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AD5241_5242-1501681.pdf
0.0098) 45° 1.75 (0.0689) 0.25 (0.0098) 1.35 (0.0531) 8° 0.10 (0.0039) 0° COPLANARITY SEA TING 0.10 0.51 (0.0201) PLANE 0.25 (0.0098) 1.27 (0.0500) 0.31 (0.0122) 0.17 (0.0067) 0.40 (0.0157) COMPLIANT T O JEDEC STANDARDS MS-012-AB CONTROLLING DIMENSIONSARE IN MILLIMETERS; INCH DIMENSIONS A 0 (IN PARENTHESES
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Tonfolge.pdf
tatsächlich fol- gende Codierung ausgestrahlt: 1. 2. Wiederholung. 3, 4, 5. Jeder Ton ist dabei 100 ms lang. Abb. 7. l. 4 zeigt die Schaltung des Labormusters. Bei der hier vorgestellten Problemlö- sung sind zehn Leuchtdioden für die sechste übertragene Ziffer vorhanden, und mit zwei Drahtbrücken können
in „Mit 8051er 5-Tonfolge nach ZVEI dekodieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
libsht.c
45, 186, 139, 216, 233, 199, 246, 165, 148, 3, 50, 97, 80, 187, 138, 217, 232, 127, 78, 29, 44, 2, 51, 96, 81, 198, 247, 164, 149, 248, 201, 154, 171, 60, 13, 94, 111, 65, 112, 35, 18, 133, 180, 231, 214, 122, 75, 24, 41, 190, 143, 220, 237, 195, 242, 161, 144, 7, 54, 101, 84, 57, 8, 91, 106, 253, 204
in „SHT11 misst Mist“ · Mikrocontroller und Digitale Elektronik ·
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ILX551B_E_.pdf
s 2S l c 1S n C 1 N a G N 61 33D C V OUT 1 22 VDD2 C t 1 D 7 r 5 L NC 2 21 VDD2 G 1 n φ g NC VDD1 51D r e 3 20 D t u D 2 41D e p SHSW 4 19 GND V e o g - 8 D D 2 l n V φCLK 5 18 NC V 2 p e k p l a 7 N NC 6 17 GND C S C 1 C NC 7 16 NC N 6 N e o l - VDD2 8 15 NC p n 3 C a - N VDD2 9 14 NC u p i u a r O
in „AD Wandler ~ 2 Mhz“ · Mikrocontroller und Digitale Elektronik ·
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ILX551B.PDF
D 1S a C 1 G C 6 D V OUT 1 22 VDD2 N 1 33D C r t K NC 2 1 21 VDD2 N 7 e 5 C G 1 e φ g NC 3 20 VDD1 51D r l D 0 41D a p V 2 e l SHSW 4 19 GND e h 2 e d 8 D D 2 l a V φCLK 5 18 NC V 2 p l c p C l a 7 N NC 6 17 GND C S NC NC N 1 6 C 7 16 d N i o VDD2 8 15 NC l d m a 3 N t l VDD2 9 14 NC p p u u a i O S
in „Problem mit ILX551B (CCD-Sensor)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SD_SPI.asm
SPI_B_MISO ; setzen ; SPI_B_MISO ist schon 0 sbi PORTB,SPI_B_CS ; diese PAUSE ist wichtigŽ rcall wait_100ms ; SPCR => SPIE SPE DORD MSTR CPOL CPHA SPR1 SPR0 (SPI Control Register) ; ; SPIE: SPI Interrupt Enable ; SPE: SPI Enable ; DORD: Data Order ; MSTR: Master/Slave Select ; CPOL: Clock Polarity ; CPHA:
in „SD-Karte Initialisierung Read Write FAT ATmega8 (Assembler)“ · Projekte & Code ·
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Datei
SHT_TEST.c
45, 186, 139, 216, 233, 199, 246, 165, 148, 3, 50, 97, 80, 187, 138, 217, 232, 127, 78, 29, 44, 2, 51, 96, 81, 198, 247, 164, 149, 248, 201, 154, 171, 60, 13, 94, 111, 65, 112, 35, 18, 133, 180, 231, 214, 122, 75, 24, 41, 190, 143, 220, 237, 195, 242, 161, 144, 7, 54, 101, 84, 57, 8, 91, 106, 253, 204
in „SHT11 an ATmega2560 Es funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ECW1J-64182.pdf
PANEL HOLE DIMENSIONS “L” ± 0.38 Rear-Facing Terminals (“L” ± .015) Bushing Mounted 22.2 ± 0.25 8.51 6.35 (.874 ± .010) (.335) (.250) 9.52 11.1 9.14 DIA. 27.68 ± 0.25 (.375) (.360) (.437) (1.090 ± .010) 14.7 ± 0.5 DIA. 3.17 DIA. 9.0 DIA. (.578 ± .020) 28.49 ± 0.25 (.125) (.354) (1.122 ± .010) 1.52 M9
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FV-1.pdf
, and the coupling capacitor should have a time constant with the load resistance of about 20 to 50ms. The power up delay will be approximately 0.5 to 1 second, depending on crystal properties. The clip LED is optional, but will flash for approximately 30mS if the internal ADC or the DAC are driven to
in „Schaltung mit Mono-Output zu Stereo-Output abändern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FV-1.pdf
, and the coupling capacitor should have a time constant with the load resistance of about 20 to 50ms. The power up delay will be approximately 0.5 to 1 second, depending on crystal properties. The clip LED is optional, but will flash for approximately 30mS if the internal ADC or the DAC are driven to
in „Plattform für Effektgeräte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
= (reference 1) p = plasma resistivity V o voltage on storage capacitor (volts) = 0.015 for T 100 ms T = 1/ of pulse width (seconds) = 0.02 for 100 ms > T 1000 ms (7) = (LC) 0.5 = 0.025 for T > 1000 ms 0.5 2 (8) total pulse duration = 3(LC) at 10% current points A = cross sectional area of lamp (cm
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
= (reference 1) p = plasma resistivity V o voltage on storage capacitor (volts) = 0.015 for T 100 ms T = 1/ of pulse width (seconds) = 0.02 for 100 ms > T 1000 ms (7) = (LC) 0.5 = 0.025 for T > 1000 ms 0.5 2 (8) total pulse duration = 3(LC) at 10% current points A = cross sectional area of lamp (cm
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADXL345.pdf
than THRESH_FF to generate a free-fall interrupt. Register0x2D—POWER_CTL(Read/Write) Thescalefactoris5ms/LSB.Avalueof0mayresultinundesirable D7 D6 D5 D4 D3 D2 D1 D0 behaviorifthefree-fallinterruptisenabled.Valuesbetween100ms 0 0 Link AUTO_SLEEP Measure Sleep Wakeup and 350 ms (0x14 to 0x46) are recommended
in „ADXL345 und ESP8266: Echtzeitdatenergassung mit konstanter Abtastrate und Interrupts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD-ADXL345.pdf
than THRESH_FF to generate a free-fall interrupt. Register0x2D—POWER_CTL(Read/Write) Thescalefactoris5ms/LSB.Avalueof0mayresultinundesirable D7 D6 D5 D4 D3 D2 D1 D0 behaviorifthefree-fallinterruptisenabled.Valuesbetween100ms 0 0 Link AUTO_SLEEP Measure Sleep Wakeup and 350 ms (0x14 to 0x46) are recommended
in „MOSI-Pegel viel zu niedrig, aber warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS40060_TPS40061.pdf
described in Equation 5. For applications in which the V IN supply ramps up slowly, (typically between 50 ms and 100 ms) it may be necessary to increase the soft-start time to between approximately 2 ms and 5 ms to prevent nuisance UVLO tripping. The soft-start time should be longer than the time that thINV
in „Parameter-Berechnung für Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DisAsm-MI6311.pdf
EXT_06ED EQU $10D50A EXT_06EE EQU $10D50E EXT_06EF EQU $10D512 EXT_06F0 EQU $10D516 EXT_06F1 EQU $10D51A EXT_06F2 EQU $10D51E EXT_06F3 EQU $10D522 EXT_06F4 EQU $10D526 EXT_06F5 EQU $10D52A EXT_06F6 EQU $10D52E EXT_06F7 EQU $10D532 EXT_06F8 EQU $10D536 EXT_06F9 EQU $10D546 EXT_06FA EQU $10D55E EXT_06FB
in „Suche Simulator für Motorola 68k“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_LCD_Modul.pdf
THE DISPLAYAND RETURN THE B CG DISPLAY 0 0 0 0 0 0 0 0 0 1 CURSOR TO THE HOME POSITION 82µS - 1.64MS 4 LLLL RAM (ADDRESS 0) R ( 1 ) RETURN THE CURSOR TO THE HOME E RETURN POSITION (ADDRESS 0); ALSO RETURN A O ( 2 ) HOME 0 0 0 0 0 0 0 0 1 SHIFTED DISPLAY TO THE HOME POSITION. 40µS - 1.64MS L LLLH DDRAM
in „Display Programmierung mit GCC 16x4 Display“ · Mikrocontroller und Digitale Elektronik ·
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AQ_Rly_Dm_lcd_lan_1_wire_18_11_12.pdf
Shield D10 = SS fuer Ethernet Controller D20 = SDA I2C D21 = SCL I2C D50 = MISO (Ethernet) = ICSP 1 D51 = MOSI = ICSP 4 D52 = SCK D53 = Hardware SS */ //______________________________________________________________________________ ______ //______________________________________________________________
in „Aquariumcontroller: hängt sich auf / stürzt ab / friert ein - Hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5620CN_DIP14.pdf
(R-PDSO-G**) PLASTIC SMALL-OUTLINE PACKAGE 14 PIN SHOWN PINS ** 0.050 (1,27) 8 14 16 DIM 0.020 (0,51) 0.010 (0,25) M 0.197 0.344 0.394 0.014 (0,35) A MAX (5,00) (8,75) (10,00) 14 8 A MIN 0.189 0.337 0.386 (4,80) (8,55) (9,80) 0.244 (6,20) 0.228 (5,80) 0.008 (0,20) NOM 0.157 (4,00) 0.150 (3,81) Gage
in „Wie verhält sich der DAC am SPI-Bus (TLC5620)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration.h
(Power outputs: Extruder, Fan, Fan) // 4 = Duemilanove w/ ATMega328P pin assignment // 5 = Gen6 // 51 = Gen6 deluxe // 6 = Sanguinololu < 1.2 // 62 = Sanguinololu 1.2 and above // 63 = Melzi // 64 = STB V1.1 // 65 = Azteeg X1 // 66 = Melzi with ATmega1284 (MaKr3d version) // 67 = Azteeg X3 // 68 = Azteeg
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LGDP4524.pdf
413 869 G193 -5548 413 938 G55 -6859 278 801 S52 -4047 278 870 G191 -5567 278 939 G53 -6878 413 802 S51 -4066 413 871 G189 -5586 413 940 G51 -6897 278 803 S50 -4085 278 872 G187 -5605 278 941 G49 -6916 413 804 S49 -4104 413 873 G185 -5624 413 942 G47 -6935 278 805 S48 -4123 278 874 G183 -5643 278 943 G45
in „LCD farben invertiert normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-0500.pdf
TYP. 0.254 + 0.076 - 0.0051 + 0.003) (0.010 - 0.002) 5.10 MAX. (0.201) 3.10 (0.122) 3.90 (0.154) 0.51 (0.021) MIN. 2.54 (0.100) TYP. 1.78 ± 0.15 0.40 (0.016) (0.070 ± 0.006) DIMENSIONS IN MILLIMETERS (INCHES). 0.56 (0.022) 5 8-Pin Widebody DIP Package with Gull Wing Surface Mount Option 300 (HCNW135/
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PDF
15121.pdf
TYP. 0.254 + 0.076 - 0.0051 + 0.003) (0.010 - 0.002) 5.10 MAX. (0.201) 3.10 (0.122) 3.90 (0.154) 0.51 (0.021) MIN. 2.54 (0.100) TYP. 1.78 ± 0.15 0.40 (0.016) (0.070 ± 0.006) DIMENSIONS IN MILLIMETERS (INCHES). 0.56 (0.022) 5 8-Pin Widebody DIP Package with Gull Wing Surface Mount Option 300 (HCNW135/
in „Optokoppler HCPL 4504/4503/4502“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SSD1306_driver.inc
Pump (pg.62) .equ SSD1306_CMD_SET_CHARGE_PUMP = 0x8D // follow with 0x14 oled_init: ; rcall wait_20ms delayms 20 ; delayms(int16_t) wait for int16_t ms --> in delay.inc ldi r16,OLED_ADDR lsl r16 mov i2c_addr,r16 ;i2c start rcall twi_send_wr_start ; START + ADDR rcall get_twi_wr_ack ;i2c write Control
in „[ASM] SSD1306 text library für oled displays + AVR 0- und 1-Series“ · Projekte & Code ·
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PDF
S1D15714_Technical_Manual__E_.pdf
Coordinates Unit: µm PAD Pin PAD Pin PAD Pin No. Name X Y No. Name X Y No. Name X Y 1 NC 4986 982 51 CAP1+ –728 982 101 COM23 –5449 463 2 VDD 4935 52 CAP1+ –835 102 COM22 412 3 TEST1 4856 53 CAP1– –941 103 COM21 361 4 SYNC 4750 54 CAP1– –1048 104 COM20 310 5 FR 4643 55 CAP1– –1154 105 COM19 259 6 CL
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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TCM8240MD_E150405_REV13.pdf
0] 00 45 2D CB_MODE[2:0] FRAME_LV[9:8] 0E 46 2E DINSW 44 47 2F 00 48 30 00 APCSW 49 31 03 50 32 FF 51 33 IDRS[1:0] AGMAX_PPED[0]AGMIN_PPED[0] PPEDB[0] PPEDGB[0] PPEDGR[0] PPEDR[0] 00 52 34 PPEDR[8:1] 80 53 35 PPEDGR[8:1] 78 54 36 PPEDGB[8:1] 78 55 37 PPEDB[8:1] 80 56 38 AGMIN_PPED[8:1] 80 57 39 AGMAX_PPED
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
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RTC72423APP.pdf
in fixed-period pulse output mode is as follows: *STD.P pin output IRQ FLAG bit 0 1 0 Approx. 1.95 ms 7.8125 ms The output levels of the STD.P pin are low (down) and open circuit (up). ii. STD.P pin output reset function The STD.P pin output can be reset after an interrupt is generated by writing 0 to
in „Kleine DCF Antenne für Propeller Clock“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC-72421_3_AM_Application.pdf
in fixed-period pulse output mode is as follows: *STD.P pin output IRQ FLAG bit 0 1 0 Approx. 1.95 ms 7.8125 ms The output levels of the STD.P pin are low (down) and open circuit (up). ii. STD.P pin output reset function The STD.P pin output can be reset after an interrupt is generated by writing 0 to
in „Uhrenbaustein RTC 72421“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THS4061-4062.PDF
(R-PDSO-G**) PLASTIC SMALL-OUTLINE PACKAGE 14 PIN SHOWN PINS ** 0.050 (1,27) 8 14 16 DIM 0.020 (0,51) 0.010 (0,25) M 0.197 0.344 0.394 0.014 (0,35) A MAX (5,00) (8,75) (10,00) 14 8 A MIN 0.189 0.337 0.386 (4,80) (8,55) (9,80) 0.244 (6,20) 0.228 (5,80) 0.008 (0,20) NOM 0.157 (4,00) 0.150 (3,81) Gage
in „Verstärker für DC bis hohe Frequenz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC4365.pdf
Applications voltage is outside the UV and OV set points. n Portable Instrumentation The LTC4365 has a 36ms turn-on delay that debounces liveconnections and blocks 50Hz to 60Hz ACpower. For n Industrial Automation n Laptops fast recovery after faults, the LTC4365-1 has a reduced n 1ms turn-on delay. Automotive
in „LTC4365 - FAULT-Pin current sink?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SM2135E_zh-CN_en-US_translated.pdf
select 2 road W / Y Output, the maximum current 50mA , W Light gray 2/255 , Y Light gray 7/255 ; 1ms Rear W Light gray 48/255 , Y light Gray 22/255 , Procedure is as follows: CLK ... 1mS ... Address Address Address DATA Data1 Data2 Data3 Data4 Data5 Data6 instruction 1 instruction 2 instruction 3 STOP
in „LSC Smart Connect - neues Smart Home System bei Action“ · Haus & Smart Home ·
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PDF
tssp960.pdf
with F = 50 mA, find more info at: www.vishay.com/doc?49650 • Fast proximity: up to 2 m range at 5 ms 4 response time, 3 2 find more info at: www.vishay.com/doc?82741 1 16797 • Supply voltage: 2.0 V to 3.6 V • Material categorization: for definitions of compliance please see www.vishay.com/doc?99912
in „was ist das für ein Bauteil??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MX25L12835E__3V__128Mb__v1.3.pdf
L 1 2 8 3 5 E Symbol Alt. Parameter Min. Typ. Max. Unit tW Write Status Register Cycle Time 40 100 ms tBP Byte-Program 12 300 us tPP Page Program Cycle Time 1.4 5 ms tSE Sector Erase Cycle Time (4KB) 60 300 ms tBE Block Erase Cycle Time (32KB) 0.5 2 s tBE Block Erase Cycle Time (64KB) 0.7 2 s tCE Chip Erase Cycle Time 80 200 s tWPS Write Protection Selection Time 1 ms tWSR Write Security Register Time 1 ms Notes: 1. tCH + tCL must be greater than or equal to 1/ fC. 2. The value guaranteed by characterization, not 100% tested in production. 3. Only applicable as a
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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Dds-1.pdf
ldi temp1, 0b10000000|(((@0)-1)<<6)|((@1)-1) rcall lcd_command pop temp1 .ENDMACRO ;bestimmte Anzahl ms warten .MACRO waitms push temp1 ldi temp1, @0*6 rcall wms pop temp1 .ENDMACRO .MACRO wait10ms push temp1 ldi temp1, @0*6 rcall w10ms pop temp1 .ENDMACRO ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
in „Frage zu AVR DDS Funktionsgenerator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
SCLK) Power Down tPD 2.1 ms From NPD falling edge to initiate the power down cycle at 500fps (tpd = 1 frame period + 100ms ) Wake from NPD tPUPD 75 ms From NPD rising edge to valid motion data at 2000 fps and shutter bound 8290. Max assumes surface change while NPD is low. Data delay tCOMPUTE 3.1 ms From NPD rising edge to all registers contain data after NPD from new images at 2000fps (see Figure 10) . RESET pulse width tPW-RESET 10 s MISO rise time tr-MISO 40 200 ns C L 50pF MISO fall time t
in „STM32F4: SPI: MISO Flanken zeigen komisches Verhalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
SCLK) Power Down tPD 2.1 ms From NPD falling edge to initiate the power down cycle at 500fps (tpd = 1 frame period + 100ms ) Wake from NPD tPUPD 75 ms From NPD rising edge to valid motion data at 2000 fps and shutter bound 8290. Max assumes surface change while NPD is low. Data delay tCOMPUTE 3.1 ms From NPD rising edge to all registers contain data after NPD from new images at 2000fps (see Figure 10) . RESET pulse width tPW-RESET 10 s MISO rise time tr-MISO 40 200 ns C L 50pF MISO fall time t
in „STM32F4: Datenübertragung extrem langsam“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD_CTRL.inc
Steuerung der LCD-Anzeige ; ------------------------------------------------------------------- ; $NOMOD51 ; 8051- Standard - Modus abschalten $INCLUDE (REG515.inc) ; 80535- Registersatz bereitstellen ;-------------------------------------------------------------------- ; Es wird anderen Modulen die Funktionen
in „LCD Display 15ms“ · Mikrocontroller und Digitale Elektronik ·
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Datei
verilog.php
General Public License * along with GeSHi; if not, write to the Free Software * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * * You can view a copy of the GNU GPL in the COPYING file that comes * with GeSHi, in the docs/ directory. * * */ $language_data = array ( 'LANG_NAME
in „Verilog Syntaxhighlighter; automatische Verlinkung“ · www.mikrocontroller.net ·
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Datei
I2C_TWI0_Address_and_Frequency_Scanner.ino
address 0x50 = B0101.0000 = B1010.000x ... U9: FM24W256 (256K FRAM) I2C device found at address 0x51 = B0101.0001 = B1010.001x ... U10: AT24C256 (256K EEprom) I2C device found at address 0x68 = B0110.1000 = B1101.000x ... U11: DS3231 (RTC) I2C device found at address 0x73 = B0111.0011 = B1110.011x .
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
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BI_82P_data.pdf
125°C (1% ∆RT, 1%∆VR) Moisture Resistance Ten 24 hour cycles (1% ∆RT, IR 100 Megohms Min.) Shock, 6ms Sawtooth 100G’s (1% ∆RT, 1% ∆VR ) Vibration 20G’s, 10 to 2,000 Hz (1% ∆RT, 1% ∆VR ) High Temperature Exposure 250 hours at 125°C (2% ∆RT, 2% ∆VR ) Rotational Life 200 cycles (3% ∆RT) Load Life at 0.5
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tiny13_doc2535.pdf
Wait Delay Before Writing the Next Flash or EEPROM Location Symbol Minimum Wait Delay WD_FLASH 4.5 ms WD_EEPROM 4.0 ms WD_ERASE 4.0 ms WD_FUSE 4.5 ms Figure 55. Serial Programming Waveforms SERIAL DATA INPUT MSB LSB (MOSI) SERIAL DATA OUTPUT MSB LSB (MISO) SERIAL CLOCK INPUT (SCK) SAMPLE 109 2535H–AVR
in „Atmel AVRs: SRAM so unwichtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ltc6812-1.pdf
Conversion Time in the 8 ADC Modes CH 27kHz 14kHz 7kHz 3kHz 2kHz 1kHz 422Hz 26Hz 000 All Cells 0.9ms 1.1ms 2.0ms 2.5ms 3.7ms 6.0ms 10.7ms 168ms Cell Selection 001 Cells 1, 6, 11 CH[2:0] for ADC 010 Cells 2, 7, 12 Conversion 011 Cells 3, 8, 13 203μs 232μs 407μs 523μs 756μs 1.2ms 2.2ms 34ms 100 Cells
in „Differenzverstärker INA105“ · Analoge Elektronik und Schaltungstechnik ·
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mc68hc11a1.pdf
Divide XTAL = 4.0 Mhz XTAL = 8.0 MHz XTAL = 12.0 MHz CR [1:0] E/25 Timeout Timeout Timeout By –0/+32.8 ms –0/+16.4 ms –0/+10.9 ms 0 0 1 32.768 ms 16.384 ms 10.923 ms 0 1 4 131.072 ms 65.536 ms 43.691 ms 1 0 16 524.288 ms 262.140 ms 174.76 ms 1 1 64 2.097 sec 1.049 sec 699.05 ms E = 1.0 MHz 2.0 MHz 3.0 MHz
in „mc68hc11a1fn-uC-8bit“ · Markt ·
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PDF
CD00161566.pdf
external user clock characteristics. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51 Table 21. Low-speed external user clock characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51 Table 22. HSE 4-16 MHz oscillator characteristics . . . . . . . . . . .
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
33120-90017.pdf
function generator for calibration 47 Chapter 4 Calibration Procedures Agilent Calibration Services 51 Calibration Interval 51 Time Required for Calibration 51 Automating Calibration Procedures 52 Recommended Test Equipment 52 Test Considerations 53 Performance Verification Tests 54 Frequency Verification
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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FS970X-2.pdf
...................................................................................................51 11.6. R ESISTOR ( ).....................................................................................................................................52 11.7. C APACITOR ...........................
in „Erfahrungen mit DM 620 (Digitalmultimeter mit Datenlogger)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
191095-an-01-de-ROBONOVA-I_BAUSATZ.pdf
Drehwinkel: Max 180r Gewicht: 55g Dimension: 40 x 20 x 47mm Impulsspezifikationen: Neutral : 1500 ms 0-180r: s1100-1900 ms Wiederholrate: 12-26ms Die HSR-8498HB Servos sind auf den jeweiligen Einsatzort abgestimmt. Sie unterscheiden sich in Gehäuse, Abtriebsrad, Kabellänge und Einbaurichtung Um die
in „Tubularer Linearmotor“ · Offtopic ·
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Datei
MSD.txt
Descriptor Type: 0x0001 DEVICE TransferBuffer: 0x00000012 (18) length 0000: 12 01 10 01 00 00 00 08 51 C2 03 12 10 01 01 02 0010: 03 01 bLength : 0x12 (18) bDescriptorType : 0x01 (1) bcdUSB : 0x0110 (272) bDeviceClass : 0x00 (0) bDeviceSubClass : 0x00 (0) bDeviceProtocol : 0x00 (0) bMaxPacketSize0 : 0x08
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182583-da-01-de-drucksensor_fsr-151.pdf
--------------------------------------------------- FSR-149 7,62 38,lo 6,35 4,03 0,34 FSR-151 1523 51,65 6,20 9,55 0,43 FSR-152 Ia,30 54,15 7,60 12,15 0,49 FSR-174 27,ao 63,75 7,62 21,20 0,49 Die angegebene Dicke beinhaltet die 0,09 mm starke Kleberückseite Maße der FSR- Sensoren mit quadratischer aktiver
in „Sensorkurve in C umsetzen, wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Drucksensor_FSR-151_Datenblatt.pdf
--------------------------------------------------- FSR-149 7,62 38,lo 6,35 4,03 0,34 FSR-151 1523 51,65 6,20 9,55 0,43 FSR-152 Ia,30 54,15 7,60 12,15 0,49 FSR-174 27,ao 63,75 7,62 21,20 0,49 Die angegebene Dicke beinhaltet die 0,09 mm starke Kleberückseite Maße der FSR- Sensoren mit quadratischer aktiver
in „Drucksensor als Waage“ · Mikrocontroller und Digitale Elektronik ·