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PDF
am26lv32.pdf
PACKAGE † PART NUMBER MARKING AM26LV32CDG4 D Tape and reelAM26LV32CDR AM26LV32C 0°C to 70°C AM26LV32CDRG4 Tube AM26LV32CNS NS Tape and reelAM26LV32CNSR 26LV32 AM26LV32ID SOP – D Tube AM26LV32IDR AM26LV32I −40°C to 85°C Tube AM26LV32INS
in „Maßnahmen zum ausfallsicheren Busreceiververhalten, wie geht das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
am26lv32.pdf
PACKAGE † PART NUMBER MARKING AM26LV32CDG4 D Tape and reelAM26LV32CDR AM26LV32C 0°C to 70°C AM26LV32CDRG4 Tube AM26LV32CNS NS Tape and reelAM26LV32CNSR 26LV32 AM26LV32ID SOP – D Tube AM26LV32IDR AM26LV32I −40°C to 85°C Tube AM26LV32INS
in „Stromaufnahme eines RS422-Receivers anhand von Datenblatt ermitteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MX26LV400__2_.pdf
CSP (Ball size:0.4mm) MX26LV400BXEC-55 55 30 100 48 Ball CSP (Ball size:0.4mm) MX26LV400TXEC-70 70 30 100 48 Ball CSP (Ball size:0.4mm) MX26LV400BXEC-70 70 30 100 48 Ball CSP (Ball size:0.4mm) MX26LV400TTC-55G 55 30 100 48 PinTSOP Pb-free (NormalType) MX26LV400BTC-55G 55 30 100 48 PinTSOP Pb-free (NormalType) MX26LV400TTC-70G 70 30 100 48 PinTSOP Pb-free (NormalType) MX26LV400BTC-70G 70 30 100 48 PinTSOP Pb-free (NormalType) MX26LV400TXBC-55G 55 30 100
in „falsche u-boot nand geflasht,J-Tag möglichkeit für Flytouch2?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
auswertung.c
// Auswertung Leitungen #include "auswertung.h" void auswertung(uint16_t *pLV1, uint16_t *pLV2, uint16_t *pLP1S, uint16_t *pLP2S, uint8_t *piPL, uint8_t *pL26, uint8_t *pLNR, uint8_t *pAA) { // *pLV1 = Leitungsspeicher 1- 16 // *pLV2 = Leitungsspeicher 17 - 32 // *pL26 = Leitungsspeicher
in „AtMega 32 - LCD-Anzeige fällt ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
leitung.c
// Abfrage Leitungen #include "leitung.h" void leitung(uint16_t *pLV1, uint16_t *pLV2, uint8_t *pL26, uint8_t *pLNR, uint8_t *pALS, uint16_t *pOBJS, uint8_t *piSK) { // *pLV1 = Leitungsspeicher 1- 16 // *pLV2 = Leitungsspeicher 17 - 32 // *pL26 = Leitungsspeicher nur
in „AtMega 32 - LCD-Anzeige fällt ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
auswertung.c
// Auswertung Leitungen #include "auswertung.h" void auswertung(uint16_t *pLV1, uint16_t *pLV2, uint16_t *pLP1S, uint16_t *pLP2S, uint8_t *piPL, uint8_t *pL26, uint8_t *pLNR, uint8_t *pAA, uint8_t *piSK) { // *pLV1 = Leitungsspeicher 1- 16 // *pLV2 = Leitungsspeicher 17 - 32 /
in „ATMEGA32 Prellspitzen abfangen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
map44_46xya_pinout.pdf
. Pin Name Type Connection Short Description PMQFP PMQFP (If not used) 80-11 80-1 25 24 DACA_L OUT LV Aux Output, Left 26 25 VREF2 OBL Reference Ground 2 27 26 DACM_R OUT LV Main Output, Right 28 27 DACM_L OUT LV Main Output, Left 29 28 DACM_C OUT LV Main Output, Center 30 29 DACM_SUB OUT LV Main Output
in „suche Datenblatt/Pinbelegung für Micronas MAP5401“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top2008.pdf
AT90S2333, AT90S4433, ATTINY11(Hi), ATTINY12(Hi), ATTINY13(Serial), ATTINY15L(Hi), ATTINY25, ATTINY26, ATTINY26L, ATTINY28L, ATTINY28V, ATTINY2313(DIP20), ATTINY2313V(DIP20),ATTINY2313, ATMEGA8, ATMEGA8L, ATMEGA16, ATMEGA16L, ATMEGA8535, ATMEGA8535L, ATMEGA8515, ATMEGA8515L, ATMEGA32, ATMEGA32L, ATMEGA48
in „[V] Top 853 Universal Programmer + 74er Tester“ · Markt ·
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PDF
DAC3550A_Stereo_Audio_DAC.pdf
0→ right channel) bit[3] Delay-Bit SP_SEL 0 No Delay 1 1 bit Delay bit[2:0]sample rate control 000 32 −48 kHz SRC_48 001 26 −32 kHz SRC_32 010 20 −26 kHz SRC_24 011 14 −20 kHz SRC_16 100 10 −14 kHz SRC_12 101 8−10 kHz SRC_8 11x 2autoselect SRC_A ANALOG VOLUME AVOL 02 16 w audio volume control 2C2CH bit
in „Mini-DSP für Audio-Verarbeitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIDE_sheet.pdf
D3 A14 B7 3 1 GND 21 22 D4 A8 D4 A13 B8 2 19 DIR DMAREQ IOWR 23 24 D5 A9 B9 G D6 A10 D5 A12 B10 74LV32 DIOR 25 26 D7 D6 A11 74LV245 R2 IORDY 27 28 A11 D7 A10 B11 4 IC4B DMACK 29 30 GND A12 RTS0 A9 B12 WR 6 3k3 31 32 A13 B13 +3V3 INTRQ IOCS16 A14 CTS0 A8 B14 IORQ 5 DA1 33 34 PDIAG DCD0 A7 A7 74LV32 DA0
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIDE_sheet.pdf
B7 RD 1 GND 19 20 VCC D4 A8 D3 A14 B8 3 1 DIR DMAREQ 21 22 D4 A13 2 19 IOWR 23 24 D5 A9 D5 A12 B9 74LV32 G DIOR 25 26 D6 A10 D6 A11 B10 D7 A11 B11 74LV245 R2 IORDY 27 28 A12 D7 A10 B12 WR 4 IC4B 3k3 DMACK 29 30 GND RTS0 A9 6 31 32 A13 CTS0 A8 B13 5 VCC INTRQ 33 34 IOCS16 A14 DCD0 A7 B14 A7 IORQ DA1 PDIAG
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSI62LV4006.pdf
TEMPERATURE RANGE 55ns:3.0~5.5V Vcc = 3.0V Vcc =5.0V 70ns:2.7~5.5V Vcc = 3.0V Vcc =5.0V 70ns 70ns BS62LV4006TC TSOP -32 BS62LV4006STC STSOP 32 - BS62LV4006SC +0 C to +70 C O 2.4V ~ 5.5V 55 / 70 5uA 30uA 24mA 58mA SOP -32 BS62LV4006EC TSOP2 32 - BS62LV4006PC PDIP -32 BS62LV4006TI TSOP 32 - BS62LV4006STI
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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PDF
CPU_ECB_sheet.pdf
C22 A26 SDA BUSACK B22 A26 TEND1 BUSACK B26 A23 C23 SCL NC HALT WAIT WAIT A24 C24 A27 NC NC B27 A27 RFSH PHI B27 A25 C25 +3V3 CLKO A28 CLKO RD B28 RD CLKO A28 CLKO RD B28 RD A26 C26 C A29 B29 WR A29 B29 WR C
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DeviceList.txt
(TSOP32) AT49LV001 AT49LV001(PLCC32) AT49LV001(TSOP32) AT49LV001A AT49LV001A(PLCC32) AT49LV001A(TSOP32) AT49LV001AN AT49LV001AN(PLCC32) AT49LV001AN(TSOP32) AT49LV001ANT AT49LV001ANT(PLCC32) AT49LV001ANT(TSOP32
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
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PDF
CPU_ECB_sheet.pdf
DREQ1 /BUSREQ BUSACK INT2 INT1 C 74AHC125D A25 SDA BUSACK B25 A25 TEND1 BUSACK B25 A23 C23 V SCL A26 SCL NC B26 RXDA HALT A26 HALT WAIT B26 WAIT 3.3V A24 C24 RD 6 IC1B 5 A27 B27 TXDA A27 B27 PHI OC1A A25 C25 HALT 4 C1 1 CD/DAT3 ACLKO A28 NC NC B28 RD CLKO A28 RFSH PHI B28 RD DESEL A26 C26 ZRESET 1 C
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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CPU_ECB_sheet_V1_1.pdf
NC MERQ INT2 MERQ 7 G + 270 GND A32 GND IORQ B32 IORQ GND A32 GND IORQ B32 IORQ A9 A30 C30 MREQ BUSACK A31 C31 ARESET 220µ AVR-STAMP Z180-STAMP GND A32 C32 GND C C V C 3 +3V3 + V + O T T N 1 K L A L D D S S 74AHC125D M O C A S S R T E
in „Z80 SBC Problem.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
report.txt
Synth 8-3491] module 'add_crc32' declared at 'C:/Users/test/Desktop/24BitAnLV/23.02LV.srcs/sources_1/new/add_crc32 is.vhd:14' bound to instance 'i_add_crc32' of component 'add_crc32' [C:/Users/test/Desktop/24BitAnLV/23.02LV.srcs/sources_1/new/ethernet_test.vhd:214] INFO: [Synth 8-638] synthesizing module 'add_crc32' [C:/Users/test/Desktop/24BitAnLV/23.02LV.srcs/sources_1/new/add_crc32 is.vhd:22] INFO: [Synth 8-256] done synthesizing module 'add_crc32' (3#1) [C:/Users/test/Desktop/24BitAnLV/23.02LV.srcs/sources_
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PDF
device_list_hilo_all03_v9-12.pdf
AT27LV010/A AT27LV020/A AT27LV040/A AT27LV1024 AT27LV256R AT27LV512R AT32C16 <<CATALYST>> CAT27/HC256/L CAT27010 CAT27128A CAT27512 CAT2764A CAT27C210 <<CYPRESS>> CY27C010 CY27C128 CY27C256 CY27C256A CY27C512
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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CPU_ECB_sheet_V02.pdf
C27 P 1 1 C 270 A30 NC M1 B30 M1 A30 INT1 M1 B30 M1 A28 C28 V R5 A31 B31 MREQ A31 B31 MREQ A29 C29 A32 NC MERQ B32 IORQ A32 INT2 MERQ B32 IORQ IC2P GND IORQ GND IORQ A30 C30 D +3V3 A31 C31 7 G GND GND A32 C32 A O K E E O C L C D C S E M O C A S S R R Z A 2 3 5 2 2 J 2 1 J 3 2 1 J 2 1 Monitor Clock I2C
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
für Alarm uint8_t AS = 0; // Schalter für Alarm uint8_t AZ = 0; // Schalter für Alarmzeit uint16_t LV1 = 0; // Leitungsspeicher 1 - 16 uint16_t LV2 = 0; // Leitungsspeicher 17 - 32 uint16_t LP1S = 0; // Leitungsspeicher 1 - 16 - 1. Entprellung-Sicherung uint16_t LP2S = 0; // Leitungsspeicher 17 - 32
in „AtMega 32 - LCD-Anzeige fällt ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CPU_ECB_sheet_V03.pdf
M1 B30 A30 INT1 M1 B30 A22 C22 D C6 L 2 A31 NC MERQ B31 MREQ A31 INT2 MERQ B31 MREQ A23 C23 N + R5 A32 B32 IORQ A32 B32 IORQ A24 C24 7 G 270 GND IORQ GND IORQ 220µ A25 C25 C GND GND A26 C26 C V C V A27 C27 +3V3 + V + A28 C28 T T A29 C29 N 1 O K E E O C L C D C E E A30 C30 M O C A S S Z A A31 C31 A32 C32
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Java_AVR32_doc32049.pdf
and the Java operand stack pointer for the previous method. Figure 2-1. The method frame in the AVR32 Java Virtual Machine. OpSt_Start Operand Stack OpSt_ToS Const. Pool Frame Java OSP Ret. Addr MethodRef. NextFrame Frame LV_0 Local Variables LV_n Lower Address 7 32049A–AVR32–09/06 2.2.2 Allocating a
in „Arm(e)s JAVA - Jazelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CPU_ECB_sheet.pdf
/BUSREQ BUSACK INT2 INT1 C 74AHC125D A25 SDA BUSACK B25 A25 TEND1 BUSACK B25 A23 C23 V SCL A26 SCL NC B22 HALT A26 HALT WAIT B26 WAIT 3.3V A24 C24 RD 6 IC1B 5 A27 B27 A27 B27 PHI OC1A A25 C25 HALT 4 C1 1 CD/DAT3 ACLKO A28 NC NC B28 RD CLKO A28 RFSH PHI B28 RD DESEL A26 C26 ZRESET 1 C + E CLKO
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Roland_G-70_Service_Notes_.pdf
8 XMDOE C310 C311 C312 9 NIU NIU NIU HD74LV32AT RPC05T@J GRM39@GRM39@GRM39@ Mode set for D HD74LV32AT IC71A Endian HD74LV32AT RPC05T@J Composite D +3.3 R212 0 Video LTLXBIG 2 RPC05T@J Q10 3 R196 NIU VMD4 IC71B DTA114EUA 2 D +5 Output 1 XRESET
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland-G-70-Service-Manual.pdf
-45T 13 8 XMDOE C310 C311 C312 9 NIU NIU NIU HD74LV32AT RPC05T@J GRM39@GRM39@GRM39@ Mode set for D HD74LV32AT IC71A Endian HD74LV32AT RPC05T@J Composite D +3.3 R212 0 RPC05T@J Q10 Video LTLXBIG 2 R196 NIU VMD4 IC71B DTA114EUA 3 2 D +5 Output 1 XRESET
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LIS3LV02DQ.pdf
“10” and “11” the selected data-rate will be set respectively equal to 160Hz, 640Hz and to 2560Hz. 26/42 CD00047926 LIS3LV02DQ 7 Register Description ST bit is used to activate the self test function. When the bit is set to one, an output change will occur to the device outputs (refer to table 2 and
in „V: 3 Drehratensensoren, 1 Dreiachs-Beschleunigungssensor“ · Markt ·
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Datei
device2007.txt
, AT29C010, AT29C010A, AT29C020, AT29C040, AT29C040A, AT29LV512, AT29LV010, AT29LV010A, AT29LV020, AT29LV020A, AT29LV040, AT29LV040A, AT49F010, AT49F020, AT49F040, AT49BV020, AT49BV040, AT49F001,P29F640, AT49F002,P29F640, AT49F004, AT49LW040*32PLCC, AT49LW080*32PLCC, AT49LL020*32PLCC, AT49LL040*32PLCC, AT49LL080*32PLCC, ____EEPROM-ACTRANS AC39LV512, AC39LV010, AC39LV020, AC39LV040, ____EEPROM-WINBOND W27E257, W27E512, W27E010, W27E020, W27E040, W27C257, W27C512
in „24C04 beschreiben und auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBM29LV800.pdf
mechanism of hot electron injection. 3 MBM29LV800TA -70/-90/-12/MBM29LV800BA -70/-90/-12 FLEXIBLE SECTOR-ERASE ARCHITECTURE • One 16K byte, two 8K bytes, one 32K byte, and fifteen 64K bytes • Individual-sector, multiple-sector, or bulk-erase capability
in „650Stk. Flashbausteine 29LV800 1Mx8 / 512k x16, 3,3V“ · Markt ·
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PDF
kdnx901.pdf
-X R5502 47k 3.3V Q5502 0 S C 1 1 1 C UN2213-X 0 N D C5503 10/16 R5516 18k G G D 2 2 2 0V 2 1 49 E 32 4 C 3 3 3 5 50 31 R5506 I LV C 4 4 4 . . V . V V . . . . . 18k C 51 30 3 3 0 3 0 0 3 3 3 3 3 4 V R5508 18k 7 5 5 5 36 35 34 33 32 31 30 29 28 27 26 25 4 5 52 29 R5510 18k D V V 6 6 6 D 2 3 D S K D 0
in „Autoradio Reparieren JVC NX901“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2660_DC_Inverter.pdf
150 µF. (Note 4) 1 2 Symbol Parameter Condition Min Typ Max Units V+ Supply Voltage RL= 1k Inverter, LV = Open 3.5 5.5 Inverter, LV = GND 1.5 5.5 V Doubler, LV = OUT 2.5 5.5 IQ Supply Current No Load FC = Open (LM2660) 0.12 0.5 LV = Open FC = V+ (LM2660) or mA 1 3 SD = Ground (LM2661) ISD Shutdown Supply
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LV8907UW-D.PDF
Mode: Read/Write Normal Mode: Read Only Bit 7 6 5 4 3 2 1 Bit 0 PDTSEL[1,0] SSTT[5:0] www.onsemi.com 26 LV8907UW PDTSEL: Fast Start-up Motor Operation as soon as EN is high. This feature is bridging the initial If bit PDTC is set the motor is driven with the duty cycle 200 ms of operation until a valid
in „BLDC LV8907 via SPI einstellen funkt nicht..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
logicpkginfo.pdf
*** HCT*** HT*** SN74LVTH2*** LVTH2*** LK*** SN74HCU*** HCU*** HU*** SN74LVTH32*** LVTH32*** HV*** SN74LS*** LS*** LS*** SN74LVTR*** LVTR*** LXR*** SN74LS*** 74LS***¶ LS*** SN74LVTT*** LVTT*** LXT*** SN74LV*** LV*** LV*** SN74LVTZ*** LVTZ*** LXZ*** ¶ SN74LV*** 74LV*** LV*** SN74LVU
in „IC Gesucht: 4040 CMOS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2661.pdf
150 µF. (Note 4) 1 2 Symbol Parameter Condition Min Typ Max Units V+ Supply Voltage RL= 1k Inverter, LV = Open 3.5 5.5 Inverter, LV = GND 1.5 5.5 V Doubler, LV = OUT 2.5 5.5 IQ Supply Current No Load FC = Open (LM2660) 0.12 0.5 LV = Open FC = V+ (LM2660) or mA 1 3 SD = Ground (LM2661) ISD Shutdown Supply
in „pegelanpassung analog“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AND9388-D.PDF
15LIN_PWMIN IC R13 R15 3 TXD T1a T2a T3a 2 36 R1 R2 R3 RXD UH CP1 P1 U 7 CSB UOUT 35 CP2 8 SCLK VH 32 CP3 P2 V 9 SI VOUT 31 CP4 10SO WH 28 P3 W WOUT 27 EN T1b T2b R9 T3b P8 46EN UL 34 R7 R8 CP5 R51 4 PWMIN VL 30 R53 R54 R55 11 R20 FG WL 26 T9 SUL 33 12DIAG SVL 29 25 SWL VS R17 RF 22 C7 R16 + + D N N
in „BLDC LV8907 via SPI einstellen funkt nicht..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS3LV02DQ28.pdf
2F Not Used FF_WU_CFG rw 0110000 30 8 13/27 LIS3LV02DQ Registers address map Register Address Reg. Name Type Size Comment (Bit) Binary Hex FF_WU_SRC rw 0110001 31 FF_WU_ACK r 0110010 32 Dummy register 0110011 33 Not Used FF_WU_THS_L rw 0110100 34 FF_WU_THS_H
in „"Halbleiterkreisel"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS3LV02DQ28.pdf
2F Not Used FF_WU_CFG rw 0110000 30 8 13/27 LIS3LV02DQ Registers address map Register Address Reg. Name Type Size Comment (Bit) Binary Hex FF_WU_SRC rw 0110001 31 FF_WU_ACK r 0110010 32 Dummy register 0110011 33 Not Used FF_WU_THS_L rw 0110100 34 FF_WU_THS_H
in „Beschleunigungssensor für ca +/-6g in alle 3 Achsen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Inverter_MAX660.pdf
0.745 0.765 18.92 19.43 PACKAGE P D 18 0.885 0.915 22.48 23.24 (0.300 in.) P D 20 1.015 1.045 25.78 26.54 N D 24 1.14 1.265 28.96 32.13 21-0043A DIM INCHES MILLIMETERS MIN MAX MIN MAX A 0.053 0.069 1.35 1.75 D A1 0.004 0.010 0.10 0.25 B 0.014 0.019 0.35 0.49 0°-8° C 0.007 0.010 0.19 0.25 A E 0.150 0.157
in „Spannungspeaks / Ripple durch Schaltregler. Abhilfe?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
te2200.pdf
B 10005721 IC/CMOS SN74LV244APW R 1 1 1 1 1 AF B 10004413 IC/MOS SN74LV32APW R 2 2 1 1 2 AB B 10089475 IC SN74LV367APW R 2 2 2 2 2 AE B 10050431 IC/CMOS SN74LV373APW R 1 1 1 1 1 AI B 10005662 IC SN74LV374APW R 3 3 3 AF B 10105407
in „LCD identifizieren.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
compile_Tasmota_stable_in_docker_container.txt
/tasmota32-DE/libd0a/lvgl/draw/sdl/lv_draw_sdl_texture_cache.c.o Compiling .pio/build/tasmota32-DE/libd0a/lvgl/draw/sdl/lv_draw_sdl_utils.c.o Compiling .pio/build/tasmota32-DE/libd0a/lvgl/draw/stm32_dma2d/lv_gpu_stm32
in „Dlock 11827 und Tasmota - compilieren für FW-Update“ · Haus & Smart Home ·
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PDF
ON_LV8772.PDF
. Semiconductor Components Industries, LLC, 2013 June, 2013 90711 SY 20110902-S00001 No.A1975-1/17 LV8772 Allowable Operating Ratings at Ta = 25°C Parameter Symbol Conditions Ratings Unit Supply voltage range VM 9 to 32 V Logic input voltage VIN 0 to 5.5 V VREF input voltage range VREF 0 to 3 V Electrical
in „Welcher Schrittmotor?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
elektronische_Bauelemente.pdf
RC4153D 40 microcontroller AT89C2051-24PU 15 Temperatursensor-IC AD595CQ 189 Differenzempfänger DS26C32ATN 16 Monostabiler Multivibrator SN74LS221N 25 RS232-Transceiver-IC MC145407P 41 8bit-microcontroller PIC16LC73A-041/SP 9 C-MOS MM74HC266AN MC74HC266 18 Operationsverstärker AD707BQ 18 Spannungspegelumsetzer HEF4104BP 57 Leitungstreiber RS 422 AM26C31CN 25 Schaltmodusregler LM3578AN 29 NAND-Gatter CD4012BE 25 Leitungsempfänger AM26C32CN 6 RS422-Interface-IC DS26C32ATN 5 Flip-Flop MM74HC74AN 12 2kbit-TTL-Prom N82S130N 10 12bit A-D-converter ADDAC80N-CBI-V
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Datei
devlist.txt
,P4 29C256 . . . . .1) *4223 D1,P3 29C257 . . . . .1) *4224 D1,P3 29C512 . . . . .1) *4225 D1,P3 29LV010 . . . . .1) *4226 D1,P3 29LV040 . . . . .1) *6428 D1,P3 29LV040A . . . .1) *6429 D1,P3 29LV256 . . . . .1) *4227 D1,P3 29LV512 . . . . .1) *4228 D1,P3 32C16 . . . . . .0) *4221 D1,P4 49F010 . . .
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74LV595PW_118.pdf
time OE to Qn; see Figure 12 [5] VCC = 1.2 V - 65 - - - ns VCC = 2.0 V - 24 40 - 49 ns V = 2.7 V - 18 32 - 37 ns CC VCC = 3.0 V to 3.6 V [3] - 14 26 - 30 ns 74LV595 All information provided in this document is subject©Nexperia B.V. 2017. All rights reserved Product data sheet Rev. 4 — 18 March 2016 8 of
in „Geschwindigkeit 74LV595 zu 74LV595 abhängig Leitungslänge“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TLC555_mod.txt
PARAMS: W=172u L=15u M=2 XMP3 23 TRGC TRGS VCC TLC55X_PMOS_MV + PARAMS: W=172u L=15u M=2 XMPR1F GND GND 32 TRGC TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1E 32 32 TRGC TRGC TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1D TRGC TRGC 33 CONTI TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1C 33 33 CONTI CONTI TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1B CONTI CONTI 34 VCC TLC55X_PMOS_LV + PARAMS: W=20u L=15u M=1 XMPR1A 34 34 VCC VCC TLC55X_PMOS_LV + PARAMS: W=20u L=15u M=1 XMN1 29 CONTI THRS GND TLC55X_NMOS_MV + PARAMS
in „TLC555 spice modell von TI läuft nicht unter LTspice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TLC555_mod.txt
PARAMS: W=172u L=15u M=2 XMP3 23 TRGC TRGS VCC TLC55X_PMOS_MV + PARAMS: W=172u L=15u M=2 XMPR1F GND GND 32 TRGC TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1E 32 32 TRGC TRGC TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1D TRGC TRGC 33 CONTI TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1C 33 33 CONTI CONTI TLC55X_PMOS_LV + PARAMS: W=20U L=15U M=1 XMPR1B CONTI CONTI 34 VCC TLC55X_PMOS_LV + PARAMS: W=20u L=15u M=1 XMPR1A 34 34 VCC VCC TLC55X_PMOS_LV + PARAMS: W=20u L=15u M=1 XMN1 29 CONTI THRS GND TLC55X_NMOS_MV + PARAMS
in „H-Brücke mit 100% Duty-Cycle“ · Analoge Elektronik und Schaltungstechnik ·
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LiveDesign_Schematics.pdf
A A 3rd Overtone 50MHz Crystal Oscillator CR1 L1 C30 2 1 VCC 470nH 1nF/NPO 50MHz QC49/SMD C29 C31 C32 10nF R112 B B 15pF/NPO 470K 15pF/NPO U3B U3C U3D R122 3 4 5 6 9 8 FCLK 47R SN74LV04D SN74LV04D SN74LV04D U3E 11 10 SN74LV04D U3F C 13 12 C SN74LV04D D D Altium Limited TitleNEB - Crystal Oscillator L3
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Datei
Compiler_out.txt
<$n0015>. Found 32-bit subtractor for signal <$n0016> created at line 54. Found 32-bit adder for signal <$n0017>. Found 32-bit adder for signal <$n0018>. Found 32-bit subtractor for signal <$n0023> created at line 56. Found 32-bit adder for signal <$n0024>. Found 32-bit adder for signal <$n0025>. Found 32-bit adder for signal <$n0026>. Found 32-bit subtractor for signal <$n0027> created at line 56. Found 32-bit adder for signal
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Datei
main.txt
} KBISC_KBACK = 1; //part of clearing INT flag } //ISR for ADC INT Lv17 void interrupt VectorNumber_Vadc ADC_ISR() { adc_value = ADCR; //give out 12bit conversion result (H,L- byte union) ADCSC1_COCO = 0; //interrupt flag cleared } //ISR for TPM2C4 Lv22 rising edges void
in „Programm mit ISR läuft im Single Step Debugging aber nicht in Run Mode“ · Mikrocontroller und Digitale Elektronik ·
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7.5inch-e-paper-specification.pdf
- - # - - - - VCM_HZ 00h 0 0 0 0 0 0 0 0 0 1 01h EDATA_SEL, EDATA_SET, 0 1 - - # # - # # # VSource_LV_EN, 07h Power setting 2 VSource _EN, VGate_EN (PWR) 0 1 - - - - - # # # VGHL_LV[1:0] 01h 0 1 - - # # # # # # VDPS_LV[5:0] 05h 0 1 - - # # # # # # VDNS_LV[5:0] 05h 3 Power OFF(POF) 0 0 0 0 0 0 0 0 1 0
in „7.5" Waveshare E-Parper ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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SCA02010-TFN-LNN.pdf
20 D13 21 D14 22 D15 23 /LCD_RESET Reset signal 24 IOVCC Power supply(1.8V or 2.8V) 25 GND Ground 26 LED3- 27 LED2- Cathode of backlight 28 LED1- 29 LED+ Anode Pin of Backlight 30 IM0 MPU interface select 31 X- 32 X+ NC 33 Y- 34 Y+ 9 | P a g e Recommended Initial Code void init() { res=0; delay(20
in „Ansteuerung "SAMMELBESTELLUNG: 2"2 TFT Display"“ · Mikrocontroller und Digitale Elektronik ·