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Part : ADP1147AR-3.3 Supplier : Analog Devices Manufacturer : Rochester Electronics Stock : 1,524 Best Price : $0.92 Price Each : $0.92
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ADP1147AR-3.3 Datasheet

Part Manufacturer Description PDF Type
ADP1147AR-3.3 Analog Devices Low Dropout Controller, 3.5V to 16V Input Voltage, 3.3V Output Voltage Original
ADP1147AR-33 Analog Devices High Efficiency Step-Down Switching Regulator Controllers Original
ADP1147AR-3.3-REEL Analog Devices ADP1147 - IC SWITCHING CONTROLLER, 250 kHz SWITCHING FREQ-MAX, PDSO8, SOIC-8, Switching Regulator or Controller Original

ADP1147AR-3.3

Catalog Datasheet MFG & Type PDF Document Tags

AC ENERGY SAVING CIRCUIT DIAGRAM

Abstract: list of P channel power mosfet 150mV 13k G 1.25V OFF-TIME CONTROL VIN 100k REFERENCE SENSE(­) 2 3 CT , to the gate charge being delivered at the switching frequency. 3 In applications where R SENSE is , the input voltage level. Error Amplifier Decoupling Pin. Pin 3 voltage level causes the comparator , -Lead Plastic DIP ADP1147 VIN 1 7 GND 7 GND TOP VIEW ITH 3 (Not to Scale) 6 SHUTDOWN CT 2 TOP VIEW ITH 3 (Not to Scale) 6 SHUTDOWN SENSE(­) 4 5 SENSE(+) SENSE(­) 4 TJMAX = 125°C, 0JA =
Analog Devices
Original
AC ENERGY SAVING CIRCUIT DIAGRAM list of P channel power mosfet P-channel power mosfet SO-8 list of n channel power mosfet p-channel mosfet driver POWER MOSFET DATA BOOK IRF7204 30BQ040 CTX50-4 SL1-C1-OR050J

my 1.5uF 480

Abstract: IRF7304 VIN SENSE(­) 3 6 REFERENCE CT ITH SHUTDOWN Low dropout regulation is limited only by , supply current is higher due to the gate charge being delivered at the switching frequency. 3 In , . The frequency is also dependent on the input voltage level. Error Amplifier Decoupling Pin. Pin 3 , P-DRIVE 5 SENSE(+) R Package 8-Lead Plastic SOIC ADP1147 7 GND TOP VIEW ITH 3 (Not to Scale) 6 SHUTDOWN SENSE(­) 4 5 SENSE(+) 7 GND TOP VIEW ITH 3 (Not to Scale) 6 SHUTDOWN ADP1147 TJMAX = 125
Analog Devices
Original
my 1.5uF 480 IRF7304

c3148

Abstract: C3148 transistor Pin No. Mnemonic Function 1 2 VIN CT 3 4 ITH SENSE(­) 5 SENSE(+) 6 , . Error Amplifier Decoupling Pin. Pin 3 voltage level causes the comparator current threshold to increase , GND CT 2 TOP VIEW ITH 3 (Not to Scale) 6 SHUTDOWN SENSE­ 4 ITH 3 5 SENSE+ 8 P-DRIVE , recommended to avoid performance degradation or loss of functionality. REV. 0 6 SHUTDOWN ­3 , 3 4 5 MAXIMUM OUTPUT CURRENT ­ Amps Figure 3. Selecting RSENSE vs. Maximum Output Current
Analog Devices
Original
ADP1148 c3148 C3148 transistor 2n2222 - 331 ADP1147-5 SL-1-C1-0R050J ADP1147-3 3/ADP1147-5 C3148

f7304

Abstract: 12 volt ENERGY SAVING CIRCUIT DIAGRAM of 25 watt ) . 16 V to -0 .3 V Continuous Output Current (Pin 8) . 50 mA Sense Voltages (Pins 4, 5) . 10 V to -0 .3 V Operating Ambient Tem perature , dependent on the input voltage level. Error Amplifier Decoupling Pin, Pin 3 voltage level causes the , REV. 0 -3 - ÄDP1147-3.3/ÄDP1147-5-Performance Characteristics D 1 2 3 4 MAXIMUM OUTPUT CURRENT-Amps 5 0 100 200 FREQUENCY-kHz 300 (Vin - V qut ) VOLTAGE -V o lts Figure 3
-
OCR Scan
f7304 12 volt ENERGY SAVING CIRCUIT DIAGRAM of 25 watt si9430 DP1147-5 IRF72D4
Abstract: RATINGS In p u t Supply Voltage (Pin 1 ) . 16 V to -0 .3 V C ontinuous O , ) . 10 V to -0 .3 V O perating Ambient T em perature Range . 0°C to + 7 0 ° C E xtended , -3.3, ADP1147AR-5: Tj = T A +(PD x 150°C/W). -2 - REV. 0 A D P 1 1 4 7 -3 .3 / A D P 114 7 -5 ELEC T R , . T he frequency is also dependent on the input voltage level. 3 It h E rror Amplifier Decoupling Pin. Pin 3 voltage level causes the com parator current threshold to increase. 4 SEN SE (- -
OCR Scan
P1147 C3148-8-2/98

DAC89EX

Abstract: dac86ex · · · · · · · · · · ­ ­ /2 K 4K ­ 3.3 V · · · · REV. B ­3­ ADSP-21xx The , ADDRESS GENERATOR FLAGS (ADSP-2111 Only) 3 PROGRAM SEQUENCER PMA BUS TIMER 24 16 PMA , supports serial data word lengths from 3 to 16 bits. Companding in Hardware-Each SPORT provides optional , strobe. HMD1 selects either separate address (3-bit) and data (16-bit) buses or a multiplexed 16 , executed. Pin Definitions SYSTEM INTERFACE Figure 3 shows a typical system for the ADSP-2101, ADSP2115
Analog Devices
Original
AD6422 AD6422AST AD6459ARS-REEL DAC89EX dac86ex RBS 2111 ad42497 RBS 2101 DAC0803 80C51 ADSP-21 MIL-STD-883B ADSP-2100 AD6459

L6283-1.3

Abstract: TH3140.3 ) 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
Original
L6283-1.3 TH3140.3 TH2067.3 SMOOTH+L6283-1.3 NXP+dirana+3 CJP1117T-3.3 FX-702 FX-730 1-88-VECTRON-1

L6283-1.3

Abstract: TT8112-3.3 #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
Original
TT8112-3.3 lm394ois-3.3 LMS1117-3.3 LM3674MF-3.3 LM1585AIT-3.3 LP2950DT-3.3 43567189ABCDEF3 1234567892A36B5CA46D89EA1 12342556423789ABC56 2D59EF65 FEC4257 CFE57

L6283-1.3

Abstract: AP2408ES5-3.3 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 UTC1117T-3.3 TH3147.3 AS1084R-3.3 AZ1085S-3.3 L1117T-3.3 1231455631789ABCD12E1 0CD19123 426F74F 0CD1913

L6283-1.3

Abstract: CJP1117T-3.3 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
Original
JZ509-3.3 F3233- 3D345EA3 345EA3 BC3D345EA3 123D3 1223BC3D345EA33

L6283-1.3

Abstract: TH2067.3 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
Original
L1117LG-3.3 13D345 333333333333BC3D3 45EA33 3F323 3AG22 T33BK

L6283-1.3

Abstract: D5032 ?( @!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
Original
D5032 SIPT425TA3 smbj2k3.3 bv99-0.3

L1117T-3.3

Abstract: LI-CAM-IMX136-1.8 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
LI-CAM-IMX136-1.8 07262M 09356K07 09567M 07364M 09359K07 07384M

AP2408ES5-3.3

Abstract: as1117l-3,3 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
Original
as1117l-3,3 KIA1085-3.3 F3233/ B0323 3-13D3 3-13D345 126GF93783F

KIA1085-3.3

Abstract: L1117T-3.3 .0 8 mm / 0 .2 in Pin spacing 7.5/7.62 mm / 0 .3 in Pin spacing 10/10.16 mm / 0.4 in 2 x 0.25 - 0.75 mm1V 2 x AWG 2 4 - 1 8 'so l.â' 250 V /4 k V / 3 ,10 A 500 V /4 k V / 2 ,10 A 2 x0 .2 5 -0 .7 5 mmJ"s" 2x AWG 2 4 - 1 8 "sol.â' 400 V /6 k V / 3 ,10 A 800 V /6 k V / 2 ,10 A 2 xO.25 - 0.75 m rn 'Y 2x AWG 500 V /8 k V / 3 ,10 A 1000 V /8 k V / 2 ,10 A h A _ l â'" 1 9 - 1 0 mm / 0.d7 in A No. of poles Item-No. L-3 9 - 10 mm / 0.37 in No. of poles
-
OCR Scan

MM1117-3.3

Abstract: SN12-400 1.5 0.4 5 2 2.6 25 18 0.042 13×7 20±2 1.5 0.55 6 2 13×8 48 0.058 22 3 20±2 1.5 0.55 6 2 26 0.042 19 , 7.3 0.6 10.5 20±2 1.5 3 40 0.035 18 21×11 9 10.2 0.8 20±2 1.5 3 72 0.042 20 21×11 9 10.8 0.8 20±2 1.5 3 0.8 110 0.052 26 21×12 11.8 10 20±2 1.5 5 64 0.032 32 25×12 15.8 1.0 11 20±2 1.5 5 100 0.040 34 , Dimensions D H Soldered [mm] Impedance vs. Frequency SN3-200 1M 100K 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 SN5-300 1M 100K 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 Impedance () 1K 100
NEC / TOKIN
Original
SN12-400 KC547 MM1117-3.3 SN5-400 SN8S-300 SN8S-400 SN8S-500 SN8D-300 SN8D-400

tokin 108

Abstract: L1117T-3.3 15 8.5×5.5 20±2 1.5 0.045 0.4 5 2 25 2.6 0.042 18 13×7 20±2 1.5 0.55 6 2 13×8 48 0.058 22 3 20±2 1.5 , 2 125 0.100 27 17×13 7.3 0.6 10.5 20±2 1.5 3 40 0.035 18 21×11 9 10.2 0.8 20±2 1.5 3 72 0.042 20 21×11 9 10.8 0.8 20±2 1.5 3 110 0.052 26 21×12 11.8 0.8 10 20±2 1.5 5 64 0.032 32 25×12 15.8 1.0 11 20±2 , 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 SN5-300 1M 100K 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 1 6 3 Impedance () 1K 100 10 1 Impedance () 3 6 1 3 6 1 3 6 1 3 6 1 3 10K 10K 1K 100 10 1 0.1 1K
NEC / TOKIN
Original
tokin 108 SN8D-500 SN10-300 SN10-400 SN10-500 SN12-500 SN13-300

CDR01-CDR06

Abstract: C1206 KEMET packaging NUMBER REFERENCE BP BX BX BP BX BX 100 Volt - C0805 SIZE (MILITARY CDR01) 10 J,K C0805P100(3)1G(4)C CDR01BP100B(3)W(4) 12 J C0805P120J1G(4)C CDR01BP120BJW(4) 15 J,K C0805P150(3)1G(4)C CDR01BP150B(3)W(4) 18 J C0805P180J1G(4)C CDR01BP180BJW(4) 22 J,K C0805P220(3)1G(4)C CDR01BP220B(3)W(4) 27 J C0805P270J1G(4)C CDR01BP270BJW(4) 33 J,K C0805P330(3)1G(4)C CDR01BP330B(3)W(4) 39 J C0805P390J1G(4)C CDR01BP390BJW(4) 47 J,K C0805P470(3)1G(4)C CDR01BP470B(3)W(4) 56 J C0805P560J1G(4)C
KEMET
Original
CDR02 CDR03 CDR31 CDR32 CDR33 CDR01-CDR06 C1206 KEMET packaging PEF55801VV1.3 CDR05BX823BKW CDR31-CDR35 MIL-PRF-55681 kemet CHIP/MIL-PRF-55681 CDR04 C1805 C1808

L1117T-3.3

Abstract: RIPPLE V O LTAG E (P-P) 25% 20% 5% 3% AB D Ïf A B D Ï F in air at room temperature. l% .5% 0 POWER FACTOR vs TEMPERATURE (°C) @ 6 0 Hz 0 20 - 4 3/4 2 3/4 6 5 3/8 * 4 3 6 5 2 3/4 3/4 A B D E f TEST VOLTAGE is 1 5 0 % of nameplate voltage for two minutes 2 3/4 13/4 4 3 5/16 * ~ - 6 4 8 7 3 6 5 8 7 4 3/4 3/4 10 7 12 11 6 3/4 3/4 3/4 3/4 3/8 1/4 A - 10 3.4 B - 6 3/4 D - 12 1 - 1 1 5/16 F - 5 1/4
-
OCR Scan
VV-L-791 LJ600-603 LJ600-104 LJ600-124 LJ600-154 LJ600-204

PLT1SM

Abstract: plb4s-c Panduit Suffix 3 0 00 1 2 3 4Y 5 6 7 8 10 14 20 30 Material Heat Stabilized Nylon 6.6 Nylon 6.6 Nylon , Panduit Suffix 39 53 54 55 59 60 69 71 76 86 100 109 120 300 702Y 3 Denotes Panduit Natural Nylon 6.6 , 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 Material/Color Suffix 0 0 0 0, 14 0 0 0 0 3, 4Y 0 0, 4Y 0 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 Material/Color Suffix 0, 30 0, 30 0 0, 20, 30 0 0, 30 0, 30 0, 30 0, 2, 3, 4Y, 6, 10, 69 0, 2, 3, 4Y, 5, 6, 10 3 0, 1, 2, 3, 4Y, 5, 6, 7, 8, 10, 69 0, 4Y, 6 0, 2, 3
Panduit
Original
PLT1SM plb4s-c PLT12EH-Q UV18 BT1M-XMR sst1m-m HLM-15R HLS-15R HLS-75R TTS-20R TTS-35RX TTS-35R3
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