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PDF FAN3228 Data sheet ( Hoja de datos )

Número de pieza FAN3228
Descripción (FAN3226 - FAN3229) Low-Side Gate Drivers
Fabricantes Fairchild Semiconductor 
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No Preview Available ! FAN3228 Hoja de datos, Descripción, Manual

May 2008
FAN3226 / FAN3227 / FAN3228 / FAN3229
Dual 2A High-Speed, Low-Side Gate Drivers
Features
ƒ Industry-Standard Pinouts
ƒ 4.5 to 18V Operating Range
ƒ 3A Peak Sink/Source at VDD = 12V
ƒ 2.4A Sink / 1.6A Source at VOUT = 6V
ƒ Choice of TTL or CMOS Input Thresholds
ƒ Four Versions of Dual Independent Drivers:
- Dual Inverting + Enable (FAN3226)
- Dual Non-Inverting + Enable (FAN3227)
- Dual Inputs in Two Pin Configurations:
ƒ Standard (FAN3228)
ƒ Alternate (FAN3229) for compatibility with TI
ƒ Internal Resistors Turn Driver Off If No Inputs
ƒ MillerDrive™ Technology
ƒ 12ns / 9ns Typical Rise/Fall Times with 1nF Load
ƒ Typical Propagation Delay Under 20ns Matched
within 1ns to the Other Channel
ƒ Double Current Capability by Paralleling Channels
www.DataShƒeet48U-.Lcoemad 3x3mm MLP or 8-Lead SOIC Package
ƒ Rated from –40°C to +125°C Ambient
Applications
ƒ Switch-Mode Power Supplies
ƒ High-Efficiency MOSFET Switching
ƒ Synchronous Rectifier Circuits
ƒ DC-to-DC Converters
ƒ Motor Control
ƒ Servers
Description
The FAN3226-29 family of dual 2A gate drivers is
designed to drive N-channel enhancement-mode
MOSFETs in low-side switching applications by
providing high peak current pulses during the short
switching intervals. The driver is available with either
TTL or CMOS input thresholds. Internal circuitry
provides an under-voltage lockout function by holding
the output low until the supply voltage is within the
operating range. In addition, the drivers feature
matched internal propagation delays between A and B
channels for applications requiring dual gate drives with
critical timing, such as synchronous rectifiers. This
enables connecting two drivers in parallel to effectively
double the current capability driving a single MOSFET.
The FAN322X drivers incorporate MillerDrive™
architecture for the final output stage. This bipolar-
MOSFET combination provides high current during the
Miller plateau stage of the MOSFET turn-on / turn-off
process to minimize switching loss, while providing rail-
to-rail voltage swing and reverse current capability.
The FAN3226 offers two inverting drivers and the
FAN3227 offers two non-inverting drivers. Each device
has dual independent enable pins that default to ON if
not connected. In the FAN3228 and FAN3229, each
channel has dual inputs of opposite polarity, which
allows configuration as non-inverting or inverting with an
optional enable function using the second input. If one
or both inputs are left unconnected, internal resistors
bias the inputs such that the output is pulled low to hold
the power MOSFET off.
FAN3226
FAN3227
FAN3228
Figure 1. Pin Configurations
© 2007 Fairchild Semiconductor Corporation
FAN3226 / FAN3227 / FAN3228 / FAN3229 • Rev. 1.0.3
FAN3229
www.fairchildsemi.com

1 page




FAN3228 pdf
Block Diagrams
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Figure 7. FAN3228 Block Diagram
Figure 8. FAN3229 Block Diagram
© 2007 Fairchild Semiconductor Corporation
FAN3226 / FAN3227 / FAN3228 / FAN3229 • Rev. 1.0.3
5
www.fairchildsemi.com

5 Page





FAN3228 arduino
Typical Performance Characteristics
Typical characteristics are provided at 25°C and VDD=12V unless otherwise noted.
Figure 21. Input Thresholds vs. Supply Voltage
Figure 22. Input Thresholds vs. Supply Voltage
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Figure 23. Input Threshold % vs. Supply Voltage
Figure 24. Input Thresholds vs. Temperature
Figure 25. Input Thresholds vs. Temperature
© 2007 Fairchild Semiconductor Corporation
FAN3226 / FAN3227 / FAN3228 / FAN3229 • Rev. 1.0.3
11
www.fairchildsemi.com

11 Page







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