BSZ096N10LS5ATMA1 vs BSC050NE2LSATMA1 Comparison

Detailed side-by-side comparison of BSZ096N10LS5ATMA1 by Infineon and BSC050NE2LSATMA1 by Infineon. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.

Infineon
BSC050NE2LSATMA1

BSC050NE2LSATMA1 - 25V 58A N-Ch OptiMOS MOSFET | Infineon

BSC050NE2LSATMA1 βœ“ Active

Specification Comparison

Parameter BSZ096N10LS5ATMA1 BSC050NE2LSATMA1
Brand Infineon Infineon
Category MOSFETs MOSFETs
Lifecycle Status Active Active
Stock Status In Stock In Stock
Unit Price (USD) $0.94 $0.36
Manufacturer Infineon Technologies β€”
Product Family OptiMOS 5 β€”
Polarity N-Channel β€”
Drain-Source Voltage (VDS max) 100 V β€”
Gate-Source Voltage (VGS max) 20 V (typical) β€”
Continuous Drain Current (ID, TC=25 Β°C) 40 A β€”
Maximum Silicon Drain Current (ID max) 62 A β€”
Pulse Drain Current (ID,pulse) 160 A β€”
On-Resistance RDS(on) max 9.6 mΞ© at VGS=10 V β€”
Total Power Dissipation (Ptot, TC=25 Β°C) 69 W β€”
Gate Threshold Voltage VGS(th) Logic-level (low single-volt range) β€”
Diode Continuous Forward Current (IS) 40 A (TC=25 Β°C) β€”
Diode Forward Voltage (VSD) 0.85 V typ, 1.2 V max at IF=20 A β€”
Package PG-TSDSON-8-FL (PQFN 3.3 x 3.3 mm) PG-TDSON-8-5 (SuperSO8 5x6 mm)
Mounting Type Surface Mount Surface Mount
Operating Temperature Range -55 Β°C to +150 Β°C (junction) -55C to +150C
Technology OptiMOS 5 trench MOSFET OptiMOS 25V (trench)
Gate Drive Logic-level compatible β€”
ESD Protection Yes (gate-integrated) β€”
RoHS Status Compliant Compliant
Packaging Code ATMA1 (tape and reel) β€”
FET Type β€” N-Channel
Drain-Source Voltage (V_DS) β€” 25 V
Continuous Drain Current (I_D) at Tc=25C β€” 58 A
Continuous Drain Current (I_D) at Ta=25C β€” 39 A
R_DS(on) max at V_GS=10V β€” 5 mOhm
R_DS(on) typical at V_GS=10V β€” 4.2 mOhm
Gate-Source Voltage (V_GS) max β€” [DATA_NEEDED: V_GS max rating]
Gate Threshold Voltage (V_GS(th)) β€” [DATA_NEEDED: V_GS(th) typical]
Power Dissipation at Ta=25C β€” 2.5 W
Power Dissipation at Tc=25C β€” 28 W

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