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Part Manufacturer Description Datasheet BUY
LM3S5R31-IBA80-C3 Texas Instruments Stellaris Microcontroller 103-NFBGA visit Texas Instruments

TLR 103

Catalog Datasheet MFG & Type PDF Document Tags

367S

Abstract: TLR362S /seg Max. Ijr/seg TLG Series 565 30 10 0.56 1.25 10 1.7 2.0 2.5 10 5 6 2.3 10 TLS Series 635 40 1.03 2.60 1.7 1.9 2.5 TLR Series 700 100 0.26 0.70 5 1.4 2.0 2.5 5 UNIT nm mA mcd mA V mA , ) 100 TLR Series 0.5 0.3 0.1 , 0.01 0.03 0.05 0.1 0.3 0.5 DUTY RATIO DR 1.0 TLR Series 5.0 3.0 1.0 0.5 0.3 0.1 0.05 , (mA) FORWARD CURRENT Ip/seg (mA) a w FOR TLG AND TLS AND TLR
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TOSHIBA LED DISPLAY

Abstract: 362s 362S TLS362S TLR 36 2S TLG 363S TLS36 3S TLR 36 3S in n n = n II TLG 366S TLS366S TLR 36 6S TLG 367S TLS36 7S TLR 36 7S I I 1 1I I J l I I m II 1 U N IT mA mA V °C °C n = n O Q H = n , 30 40 100 mA 0.56 10 1.03 0.26 2.0 1.9 2.0 V 2.5 2.5 2.5 mA //A V - 1.7 1.4 10 , FORWARD CURRENT Ip / seg (mA) FORWARD CURRENT Ip /s e g (mA) TLR Series Iy / s e g - D r TLG Series FORWARD CURRENT IF /s e g (mA) DUTY RATIO D r TLS Series TLR
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TLR366S TOSHIBA LED DISPLAY 362s 362-S TLG362S TLG363S TLG366S TLG367S TLS363S TLS367S
Abstract: KOA SPEER ELECTRONICS, INC. SS-236 R5 AHA 8/03/04 Chip-Type Metal Plate Low-Resistance Resistor Type TLR 1. General I I I I CERTIFIED Metal alloy: superior corrosion & heat resistance , the following form: New Type TLR Type 3A Power Rating 2B: 0.5W 2H: 1W 3A: 1W 3AW: 2W L , before you order and/or use. KOA SPEER ELECTRONICS, INC. SS-236 R5 9. Solder Pad Dimensions TLR , . KOA SPEER ELECTRONICS, INC. SS-236 R5 10.3 Dimensions of Carrier Tape - 2B E H G øJ C D R KOA Speer Electronics
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TLR 103

Abstract: TIO 872-M . IjVseg 30 40 100 10 1.03 0.26 10 5 1.7 1.7 1.4 2.0 1.9 2.0 2.5 2.5 2.5 10 5 6 2.3 10 5 TLG Series TLS Series TLR Series UNIT PRECAUTION 565 635 700 nm mA mcd mA V mA juA V - , LD 367S ly / seg - I f TLG Series TLS Series Iy fs e g TLR Series FORW ARD C U RREN T Ip /s e g (m A i Dr TLG Series D U T Y R A T IO Dr TLS Series TLR Series 871
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TLR 103 TIO 872-M TLR362S TLR363S TLR367S

VHDL code for TAP controller

Abstract: XILINX XC9536 APPLICATION NOTE 0 The Tagalyzer - A JTAG Boundary Scan Debug Tool ® XAPP 103 January 23 , Control Signal Connections XAPP 103 January 23, 1998 (Version 1.0) 1 The Tagalyzer - A JTAG , controller is included in the appendix of this application note. XAPP 103 January 23, 1998 (Version 1.0 , , the column can display instruction in one version and data in XAPP 103 January 23, 1998 (Version , ) TAGALYZER Figure 4: 4 Possible Tagalyzer Attachments XAPP 103 January 23, 1998 (Version 1.0
Xilinx
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XC9500 VHDL code for TAP controller XILINX XC9536 xc9536 cpld pir chip XAPP068 XAPP069 XC9536

1E2K

Abstract: HV73 3.3 6.1 3.0 TLR 2m 3.45 7.55 3.83 3A 1m 1.45 6.35×3.18 TLR 3A 3m 2.15 7.55 3.83 2m , 5.7 10.5 2.2 SDS 0908 9.5×10.5 14.7 9.0 1003, 1005 10.0×12.7 10.3 7.3 13.3 2.8 SDS 1205, 0908 1208 12.7×12.7 10.3 1206, 6.0 14.0 7.0 9.5×10.5 14.7 9.0 1H 0.6×0.3 1205, 1206, 1208
KOA Speer Electronics
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UR73D 1E2K HV73 LA73 LP73 LT73 NT73 SDT73 MRGF16 D-25578

TLR 103

Abstract: OMAP5910 . . . . . . . . . . . . . . . . . . . . . . . 103 9.7.1 UART Mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 103 9.7.2 IrDA Mode . , . . . . . . . . . . . . . . . . . . . . . 103 10 SPRU676 Tables Tables 1 2 3 4 5 , Register (TLR) Field Descriptions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . , . . . . . . . Trigger Level Register (TLR) Field Descriptions . . . . . . . . . . . . . . . . . . .
Texas Instruments
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OMAP5910 SPRU672 SPRU675 SPRU678 OMAP5905 circuit diagram of IRDA transmitter and receiver

F1LE

Abstract: 5228 INSULATOR: NONE 4 3 (0 .625)- T (0 A) _L (.340) (4X0 .103) 5228 NOTICE TMS DRAWNG EUBOOES A , SQUARE TO RESPECTIVE AXB WITHIN .005 INCHES PER NCR 8. MACMNED DIAMETERS CONCENTRIC MTMN -002 T.LR. 8
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AMS-QQ-N-290 F1LE 5228 C173 MIL-STD-348 B-196 D-1710 B-488 DGCL05E

KR105

Abstract: tQ C C S S - tl 1 6 A -2 x X X X 1 .0 0 S ta n le y A A A 103 CSS 1 1 16 A 1 , 00 1 ; A K A 103 / C S S -1 1 1 7 A -1 X X X X 1 .0 0 â 7 m A K A 12 1 , C S S -1 0 1 2 Y -2 x X X 1 .0 2 ' 1 St anl e y NAY 103 CSS 1 0 1 2 Y l x X
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KR105 R363S TLUR3631 R364S TLUR3641 R365S R36BT

VQA 23

Abstract: Funkamateur Packard rot VQA 17 LS31601) TLUO 3400 CQY545) HLMP-13501) - TLR 1243) 3 grün VQA 27 LG 3160') TLUG , VQA 201 - - CQW61 L6) SBG 5552 REC1) - 8 gelb VQA 301 - - CQW 62 L6) SAY 5552 REC') - 8 rot VQA 103
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LS5160 CQX51 TLS1541 TLG114A TLUY5400 CQX54 VQA 23 Funkamateur ESBR5501 VQA 13 vqa 33 FUNKAMATEUR - Bauelementeinformation HLMP-33 SAR55114 TLR116A3

abs wheel speed rotation

Abstract: T 5Z27 275 2003-05 TLE4942 TLE4942C Internal Sensor Speed Signal tpre-low = 45 µs tLR = 45 µs Transferred Signal: LR Xn Transferred Signal: DR-L Xn+1 tDR-L = 2 x tLR Xn+2 tDR-R = 4 x tLR Transferred Signal: DR-R tDR-L&AP = 8 x tLR Transferred Signal: DR-L & EL tDR-R&AP = 16 x tLR , Data Book 276 2003-05 TLE4942 TLE4942C Internal Sensor Speed Signal tStop = 32 x tLR , BWarning 9 8 BLimit BEL 7 6 0.2 0 0 10 5 -40 101 102 103 Hz 104 0 40 80
Infineon Technologies
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abs wheel speed rotation T 5Z27 4200E4 42C0E4 Q62705-K428 Q62705-K437 AED03235
Abstract: I I O O I O O O â'" GND M RQ M AK M WE M RE TLR TLW J RQ J AK GND JWE JRE F , 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 -
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CXD207-109Q

WF VQE 13

Abstract: VQE 24 FUNKAMATEUR - Bauelementeinformation Vergleichslisten Optoelektronik Anzeigen, IR-Dioden, Fotodioden- und Transistoren, Koppler Anzeigen VD/VT Koppler Lichtemitteranzeigen Farbe WF Siemens Hewlett General LITE-ON Toshiba Bild Packard Instruments rot VQE11 _ - - TLR326 11 rot VQE 12 - - - TLR327 11 grün VQE21 - - - TLG 326 11 grün VQE 22 - - - TLG327 11 rot VQE 13 - - - TLR 324 12 , ) - (TIXL53) - 26 SP 103 (BPX63) (S 153 P) (OP 913 W) - - 25 SP 106 BPX34 BPW 34 - - - 27 SP 126
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VQB201 MCL611 WF VQE 13 VQE 24 WF VQE 24 Wf vqe 14 vqe 23 wf vqe 23 TLR325 HDSP-3906 LTS3406LP DL3403 HDSP-3903

BUZ11

Abstract: - 1.7 2.6 V Reverse Recovery Time tlr T, = 25°C, If = Idr - 200 - ns Reverse Recovered Charge , . 103 5 102 5 101 5 10° 5 10-1 Tj = 25°C TYP. 80 /I* PULSE TEST Tj = 150°C TYP. 0 0.5 1.0 1.5 , . 5 10'4 5 10"3 5 10"2 5 10"1 5 10° RECTANGULAR PULSE DURATION (t,) â'" S Fig. 12 - Maximum
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BUZ11

SC16IS741IPW

Abstract: SC16IS741 trigger levels are available via the FCR. The programmable trigger levels are available via the TLR. If TLR bits are cleared then selectable trigger level in FCR is used. If TLR bits are not cleared then programmable trigger level in TLR is used. 7.2 Hardware flow control Hardware flow control is comprised of , Control Register[2] TCR Transmission Control Register TLR Trigger Level Register (TLR)[2 , Any[2] loopback enable reserved[3] TCR and TLR enable[2] RTS reserved[3] R/W
NXP Semiconductors
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SC16IS741 TSSOP16 16C450 SC16IS741IPW 002aaa229 002aab402 RS-232/RS-485 RS-485

002aab402

Abstract: trigger levels are available via the TLR. If TLR bits are cleared then selectable trigger level in FCR is used. If TLR bits are not cleared then programmable trigger level in TLR is used. 7.2 Hardware flow , Table 10. Table 10. RHR/THR IER IIR/FCR LCR MCR LSR MSR SPR TCR TLR TXLVL RXLVL EFCR DLL DLH EFR XON1 , ) Transmission Control Register Trigger Level Register (TLR)[2] Transmit FIFO Level Register Receive FIFO Level , reserved[3] TX FIFO reset[4] interrupt priority bit 1 stop bit TCR and TLR enable[2] parity error 0 bit 2
NXP Semiconductors
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SC16IS741A SC16IS741A1
Abstract: FCR. The programmable trigger levels are available via the TLR. If TLR bits are cleared then selectable trigger level in FCR is used. If TLR bits are not cleared then programmable trigger level in TLR , Control Register[2] TCR Transmission Control Register TLR Trigger Level Register (TLR)[2 , Any[2] loopback enable reserved[3] TCR and TLR enable[2] RTS reserved[3] R/W , TLR[6] bit 7 bit 6 bit 5 bit 4 bit 3 bit 2 bit 1 bit 0 R/W 0x08 TXLVL NXP Semiconductors
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NT101

Abstract: mitsubishi triac /~\ Tl.r VOLTAGE \J MAIN /V^TIME CURRENT WK ' MAIN M Ilk _jiME VOLTAGE ^¿¿J-â'" (dv/dt)c vd L 10 12 , CURRENT ce ce ZI O lu £ I-C/3 103 7 5 3 2 102 7 5 3 2 101 7 5 3 2 10° 0 , '" 1â'" z cc cc cc cc 3 3 O O cc cc o o o o cc cc 1â'" 1â'" tâ'" tâ'" < < o o 103 7 5 3 2 102 7 5 3 2 , _l o o :- :- ce ce cd cd cd cd ce ce 1â'" 1â'" tâ'" tâ'" < < cd cd 103 7 5 4 3 2 102 7 5 4 3 2 , 0 0.4 0.8 1.2 1.6 2.0 2.4 2.8 3.2 RMS ON-STATE CURRENT (A) 10= 7 5 3 2 104 7 5 3 2 103 7 5 3 2 Ã
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BCR20AM NT101 mitsubishi triac

MS-012AB

Abstract: PDIUSBP11 TYP MAX Driver Characteristics: C|_ = 50pF and 350pF; Rpu = 1,5k£l on D- to VCc tLR tlf , 50pF. Waveform 1 CL = 350pF. Waveform 1 75 75 300 300 ns t|_rfm Rise / Fall time matching (Tlr/Tlf , 0.20 0.09 6.4 6.0 5.4 5.2 0.65 7.9 7.6 1.25 1.03 0.63 0.9 0.7 0.2 0.13 0.1 1.4 0.9 8° 0° Note 1
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SSOP-14 PDIUSBP11A PDIUSBP11 MS-012AB PDIUSBP11APW SO-14 TSSOP-14 MQ-150AB

42C1R4

Abstract: transistor K738 , 2005-02 TLE4942-1 TLE4942-1C Internal Sensor Speed Signal tpre-low = 45 µs tLR = 45 µs Transferred Signal: LR Xn Xn+1 tDR-L = 2 x tLR Xn+2 Transferred Signal: DR-L tDR-R = 4 x tLR Transferred Signal: DR-R tDR-L&AP = 8 x tLR Transferred Signal: DR-L & EL tDR-R&AP = 16 x tLR Transferred Signal: DR-R & EL Xn Xn+1 Xn+2 AET03196 Figure 8 Data Sheet , Speed Signal tStop = 32 x tLR Transferred Signal: Stand Still TStop Figure 9 AET03197
Infineon Technologies
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42C1R4 transistor K738 pg series sensors ABS Wheel Speed Sensor K738 us3845
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