clearly states the tool searches the API catalog for endpoint discovery, with a specific verb and resource. It also distinguishes itself from the sibling tool 'xquik' by noting that 'explore' is for discovery while 'xquik' fetches live data.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
Explicitly states when to use (before 'xquik', when user asks about API capabilities) and when not to use (for live data, if endpoint parameters are already known). This gives clear routing guidance.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
xquikADestructiveInspect
The live 'xquik' tool sends approved requests across 120 catalog routes. This package stub returns setup guidance only.
When to use
Call it after 'explore' identifies the endpoint and parameters.
Use it for Twitter search, user lookup, draws, extractions, composition, private reads, monitors, webhooks, and approved writes.
Get approval before private reads, persistent resources, metered operations, and writes.
When not to use
Use 'explore' first when you do not know the endpoint.
Omit API keys and authorization headers. The server adds authentication.
Behavior
The live server processes
xquik.request(path, options?)inside a bounded sandbox.The package stub makes no API request and returns setup instructions.
The live tool cannot access local files or arbitrary network hosts.
119 catalog routes support JSON or text. Use REST for binary downloads.
Write operations require prior approval and can return durable actions.
Pagination responses include
has_moreandnext_cursor. Passcursorfor the next page.Show the exact payload, target, and usage estimate before changing X or Xquik resources.
Error handling
For 402, explain the account state and send the user to the dashboard.
For 429, wait before retrying.
For 404, explain which user, tweet, or monitor was not found.
For durable writes, follow
safe_to_retryandnext_actionbefore retrying.
Input format
Provide a bounded function that calls xquik.request(path, { method?, body?, query? }). The server adds authentication.
Examples
Search tweets: async () => xquik.request('/api/v1/x/tweets/search', { query: { q: 'twitter scraper api', limit: '50' } })
Get user: async () => xquik.request('/api/v1/x/users/elonmusk')
Post after approval: async () => xquik.request('/api/v1/x/tweets', { method: 'POST', body: { account: '<confirmed_account>', text: '<confirmed_text>' } })
| Name | Required | Description | Default |
|---|---|---|---|
| code | Yes | Bounded function that calls xquik.request(path, options?) for Twitter API operations. The server adds authentication. Example: async () => xquik.request('/api/v1/x/tweets/search', { query: { q: 'twitter api', limit: '20' } }) |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Beyond the annotations (destructiveHint=true, openWorldHint=true), the description adds rich behavioral context that the annotations cannot convey: the bounded sandbox, no local file or arbitrary host access, approval-required durable writes, 402/429/404 error semantics, pagination via has_more/next_cursor, and the server-side authentication model. No contradiction with annotations — the write/approval framing aligns with destructiveHint=true and the sandbox stays consistent with openWorldHint=true.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is long but excellently structured with clear headers, scannable bullets, and a front-loaded purpose statement. Every section (when to use, behavior, error handling, format, examples) earns its place given the tool's complexity — a proxy over 120 routes. It is slightly more verbose than strictly necessary but the organization compensates.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
For a complex proxy tool with no output schema, the description covers everything an agent needs: when to call, approval requirements, behavioral constraints, error handling per status code, pagination semantics, input format, and realistic examples. The only minor gap — the absence of an output schema — is offset by explanation of return behaviors like has_more/next_cursor and durable actions.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
Schema coverage is 100%, so the schema alone documents the single 'code' parameter with an example. The description adds genuine value beyond that with the 'Input format' section (bounded function signature for xquik.request with method/body/query) and three concrete examples covering search, user lookup, and POST-after-approval. This exceeds the baseline 3 for high-coverage cases.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description opens with a specific, differentiated statement: "sends approved requests across 120 catalog routes" and immediately distinguishes the package stub ("returns setup guidance only") from the live tool. It names the sibling 'explore' as what it is not, so an agent can tell them apart without opening schemas.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description contains explicit 'When to use' and 'When not to use' sections. It states to call it after 'explore' identifies the endpoint, when not to (if endpoint unknown), and covers approval gates for private reads, metered operations, and writes. It also names the alternative tool and directs the agent away from it appropriately.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
TDQS
The two tools have clearly distinct purposes: 'explore' is for discovering API endpoints and parameters, while 'xquik' is for executing requests. There is a slight overlap in that both can be used to understand the API, but the descriptions make the boundary clear.
The tool names 'explore' and 'xquik' do not follow a consistent verb_noun pattern. 'explore' is a verb, but 'xquik' is a brand name, not a descriptive verb. However, the names are short and memorable, and the descriptions clarify their roles.
With only 2 tools, the server is minimal, but the descriptions indicate a broad underlying API (120 routes). The two tools act as a discovery and execution pair, which is a reasonable minimal surface, though it feels thin for the apparent scope.
The server covers the core workflow of discovering and executing API calls, but it lacks explicit tools for managing authentication, handling pagination, or managing approvals. However, these are handled within the 'xquik' tool's parameters and responses, so the surface is functional but not comprehensive.
Maintenance
Related MCP Connectors
Twitter/X read-only MCP server — 12 tools: search, users, tweets, followers, timelines, trends.
X / Twitter public post, comment, reply, user, and search tools.
Hosted MCP for X/Twitter and Reddit. 12 read-only tools, no API keys, free during beta.
X (formerly Twitter): X (formerly Twitter) public and private data API for search, posts (Tweets).
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