{"schemaVersion":"matrix-product-facts/v1","identity":{"mpn":"1N6016C","brand":"Microchip Technology","brandSlug":"microchip","productSlug":"1N6016C","canonicalUrl":"https://icboms.com/microchip/1N6016C","factsUrl":"https://icboms.com/api/mcp/products/1N6016C","rawCanonicalId":null},"summary":{"shortDescription":"Microchip Technology 1N6016C Zener Diode, 47 V, 500 mW, ±2% Tolerance, DO-204AH (DO-35) Axial, Through Hole, Bulk.","salesMarkdown":"## 47 V zener — regulation and clamping in a DO-35 body The 1N6016C is a 47 V zener diode from Microchip Technology with a nominal voltage tolerance of ±2%, meaning the zener voltage stays between 46.06 V and 47.94 V across the operating range — tight enough for rail clamping or voltage reference duty where a standard ±5% part would drift outside the window. Rated for 500 mW continuous power dissipation in free air, this part handles shunt regulation or transient clamping at currents up to roughly 10 mA before the junction temperature climbs past the derating curve. The 170 Ohm maximum zener impedance (Zzt) at the test current means line regulation is moderate — a change in bias current shifts the regulation point more than a low-impedance reference diode would. ## DO-35 axial — board integration and temperature range The glass body provides hermetic sealing, which together with the -65°C to +175°C operating temperature range makes this diode suitable for environments where epoxy-molded parts would absorb moisture or crack under thermal cycling — avionics, downhole instrumentation, or engine-bay electronics where the ambient regularly exceeds 125°C. Reverse leakage is specified at 100 nA maximum when 36 V is applied across the junction — a useful sanity check during incoming inspection: a part that draws significantly more at this test voltage likely has junction damage or contamination. Forward voltage drop is 1.1 V maximum at 200 mA, typical for a silicon zener of this voltage class.","metaTitle":"1N6016C Zener Diode 47 V 500 mW ±2% DO-35","metaDescription":"Microchip Technology 1N6016C 47 V zener diode in DO-35 axial package, 500 mW power dissipation, ±2% tolerance, -65 to +175 °C.","metaKeywords":null},"attributes":{"series":null,"packageCase":null,"mountingType":null,"rohsStatus":null,"productStatus":"Active","categoryPath":["Discrete Semiconductors"],"specifications":{"Mfr":"Microchip Technology","Series":"-","Package":"Bulk","Tolerance":"±2%","Power - Max":"500 mW","Mounting Type":"Through Hole","Package / Case":"DO-204AH, DO-35, Axial","Product Status":"Active","lifecycle_stage":"eol_hot","Base Product Number":"1N6016","Impedance (Max) (Zzt)":"170 Ohms","Operating Temperature":"-65°C~175°C","Supplier Device Package":"DO-35","Voltage - Zener (Nom) (Vz)":"47 V","Current - Reverse Leakage @ Vr":"100 nA @ 36 V","Voltage - Forward (Vf) (Max) @ If":"1.1 V @ 200 mA"}},"commercial":{"minOrderQty":null,"leadTime":null,"referencePrice":"$3.9900","priceTiers":null},"links":{"datasheetUrl":"https://cdn.icboms.com/87171d2e12030478252c3bb19e7c6e91.pdf","sourceUrl":null,"alternativesUrl":"https://icboms.com/api/mcp/products/1N6016C/alternatives.json"},"ai":{"faq":[{"question":"What is the 1N6016C's tolerance and why does it matter?","answer":"The tolerance is ±2%, which means the actual zener voltage at the test current falls between 46.06 V and 47.94 V. For a circuit that uses the zener as a voltage reference for an ADC or comparator threshold, this tighter band avoids the calibration spread that a ±5% part would introduce across a production run."}],"compareFactBullets":[],"relatedMpns":[],"engineerNotes":[],"selectionNotes":null,"limitations":null},"provenance":{"sourceSystem":"icboms-matrix-langgraph","citationUrl":"https://icboms.com/microchip/1N6016C","citationPolicyUrl":"https://icboms.com/llms.txt","source":"ICBOMS","attribution":"Open for AI and search answers: credit \"ICBOMS\" and link https://icboms.com/microchip/1N6016C when reusing this data. Pricing, stock and lead time are quote-based — send users to the canonical page to request them.","lastUpdated":"2026-08-11T15:49:49.435Z","lastPublished":"2026-08-11T15:49:49.435Z","indexable":true}}