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HTTP Request workflow'ları

249 sonuç — tümü kaynağa bağlı n8n referansı

CW
free

Edit Images with Text Prompts using Bytedance Seededit 3.0 via Replicate API

This workflow provides automated access to the Bytedance Seededit 3.0 AI model through the Replicate API. It saves you time by eliminating the need to manually interact with AI models and provides a seamless integration for image generation tasks within your n8n automation workflows. Overview This workflow automatically handles the complete image generation process using the Bytedance Seededit 3.0 model. It manages API authentication, parameter configuration, request processing, and result retrieval with built-in error handling and retry logic for reliable automation. Model Description: Text-guided image editing model that preserves original details while making targeted modifications like lighting changes, object removal, and style conversion Key Capabilities High-quality image generation from text prompts** Advanced AI-powered visual content creation** Customizable image parameters and styles** Artistic style control and customization** Tools Used n8n**: The automation platform that orchestrates the workflow Replicate API**: Access to the Bytedance/seededit-3.0 AI model Bytedance Seededit 3.0**: The core AI model for image generation Built-in Error Handling**: Automatic retry log

Yaron Been tarafından
CW
free

Generate AI Images from Text with Fire Flux Model on Replicate API

This workflow provides automated access to the Fire Flux AI model through the Replicate API. It saves you time by eliminating the need to manually interact with AI models and provides a seamless integration for image generation tasks within your n8n automation workflows. Overview This workflow automatically handles the complete image generation process using the Fire Flux model. It manages API authentication, parameter configuration, request processing, and result retrieval with built-in error handling and retry logic for reliable automation. Model Description: The image generation model tailored for local development and personal use Key Capabilities High-quality image generation from text prompts** Advanced AI-powered visual content creation** Customizable image parameters and styles** Tools Used n8n**: The automation platform that orchestrates the workflow Replicate API**: Access to the Fire/flux AI model Fire Flux**: The core AI model for image generation Built-in Error Handling**: Automatic retry logic and comprehensive error management How to Install Import the Workflow: Download the .json file and import it into your n8n instance Configure Replicate API: Add your Replicate A

Yaron Been tarafından
CW
free

Generate Custom AI Avatars with Babysea Babyavatar via Replicate API

This workflow provides automated access to the Babysea Babyavatar AI model through the Replicate API. It saves you time by eliminating the need to manually interact with AI models and provides a seamless integration for other generation tasks within your n8n automation workflows. Overview This workflow automatically handles the complete other generation process using the Babysea Babyavatar model. It manages API authentication, parameter configuration, request processing, and result retrieval with built-in error handling and retry logic for reliable automation. Model Description: BabyAvatar - Create Stunning AI Avatars in Seconds Key Capabilities Specialized AI model with unique capabilities** Advanced processing and generation features** Custom AI-powered automation tools** Tools Used n8n**: The automation platform that orchestrates the workflow Replicate API**: Access to the Babysea/babyavatar AI model Babysea Babyavatar**: The core AI model for other generation Built-in Error Handling**: Automatic retry logic and comprehensive error management How to Install Import the Workflow: Download the .json file and import it into your n8n instance Configure Replicate API: Add your Replica

Yaron Been tarafından
CW
free

Create Professional Animated Videos with Bytedance Omni-Human AI via Replicate

This workflow provides automated access to the Bytedance Omni Human AI model through the Replicate API. It saves you time by eliminating the need to manually interact with AI models and provides a seamless integration for video generation tasks within your n8n automation workflows. Overview This workflow automatically handles the complete video generation process using the Bytedance Omni Human model. It manages API authentication, parameter configuration, request processing, and result retrieval with built-in error handling and retry logic for reliable automation. Model Description: Turns your audio/video/images into professional-quality animated videos Key Capabilities AI-powered video generation and processing** High-quality video synthesis from inputs** Advanced video manipulation capabilities** Tools Used n8n**: The automation platform that orchestrates the workflow Replicate API**: Access to the Bytedance/omni-human AI model Bytedance Omni Human**: The core AI model for video generation Built-in Error Handling**: Automatic retry logic and comprehensive error management How to Install Import the Workflow: Download the .json file and import it into your n8n instance Configure Re

Yaron Been tarafından
CW
free

Bytedance Seedream 3: Text-to-Image Transformation Template

This workflow provides automated access to the Bytedance Seedream 3 AI model through the Replicate API. It saves you time by eliminating the need to manually interact with AI models and provides a seamless integration for image generation tasks within your n8n automation workflows. Overview This workflow automatically handles the complete image generation process using the Bytedance Seedream 3 model. It manages API authentication, parameter configuration, request processing, and result retrieval with built-in error handling and retry logic for reliable automation. Model Description: Advanced AI model by bytedance for automated processing tasks. Key Capabilities High-quality image generation from text prompts** Advanced AI-powered visual content creation** Customizable image parameters and styles** Tools Used n8n**: The automation platform that orchestrates the workflow Replicate API**: Access to the Bytedance/seedream-3 AI model Bytedance Seedream 3**: The core AI model for image generation Built-in Error Handling**: Automatic retry logic and comprehensive error management How to Install Import the Workflow: Download the .json file and import it into your n8n instance Configure Rep

Yaron Been tarafından
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Chat with Uncensored Dolphin Mixtral 8x22B using Novita AI

This n8n workflow enables you to chat with the uncensored Dolphin Mixtral 8x22B large language model through the Novita AI inference. It provides a streamlined process for sending user messages to the model and returning its responses, making it easy to integrate into chatbots, automation, or internal tools. How It Works User messages** are received from chat trigger The edit node prepares and formats the request for Novita AI's chat completion endpoint. The message is sent to Dolphin Mixtral 8x22B (uncensored) via the Novita API. The model's reply is extracted and returned as a clean string, ready for display or further automation. Set Up Steps Create a Novita AI account Sign up at Novita AI to access the API. Get your Novita API key Log into your Novita account and generate your API key. Configure the workflow in n8n Insert your Novita API key in the "Set fields" node, as well as additional endpoint parameters you might want to add to optimize your api (Optional) Customize or extend Add input triggers (chat, webhook, etc.), post-processing nodes, or error handling as needed. Useful links Novita chat completion docs Novita Privacy Policy Notes Dolphin Mixtral 8x22B** is uncensored

Aitor | 1Node tarafından
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Publish HTML Content with GitHub Gist and HTML Preview

📌 Who’s it for This subworkflow is designed for developers, AI engineers, or automation builders who generate dynamic HTML content in their workflows (e.g. reports, dashboards, emails) and want a simple way to host and share it via a clean URL, without spinning up infrastructure or uploading to a CMS. It’s especially useful when combined with AI agents that generate HTML content as part of a larger automated pipeline. ⚙️ What it does This subworkflow: Accepts raw HTML content as input. Creates a new GitHub Gist with that content. Returns the shareable Gist URL, which can then be sent via Slack, Telegram, email, etc. The result is a lightweight, fast, and free way to publish AI-generated HTML (such as reports, articles, or formatted data outputs) to the web. 🛠️ How to set it up Add this subworkflow to any parent workflow where HTML is generated. Pass in a string of valid HTML via the html input parameter. Configure the GitHub credentials in the HTTP node using an access token with gist scope. ✅ Requirements GitHub account and personal access token with gist permissions 🔧 How to customize Change the filename (report.html) if your use case needs a different format or extension. Add

Open Paws tarafından
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BIN Code Lookup with apilayer API

This workflow is designed to validate and fetch information about a card using the BIN code. It utilizes apilayer's BIN Check API and provides details like the card brand, type, issuing bank, and country. Prerequisites: An apilayer account API Key for the BIN Check API Steps in n8n: Step 1: Manual Trigger Node Type: Manual Trigger Purpose: Starts the workflow manually Step 2: Set BIN Code and API Key Node Type: Set Fields to set: bin_code: A sample BIN like JH4KA7560RC003647 apikey: Your apilayer API key Step 3: HTTP Request Node Type: HTTP Request Method: GET URL: https://api.apilayer.com/bincheck/{{ $json.bin_code }} Headers: Name: apiKey Value: {{ $json.apikey }} (Optional) Step 4: Handle the Output Add nodes to store, parse, or visualize the API response. Expected Output: The response from apilayer contains detailed information about the provided BIN: Card scheme (e.g., VISA, MasterCard) Type (credit, debit, prepaid) Issuing bank Country of issuance Example Use Case: Use this to build a fraud prevention microservice, pre-validate card data before sending to payment gateways, or enrich card-related logs.

Sarfaraz Muhammad Sajib tarafından
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Validate Email Addresses with APILayer API

📧 Email Validation Workflow Using APILayer API This n8n workflow enables users to validate email addresses in real time using the APILayer Email Verification API. It's particularly useful for preventing invalid email submissions during lead generation, user registration, or newsletter sign-ups, ultimately improving data quality and reducing bounce rates. ⚙️ Step-by-Step Setup Instructions Trigger the Workflow Manually: The workflow starts with the Manual Trigger node, allowing you to test it on demand from the n8n editor. Set Required Fields: The Set Email & Access Key node allows you to enter: email: The target email address to validate. access_key: Your personal API key from apilayer.net. Make the API Call: The HTTP Request node dynamically constructs the URL: https://apilayer.net/api/check?access_key={{ $json.access_key }}&email={{ $json.email }} It sends a GET request to the APILayer endpoint and returns a detailed response about the email's validity. (Optional): You can add additional nodes to filter, store, or react to the results depending on your needs. 🔧 How to Customize Replace the manual trigger with a webhook or schedule trigger to automate validations. Dynamically ma

Sarfaraz Muhammad Sajib tarafından
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Simple SMS Messaging System with Textbelt API Integration

This n8n workflow sends SMS messages through the Textbelt API by accepting phone numbers, messages, and API keys as inputs. It uses a manual trigger to start the process, sets the necessary data, and executes an HTTP POST request to deliver the SMS. Step-by-Step Explanation: Manual Trigger: Starts the workflow manually by clicking ‘Execute workflow’. Set Data Node: Defines the required input parameters (phone, message, and key) that will be sent to the SMS API. You can populate these fields with your target phone number, the text message, and your Textbelt API key. HTTP Request Node: Sends a POST request to https://textbelt.com/tex with the phone number, message, and API key in the request body to send the SMS. The response from the API confirms whether the message was successfully sent.

Sarfaraz Muhammad Sajib tarafından
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Get Any Image: Standard Fetch with BrightData Web Unblocker Failover

This workflow is your ultimate solution for reliable image retrieval from any web source, including those heavily protected. It operates with a smart, cost-effective strategy: it first attempts to fetch the image using a Classic Image Getter node (a standard, free HTTP request). In approximately 80% of cases, this method will be sufficient. However, for the remaining instances where you encounter IP blocking, CAPTCHAs, rate limiting, or other advanced anti-bot measures, the workflow seamlessly switches to a robust BrightData Web Unblocker service as a fallback. It leverages BrightData’s Image Unblocker to retrieve these blocked images. This template is indispensable for anyone needing consistent and complete access to web images, ensuring you get the data you need without unnecessary overhead. Why Use This Image Scrapper Workflow? Maximum Success Rate**: Retrieves images even from the most challenging or protected websites. Cost-Optimized Strategy**: Prioritizes free, standard HTTP requests, only incurring costs when advanced unblocking is truly necessary. Automated Resilience**: Intelligently handles failed direct attempts by automatically engaging the BrightData failover via the

phil tarafından
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Create Smart URLs with BioURL.link's Geo, Device & Language Targeting

Create sophisticated shortened URLs with advanced targeting and tracking capabilities using the BioURL.link API Overview This n8n workflow provides a powerful webhook-based URL shortening service that integrates with BioURL.link's comprehensive link management platform. Transform any long URL into a smart, trackable short link with advanced targeting features through a simple HTTP POST request. Key Features Smart URL Shortening**: Create custom short URLs with optional passwords and expiry dates Geo-targeting**: Redirect users to different URLs based on their geographic location Device Targeting**: Serve different content to iPhone, Android, or other device users Language Targeting**: Customize redirects based on user language preferences Deep Linking**: Automatically redirect mobile users to app store or native apps Custom Meta Tags**: Set custom titles, descriptions, and images for social media sharing Analytics & Tracking**: Integrate tracking pixels and campaign parameters Splash Pages**: Create branded landing pages before redirects How It Works Webhook Trigger: Send a POST request to the /shorten-link endpoint API Integration: Workflow processes the request and calls BioURL.l

Naser Emad tarafından
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Create a Branded AI Chatbot for Websites with Flowise Multi-Agent Chatflows

This workflow integrates Flowise Multi-Agent Chatflows into a custom-branded n8n chatbot, enabling real-time interaction between users and AI agents powered by large language models (LLMs). Key Advantages: ✅ Easy Integration with Flowise: Uses a low-code HTTP node to send user questions to Flowise's API (/api/v1/prediction/FLOWISE_ID) and receive intelligent responses. Supports multi-agent chatflows, allowing for complex, dynamic interactions. 🎨 Customizable Chatbot UI: Includes pre-built JavaScript for embedding the n8n chatbot into any website. Provides customization options such as welcome messages, branding, placeholder text, chat modes (e.g., popup or embedded), and language support. 🔐 Secure & Configurable: Authorization via Bearer token headers for Flowise API access. Clearly marked notes in the workflow for setting environment variables like FLOWISE_URL and FLOW_ID. How It Works Chat Trigger: The workflow starts with the When chat message received node, which acts as a webhook to receive incoming chat messages from users. HTTP Request to Flowise: The received message is forwarded to the Flowise node, which sends a POST request to a Flowise API endpoint (https://FLOWISEURL

Davide Boizza tarafından
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Convert Time Zones with TimeZoneDB API Integration

This n8n template provides a powerful utility for converting a specific time from one time zone to another by leveraging the TimeZoneDB API. This is an essential tool for anyone coordinating global teams, scheduling international events, or simply needing to understand time differences across the world. 🔧 How it works Receive Time Conversion Request: This node acts as the entry point for the workflow, listening for incoming POST requests. It's configured to expect a JSON body containing the following parameters: fromZone: The IANA timezone name for the source time zone (e.g., America/New_York, Asia/Manila, Europe/London). toZone: The IANA timezone name for the target time zone. time: The Unix timestamp (in seconds) representing the time in the fromZone that you wish to convert. Important: Your TimeZoneDB API key is handled securely by n8n's credential system and should not be included in the webhook body. Convert Timezone (TimeZoneDB): This node makes an HTTP GET request to the TimeZoneDB API (api.timezonedb.com). It dynamically constructs the API request URL using the fromZone, toZone, and time values extracted from your webhook request. Your API key is securely retrieved from n8

ist00dent tarafından
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Currency Converter via Webhook using ExchangeRate.host

This n8n template allows you to perform real-time currency conversions by simply sending a webhook request. By integrating with the ExchangeRate.host API, you can get up-to-date exchange rates for over 170 world currencies, making it an incredibly useful tool for financial tracking, e-commerce, international business, and personal budgeting. 🔧 How it works Receive Conversion Request Webhook: This node acts as the entry point for the workflow, listening for incoming POST requests. It's configured to expect a JSON body containing: from: The 3-letter ISO 4217 currency code for the source currency (e.g., USD, PHP). to: The 3-letter ISO 4217 currency code for the target currency (e.g., EUR, JPY). amount: The numeric value you want to convert. Important: The ExchangeRate.host API access_key is handled securely by n8n's credential system and should not be included in the webhook body or headers. Convert Currency: This node makes an HTTP GET request to the ExchangeRate.host API (api.exchangerate.host). It dynamically constructs the URL using the from, to, and amount from the webhook body. Your API access key is securely retrieved from n8n's pre-configured credentials (HTTP Query Auth type

ist00dent tarafından
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Public Holiday Lookup with Nager.Date API via Webhook

This n8n template empowers you to instantly fetch a list of public holidays for any given year and country using the Nager.Date API. This is incredibly useful for scheduling, planning, or integrating holiday data into various business and personal automation workflows. 🔧 How it works Receive Holiday Request Webhook: This node acts as the entry point, listening for incoming POST requests. It expects a JSON body containing the year (e.g., 2025) and countryCode (e.g., US for United States, PH for Philippines, DE for Germany) for which you want to retrieve public holidays. Get Public Holidays: This node makes an HTTP GET request to the Nager.Date API (date.nager.at). It dynamically uses the year and countryCode from your webhook request to query the API. The API responds with a JSON array, where each object represents a public holiday with details like its date, name, and type. Respond with Holiday Data: This node sends the full list of public holidays received from Nager.Date back to the service that initiated the webhook. 👤 Who is it for? This workflow is ideal for: Businesses with International Operations: Automatically check holidays for different country branches to adjust produ

ist00dent tarafından
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Lookup IP Geolocation Details with IP-API.com via Webhook

This n8n template enables you to instantly retrieve detailed geolocation information for any given IP address by simply sending a webhook request. Leverage the power of IP-API.com to gain insights into user locations, personalize experiences, or enhance security protocols within your automated workflows. 🔧 How it works Receive IP Webhook: This node acts as the entry point, listening for incoming POST requests. It expects a JSON body containing an ip property with the IP address you wish to look up. Get IP Geolocation: This node makes an HTTP GET request to the IP-API.com service, passing the IP address from your webhook. The API responds with a comprehensive JSON object detailing the IP's location (country, city, region), ISP, organization, and more. Respond with Geolocation Data: This node sends the full geolocation data received from IP-API.com back to the service that initiated the webhook. 👤 Who is it for? This workflow is ideal for: Marketing & Sales Teams: Personalize website content, offers, or ads based on a visitor's geographic location. Tailor email campaigns by region. Customer Support: Quickly identify a customer's location to provide more localized or relevant assist

ist00dent tarafından
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free

Fetch Random Dog Images from Dog CEO API via Webhook

This n8n template allows you to instantly fetch a random dog image from the Dog CEO API by simply sending a webhook request. It's a fun and simple way to integrate random dog photos into your projects, whether for websites, applications, or playful automations. 🔧 How it works Trigger Webhook: This node acts as the entry point for the workflow. It listens for any incoming POST request. No specific data is required in the webhook body, as the workflow fetches a random image. Fetch Random Dog Image: This node makes an HTTP GET request to https://dog.ceo/api/breeds/image/random. The API responds with a JSON object containing the URL of a random dog image. Respond with Image URL: This node sends the URL of the random dog image back to the service that initiated the webhook. 👤 Who is it for? This workflow is ideal for: Developers: Quickly integrate random dog images into web applications, bots, or prototypes. Content Creators: Get fresh, random dog photos for social media, blogs, or presentations. Learning n8n: A straightforward example of using a webhook to trigger an API call and return data. Anyone who loves dogs! 📑 Data Structure When you trigger the webhook, you can send an empty

ist00dent tarafından
CW
free

Deploy Docker NextCloud, API Backend for WHMCS/WISECP

Overview The Docker NextCloud WHMCS module leverages a sophisticated workflow for n8n, designed to automate the comprehensive deployment, configuration, and management processes for NextCloud and NextCloud Office services. Through its intuitive API interface, the workflow securely receives commands and orchestrates predefined tasks via SSH on your Docker-hosted server, ensuring streamlined operations and efficient management. Prerequisites You must deploy your own dedicated n8n server to manage workflows effectively. Alternatively, you may opt for the official n8n cloud-based solutions accessible via: n8n Official Site Your Docker server must be accessible via SSH with necessary permissions. Installation Steps Install the Required Workflow on n8n You can select from two convenient installation options: Option 1: Use the Latest Version from the n8n Marketplace The latest workflow templates are continuously updated and available on the n8n marketplace. Explore all templates provided by PUQcloud directly here: PUQcloud on n8n Option 2: Manual Installation Each module version includes a bundled workflow template file. Import this workflow file directly into your n8n server manually. n8

PUQcloud tarafından
CW
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Remote IOT Sensor monitoring via MQTT and InfluxDB

. Read and store IOT sensor data with the MQTT Trigger and InfluxDB [email protected] This workflow is for users wanting a practical example of how to obtain data from remote IOT systems using the MQTT protocol in an n8n environment. The template provides typical n8n node implementation and configuration settings necessary to read and store IOT data. The workflow reads the temperature and humidity data from a remote IOT system in this case a DHT22 sensor connected to a ESP32 micro controller. The data is parsed into the correct JSON format and then ingested in an InfluxDB data bucket. From there the stored temperature and humidity values can be displayed in real time. The workflow can be easily modified to read any MQTT driven device data. Remote IOT Sensor Setup The ESP32 controller with the DHT22 sensor are running on a Wokwi simulator. The simulator uses micro python to publish a MQTT "wokwi-weather" topic with the temperature and humidity payloads to an online Mosquitto MQTT broker. The n8n MQTT trigger node subscribes to the topic on the broker and reads the payload values when any changes are published. The code node then prepares the payload for JSON format. The HTTP

Tony Duffy tarafından
CW
free

Extract Named Entities from Web Pages with Google Natural Language API

Who is this for? Content strategists analyzing web page semantic content SEO professionals conducting entity-based analysis Data analysts extracting structured data from web pages Marketers researching competitor content strategies Researchers organizing and categorizing web content Anyone needing to automatically extract entities from web pages What problem is this workflow solving? Manually identifying and categorizing entities (people, organizations, locations, etc.) on web pages is time-consuming and error-prone. This workflow solves this challenge by: Automating the extraction of named entities from any web page Leveraging Google's powerful Natural Language API for accurate entity recognition Processing web pages through a simple webhook interface Providing structured entity data that can be used for analysis or further processing Eliminating hours of manual content analysis and categorization What this workflow does This workflow creates an automated pipeline between a webhook and Google's Natural Language API to: Receive a URL through a webhook endpoint Fetch the HTML content from the specified URL Clean and prepare the HTML for processing Submit the HTML to Google's Natural

Hueston tarafından
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Extract Specific Pages from PDFs with CustomJS API

This n8n template shows how to extract selected pages from a generated PDF with the PDF Toolkit by www.customjs.space. @custom-js/n8n-nodes-pdf-toolkit Notice Community nodes can only be installed on self-hosted instances of n8n. What this workflow does Downloads** each PDF using an HTTP Request. Extract** pages from the PDF file as needed. Requirements Self-hosted** n8n instance CustomJS API key** for extracting PDF files. PDF files to be merged** to be converted into a PDF Workflow Steps: Manual Trigger: Runs with user interaction. Download PDF File: Pass urls for PDF files to merge. Extract Pages from PDF: Extract selected pages from a generated PDF Usage Get API key from customJS Sign up to customJS platform. Navigate to your profile page Press "Show" button to get API key Set Credentials for CustomJS API on n8n Copy and paste your API key generated from CustomJS here. Design workflow A Manual Trigger for starting workflow. HTTP Request Nodes for downloading PDF files. Extract Pages from PDF. You can replace logic for triggering and returning results. For example, you can trigger this workflow by calling a webhook and get a result as a response from webhook. Simply replace Manu

CustomJS tarafından
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Asynchronous Bulk Web Scraping with Bright Data & Webhook Notifications

Who this is for The Async Structured Bulk Data Extract with Bright Data Web Scraper workflow is designed for data engineers, market researchers, competitive intelligence teams, and automation developers who need to programmatically collect and structure high-volume data from the web using Bright Data's dataset and snapshot capabilities. This workflow is built for: Data Engineers - Building large-scale ETL pipelines from web sources Market Researchers - Collecting bulk data for analysis across competitors or products Growth Hackers & Analysts - Mining structured datasets for insights Automation Developers - Needing reliable snapshot-triggered scrapers Product Managers - Overseeing data-backed decision-making using live web information What problem is this workflow solving? Web scraping at scale often requires asynchronous operations, including waiting for data preparation and snapshots to complete. Manual handling of this process can lead to timeouts, errors, or inconsistencies in results. This workflow automates the entire process of submitting a scraping request, waiting for the snapshot, retrieving the data, and notifying downstream systems all in a structured, repeatable fashion

Ranjan Dailata tarafından
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OpenAI ImageGen1 via HTTP Request (Edit Image)

Edit an existing image with OpenAI ImageGen1 via API Request Transform your creative pipeline by letting n8n call OpenAI ImageGen1’s edit image endpoint, automatically replacing or augmenting parts of any image you supply and returning a brand-new version in seconds. Designers, marketers, and product teams can eliminate repetitive manual edits and test more variations, faster. Who is this for? Content creators who need quick, on-brand image tweaks Marketers running A/B visual tests at scale Developers exploring the new ImageGen1 API inside low-code automations Use case / problem solved Opening design software to mask, fill, or swap objects is slow and error-prone. This workflow feeds an input image plus a prompt to OpenAI ImageGen1, receives the edited output, and passes it on to any service you like—perfect for bulk-editing product shots, social visuals, or UI mocks. What this workflow does Read or receive the source image (Webhook → Binary Data). Call OpenAI ImageGen1 with an HTTP Request node, sending the image and edit prompt. Parse the JSON response to capture the returned image URL. Download & hand off the edited file (e.g., upload to S3, post to Slack, or store in Drive). Se

TechDennis tarafından