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First General AI Agency. Designed for long-horizon tasks.Open
Bonnie🙏 30 karmaMar 5, 2026@SureThing.io - "OpenClaw" for BeginnersI've put about 30-40 hours into SureThing, and it's seriously been a game-changer, basically acting like a virtual COO for my business! -
Reducing manual efforts in first-pass during code-review process helps speed up the "final check" before merging PRs -
Open
1.🎨 More Consistent PPT Generation We’ve improved the stability and efficiency of PPT generation, editing, and template migration. In typical use cases, workflows are up to 50% more efficient, with costs reduced by 30%. 2.💬 Import Local Claude & Codex Chats Import conversations from your local Claude and Codex environments into remio and keep them organized in your personal knowledge base. 3.💻 Choose a Desktop When Connecting from Mobile Select the specific desktop device you want to connect to when accessing remio from your mobile device. 4.📱 New iPad Mobile Layout remio now supports a dedicated mobile layout for iPad, bringing a more complete and natural experience to iPad users. 5.⚡️ Performance and Experience Improvements This update also brings a range of performance and usability improvements, including macOS 27 support, faster voice input, and enhancements to overall stability and responsiveness for a smoother remio experience. -

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Hey! I'm Kwan, the solo founder behind Oddsmyth. I built this because I play in 2 Yahoo H2H fantasy baseball leagues and was spending 30+ minutes every morning researching lineups, scanning the waiver wire, and evaluating trades. The tools I tried (FantasyPros, Yahoo's built-in recs) all had the same problem: they don't know my league. They give generic advice based on generic rankings. Oddsmyth connects to your Yahoo Fantasy league and actually knows your roster, your opponents, your scoring settings, and who's available on your waiver wire. You can ask it anything in plain English ("who should I start today?", "is this trade worth it?", "who should I grab off waivers?") and it gives you a specific answer with reasoning based on your situation. It's not meant to replace doing your own research. It's a second opinion you can bounce decisions off of when you're torn on a close call or managing multiple leagues and don't have time to dig into every decision. The AI is powered by Claude and uses live data from the MLB Stats API, FanGraphs Steamer projections, and your Yahoo league data. You get 5 free credits to try it. Quick questions (game times, scores, injury checks) are always free. I'd love feedback from anyone who plays Yahoo fantasy baseball. What's working, what's not, what would make it more useful. I'm building this in public and actively improving it based on what real users tell me. -

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AdControlCenter v1.3.0 Campaign creation got faster, and the ads finally listen to you. This release is about the gap between what you tell AdControlCenter and what it puts on the page. Three things you asked for were being quietly ignored — the language you picked, the thing you said you wanted to promote, and the countries you wanted to reach. All three now land. Your ads speak the language you chose. If your site is in Arabic but you want English ads, you get English ads. Previously the generator took its cue from the source site and overrode you. Non-Latin scripts (Hebrew, Arabic, Japanese, Chinese) render properly on the image itself. Your campaign’s actual goal reaches the creative. When you say “invite Etsy sellers to join our swap community,” the ads are now about the community — not a generic pitch for the company. The brief you write is treated as the job the ad has to do, not as background reading. Campaign creation is several times faster. The creative pipeline used to run past the platform’s execution ceiling and die silently, leaving you watching a progress bar that would never finish. It’s now split into resumable stages, with the business-analysis half computed during onboarding and reused, so every campaign after your first starts warm. Typical run: 1–2 minutes. Every country is selectable. The targeting dropdown carried 51 hand-typed countries; it now carries all 246 that Google supports. Lebanon, Jordan and about 190 others were simply unreachable before. -
Great tool! Was very helpful in content production -

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This team took the time to understand the industry, problem and its users and designed a perfectly engineered solution. Kudos.
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Founder here 👋 I built Clear Cortex because the chat window is the wrong shape for real work. Every new conversation starts from zero — you re-paste the same context, re-explain the same project, and the good answers disappear into scrollback you'll never find again. So the model here is flipped: your work lives in a workspace you own, and the AI comes to it. Every leading model — chat, image, audio, code — works from the same canvas behind one login and one pot of credit. And every answer is cited back to the exact source it was built from, so you can open it a week later and still trust it.
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Ask the community
Hoang Frank
Mar 3, 2025
Slide 1: Title Slide
Title: "Understanding Probe Cards: History, Structure, Principle, and Value"
Subtitle: A Comprehensive Training Guide
Details:Presented by [Your Name], Date: March 2, 2025
Visual: Image of a probe card or semiconductor wafer
Notes: Keep it clean and professional; use a tech-themed background.
Slide 2: Agenda
Title: "What We’ll Cover Today"
Text:
Introduction to Probe Cards
History of Probe Cards
Structure of Probe Cards
Working Principle
Value in Semiconductor Industry
Visual: Simple numbered list or icons for each topic
Notes: Set expectations for the audience.
Slide 3: What is a Probe Card?
Title: "Probe Card: The Basics"
Text:
An interface between test equipment and semiconductor wafers.
Used in automated integrated circuit (IC) testing.
Ensures electrical validation before dicing and packaging.
Visual: Diagram of a probe card connecting a tester to a wafer
Notes: Emphasize its role as a critical testing tool.
Slide 4: Why Probe Cards Matter
Title: "Importance in Semiconductor Manufacturing"
Text:
Identifies defects early, reducing waste.
Enables high-volume testing of ICs.
Supports the production of reliable electronics.
Visual: Image of a semiconductor production line
Notes: Highlight cost savings and quality control.
Slide 5: History – Early Beginnings
Title: "History of Probe Cards: The Early Days"
Text:
1960s: Emergence with basic needle-type probes.
Used for simple IC testing during the rise of semiconductors.
Limited to low pin counts and manual processes.
Visual: Vintage photo of early semiconductor testing
Notes: Set the stage for technological evolution.
Slide 6: History – Evolution in the 1980s
Title: "1980s: Advancements in Probe Technology"
Text:
Introduction of epoxy and blade probe cards.
Improved pin density for complex circuits.
Shift toward automated testing systems.
Visual: Image of an epoxy probe card
Notes: Mention the growth of the electronics industry.
Slide 7: History – MEMS Revolution
Title: "1990s–2000s: The MEMS Era"
Text:
Micro-Electro-Mechanical Systems (MEMS) probe cards introduced.
Enabled testing of smaller, denser ICs.
Supported the rise of mobile and computing technologies.
Visual: Close-up of a MEMS probe card
Notes: Highlight precision and scalability.
Slide 8: History – Modern Developments
Title: "Today: Cutting-Edge Probe Cards"
Text:
Full-wafer testing (e.g., 12-inch wafers in one touchdown).
High-frequency and high-pin-count capabilities.
Ongoing innovation for AI, 5G, and beyond.
Visual: Modern probe card in a cleanroom
Notes: Tie to current tech trends.
Slide 9: Structure – Overview
Title: "Structure of a Probe Card"
Text:
Three main components:
Printed Circuit Board (PCB)
Substrate
Contact Elements (Probes/Needles)
Visual: Labeled diagram of a probe card
Notes: Prepare to dive deeper into each part.
Slide 10: Structure – Printed Circuit Board (PCB)
Title: "The PCB Backbone"
Text:
Provides structural support and electrical pathways.
Materials: FR4, ceramic, or advanced composites.
Connects to the tester via edge contacts.
Visual: Image of a probe card PCB
Notes: Explain its role in signal transmission.
Slide 11: Structure – Substrate
Title: "The Substrate Layer"
Text:
Acts as an intermediary between PCB and probes.
Often made of ceramic or silicon.
Ensures precise alignment and stability.
Visual: Cross-section showing substrate placement
Notes: Highlight its mechanical importance.
Slide 12: Structure – Contact Elements
Title: "Probes: The Heart of the Card"
Text:
Needles or pins that contact the wafer.
Types: Needle, Vertical, MEMS.
Pitch: Microns apart for precision.
Visual: Magnified image of probe tips
Notes: Emphasize variety and precision.
Slide 13: Principle – How It Works
Title: "Working Principle of Probe Cards"
Text:
Connects tester to wafer via probes.
Sends electrical signals (test patterns).
Measures responses to validate IC functionality.
Visual: Flowchart (Tester → Probe Card → Wafer)
Notes: Keep it simple and clear.
Slide 14: Principle – Testing Process
Title: "The Testing Workflow"
Text:
Align probe card with wafer (optical alignment).
Probes touch IC pads or bumps.
Tester evaluates pass/fail.
Visual: Animation or step-by-step diagram
Notes: Show the precision required.
Slide 15: Principle – Key Parameters
Title: "Critical Performance Factors"
Text:
Contact resistance: Low for accurate readings.
Pin count: High for parallel testing.
Frequency: Supports high-speed ICs.
Visual: Graph comparing parameters
Notes: Tie to real-world applications.
Slide 16: Value – Cost Efficiency
Title: "Value: Saving Time and Money"
Text:
Early defect detection reduces downstream costs.
High-throughput testing speeds production.
Reusable with proper maintenance.
Visual: Cost-benefit chart
Notes: Quantify savings if possible.
Slide 17: Value – Quality Assurance
Title: "Value: Ensuring Reliability"
Text:
Validates IC performance before packaging.
Critical for high-stakes applications (e.g., automotive, medical).
Reduces field failures.
Visual: Image of a reliable IC in use
Notes: Emphasize trust in tech.
Slide 18: Value – Technological Enablement
Title: "Value: Driving Innovation"
Text:
Supports testing of advanced chips (AI, 5G, quantum).
Adapts to shrinking geometries and 3D packaging.
Fuels the digital revolution.
Visual: Futuristic tech (e.g., AI chip)
Notes: Look forward to future trends.
Slide 19: Challenges and Future
Title: "Looking Ahead"
Text:
Challenges: Tip contamination, wear, cost of customization.
Future: Self-cleaning probes, AI-driven testing, full automation.
Visual: Concept art of future probe tech
Notes: End on an optimistic note.
Slide 20: Conclusion
Title: "Key Takeaways"
Text:
Probe cards are vital to semiconductor testing.
Evolved from simple needles to advanced MEMS.
Deliver cost, quality, and innovation benefits.
Questions?
Visual: Recap image or thank-you note
Notes: Invite discussion and feedback.

