Divyansh Saksena

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Divyansh Saksena

Divyansh Saksena

@divsksna

Investing in climate, deep-tech, and compute @congruentvc

San Francisco Katılım Kasım 2013
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Divyansh Saksena
Divyansh Saksena@divsksna·
India can create an energy-rich future for itself over the next decade. Over the last 6 months, I've written about the different pillars that can support this future. Starting a running thread of the essays here:
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Ritwik Pavan
Ritwik Pavan@ritwikpavan·
who are the best early-stage hardware investors? i meet incredible hardware founders early on and would love to share.
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Trung Phan
Trung Phan@TrungTPhan·
Jensen took a last-minute flight to Beijing. Only took one bag and two outfits. Landed for a party, then spent a day eating mystery street meat and noodles while drinking any beverage that was offered. Classic early-20s Asia backpacking trip.
Trung Phan@TrungTPhan

Jensen peeled off from the official summit to sample the soy bean paste noodles (zhajiangmian) from Michelin-reccomended Fangzhuan shop followed by a bubble tea. The noodle shop has already added a “Jensen” meal option on its delivery app.

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Divyansh Saksena
Divyansh Saksena@divsksna·
gold mine
Kyle Chan@kyleichan

It's interesting to scan through MIIT's list of 67 pilot projects for high-tech industrialization to get a sense of what tech China thinks is important: High-End Functional and Intelligent Materials 1. Ultra-high energy-density dielectric materials and devices — Tsinghua University 2. Data-driven design and manufacturing of copper alloys for integrated-circuit lead frames — University of Science and Technology Beijing 3. High-sensitivity entropy-regulated amorphous-alloy stress-impedance strain gauge for seismic resistance and disaster prevention in buildings — Nanjing University of Science and Technology 4. Noble-metal reduction technology for selective hydrogenation — Zhejiang University 5. Complete preparation technology for liquid-cooling thermal-management materials — Juhua Group 6. Single-phase immersion liquid-cooling solution for data centers — Juhua Group 7. 450 km/h high-speed train traction motor integrating new electromagnetic materials — National High-Speed Train Qingdao Technology Innovation Center 8. Aviation fuel coalescence-separation device — South China University of Technology 9. Inorganic two-dimensional material membranes for efficient hydrogen separation — South China University of Technology Advanced Structural and Composite Materials 10. Preparation technology for sound-absorbing honeycomb and composite materials — China Aviation Manufacturing Technology Research Institute 11. Wear-resistant, fatigue-resistant, corrosion-resistant rails and frogs for the Sichuan–Tibet Railway — China Academy of Railway Sciences Corporation 12. Long-term performance-retention technologies for structural concrete in complex environments on the Sichuan–Tibet Railway — China Academy of Railway Sciences Corporation 13. High-performance shotcrete technology for complex environments on the Sichuan–Tibet Railway — China Academy of Railway Sciences Corporation 14. Crack-resistance improvement technologies for structural concrete in complex environments on the Sichuan–Tibet Railway — China Academy of Railway Sciences Corporation 15. Powder-making technology and applications for recycling coarse high-temperature alloy powder — AECC Beijing Institute of Aeronautical Materials 16. Large-tonnage carbon-fiber composite cables — University of Science and Technology Beijing 17. Multi-layer gradient cold-spray repair and nano-hard reinforcement composite plating for continuous-casting molds — Ansteel Group Beijing Research Institute 18. Key technologies and application development for ultra-high-stiffness magnesium-matrix composites — Harbin Institute of Technology New Displays and Strategic Electronic Materials 19. Sub-6GHz GaN radio-frequency devices — CETC 13th Research Institute 20. High-frequency, high-power laser modulator technology — Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences Rare-Earth New Materials 21. Preparation technology for high-temperature-resistant cobalt-based permanent magnet materials — China Jiliang University 22. Heavy-rare-earth-free high-coercivity sintered NdFeB technology — Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences High-Performance Manufacturing Technologies and Major Equipment 23. 6-inch semi-insulating SiC crystal-growth furnace and 6/8-inch compatible SiC epitaxial furnace — NAURA 24. New MOCVD equipment for Micro-LED — Advanced Micro-Fabrication Equipment Inc. China 25. Precision forming technology for large aerospace thin-walled aluminum-alloy integrated cylindrical sections — Shanghai Aerospace Precision Machinery Institute 26. High-temperature-resistant, corrosion-resistant transmission-system bearings — Luoyang Bearing Group 27. High-performance seals for aviation hydraulic systems — Guangzhou Mechanical Engineering Research Institute 28. Key manufacturing technology for ultra-large seamless titanium cathode rollers — Xi’an Taijin New Energy Technology Intelligent Sensors 29. Advanced sensors, core components, and manufacturing processes for spacecraft control systems — Beijing Institute of Control Engineering 30. Flexible intracranial implantable multimodal sensing and modulation system for multiparameter brain monitoring — Aerospace Information Research Institute, Chinese Academy of Sciences 31. Self-powered sensor technologies for human health monitoring — Beijing Institute of Nanoenergy and Nanosystems 32. High-sensitivity MEMS magnetic sensing components and sensors — State Grid Smart Grid Research Institute 33. Miniature high-performance accelerometers — Beijing Aerospace Xinghua Technology 34. Rocket sensors — Long March Rocket Technology 35. New broadband ng-resolution triaxial accelerometer — Tianjin SIASUN Robot & Automation 36. Automotive-grade high-precision integrated navigation sensors — Hebei Meitai Electronic Technology 37. Series of sensors for deep-sea environmental observation and resource exploration — Shenyang Institute of Automation, Chinese Academy of Sciences 38. Multi-parameter differential-pressure flowmeter — Shenyang Zhongke Bowei Technology 39. Quantitative sensing-interface model and analytical instrument technology based on resonant cantilever beams — Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences 40. High-performance X-ray sensors — iRay Technology 41. Electromagnetic sensors — Xinlian Superconductor Shanghai 42. Thin-film getter structure with a micro-heater and its manufacturing method — Shanghai New Micro Technology R&D Center 43. High-performance acoustic sensing elements and sensors — Wuxi Weigan Semiconductor 44. New high-performance MEMS gas sensors — Suzhou Huiwen Nanotechnology 45. MEMS sensor mass-manufacturing platform — XINLIAN Integrated Circuit Manufacturing 46. Development and application of diamond quantum magnetic sensors — University of Science and Technology of China 47. In-situ continuous temperature sensors and measurement systems for molten steel — Maanshan Iron & Steel 48. High-performance laser gas-sensing components — Shandong Science & Technology Innovation Group 49. Key technologies and applications for biosensor sensitive elements — Shandong Kanghua Biomedical Technology 50. Wireless passive temperature sensors based on polymer-derived ceramic metamaterials — Zhengzhou University 51. High-precision printing technology and equipment for ultrafine fiber surfaces — Huazhong University of Science and Technology 52. Complete sensor set for high-speed rail vehicle health-monitoring systems — CRRC Zhuzhou Institute 53. Industrializable mass-producible automotive-grade solid-state LiDAR for autonomous driving — RoboSense 54. Sensing-computing integrated room-temperature infrared imaging detection technology — Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences 55. Nanometer-precision displacement-measurement grating sensors — Xi’an Jiaotong University 56. Distributed thin-film sensors for highway infrastructure — AVIC Electromechanical Measurement Instrument Xi’an Industrial Software 57. Core components of an industrial internet operating system for discrete industries — Beijing Institute of Technology 58. Data-driven closed-loop performance analysis, regulation, and optimization technology and software for manufacturing processes — University of Science and Technology Beijing 59. Intelligent analysis and decision-making system for full-process industrial data in discrete manufacturing — Beihang University 60. Distributed time-series data management system Apache IoTDB — Tsinghua University 61. MEC-based edge control and real-time simulation theories and methods — Shenyang Institute of Automation, Chinese Academy of Sciences 62. Cloud-based service-oriented MES and intelligent management-control platform system — Beijing Xiaomi Mobile Software 63. Domestic isogeometric-analysis software ADIGA — Dalian University of Technology 64. Distributed factory industrial interconnection platform — Shanghai Aircraft Manufacturing 65. Industrial interconnection platform for personalized customization industries — Guangzhou MINO Equipment 66. End-edge-cloud interconnection integration technology and system for OT/IT convergence — Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences 67. Industrial interconnection platform for large-scale manufacturing industries — Gree Electric Appliances of Zhuhai

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Matt Turck
Matt Turck@mattturck·
me pretending to do work while my agents run 24/7 in the background
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Divyansh Saksena
Divyansh Saksena@divsksna·
+1 here - I grew up in India and moved to the US only for college. Much of my thinking has been shaped by uniquely Indian experiences, which actually made the basis of a lot of my earlier writing and many of which continue to influence how I problem solve. The homogeneity in SF can be hard to escape if you don't atleast try!
Braelyn ⛓️@braelyn_ai

developing taste requires living diverse cultural experiences you will never have taste working 996 in SF

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Divyansh Saksena
Divyansh Saksena@divsksna·
AI4174 from SF to Delhi has to be the worst possible flight - food was downright stale, not a single screen worked, random refueling leg added, the list goes on. I don’t get why @airindia is the only one with the ability to operate this route
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Air India
Air India@airindia·
@divsksna Dear Mr. Saksena, we empathize with the experience. Please help us with the booking details via DM to highlighting the same internally for necessary review and corrective action.
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Divyansh Saksena
Divyansh Saksena@divsksna·
@airindia A 17 hr flight has to be more than bare metal! How can no screens work, food be evidently stale - consistently poor service this whole trip
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Shreyash Nigam
Shreyash Nigam@shreyash_nm·
I fell to second in fantasy. naturally i am now going to throw an unreasonable amount of inference at fixing this gargantuan problem
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Boring_Business
Boring_Business@BoringBiz_·
My body is a machine that transfers comments from my Managing Director to Claude and then back to my Managing Director
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John Attridge
John Attridge@John_Attridge·
Previous scholars have argued that it is so over. In this paper, however, I posit that we are so back
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ChatGPT
ChatGPT@ChatGPTapp·
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Divyansh Saksena
Divyansh Saksena@divsksna·
It becomes increasingly clear everyday that heterogeneity will be a big part of the compute story. Hoping to put out a piece soon tying together the power landscape with a bifurcating compute picture and the pockets of opportunity. I've been consuming everything from the 2021 TPU gens paper to Hazy Research's IPW framework to Austin Lyon's commentary, among many many others. There's a lot to learn still but the whitespace in this nexus makes it all the more fun
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