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QJ6008DH2TPTRIAC Alternistor - Snubberless 600 V 8 A Surface Mount TO-252 (DPAK)
1:$1.0470
Orders Over $2000 Receive a $100 Discount for Registered Abrmicro Users.
ABRmicro #.ABR300-QJ6008-6
ManufacturerLittelfuse®
MPN #.QJ6008DH2TP
Estimated Lead Time13 Weeks
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In Stock: 93
Shipped From Shenzhen or Hong Kong Warehouses
Min.&Mult.1
Packaging
Tube
Shipping DateDecember 23, 2024
* Quantity
Unit Price$1.0470
Ext. Price$1.0470
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* Prices exclude tax, and all prices are in USD.
Price Gradients
Qty.Unit PriceExt. Price
750$1.0470$784.9220
* Prices are for reference only and are subject to change. Final sales prices will be confirmed at the time of purchase.
Technical Specifications
SeriesQJxx08xHx
Packaging
Tube
Lifecycle StatusActive
Base Product NumberQJ6008
ConfigurationSingle
Gate Trigger Current (Max.)10 mA
Holding Current (Iʜ)(Max.)25 mA
Non-repetitive Surge Peak On-state Current (f=50Hz,60Hz)70A, 84A
RMS On-State Current8 A
Mounting StyleSurface Mount
Operating Temperature-40°C ~ 150°C (TJ)
Package Type (Mfr.)TO-252 (DPAK)
Triac TypeAlternistor - Snubberless
Gate Trigger Voltage (Vɢᴍ)(Max.)1.3 V
Repetitive Peak Off-State Voltage600 V
Package / CaseTO-252-3, DPAK (2 Leads + Tab), SC-63
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Environmental & Export Classifications
RoHS ComplianceComplies with RoHS 3 Directive (2015/863/EU)
MSL Level1 (Unlimited, ≤ 30°C/85% RH), No special packaging
REACH RegulationNo SVHCs Present
US ECCNEAR99
HTSUS8541.30.0080 (Other; No import duty applies)
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Additional Details
The QJ6008DH2TP is a TRIAC Alternistor manufactured by Littelfuse®. It is designed for use in applications where space efficiency and robust functionality are required, featuring a snubberless design that eliminates the need for external components to dampen voltage spikes. This device is housed in a surface mount TO-252 (DPAK) package, allowing for convenient integration onto PCBs. It can handle a load of up to 600 V and 8 A, making it suitable for controlling AC loads. The TRIAC has an on-state voltage of 1.3 V and a gate trigger current of 10 mA, with surge ratings of 70 A and 84 A, which highlights its capability to handle peak current events effectively.
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