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LTC1682CMS8-3.3#PBF Linear Technology LTC1682 - Doubler Charge Pumps with Low Noise Linear Regulator; Package: MSOP; Pins: 8; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices
LTC1682CMS8-3.3#TRPBF Linear Technology LTC1682 - Doubler Charge Pumps with Low Noise Linear Regulator; Package: MSOP; Pins: 8; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices
LTC1682CMS8-3.3 Linear Technology LTC1682 - Doubler Charge Pumps with Low Noise Linear Regulator; Package: MSOP; Pins: 8; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices
LTC1682CMS8-3.3#TR Linear Technology LTC1682 - Doubler Charge Pumps with Low Noise Linear Regulator; Package: MSOP; Pins: 8; Temperature Range: 0°C to 70°C visit Linear Technology - Now Part of Analog Devices

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Part : LTC1682CMS8 Supplier : Linear Technology Manufacturer : New Advantage Stock : 1,000 Best Price : - Price Each : -
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LTC1682CMS8-3.3 Datasheet

Part Manufacturer Description PDF Type
LTC1682CMS8-3.3 Linear Technology Doubler Charge Pumps with Low Noise Linear Regulator Original
LTC1682CMS8-3.3#PBF Linear Technology Doubler Charge Pumps with Low Noise Linear Regulator; Package: MSOP; No of Pins: 8; Temperature Range: 0°C to +70°C Original
LTC1682CMS8-3.3#TR Linear Technology Doubler Charge Pumps with Low Noise Linear Regulator; Package: MSOP; No of Pins: 8; Temperature Range: 0°C to +70°C Original
LTC1682CMS8-3.3#TRPBF Linear Technology Doubler Charge Pumps with Low Noise Linear Regulator; Package: MSOP; No of Pins: 8; Temperature Range: 0°C to +70°C Original

LTC1682CMS8-3.3

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: + SHDN VIN FB C­ GND 1 2 E2 SHUTDOWN R1 C4 4.7uF 3 4 E1 VOUT 2.5V TO 5.5V R2 E5 GND E3 GND 8 7 6 5 1 2 3 4 DC249-03 NOTE: USER MUST SUPPLY R1 AND , VIN FILT C­ GND E1 VOUT 3.3V or 5V 1 2 E2 SHUTDOWN C4 4.7uF 3 4 CONNECT , output currents. The minimum input voltage requirement would be 1/2 this value or about 2.7V. 3. The , . Proper Measurement Setup 3 DEMO MANUAL DC249 LOW NOISE CONVERTER U OPERATIO (See the Linear Technology
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LTC1682 LTC1682CMS8-5 HP-11048C 11048c ceramic capacitor 105 E5 HP-11048 1206YG475ZAT2A 0805YC224KAT2A LTC1682CMS8-3 C249A DC249A
Abstract: â'¢ â'¢ â'¢ 18 30 13 20 11 17 a Q. Q. Vquj Dropout Voltage (Note 3) LTC1682, Iqut = 10mA, V0UT = , '¢ 3 10 10 mV mV Vqut Shutdown Resistance SHDN = 0V, Resistance Measured to Ground, V!N = 1,8V SHDN = , LTC1682I is guaranteed to meet the extended temperature limits. Note 3: Dropout voltage is the minimum , N T 3 LO - V HD V|N = 3 V -V0ut = 4V COUT = 10ji I I F 200jxs/DIV 1ms , : 1.238 1.236 1.234 V|N = 3 V lOUT = 10mA LTC1682 -
OCR Scan
LT 8233 MQE001 murata MQE001-902 168233 marking lter linear CE1545 LTC1682/LTC1682-3 3/LTC1682-5 1682/LTC1682-3 LTC1340 LTC1517-X LT1521
Abstract: 4.4V 6 C+ 4.7uF 2 36k FB 3 0.22uF 4.7uF 5 C­ 4.2V SHDN LTC1682 VIN , SHDN FILT/FB* GND 1 2 3 4 8 7 6 5 CPO C+ VIN C­ MS8 PACKAGE 8-LEAD PLASTIC MSOP , MARKING LTER LTGT LTGV LTHM LTGU LTGW VOUT 1 8 SHDN 2 7 C+ FILT/FB* 3 6 , Voltage (Note 3) LTC1682, IOUT = 10mA, VOUT = 2.57V (Note 5) LTC1682/LTC1682-3.3, IOUT = 10mA, VOUT = , 5 20 mV VOUT Load Regulation IOUT = 1mA to 10mA IOUT = 1mA to 50mA (Note 4) q 3 Linear Technology
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MQE001-902 murata mqe001 large capacitance varactor 1nF LTGW FMMT3904 1N4148 LTC1682-5 LTC1517 LTC1522 LT1761
Abstract: 3 0.22uF 4.7uF 5 4.2V 4 1000pF B P VCO MURATA MQE001-902 M C fOUT , -3.3 LTC1682CMS8-5 LTC1682IMS8 LTC1682IMS8-3.3 LTC1682IMS8-5 TOP VIEW VOUT SHDN FILT/FB* GND 1 2 3 , LTGU LTGW ORDER PART NUMBER TOP VIEW VOUT 1 8 SHDN 2 7 C+ FILT/FB* 3 6 VIN , 4.4V, IOUT = 10mA q q q 18 13 11 30 20 17 VOUT Dropout Voltage (Note 3 , 5 20 mV VOUT Load Regulation IOUT = 1mA to 10mA IOUT = 1mA to 50mA (Note 4) q 3 Linear Technology
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Abstract: 3 0.22uF 4.7uF 5 4.2V 4 1000pF B P VCO MURATA MQE001-902 M C fOUT , -3.3 LTC1682CMS8-5 LTC1682IMS8 LTC1682IMS8-3.3 LTC1682IMS8-5 TOP VIEW VOUT SHDN FILT/FB* GND 1 2 3 , LTGU LTGW ORDER PART NUMBER TOP VIEW VOUT 1 8 SHDN 2 7 C+ FILT/FB* 3 6 VIN , 4.4V, IOUT = 10mA q q q 18 13 11 30 20 17 VOUT Dropout Voltage (Note 3 , 5 20 mV VOUT Load Regulation IOUT = 1mA to 10mA IOUT = 1mA to 50mA (Note 4) q 3 Linear Technology
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3V555
Abstract: 4.7ÂuF 2 36k LTC1682 VIN FB Câ'" GND 3 0.22ÂuF 4.7ÂuF 5 4.2V 4 1000pF , -3.3 LTC1682CMS8-5 LTC1682IMS8 LTC1682IMS8-3.3 LTC1682IMS8-5 TOP VIEW VOUT SHDN FILT/FB* GND 1 2 3 , LTHM LTGU LTGW ORDER PART NUMBER TOP VIEW VOUT 1 8 SHDN 2 7 C+ FILT/FB* 3 6 , Dropout Voltage (Note 3) LTC1682, IOUT = 10mA, VOUT = 2.57V (Note 5) LTC1682/LTC1682-3.3, IOUT = 10mA , Regulation IOUT = 1mA to 10mA IOUT = 1mA to 50mA (Note 4) q 3 10 10 mV mV VOUT Shutdown Linear Technology
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Abstract: introduction of four power surface mount packages by LTC : the 3-lead SOT-223, the DD package available in 3-, 5- and 7-lead versions, the SOT-23 package available in 3-, 5- and 6-lead versions and the 4 , Figure 1. Recommended Solder Pads 13-42 0.0197 TYP SMP 33 SURFACE MOUNT PRODUCTS M Package 3 , Package 3-Lead SOT-223 0.129 MAX 0.045 ±0.005 0.245 MIN SW Package Wide (0.300) SO-16, SO , 0.050 TYP NOTE: ALL DIMENSIONS ARE IN INCHES S3 Package 3-Lead SOT-23 0.754 0.754 0.764 Linear Technology
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lt941 1174H5 1460d5 121i3 117450 LT1682CMS8 1460DCS3-10 LT1460CIS3-10 LT1460DIS3-10 LT1460CS3-2 LT1460IS3-2 LT1460CS3-3
Abstract: - - H H H H J K G - T TV, TW, VS 3- or 4-Lead TO-39 Metal Can H H H H J K G - T TV, TW, VS 2-, 3- or 4-Lead Standard TO-46 Metal Can , ) JW - Q T L 2-Lead TO-3 Metal Can K K Steel - - K - K KQ 4-Lead TO-3 Metal Can K K - - - KJ K KS 20-Pin Leadless Chip Carrier , 36- and 44-Lead Plastic SSOP (Wide 0.300) 3-Lead TO-52 Metal Can METAL CAN GN 8- or 10 Linear Technology
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LT1460BCS3-10 marking code LTGG LTGF marking code sot 23 MARK LTGG LTKD MARKING CODE ltbw 579I33 LTC1067CGN LTC1067-50CGN LTC1067-50IGN LTC1067IGN LT1372CGN
Abstract: H H H J K G - T TV, TW, VS 3- or 4-Lead TO-39 Metal Can H H H H J K G - T TV, TW, VS 2-, 3- or 4-Lead Standard TO-46 Metal Can or in Thermal , T L K K Steel - - K - K KQ 4-Lead TO-3 Metal Can K K - , Small Outline 16-, 20-, 28- and 36-Lead Plastic Plastic SSOP (5.3mm) 2-Lead TO-3 Metal Can , -Lead SSOP (Narrow 0.150) 3-Lead TO-52 Metal Can METAL CAN FW 8- or 10-Lead TO-5 Metal Can Linear Technology
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TO253 ltc947 LT 129i5 1624i sot23 1303 LT1510CGN
Abstract: Narrow SSOP; SSOPW = Wide SSOP; SOW = Wide SO 3 Reference Material Space, Military, Harsh , 25°C (MHz) Slew Rate Typ 25°C (V/us) 0.6 0.9 1.3 0.6 1.5 2 3 15 35 0.1 250000 , 1 1 1 0.8 0.3 0.3 50 3 0.3 13 Typ 13 Typ 16 Typ 8 Typ 2 Typ 20 Typ 6 Typ 12 Typ 10 , NUMERIC ORDER Part Number 35 Typ 1.5 3 1.5 3 2.5 5 100 125 160 200 500 600 3 3 3 3 8 Typ 8 Typ 8 Typ 70 70 70 70 300 300 300 7 Typ 7 Typ 7 Typ 10 Typ 9 Typ 6 Typ Linear Technology
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lm 7803 3V Positive Voltage Regulator ic 4440 40w amplifier 12v mt 1389 de ltsx e3 LM 4440 AUDIO AMPLIFIER CIRCUIT w10 mic package bridge rectifier D-59387 D-73230 1-800-4-LINEAR
Abstract: Reference Material MS-8, MS-10 = MSOP; SSOPN = Narrow SSOP; SSOPW = Wide SSOP; SOW = Wide SO 3 , 25°C (nA) GBW Typ 25°C (MHz) Slew Rate Typ 25°C (V/s) 0.6 0.9 1.3 0.6 1.5 2 3 , 1.1 8.5 Typ 18 1 1 1 1 0.8 0.3 0.3 50 3 0.3 13 Typ 13 Typ 16 Typ 8 Typ 2 Typ 20 Typ , AmplifIers NUMERIC ORDER Part Number 35 Typ 1.5 3 1.5 3 2.5 5 100 125 160 200 500 600 3 3 3 3 8 Typ 8 Typ 8 Typ 70 70 70 70 300 300 300 7 Typ 7 Typ 7 Typ 10 Typ 9 Typ Linear Technology
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SMD LTYN Weston 2281 thermometer ltls e3 LT3060ITS8 LTC3855EUH-1 5Dx diode SMD
Abstract: Micropower Page 59 Application Specific High Frequency Page 60 Reference Material 3 Sec 1_OpAmps_0415-08.indd 3 4/15/08 5:44:27 PM AMPLIFIERS NUMERIC ORDER Reference Material High Frequency , 1.3 0.6 1.5 2 3 15 35 0.1 250000 0.1 20 20 0.05 0.12 90 35 0.05 0.05 0.05 0.05 9 , 1.8 1.2 2 8 0.5 1.5 1.1 8.5 Typ 18 1 1 1 1 0.8 0.3 0.3 50 3 0.3 13 Typ 13 Typ 16 , SSOP; SOW = Wide SO 4/15/08 5:44:27 PM AMPLIFIERS NUMERIC ORDER 35 Typ 1.5 3 1.5 3 2.5 Linear Technology
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mosfet 4800 4606 MOSFET INVERTER aot 110 optocoupler ltsx e3 mosfet driver ic 4558 opamp schematic LTPG e3
Abstract: ) BRCLK CBRCLK (1) (4) GND (3, 5, 13) Figure 1. Functional block diagram Vectron International â , option)1, 2, 3 APR Supply Voltage 2, 3 Current (No Load) 3 VCC ICC 2.97 LVCMOS Input 2, 3 Input High Voltage Input Low Voltage VIH VIL Typical Maximum Units 850 850 MHz MHz 1, 2, 3 ±32, ±50, or ±100 Lock Detect Output Output High Voltage Logic Low Voltage VOH VOL Outputs Mid Level - LVPECL 2, 3 Single Ended Swing - LVPECL 2, 3 Differential Vectron International
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L6283-1.3 TH2067.3 TH3140.3 CJP1117T-3.3 SMOOTH+L6283-1.3 LM3674MF-3.3 FX-702 FX-730 1-88-VECTRON-1
Abstract: #28;#29;#30;#31; 3BAA!"3 #18;39#24;#36$#20;#30; 3 12%&'3(#25;#28;#24;#21;#22;#)3*#28;#26;##21;#30;+3#29;#22;#21;,3#27;,#28;#21;#28;3-#22;#28;+#30;3 #18;3#27;#30;#24;.3"#24;/#30;#25;#30;#)#21;, 3FD%#!3 3 7 3 7 1 23451 1 67589A1 3 3 3 3 3 #27;#28;3 4#31;356-73 8#31;35#27;-73 63#21;)3 6#23;3 # class="hl">3 class="hl">3 #27;-32#30;/#30;#31;3 class="hl">3 # class="hl">3 B8C9AD341EF#16;#17;5D51 #18;F3#17;#19;#20;C1 B%A3 C%3 %3 19A3:3C%3 BA3:3FA3 #21;#19;#17;31 !"3 !03 83 393 393 ; 1 1 3 3 3 3 2#25;24E49C71C5 Nichia
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TT8112-3.3 lm394ois-3.3 LMS1117-3.3 LM1585AIT-3.3 LM2938S-3.3 LP2950DT-3.3 43567189ABCDEF3 1234567892A36B5CA46D89EA1 12342556423789ABC56 2D59EF65 FEC4257 CFE57
Abstract: 43567189ABCDEB3F3 CA2B#16;A2#16;CD3 3 123456789A5B7C23D51 1 EC1F #11; 1 1 1 1 2123456273 #24;54BF#18;2C$F#16;2#18;7FA#18;3 # 1 #17;3#26;#29;#23; 3&AD#'1 #17;39#23;#36(#19;#29;#31;3 class="hl">3.#21;#27;-#29;1 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 5##21;#20;3/''13 3 3 3 ; 3 3 3 3 3 3 3 3 3 3 3 3 3 3 1 2897AB542CD3EF#16;5#16;C#17;34F#18;#19;73 F#16;#17;61 #18;#19;6#20;#21;#22;1 # 3 #26;#27;3 # #30;#27;#16; Nichia
Original
AP2408ES5-3.3 AS1084R-3.3 AZ1085S-3.3 TH3147.3 UTC1117T-3.3 1231455631789ABCD12E1 0CD19123 426F74F 0CD1913
Abstract: 123456789A97BC 1234567839AB2CD3 73 73 73 73 73 ./!+%""7#30;3C"+%",7#28;7" 395#73 05631(3%"#31(3 2$(+3#)*# 3 .%"5#31;7,5"#3B6$ ,+$"(3 3#17;92439%&$#28;'#28;32875'7",#27;3 E1223 #18;1453 B#27;#28;#29;5#30;3 D7#31; 3!5"#$ $5"#31;3 E1223 BC3D345EA3F73#16;5#17;EA33 #16;#17;#17;#17;3 E1#19;#20;3 #16;#17;#17;#17;3 A78F#23;8#24;7#24;#25;3 #26;4#17;3 B#27;#28;8#25;#23;#29;8F3 #26;#30;#17;3 B#31;3D345EA33 4 3 !3 #18;1#22;3 B#31;3D345EA"3##24;$#25;#29;3%#23;&F'3$#23;(#23;F#29;&3)*3BC#22;33 #18;!#20;3 F3 #16;#25;#17;#17;#26;3 #18;3 #18;1453 #17;#23;#20;#24;313 1 #18;3 E#19;2#22;3 #22;3 #18;1 E IXYS
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JZ509-3.3 F3233- 3D345EA3 345EA3 BC3D345EA3 123D3 1223BC3D345EA33
Abstract: 123456789A79BC 1234567839AB2CD3 class="hl">3 @7$3D?3#28;8%3#20;?3 4#23;?&3%5,%F3 F#28;87#25;#29;#31;78%32$#23;F#31;8?3 class="hl">3 E1223 #18;1453 B#27;#28;#29;5#30;3 D7#31; 3!5"#$ $5"#31;3 E1223 BC3D345EA3F73#16;5#17;EA33 #16;#17;#17;#17;3 E1#19;#20;3 #16;#17;#17;#17;3 A78F#23;8#24;7#24;#25;3 #26;4#17;3 B#27;#28;8#25;#23;#29;8F3 #26;#30;#17;3 B#31;3D345EA33 #16;43 B#31;3D345EA!3"#24;##25;#29;3$#23;%F&3##23;'#23;F#29;%3()3BC#22;33 *43 3 #18; #20;3 B#31;3D345EA33 #16;43 3 C #20;3 B#31;3D345EA33 #30;#17;3 'C3 3 #)*# 33 +2323+1#22;!3%#23; IXYS
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L1117LG-3.3 13D345 333333333333BC3D3 45EA33 3F323 3AG22 T33BK
Abstract: ?( @!A?('( #?)337?99666-3)* · /,)*,*0- 5-+4, ,.2- ,* ).3-+,< -*203+*, · D 88+,/ B-6+3)+,4 -3+*,C · +3 ! 8* *03703 7*4.+2+3/ · , )+7 7*6 4*5 80,3+*, · -+4,5 8* ,32 ,3+0 22 ;0+,3· E D 8* 2+,. -3+*, · F D 8, .1.+2.2 · '( ( G D ( '( G D ) *+,- . -/,)*,*0- 1*23.4 *5 *,3*22 6+3) 36* 2*65*7*03 2+,. 402.3*7*1+5+,4 *-3 *8 3) +0+3/ ,-./ 3* +72,3 3) 9 *,13- 8* 7*6+,4 .51.,5 +*7*-*- -0) .- ,3+0 ) -6+3)+,4 -3+*, 8.30- ., +,34.35 Semtech
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D5032 bv99-0.3 SIPT425TA3 smbj2k3.3
Abstract: 8 4 5 6 6 -5 0 3 5 09462K07 8 4 5 6 6 -5 0 4 1 09566M 07 8 4 5 6 6 -0 0 6 5 07264M 07 8 4 5 8 1 -0 0 0 0 09357K07 8 4 5 6 6 -5 0 3 6 09462M 07 8 4 5 6 6 -0 0 4 1 09567K07 8 4 5 6 6 -5 0 6 6 07362M 07 8 4 5 8 1 -0 0 0 3 09358K07 8 4 5 6 6 -5 0 3 7 09463K07 , 8 4 5 6 6 -5 0 3 8 09463M 07 8 4 5 6 6 -0 0 4 2 09568K07 8 4 5 6 6 -5 0 6 7 07382M 27 8 4 5 8 3 -0 0 0 2 09360K07 8 4 5 6 6 -5 0 3 9 09464K07 8 4 5 6 6 -5 0 4 3 09568M 07 -
OCR Scan
07262M 09356K07 09567M 07364M 09359K07 07384M
Abstract: 123456753859AB 1234567839AB2CD3 F3#28;8&3#20;>3 3#23;>'3&5.&F3 F#28;87#25;#29;#31;78&32%#23;F#31;'#23;8>3 -&# E1223 D7#29;#30;3#31;5 !"#30;"5 #29;3 E1223 BC3D345EA3F73#16;5#17;EA33 4#17;#17;3 E1#19;#20;3 4#17;#17;3 A78F#23;8#24;7#24;#25;3 #26;4#17;3 B#27;#28;8#25;#23;#29;8F3 #26;#30;#17;3 B#31;3D345EA33 #16;5 #17;3 B#31;3D345EA"3##24;$#25;#29;3%#23;&F'3$#23;(#23;F#29;&3)*3BC#22;33 +#17;3 !3 #18;!#20;3 B#31;3D345EA33 + #17;3 !3 C!#20;3 B#31;3D345EA33 , 53 (C3 3 !'(!#30;33 -2323-1#22;"3.&F3233 IXYS
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as1117l-3,3 KIA1085-3.3 F3233/ B0323 3-13D3 3-13D345 126GF93783F
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