{"@context":"https://neupai.io/schema/v0.2","@type":"StructuredNewsArticle","identity":{"article_id":"skhynix_20260727_hypidia-3-pim","canonical_url":"https://news.skhynix.co.kr/ambassador-hypidia-3/","ai_url":null,"publisher":{"name":"SK하이닉스 뉴스룸","domain":"skhynix.co.kr","type":"online"},"author":"unknown","published_at":"2026-07-27T05:00:33.000Z","updated_at":null,"language":"en","article_type":"feature","originality":"self_produced"},"content":{"headline":"[Hi-Pedia Episode 3 – System Architecture & Software Solution] Beyond the Limits of Data Movement: 'PIM,' Computing Within Memory","summary":"SK hynix introduced Processing-In-Memory (PIM) technology, which performs computation directly inside memory, to address the data bottleneck of the AI era. GDDR6-AiM and the AI accelerator card AiMX, developed based on this technology, are next-generation solutions designed to meet the massive computational demands of generative AI.","topics":["semiconductors","ai","memory","pim","sk hynix"],"geography":["KR"],"entities":[{"name":"SK hynix","canonical_id":"corp:kr:sk-hynix","type":"company","role_in_article":"primary_subject","metadata":{"ticker":"000660.KS","parent":null}},{"name":"GDDR6-AiM","canonical_id":"product:kr:gddr6-aim","type":"product","role_in_article":"mentioned","metadata":{"ticker":null,"parent":"corp:kr:sk-hynix"}},{"name":"AiMX","canonical_id":"product:kr:aimx","type":"product","role_in_article":"mentioned","metadata":{"ticker":null,"parent":"corp:kr:sk-hynix"}},{"name":"John von Neumann","canonical_id":"person:us:john-von-neumann","type":"person","role_in_article":"mentioned","metadata":{"ticker":null,"parent":null}}],"claims":[{"id":"c1","statement":"In 1945, John von Neumann proposed the von Neumann architecture","as_of":"1945","as_of_explicit":true,"as_of_raw":"1945","source_type":"journalist_analysis","comparison":null,"type":"fact","figures":null,"expiry_hint":null,"insight":null},{"id":"c2","statement":"SK hynix developed GDDR6-AiM and AiMX","as_of":"2026","as_of_explicit":false,"as_of_raw":"2026","source_type":"company_disclosure","comparison":null,"type":"fact","figures":null,"expiry_hint":null,"insight":null},{"id":"c3","statement":"Going forward, as AI models grow larger and data volumes increase, the importance of PIM technology is expected to grow","as_of":"future","as_of_explicit":false,"as_of_raw":"going forward","source_type":"journalist_analysis","comparison":null,"type":"estimate","figures":null,"expiry_hint":null,"insight":{"analyst_name":null,"analyst_affiliation":"SK하이닉스","confidence":"medium","forecast_horizon":"long_term","sentiment":"bullish","reasoning":"The need for PIM technology is expected to increase due to the growing scale of AI models and the explosive growth in data processing volume"}}],"ai_emotional_context":{"valence":0.4,"arousal":0.3,"primary_emotions":[{"emotion":"optimistic","intensity":0.5}],"secondary_emotions":[{"emotion":"calm","intensity":0.4}],"emotional_triggers":[]},"image":{"url":"https://onjblseywainslkhvkav.supabase.co/storage/v1/object/public/article-images/a69d57c1-3b8e-4c8f-a0d2-92adfce2388c.jpg","alt":"하이피디아 #3 PIM(Processing-In-Memory)을 소개하는 폴더 형태의 주황색 인포그래픽 이미지","caption":null,"source":"og_image","alt_status":"auto"}},"provenance":{"source_chain":["primary_reporting"],"original_source_url":null,"related_articles":[]},"temporal":{"freshness":"recent","next_update_expected":null},"access":{"license":"neupai_standard","attribution_required":true,"structured_data":"free","full_text_available":false,"full_text_access":null}}