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P9/FS210

Catalog Datasheet MFG & Type PDF Document Tags

ftc s276

Abstract: s276 -phase DC motor Fig 5 Application Circuit Rev0.2 Aug.15, 2003 P9/FS210 FS276 Technology , /FS210 FS276 Technology FUNCTIONAL BLOCK DIAGRAM 1 Regulator 2 Hall Sensor , magnetic field. GND 4 P IC Ground Rev0.2 Aug.15, 2003 P2/FS210 FS276 Technology , 5oC / sec SEC O N D Sol ng C ondi i deri t on Rev0.2 Aug.15, 2003 P3/FS210 FS276 , .2 Aug.15, 2003 P4/FS210 FS276 Technology MAGNETIC CHARACTERISTICS Ta=-20100 FS276-A
Feeling Technology
Original
ftc s276 s276 s276 motor ftcs276 TO-92SP-4 4 pin 2-phase hall effect driver P1/FS210 P2/FS210 P9/FS210 P10/FS210 P11/FS210 FS276-B

ftc s210

Abstract: FS210 Application Circuit Rev0.1 July.17, 2003 P9/FS210 FS210 Technology PACKAGE OUTLINE 5.22 ±0.05 , FS210 Technology 2-PHASE DC MOTOR DRIVE IC GENERAL DESCRIPTION The FS210, a 1-chip composed , , FS210, a high performance integrated IC, is designed for a single-phase DC motor circuit. The circuit , -92SP-4 TO-92SP-4 TYPICAL APPLICATION CIRCUIT FTC S210 Rev0.1 July.17, 2003 P1/FS210 FS210 , IC Ground Rev0.1 July.17, 2003 P2/FS210 FS210 Technology ABSOLUTE MAXIMUM RATINGS NO
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FS210-A ftc s210 S210 LOGO 230 RC Transistor 5C5 Motor Drivers s210 FS210-B P12/FS210
Abstract: 9 8 9 I C C C 4 4 3 1 ; ;9 / ! 0 8 4 4 1 5 4 1 1 5 1 / 1 NO % P9 P9 P9 !"#$ '" ()* '" '"-. & ! + + + H " % L P9Q NO % " % P9Q NO % R% "% P9Q NO % P9 IB)B !S#$ T, U QL , ! ! ! P9 NO % NO % NO % P9 P9 P9 !"# @AB !S#BW XS SZ(B P9Q !"# % P9Q !"# % !Q NO % !Q NO % ! !Q !S# % !Q !S# % P9 P9 NO % NO % NO % NO % NO % NO % NO % NO % NO % NO % NO % NO % P97 NO % NO % NO % NO % NO % NO % P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 P9 ! ! 9Z\@ 9^\@ '"#$ 'S#$ ` )( Q Infineon Technologies
Original
Abstract: :% $% )8I 9 ! ! ! H : # ( H : )9 C D D ( # : ) 6 & 7 R ( H : ( : ( ( 6 R ( " NO . $P9 NO . $P9 NO . Q P9 +. S. + . $P9F NO . $ P9 P9F NO . $ P9 &+,/+ 012 /+45 C?1? &T,U* V FQ F F$ $ $ & 3 , RB( " ( R " ! % % [ R ' F 3F &T, . $ & 3F &T, . $ & 3F &+, . &T,F NO . $P9 $& U $ &F &+, . & NO . $P9 NO . $P9 &+, =>? &T,?X YT [T\0? & & 9\^= 9_^= /+,/T,NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 NO . $P9 a 10 FW F F FQ WF WF FQ F$ Q $ K Q F$ $FQ F Infineon Technologies
Original

MARKING 313 SOT23-5

Abstract: SOT23 WU /09 /09 9 9 9 QV P$ 96 97$ - P9 /09 - P9 QV P$ 9 9 QV /09 6& 627 , Symbol Conditions Units P9 PD[ Q$ PD[ Q$ 400 ,26 ,QSXW 2IIVHW , $ 9&& - VCC - 0.4 9 9&& - 9&& - PLQ 9,' P9 ,/ - P$ VCC - 0.15 ,/ - P$ 9,' - P9 2XWSXW 6KRUW &LUFXLW &XUUHQW 300 9,' - P9 ,6& PD[ 9&& - ,/ P$ 9,'
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Original
LMV7219 MARKING 313 SOT23-5 SOT23 WU marking QQ sot235 DS101054-JP SC70-5/SOT23-5 SC70-5 LMV7219M7 LMV7219M7X
Abstract: #16;F12345D#17;#18;7CE7C # 9B#18;#18;3#20;FB2#25;3#29;#19;FF326CB#18;F413 DNO6%6#22;#30;P9 !"#$ #23; ! ; D"6%6L#23;P9Q6DNO6%6#24;#31;#30;P9 D"6%6#22;#30;P9Q6DNO6%6#24;#31;#30;P9 '"6()* '" #30;#23; #31;#23; + + ; E313F#19;F#19;C3613446#20;B , %6#24;#31;#30;P9 IB)B #22;#23;#30; H !S#$ T,#25;#22;#23; ! C4F3 , # #29;#19;#21;#28; '"6%6#30;#23;6+Q6!S#6%6#24;#30;6! '"6%6#30;#23;6+Q6!S#6%6#24;#30;6! '"6%6#30;#23;6+Q6!S#6%6#24;#30;6! DNO6%6#22;#30;P9 DNO6 -
Original
23456784539A6BCDEF 345674F 976BCDEF 92D3645 592D3645 34F2B

54C6

Abstract: 4c6 philips Philips Components Product specification P cores and accessories P9/5 CORE SETS , .1 P9/5 core set. Core sets for filter applications Clamping force 25 ±5 N. GRADE AL (nH) µe AIR GAP (µm) TYPE NUMBER (WITH NUT) TYPE NUMBER (WITHOUT NUT) 16 1100 P9/5-4C6-E16/N P9/5-4C6-E16 25 500 P9/5-4C6-E25/N P9/5-4C6-E25 40 ±3% 40 300 P9/5-4C6-E40/N P9/5-4C6-E40 100 ±25% 100 0 40 ±3% 40 400 P9/5-3D3-E40/N P9/5-3D3-E40 63
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MGB606 54C6 4c6 philips p cores 5-3H1-A100 5-3B7-A63 MGC211 P9/5-4C6-E16/N P9/5-4C6-E16 P9/5-4C6-E25/N P9/5-4C6-E25 P9/5-4C6-E40/N

M3 marking

Abstract: LT1991 /ORDER I FOR ATIO ORDER PART NUMBER TOP VIEW P1 1 2 9 M3 P9 3 8 M9 VEE 4 7 , CONNECTED TO VEE PCB CONNECTION OPTIONAL TJMAX = 125°C, JA = 160°C/W P1 P3 P9 VEE REF 1 2 3 4 , ) P1/M1 Inputs, P9/M9 Connected to REF VS = ±15V; VREF = 0V VS = 5V, 0V; VREF = 2.5V VS = 3V, 0V , = 1.25V P9/M9 Inputs VS = ±15V; VREF = 0V VS = 5V, 0V; VREF = 2.5V VS = 3V, 0V; VREF = 1.25V , /Hz RIN Input Impedance (Note 10) P1 (M1 = Ground) P3 (M3 = Ground) P9 (M9 = Ground
Linear Technology
Original
LT1991 M3 marking LT1991ACDD LT1991AIDD LT1991CDD LT1991CMS LT1990 LT1995 LT6010/LT6011/LT6012 LT6013/LT6014 LTC6910-X

BU102

Abstract: CB114 .5 P3.6 P3.7 P3.8 P3.9 P3.10 P3.11 P3.13 P3.15 P9.0 P9.2 P9.4 1 3 5 7 9 11 13 15 3 43 44 45 46 47 48 P9.0 / CC16IO / CAN2_RXD / EX7IN P9.1 / CC17IO / CAN2_TXD / EX6IN P9.2 / CC18IO / CAN1_RXD / EX7IN P9.3 / CC19IO / CAN1_TXD / EX6IN P9.4 / CC20IO P9.5 / CC21IO , P9.3 U105 3 4 P9.2 0R R150 1 2 R124 5 7 VCC RM RXD CANH R140 120R , .13 P5.15 P3.1 P3.3 P3.5 U106 P9.1 +2V6 0R R152 1 2 0R R141 120R 6 8
Infineon Technologies
Original
LGT679-CO TLE7469GV52 BU102 CB114 p513 TLE6250G DU102 100n X2 F/50V F/10V JP103 RS232 COUT60 COUT61

op amp marking P3

Abstract: M3 MSOP FOR ATIO TOP VIEW P1 P3 P9 VEE REF 1 2 3 4 5 11 10 M1 9 M3 8 M9 7 VCC 6 OUT ORDER PART NUMBER TOP , PART NUMBER P1 P3 P9 VEE REF 1 2 3 4 5 10 9 8 7 6 M1 M3 M9 VCC OUT MS PACKAGE 10-LEAD PLASTIC MSOP , . SYMBOL VCM PARAMETER Input Voltage Range (Note 7) CONDITIONS P1/M1 Inputs, P9/M9 Connected to REF VS = , = 5V, 0V; VREF = 2.5V VS = 3V, 0V; VREF = 1.25V P9/M9 Inputs VS = ±15V; VREF = 0V VS = 5V, 0V; VREF , 9; f = 1kHz P1 (M1 = Ground) P3 (M3 = Ground) P9 (M9 = Ground) M1 (P1 = Ground) M3 (P3 = Ground) M9
Linear Technology
Original
op amp marking P3 M3 MSOP LT6011
Abstract: 2XWSXW 7RO 5 1 $'6 9 a$ P9 9 a$ P9 $'6 9 a$ P9 9 a$ P9 9 a$ P9 9 a$ P9 $'6 (IIL 0D[ : : : 6LQJOH 2 , $'$ 9 a$ P9 : P9 : P9 : 9 a$ $'% 9 a$ $'& 9 a$ 9 , U J H U 8 3 6 ) X Q F W L R Q 0RGHO 1R $''$ 2XWSXW 7RO 5 1 9 a$ P9 9 a$ 9 a$ 9 a$ 9 a$ $''& 0D[ P9 9 a$ $''% (IIL : : : &KDUJHU -
Original
323N9

LT1990

Abstract: LT1991 sec). 300°C ORDER PART NUMBER TOP VIEW P1 P3 P9 VEE REF 1 2 3 4 5 , , P9/M9 Connected to REF VS = ±15V; VREF = 0V VS = 5V, 0V; VREF = 2.5V VS = 3V, 0V; VREF = 1.25V , 2.5V VS = 3V, 0V; VREF = 1.25V ­15.2 0.5 0.95 15.2 4.2 1.95 V V V P9/M9 , Input Impedance (Note 10) P1 (M1 = Ground) P3 (M3 = Ground) P9 (M9 = Ground) 630 420 350 900 600 500 1170 780 650 k k k M1 (P1 = Ground) M3 (P3 = Ground) M9 (P9 =
Linear Technology
Original
LT1991ACMS LT1991AIMS LT1991IMS

M30853FHGP

Abstract: d2p03 6 5 P9_0 P9_1 11 12 13 14 R11 10K R24 R12 10K Vref P20/A0 (/D0) P21/A1 , _3 P10_5 P10_7 P9_1 P9_3 P9_5 P9_7 P8_1 P8_3 P8_5 P8_7 P7_1 P7_3 P7_5 P7_7 P6_1 P6_3 P6 , R22 10K FIDUCIAL 5 J4 C NVss P10_0 P10_2 P10_4 P10_6 P9_0 P9_2 P9_4 P9_6 P8 , _1 TP6 V CC 1 P9_2 P9_3 P6_0 P6_1 1 1 R8 10K Vcc 3 62 P3_0 P3_1 P3 , /RxD1 P67/TxD1 P9_0 P9_1 P9_2 P9_3 P9_4 P9_5 P9_6 P9_7 D3 G REEN 1 D2 YELLOW P7
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Original
M30853FHGP d2p03 SKP32 R1408 j599 ACM0802B P22/A2 P23/A3 P24/A4 P25/A5 P26/A6

249-7-10-502

Abstract: Spectrol potentiometer 25k ohm taper (J types) 249 Series Potentiometer - 1 Watt, 1/2" square 1/8" and 1/4" dia. shaft P9 , 500 3/4" P9 249-7-10-102 502-0165 1K 7/8" P10 249-8-08-102 502-0065 1K 3/4" 502-0180 1K 3/4" P9 249-J-9-10-102 502-0185 1K 7/8" P10 249-7-10-252 502-0166 2.5K 7/8" P10 249-8-08-252 502-0066 2.5K 3/4" P9 249-7-10-502 502-0167 5K 7/8" P10 249-8-08-502 502-0067 5K 3/4" P9 249-7-10-103
NTE Electronics
Original
249-7-10-502 Spectrol potentiometer 25k ohm 249-8-08-502 249-8-08-104 Spectrol 249 5 CW P9 249-J-8-08-103 249-J-9-10-103 249-J-8-08-503 249-J 249-J-9-10-104 249-J-8-08-102

2x4 RJ45 LED

Abstract: 810130 Base : Thermoplastic , UL 94V-0, Color Black SCHEMATIC Vcc P9 Vcc P9 x1013 0.1uFx4 P2 , P9 P2 P10 P1 P9 0.3x0.5 6.60 4.06 Ø1.58 x4 11.43 4.57 1.27 4.70 , J8 J1 J8 Port 1 Port 7 Port 1 2 P1 P9 P2 P10 3 4 6 7 P1 P9 P9 (15.49) 27.94 Ø0.89 x80 8 P2 P10 P1 P9 0.3x0.5 6.60 4.06 Ø1.58 x7 , J1 J8 J1 J8 J1 J8 J1 J8 Port 1 Port 11 Port 1 2 P1 P9 P2 P10
Superworld Electronics
Original
2x4 RJ45 LED 810130 marking J1 marking P12 transistor p11 1500V IEEE802 M288027 M287944 G29TS-610130A G29TS-710130A

P137

Abstract: p152 P7_3 P7_5 P7_6 P7_7 TP6 R11 10K R12 10K P8_4 V CC V CC 1 R24 P9_0 P9_1 P9_2 P9_3 Vref 2 0 R23 0 2 4 6 8 10 P6_4 P6_6 P5_5 RESET P6_7 C8 , _6 P7_7 37 36 35 34 33 32 31 30 P8_5 29 28 27 26 25 24 P9_0 P9_1 P9_2 P9_3 P9_4 P9_5 P9_6 P9_7 7 6 5 4 3 2 1 144 C NVss 142 141 139 138 137 136 135 , _3 P10_4 P10_5 P10_6 P10_7 AN0 AN1 2 1 + + + + + P9_5 P9_6 P9_7 2 1 1 P5
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P137 p152 P130 P131 P132 P133 P40/A16 P41/A17 P42/A18 P43/A19 P44/CS3/A20 P45/CS2/A21

LT1991

Abstract: LT1991ACDD /ORDER I FOR ATIO ORDER PART NUMBER TOP VIEW P1 1 2 9 M3 P9 3 8 M9 VEE 4 7 , CONNECTED TO VEE PCB CONNECTION OPTIONAL TJMAX = 125°C, JA = 160°C/W P1 P3 P9 VEE REF 1 2 3 4 , ) P1/M1 Inputs, P9/M9 Connected to REF VS = ±15V; VREF = 0V VS = 5V, 0V; VREF = 2.5V VS = 3V, 0V , = 1.25V P9/M9 Inputs VS = ±15V; VREF = 0V VS = 5V, 0V; VREF = 2.5V VS = 3V, 0V; VREF = 1.25V , nV/Hz nV/Hz RIN Input Impedance (Note 10) P1 (M1 = Ground) P3 (M3 = Ground) P9 (M9 =
Linear Technology
Original
LT1991IDD

PE 25V

Abstract: CS66 , P7, P8, P9, PA, PB, PC, PD, PE, PF, S1, S2 P1, P2, P3, P4, P5, P6, P7, P8, P9, PA, PB, PC, PD, PE, PF, S1, S2 P1, P2, P3, P4, P5, P6, P7, P8, P9, PA, PB, PC, PD, PE, PF, S1, S2 P3, P4, P5, P6, P7, P8, P9, PA, PB, PC, PD, PE, PF P6, P7, P8, P9, PA, PB, PC, PD, S5, S6, S7 P1, P2, P3, P4, P5, P6, P7, P8, P9, PA, PB, PC, PD, PE, PF, S1, S2 P1, P2, P3, P4, P5, P6, P7, P8, P9, PA, PB, PC, PD, PE, PF, S1, S2 P2, P3, P4, P5, P6, P7, P8, P9, PA, PB, PC, PD, PE, PF, S2, S3, S4 P3, P4, P5, P6, P7
Fujitsu
Original
PE 25V CS66 HQFP 208 8 bit multiplier VERILOG ASIC-FS-20826-11/99
Abstract: 3 P8 4 /AN 4 P8 5 /AN 5 P8 6 /AN 6 P8 7 /AN 7 AVDD P9 0 /FTOA 2 P9 1 /FTOA 3 P9 2 /PW 1 P9 3 /PW 2 P9 4 /PW 3 P9 5 /TXD P9 6 /RXD P9 7 /SCK EXTAL XTAL GND P1 0 /Ø P1 1 /E P1 2 , P8 5 /AN 5 P8 6 /AN 6 P8 7 /AN 7 P9 0 /FTOA 2 P9 1 /FTOA 3 P9 2 /PW 1 STBY 44 , P9 3 /PW 2 P9 4 /PW 3 11 64 8 65 7 P9 5 /TXD 6 P9 6 /RXD 9 66 10 P9 7 /SCK 70 67 69 68 P3 0 /D 0 P3 1 /D 1 P3 2 /D 2 P3 3 /D 3 P3 4 /D 4 -
Original
HD6435328RD63F 16-BIT 10-BIT
Abstract: Voltage (Pins P9/M9, Note 2) . ±60V Input Current (Pins P27/M27/P81/M81, Note 2 , /ORDER I FOR ATIO ORDER PART NUMBER TOP VIEW P9 1 10 M9 P27 2 9 M27 P81 3 8 , ) LT1996CDD LT1996IDD LT1996ACDD LT1996AIDD DD PART MARKING* TOP VIEW P9 P27 P81 VEE REF 1 2 , Offset Voltage (Note 8) 105 100 85 120 120 120 P9/M9 Inputs VS = ±15V; VREF = 0V VS = 5V , = 2.5V VS = 3V, 0V; VREF = 1.25V Input Voltage Range (Note 7) TYP P9/M9 Inputs, P81/M81 Linear Technology
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LT1996 LT6010
Showing first 20 results.