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Datei
main.c
Relais K17_Ein = { 32, 33, 32 }; struct Relais K17_Aus = { 33, 32, 33 }; struct Relais K18_Ein = { 34, 35, 34 }; struct Relais K18_Aus = { 35, 34, 35 }; struct Relais K19_Ein = { 36, 37, 36 }; struct Relais K19_Aus = { 37, 36, 37 }; struct Relais K20_Ein = { 38, 39, 38 }; struct Relais K20_Aus = { 39
in „Interrupt Variable übergeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Relais K17_Ein = { 32, 33, 32 }; struct Relais K17_Aus = { 33, 32, 33 }; struct Relais K18_Ein = { 34, 35, 34 }; struct Relais K18_Aus = { 35, 34, 35 }; struct Relais K19_Ein = { 36, 37, 36 }; struct Relais K19_Aus = { 37, 36, 37 }; struct Relais K20_Ein = { 38, 39, 38 }; struct Relais K20_Aus = { 39
in „Parsen klappt nur bis zur ersten Stelle.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9214_V10_neutr_Sch.pdf
D0 EEP-Di +USB2 1 +usb 93C46 -USB2 1 R73 122R 2 -usb Ferrit R42 10k 13 L72 4 gnd 1 Test1 5 6 1 +3V 34 Test2 PowerCtrl316 C72 C73 Ferrit U41-Pin6 40 4 1 1 D32 47 Test3 +USB3 3 C81 22p 22p 2 SS36 auf gnd Test4 -USB3 1 rot +3V grün (8-Bit-Mode) 185 D85 +5V R86 11k D86 28 17 220n 220R 2 1 1 2 TestReset PowerCtrl4
in „LAN9514 schematic“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sager_D87P_Service_Manual_Part3.pdf
AH32SDQ_A32 [8,9] SCS_B1# T283 V25 SCS_B1# SDQ_B31 AE30SDQ_B32 g Sheet 7 of 39 T86 W34 SCS_A2# SDQ_A32 AG34SDQ_A33 T284 W25 SCS_B2# SDQ_B32 AC27SDQ_B33 SCS_A3# SDQ_A33 AF32SDQ_A34 SCS_B3# SDQ_B33 AC30SDQ_B34 a SDQ_A34 AD32SDQ_A35 SDQ_B34 Y29 SDQ_B35 i [8,9] SCKE_A0 SCKE_A0 AL20 SCKE_A0
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K4B4G1646Q-Samsung.pdf
tIH tIS tIH tIS tIH tIS tIH 2.0 88 50 88 50 88 50 96 58 104 66 112 74 120 84 128 100 1.5 59 34 59 34 59 34 67 42 75 50 83 58 91 68 99 84 1.0 0 0 0 0 0 0 8 8 16 16 24 24 32 34 40 50 CMD/ ADD 0.9 -2 -4 -2 -4 -2 -4 6 4 14 12 22 20 30 30 38 46 Slew 0.8 -6 -10 -6 -10 -6 -10 2 -2 10 6 18 14 26 24 34
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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Computer_Kontakt_1986-08_09_-_21.pdf
! dh C2IQF ;3 liiJc intmnm u 4H 184339B9B9B 1IFWJDtCSlH ,771 ! i:ciM(EHCii!CC8Mis4c«a,M7 ACI!2CFBI34CAC2*;iFD2)Ft]34 1211 DATA FIIEAiD42IE*22AtD32BE622A31 ! JI4i DATA ! BCt283A2MBE 1BB33E 44831 [56E' 58914HFFF FI7F FTFFF 81FFIFIE A444BD7 C 1 Clf 25AIIB • 2>F02aDMilC«i2>A4D<BDC5t2,?7? *93ASTj71IM99TiA2
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sony_STR-DE585_Service_Manual.pdf
(AEP,UK) CC14 1-127-876-21 CERAMIC 0.01uF 10% 50V D722 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D731 8-719-991-33 DIODE 1SS133T-77 CC16 1-127-876-21 CERAMIC 0.01uF 10% 50V D732 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D733 8-719-991-33 DIODE 1SS133T-77 D734 8-719-991-33 DIODE 1SS133T
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Sd2PinMap.h
(aka I2C) ports uint8_t const SDA_PIN = 20; uint8_t const SCL_PIN = 21; // SPI port uint8_t const SS_PIN = 53; uint8_t const MOSI_PIN = 51; uint8_t const MISO_PIN = 50; uint8_t const SCK_PIN = 52; static const pin_map_t digitalPinMap[] = { {&DDRE, &PINE, &PORTE, 0}, // E0 0 {&DDRE, &PINE, &PORTE, 1}
in „SD Karte an AVR 328 Arduino UNO welche Pins ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR32-64SD20-28-32-48-ProductBrief-DS40002417.pdf
WO 1, IN0 0, SCK3) 1, MISO 11 7 3 7 12 PC1 AIN29 1, RxD 0, MISO(3) 0, WO1 (3) 3, 1, IN1 0, TxD3) 0, SS(3) WO (3) 0, MOSI(3) 1, SCK 0, SDA(C) 12 8 4 8 13 PC2 TWI Fm+ AIN30 0, AINN3 3, ZCIN 1, XC(3) 0, SCK3) 0, SDA(HC) 0, WO2 (3) EVOUTC 1, IN2 1, AINN3 0, RxD 0, MISO(3) (3) 1, SS 13 9 5 9 14 PC3 TWI Fm+
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MCP6V11U_OpAmp.pdf
...........±2 mA Analog Inputs IN+ and VIN) (Note 1) ..............................................SS.– 1.0V toDD.+1.0V...................V All other Inputs and Outputs .....................................................SS..........DD....................................V Difference Input voltage ..
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
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SM7505.PDF
恒流原边控制功率开关 TSOSIWV1.3 极限参数 (极限参数(TA= 25℃) 符号 说明 范围 单位 VDS(max) 芯片 DRAIN 脚最高耐压 -0.3~730 V HVDD 芯片工作电压 -0.3~34.0 V IDDclamp 芯片钳位电流 10.0 mA V FB 输入电压 -0.3~7.0 V FB VCOMP COMP 输入电压 -0.3~7.0 V VCS CS 输入电压 -0.3~7.0 V TA 工作温度 -20~85 ℃ Tstg 存储温度 -40~150 ℃ VESD 人体放电模式 > 4000 V Rθja 热阻 SOP8 65 ℃/W 电气工作参数 (除非特殊说明,下列条件均为
in „Ersatz für SM7505 DIP-8 Flyback controller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SM7505.PDF
恒流原边控制功率开关 TSOSIWV1.3 极限参数 (极限参数(TA= 25℃) 符号 说明 范围 单位 VDS(max) 芯片 DRAIN 脚最高耐压 -0.3~730 V HVDD 芯片工作电压 -0.3~34.0 V IDDclamp 芯片钳位电流 10.0 mA V FB 输入电压 -0.3~7.0 V FB VCOMP COMP 输入电压 -0.3~7.0 V VCS CS 输入电压 -0.3~7.0 V TA 工作温度 -20~85 ℃ Tstg 存储温度 -40~150 ℃ VESD 人体放电模式 > 4000 V Rθja 热阻 SOP8 65 ℃/W 电气工作参数 (除非特殊说明,下列条件均为
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512020-sp-01-en-Switching_Power_Supply_DPS-4005PFC.pdf
21 A9 15pF L B A C R MC14538B 1kO 0.01µF 1kO A8 C V4 11 FLY2 A7 32 AD7 G1 C11 R16 C28 1N4148 C32 C34 V7 C35 10 KEY8 A6 33 AD6 S1 0.1µF 1kO 0.1µF 0.1µF 0.1µF 0.01µF 9 KEY7 A5 34 AD5 C8 C14 Q Q 1N4148 8 KEY6 A4 35 AD4 XTAL1 19 7 KEY5 A3 36 AD3 10µF GND GND GND GND GND 6 KEY4 A2 37 AD2 15pF C10 7 6 -12V
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DS203V2.6_SCH.pdf
Bx2 8 PC14 PB1 36 ClrW 62 I/O_GBIN GND 47 105 TC1221 3V6 M25PE16 2V8 101 3 3 Bx5 9 PC15 PB10 47 C_SS 49 SPI_SS GND 55 LN2300 FUNC ITEM 98 48 C_SCK 48 70 U19 FDFMA2P853 FIT ESC SEL RUN 13 PE1 E E 5 2 0 PB11 51 C_SI 46 SPI_SCK GND 84 1 6 1 4 12 OSC0 E O W D 1 1 1 1 1 9 8 7 6 5 4 3 2 D D PB12 52 C_SO 45
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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KS0108.pdf
2.4 - - V (3) Output low volta ge V OL IOL = 1.6mA - - 0.4 V (3) Input leakage current ILKG V INV SS - VDD -1.0 - 1.0 μA (4) Three -state(off) input ITSL V INV SS - VDD -5.0 - 5.0 μA (5) current Driver input leakage DIL V IN = VEE - VDD -2.0 - 2.0 μA (6) curren t Operating current IDD1 During display
in „KS0108 library und Timing diagram“ · Mikrocontroller und Digitale Elektronik ·
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Schematic.pdf
5 6 7 8 90 3 1 2 3 4 5 6 7 8 90 3 1 3 1 3 1 3 1 3 1 3 1 3 1 3 1 + + + + + + + + DD S S R R D I D D SS R R D I D D S S RR D I D D S S R R DI DD S S R R D I D D SS R R D I D D S S RR D I D D S S R RD I XX T T T S C R X X TT T S C R X X T T TS C R X X T T T S CR XX T T T S C R X X TT T S C R X X T T TS
in „CH348 USB zu 8 Port Serial (UART)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic.pdf
5 6 7 8 90 3 1 2 3 4 5 6 7 8 90 3 1 3 1 3 1 3 1 3 1 3 1 3 1 3 1 + + + + + + + + DD S S R R D I D D SS R R D I D D S S RR D I D D S S R R DI DD S S R R D I D D SS R R D I D D S S RR D I D D S S R RD I XX T T T S C R X X TT T S C R X X T T TS C R X X T T T S CR XX T T T S C R X X TT T S C R X X T T TS
in „CH348 USB zu 8 Port Serial (UART)“ · Mikrocontroller und Digitale Elektronik ·
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lm25117.pdf
the VIN pin. 0.47μF ceramic capacitor is used for CVIN in the example. 8.3.19 Soft-Start Capacitor C SS The capacitor at the SS pin (C ) determines the soft-start time (t ), which is the time for the output voltage to SS SS reach the final regulated value. The tSS for a given CSS can be calculated from
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD5241_5242-1501681.pdf
= +5.5V DD VDD = ±2.7V L B I S T 0.5 E ( 0.25 E ) D Y R S V /V = +2.7V/0V M I V /V = +2.7V F ( DD SS R A DD SS I Y E E D I E I E R 0 M L 0 O E I O MIN T N T L N L VDD /SS = +2.7V/0V, +5.5V/0V A N T A S N O G O –0.5 P E –0.25 E V /V = +5.5V/0V, ±2.7V N R DD SS I –1.0 0 –0.50 1 0 32 64 96 128 160 192
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CD00273528.pdf
138 94 60 44 A4 A4 B4 44 PB2-BOOT1 48 37 28 20 L6 L6 G6 20 NRST 25 14 7 7 H2 H2 E1 7 PA13 105 72 46 34 A11 A11 A8 34 PA14 109 76 49 37 A10 A10 A7 37 PA15 110 77 50 38 A9 A9 A6 38 PB4 134 90 56 40 A7 A7 A4 40 PB3 133 89 55 39 A8 A8 A5 39 VSS_1 71 49 31 23 F12 F12 D6 23 VSS_2 107 74 47 35 F11 F11 D5 35
in „STM32F4 Grundschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Temp_LAN_display_Volt.ino
= (0,00); float spannung14 = (0,00); float spannung15 = (0,00); //Speicher Temp float temp1 = (12,34); float temp2 = (12,34); float temp3 = (12,34); float temp4 = (12,34); float temp5 = (12,34); float temp6 = (12,34); float temp7 = (12,34); float temp8 = (12,34); float temp9 = (12,34); float temp10 = (12,34); float temp11 = (12,34); float temp12 = (12,34); void setup(void) { pinMode(30, OUTPUT); pinMode(24, OUTPUT); //Serial.begin(9600); // PC Serial3.begin(9600); // atmega48v Ethernet.begin(mac, ip, mac
in „atmaga2560 + Interrupt + lan = abbruch.“ · Mikrocontroller und Digitale Elektronik ·
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Weidezaun_S03_4093.pdf
0,129-0,823qmm B8,2mm 0,21€/10 6,5mm VA-Wabendraht 0,5mm 1kg ca.700m 14,95€ 3 9 D +Solar- 2 ( - ( A 0 SS14 1 2 3 Terminal Plug Set 15EDG 2,54mm 4A 125V AWG26-18 0,129-0,823qmm PA66 -40/105°C B8,1mm 2,83€/5 A S +Ub 1ND SS14 40V 1A SMA 0,2V GND Oese1-2 M3x16 DIN84 verzinkt Kernloch 2,1mm x € LM2936ZEP-5,0
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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wt8871.pdf
feedback pin. Shared with GPIO. 31 D2D_SS2 I/O DC-to-DC soft start pin. Shared with GPIO. 32 D2D_SW2 O DC-to-DC switching pulse. 33 VSSP Ground. 34 TCON[0] I/O pull-down TCON output. Shared with GPIO. 35 TCON[1] I/O pull-down TCON output. Shared
in „LCD Display HT070I36-E00“ · Mikrocontroller und Digitale Elektronik ·
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CD00161566.pdf
STM32F103xx performance line VFQFPN36 pinout 0 _ O 7 6 5 4 3 1 1 S O B B B B B A A V B P P P P P P P 36 35 34 33 32 31 30 29 28 VDD_3 1 27 V DD_2 OSC_IN/PD0 V 2 26 SS_2 OSC_OUT/PD1 3 25 PA13 24 NRST 4 PA12 QFN36 V SSA 5 23 PA11 V DDA 6 22 PA10 PA0-WKUP 7 21 PA9 PA1 8 20 PA8 PA2 9 19 V DD_1 10 11 12 13 14 15
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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slas272d.pdf
–3.4 mA, VCC = 3 V, See Note 2 VCC –0.6 VCC I = 1.5 mA, V = 2.2 V, See Note 1 V V +0.25 OL(max) CC SS SS OL(max) = 6 mA, VCC = 2.2 V, See Note 2 VSS VSS +0.6 VOL Low-level output voltage V OL(max) = 1.5 mA, VCC = 3 V, See Note 1 VSS VSS +0.25 I = 6 mA, V = 3 V, See Note 2 V V +0.6 OL(max) CC SS SS NOTES
in „MSP430 Interrupt Port1“ · Mikrocontroller und Digitale Elektronik ·
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mcp2515.txt
Interrupts #include <stdio.h> #include "defines.h" void SPI_init( void ) { // SPI Port (Port B) Ausgang: SS, MOSI, SCK, INT; Eingang: MISO; -> INT, SS auf HIGH /*SPI_DDR = (1<<SPI_INT)|(1<<SPI_MOSI)|(1<<SPI_SCK)|(1<<SPI_SS); SPI_PORT |= (1<<SPI_INT)|(1<<SPI_SS); */ //ohne interrupt SPI_DDR = (1<<SPI_MOSI)|(1<<SPI_SS)|(1<<SPI_SCK); SPI_PORT |= (1<<SPI_SS); // REGISTER SPI: SPIE SPE DORD MSTR CPOL CPHA SPR1 SPR0 // Enable SPI and Interrupt, Master, set clock rate fck/16 = 1,25Mhz ??? /*SPCR = (1<<SPIE)|(1<<SPE)|(1
in „MCP2515 richtig initialisiert?“ · Mikrocontroller und Digitale Elektronik ·
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nightsky_arx15.pdf
a AB19 USB_SS_RXP3 USB_SS_TXP3 AE20 USB_SS_RXN3 USB_SS_TXN3 AC21 AF21 AB21 USB_SS_RXN4 USB_SS_TXN4 AE21 m Zdiff=80ȍ 3 ~ 5 " AF24 USB_SS_RXP5 USB_SS_TXP5 AF22 e AE24 USB_SS_RXN5 USB_SS_TXN5 AE22 USB3.1 GEN2 10Gbps
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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RFM_02_test_sdi.bas
Pind.2 = Input Nirq Alias Pind.2 'Config Pinb.3 = Output Sdi Alias Portb.3 'Config Pinb.2 = Output Ss Alias Portb.2 'Config Pinb.5 = Output Sck Alias Portb.5 Led Alias Portd.5 Config Portd.5 = Output 'LED zur Kontrolle Dim Count As Byte Dim Temp As Byte Dim Cmd(2) As Byte Dim Sdi_byte As Byte Declare
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druckversionigztarif-hauptbroschuerejan2014.pdf
für Mitarbeiter, Bewerber, Kun- denunternehmen oder Institutionen, die einen Ver- Wer gehört der KuSS an? stoß gegen die im iGZ-Ethik-Kodex aufgeführten Die KuSS ist unabhängig und hochrangig besetzt: ethischen Grundsätze zu beklagen haben. Prof.FranzJosefDüwell,Vors.RichterbeimBAGa.D., Holger Dahl,
in „Stefan Schaumburg, die IG Metall und der IGZ Zeitarbeits-TV“ · Ausbildung, Studium & Beruf ·
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PDF
Handbuch_SE4942_Eprom_Programmer_pdfa-2b_150dpi.pdf
folgende Nachricht, und es erfolgt keine Funktionsausführung. ROMTYPE COMMA—) ADORESS RAMa]— ROM Oi E m 34 OFFSET/START STOP/SUM b—— pm Manufacturer code under Error code 34 code 34 Device code under Error SE4942 Handbuch ; 3.2 EPROM SE4942 SE Spezial Electronic Programmierer . PROMs VA Tabelle 3 - 1 Zur
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SSD1327-datasheet.pdf
...................................................................................................34 Figure 8-18 : The Power OFF sequence.............................................................................................................................34 Figure 8-19 V > 2.CI, V DD regulator
in „OLED-Display SPI Psoc4“ · Mikrocontroller und Digitale Elektronik ·
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SSD1327-datasheet.pdf
...................................................................................................34 Figure 8-18 : The Power OFF sequence.............................................................................................................................34 Figure 8-19 V > 2.CI, V DD regulator
in „OLED Stromverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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Tidenuhr_Seite1.pdf
1 2 3 4 5 6 7 8 +5V +5V +3V3 D102 IC101 +3V3 SS14L L101 IC401 +3V3 VIN SW +V A 4µ7 TPC-M R401 A C104 R101 100K DCF 470K 1 C101 C102 C103 22p C105 C106 DCF77 3 D101 DCF 2 SS14L RUN FB 4µ7 100n 4µ7 GND 4µ7 100n GND X101 LTC3406 R102 DCF77 100K GND GND
in „Tidenuhr bauen“ · Mikrocontroller und Digitale Elektronik ·
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STC15-English.pdf
PORT2[4] P2.4/SS_2 34 40 36 29 25 27 SS_2 peripheral interface----SPIynchronous serial P2.5 35 41 37 30 26 28 common I/O port PORT2[5] P2.6 36 42 38 31 27 1 common I/O port PORT2[6] P2.7 37 43 39 32 28 2 common I/O port
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TS80C51U2_ATMELCorporation.pdf
C Storage Temperature -65°C to + 150°C Voltage on V CC to VSS -0.5 V to + 7 V Voltage on V PP to V SS -0.5 V to + 13 V Voltage on Any Pin to V -0.5 V to V + 0.5 V Power Dissipation SS 1 W (2) CC NOTES 1. Stresses at or above those listed under Ò Absolute Maximum RatingsÓ may cause permanent damage to
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MT8880.pdf
MT8880C-1 Absolute Maximum Ratings * Parameter Symbol Min Max Units 1 Power supply voltage V -V V 6 V DD SS DD 2 Voltage on any pin VI VSS-0.3 VDD+0.3 V 3 Current at any pin (ExcepDD andSS ) 10 mA 4 Storage temperature T -65 +150 °C ST 5 Package power dissipation PD 1000 mW * Exceeding these values may cause
in „Ansteuerung µC->MT8880“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm5165.pdf
maximum current setting. Programming pin for the soft-start time. If a 100-kΩ resistor is connected from SS to GND, the internal soft-start circuit is disabled and the FB comparator reference steps immediately from zero to full value 4 SS I when the regulator is enabled by the EN input. If the SS pin is left
in „Stromverbrauch Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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Quad_Schaltplan.pdf
ADC5)PA5 32 18pF Q2 22 VBCOMP GPIN4 30 +5V (PCINT4/ADC4)PA4 33 4 N 25 X0 GPIN5 31 (PCINT3/ADC3)PA3 34 P G 1812 MHz 24 X1 GPIN6 32 P4 22pF 4 RESET (PCINT2/ADC2)PA2 35 INT 18 INT GPIN7 1 GND C1 1 (PCINT1/ADC1)PA1 36 +3V3 C18 12 RES GOUT0 4 D Q 8 XTAL2 (PCINT0/ADC0)PA0 37 PD7 16 GPX GOUT1 6 N XTAL1 3 R1
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PCF8591.pdf
oscillator the The AGND pin has to be connected to the system analog EXT pin has to be connected to V SS. At the OSC pin the ground and may have a DC off-set with reference to V SS. oscillator frequency is available. A low frequency may be applied to the V REFand AGND If the EXT pin is connected to VDD
in „Datentransfer an PCF8591“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Relais K17_Ein = { 32, 33, 32 }; struct Relais K17_Aus = { 33, 32, 33 }; struct Relais K18_Ein = { 34, 35, 34 }; struct Relais K18_Aus = { 35, 34, 35 }; struct Relais K19_Ein = { 36, 37, 36 }; struct Relais K19_Aus = { 37, 36, 37 }; struct Relais K20_Ein = { 38, 39, 38 }; struct Relais K20_Aus = { 39
in „Verzögerung Zündung TRIAC für Phasenanschnitt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8591.pdf
oscillator the The AGND pin has to be connected to the system analog EXT pin has to be connected to V SS. At the OSC pin the ground and may have a DC off-set with reference to V SS. oscillator frequency is available. A low frequency may be applied to the V REFand AGND If the EXT pin is connected to VDD
in „I2C Analog Mux/Demux im DIP gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RE5VL-RICOH.pdf
5 R 5VL ABSOLUTE MAXIMUM RATINGS Topt=25˚C Symbol Item Rating Unit VDD Supply Voltage 12 V CMOS V SS–0.3 to DD+0.3 VOUT Output Voltage V Nch V SS–0.3 to 12 IOUT Output Current 70 mA PD1 Power Dissipation 1 NOTE1) 300 mW PD2 Power Dissipation 2 NOTE2) 150 mW Topt Operating Temperature Range –30 to +80
in „12V Tiefentladeschutz ohne Eigenverbrauch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RE5VL-RICOH.pdf
5 R 5VL ABSOLUTE MAXIMUM RATINGS Topt=25˚C Symbol Item Rating Unit VDD Supply Voltage 12 V CMOS V SS–0.3 to DD+0.3 VOUT Output Voltage V Nch V SS–0.3 to 12 IOUT Output Current 70 mA PD1 Power Dissipation 1 NOTE1) 300 mW PD2 Power Dissipation 2 NOTE2) 150 mW Topt Operating Temperature Range –30 to +80
in „Wie sprunghafte Bereitstellung der Betriebsspannung für MC realisieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MyPC_sch.pdf
PA0 CVCC1 7 PDI_DATA 89 PDI_Data ADC0_ADC1_AC1_PA1 96 PA1 33 GPIO0 CVCC2 24 ADC2_AC2_DAC0_PA2 97 PA2 34 GPIO1 CVCC3 31 ADC3_AC3_DAC1_PA3 98 PA3 9 GPIO2 ADC4_AC4_PA4 99 PA4 R26 10 GPIO3 AVCC0 38 N 3 GND ADC5_AC5_PA5 100 PA5 N N 36 GPIO4 AVCC1 43 G 13 GND ADC6_AC6_PA6 1 PA6 G 8 G 100k 25 GPIO5 AVCC2 45 23
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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MyPC_sch.pdf
TX CVCC0 7 PDI_DATA 89 /Reset_PDI ADC0_AC0_AREF_PA0 96 PA1 33 CVCC1 24 PDI_Data ADC1_AC1_PA1 97 PA2 34 GPIO0 CVCC2 31 ADC2_AC2_DAC0_PA2 98 PA3 9 GPIO2 CVCC3 ADC3_ADC4_AC4_PA4 99 PA4 10 GPIO3 AVCC0 38 10u N 3 GND ADC5_AC5_PA5 100 PA5 N N R26 36 GPIO4 AVCC1 43 L3 G 13 GND ADC6_AC6_PA6 1 PA6 G 8 G 100k 25
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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S100d_schulungsunterlagen.pdf
abschließt, nur die Kunststoffhülse ragt in den Frei- raum. Offenbar muss diese um 2 x s ünerstehen. ß ï ïòº ¤ ¾ ß í ¤ ›† ß ï î ¤ ¾ î ¤ ¾ Abbildung 36: Freiraum quaderförmig nicht bündig 42 Induktive Sensoren Eigenschaft bei f Überall dort, wo die oben eingezeichneten Freiräume nicht eingehalten werden
in „Schwingkreis temperaturkompensiert“ · HF, Funk und Felder ·
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PDF
FARNELL_STM25P40.pdf
S = V CCV INV SS or VCC 50 µA ICC2 Deep Power-down Current S = V CCV INV SS or VCC 5 µA C = 0.1VCC / 0.9.CC at 25 MHz, ICC3 Operating Current (READ) 4 mA Q = open ICC4 Operating Current (PP) S = V CC 15 mA ICC5 Operating
in „SPI Flash Speicher beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
inhalt.html
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in „was bedeutet DC1 DC3 DC15“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C_CABLINE_E.pdf
Product Pitch Mating Height Applicable Cable Pos. View Page 20p CABLINE ll HT1 0.5mm Horizontal SGC AWG#34,#36,#38,#40 30p [i-Fit Technology] 2.3mm 40p 3 4 50p Vertical CABLINE ll VT3 0.5mm SGC AWG#34,#36,#38,#40 30p 5 6 [i-Fit Technology] 7.2mm Vertical SGC AWG#34,#36,#38,#40 20p CABLINE ll VT4 0.5mm 8.3mm
in „Apple Imac- IPEX LCD Verbindung beim Display abgerissen- HILFE“ · PC Hard- und Software ·
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Datei
cmd_terminal.c
LSB\r\n"), adc_cal); uart_puts(tmp_string); // Interne Zeit ausgeben cli(); seconds = time; sei(); ss = seconds % 60; // Sekunden seconds /=60; mm = seconds%60; // Minuten hh = seconds/60; // Stunden sprintf_P(tmp_string, PSTR("Zeit : %.2d:%.2d:%.2d\r\n"), hh,mm,ss); uart_puts(tmp_string); // Laufzeit ausgeben cli(); seconds = time_up; sei(); ss = seconds % 60; // Sekunden seconds /=60; mm = seconds%60; // Minuten seconds /=60; hh = seconds%24; // Stunden seconds /=24; dd = seconds % 365; // Tage yy = seconds / 365; // Jahre sprintf_P(tmp_string
in „USART Empfangsbuffer“ · Mikrocontroller und Digitale Elektronik ·