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Part Manufacturer Description Datasheet BUY
DC1319B-A Linear Technology BOARD EVAL LED DRIVER LT3756 visit Linear Technology - Now Part of Analog Devices
DC1205A Linear Technology BOARD EVAL LED DRIVER LT3592 visit Linear Technology - Now Part of Analog Devices
DC1160A Linear Technology BOARD EVAL LED DRIVER LT3518 visit Linear Technology - Now Part of Analog Devices
DC1319A-B Linear Technology BOARD EVAL LED DRIVER LT3756-1 visit Linear Technology - Now Part of Analog Devices
LTC4358IDE#TRPBF Linear Technology LTC4358 - 5A Ideal Diode; Package: DFN; Pins: 14; Temperature Range: -40°C to 85°C visit Linear Technology - Now Part of Analog Devices Buy
LTC4358IDE#PBF Linear Technology LTC4358 - 5A Ideal Diode; Package: DFN; Pins: 14; Temperature Range: -40°C to 85°C visit Linear Technology - Now Part of Analog Devices Buy

T2D 66 diode

Catalog Datasheet MFG & Type PDF Document Tags

marking A4t sot23

Abstract: A1t SOT23 Philips Semiconductors Small Signal Transistors and Diodes DIODE TYPE NUMBER TO MARKING CODE TYPE , ) 1PS70SB46 6t6; 6-6 SC-70/SOT323 1N4532 4532PH SOD68 (DO34) 1PS74SB23 P1 SC-74/SOT457 , (DO34) BAS40-06 46p; 46t SOT23 BAT83 BAT83 SOD68 (DO34) BAS40-06W 66 SC , BZV49-C16 SC-62/SOT89 DIODE MARKING CODE TO TYPE NUMBER MARKING CODE TYPE NUMBER PACKAGE , -05W SC-70/SOT323 4744A P 1N4744A SOD66 (DO41) 66 BAS40-06W SC-70/SOT323 4745A P
Philips Semiconductors
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marking A4t sot23 A1t SOT23 3Ft SOT23 PH C5V1 transistor t04 sot23 transistor marking codes A4p 1N5817 1N821 1N5818 1N821A 1N5819 1N823

marking A4t sot23

Abstract: PH C5V1 Philips Semiconductors Small Signal Transistors and Diodes DIODE TYPE NUMBER TO MARKING CODE , 4531PH SOD68 (DO34) 1PS70SB46 6t6; 6-6 SC-70/SOT323 1N4532 4532PH SOD68 (DO34 , (DO34) BAS40-06 46p; 46t SOT23 BAT83 BAT83 SOD68 (DO34) BAS40-06W 66 SC , BZV49-C16 SC-62/SOT89 DIODE MARKING CODE TO TYPE NUMBER MARKING CODE TYPE NUMBER PACKAGE , -05W SC-70/SOT323 4744A P 1N4744A SOD66 (DO41) 66 BAS40-06W SC-70/SOT323 4745A P
Philips Semiconductors
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T2D 79 diode C18 ph diode T2D DIODE A4T SOT23 1n4148 sot23 A6t SOT23 1PS59SB10 SC-59/SOT346 1N823A 1PS59SB14 1N825 1PS59SB15

T2d DIODE

Abstract: T2D DIODE 48 85 92 103 117 124 131 137 144 158 170 177 183 190 197 D2 DIODE PWRJACK J17 4 , 2.7k 14 28 37 67 76 90 119 128 142 172 186 195 + + 13 26 38 53 66 78 91 105 , QXFRMR T2D 25 2 D13 PO300SA 23 22 1 5 D14 PO300SA 21 4 QXFRMR T2C 30 2
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T2D DIODE 48 T2D 66 diode T2D DIODE 46 T2d 86 diode T2D DIODE 49 T2D 83 DIODE 384MH PTH08080W LED-1206 XCF02S XRT86SH221 T86SH

T2D DIODE 46

Abstract: T2D DIODE 48 Clk19M 2 77 D2 DIODE Vcc3v3 LIUClkIn R13 10 3 M0 M1 M2 19 20 18 AIN0 , 195 + + 13 26 38 53 66 78 91 105 118 130 143 156 171 184 196 208 + + + , QXFRMR T1A 40 2 D11 PO300SA 38 37 1 5 D12 PO300SA 36 4 QXFRMR T2D 25 2
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T2D 82 diode T2D 87 diode T3D 54 DIODE t3d diode T2D DIODE 81 T3D 98 diode XRT86SH221ES XRT75VL00

BUF601

Abstract: 85 125 -40 -40 ±5.5 ±3 -72 ±5.5 ±6.6 85 125 ±5 ±6 -77 , 7 3 1 3 b S â¡â¡2310'! T2D â  3.1.4 Burr Brown IC Data Book â'"Linear Products B U R R - B , continuous current of 30mA without destruction. To insure long term reliability, however, the diode current
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BUF601 BUF600/601 320MH 900MH 300MH OPA66O

ZENER DIODE t2d

Abstract: zener t2d signal-to-noise ratio "CCIR468-3" 66 75 - dB THD total harmonic distortion - 0.2 0.3 % Tamb operating ambient , ) weighted signal-to-noise ratio "CCIR468-3" (quasi-peak) 66 75 - dB ThisBB:er 1995 May 23 7110flBti , is unchanged. 4. The LED shows the identification status. 1995 May 23 This Hi 711002b 00^05^0 T2D , diode zener diode protection for pins 4 to 17,21 and 23 for pins 1,2,3,18,19,20 and 24 Fig.7 Internal
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ZENER DIODE t2d zener t2d t2d 76 diode value T2D 40 zener diode T2D 48 T2D zener TDA9847 1993F

philips diode PH 33D

Abstract: philips diode PH 33J Philips Semiconductors Small Signal Transistors and Diodes DIODE TYPE NUMBER TO MARKING CODE , 4531PH SOD68 (DO34) 1PS70SB46 6t6; 6-6 SC-70/SOT323 1N4532 4532PH SOD68 (DO34 , (DO34) BAS40-06 46p; 46t SOT23 BAT83 BAT83 SOD68 (DO34) BAS40-06W 66 SC , BZV49-C16 SC-62/SOT89 DIODE MARKING CODE TO TYPE NUMBER MARKING CODE TYPE NUMBER PACKAGE , -05W SC-70/SOT323 4744A P 1N4744A SOD66 (DO41) 66 BAS40-06W SC-70/SOT323 4745A P
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philips diode PH 33D philips diode PH 33J philips diode PH 33m DIODE C18 ph 33G PH DIODE C18 ph 1N825A 1PS59SB16 1N827 1PS59SB20 1N827A 1PS59SB21

T2D DIODE

Abstract: T2d 86 diode A17 13 31 44 57 66 78 88 101 113 122 132 146 163 176 + + CON4AP 1 2 3 4 , DIODE + + LEDon# D61 2 2 4 50 49 48 47 46 43 42 41 39 38 37 36 35 34 , RTIP D12 PO300SA 36 4 RJ2 RJ45 RRNG QXFRMR T2D 25 2 TTIP D13 PO300SA 23 , RxD_D5 RxD_D6 RxD_D7 T 2 3 4 5 RxPOS1 RxNEG1 RxCLK1 66 63 60 1 C191 17
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T2D DIODE 94 AK9 RJ12 C1959 transistor ad149 T8046 T30L PMEAD30 93CS66 T86VSH328 T86VSH328SCH XRT86VSH328

philips diode PH 33D

Abstract: PH C5V1 Semiconductors Small Signal Transistors and Diodes DIODE TYPE NUMBER TO MARKING CODE TYPE NUMBER 1N821 1N821A , ; 6-6 P1 45 S0 S7 S1 S4 S2 F T G 8t5 44 43 45 S4 S5 S6 A3T B3T F3T C3T A3 B3 PACKAGE SOD81 SOD81 , ; 44t 64 45p; 45t 65 46p; 46t 66 47p 45A PH black L51 73p; 73t 73-; 73t 74p; 74t 74-; 74t 75p; 75t 75 , SC-59/SOT346 SC-59/SOT346 SC-59/SOT346 SC-62/SOT89 SC-59/SOT346 SC-59/SOT346 SC-59/SOT346 DIODE , -59/SOT346 16 MARKING CODE 56Y 5A1 5A6 5V1 5V6 5Y1 5Y6 6 621 622 623 62V 62Y 63 64 65 66 681 682 683 68V
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PH 33D PH33D ph33g PH 33G philips diode PH 37m ph c24 1N829 1N829A 1N914 1N4148 1N4150 1N4151

T2D DIODE 94

Abstract: QE R518 CIMENA MDC MDIO QCLK QSTAT VCC RED BN1 1 C2 10uF + + BANANA JACK DIODE , 100uF TANT VCCA + C12 GND DIODE D3 VCCD GNDA 1.0uF TANT 100uF TANT 93 94 95 96 97 GND DIODE D5 FB1 167 166 165 164 163 177 176 175 174 173 172 , % 59 60 58 54 55 56 57 66 69 65 61 62 63 64 U1A LXT97x1 TXD1_0 TXD1 , % R288 50 1% GND VCC_CT VCC_CT C250 0.01uF GND TG110-S453NX 25 26 23 T2D
Intel
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LXD9781 QE R518 EPC1PC8 QE r517 SG-8200 crystal j3f qe r524 TP175 208-P B3F-1002 TP12SDH8AQE IC149-208061-S5

74HC595 SMD

Abstract: smd transistor w18 BANANA JACK DIODE D4 GND + GND BANANA JACK 92 RESET MDINT R10 100uF TANT , TANT VCCA + C12 GND DIODE D3 VCCD GNDA D 1.0uF TANT 100uF TANT 93 94 95 96 97 GND DIODE D5 FB1 167 166 165 164 163 177 176 175 174 173 172 , MII PORTS 0&1 E Sheet LXT9781 MII DEMO BOARD 59 60 58 54 55 56 57 66 69 65
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74HC595 SMD smd transistor w18 8 pin SMD ic 2068 QE R519 QE r525 smd 1a2 MM74HC14M 20SOP SN74LVTH244ADWR EPF10K10ATC144-1 U27-34 MM74HC595MX

XRT75VL00

Abstract: tms 374 cd 13 LA12 LA13 LA14 LA15 LA16 LA17 13 31 44 57 66 78 88 101 113 122 132 146 163 176 2 4 C17 PAR CON PCIA_0 VCC5V C5 0.1uF IDSEL -CBE0 VCC3V3 DIODE C4 , D14 PO300SA 21 19 C131 16 2 D13 PO300SA 23 22 17 20 D21 4 QXFRMR T2D , C16 D16 A15 C4 C7 C11 TR NG R TIP C 66 RxVdd RxVdd RxVdd RxVdd RxVdd RxVdd RxVdd , 97 29 30 31 27 28 52 51 25 21 22 23 24 T30STS R73 66 63 60 74 75 1 4
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XRT86SH328 tms 374 cd 13 RJ19 T3D 81 DIODE RJ23 y2w15 XRT91L30 XRT86SH328ES XRT86SH3

DIODE C136

Abstract: smd diode R616 100uF GND VCCA LXT9785_SS_SMII_DEMO B VCC 1.0uF + C10 1.0uF 100uF DIODE , GNDD GNDD GNDD GNDD 66 79 183 195 B 103 116 117 130 131 144 145 158 VCCR0 VCCR1 , D4 DIODE GND DIODE D3 VCC_EXT VCC + .001uF C17 Ferrite Bead FB1 C , 1% 50 1% 50 1% 50 1% 50 1% 55 56 57 58 59 60 61 62 63 65 66 67 68 69 70 71 , 66 67 68 69 50 1% 70 50 1% 71 50 1% 50 1% 50 1% 50 1% 50 1% 50 1% 50 1% D 1 2
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DIODE C136 smd diode R616 smd diode R622 smd diode R648 smd diode d136 T2D 21 LXD9785 1/10W ERJ-6ENF30R1V TP12SH8AQE H1164 TP62-71

smd diode OE R612

Abstract: smd diode u1j D94 VCCA VCC + C10 1.0uF + C9 C8 GND 1.0uF 100uF DIODE + C137 + C138 , 120 126 135 141 149 155 VCCD VCCD VCCD VCCD GNDD GNDD GNDD GNDD 66 79 183 195 , 127 134 148 GND DIODE D3 DIODE D4 VCC_EXT VCC FB1 + .001uF C17 Ferrite , 60 61 62 63 65 66 67 68 69 70 71 D C284 CAP PAD GND R417 52 53 51 45 , % 50 1% 50 1% 55 56 57 58 59 60 61 62 50 1% 63 65 66 67 68 69 50 1% 70 50 1% 71
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smd diode OE R612 smd diode u1j R645 ss smii CAP 103 2KV diode U1J ERJ6GEY0R00V IC149-208-061S5 U14-29 SN74LVC244AD EP20K100QC20 SC1566CM-2

DIODE T3D 9D

Abstract: Diode T3D 7d the 1:1 multiplex mode, the maximum clock rate is 66 MHz. LD* is used for the pixel clock. Although
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DIODE T3D 9D Diode T3D 7d P19Ab t2d 9d L464001

LTC3853UJ

Abstract: C3853 30 ns BG/TG t2D Bottom Gate Off to Top Gate On Delay Top Switch-On Delay Time (Note 6 , Schottky diode (external) voltage drop below ground to VIN. 3853fa 8 LTC3853 PIN FUNCTIONS TG1 , . These pins swing from a diode voltage drop below INTVCC up to VIN + INTVCC. ILIM (Pin 39): Current , external diode when the top MOSFET turns off. If the input voltage, VIN, decreases to a voltage close to , Diode (Optional) Selection Two external power MOSFETs must be selected for each controller in the
Linear Technology
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LTC3853UJ C3853 SS2130 LTC3853EUJ LTC3860 LTC3855 LTC3829 LTC3851A/LTC3851A-1 LTC3856 MSOP-16E

Diode T2D od

Abstract: mab8400 Program Status Word 6.6 Interrupts 6.6.1 External interrupt 6.6.2 SIO/Derivative interrupt 6.6.3 Timer , from interrupt routines because it prematurely terminates the interrupt state (see Section 6.6). , Product specification 8-bit telecom microcontrollers PCD33XXA Family 6.6 Interrupts External, SlO , '¢ External interrupt input (see Section 6.6) â'¢ Test 0 input. When used as a Test 0 input (external , (see Section 6.6). â'¢ The Timer Flag (TF) is set. TF can be tested by conditional branch instructions
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Diode T2D od mab8400 MAB8048 PC10 PC11 00S3433

IHLP2525CZER3R3M01

Abstract: LTC3853 3300pF Each Driver 30 ns Minimum On-Time (Note 7) 90 ns TG/BG t1D BG/TG t2D tON , Schottky diode (external) voltage drop below ground to VIN. 3853f 8 LTC3853 PIN FUNCTIONS TG1 , . These pins swing from a diode voltage drop below INTVCC up to VIN + INTVCC. ILIM (Pin 39): Current , , which normally recharges during each off cycle through an external diode when the top MOSFET turns off , the core to saturate! Power MOSFET and Schottky Diode (Optional) Selection Two external power
Linear Technology
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IHLP2525CZER3R3M01 IHLP2525CZER1R5M01 100v 23A P-Channel MOSFET 078h diode LTC3810 LTC3811 LTC3826 LTC3828 LTC3834/ LTC3834-1
Abstract: Delay Time All Controllers 50 ns BG/TG t2D Bottom Gate OFF to Top Gate ON Delay Top , 0.58V 72 VSENSE (mV) âVSENSE (%) VSENSE (mV) VSENSE â'" = 2.5V 20 â'"4 69 66 , 75 72 69 40 30 20 66 10 63 60 50 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 VSENSE , here. This pin swings from a Schottky diode (external) voltage drop below ground to VIN (where VIN is , an external Schottky diode. When VIN decreases to a voltage close to VOUT, however, the loop may Linear Technology
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LTC3773 LTC3727 LTC3728 LTC3729 LTC3731 LTC3778

1M preset, horizontal

Abstract: ISENSE DFMAX TG RUP TG RDOWN BG RUP BG RDOWN TG/BG t1D BG/TG t2D tON(MIN) Tracking ITRACK VFBTRACK , Threshold vs Temperature 84 81 78 75 72 69 66 ­50 VSENSE ­ = 5V VSENSE ­ = 2.5V VSENSE (mV) VSENSE (mV) 4 0 , Voltage 90 87 84 81 VSENSE (mV) VSENSE (mV) 78 75 72 69 66 63 60 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 , capacitor connects here. This pin swings from a Schottky diode (external) voltage drop below ground to VIN , , which is normally recharged during each off cycle through an external Schottky diode. When VIN decreases
Linear Technology
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1M preset, horizontal LTC3802 LTC3827
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