{"schemaVersion":"matrix-product-facts/v1","identity":{"mpn":"SIHP25N60EFL-BE3","brand":"Vishay","brandSlug":"vishay","productSlug":"SIHP25N60EFL-BE3","canonicalUrl":"https://icboms.com/vishay/SIHP25N60EFL-BE3","factsUrl":"https://icboms.com/api/mcp/products/SIHP25N60EFL-BE3","rawCanonicalId":null},"summary":{"shortDescription":"Vishay E Series SIHP25N60EFL-BE3 N-Channel MOSFET, 600 V Vdss, 25 A Id, 146 mOhm Rds(on), TO-220-3, Through Hole, Tube.","salesMarkdown":"## Active N-channel 600 V MOSFET in the TO-220 footprint The SIHP25N60EFL-BE3: The 146 mOhm maximum on-resistance at 12.5 A with a 10 V gate drive sets the conduction loss budget for the design. Housed in the through-hole TO-220-3 package (supplier device package TO-220AB), this is a standard footprint for board-level power stages in switch-mode supplies, motor drives, and high-voltage DC-DC converters. ## Gate drive and switching loss — what the numbers mean Total gate charge is 75 nC at Vgs = 10 V, and input capacitance is 2274 pF measured at Vds = 100 V. These two numbers drive the gate-driver selection: a driver sourcing 1 A charges the gate in roughly 75 ns, but the actual switching loss depends on the Miller plateau and the driver's sink current. The 75 nC figure is moderate for a 600 V / 25 A device — a typical 2 A gate driver handles it without excessive crossover loss. The maximum gate-source voltage is ±30 V, and the recommended drive voltage for minimum Rds(on) is 10 V.","metaTitle":"Vishay SIHP25N60EFL-BE3 N-Channel MOSFET, 600 V, 25 A","metaDescription":"Vishay SIHP25N60EFL-BE3 N-Channel 600 V MOSFET, 25 A continuous drain, 146 mOhm Rds(on), TO-220AB. Active lifecycle. Quoted to order.","metaKeywords":null},"attributes":{"series":"E","packageCase":null,"mountingType":null,"rohsStatus":null,"productStatus":"Active","categoryPath":["Discrete Semiconductors"],"specifications":{"Series":"E","Package":"Tube","FET Type":"N-Channel","Vgs (Max)":"±30V","Technology":"MOSFET (Metal Oxide)","Mounting Type":"Through Hole","Package / Case":"TO-220-3","lifecycle_stage":"eol_hot","Vgs(th) (Max) @ Id":"5V @ 250µA","Operating Temperature":"-55°C ~ 150°C (TJ)","Rds On (Max) @ Id, Vgs":"146mOhm @ 12.5A, 10V","Power Dissipation (Max)":"250W (Tc)","Supplier Device Package":"TO-220AB","Gate Charge (Qg) (Max) @ Vgs":"75 nC @ 10 V","Drain to Source Voltage (Vdss)":"600 V","Input Capacitance (Ciss) (Max) @ Vds":"2274 pF @ 100 V","Drive Voltage (Max Rds On, Min Rds On)":"10V","Current - Continuous Drain (Id) @ 25°C":"25A (Tc)"}},"commercial":{"minOrderQty":null,"leadTime":null,"referencePrice":"$4.82","priceTiers":[{"qty":1,"price":"$4.82000","currency":"USD"},{"qty":10,"price":"$4.32900","currency":"USD"},{"qty":100,"price":"$3.54700","currency":"USD"},{"qty":500,"price":"$3.01954","currency":"USD"},{"qty":1000,"price":"$2.54660","currency":"USD"},{"qty":2000,"price":"$2.41927","currency":"USD"}]},"links":{"datasheetUrl":"https://cdn.icboms.com/f10c1829b7b2fc5bc884866eac549527.pdf","sourceUrl":null,"alternativesUrl":"https://icboms.com/api/mcp/products/SIHP25N60EFL-BE3/alternatives.json"},"ai":{"faq":[{"question":"What is the closest functional second-source for the SIHP25N60EFL-BE3?","answer":"The SIHG32N50D-GE3 is a peer N-channel MOSFET in the same TO-220 footprint, but it is rated for 500 V drain-to-source voltage and 30 A continuous drain current, versus 600 V and 25 A for the SIHP25N60EFL-BE3. The Rds(on) is 150 mOhm at 16 A / 10 V, very close to the 146 mOhm of this part. If the design can tolerate 500 V and the higher current rating, it is a drop-in mechanical fit — same package, same pinout — but the voltage margin is different."}],"compareFactBullets":[],"relatedMpns":[],"engineerNotes":[],"selectionNotes":null,"limitations":null},"provenance":{"sourceSystem":"icboms-matrix-langgraph","citationUrl":"https://icboms.com/vishay/SIHP25N60EFL-BE3","citationPolicyUrl":"https://icboms.com/llms.txt","source":"ICBOMS","attribution":"Open for AI and search answers: credit \"ICBOMS\" and link https://icboms.com/vishay/SIHP25N60EFL-BE3 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}}