XC6201 TOREX | Alldatasheet

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Technical content

The XC6201 series are highly precise, low power consumption, positive voltage regulators manufactured using CMOS and laser trimming technologies. The series provides large currents with a significantly small dropout voltage. The XC6201 consists of a current limiter circuit, a driver transistor, a precision reference voltage and an error amplifier. Output voltage is selectable in 0.1V steps between 1.3V ~ 6.0V. SOT-25 (250mW), SOT-89 (500mW) and TO-92 (300mW) packages are available. ˙(FOFSBM%FTDSJQUJPO Maximum Output Current : 250mA (TYP.) Dropout Voltage : 0.16V @ 100mA Maximum Operating Voltage : 10V Output Voltage Range : 1.3V ~ 6.0V (selectable in 0.1V steps) Highly Accurate : ± 2% Low Power Consumption : TYP 2.0 µA Operational Temperature Range : -40°C ~ 85°C Ultra Small Packages : SOT-25 (250mW), SOT-89 (500mW), TO-92 (300mW) Capacitors can be Tantalum or Ceramic G Mobile phones G Cordless phones G Cameras, video recorders G Portable games G Portable AV equipment G Reference voltage G Battery powered equipment ˙'FBUVSFT ˙"QQMJDBUJPOTN CMOS Low Power Consumption N Dropout Voltage : 0.16V @ 100mA, 0.40V @ 200mA N Maximum Output Current : 250mA (VOUT=5.0V, TYP) N Highly Accurate : ± 2% N Output Voltage Range : 1.3V ~ 6.0V N SOT-25 / SOT-89 / TO-92 Package N Capacitors can be Tantalum or Ceramic 9$1 *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 5PQS 7*/ 7065 744 µ' UBOUBMVN µ' UBOUBMVN ˙5ZQJDBM"QQMJDBUJPO$JSDVJU ˙5ZQJDBM1FSGPSNBODF $IBSBDUFSJTUJD 4@9$1. ϖʔδ

9$4FSJFT 186 ˙1JO$POGJHVSBUJPO ˙1JO"TTJHONFOU 405 5017*&8 744 7*/7065 405 5017*&8 7447*/ 7065 405 40550ʢ5ʣ 7 065 0VUQVU 7 44 (SPVOE 7 */ 1PXFS*OQVU ʢ/$ʣ /P$POOFDUJPO ʵ ʵ ʢ/$ʣ /P$POOFDUJPO 1*//6.#&3 50ʢ-ʣ ʵ ʵ 123 50ʢ55ZQFʣ ʢ5017*&8ʣ 744 7*/7065 ˙1SPEVDU$MBTTJGJDBUJPO G Ordering Information 9$1 erty ˢ q ˢ w 0VUQVU7PMUBHF"DDVSBDZ FHʶ ʶ . 1BDLBHF5ZQFɿ405 1 ɿ405 ʙ 3 &NCPTTFE5BQF4UBOEBSE'FFE 0VUQVU7PMUBHF FH7 ɹɹ7 - &NCPTTFE5BQF3FWFSTF'FFE ) 1BQFS5ZQFʢ50ʣ # #BHʢ50ʣ r t y e q *OEJDBUFTUIF QSPEVDUOVNCFS w 1 5ZQFPG SFHVMBUPSQJO ɿ50ʢ4UBOEBSEʣ ɿ50ʢ$VTUPNQJODPOGJHVSBUJPOʣ 50 -5ZQF 5017*&8 7447 0657 */ 4@9$1. ϖʔδ

˙1BDLBHJOH*OGPSNBUJPO G SOT-25 G SOT-89 ʢʣ ʶ ʶ ʶ ʙ NJO ʶ ʶ ʢʣʶ NJO NBY ʶ ʶ ʶ ʶ ʶ ʶ 4@9$1. ϖʔδ

9$4FSJFT 188 G TO-92 ʶ NJO ʶ ʶ ʶ 4@9$1. ϖʔδ

˙.BSLJOH G SOT-89, SOT-25 qɹw eɹr qwer 405 405 q3FQSFTFOUTUIFQSPEVDUOBNF 4:.#0- 130%6$5/".& ̍ 9$199999 w3FQSFTFOUTUIFUZQFPGSFHVMBUPS 70-5"(&ʢ7ʣ ʙ ʙ ʙ 4:.#0- ̓ e3FQSFTFOUTUIF0VUQVU7PMUBHF " 6 # 7 $ 9 % : ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ʵ ; r 3FQSFTFOUTUIFBTTFNCMZMPUOP ɹʙ "ʙ;SFQFBUFE ( 8FYDFQUFE 4@9$1. ϖʔδ

9$4FSJFT 190 1 2 3 4 5 6 50ʢ-5ZQFʣ 5017*&8 - 1 2 3 4 5 6 50ʢ55ZQFʣ 5017*&8 ˙#MPDL%JBHSBN $VSSFOU -JNJU 7PMUBHF 3FGFSFODF 7*/ 7065 744 G TO-92 %&4*(/"503 130%6$5/".& 9$1ˎ ˎ ˎ ˎˎ 9$5ˎ ˎ ˎ ˎˎ %&4*(/"503 XJUIJOʶˋ XJUIJOʶˋ %&4*(/"503 130%6$5/".& 9$ˎˎ ˎˎ 9$ˎˎ ˎˎ 130%6$5/".& 9$1ˎˎˎˎ 9$1ˎˎˎˎ 70-5"(& ʢ7ʣ %&4*(/"503 1SPEVDFEZFBS we3FQSFTFOUTUIF0VUQVU7PMUBHF y%FOPUFTUIFQSPEVDUJPOMPUOVNCFS UP "UP;SFQFBUFE (*+028FYDFQUFE ɹ/PUF$IBSBDUFSJOWFSTJPOJTOPUVTFE t3FQSFTFOUTBMFBTUTJHOJGJDBOUEJHJUPGUIFQSPEVDFEZFBS q3FQSFTFOUTUIFUZQFPGSFHVMBUPS r3FQSFTFOUTUIF%FUFDU7PMUBHF"DDVSBDZ 4@9$1. ϖʔδ

˙"CTPMVUF.BYJNVN3BUJOHT 1"3".&5&3 *OQVU7PMUBHF 0VUQVU$VSSFOU 0VUQVU7PMUBHF 405 405 0QFSBUJOH5FNQ 4UPSBHF5FNQ 7*/ *065 7065 5PQS 5TUH 744ʵʙ7*/ʴ ʵʙʴ ʵʙʴ 1PXFS %JTTJQBUJPO ˆ ˆ ˙&MFDUSJDBM$IBSBDUFSJTUJDT XC6201P132 0VUQVU7PMUBHF 7 065 & /PUF 7*/ʹ7 7 *065ʹN" .BYJNVN0VUQVU$VSSFOU *065NBY 7*/ʹ7 7065 & -PBE3FHVMBUJPO ϶7 065 7*/ʹ7 %SPQPVU7PMUBHF /PUF 7EJG 7EJG *065ʹN" N7 *065ʹN" 4VQQMZ$VSSFOU * 44 7*/ʹ7 µ" -JOF3FHVMBUJPO ϶7065 *065ʹN" *OQVU7PMUBHF 7 */ 7 ʵ 0VUQVU7PMUBHF ϶7 065 * 065ʹN" ʶ QQN 5FNQFSBUVSF$IBSBDUFSJTUJDT ϶5PQSɾ7065 °C≤5PQS≤°C °C ʢ஫ʣ7065 5 ઃఆग़ྗిѹ஋ ͷग़ྗిѹ஋ ͢Δɻ 7065ʢ5ʣ 7 /PUF 4@9$1. ϖʔδ

9$4FSJFT 192 XC6201P182 7065 & /PUF 7*/ʹ7 7 *065ʹN" *065NBY 7*/ʹ7 7065 & ϶7065 7*/ʹ7 7EJG 7EJG *065ʹN" N7 *065ʹN" *44 7*/ʹ7 µ" ϶7065 *065ʹN" 7*/ 7 ʵ ϶7065 * 065ʹN" ʶ QQN ϶5PQSɾ7065 °C≤5PQS≤°C °C 0VUQVU7PMUBHF .BYJNVN0VUQVU$VSSFOU -PBE3FHVMBUJPO %SPQPVU7PMUBHF /PUF 4VQQMZ$VSSFOU -JOF3FHVMBUJPO *OQVU7PMUBHF 0VUQVU7PMUBHF 5FNQFSBUVSF$IBSBDUFSJTUJDT 7065ʢ5ʣ 7 /PUF XC6201P272 5B 7065 & /PUF 7*/ʹ7 7 *065ʹN" *065NBY 7*/ʹ7 7065 & ϶7065 7*/ʹ7 7EJG 7EJG *065ʹN" *065ʹN" *44 7*/ʹ7 µ" ϶7065 *065ʹN" 7*/ 7 ʵ ϶7065 * 065ʹN" ʶ QQN ϶5PQSɾ7065 °C≤5PQS≤°C °C 0VUQVU7PMUBHF .BYJNVN0VUQVU$VSSFOU -PBE3FHVMBUJPO %SPQPVU7PMUBHF /PUF 4VQQMZ$VSSFOU -JOF3FHVMBUJPO *OQVU7PMUBHF 0VUQVU7PMUBHF 5FNQFSBUVSF$IBSBDUFSJTUJDT 7065ʢ5ʣ 7 /PUF 4@9$1. ϖʔδ

7*/ʹ7 7 *065ʹN" *065NBY 7*/ʹ7 7065 & ϶7065 7*/ʹ7 7EJG 7EJG *065ʹN" N7 *065ʹN" *44 7*/ʹ7 µ" ϶7065 *065ʹN" 7*/ 7 ʵ ϶7065 * 065ʹN" ʶ QQN ϶5PQSɾ7065 °C≤5PQS≤°C °C 7065 & /PUF 0VUQVU7PMUBHF .BYJNVN0VUQVU$VSSFOU -PBE3FHVMBUJPO %SPQPVU7PMUBHF /PUF 4VQQMZ$VSSFOU -JOF3FHVMBUJPO *OQVU7PMUBHF 0VUQVU7PMUBHF 5FNQFSBUVSF$IBSBDUFSJTUJDT 7065ʢ5ʣ 7 /PUF XC6201P502 5B 7*/ʹ7 7 *065ʹN" *065NBY 7*/ʹ7 N" 7065 & ϶7065 7*/ʹ7 7EJG 7EJG *065ʹN" *065ʹN" *44 7*/ʹ7 µ" ϶7065 * 065ʹN" 7*/ 7 ʵ ϶7065 * 065ʹN" ʶ QQN ϶5PQSɾ7065 °C≤5PQS≤°C °C 7065 & /PUF 0VUQVU7PMUBHF .BYJNVN0VUQVU$VSSFOU -PBE3FHVMBUJPO %SPQPVU7PMUBHF /PUF 4VQQMZ$VSSFOU -JOF3FHVMBUJPO *OQVU7PMUBHF 0VUQVU7PMUBHF 5FNQFSBUVSF$IBSBDUFSJTUJDT /PUF7065 5 4QFDJGJFE0VUQVU7PMUBHF 7065 & &GGFDUJWF0VUQVU7PMUBHF JFUIFPVUQVUWPMUBHFXIFO“7065 5 7”JTQSPWJEFEXIJMF NBJOUBJOJOHBDFSUBJO* 065WBMVF 7EJG \\7*/ /PUF 7065 /PUF 7065 "WPMUBHFFRVBMUPPGUIFPVUQVUWPMUBHFXIFOBTUBCJMJTFE 7065 5 JTJOQVU 7*/ 5IFJOQVUWPMUBHFBUUIFUJNF7065JTPVUQVU JOQVUWPMUBHFIBTCFFOHSBEVBMMZSFEVDFE 7065ʢ5ʣ 7 /PUF 4@9$1. ϖʔδ

9$4FSJFT 194 ˙5ZQJDBM"QQMJDBUJPO$JSDVJU 7*/ 7065 744 µ' UBOUBMVN µ' UBOUBMVN < External Capacitors> The XC6201 requires an output capacitor between the V OUT pin and the VSS pin in order to obtain stable output voltages. Where output voltage is greater than 1.7V, the output capacitor (C L) used should be more than 0.1 µF whether using tantalum or low ESR (ceramic, for example) capacitors. Where output voltage is between 1.3V ~ 1.6V, it is recommended that only a tantalum capacitor of more than 2.2 µF be used on the output in order to stabilize operations. 0VUQVU7PMUBHF $ */ $-ʢUBOUBMVNʣ $-ʢMPX&43ʣ 7ʙ7 HSFBUFSUIBO µ'HSFBUFSUIBOµ' – 7ʙ7 HSFBUFSUIBO µ'HSFBUFSUIBOµ' HSFBUFSUIBOµ' -PBE$VSSFOU*065 N" &RVJWBMFOU4FSJFT3FTJTUBODF&43 Ω $*/ µ' DFSBNJD ɺ$- ɺµ' DFSBNJD 7*/ 7065 4@9$1. ϖʔδ

˙%JSFDUJPOTGPSVTF ˙5FTU$JSDVJUT G Notes on Use 1. Please use this IC within the stipulated absolute maximum ratings as the IC is liable to malfunction outside of such parameters. When the voltage on VOUT is larger than that of V IN, for example, when there are two power supply, please insert schottky diode between V OUT and VIN not to exceed the rating of VOUT. 2. There is a possibility that oscillation may occur as a result of the impedance present between the power supply and the IC's input. Where impedance is 10Ω or more, please use a capacitor (CIN) of at least 1µF. With a large output current, operations can be stabilised by increasing capacitor size (C IN). If CIN is small and capacitor size (C L) is increased, there is a possibility of oscillation due to input impedance. In such cases, operations can be stabilised by either increasing the size of CIN or decreasing the size of CL. 3. Please ensure that output current (IOUT) is less than Pd ÷ (VIN - VOUT) and does not exceed the stipulated Continuous Total Power Dissipation value (Pd) for the package. 7*/ 7065 744 0QFO 7*/ 7065 744 Measuring Circuit 1 : Supply Current Measuring Circuit 2 : Output Voltage, Oscillation Check, Line Regulation, Dropout Voltage, Load Regulation 4@9$1. ϖʔδ

˙5ZQJDBM1FSGPSNBODF$IBSBDUFSJTUJDT (1) OUTPUT VOLTAGE vs. OUTPUT CURRENT 9$1 0VUQVU$VSSFOU*065 N" 0VUQVU7PMUBHF7065 7 5PQS 7*/ $*/ µ' UBOUBMVN 9$1 0VUQVU$VSSFOU*065 N" 0VUQVU7PMUBHF7065 7 5PQS 7*/ $*/ µ' UBOUBMVN 9$1 0VUQVU$VSSFOU*065 N" 0VUQVU7PMUBHF7065 7 5PQS 7*/ $*/ µ' UBOUBMVN 9$1 5PQS 0VUQVU$VSSFOU*065 N" 0VUQVU7PMUBHF7065 7 7*/ $*/ µ' UBOUBMVN 5PQS 9$1 0VUQVU$VSSFOU*065 N" 0VUQVU7PMUBHF7065 7 7*/ $*/ µ' UBOUBMVN 9$4FSJFT 196 4@9$1. ϖʔδ

(2) OUTPUT VOLTAGE vs. INPUT VOLTAGE 9$1 *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 *065 $*/ µ' UBOUBMVN 9$1 *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN *065 9$1 *065 *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN 9$1 *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN *065 9$1 *OQVU7PMUBHF7*/ 7 *065 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN 9$1 *OQVU7PMUBHF7*/ 7 *065 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN 9$1 *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN *065 9$1 *OQVU7PMUBHF7 */ 7 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN *065 4@9$1. ϖʔδ

9$4FSJFT 198 9$1 *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 *065 $*/ µ' UBOUBMVN 9$1 *OQVU7PMUBHF7 */ 7 0VUQVU7PMUBHF7065 7 $*/ µ' UBOUBMVN *065 (2) OUTPUT VOLTAGE vs. INPUT VOLTAGE 4@9$1. ϖʔδ

(3) DROPOUT VOLTAGE vs. OUTPUT CURRENT 9$1 0VUQVU$VSSFOU*065 N" %SPQPVU7PMUBHF7EJG 7 5PQS $*/ µ' UBOUBMVN 9$1 0VUQVU$VSSFOU*065 N" %SPQPVU7PMUBHF7EJG 7 5PQS $*/ µ' UBOUBMVN 9$1 5PQS 0VUQVU$VSSFOU*065 N" %SPQPVU7PMUBHF7EJG 7 $*/ µ' UBOUBMVN 0VUQVU$VSSFOU*065 N" %SPQPVU7PMUBHF7EJG 7 9$1 5PQS $*/ µ' UBOUBMVN 9$1 0VUQVU$VSSFOU* 065 N" %SPQPVU7PMUBHF7EJG 7 5PQS $*/ µ' UBOUBMVN 4@9$1. ϖʔδ

9$4FSJFT 200 (4) SUPPLY CURRENT vs. INPUT VOLTAGE 9$1 5PQS *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 9$1 5PQS *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 9$1 *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 5PQS 9$1 *OQVU7PMUBHF7 */ 7 4VQQMZ$VSSFOU*44 µ" 5PQS *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 9$1 5PQS *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 9$1 5PQS 9$1 5PQS *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 5PQS *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 9$1 4@9$1. ϖʔδ

9$1 *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 5PQS 9$1 *OQVU7PMUBHF7*/ 7 4VQQMZ$VSSFOU*44 µ" 5PQS (4) SUPPLY CURRENT vs. INPUT VOLTAGE 4@9$1. ϖʔδ

9$4FSJFT 202 (5) OUTPUT VOLTAGE vs. AMBIENT TEMPERATURE 9$1 "NCJFOU5FNQ5PQS °C 0VUQVU7PMUBHF7065 7 *065 7*/ $*/ µ' UBOUBMVN 9$1 "NCJFOU5FNQ5PQS °C 0VUQVU7PMUBHF7065 7 *065 7*/ $*/ µ' UBOUBMVN 9$1 "NCJFOU5FNQ5PQS °C 0VUQVU7PMUBHF7065 7 7*/ $*/ µ' UBOUBMVN *065 9$1 "NCJFOU5FNQ5PQS °C 0VUQVU7PMUBHF7065 7 7*/ *065 $*/ µ' UBOUBMVN 9$1 "NCJFOU5FNQ5PQS °C 0VUQVU7PMUBHF7065 7 *065 7*/ $*/ µ' UBOUBMVN 4@9$1. ϖʔδ

(6) SUPPLY CURRENT vs. AMBIENT TEMPERATURE 9$1 "NCJFOU5FNQ5PQS °C 4VQQMZ$VSSFOU*44 µ" 7*/ 9$1 "NCJFOU5FNQ5PQS °C 4VQQMZ$VSSFOU*44 µ" 7*/ 9$1 "NCJFOU5FNQ5PQS °C 4VQQMZ$VSSFOU*44 µ" 7*/ 9$1 "NCJFOU5FNQ5PQS °C 4VQQMZ$VSSFOU*44 µ" 7*/ 9$1 "NCJFOU5FNQ5PQS °C 4VQQMZ$VSSFOU*44 µ" 7*/ 4@9$1. ϖʔδ

9$4FSJFT 204 (7) INPUT TRANSIENT RESPONSE 9$1 5JNF NTFDEJW *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 0VUQVU7PMUBHF *OQVU7PMUBHF 7*/ *065 $*/ µ' UBOUBMVN 9$1 5JNF NTFDEJW *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 0VUQVU7PMUBHF *OQVU7PMUBHF 7*/ *065 $*/ µ' UBOUBMVN 9$1 5JNF NTFDEJW *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 0VUQVU7PMUBHF *OQVU7PMUBHF 7*/ *065 $*/ µ' UBOUBMVN *OQVU7PMUBHF 0VUQVU7PMUBHF 9$1 5JNF NTFDEJW *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 7*/ *065 $*/ µ' UBOUBMVN *OQVU7PMUBHF 0VUQVU7PMUBHF 9$1 5JNF NTFDEJW *OQVU7PMUBHF7*/ 7 0VUQVU7PMUBHF7065 7 7*/ *065 $*/ µ' UBOUBMVN 4@9$1. ϖʔδ

(8) LOAD TRANSIENT RESPONSE 9$1 5JNF NTFDEJW 0VUQVU7PMUBHF7065 7 0VUQVU$VSSFOU*065 N" 0VUQVU7PMUBHF 0VUQVU$VSSFOU 7*/ $*/ µ' UBOUBMVN 0VUQVU7PMUBHF7065 7 0VUQVU$VSSFOU*065 N" 9$1 5JNF NTFDEJW 0VUQVU7PMUBHF 0VUQVU$VSSFOU 7*/ $*/ µ' UBOUBMVN 9$1 5JNF NTFDEJW 0VUQVU7PMUBHF7065 7 0VUQVU$VSSFOU*065 N" 0VUQVU7PMUBHF 0VUQVU$VSSFOU 7*/ $*/ µ' UBOUBMVN 0VUQVU7PMUBHF 0VUQVU$VSSFOU 9$1 5JNF NTFDEJW 0VUQVU7PMUBHF7065 7 0VUQVU$VSSFOU*065 N" 7*/ $*/ µ' UBOUBMVN 0VUQVU7PMUBHF 0VUQVU$VSSFOU 9$1 5JNF NTFDEJW 0VUQVU7PMUBHF7065 7 0VUQVU$VSSFOU*065 N" 7*/ $*/ µ' UBOUBMVN 4@9$1. ϖʔδ

9$4FSJFT 206 (9) RIPPLE REJECTION RATE (10) OUTPUT NOISE DENSITY 9$1 3JQQMF'SFRVFODZG L)[ 3JQQMF3FKFDUJPO3BUF33 E# 7*/ 7%$ 7QQ"$ *065 µ' UBOUBMVN 9$1 3JQQMF'SFRVFODZG L)[ 3JQQMF3FKFDUJPO3BUF33 E# 7*/ 7%$ 7QQ"$ *065 µ' UBOUBMVN 9$1 3JQQMF'SFRVFODZG L)[ 3JQQMF3FKFDUJPO3BUF33 E# 7*/ 7%$ 7QQ"$ *065 µ' UBOUBMVN 9$1 'SFRVFODZG L)[ 0VUQVU/PJTF%FOTJUZ V7˽)[ 7*/ *065 µ' UBOUBMVN 9$1 3JQQMF'SFRVFODZG L)[ 3JQQMF3FKFDUJPO3BUF33 E# 7*/ 7%$ 7QQ"$ *065 µ' UBOUBMVN 9$1 3JQQMF'SFRVFODZG L)[ 3JQQMF3FKFDUJPO3BUF33 E# 7*/ 7%$ 7QQ"$ *065 µ' UBOUBMVN 4@9$1. ϖʔδ