Power Trench MOSFET BLUE ROCKET BRCS9926SC Dual N Channel Device in SOP 8 Package for Load Switching

Key Attributes
Model Number: BRCS9926SC
Product Custom Attributes
Drain To Source Voltage:
20V
Current - Continuous Drain(Id):
6.5A
Operating Temperature -:
-55℃~+150℃@(Tj)
RDS(on):
23mΩ@2.5V
Gate Threshold Voltage (Vgs(th)):
1V
Reverse Transfer Capacitance (Crss@Vds):
85pF@10V
Number:
2 N-Channel
Input Capacitance(Ciss):
700pF@10V
Pd - Power Dissipation:
1.6W
Gate Charge(Qg):
7nC@4.5V
Mfr. Part #:
BRCS9926SC
Package:
SOP-8
Product Description

Product Overview

The BRCS9926SC is a Dual N-Channel Power Trench MOSFET designed for use in a SOP-8 plastic package. It is optimized for battery protection circuits, offering a wide operating voltage range with 10 VGSS and low gate charge. This halogen-free product is suitable for applications such as battery protection, load switching, and power management.

Product Attributes

  • Brand: FS (implied by URL http://www.fsbrec.com)
  • Package Type: SOP-8 Plastic Package
  • Channel Type: N-Channel
  • Technology: Power Trench MOS
  • Certifications: Halogen-free Product

Technical Specifications

Parameter Symbol Rating / Test Conditions Value Unit
Absolute Maximum Ratings (Ta=25)
Drain-Source Voltage VDSS 20 V
Gate-Source Voltage VGS 10 V
Drain Current Continuous (note 1a) ID 6.5 A
Drain Current Pulsed 20 A
Power Dissipation for Dual Operation PD 2.0 W
Power Dissipation for Single Operation (note 1a) 1.6 W
Power Dissipation for Dual Operation (note 1b) 1.0 W
Power Dissipation for Single Operation (note 1c) 0.9 W
Thermal Resistance, Junction-to-Ambient (note 1a) RJA 78 /W
Thermal Resistance, Junction-to-Case (note 1) RJC 40 /W
Operating and Junction Temperature Range Tj, Tstg -55150
Electrical Characteristics (Ta=25)
Drain-Source Breakdown Voltage BVDSS VGS=0V, ID=250A 20 V
Breakdown Voltage Temperature Coefficient BVDSS/TJ ID=250A, Referenced to 25 14 mV/
Zero Gate Voltage Drain Current IDSS VDS=16V, VGS=0V 1.0 A
Gate-Body Leakage Current IGSS VGS=8.0V, VDS=0V 100 nA
Gate Threshold Voltage VGS(th) VDS=VGS, ID=250A 0.5 - 1.5 V
Gate Threshold Voltage Temperature Coefficient VGS(th)/TJ ID=250A, Referenced to 25 -3.0 mV/
Static Drain-Source On-Resistance RDS(on) VGS=4.5V, ID=6.5A 19 - 24 m
VGS=4.5V, ID=6.5A, TJ=125 27 - 34 m
VGS=2.5V, ID=5.4A 23 - 30 m
On-State Drain Current ID(on) VDS=5.0V, VGS=5.0V 15 A
Forward Transconductance gFS VDS=5.0V, ID=3.0A 11 S
Electrical Characteristics (Ta=25)
Input Capacitance Ciss VDS=10V, VGS=0V, f=1.0MHz 700 pF
Output Capacitance Coss 175 pF
Reverse Transfer Capacitance Crss 85 pF
Turn-On Delay Time td(on) VDD=10V, ID=1.0A, RGEN=6, VGS=4.5V 8 - 16 ns
Turn-On Rise Time tr 10 - 18 ns
Turn-Off Delay Time td(off) 18 - 29 ns
Turn-Off Fall Time tf 5.0 - 10 ns
Total Gate Charge Qg VDD=10V, ID=3.0A, VGS=4.5V 7.0 - 10 nC
Gate-Source Charge Qgs 1.2 nC
Gate-Drain Charge Qgd 1.9 nC
Maximum Continuous Drain-Source Diode Forward Current IS 1.3 A
Drain-Source Diode Forward Voltage VSD IS=1.3A, VGS=0V (note 2) 0.65 - 1.2 V

Notes:

  • 1. RJA is the sum of the junction-to-case and case-to-ambient resistance where the case thermal reference is defined as the solder mounting surface of the drain pins. RJC is guaranteed by design while RJA is determined by the user's board design.
  • a) 78/W when mounted on a 0.5 in pad of 2 oz. copper.
  • b) 125/W when mounted on a 0.02 in pad of 2 oz. copper.
  • c) 135/W when mounted on a minimum pad.
  • 2. Pulse Test: Pulse Width 300 s, Duty Cycle 2.0%

Marking Instructions:

  • BR: Company Code
  • 9926: Product Type
  • ****: Lot No. Code, code change with Lot No.

Temperature Profile for IR Reflow Soldering (Pb-Free):

  • 1. Preheating: 150~180, Time: 60~90sec.
  • 2. Peak Temp.: 2455, Duration: 50.5sec.
  • 3. Cooling Speed: 2~10/sec.

Resistance to Soldering Heat Test Conditions:

  • Temp.: 2605
  • Time: 101 sec.

Packaging SPEC:

Package Type Units/Reel Reels/Inner Box Units/Inner Box Inner Boxes/Outer Box Units/Outer Box Dimension
SOP/ESOP-8 4,000 2 8,000 6 48,000 1312, 36036050, 380335366

2410121247_BLUE-ROCKET-BRCS9926SC_C914061.pdf

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