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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 84 diode

Catalog Datasheet MFG & Type PDF Document Tags

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 , TxTUPOH TxTUPOHIns TxTUPOHFrm TxTUPOHEnb TxTUPOHClk RRNG8 C139 W4 AD1 AA3 AA2 84 81 , QXFRMR T2D 25 2 D13 PO300SA 23 22 1 5 D14 PO300SA 21 4 QXFRMR T2C 30 2
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T2d DIODE T2D DIODE 48 T2D 66 diode T2D DIODE 46 T2d 86 diode T2D DIODE 49 384MH PTH08080W LED-1206 XCF02S XRT86SH221 T86SH

marking A4t sot23

Abstract: PH C5V1 Philips Semiconductors Small Signal Transistors and Diodes DIODE TYPE NUMBER TO MARKING CODE TYPE NUMBER MARKING CODE Marking codes TYPE NUMBER PACKAGE MARKING CODE PACKAGE 1N5817 1N5817 SOD81 1N821 1N821 SOD68 (DO34) 1N5818 1N5818 SOD81 1N821A , C7V5 PH SOD27 (DO35) 1999 Jun 11 84 Philips Semiconductors Small Signal Transistors and , BZV49-C16 SC-62/SOT89 DIODE MARKING CODE TO TYPE NUMBER MARKING CODE TYPE NUMBER PACKAGE
Philips Semiconductors
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marking A4t sot23 PH C5V1 T2D 79 diode C18 ph diode transistor marking codes A4p 3Ft SOT23 1N5819 1N823 1PS59SB10 SC-59/SOT346 1N823A 1PS59SB14

T2D DIODE 46

Abstract: T2D DIODE 48 Clk19M 2 77 D2 DIODE Vcc3v3 LIUClkIn R13 10 3 M0 M1 M2 19 20 18 AIN0 , C140 0.1uF 14 13 D7 W4 AD1 AA3 AA2 84 81 83 82 A0 A1 A2 A3 A4 A5 A6 A7 , 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 T2D 83 DIODE XRT86SH221ES XRT75VL00

T2D DIODE

Abstract: T2d 86 diode LA17 104 102 99 98 97 96 95 93 92 91 90 89 87 86 84 83 82 81 80 79 77 74 73 , 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 , xRxClki+ xRxClki- 19 20 22 23 24 25 26 27 29 57 69 43 84 38 61 62 67 DVdd DVdd
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T2D DIODE 94 AK9 RJ12 C1959 transistor ad149 T8046 T30L PMEAD30 93CS66 T86VSH328 T86VSH328SCH XRT86VSH328

T2D DIODE 94

Abstract: QE R518 22K 83 84 102 76 77 79 82 85 90 70 71 207 206 REF_CLK4 GNDA 1.0uF TANT , 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 , % 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 10uF 22K 83 84 102 76 77 79 82 85 90 70 71 207 206 REF_CLK4 GNDA , 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
Intel
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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

philips diode PH 33D

Abstract: philips diode PH 33J Philips Semiconductors Small Signal Transistors and Diodes DIODE TYPE NUMBER TO MARKING CODE TYPE NUMBER MARKING CODE Marking codes TYPE NUMBER PACKAGE MARKING CODE PACKAGE 1N5817 1N5817 SOD81 1N821 1N821 SOD68 (DO34) 1N5818 1N5818 SOD81 1N821A 1N821A SOD68 (DO34) 1N5819 1N5819 SOD81 1N823 1N823 SOD68 (DO34) 1PS59SB10 10 , BZV49-C16 SC-62/SOT89 DIODE MARKING CODE TO TYPE NUMBER MARKING CODE TYPE NUMBER PACKAGE
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philips diode PH 33D philips diode PH 33J philips diode PH 33m DIODE C18 ph 33G PH DIODE C18 ph 1N825 1PS59SB15 1N825A 1PS59SB16 1N827 1PS59SB20

MMBD2103

Abstract: ZENER DIODE t2d coloured letter (usually on extremely small diode packages). Colour, if significant, is shown in small type , from the type of device. For example, a voltage specified for a rectifier diode is usually the maximum PIV (peak inverse voltage) of the diode, but for a zener diode the operating (zener voltage) will be , output p-channel fet (any type) pin diode package pnp bipolar transistor protection, protected (as in , SOT323 Leaded Equivalent/Data Npn RF fT 7GHz PAD-5 5pA leakage diode pnp dtr 4k7+4k7 pnp dtr 4k7+4k7 DC
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MMBD2103 ZENER DIODE t2d MMBD2101 MMBD2102 MMBD2104 SMD codes BC846A FMMT3904 BZV49 BZV55 BAS32 BAS45

SMD Codes

Abstract: TRANSISTOR SMD T1P coloured letter (usually on extremely small diode packages). Colour, if significant, is shown in small type , from the type of device. For example, a voltage specified for a rectifier diode is usually the maximum PIV (peak inverse voltage) of the diode, but for a zener diode the operating (zener voltage) will be , output p-channel fet (any type) pin diode package pnp bipolar transistor protection, protected (as in , SC70 SC59 SOT89 EMT3 SC70 SC59 Leaded Equivalent/Data Npn RF fT 7GHz PAD-5 5pA leakage diode pnp dtr
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TRANSISTOR SMD T1P BAW92 schottky diode s6 81A smd transistor A6a a4s smd transistor Transistor SMD a7s BAV105 LL4148 LL4448 BB241 BB249 LL914
Abstract: Delay Time All Controllers 50 ns BG/TG t2D Bottom Gate OFF to Top Gate ON Delay Top , vs VITH 84 12 80 8 60 78 4 40 75 0 VSENSE â'" = 5V 81 VFB = , vs Duty Factor 80 VCC = 5V VFB = 0.58V 70 84 60 VSENSE (mV) VSENSE (mV) 81 78 , 92 VPLLFLTR = 0V, fSW = 220kHz 88 VPLLFLTR FLOATING, fSW = 400kHz 84 TG, BG OPEN 100 â , here. This pin swings from a Schottky diode (external) voltage drop below ground to VIN (where VIN is 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 , 400kHz 84 TG, BG OPEN VPLLFLTR = 5V, fSW = 560kHz ­25 0 25 50 75 TEMPERATURE (°C) 100 125 120 100 , capacitor connects here. This pin swings from a Schottky diode (external) voltage drop below ground to VIN
Linear Technology
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1M preset, horizontal LTC3802 LTC3827

T2D 66 diode

Abstract: 1M preset, horizontal ISENSE DFMAX TG RUP TG RDOWN BG RUP BG RDOWN TG/BG t1D BG/TG t2D tON(MIN) Tracking ITRACK VFBTRACK , G13 Maximum Current Limit Threshold vs Temperature 84 81 78 75 72 69 66 ­50 VSENSE ­ = 5V VSENSE ­ , Limit Threshold vs SENSE Common Mode Voltage 90 87 84 81 VSENSE (mV) VSENSE (mV) 78 75 72 69 66 63 60 0 , 140 88 VPLLFLTR FLOATING, fSW = 400kHz 84 TG, BG OPEN VPLLFLTR = 5V, fSW = 560kHz ­25 0 25 50 75 , capacitor connects here. This pin swings from a Schottky diode (external) voltage drop below ground to VIN
Linear Technology
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8-pin 3773

ZENER DIODE t2d

Abstract: 3 phase monitoring IC Gate ON Delay Synchronous Switch-On Delay Time All Controllers 50 ns BG/TG t2D Bottom , vs Temperature Maximum Current Limit Threshold vs VITH 84 12 80 8 60 78 4 , Current Limit Threshold vs Duty Factor 80 VCC = 5V VFB = 0.58V 70 84 60 VSENSE (mV , DROPOUT 92 VPLLFLTR = 0V, fSW = 220kHz 88 VPLLFLTR FLOATING, fSW = 400kHz 84 TG, BG OPEN , here. This pin swings from a Schottky diode (external) voltage drop below ground to VIN (where VIN is
Linear Technology
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3 phase monitoring IC 8-pin DIP 3773 3773 transistor voltage diagram 8 pin ic 3773 3773 ic 3773

8 pin ic 3773

Abstract: 3773 P Synchronous Switch-On Delay Time 2.4 0.9 50 ns BG/TG t2D Bottom Gate OFF to Top Gate ON , Maximum Current Limit Threshold vs Temperature Maximum Current Limit Threshold vs VITH 84 12 , 70 84 60 VSENSE (mV) VSENSE (mV) 81 78 75 72 50 40 30 69 20 66 10 63 , VPLLFLTR = 5V DROPOUT 92 VPLLFLTR = 0V, fSW = 220kHz 88 VPLLFLTR FLOATING, fSW = 400kHz 84 , here. This pin swings from a Schottky diode (external) voltage drop below ground to VIN (where VIN is
Linear Technology
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3773 P diode T2D 84 FZT603 diode 78 t2d

DSP101

Abstract: burr brown 1khz oscillator Sensitivity fw - 1kHz fH *5 1kHz (-60dB) fM = 25kHz t â'ž = 1kHz fm = 1kHz 1 = 1kHz m 83 89 84 , Data Bookâ'"Data Conversion Products 17313b5 0022435 211 â  84|iV 21|iV 2289 E l , Data Bookâ'"Data Conversion Products â I 17313LS QQ2243fl T2D â  E Of, Call Customer S e m e , +100mV after laser-trimming during manufacturing. They can handle external inputs up to about one diode drop
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OCR Scan
DSP101 DSP202 burr brown 1khz oscillator 74HC163 74HC5940 DSP102 32-BIT 1M52-1111 AZBS734 DSP16

XRT75VL00

Abstract: tms 374 cd 13 90 89 87 86 84 83 82 81 80 79 77 74 73 72 69 68 67 65 64 63 62 61 LD0 LD1 , 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 , 69 43 84 38 61 62 67 40 87 89 RxD_Clk 35 34 36 T30DLP T30RLP T30ALP 33
Exar
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XRT86SH328 tms 374 cd 13 RJ19 T3D 81 DIODE RJ23 y2w15 XRT91L30 XRT86SH328ES XRT86SH3

philips diode PH 33D

Abstract: PH C5V1 DISCRETE SEMICONDUCTORS Marking codes Small Signal Transistors and Diodes Philips Semiconductors Small Signal Transistors and Diodes DIODE TYPE NUMBER TO MARKING CODE TYPE NUMBER 1N821 1N821A 1N823 1N823A 1N825 1N825A 1N827 1N827A 1N829 1N829A 1N914 1N4148 1N4150 1N4151 1N4448 1N4531 1N4532 1N4728A 1N4729A 1N4730A 1N4731A 1N4732A 1N4733A 1N4734A 1N4735A 1N4736A 1N4737A 1N4738A 1N4739A 1N4740A , SC-59/SOT346 SC-59/SOT346 SC-59/SOT346 SC-62/SOT89 SC-59/SOT346 SC-59/SOT346 SC-59/SOT346 DIODE
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PH 33D PH33D ph33g PH 33G philips diode PH 37m ph c24 1N4741A 1N4742A 1N4743A 1N4744A 1N4745A 1N4746A

T2D DIODE 46

Abstract: T2D DIODE 3300pF Each Driver (Note 6) 90 ns BG/TG t2D Bottom Gate Off to Top Gate On Delay Top , VID inputs also has a series diode to allow input voltages higher than the VIDVCC supply without , 25, 34): Switch Node Connections to Inductors. Voltage swing at these pins is from a Schottky diode , off cycle through an external diode when the top MOSFET turns off. As VIN decreases to a voltage , Information section. An external Schottky diode can be used to minimize the voltage drop from EXTVCC to
Linear Technology
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LTC3716 LTC1736 T2D 68 zener diode IN T2D DIODE DIODE t2d T2D 06 DIODE diode t2d 77 595D LTC1929/LTC1929-PG LTC1702/LTC1703 LTC1708-PG LTC1709-7 LTC1709-8/LTC1709-9
Abstract: /TG t2D Bottom Gate Off to Top Gate On Delay Top Switch-On Delay Time CLOAD = 3300pF Each , inputs also has a series diode to allow input voltages higher than the VIDVCC supply without damage or , . Voltage swing at these pins is from a Schottky diode (external) voltage drop below ground to VIN. BOOST2 , off cycle through an external diode when the top MOSFET turns off. As VIN decreases to a voltage , , as described in the Applications Information section. An external Schottky diode can be used to Linear Technology
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LTC3719 GN-24 SSOP-16 LTC3717/LTC3831 LTC3732

T2D DIODE

Abstract: T2D DIODE 46 Synchronous Switch-On Delay Time CLOAD = 3300pF Each Driver (Note 6) 90 ns BG/TG t2D Bottom , built-in pull-up resistor attached to the VID inputs also has a series diode to allow input voltages , Connections to Inductors. Voltage swing at these pins is from a Schottky diode (external) voltage drop below , CB, which normally is recharged during each off cycle through an external diode when the top MOSFET , the Applications Information section. An external Schottky diode can be used to minimize the voltage
Linear Technology
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BAT85 LTC1709EG-7 T510 VN2222LL T2D 75 diode 20a power supply LTC1628/LTC1628-PG LTC1629/LTC1629-PG LTC1735
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