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Part Manufacturer Description Datasheet BUY
TPD4E004DSFR Texas Instruments UNIDIRECTIONAL, SILICON, TVS DIODE visit Texas Instruments
TPD3E001DRY Texas Instruments UNIDIRECTIONAL, SILICON, TVS DIODE visit Texas Instruments
TPD2E001YFPR Texas Instruments DIODE UNIDIRECTIONAL, SILICON, TVS DIODE, LEAD FREE, DSBGA-4, Transient Suppressor visit Texas Instruments
ISL99125BDRZ-T Intersil Corporation 25A DrMOS Module with Diode Emulation and PS4; QFN24; Temp Range: 0° to 70° visit Intersil
ISL99135BDRZ-T Intersil Corporation 35A DrMOS Module with Diode Emulation and PS4; QFN24; Temp Range: 0° to 70° visit Intersil
UC1610J/883B Texas Instruments SILICON, BRIDGE RECTIFIER DIODE visit Texas Instruments

T2D DIODE 29

Catalog Datasheet MFG & Type PDF Document Tags

T2D 96 diode

Abstract: T2D 78 diode + 0.5 Vo DC Output Voltage -0 .5 to V c c + 0 5 V l|K DC Input Diode Current ± 20 mA â'¢ok DC Output Diode Current ± 20 mA 'o DC Output Source Sink Current , CHARACTERISTICS T2D â  S ^ Parameter Vcc V|H High Level Input Voltage 2.0 4.5 6.0 1.5 , 150 30 26 180 36 31 ns 145 29 25 175 35 30 ns 190 38 33 225 45 38
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T2D 24 DIODE

Abstract: T2d 43 diode AV dd DGND AGND V refd 33 r FBD s 37 >OUT1D â 0UT2D 30 l0UT2C 29 , ) 24 Current Output C 27 l0UT2C Complement o f Output C 28 NC No Connection 29 loUTIC ÌOUT1C Feedback Resistor for DAC C 29 R fbc 26 R fbc Reference input for DAC , utput D Current Output D 31 32 l0U T2D 30 31 CS Chip Select Current Output D , should be protected by Schottky diode clamps (H P5082-2835) from input pin to the supplies. A ll inputs
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T2D 24 DIODE T2d 43 diode MP7680 P7680 QDQ741Q

T2D 87 diode

Abstract: T2D 49 DIODE Voltage ±20 V eAS Single Pulse Avalanche Energy (§) 160 (See Fig. 29) mJ , ) mJ dv/dt Peak Diode Recovery dv/dt ® 55 (See Fig. 30) V/ns Tj t STG Operating , - pF V q s - OV, VDS - 25V f = 1.0 MHz See Fig. 22 Source-Drain Diode Ratings and Characteristics © Parameter Min. Typ. Max. â s Continuous Source Current (Body Diode) â'" â'" 14 'SM Pulse Source Current (Body Diode) ® â'" â'" 56 Units A Test
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T2D 87 diode T2D 49 DIODE Rectifier t2d IRHM7130 IRHM8130 1X106 4A55452 IRHM7130D IRHM7130U

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 , 34 36 41 43 45 47 49 19 20 18 30 29 VCCi VCCi VCCi VCCi VCCi VCCi VCCi VCCi , QXFRMR T2D 25 2 D13 PO300SA 23 22 1 5 D14 PO300SA 21 4 QXFRMR T2C 30 2 , H2 TxA_Clk R70 TxA_DP TxA_PL TxA_AL TxA_C1J1 49 48 19 20 22 23 24 25 26 27 29 , RRNG 37.4 U3 37.4 T75VL00 40 29 R58 10 R63 Vcc3v3 10 4 16 21 44
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T2d DIODE T2D DIODE 48 T2D 66 diode T2D DIODE 46 T2D DIODE 49 T2d 86 diode 384MH PTH08080W LED-1206 XCF02S XRT86SH221 T86SH

T2D 44 diode

Abstract: T2D DIODE 42 13 14 15 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 A1 XFER WR2 WR1 CS NC V refa r fba DAC , 26 27 28 29 30 31 32 33 34 35 NC V refa r fba No Connection Reference Input for DAC A , bunc lOUT2C !o UT2D !o u t i d r fbd v refd NC !0U T2D !o u t i d r fbd V refd AGND DGND , Schottky diode clamps (HP5082-2835) from input pin to the supplies. A ll inputs have protection diodes
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T2D 44 diode T2D DIODE 42 T2D 37 DIODE T2d 03 diode T2D DIODE 44 T2D DIODE 43 TTL75 MP7680JN MP7680KN MP7680JE MP7680KE 3422L

T2D DIODE 46

Abstract: T2D DIODE 48 Clk19M 2 77 D2 DIODE Vcc3v3 LIUClkIn R13 10 3 M0 M1 M2 19 20 18 AIN0 , + + + + + + + + + GND 30 29 PGM INIT DONE CCLK DIN DOUT + + + + + + , QXFRMR T1A 40 2 D11 PO300SA 38 37 1 5 D12 PO300SA 36 4 QXFRMR T2D 25 2 , 48 19 20 22 23 24 25 26 27 29 R71 10 10 N3 L2 M1 K1 M2 RxD_D0 RxD_D1 , 10 10 40 29 4 16 21 44 LIURefClk 33 R64 3.3k TxLev TAOS REQEN LLB RLB STS
Exar
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T2D 82 diode T3D 54 DIODE t3d diode T2D DIODE 81 T2D 83 DIODE T2D 79 diode XRT86SH221ES XRT75VL00

T2D 96 diode

Abstract: SAA7350GP analog timing vssat 28 0 V supply for left and right channel analog timing Vddatl 29 5 V supply for , input diode current - +20 mA V0 DC output voltage -0.5 +6.5 V lo DC output source or sink current - , . November 1991 672 â  711Dfl2b DDfiOfilB T2D This Material Copyrighted By Its Respective Manufacturer
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SAA7350 TDA1547 SAA7350GP T2D 96 diode philips saa7350gp T2D 98 DIODE T2D 65 DIODE SQT205AG D0007T 2896MH

marking A4t sot23

Abstract: A1t SOT23 DISCRETE SEMICONDUCTORS Marking codes Small Signal Transistors and Diodes 1999 Jun 11 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 , 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 A1t SOT23 3Ft SOT23 PH C5V1 transistor t04 sot23 transistor marking codes A4p 1N5819 1N823 1PS59SB10 SC-59/SOT346 1N823A 1PS59SB14

T2D DIODE

Abstract: T3D DIODE -CBE3 PAR AD15 VCC3V3 40 29 19 7 8 AD9 PAR 28 AD6 AD4 CLK AD2 AD0 172 , 3 4 P0.6 P0.7 PGMINITDONE CCLK CSDO 3 4 28 27 A P0.4 P0.5 GND 30 29 , 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 87 diode

Abstract: T2D diode 89 BG0 ISENSE0â'" 3 20 VIN 29 SGND RUN0 4 RUN1 5 19 PGND 18 EXTVCC ISENSE1â'" 6 17 , , θJC_BOT = 3.4°C/W EXPOSED PAD (PIN 29) IS SGND, MUST BE SOLDERED TO PCB Order Information LEAD FREE , (Note 6) CLOAD = 3300pF Each Driver 30 ns BG/TG t2D Bottom Gate Off to Top Gate On Delay , Inductors. Voltage swings at the pins are from a Schottky diode (external) voltage drop below ground to VIN , capacitors connect to these pins. These pins swing from a diode voltage drop below INTVCC up to VIN + INTVCC
Linear Technology
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T2D diode 89 diode t2d 88 LTC3870 LTC3880/LTC3883 LTC3880 LTC3883 LTC3880/LTC3880-1 LTC3883/LTC3883-1

T2D diode 89

Abstract: BG0 ISENSE0â'" 3 20 VIN 29 SGND RUN0 4 RUN1 5 19 PGND 18 EXTVCC ISENSE1â'" 6 17 , , θJC_BOT = 3.4°C/W EXPOSED PAD (PIN 29) IS SGND, MUST BE SOLDERED TO PCB Order Information LEAD FREE , Time (Note 6) CLOAD = 3300pF Each Driver 30 ns BG/TG t2D Bottom Gate Off to Top Gate On , Node Connections to Inductors. Voltage swings at the pins are from a Schottky diode (external , (+) terminal of the bootstrap capacitors connect to these pins. These pins swing from a diode voltage
Linear Technology
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TC3880/LTC3880-1 LTC3882 LTC2974 LTC2977 LTM4676

T2D DIODE 32

Abstract: 3735f + SENSE1­ 1 2 3 4 5 6 7 8 9 10 11 36 MCH_PG 35 PGOOD 34 BOOST1 33 TG1 32 SW1 31 BOOST2 30 TG2 29 SW2 28 , 19 RBOOT VID0 RDPSLP RUN/SS VID1 ITH NC 39 TOP VIEW MCH_PG BOOST1 PGOOD SW1 31 NC 30 BOOST2 29 TG2 28 , DFMAX TG1, 2 tr TG1, 2 tf BG1, 2 tr BG1, 2 tf TG/BG t1D BG/TG t2D tON(MIN) RATTEN ATTENERR VIDTHLOW , capacitor placed directly adjacent to the IC. SW2, SW1 (Pins 29, 32/Pins 28, 32): Switch Node Connections to Inductors. Voltage swing at these pins is from a Schottky diode (external) voltage drop below
Linear Technology
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LTC3735 T2D DIODE 32 3735f diode 78 t2d or8m 1308v flash device MARKing intel LTC3869/LTC3869-2 LTC3856 LTC3850/LTC3850-1 LTC3850-2 LTC3860
Abstract: 31 BG1 FCB 7 30 EXTVCC ITH 8 29 INTVCC SGND 9 28 PGND VDIFFOUT 10 27 , /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 , N-channel MOSFETS and the (â'") terminals of CIN. INTVCC (Pin 29): Output of the Internal 5V Linear Low Linear Technology
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LTC3719 GN-24 SSOP-16 LTC3716 LTC3717/LTC3831 LTC3728
Abstract: diode (external) voltage drop below ground to VIN. TG2, TG1 (Pins 30, 33/Pins 29, 33): High Current , BOOST2 VOAâ'" 6 31 BOOST2 VOA+ 3 29 TG2 OAOUT 7 30 TG2 VOAâ'" 4 28 SW2 29 SW2 OAOUT 5 27 PVCC 28 PVCC STP_CPUB 6 27 BG1 26 PGND RDPRSLP 14 23 VID4 , = 3300pF Each Driver (Note 6) Synchronous Switch-On Delay Time 50 ns BG/TG t2D Bottom , minimum of 4.7µF X5R/X7R ceramic capacitor placed directly adjacent to the IC. SW2, SW1 (Pins 29, 32 Linear Technology
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LTC3855 LTC3829 LTC3853

zener diode T2D 74

Abstract: ZENER DIODE t2d 70 EXTVCC ITH1 8 29 INTVCC SGND 9 28 PGND LTC1876EG 3.3VOUT 10 IITH2 11 27 BG2 , ns q 62 BG/TG t2D Bottom Gate Off to Top Gate On Delay Top Switch-On Delay Time CLOAD , 31 29 27 1.4 1.2 1.0 0.8 0.6 0.4 0.2 25 ­50 ­25 50 25 0 75 TEMPERATURE (°C , these pins are from ground to (VOUT + voltage across Shottky diode). Minimize trace area at these pins , diode (external) voltage drop below ground to VIN. BOOST1, BOOST2 (Pins 33, 26): Bootstrapped Supplies
Linear Technology
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LTC1876 zener diode T2D 74 ZENER DIODE t2d 70 a1876 ZENER DIODE t2d FDS6680A LT1511 LTC1538-AUX LTC1625/LTC1775 GN-16 LTC1628/LTC1628-PG

T2D DIODE 46

Abstract: T2D DIODE 48 EXTVCC ITH 8 29 INTVCC SGND 9 28 PGND VDIFFOUT 10 27 BG2 VOS ­ 11 26 , Driver (Note 6) 90 ns BG/TG t2D Bottom Gate Off to Top Gate On Delay Top Switch-On Delay , diode to allow input voltages higher than the VIDVCC supply without damage or clamping (see the , from a Schottky diode (external) voltage drop below ground to VIN. BOOST2, BOOST1 (Pins 26, 33 , ) terminals of CIN. INTVCC (Pin 29): Output of the Internal 5V Linear Low Dropout Regulator and the EXTVCC
Linear Technology
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80a charger transformer ADJUSTABLE VOLTAGE AND CURRENT REGULATOR 12v 30a IN T2D DIODE pi controller with op amps T2D 26 diode T2D DIODE 60

T2D DIODE

Abstract: T2D DIODE 46 EXTVCC ITH 8 29 INTVCC SGND 9 28 PGND VDIFFOUT 10 27 BG2 VOS ­ 11 26 , Driver (Note 6) 90 ns BG/TG t2D Bottom Gate Off to Top Gate On Delay Top Switch-On Delay , diode to allow input voltages higher than the VIDVCC supply without damage or clamping (see the , ): Switch Node Connections to Inductors. Voltage swing at these pins is from a Schottky diode (external , ): Main Supply Pin. Should be closely decoupled to the IC's signal ground pin. INTVCC (Pin 29): Output
Linear Technology
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diode t2d 80 T2D 78 diode T2D 04 DIODE 595D LTC1629-6 LTC1736 LTC3729 LTC3732

T2D 21 diode

Abstract: T2D DIODE FCB 7 30 EXTVCC ITH 8 29 INTVCC SGND 9 28 PGND VDIFFOUT 10 27 BG2 VOS , BG/TG t2D Bottom Gate Off to Top Gate On Delay Top Switch-On Delay Time CLOAD = 3300pF Each , resistor attached to the VID inputs also has a series diode to allow input voltages higher than the VIDVCC , ): Switch Node Connections to Inductors. Voltage swing at these pins is from a Schottky diode (external , Ground. Connect to sources of bottom N-channel MOSFETS and the (­) terminals of CIN. INTVCC (Pin 29
Linear Technology
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LTC3819 T2D 21 diode T2D 31 diode zener LTC3819EG MBRS340T3 Si4420DY TC3716 LTC1709-7

stp 520 schottky diode

Abstract: LTC3735EG (Pins 29, 32/Pins 28, 32): Switch Node Connections to Inductors. Voltage swing at these pins is from a Schottky diode (external) voltage drop below ground to VIN. TG2, TG1 (Pins 30, 33/Pins 29, 33): High , VOA+ 5 6 31 BOOST2 OAOUT 7 30 TG2 STP_CPUB 8 29 SW2 SGND 9 28 PVCC , BOOST2 VOA+ 3 29 TG2 VOA­ 4 28 SW2 OAOUT 5 27 PVCC STP_CPUB 6 26 BG1 39 , t2D Bottom Gate Off to Top Gate On Delay CLOAD = 3300pF Each Driver (Note 6) Top Switch-On Delay
Linear Technology
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stp 520 schottky diode LTC3735EG LT3735 RC 474K LTC3735E T2D DIODE 06 LTC1709-8/LTC1709-9 LTC1735 LTC1778 LTC3714 LTC3734

block diagram of schottky diode

Abstract: ZENER DIODE t2d 31 BG1 FCB 7 30 EXTVCC ITH 8 29 INTVCC SGND 9 28 PGND VDIFFOUT 10 27 , 3300pF Each Driver (Note 6) 90 ns BG/TG t2D Bottom Gate Off to Top Gate On Delay Top , diode to allow input voltages higher than the VIDVCC supply without damage or clamping (see the , 25, 34): Switch Node Connections to Inductors. Voltage swing at these pins is from a Schottky diode , pin. INTVCC (Pin 29): Output of the Internal 5V Linear Low Dropout Regulator and the EXTVCC Switch
Linear Technology
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block diagram of schottky diode zener diode T2D 27 bit 3719 ic LTC3719EG T510
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