FEBFAN6604MR_CH11U65A Evaluation Board. Fairchild Computing Notebook Adapter. Featured Fairchild Product: FAN6604MR

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1 User Guide for FEBFAN6604MR_CHU65A Evaluation Board Fairchild Computing Notebook Adapter Featured Fairchild Product: FAN6604MR Direct questions or comments about this evaluation board to: Worldwide Direct Support Fairchild Semiconductor.com 05 Fairchild Semiconductor Corporation FEBFAN6604MR_CHU65A Rev..

2 Table of Contents. Introduction Evaluation Board Specifications Photographs Printed Circuit Board Schematic Bill of Materials Transformer and Winding Specifications Test Conditions & Test Equipment Performance of Evaluation Board Input Power at No Load Condition Startup Time Hold-up Time Input Current DC Output Rising Time Dynamic Response Output Ripple & Noise VDD Voltage Level Overload Protection (OLP) Voltage Stress on MOSFET & Rectifiers Line & Load Regulation Efficiency Over-Current Protection (OCP) Conducted Electromagnetic Interference (EMI) Surge Test ESD Test Revision History Fairchild Semiconductor Corporation FEBFAN6604MR_CHU65A Rev..

3 . Introduction This user guide supports the evaluation kit for the FAN6604MR. It should be used in conjunction with the FAN6604MR datasheets as well as Fairchild s application notes and technical support team. Please visit Fairchild s website at This document is an engineering report describing a 65 W power supply using FAN6604MR PWM controller. This power supply is targeted towards power adapters and open-frame for consumer products. With the internal high-voltage startup circuitry, the power loss due to bleeding resistors is also eliminated. To further reduce power consumption, FAN6604MR is manufactured by using the BiCMOS process. This allows an operating current of.7 ma and low startup current of 30 μa. Built-in synchronized slope compensation ensures the stability of Peak Current Mode control. 05 Fairchild Semiconductor Corporation 3 FEBFAN6604MR_CHU65A Rev..

4 . Evaluation Board Specifications The data for Table was measured with 90 V AC ~64 V AC line input at an ambient temperature of 5 C. Table. Summary of Features and Performance Specification Min. Max. Unit Input Voltage V AC Input Frequency Hz Description Design Spec. Test Results Comments Output Voltage 8.05 ~ 9.95 V ±0.08% Output Current Protection 4. ~ 5. A ~ A CV<± 5% Regulation CC<±5% Regulation Input Power < 00 mw 90 mw 64 V AC Ripple < 50 mvp-p 0 mvp-p (Max.) Measured at PCB End Startup Time < 3 S.3 S Full Load Dynamic > 8.5 V 8.83 V Measure at PCB End Voltage Stress 600 V 584 V 50 V 4 V 64 V AC Efficiency Avg. > 87% 87.9 % at 5 V AC 88.5 % at 30 V AC Meets Energy Star v.0 Conducted EMI Under 6 db 3 db Margin Meets CISPERB/EN550B/IE C950/UL950 Class II 05 Fairchild Semiconductor Corporation 4 FEBFAN6604MR_CHU65A Rev..

5 3. Photographs Figure. Photograph (W x L: 40 x 03 mm) Top View Figure. Photograph (W x L: 40 x 03 mm) Bottom View Figure 3. Photograph (H:7 mm) Side View 05 Fairchild Semiconductor Corporation 5 FEBFAN6604MR_CHU65A Rev..

6 4. Printed Circuit Board Figure 4. Top View Figure 5. Bottom View 05 Fairchild Semiconductor Corporation 6 FEBFAN6604MR_CHU65A Rev..

7 C B L R C B 5. Schematic D A Rev. Desc ription DAT E SHEET of Approved By 0 INIT IAL SIZE A3 Reviewed By SEMICONDUCTOR FAIRCHILD T itle Doc.No. Prepared By HS/.5X44L HS/3X70 R/0 R/08 05 A R4 R/3 0K/0 805 JP5 N 4 U4 U/TL43 N 7 HS HS JP3 N6 G ND JP4 JP/.5 mm R/0 R/08 05 K 3 R/4.7 K/08 05 N 5 C0 R/. nf/50 V/ 06 R/ 00K/080 5 JP/7.5mm JP/5 mm R5 N 6 R3 JP G ND V BU S JP R/. K/ 06 Rx R/6.8 K/08 05 VO U3 U/FOD8 7A N 3 N 4 4 R R/0 R/ 06 C/ nf/50 V/08 05 T R/0 0K TR C/ nf/50 V/08 05 R C3 R/5.6 K / 06 N 8 C7 U/FAN66 04MR R3 HV RT HV RT R6D R6C R6B R6A NC SE NS E R/ 00R/0 6 R5 C9 C/ 0p F/0 6 SE NS E FB V DD G ND G AT E R/0.5 R/ 06 R/0.5 R/ 06 R/. R/ 06 R/. R/ 06 N FB V DD FB L/bead core G AT E U D/IN493 5 C8 C/ uf/5 0V N 0 D /IN D R/4 7K/ 06 D6 Q /FQ P 8N 6 0C 3 R/ 0R/ 06 R6 N9 R4 N Q R/0 R/ 06 N 9 N7 R D4 D/FR 07 N8 R/ 00K / 06 RB RD R/NC N6 N 5A N 4A R8 R/NC R0 R/NC R/ 00K / 06 飛線 V O- TX/RM-0 RA RC R/NC Y C/ nf /50 V R7 R/NC R9 R/NC N N 3 - C4 C7 C5 CN/ pin AC inlet C/ 0u F/40 0V C6 CN C XC/NC F/4A/50 V C/ 0nF 3 /500 V Q Q/MBR0 50CT C/ 000 uf / 5V C/4 70u F/5 V C/ 0nF /50V / 06 R8 R/NC C6 C3 D5 TVS/P6 KE50 A L/.5u H 3 4 N X C/0.3 3uF /75 V 4 R/ M/0 6 N3 N5 C 4 L3 飛線 VO L4 L/SHORT V O+ R0 VZ VZ/NC V BU S T + + R9 N R/ M/ 06 BD BD/KBP06 M F L L/SHORT N N L L/UU 5.5(9mH) N4 R/4 7R/ 06 R7 C/ nf/0 0V/ 06 C N 0 R/4 7R/ 06 R6 N 9 VO+ VO- D A Figure 6. Evaluation Board Schematic 05 Fairchild Semiconductor Corporation 7 FEBFAN6604MR_CHU65A Rev..

8 6. Bill of Materials Part Specification Package Qty. No. JUMPER WIRE 0.8ψ(mm) REEL 7 L, L4, JP, JP, JP3 Chip Resistor Ω ±5% REEL JP4 Chip Resistor K7 Ω ±% REEL R5 Chip Resistor K8 Ω ±5% REEL Rx Chip Resistor KΩ ±5% REEL R4 Chip Resistor KΩ ±5% REEL R3 Chip Resistor 06 0 Ω ±5% REEL R, R Chip Resistor 06 0 Ω 5 ±5% REEL R6C, R6D Chip Resistor 06 Ω ±5% REEL R6A, R6B Chip Resistor 06 0 Ω ±5% REEL R4 Chip Resistor Ω ±5% REEL R6, R7 Chip Resistor Ω ±5% REEL R5 Chip Resistor 06 K Ω ±5% REEL R Chip Resistor 06 5K6 Ω ±% REEL R3 Chip Resistor KΩ ±5% REEL R6 Chip Resistor KΩ ±5% REEL RA, RB Chip Resistor 06 MΩ ±5% REEL R9, R0 NTC 5ψ Ω REEL TR Ceramic Capacitor 03P 500 V +80/-0% REEL C MLCC X7R ±0% 0P 50 V REEL C3, C7 06 MLCC X7R ±0% 0P 00 V REEL C 06 MLCC X7R ±0% 03P 50 V REEL C3 06 MLCC X7R ±0% P 50 V REEL C9 06 MLCC X7R ±0% P 50 V REEL C0 Electrolytic Capacitor µ 50 V 05 C JACKCON C8 Electrolytic Capacitor 0 µ 400 V 05 C NCC C5 Electrolytic Capacitor 470 µ 5 V 05 C NCC C6 Electrolytic Capacitor 000 µ 5 V 05 C NCC C4 X Capacitor 0.33 µ 75 V ±0% REEL C Y Capacitor P 50 V ±0% REEL C7 Inductor.7 µh SUMIDA (74M-43) L3 Common Choke 9 mh SUMIDA (049-T44) L Bead Core C8B 3.5*3.*.0+T MCH004 (REEL) FB Bead Core C8B 3.5*3.*.0 MCH0040 D4, C7 Continued on the following page 05 Fairchild Semiconductor Corporation 8 FEBFAN6604MR_CHU65A Rev..

9 Part Specification Package Qty. No. Transformer RM-0 50 µh SUMIDA (PS5-00) T Diode A/0 V N4935 (DO-4) D Fast Diode A/000 V FR07 D4 Diode A/000 V N4007 D6 Bridge A/600 V KBP06M (Fairchild) BD Schottky Diode 0 A/50 V MBR050CT (TO-0) Q REGULATOR TL43ACZ-AP ±% TO-9 U4 MOSFET 8 A/600 V FQP8N60C (TO-0) Q IC FOD87A DIP U, U3 FUSE GLASS 50V4A QUICK REEL F TVS P6KE50A REEL D5 INLET P 90 CN PWM Controller IC SOIC FAN6604MR 8-pin SOP U Heat Sink 70 x 0 x 3.0 mm MCH0534 HS Heat Sink 0 x 40 x 8 x.5 mm MCH0555 HS CANADA Silicone ES48W 333 ml 0 PCB FCS040 REV 0 CN, CN3, CNA, CN3A 05 Fairchild Semiconductor Corporation 9 FEBFAN6604MR_CHU65A Rev..

10 7. Transformer and Winding Specifications Core: RM-0 Bobbin: RM-0 Figure 7. Transformer Specifications & Construction 05 Fairchild Semiconductor Corporation 0 FEBFAN6604MR_CHU65A Rev..

11 Table. Winding Winding Specifications Terminal Isolation Layer Winding Turns Start Pin End Pin Turns N mm* 9 3 Copper Shielding (E) Open 4 Copper Foil 0.05 mm. 3 N mm* 7 N S F 0.9 mm* 8 3 Copper Shielding (E) Open 4 Copper Foil 0.05 mm. 3 N mm* 9 Table 3. Electrical Characteristics Pin Specification Remark Inductance µh ±0% khz, V Effective Leakage µh Max. Short Other Pin 05 Fairchild Semiconductor Corporation FEBFAN6604MR_CHU65A Rev..

12 8. Test Conditions & Test Equipment Table 4. Test Conditions & Test Equipment Evaluation Board # FEBFAN6604MR_CHU65A Test Date Test Temperature 5 Test Equipments AC Power Source: 6800 AC POWER SOURCE Electronic Load: Chroma and 630 Power Meter : WT0 Oscilloscope : LeCory 4Xs-A 9. Performance of Evaluation Board 9.. Input Power at No Load Condition Test Condition: Measure the input power at three output voltage level at no load condition. Table 5. Test Results Input Voltage Input Wattage Output Voltage 90 V AC / 60 Hz 44 mw 9. V 5 V AC / 60 Hz 47 mw 9. V 30 V AC / 50 Hz 79 mw 9. V 64 V AC / 50 Hz 90 mw 9. V Figure 8. Input Wattage Curve 05 Fairchild Semiconductor Corporation FEBFAN6604MR_CHU65A Rev..

13 9.. Startup Time Test Condition: Measure the time from AC plug-in to nominal output voltage build-up at full load condition. Table 6. Test Results Input Voltage Startup Time Specification 90 V AC / 60 Hz.300 s <3 sec 64 V AC / 50 Hz s Waveform: Figure 9. C[V IN], C4[Vo], 90 V AC / 60 Hz Figure 0. C[V IN], C4[Vo]. 64 V AC / 50 Hz 9.3. Hold-up Time Test Condition: Set output at maximum load. Measure the time interval between AC off and output voltage falling to lower limit of rated value. The AC waveform should be off at zero degree. Table 7. Test Results Waveforms: Input Voltage Hold-up Time Specification 90 V AC / 60 Hz 8.5 ms 64 V AC / 50 Hz 9.0 ms Figure. C[V IN], C4[V O], 90 V AC / 60 Hz Figure. C[V IN], C4[V O], 64 V AC / 50 Hz 05 Fairchild Semiconductor Corporation 3 FEBFAN6604MR_CHU65A Rev..

14 9.4. Input Current Test Condition: Measure the AC input current at maximum output loading, where the maximum input power occurs. Table 8. Test Results Input Voltage Input Current Specification 90 V AC / 60 Hz.68 A 64 V AC / 50 Hz A < A 9.5. DC Output Rising Time Test Condition: Measure the time interval between 0% to 90% of output voltage during startup. Table 9. Test Results Input Voltage Minimum Load Full Load Specification 90 V AC/60 Hz 5.38 ms 9.40 ms <0 ms 64 V AC/50 Hz 5. ms 8.86 ms Waveforms: Figure 3. C4[V O], 90 V AC/60 Hz, Minimum Load Figure 4. C4[V O], 90 V AC/60 Hz, Full Load Figure 5. C4[V O], 64 V AC/50 Hz, Minimum Load Figure 6. C4[V O] 64 V AC/50 Hz, Full Load 05 Fairchild Semiconductor Corporation 4 FEBFAN6604MR_CHU65A Rev..

15 9.6. Dynamic Response Test Condition Dynamic loading (0%~00%), 50% duty cycle (5 ms),.5 A/µsec rise/fall time. Measured at PCB end. Table 0. Test Results Waveforms: Input Voltage Overshoot Undershoot Specification 5 V AC/60 Hz 57 mv 63 mv 30 V AC/50 Hz 4 mv 44 mv > V Figure 7. C4[V O], 5 V AC / 60 Hz 9.7. Output Ripple & Noise Figure 8. C4[V O], 30 V AC / 50 Hz Test Condition Measure the output voltage ripple at full load condition at EVB end with 0 µf electrolytic capacitor in parallel with 0. µf MLCC. Table. Test Results Input Voltage Full Load Specification 90 V AC / 60 Hz 0 mv P-P 5 V AC / 60 Hz 7 mv P-P 30 V AC / 50 Hz 56 mv P-P <50 mv P-P 64 V AC / 50 Hz 48 mv P-P Waveforms: Figure 9. C4[V O], 90 V AC / 60 Hz Figure 0. C4[V O], 64 V AC / 50 Hz 05 Fairchild Semiconductor Corporation 5 FEBFAN6604MR_CHU65A Rev..

16 9.8. VDD Voltage Level Test Condition Measure VDD voltage at minimum, maximum loading and close over-current protection point. Table. Test Results with Input Power Input Voltage Minimum Load Maximum Load Near OCP Specification 90 V AC / 60 Hz 4.7 V 9.37 V 0.8 V 64 V AC / 50 Hz 4.40 V 8.53 V 9.63 V < W 9.9. Overload Protection (OLP) Test Condition: Increase output loading gradually to trigger OLP and measure the debounce time. Table 3. Test Results Input Voltage Minimum Load Maximum Load Specification 90 V AC / 60 Hz 54.8 ms 54.8 ms 64 V AC / 50 Hz 53 ms 55. ms Waveforms: Figure. C[FB], C[GATE], C3[Vo], C4[V DD], 90 V AC/60 Hz Figure. C[FB], C[GATE], C3[Vo], C4[V DD], 64 V AC/50 Hz 05 Fairchild Semiconductor Corporation 6 FEBFAN6604MR_CHU65A Rev..

17 9.0. Voltage Stress on MOSFET & Rectifiers Test Condition Measure the voltage and current stress on MOSFET and secondary rectifier under below the conditions where the maximum voltage stress occurs. Table 4. Test Results Normal Short Circuit Waveforms: 90 V AC / 60 Hz 64 V AC / 50 Hz Full Load Full Load MOSFET 36 V 584 V Rectifier 66.4 V 7 V MOSFET 36 V 584 V Rectifier 64.9 V 4 V Specification V DS<650 V V D<50 V Figure 3. C[V DS], C[V AK], 90 V AC/60 Hz, Full Load Output Short Figure 4. C[V DS], C[V AK], 64 V AC/50 Hz, Full Load Output Short 9.. Line & Load Regulation Test Condition Measure the line and load regulation according universal input and minimum to maximum loading. Table 5. Test Results with CC Input Voltage Output Voltage at Maximum Loading Output Voltage at Minimum Loading Load Regulation 90 V AC / 60 Hz 9.44 V 9.6 V 0.08% 5 V AC / 60 Hz 9.46 V 9.6 V 0.07% 3 V AC / 60 Hz 9.46 V 9.6 V 0.07% 80 V AC / 50 Hz 9.46 V 9.6 V 0.07% 30 V AC / 50 Hz 9.48 V 9.6 V 0.07% 64 V AC / 50 Hz 9.48 V 9.6 V 0.07% Line Regulation 0.0% 0.0% Specification < ±5% 05 Fairchild Semiconductor Corporation 7 FEBFAN6604MR_CHU65A Rev..

18 9.. Efficiency Test Condition Measure the efficiency at universal input voltage and maximum loading. Table 6. Test Results Input Voltage 90 V AC / 60 Hz 5 V AC / 60 Hz 30 V AC / 50 Hz 64 V AC / 50 Hz Output Voltage Output Current Input Wattage Efficiency 9.84 V 0.85 A 8.68 W 87.9% 9.76 V.69 A W 87.4% 9.7 V.546 A W 86.48% 9.6 V 3.46 A 77.0 W 84.99% 9.7 V A 8.45 W 88.34% 9.70 V.704 A W 88.9% 9.60 V.545 A W 87.78% 9.56 V 3.46 A W 87.30% 9.50 V A 8.44 W 88.7% 9.56 V.704 A W 88.46% 9.50 V.544 A 55.0 W 88.56% 9.40 V 3.44 A W 88.85% 9.50 V A 8.53 W 87.74% 9.50 V.70 A W 88.3% 9.48 V.544 A W 88.5% 9.44 V 3.44 A W 88.38% Average Efficiency 86.55% 87.90% 88.5% 88.% 30V AC 50Hz (88.5% avg) 5V AC 60Hz (87.90% avg) Figure 5. 4 Points Efficiency Curve 05 Fairchild Semiconductor Corporation 8 FEBFAN6604MR_CHU65A Rev..

19 9.3. Over-Current Protection (OCP) Test Condition Increase output loading current gradually; and measure the output maximum current. Table 7. Test Results Input Voltage Over-Current Protection Specification 90 V AC / 60 Hz A 5 V AC / 60 Hz A 30 V AC / 50 Hz 4.75 A 64 V AC / 50 Hz A Figure 6. Output Current Protection Curve 05 Fairchild Semiconductor Corporation 9 FEBFAN6604MR_CHU65A Rev..

20 9.4. Conducted Electromagnetic Interference (EMI) Test Condition Frequency Range: 50 khz 30 MHz, Probe: -Line-LISN ENV6 Signal Path: Receiver--Line-LISN ENV6, Detectors: Average Output Load: 5.55 Test Results: R B W 9 k H z R B W 9 k H z M T 0 m s M T 0 m s A t t 0 d B A t t 0 d B dbµv 00 M H z 0 M H z dbµv 00 M H z 0 M H z L I M I T C H E C K F A I L UNCAL 90 L I N E E N A F A I L UNCAL 90 PK PK CLRWR 80 CLRWR 80 AV AV CLRWR 70 CLRWR 70 E N Q E N Q E N A E N A k H z 3 0 M H z 5 0 k H z 3 0 M H z Date:.JUN.0 05:05:56 Date:.JUN.0 05:3:44 Figure 7. Line: 5 V AC / 60 Hz Figure 8. Neutral: 5 V AC / 60 Hz R B W 9 k H z R B W 9 k H z M T 0 m s M T 0 m s A t t 0 d B A t t 0 d B dbµv 00 M H z 0 M H z dbµv 00 M H z 0 M H z UNCAL 90 UNCAL 90 PK CLRWR 80 PK CLRWR 80 AV CLRWR 70 E N Q 60 E N A 50 AV CLRWR 70 E N Q 60 E N A k H z 3 0 M H z k H z 3 0 M H z Date:.JUN.0 05:5:5 Date:.JUN.0 05:: Figure 9. Line: 30 V AC / 50 Hz Figure 30. Neutral: 30 V AC / 50 Hz 05 Fairchild Semiconductor Corporation 0 FEBFAN6604MR_CHU65A Rev..

21 9.5. Surge Test Test Condition 30 V AC / 50 Hz, maximum load. N-PE / L-PE: (Positive & Negative) kv ~ 4 kv, Phase 0, 90, 80, 70. L-N: (Positive & Negative) 500 V ~ kv, Phase 0, 90, 80, 70. Table 8. QC.0 DP/DN Section Table L-PE N-PE L-N Result ±4.4 kv ±4.4 kv ± kv 9.6. ESD Test Test Condition: 30 V AC / 50 Hz, maximum load. Air discharge: (Positive & Negative) 8 kv ~ 6 kv, 0 times per level. Contact discharge: (Positive & Negative) 4 kv ~ 8 kv, 0 times per level. Table 9. Test Results Air Discharge Contact Discharge Result ±6.5 kv ±8.8 kv 05 Fairchild Semiconductor Corporation FEBFAN6604MR_CHU65A Rev..

22 0. Revision History Rev. Date Description.0 January 05 Initial Release. June 05 Table,, and 3 updated, BOM updated, Figure 7 replaced. WARNING AND DISCLAIMER Replace components on the Evaluation Board only with those parts shown on the parts list (or Bill of Materials) in the Users Guide. Contact an authorized Fairchild representative with any questions. This board is intended to be used by certified professionals, in a lab environment, following proper safety procedures. Use at your own risk. The Evaluation board (or kit) is for demonstration purposes only and neither the Board nor this User s Guide constitute a sales contract or create any kind of warranty, whether express or implied, as to the applications or products involved. Fairchild warrantees that its products meet Fairchild s published specifications, but does not guarantee that its products work in any specific application. Fairchild reserves the right to make changes without notice to any products described herein to improve reliability, function, or design. Either the applicable sales contract signed by Fairchild and Buyer or, if no contract exists, Fairchild s standard Terms and Conditions on the back of Fairchild invoices, govern the terms of sale of the products described herein. DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION, OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLICY FAIRCHILD S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein:. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, or (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user.. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. ANTI-COUNTERFEITING POLICY Fairchild Semiconductor Corporation's Anti-Counterfeiting Policy. Fairchild's Anti-Counterfeiting Policy is also stated on our external website, under Sales Support. Counterfeiting of semiconductor parts is a growing problem in the industry. All manufacturers of semiconductor products are experiencing counterfeiting of their parts. Customers who inadvertently purchase counterfeit parts experience many problems such as loss of brand reputation, substandard performance, failed applications, and increased cost of production and manufacturing delays. Fairchild is taking strong measures to protect ourselves and our customers from the proliferation of counterfeit parts. Fairchild strongly encourages customers to purchase Fairchild parts either directly from Fairchild or from Authorized Fairchild Distributors who are listed by country on our web page cited above. Products customers buy either from Fairchild directly or from Authorized Fairchild Distributors are genuine parts, have full traceability, meet Fairchild's quality standards for handling and storage and provide access to Fairchild's full range of up-to-date technical and product information. Fairchild and our Authorized Distributors will stand behind all warranties and will appropriately address any warranty issues that may arise. Fairchild will not provide any warranty coverage or other assistance for parts bought from Unauthorized Sources. Fairchild is committed to combat this global problem and encourage our customers to do their part in stopping this practice by buying direct or from authorized distributors. EXPORT COMPLIANCE STATEMENT These commodities, technology, or software were exported from the United States in accordance with the Export Administration Regulations for the ultimate destination listed on the commercial invoice. Diversion contrary to U.S. law is prohibited. U.S. origin products and products made with U.S. origin technology are subject to U.S Re-export laws. In the event of re-export, the user will be responsible to ensure the appropriate U.S. export regulations are followed. 05 Fairchild Semiconductor Corporation FEBFAN6604MR_CHU65A Rev..

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