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TLC5940.pdf
left-hand navigation. Copyright © 2004–2015, Texas Instruments Incorporated Submit Documentation Feedback 27 Product Folder Links: TLC5940 PACKAGE OPTION ADDENDUM www.ti.com 15-Oct-2015 PACKAGING INFORMATION Orderable Device Status Package Type Package Pins Package Eco Plan Lead/Ball Finish MSL Peak Temp Op
in „Vorschläge für Led-Treiber?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5940.pdf
left-hand navigation. Copyright © 2004–2015, Texas Instruments Incorporated Submit Documentation Feedback 27 Product Folder Links: TLC5940 PACKAGE OPTION ADDENDUM www.ti.com 15-Oct-2015 PACKAGING INFORMATION Orderable Device Status Package Type Package Pins Package Eco Plan Lead/Ball Finish MSL Peak Temp Op
in „Parallel Nutzung von Stromsenken“ · Analoge Elektronik und Schaltungstechnik ·
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tlc59401.pdf
Submit Documentation Feedback Copyright © 2009, Texas Instruments Incorporated Product Folder Link(s): TLC59401 PACKAGE OPTION ADDENDUM www.ti.com 27-Jul-2013 PACKAGING INFORMATION Orderable Device Status Package Type Package Pins Package Eco Plan Lead/Ball Finish MSL Peak Temp Op Temp (°C) Device Marking
in „TLC59401 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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TLC5941.pdf
correction) 1000 ns (2) d Output delay time OUTn - OUT(n+1) 20 30 ns (1) See Figure 10 (2) See Figure 12 5 TLC5941 www.ti.com SLVS589–JULY 2005 DEVICE INFORMATION PWP PACKAGE NT PACKAGE (TOP VIEW) (TOP VIEW) 1 28 OUT1 1 28 OUT0 GND VCC BLANK 2 27 IREF OUT2 2 27 MODE XLAT 3 26 TEST 4 25 OUT3 3 26 SIN SCLK GSCLK
in „AtMega 48 Timmer“ · Mikrocontroller und Digitale Elektronik ·
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PSpice_LibraryguideOrCAD.pdf
Operational Amplifier TLC27L2 TLC27L2/5_2/TI TEX_INST.OLB Texas Instruments Operational Amplifier TLC27L4 TLC27L4/101/TI TEX_INST.OLB Texas Instruments Operational Amplifier TLC27L4 TLC27L4/102/TI TEX_INST.OLB Texas Instruments Operational Amplifier TLC27L4 TLC27L4/5_1/TI TEX_INST.OLB Texas Instruments Operational Amplifier TLC27L4 TLC27L4/5_2/TI TEX_INST.OLB Texas Instruments Operational Amplifier TLC27L7 TLC27L7/101/TI TEX_INST.OLB Texas Instruments
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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tlc274.pdf
TLC274, TLC274A, TLC274B, TLC274Y, TLC279 LinCMOS PRECISION QUAD OPERATIONAL AMPLIFIERS SLOS092D – SEPTEMBER 1987 – REVISED MARCH 2001 D Trimmed Offset Voltage: D, J, N, OR PW PACKAGE TLC279 . . . 900
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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tlc5941.pdf
2005–2008, Texas Instruments Incorporated Submit Documentation Feedback 5 Product Folder Link(s): TLC5941 TLC5941 SLVS589D–JULY 2005–REVISED JANUARY 2008 www.ti.com DEVICE INFORMATION PWP PACKAGE NT PACKAGE (TOP VIEW) (TOP VIEW) GND 1 28 VCC OUT1 1 28 OUT0 BLANK 2 27 IREF OUT2 2 27 MODE XLAT 3 26 TEST
in „TLC5941 Vorwiderstände und Spannungsversorgung“ · Mikrocontroller und Digitale Elektronik ·
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tlc5947.pdf
specifications. PACKAGE/ORDERING INFORMATION (1) PRODUCT PACKAGE-LEAD ORDERING NUMBER TRANSPORT MEDIA, QUANTITY TLC5947DAPR Tape and Reel, 2000 TLC5947 HTSSOP-32 PowerPAD™ TLC5947DAP Tube, 46 TLC5947 5-mm × 5-mm QFN-32 TLC5947RHBR Tape and Reel, 3000 TLC5947RHB Tape and Reel, 250 (1) For the most current package
in „SPI Timing ATmega8 und TLC5947“ · Mikrocontroller und Digitale Elektronik ·
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tlc5947.pdf
specifications. PACKAGE/ORDERING INFORMATION (1) PRODUCT PACKAGE-LEAD ORDERING NUMBER TRANSPORT MEDIA, QUANTITY TLC5947DAPR Tape and Reel, 2000 TLC5947 HTSSOP-32 PowerPAD™ TLC5947DAP Tube, 46 TLC5947 5-mm × 5-mm QFN-32 TLC5947RHBR Tape and Reel, 3000 TLC5947RHB Tape and Reel, 250 (1) For the most current package
in „SPI Entstören“ · Mikrocontroller und Digitale Elektronik ·
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slaa148.pdf
they are needed anyway for the system (as an integrator, comparator, amplifier, DAC, etc.). For the TLC27L4 it is necessary to limit the input voltages to a maximum of V DD + 0.3 V. The minimum supply voltage of the TLC27L4 V = 3 V. CC(min) Interfacing the 3-V MSP430 to 5-V Circuits7 SLAA148 3.3 V 3.3
in „MSP430 5V in I/O?“ · Mikrocontroller und Digitale Elektronik ·
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TLC2543.pdf
PLASTIC CHIP PLASTIC DIP PLASTIC DIP CARRIER CARRIER (DB)† (DW)† (FK) (FN)† (J) (N) 0⋅C to 70⋅C TLC2543CDB TLC2543CDW — TLC2543CFN — TLC2543CN –40⋅C to 85⋅C — TLC2543IDW — TLC2543IFN — TLC2543IN –55⋅C to 125⋅C — — TLC2543MFK — TLC2543MJ — †Available in tape and reel and ordered as the TLC2543CDBLE
in „externer A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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TLC_555specs_TI.pdf
CERAMIC DIP PLASTIC DIP TSSOP A RANGE † (DB)† (FK) (JG) (P) (PW) (D) 0°C to 70°C 2 V to 15 VTLC555CD TLC555CDB — — TLC555CP TLC555CPW –40°C to 85°C 3 V to 15 VTLC555ID — — — TLC555IP — –40°C to 125°C 5 V to 15 VTLC555QD — — — — — –55°C to 125°C 5 V to 15 VTLC555MD — TLC555MFK TLC555MJG TLC555MP — †This
in „TL555i was ist das“ · Analoge Elektronik und Schaltungstechnik ·
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4-Gewinnt-Schaltung.pdf
: 1/3 1 2 3 4 5 6 1 2 3 4 5 6 C C C C7 V C4 V V C5 1u 1u 1u PWR_FLAG GND GND GND U45 U48 U43 8 8 8 TLC5940PWP 2 TLC5940PWP 2 TLC5940PWP 2 D R7 A R3 D R6 N 6 VPRG C OUT0 7 N 6 VPRG C OUT0 7 A 2k N 6 VPRG C OUT0 7 LED_1 D 2k G 27 V 8 LED_33 D 2k G 27 V 8 LED_65 N G 27 V 8 G IREF OUT1 LED_34 N IREF OUT1
in „TLC5940 (6x kaskadiert) – LED blinkt nur kurz beim Einschalten, danach keine Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Tlc5940.cpp
VPRG by changing \code #define VPRG_ENABLED 0 \endcode to \code #define VPRG_ENABLED 1 \endcode in tlc_config.h You will also have to connect Arduino digital pin 6 to TLC pin 27. (The pin to be used can be changed in tlc_config.h). If VPRG is not enabled, the TLC pin should grounded (remember to unconnect TLC pin 27 from GND if you do enable VPRG). */ /* @{ */ /* @} */ /** \defgroup CoreFunctions Core Libary Functions These function are all prefixed with "Tlc." */ /* @{ */ /** Pin i/o and Timer setup. The
in „Ghosting bei LED Matrix“ · Mikrocontroller und Digitale Elektronik ·
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DS1000Z_Analog.pdf
COC6 1K 20 10K 10K VREF_BUF R3 R6 40 TLC274IPWR 10K 10K U1B R41 COC20COUDC PIC101 PIC102 C2 42 VREF_BUF I2 I2 7 21 PIU3010 PIC201 PIC202 6 1K PIU308PIR4201 PIR4202 COR40 COR4 COR5 DAC_TLC274IPWR PIR401 PIR40P2IU309 PIR402 DAC_TLC274IPWR2 PIR501
in „Analogverstärker für Mikrocontroller Oszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
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58740807_protel_schematic.pdf
7 R116 T1 TLP160 T8 Fehlermeldung : E03, E13-E16 6 BC640-16 3 BT138 1k5 R92 GND R127 D8 196R 12k1 TLC272 RM4004G 1 /TRIAC1 GND OUT1 Heizung Kanal 1 VREF 24VAC nichtinv. ST R68 R137 12k1 464k Fehlermeldung : E01, E02, E10, E11, E12 VCC VCC 24VAC R135 0,6V26 C35 D27 44k2 LL4148 GND 5 R78 VREF 7 /INT0
in „Suche Service Manual oder Schaltplan für Weller WMD-3“ · Mechanik, Gehäuse, Werkzeug ·
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tlc4545.pdf
TLC4545 ADC connects D Low Power With Auto-Power Down to the DSP via pin 1 only (CS). − Operating Current: 3.5 mA − Auto-Power Down Current: 5 µA The TLC4541 and TLC4545 are designed to operate D Pin Compatible
in „Warum funktioniert das nicht? Mittelwert, AD_wandler“ · Mikrocontroller und Digitale Elektronik ·
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elektronische_last_2.pdf
FANT-INT 1 22R 1 22R 1 22R 1 22R + C125 FAN X103-5 +5V S R110 2 2 2 2 R122 R129 R136 R143 10µ K101 1k TLC272P C106 R123 TLC272P C118 R130 TLC272P C120 R137 TLC272P C122 R144 3DR-5V R114 C107 100k C119 100k C121 100k C123 100k GND GND C D102 220p 1n8 RS1 X106-1 220p 1n8 RS2 X108-1 220p 1n8 RS3 X110-1 220p
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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tlc5916_lowSide.pdf
4 SDO R14 0603 0 LE 3 4 0 GND R-EXT 0603 0 GND R-EXT 0603 0603 5 6 0603 5 6 330 330 OE 7 8 OE 7 8 TLC5916IDR TLC5916IDR SDO R11 0603 0 9 10 SDO R15 0603 0 9 10 GND GND GND SDI R12 0603 0 SDI R16 0603 0 GND Header Header U2 U6 GND GND CLK 3 5 LED8 CLK 3 5 LED40 2 CLK OUT0 6 LED9 2 CLK OUT0 6 LED41 SDI
in „TLC5916 - Leakage current“ · Mikrocontroller und Digitale Elektronik ·
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DemystifyingtheTLC5940.pdf
_t value); void TLC5940_SetAllDC(uint8_t value); void TLC5940_ClockInDC(void); #endif void TLC5940_SetGS(channel_t channel, uint16_t value); void TLC5940_SetAllGS(uint16_t value); void TLC5940_Init(void); /* tlc5940.c
in „System Clock Output mit Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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DemystifyingtheTLC5940.pdf
_t value); void TLC5940_SetAllDC(uint8_t value); void TLC5940_ClockInDC(void); #endif void TLC5940_SetGS(channel_t channel, uint16_t value); void TLC5940_SetAllGS(uint16_t value); void TLC5940_Init(void); /* tlc5940.c
in „TLC5940 library: Erfassen von Veränderungen“ · Mikrocontroller und Digitale Elektronik ·
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TLC2551.pdf
(DGK) (D) TLC2551CDGK 0⋅C to 70⋅C TLC2552CDGK TLC2555CDGK TLC2551IDGK TLC2551ID –40⋅C to 85⋅CTLC2552IDGK TLC2552ID TLC2555IDGK TLC2555ID Please be aware that an important notice concerning availability, standard
in „Verständnisfrage zu AD-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IO_Timing_Analysis.txt
clk_125_c INP[6 clk_125_c INP[7 clk_125_c INP[8 clk_125_c INP[9 clk_125_c SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_ clk_125_c SRAM_ wb_tlc/cpld/di SRAM_
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TLC5922.pdf
100 nF XLAT ControllerMODE MODE TLC5922 MODE TLC5922 100 nF BLANK BLANK IREF BLANK IREF SOUT IC 0 IC n 4 Figure 9. Cascading Devices Figure 9 shows an example application with n cascaded TLC5922 devices connected to a controller. The
in „daisy-chaining Verzögerung“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
4 1k R10 VIN VSCK SCK 3 3 D C C F GND GND GND GND GND 1 47k 1 G F CS 5 CS V V R C6 2 2 C16 A A 1n TLC272 R22 R17 D6 LTC2400 29 Reset(PC6) 150k 1k TLC272 10k BAT81 4 8 28 R8 4 4 1µ 30 PC5 (ADC5/SCL) 27 R12 GND VCC GND RXD 31 PD0 (RXD) PC4 (ADC4/SDA) 26 SCK GND TXD 32 PD1 (TXD) PC3 (ADC3) 25 SCK 100k
in „Akku-Lader mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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Schematics.pdf
R 1 R33 4 Q1 Q3 100 5 k AGC-ON SV1-15 AGC Gain Set 3 IC2A R13 BSS123 BSS123 100k R 6 GND E R6 1 13 TLC274 R28 k S 2 330k 14 9 TLC274 IC6A 2 0 100k 1 TLC274 12 100k 8 1 D1 5 R 1 A 1 R11 R14 IC2D R29 10 15 L2 + IC2C 16 S1 220k 3.3k GND 150k +5V SV1-7 10µ k k Q2 Q4 DG403 SV1-8 6 n 3 . 8 2 BSS123 BSS123
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Values.txt
TP06SQ 14 ISP 14 680R 14 4,7n 14 22pf 14 16MHz 13 NC 13 250 13 22uF 13 16Mhz 13 10 13 0.1u 13 0 12 TLC5940-PWPOTV 12 SR104 12 IRFP460 12 IRF540 12 HD-H103 12 BL 12 BD140 12 AMP 12 7-SEG_SA10-21 12 74LS08N 12 47µ 12 4052D 12 35701331 12 27pF 12 27k 12 2,2n 12 22µ 12 1N4446 12 1,8k 12 1.2 12 10 µF 11 TOBU3
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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tlc59108.pdf
and changed register from 11h to 12h............................................................... 27 • Added I OUT vs V OUT graph..................................................................................................................................................... 29 • Added TLC59108 and
in „[V] 4St. LED Treiber TI - TLC59108 8-Bit Fm+ I2C-Bus Constant-Current LED Sink Driver“ · Markt ·
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Elektronische_Last.pdf
22R X106-1 FAN X103-5 +5V E 2 E 2 E 2 E 2 E 200k - INPUT R122 R133 R144 R155 U-IN X106-2 K101 R114 TLC272P C106 R123 R129 TLC272P C120 R134 R140 TLC272P C122 R145 R151 TLC272P C124 R156 3DR-5V 10k C107 100k 10k C121 100k 10k C123 100k 10k C125 100k GND C D102 220p 1n8 220p 1n8 220p 1n8 220p 1n8 C126
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last_3.pdf
IC107A 120R FAN X103-5 FAN R110 1 1 1 1 +C125 +5V 2 R122 2 R129 2 R136 2 R143 1k02 10k 10µ K101 R114 R1 TLC272P C106 TLC272P C118 TLC272P C120 TLC272P C122 3DR-5V X106-1 X108-1 X110-1 X112-1 GND GND C D102 220p (22p) RS1 220p (220p) RS2 220p (2n2) RS3 220p (22n) RS4 C S1D GND GND X106-2 X108-2 X110-2 X112
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_4.pdf
120R FAN X103-5 FAN R109 1 1 1 1 +C121 +5V 2 R121 2 R127 2 R133 2 R139 1k37 10k 10µ K101 R112 R113 TLC272P C106 TLC272P C117 TLC272P C118 TLC272P C119 3DR-5V X106-1 X108-1 X110-1 X112-1 GND GND C D102 220p (22p) RS1 220p (220p) RS2 220p (2n2) RS3 220p (22n) RS4 C S1D GND GND X106-2 X108-2 X110-2 X112
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tlc2652a.pdf
PLASTIC CHIP OUTLINE DIP DIP OUTLINE DIP DIP CARRIER (Y) (D008) (JG) (P) (D014) (J) (N) (FK) 0°C 1 µV TLC2652AC-8D — TLC2652ACP TLC2652AC-14D — TLC2652ACN — to TLC2652Y 70°C 3 µV TLC2652C-8D — TLC2652CP TLC2652C-14D — TLC2652CN — −40°C to 1 µV TLC2652AI-8D — TLC2652AIP TLC2652AI-14D — TLC2652AIN — — 85°C 3 µV TLC2652A-8D — TLC2652IP TLC2652I-14D — TLC2652IN — −40°C to 3.5 µV TLC2652Q-8D — — — — — — — 125°C −55°C to 3 µV TLC2652AM-8D TLC2652AMJG TLC2652AMP TLC2652AM-14D TLC2652AMJ TLC2652AMN TLC2652AMFK 3.5 µV
in „Stromverbrauch eines Mikrocontrollers zeitaufgelöst messen“ · Analoge Elektronik und Schaltungstechnik ·
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TLC5620.pdf
small-outline (D) package allows digital control of analog functions in space-critical applications. The TLC5620C is characterized for operation from 0⋅C to 70⋅C. The TLC5620I is characterized for operation from –40⋅C to 85⋅C. The TLC5620C and TLC5620I do not require external trimming. AVAILABLE OPTIONS PACKAGE SMALL OUTLINE PLASTIC DIP TA (D) (N) 0⋅C to 70⋅C TLC5620CD TLC5620CN –40⋅C to 85⋅C TLC5620ID TLC5620IN Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor
in „DAC Steuerung mittels SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc5620.pdf
small-outline (D) package allows digital control of analog functions in space-critical applications. The TLC5620C is characterized for operation from 0°C to 70°C. The TLC5620I is characterized for operation from –40°C to 85°C. The TLC5620C and TLC5620I do not require external trimming. AVAILABLE OPTIONS PACKAGE SMALL OUTLINE PLASTIC DIP TA (D) (N) 0°C to 70°C TLC5620CD TLC5620CN –40°C to 85°C TLC5620ID TLC5620IN Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor
in „DAC Schieberegister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5620CN_DIP14.pdf
small-outline (D) package allows digital control of analog functions in space-critical applications. The TLC5620C is characterized for operation from 0°C to 70°C. The TLC5620I is characterized for operation from –40°C to 85°C. The TLC5620C and TLC5620I do not require external trimming. AVAILABLE OPTIONS PACKAGE SMALL OUTLINE PLASTIC DIP TA (D) (N) 0°C to 70°C TLC5620CD TLC5620CN –40°C to 85°C TLC5620ID TLC5620IN Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor
in „Wie verhält sich der DAC am SPI-Bus (TLC5620)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25l2c_OPERATIONAL_AMPLIFIERStlc25m2.pdf
TLC252, TLC252A, TLC252B, TLC252Y, TLC25L2, TLC25L2A, TLC25L2B TLC25L2Y, TLC25M2, TLC25M2A, TLC25M2B, TLC25M2Y LinCMOS DUAL OPERATIONAL AMPLIFIERS SLOS002I – JUNE 1983 – REVISED MARCH 2001 D, P, OR PW
in „Merten Dimmaktor (6470 29) keine 0-10V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLC59116.pdf
current output 15 GND 24 Ground RESET 25 I Active-low reset input SCL 26 I Serial clock input SDA 27 I/O Serial data input/output V 28 Power supply CC (1) I = input, O = output Copyright © 2008, Texas Instruments Incorporated Submit Documentation Feedback 3 TLC59116 SLDS157A–FEBRUARY 2008–REVISED APRIL
in „Verstehe TWI überhaupt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Labornetzteil_1.pdf
D D R6 1 TS431 E R19 3 R1 R2 470 0.22 +9V X8 8 7 VT4 X3 X9 3 E+ U3A R BSS123 1 R14 X10 R21 2 E- 4 TLC-2272 C1 Ausgang U Potentiometer 470k MINUSRAIL R26 R15 470k X4 U2B E+ 5 R28 GNDA 7 6 TLC-2272 E- 470k R27 470k X11 5 8 VT3 X12 E+ U3B 7 R BSS123 R23 6 X13 E- TLC-2272 I Potentiometer 470k R13 R25 MINUSRAIL U_PROP_I +9V R24 +9V R10 R29 R11 8 8 U2A 3 R 1 E+ R31B R31A 2 TLC-2272 E- R3 R4 R5 R30 4 R9 R12 MINUSRAIL +9V X18 +9V X14 X5 IN+ IN+ X15 X19 X6 IN- VCC X16 U/I-Anzeige-LEDS X7 VCC GND X17 GND Strom-Anzeige Spannungs-Anzeige Bezeichnung: Labornetzteil_1 Diskussions-Entwurf
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
0.01 16 — 0.675 MSOP-10 2.49 ADS1100 16 0.128 1 SE/1 Diff Serial,I C PGA (1-8), V Ext 0.0125 16 — 0.27 SOT23-6 1.75 DD TLC3541 14 200 1 SE Serial, SPI VREF Ext 0.006 14 81.5 17.5 SOIC-8, VSSOP-8 4.73 TLC3544 14 200 4 SE/2 Diff Serial, SPI 4 Int/Ext 0.006 14 81 20 SOIC-20, TSSOP-20 5.72 TLC3545 14 200
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Labornetzteil-BOM-final.pdf
C320 CAPACITOR, European symbol 1 100p C-EUC0805 C0805 C313 CAPACITOR, European symbol 1 100µ (DNP) TLC/5A-101 TLC/5A-101 L302 Ringkerndrosseln Fastron TLC/5.0A-Serie. Toleranz: 20% 2 10k R-EU_0204/7 0204/7 R313, R321 RESISTOR, European symbol 4 10k R-EU_R0805 R0805 R302, R309, R319, R330 RESISTOR, European symbol 1 10µ TLC/5A-100 TLC/5A-100 L303 Ringkerndrosseln Fastron TLC/5.0A-Serie. Toleranz: 20% 1 10µ/35 CPOL-EUD/7343-31R D/7343-31R C317 POLARIZED CAPACITOR, European symbol 1 120R R-EU_0207/5V 0207/5V R329 RESISTOR
in „Labornetzteil mit getakteter Vorregelung - Überschwinger“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_6.pdf
100n 100n 100n 100n 100n 100n 100n GND 7 HRES X102-1 1 R D 5 IC104B NC X102-2 G 7 6 GND 20A == 1,65V TLC274P Frontplatte EXT 100k 10 IC104C -5V 0-10V == 0-20A X103-1 8 B 0-20A == 0-5VX103-2 I/U-OUT R109 9 +5V B X103-3 1 R110 0 E 16k2 +10V +5V 1 5 TLC274P GND -5V D 1 R111 A D104 Netzteil S BAT42 +10V X104
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_7.pdf
100n 100n 100n 100n 100n 100n 100n GND 7 HRES X102-1 1 R D 5 IC104B NC X102-2 G 7 6 GND 20A == 1,65V TLC274P Frontplatte EXT 100k 10 IC104C -5V 0-10V == 0-20A X103-1 8 B 0-20A == 0-5VX103-2 I/U-OUT R109 9 +5V B X103-3 1 R110 0 E 16k2 +10V +5V 1 5 TLC274P GND -5V D 1 R111 A D104 Netzteil S BAT42 +10V X104
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_5.pdf
1 1 1 100n 100n 100n 100n 100n 100n 100n GND 1 R N 5 IC104B G 7 6 Frontplatte GND 100k 20A== 1,65V TLC274P 0-10V == 0-20AX102-1 EXT 10 IC104C -5V 0-20A== 0-5V X102-2 I/U-OUT R110 8 X102-3 R111 9 16k2 3 5 TLC274P 1 S GND +10V +5V -5V T B A R112 D104 B Netzteil S BAT42 B +10V X103-1 5k 0 -5V X103-2 E 100k
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Diplomarbeit_PID.pdf
D: Code-Listings D1: .tlc-Dateien xc167_adc.tlc %% File : xc167_adc.tlc %% Created: Sun Dec 3 22:35:54 2006 %% %% Description: %% Real-Time Workshop wrapper functions interface generated for %% S-function "xc167_adc.c". %% %
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Datei
Devices.txt
1AMP_P7+4N 29 PINHD-1X4 29 NEWCC5 29 MPT2 29 F09HP 28 W237-02P 28 PINHD-1X3 28 CPOL-EUE3.5-8 28 4013D 27 SMD5 27 SMD2 27 R-EU_R0805W 27 R-EU_0411/15 27 MEGA32-P 27 CRYTALHC49S 27 CPOL-EUE2-5 27 C-EU050-035X075 27 78XXL 26 R-R1206 26 CAPNP-5 25 CRYTALHC18U-V 25 CPOL-EUE1.8-4 25 C-EUC1206K 25 C2.5/4 24 ZPD
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Bild
Schaltplan mit Operationsverstärkern und Mikrocontroller-Anschlüssen
16, VDD, VEE, -5V, X5, X6, X7, SEL A, SEL B, Inh, A, B, C, D1, TODO, TP7, TP20, GND, TP15, C17, U4A TLC272BC, TP34, U4C TLC272BC, X0, R16, 22k, U4B TLC272BC, C18, R6, C11, 47n, C14, 470p, TP9, U7 PIC16F1946, LCD27 bis LCD14, VPP/MCLR/RG5, VSS, +5V, LCD26, LCD25, LCD24, LCD23, LCD22, LCD21, RF1 bis RF7
in „Ersa RDS 80 - Defekte Bauteile (Schaltplan benötigt)“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
Akku_Tester.pdf
I I T T 1 2 10k Q Q 1k IC5A 3 PWM Akku 3 3 IC4A 3 1 R11 2 + 4 1 3 1 1 lR22 2 C1 R 0 R 0 2 C16 + t TLC272P 1 - C14 TLC272P a 100n SPANNUNG 22u T W 470n GND 5 GND Akku 7 8 GND 2 + R 1 R10 1 - IBATT STROM 1k 1 2 GND R C18 100n GND GND V T1 1 10k BC337 + FAN 5 IC5B R20 7 C11 6 TLC272P 5 8 D2 100n 1 R 1N4001
in „Projet um die Kapazität von Akkus zu messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Akku_Tester.pdf
I I T T 1 2 10k Q Q 1k IC5A 3 PWM Akku 3 3 IC4A 3 1 R11 2 + 4 1 3 1 1 lR22 2 C1 R 0 R 0 2 C16 + t TLC272P 1 - C14 TLC272P a 100n SPANNUNG 22u T W 470n GND 5 GND Akku 7 8 GND 2 + R 1 R10 1 - IBATT STROM 1k 1 2 GND R C18 100n GND GND V T1 1 10k BC337 + FAN 5 IC5B R20 7 C11 6 TLC272P 5 8 D2 100n 1 R 1N4001
in „Projet um die Kapazität von Akkus zu messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan-Layout.pdf
GND GND GND P GND GND GND GND R15 1 G k 9 k R38 IC4B 5 T 3k3 2 AGND GND 7 2 7 7 C9 1n + C12 R16 47k TLC274P 4 k 6 4 +C17 D10 C18 1k 6 R5 2 7 2 C20 1 C21 R2 10µ/35 47k R17 R 4 R 150µ 33n TLC274P 4 k 3k3 1M T3 B360 100p R 1 33n GND BC847 47k U-Reg 3 IC1A 3 D8 D9 7 R39 P 1 IC1B 5 8 3 TP7 TS4148 k 2 6 10k
in „Labornetzteil mit getakteter Vorregelung - Überschwinger“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last_8.pdf
3 IC104A 4 1 100n 100n 100n 100n 100n 100n 100n 100n GND 7 HRES X102-1 1 R 1 NC X102-2 R109 2 R110 TLC272P GND 47k Frontplatte EXT D104 -5V 0-10V == 0-20A X103-1 BAT42 B 0-20A == 0-5VX103-2 I/U-OUT +5V B X103-3 k 2 +10V +5V 3 R GND -5V GND Netzteil +10V X104-1 AR113 IC106 -5V X104-2 S 12 1Y0 S1 11 D106
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·