FAN6756MLMY [FAIRCHILD]

New Products, Tips and Tools for Power and Mobile Applications; 新产品,技巧和工具的电源和移动应用
FAN6756MLMY
型号: FAN6756MLMY
厂家: FAIRCHILD SEMICONDUCTOR    FAIRCHILD SEMICONDUCTOR
描述:

New Products, Tips and Tools for Power and Mobile Applications
新产品,技巧和工具的电源和移动应用

文件: 总8页 (文件大小:2074K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
BENCHMarks  
New Products, Tips and Tools for Power and Mobile Applications  
VOL. 1, 2012  
Digital Microphones Improve  
Sound Quality, Lower Power  
Advantages  
Achieve better sound quality in mobile handset and notebook microphone  
applications with Fairchild’s FAN3850x series of digital microphone pre-amplifiers.  
These high performance analog mobile audio devices provide advanced noise  
rejection capabilities as well as an easy interface to mobile handset processors.  
•ꢀ Excellentꢀsignal-to-noiseꢀratio  
•ꢀ Lowerꢀpowerꢀcompensation,ꢀ  
ꢀ 0.8mW  
The series includes:  
•ꢀ <20μWꢀpowerꢀdownꢀmode  
FAN3850A that features both 16dB and 19dB gain versions,  
• FAN3850T offering 15dB gain and integrated negative temperature  
coefficient to compensate for ECM positive temperature coefficient to  
achieve a flat sensitivity response over temperature.  
Applications  
•ꢀ Mobileꢀhandsetsꢀ  
Both devices integrate a pre-amplifier, low drop-out regulator (LDO) and analog-  
to-digital converter (ADC) that converts Electret Condenser Microphone (ECM)  
outputs to digital pulse density modulation (PDM) data streams.  
•ꢀ NotebookꢀPCꢀmicrophones  
For more information, please visit:  
www.fairchildsemi.com/pf/FA/FAN3850A.html  
www.fairchildsemi.com/pf/FA/FAN3850T.html  
90  
80  
70  
60  
50  
40  
SNR (dBa)  
THD (dB)  
30  
20  
SINAD (dB)  
10  
0
-10  
-20  
0.001  
0.01  
0.1  
1
10  
100  
Input Signal (mVpp)  
FAN3850T 15dB SNR (dBa), THD (-dB), SINAD (dB) over Input Amplitude  
120dB SPL  
Product  
ESD (HBM)  
(kV)  
IDD (μA)  
420  
ISLEEP (μA)  
1.4  
SNR (dB)  
62  
THD (%)  
0.01  
THD + N  
(%)  
Number  
FAN3850x  
3
7
VDD = 1.8V, FCLOCK = 2.4MHz, 94dBSPL  
SINGLE-CHIP PWM SOLUTION  
Single-Chip PWM Solution Saves Board Space  
Designers who need to achieve lower standby power consumption in devices  
such as notebooks, printers, LCD TVs, now have an industry-leading single-chip  
solution with Fairchild’s FAN6756. Lower standby power in 75W space-  
constrained applications is achieved without additional external circuitry, complex  
designs or higher costs. The single-chip solution is a highly integrated green-  
mode PWM controller that significantly reduces standby losses in SMPS designs,  
and eliminates up to 15 external components.  
Advantages  
•ꢀ Proven,ꢀreliableꢀmWSaverꢀꢀ  
ꢀ Technology  
•ꢀ Achievesꢀ<30mWꢀnoꢀload/ꢀ  
ꢀ standbyꢀpowerꢀconsumption  
•ꢀ Reducesꢀupꢀtoꢀ15ꢀexternalꢀꢀ  
ꢀ components  
The FAN6756 also includes an innovative AX-CAPdischarge method that  
minimizes losses in the EMI filter stage, while meeting the IEC61010-1 safety  
requirement. This functionaity is achieved by eliminating the X-cap discharge  
resistors and discharging X-cap energy through the HV pin when the power is  
unplugged from the AC outlet.  
Applications  
•ꢀ Notebooks  
Ideal for power supplies that demand extremely low standby power, the FAN6756  
incorporates mWSaverTechnology. This technology allows the device to reduce  
power losses not only in the controller, but also in the external circuits and  
components. It also includes a proprietary deep burst mode technology that  
reduces switching loss at no-load and light-load conditions.  
•ꢀ Gameꢀconsolesꢀ  
•ꢀ Printerꢀadapters  
•ꢀ LCDꢀTVs  
For more information, please visit:  
FAN6756  
5.4V  
www.fairchildsemi.com/pf/FA/FAN6756.html  
www.fairchildsemi.com/mwsaver  
VDD  
Impedence  
Modulator  
ZFB  
Sensed Current  
Signal  
3R  
1R  
VFB  
2
FB  
PWM  
Comparator  
CFB  
Deep Burst Mode Control Circuit  
Protection*  
Product  
Max Power Feedback  
Protection  
Package  
SOIC-8  
Number  
(W) Rating  
Mode  
OLP OVP OTP SSCP  
FAN6756MRMY  
FAN6756MLMY  
A/R  
L
L
L
L
L
A/R  
A/R  
OLP, OCP,  
OVP, OTP,  
SSCP  
65  
Current  
*Auto Recovery Mode protection, L = Latch Mode protection.  
OptoHiTPHOTOTRANSISTOR OPTOCOUPLERS  
Reliable Isolation and Minimized System  
Failure with OptoHiTOptocouplers  
Advantages  
Realize increased design margins and stable parameters in high temperature  
environments with Fairchild’s new FODM8801 OptoHiThigh temperature pho-  
totransistor optocoupler. You’ll achieve high noise immunity and reliable isolation  
at high operating temperatures, up to 125°C, as this new series implements  
Fairchild’s proprietary OPTOPLANAR® coplanar packaging technology. In addi-  
tion, the FODM8801 offers excellent CTR linearity and operates at a very low  
input current (IF). The optocoupler consists of an aluminum gallium arsenide  
(AlGaAs) infrared light emitting diode optically coupled to a phototransistor.  
•ꢀ ExcellentꢀCTRꢀlinearityꢀatꢀ  
ꢀ highꢀtemperature  
•ꢀ CTRꢀatꢀveryꢀlowꢀinputꢀ  
ꢀ current,ꢀIFꢀ(1mA,ꢀ1.6mA,ꢀ  
ꢀ andꢀ3mA)  
•ꢀ Smallꢀfootprint:ꢀhalf-pitchꢀꢀ  
ꢀ mini-flatꢀpackageꢀ(MFP)ꢀꢀ  
ꢀ savesꢀboardꢀrealꢀestateꢀꢀ  
ꢀ forꢀmoreꢀflexibilityꢀandꢀꢀ  
ꢀ overallꢀsystemsꢀcostꢀsavings  
Because the FODM8801 is packaged in a compact, half-pitch, mini-flat, 4-pin  
package (1.27mm lead pitch), benefits also include board space savings and  
design flexibility, ultimately allowing for overall reductions in system cost.  
Applications  
1.2  
V
= 5V  
CE  
•ꢀ PrimarilyꢀsuitedꢀforꢀDC-DCꢀꢀ  
ꢀ converters  
I
= 2mA  
= 1mA  
F
1.0  
0.8  
0.6  
0.4  
0.2  
0
I
= 0.5mA  
F
•ꢀ Groundꢀloopꢀisolation,ꢀꢀ  
ꢀ signal-to-noiseꢀisolation  
I
F
•ꢀ Communications:ꢀꢀ  
ꢀ adapters,ꢀchargers  
•ꢀ Consumer:ꢀꢀ  
ꢀ appliances,ꢀset-topꢀboxes  
•ꢀ Industrial:ꢀ  
ꢀ powerꢀsupplies,ꢀmotorꢀcontrol,ꢀ  
ꢀ programmableꢀlogicꢀcontrol  
-40 -20  
0
20  
40  
60  
80 100 120 140  
TA– AMBIENT TEMPERATURE (°C)  
For more information, please visit:  
Normalized CTR vs. Ambient Temperature  
www.fairchildsemi.com/pf/FO/FODM8801A.html  
www.fairchildsemi.com/products/opto/  
CTR  
CTR  
Product  
BV  
BV  
tON/tOFF  
(Max)  
VISO  
TOPR  
(MCinEO)  
(MEiCnO)  
(Min)  
(Min)  
(Min) @  
(Max) @  
TOPR (Max)  
125 °C  
Number  
IF = 1mA IF = 1mA  
FODM8801A  
FODM8801B  
FODM8801C  
80%  
130%  
200%  
160%  
260%  
400%  
75V  
7V  
20μs  
3750V  
-40 °C  
LED LAMP DRIVER IC  
Small-Spaced Dimming Challenges Solved  
with LED Lamp Driver IC  
Advantages  
With Fairchild’s FL7701 smart non-isolated Buck LED driver with power factor  
correction, designers attain efficient dimming solutions that also fit within exist-  
ing sockets. Because the need to work reliably in a small space while providing  
high efficiency is imperative, the device uses a digital technique that allows it to  
automatically detect the AC input voltage condition. A special internal reference  
signal is then created, resulting in high power factor correction. The FL7701 will  
work from a DC input voltage condition, automatically sensing AC versus DC  
input voltage conditions. It also combines high functional density to create the  
smallest form factor and allows designers to save up to 20% BOM costs and up  
to 60% board space savings.  
•ꢀ Highꢀfunctionalꢀdensityꢀinꢀaꢀꢀ  
ꢀ smallꢀformꢀfactor  
•ꢀ Upꢀtoꢀ60%ꢀboardꢀspaceꢀꢀ  
ꢀ savingsꢀcomparedꢀtoꢀotherꢀꢀ  
ꢀ solutions  
•ꢀ Upꢀtoꢀ20%ꢀlowerꢀbillꢀofꢀꢀ  
ꢀ materialꢀcostsꢀcomparedꢀꢀ  
ꢀ toꢀotherꢀsolutions  
•ꢀ Digitalꢀpowerꢀfactorꢀ(PF)ꢀꢀ  
ꢀ realizationꢀgreaterꢀthanꢀ0.9  
The LED driver provides energy savings that meet the most stringent worldwide  
regulations, such as Energy Star®. Designers also benefit from the high degree  
of integration offered by the FL7701. The result is increased luminary lifespan  
to more than five years (current solution only achieves three years.) And reli-  
ability is also improved since no electrolytic capacitors for the input, output or  
the FL7701 VDD supply are required.  
•ꢀ Lowerꢀtotalꢀharmonicꢀꢀ  
ꢀ distortionꢀ(THD)  
•ꢀ 90%ꢀelectricalꢀefficiencyꢀ  
•ꢀ MeetsꢀworldwideꢀEnergyꢀStar®ꢀꢀ  
ꢀ regulations  
Applications  
•ꢀ Decorativeꢀlighting  
•ꢀ Low-powerꢀlighting  
For more information, please visit:  
www.fairchildsemi.com/pf/FL/FL7701.html  
www.fairchildsemi.com/ledlighting  
Typical application  
Engineering  
Connections  
Product  
CC Variance  
(%)  
Frequency  
(kHz)  
Topology  
PFC  
Yes  
Dimming  
Yes  
Package  
SOIC-8  
Need to Design a Dimmable LED Lamp  
Small Enough to Fit Existing Sockets?  
Number  
Non-Isolation  
PFC Buck  
FL7701  
3
Variable  
Read the latest in our blog at  
www.fairchildsemi.com/engineeringconnections.  
FLYBACK CONTROLLERS  
Achieve Industry-Best Energy  
Savings for Flyback Designs  
Advantages  
Designers using flyback topology can now achieve optimum converter perfor-  
mance with Fairchild’s expansive portfolio of flyback controllers. Enabling power  
savings, achieving high-power density and meeting energy standards, the port-  
folio includes:  
•ꢀ FAN302HLꢀ ꢀ  
ꢀ •ꢀ8mWꢀstandbyꢀ  
ꢀ •ꢀ15Wꢀchargersꢀ  
ꢀ •ꢀPSRꢀforꢀCCꢀ&ꢀSSRꢀforꢀCVꢀ  
ꢀ •ꢀmWSaver™ꢀTechnology  
• The FAN302HL mWSaverTechnology PWM controller, a highly  
integrated device that includes a proprietary burst-mode function with low  
operation current and minimizes standby power consumption.  
•ꢀ FAN6920MR,FAN7382,FAN6204ꢀ  
ꢀ •ꢀDual-switchꢀQRꢀ+ꢀCRMꢀꢀ  
• The dual switch flyback solution for 75W~230W applications and consists  
of the FAN6920MR integrated critical mode PFC and quasi-resonant  
current mode PWM controller, the FAN7382 gate driver, in tandem with  
the FAN6204 secondary synchronous rectifier controller for flyback  
topology and forward freewheeling rectification.  
ꢀ ꢀꢀPFCꢀ+ꢀHVꢀhalf-bridgeꢀdriverꢀꢀ  
ꢀ ꢀꢀ+ꢀSRꢀcontrolꢀ  
ꢀ •ꢀExceedsꢀ2013ꢀErPꢀ  
ꢀ ꢀꢀnoꢀloadꢀspecꢀ  
ꢀ •ꢀmWSaver™ꢀTechnology  
• The FAN6756 mWSaverTechnology PWM controller, dramatically  
reduces standby and no-load power consumption, enabling conformance  
to worldwide standby mode efficiency guidelines.  
•ꢀ FAN6756,FAN6204ꢀ  
ꢀ •ꢀPWMꢀcontrollerꢀ+ꢀꢀ  
ꢀ ꢀꢀSRꢀcontrollerꢀ  
ꢀ •ꢀ90+%ꢀefficiencyꢀ  
ꢀ •ꢀ26mWꢀstandbyꢀ  
ꢀ •ꢀmWSaver™ꢀTechnology  
In addition, Fairchild offers the Power Supply WebDesigner (PSW) online design  
and simulation tool that takes your specifications and provides a complete  
primary-side regulated (PSR) flyback converter or secondary-side regulated  
(SSR) flyback converter designs in minutes—at no expense.  
Applications  
•ꢀ Adapters/convertersꢀforꢀmobileꢀꢀ  
ꢀ phonesꢀandꢀfirewalls,ꢀtablets,ꢀꢀ  
ꢀ PCsꢀandꢀlargeꢀflatꢀpanelꢀTVs  
Energy-Efficient Controllers for Flyback Designs  
Power level vs. efficiency vs. standby power  
100%  
95%  
200W  
The industrys best efficiency and standby power  
combination for each power rating.  
AN6920MR  
FAN7382  
+ FAN6204  
Dual-switch QR + CRM  
PFC + HV half-bridge driver  
+ SR control  
For more information, please visit:  
Exceeds 2013 ErP no load spec  
TM  
mWSaver Technology  
FAN6756  
+ FAN6204  
www.fairchildsemi.com/pf/FA/FAN302HL.html  
www.fairchildsemi.com/pf/FA/FAN6920MR.html  
www.fairchildsemi.com/pf/FA/FAN7382.html  
www.fairchildsemi.com/pf/FA/FAN6756.html  
www.fairchildsemi.com/pf/FA/FAN6204.html  
www.fairchildsemi.com/powersupplywebdesigner  
www.fairchildsemi.com/flybackconverter  
75W  
PWM controller +  
90%  
85%  
80%  
75%  
70%  
SR controller  
90+% efficiency  
FAN6756  
Single-chip solution  
Ideal for 75W adapters  
26mW standby  
mWSaver Technology  
TM  
FAN6862/63  
26mW standby  
TM  
Cost-effective solution  
mWSaver Technology  
300mW standby  
FAN6300A/H  
85+% efficiency  
(19V, 40W)  
QR current  
FSB127H  
PWM + 700V MOSFET  
Single-chip solution  
mode solution  
85+% efficiency, 19V  
15W  
≥100W range  
40mW standby  
TM  
FAN302HL  
mWSaver Technology  
8mW standby  
15W chargers  
FSQ500  
PSR for CC & SSR for CV  
mWSaver Technology  
FSL116HR  
FSL206MR  
Integrated 650V  
SenseFET  
Integrated 700V SenseFET  
6.5W adapter power  
150mW standby  
70+% efficiency  
TM  
Engineering  
Connections  
10mW  
30mW  
100mW  
300mW  
500mW  
STANDBY POWER CONSUMPTION (230VAC  
)
Power Supply WebDesigner  
Blog and Podcast  
Save engineering time and costs with  
Power Supply WebDesigner—without  
being a power expert. Find out how  
in our blog, or listen to our podcast, at  
www.fairchildsemi.com/engineeringconnections.  
N-CHANNEL PowerTrench® MOSFET  
Improve Battery Life, Reduce Space  
in Li-Ion Battery Pack  
Advantages  
For mobile applications that use a one-cell Li-Ion battery pack, Fairchild’s  
FDMB2307NZ dual N-channel PowerTrench® MOSFET, addresses design  
space and efficiency challenges. The device enables bidirectional current flow,  
and by using advanced PowerTrench processes, the FDMB2307NZ provides  
high power density and a maximum RSS(ON) of 16.5mΩ at VGS = 4.5V, ID = 8A.  
This results in lower conduction losses, lower voltage drop, less power  
dissipation and increased overall design efficiency when compared to  
competitive solutions.  
•ꢀ Providesꢀlowerꢀconductionꢀꢀ  
ꢀ losses,ꢀmaxꢀRSS(ON)ꢀ=ꢀ16.5mΩꢀꢀ  
ꢀ atꢀVGSꢀ=ꢀ4.5V,ꢀIDꢀ=ꢀ8A  
•ꢀ 40%ꢀsmallerꢀthanꢀlegacyꢀꢀ  
ꢀ solutions  
•ꢀ MicroFETꢀ2mmꢀxꢀ3mm2  
•ꢀ RoHSꢀCompliant  
Designers will also benefit from excellent thermal performance, resulting in  
cooler system operation, further increasing efficiency. The device’s small pack-  
age size (MicroFET 2mm x 3mm2) provides one of the smallest MLP solutions  
available—40% smaller than existing legacy solutions—saving significant board  
space in their design.  
•ꢀ HBMꢀESDꢀprotectionꢀ>2kV  
Applications  
•ꢀ Ultraportableꢀapplicationsꢀ  
80  
PULSE DURATION = 80
DUTY CYCLE = 0.5% MAX  
For more information, please visit:  
www.fairchildsemi.com/pf/FD/FDMB2307NZ.html  
60  
IS1S2 = 8 A  
40  
J = 150 oC  
T
20  
J = 25 oC  
T
0
1.0  
1.5  
2.0  
2.5  
3.0  
3.5  
4.0  
4.5  
VGS, GATE TO SOURCE VOLTAGE (V)  
On Resistance vs. Gate to Source Voltage  
RSS(ON)  
max  
RSS(ON)  
max  
RSS(ON)  
max  
Qg  
typ  
nc  
ESD  
HBM  
(kV)  
Product  
Number  
I max PD max  
Package  
(mm)  
D (A)  
(W)  
@ 4.5V @ 4.2V/ @ 3.1V/  
/mΩ  
mΩ  
mΩ  
FDMB2307NZ  
9.7  
2.2  
16.5  
18  
21  
18  
>2  
2 x 3 x 0.8  
ENGINEERING CONNECTIONS  
Flyback Design and Simulation in Minutes  
Faster power supply designs—whether you are a power  
supply expert or not—are now a reality with Fairchild’s  
Power Supply WebDesigner (PSW). is online design  
and simulation tool takes your specifications and  
provides a complete Primary-Side Regulated (PSR)  
Flyback Converter or Secondary-Side Regulated (SSR)  
Flyback Converter design.  
Applications:  
•ꢀSMPSꢀforꢀSTB,ꢀDVD,ꢀDVCDꢀplayers  
•ꢀSMPSꢀforꢀhomeꢀappliances,ꢀprinter,ꢀscanner,ꢀ  
ꢀ facsimile,ꢀLCDꢀmonitor,ꢀLCDꢀTV  
•ꢀBatteryꢀchargerꢀforꢀcellularꢀphones,ꢀcordlessꢀphones,ꢀ  
digital cameras, power tools  
Power Supply WebDesigner Blog and Podcast  
Save engineering time and costs with Power Supply  
WebDesigner—without being a power expert. Read our  
full blog, or listen to our podcast to learn more:  
www.fairchildsemi.com/engineeringconnections.  
For more information, visit:  
www.fairchildsemi.com/powersupplywebdesigner.  
Engineering Connections offers blogs, videos,  
online seminars and podcasts that help designers  
solve their design challenges and speed time-  
to-market. Get the latest information at  
You get a schematic, simulated verification, and bill of  
material costs in minutes. Fine-tune design parameters  
without a bench prototype, swap component choices  
and perform detailed simulations and analyses—all  
with the ability to confidentially save your design for  
future reference.  
www.fairchildsemi.com/engineeringconnections.  
Automatic Design  
Enter Basic Input/Output  
Components  
Design  
Report Generated  
System Requirements  
Selected  
Simulated  
Schematic and bill of  
material including auto  
selection from preferred  
distributor's catalog  
Choose  
Fine-tune design  
without building  
bench prototype  
Design requirements  
matched to  
Fairchild's products  
Advanced Design  
Enter Detailed  
System Requirements  
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For datasheets, application notes, samples and more, please visit: www.fairchildsemi.com  
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ꢀ BridgeꢀRectifiers  
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Voltage Suppressors (TVS)  
Diacs  
•ꢀ VideoꢀFilterꢀDrivers  
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PFC + PWM Combination (Combo)  
Controllers  
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Signaling, Sensing & Timing  
•ꢀ Signaling,ꢀSensingꢀ&ꢀTiming  
•ꢀTiming  
Off-Line and Isolated DC-DC  
ꢀ Rectifiers  
AC-DC Linear Regulators  
Flyback & Forward  
PWM Controllers  
ꢀ SchottkyꢀDiodesꢀ&ꢀRectifiers  
Small Signal Diodes  
Zener Diodes  
Switches  
•ꢀAccessoryꢀSwitchesꢀ  
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•ꢀAudioꢀJackꢀDetectionꢀSwitches  
•ꢀAudioꢀSwitches  
•ꢀBusꢀSwitches  
Infrared  
•ꢀ Flybackꢀ&ꢀForwardꢀ  
•ꢀ EmittingꢀDiodes  
IGBTs  
PWM Controllers with  
Integrated MOSFET  
•ꢀ PhotoꢀSensors  
Discrete IGBTs  
•ꢀ PhotoꢀSensorꢀ–ꢀTransistors  
•ꢀ AmbientꢀLightꢀSensors  
•ꢀ ReflectiveꢀSensors  
•ꢀ OpticalꢀInterruptꢀSwitches  
•ꢀ IgnitionꢀIGBTs  
•ꢀ LLCꢀResonantꢀ&ꢀAsymmetricꢀHalfꢀꢀ  
Bridge PWM Controllers  
MOSFETs  
•ꢀMIPIꢀSwitches  
•ꢀ LLCꢀResonantꢀ&ꢀAsymmetricꢀ  
Half Bridge PWM Controllers  
with Integrated MOSFETs  
Discrete MOSFETs  
•ꢀMultimediaꢀSwitches  
•ꢀUSBꢀSwitches  
Level-Shifted Load Switches  
Phototransistor Optocouplers  
•ꢀ IsolatedꢀErrorꢀAmplifier  
•ꢀ PhototransistorꢀOutputꢀ-ꢀ  
DC Sensing Input  
•ꢀ PhototransistorꢀOutputꢀ-ꢀ  
AC Sensing Input  
•ꢀ PhotoꢀDarlingtonꢀOutput  
•ꢀ MOSFET/SchottkyꢀCombos  
•ꢀVideoꢀSwitches  
•ꢀ Primary-SideꢀRegulationꢀ  
CV/CC Controllers  
Transistors  
LOGIC  
BJTs  
•ꢀ Primary-SideꢀRegulationꢀCV/CC  
Controllers with Integrated MOSFET  
•ꢀ StandardꢀPWMꢀControllers  
•ꢀ Supervisory/MonitorꢀICs  
•ꢀ SynchronousꢀRectifierꢀControllers  
Buffers, Drivers, Transcievers  
•ꢀ Buffersꢀ  
Darlingtons  
Digital/Bias-Resistor Transistors  
JFETs  
•ꢀ LineꢀDriversꢀ  
•ꢀ Transceiversꢀ  
RF Transistors  
TRIAC Driver Optocouplers  
•ꢀ RandomꢀPhaseꢀTRIACꢀDriver  
•ꢀ ZeroꢀCrossingꢀTRIACꢀDriver  
Small Signal Transistors  
Flip Flops, Latches, Registers  
•ꢀ Countersꢀ  
Non-Isolated DC-DC  
Advanced Load Switches  
Charge-pump Converters  
•ꢀ FlipꢀFlopsꢀ  
Advanced Current Limited  
Load Switches  
Slew Rate Controlled Load Switches  
DrMOS FET plus Driver  
Multi-Chip Modules  
Step-down Controllers  
(External Switch)  
•ꢀ Invertersꢀ  
AUTOMOTIVE PRODUCTS  
•ꢀ Latchesꢀ  
Automotive Discrete Power  
•ꢀ AutomotiveꢀIgnitionꢀIGBTsꢀ  
•ꢀ AutomotiveꢀIGBTsꢀ  
•ꢀ Registersꢀ  
Battery Management  
Gates  
Step-down Regulators,  
Non-Synchronous  
Battery Charger ICs  
•ꢀ ANDꢀGatesꢀ  
•ꢀ NANDꢀGatesꢀ  
•ꢀ ORꢀGatesꢀ  
•ꢀ AutomotiveꢀN-ChannelꢀMOSFETsꢀ  
•ꢀ AutomotiveꢀP-ChannelꢀMOSFETsꢀ  
•ꢀ AutomotiveꢀRectifiersꢀ  
Ground Fault Interrupt  
(Integrated Switch)  
Ground Fault Interrupt  
(GFI) Controllers  
Step-down Regulators, Synchronous  
(Integrated Switch)  
•ꢀ NORꢀGatesꢀ  
•ꢀ SchmittꢀTriggersꢀ  
•ꢀ ConfigurableꢀGatesꢀ  
Automotive High Voltage Gate Drivers  
(HVICs)  
•ꢀ AutomotiveꢀHighꢀVoltageꢀ  
Gate Drivers (HVICs)  
Step-up Regulators  
(Integrated Switch)  
Backlight Unit (BLU)  
CCFL Inverter ICs  
Multiplexer / Demultiplexer /  
Decoders  
MOSFET and IGBT Gate Drivers  
SIGNAL PATH ICs  
3-Phase Drivers  
High Side Smart Switches  
•ꢀ HighꢀSideꢀSmartꢀSwitches  
•ꢀ Decodersꢀ  
Amplifiers & Comparators  
•ꢀ Comparators  
Half-Bridge Drivers  
High- & Low-Side Drivers  
High-Side Drivers  
Low-Side Drivers  
•ꢀ Demultiplexersꢀ  
•ꢀ Multiplexersꢀ  
•ꢀ OperationalꢀAmplifiers  
•ꢀ Multivibratorsꢀ  
Audio Amplifiers  
Voltage Level Translators  
•ꢀ AudioꢀSubsystems  
Voltage Regulators  
Voltage Level Translators  
•ꢀ AudioꢀHeadphoneꢀAmplifiers  
•ꢀ DigitalꢀMicrophoneꢀAmplifiers  
LDOs  
Positive Voltage Linear Regulators  
Negative Voltage Linear Regulators  
Shunt Regulators  
Battery Protection ICs  
•ꢀ BatteryꢀProtectionꢀICs  
•ꢀ VoltageꢀDetector  
•ꢀ VoltageꢀStabilizer  
•ꢀ VoltageꢀtoꢀFrequencyꢀConverter  
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Fairchild Semiconductor or their respective owners. For a listing of Fairchild Semiconductor  
trademarks and related information, please see: www.fairchildsemi.com/legal  
Lit code: 970042-001 © 2012 Fairchild Semiconductor. All Rights Reserved.  
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