-
PDF
INFINEON-BFP620_.pdf
Collector-emitter voltage V V CEO TA > 0 °C 2.3 TA≤ 0 °C 2.1 7.5 Collector-emitter voltage VCES Collector-base voltage VCBO 7.5 Emitter-base voltage VEBO 1.2 Collector current C 80 mA Base current I 3 B Total power dissipation) Ptot 185 mW TS≤ 96°C 150 °C Junction temperature Tj Ambient temperature T -65 ...
in „H - Detektor mit vorspannen von Dioden?“ · HF, Funk und Felder ·
-
Datei
ediptft43.c
len ) break; if( --i == 0 ) return 0xFF; // timeout } for (i=0; i < len; i++) { UARTCharPut(UART1_BASE,buffer[i]); } // Nun lesen wir den Returncode des Displays ret = UARTCharGet(UART1_BASE); return ret; } //--------------------------------------------------------------------- // Die Version auf dem
in „EA eDIPTFT43-ATP per RS-232 an Atmega32“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
pinaddr.c
bekommen die Adresse im RAM für den jeweiligen PIN ( also 0x30 fuer PIND, 0x33 fuer PINC,...) #define pinBaseAddr(pa) ( (((pa) >> 3) & 3) * 3 + 0x10 + 0x20) // Die Adresse fuer das PIN-Register ist genau die pinBaseAddr (s.o.) // Die Adresse fuer das DDR-Register ist die pinBaseAddr + 1 // Die Adresse fuer das PORT-Register ist die pinBaseAddr + 2 #define pinPinAddr(pa) pinBaseAddr(pa) #define pinDdrAddr(pa) (pinBaseAddr(pa) + 1) #define pinPortAddr(pa) (pinBaseAddr(pa) + 2) // Die Bit-Nummer aus einer Pin-Adresse extrahieren ( Bits 0
in „Ports in Array möglich?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
sja1000-A.c
global variable volatile uint8_t active = 0; volatile uint8_t sja_add = 0; txbuf_t txbuf[SJA_NUM]; uint16_t base[] = { BASE_ADDR_0, BASE_ADDR_1 }; // prototype uint8_t _send_message(const can_t *msg); // ----------------------------------------------------------------------------- // Description: Read a
in „Volatile array element oder struct element?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BD137__CDIL-0000.pdf
SYMBOL TEST CONDITION MIN MAX UNIT DC Current Gain *hFEGroup IC=0.15A, VCE2V - 6 40 100 - 10 63 160 - 16 100 250 - 25 160 400 Collector Emitter Saturation Voltage *V CE (sat) IC=0.5A, B =0.05A 0.5 V Base Emitter On Voltage *VBE(on) *C =0.5A, CE=2V 1.0 V *Pulse test:- Pulse width=300ms, duty cycle=2% Continental
in „High Freq Power Amplifier“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
kicad-gdb-error-bt.txt
1.40.1-3.4.x86_64 libpcre1-debuginfo-8.39-11.1.x86_64 libpixman-1-0-debuginfo-0.34.0-4.3.x86_64 libpng16-16-debuginfo-1.6.8-11.3.x86_64 libpulse0-debuginfo-9.0-8.1.x86_64 libpython2_7-1_0-debuginfo-2.7.13-27.9.1.x86_64 libselinux1-debuginfo-2.5-4.17.x86_64 libspeex1-debuginfo-1.2-1.1.x86_64 libssh2-1-debuginfo
in „KiCad 5.0.2 - Absturz beim Footprint-Editor Aufruf“ · Platinen ·
-
PDF
FIL_EMI_PICOR_QPI-5.pdf
available as a lidded or an open-frame SiP Industrial bus supplies (System-in-Package) with Telecom base stations LGA mounting. Evaluation IBA & distributed power boards are available to allow COTS systems for quick in-circuit testing of the QPI-5LZ within an Figure 1 - QPI-5LZ existing system design
in „Sind aktive EMI-Filter eine Alternative?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
Initialisierung und Konfiguration des TIMER3 für den Triggerpin */ void Timer3_TriggerInit(void){ uint16_t PrescalarValue3 = 0; // Variable, in der der Frequenzwert des TIMER3 gespeichert wird TIM_TimeBaseInitTypeDef TIM_TriggerStruct; /* Initialisierungsstruktur des TIMER3 für den Triggerpin des HC-SR04
in „STM32F4 Discovery Board: Aufruf Funktionen in Atollic TrueStudio“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
usart.c
) { case 's': ptr = va_arg(ap,char *); while(*ptr) { usart_write_char(*ptr++); } break; case 'b': Base = 2; goto ConversionLoop; case 'c': //Int to char format_flag = va_arg(ap,int); usart_write_char (format_flag++); break; case 'i': Base = 10; goto ConversionLoop; case 'o': Base = 8; goto ConversionLoop; case 'x': Base = 16; //**************************** ConversionLoop: //**************************** itoa(va_arg(ap,int),str_buffer,Base); int b=0; while (str_buffer[b++] != 0){}; b--; if (b<move) { move -=b; for (tmp
in „µSD Karte Ulrich Radig Code funktioniert nicht mehr“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tbc_de.pdf
...................................................................................................16 2.2.5 Die BREAK-Anweisung...................................................................................................16 2.2.6 Die CONTINUE-Anweisung............................................
in „Paragraphen für alloc(..) festlegen.“ · Softwareentwicklung ·
-
Datei
singen-release.c
s1+s2 must be 16 #define FDIV(a,b,s1,s2) (int32_t)(((a)<<(s1))/((b)<<(s2))) // shift is situation dependent s1+s2 must be 16 // 12 bit DAC in bipolar configuration: // a = signed 0.16 FIXP // a = -0.99999 .... 0x000
-
PDF
1038_1_.pdf
The EM202 is Tibbo's new 100BaseT ethernet-to-serial module Home About Products News Quality Extras Registration HomeContact us The EM202 is Tibbo's new 100BaseT Ethernet-to-serial module Article options Email me The EM202 is a "RJ45
in „[V] 2St alte unbenutzte TIBBO Netzwerkmodule EM202-00“ · Markt ·
-
PDF
isco_3700.pdf
sides of the clamp bottles are used. The capacity for the 3700 Com- until the teeth disengage. pact is 16 pounds. For maximum cooling, fill the base (with bottles in place, as well as the 3700 Figure 3 Tube Coupler Standard’s retaining ring) with water and freeze the base and contents. Insulation - Both
in „Reparatur Motorsteuerung, Probennehmer“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
appl_1a.pdf
V CC and a photocurrent (I P is EV1< EV2< EV3 IP I V EV1 EV RL V OUT EV2 E V3 R VOUT L (A) (B) OP1-16 Figure 16. (A) Fundamental Circuit of Photodiode (without bias) VCC EV1< EV2 < V3 I P VCC I EV V E V1 E V2 RL VOUT E V3 VOUT RL (A) (B) OP1-17 Figure 17. Fundamental Circuit of Photodiode (with bias)
in „Lichtsensor überprüfen aber wie?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
astable.pdf
SECTION 2 MULTIVIBRATORS ASTABLE Tr1 Collector TrlBase Tr2 Collector Tr2 Base Astable. Figure 2.1. Basic Typical component values: Rl = R2 — 15kQ R3 = R4 = 1km = = CI C2 0-047//.F Trl = Tr2 = ZTX300 + V co= 5volts Oscilloscope trace (a)— Trl collector (
in „Astabiler Multivibrator“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Firmware_buglist_2.07.1.pdf
channel mode and 1GSs, but test signal need to be higher to get same error) and applying for example 16MHz square wave the waveform is switching between proper square: and crippled square every second: The best would be to disable (or let user to choose in options) it. 10. Display / Time base scaling strange
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lcd_geruest_fuer_t6963.c
) { case 's': ptr = va_arg(ap,char *); while(*ptr) T6963_Zeichenausgabe(*ptr++); break; case 'b': Base = 2; goto ConversionLoop; case 'c': //Int to char format_flag = va_arg(ap,int); T6963_Zeichenausgabe(format_flag); break; case 'i': Base = 10; goto ConversionLoop; case 'o': Base = 8; goto ConversionLoop; case 'x': Base = 16; //**************************** ConversionLoop: //**************************** itoa(va_arg(ap,int),str_buffer,Base); int b = 0; while (str_buffer[b++] != 0) ; b--; if (b < move) { move -= b; for
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
softwareSerial.cpp
,back--) { c=*front;*front=*back;*back=c; } return str; } char *itoa(int v, char *buff, int radix_base){ static char table[] = "0123456789abcdefghijklmnopqrstuvwxyz"; char *p=buff; unsigned int n = (v < 0 && radix_base == 10)? -v : (unsigned int) v; while(n>=radix_base){ *p++=table[n%radix_base]; n/=radix_base; } *p++=table[n]; if(v < 0 && radix_base == 10) *p++='-'; *p='\0'; return strrev(buff); } void printNumber(int32_t num) { char buf[40]={0}; itoa(num,buf,10); printString(buf); } void printCR() { writeByte
in „STM32 Arduino“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
a4s-catalog.pdf
positioning bosses Surface treatment (Contact portion / Terminal portion) <Socket> 4: Ni plating on base, Au plating on surface (for Ni barrier available) <Header> 4: Ni plating on base, Au plating on surface panasonic-electric-works.net/ac AXE5, 6 PRODUCTTYPES Part number Packing Mated height Number of
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
megaAVR0_Usart.h
].txHead = 0; buffer[NUMBER].txTail = 0; buffer[NUMBER].rxHead = 0; buffer[NUMBER].rxTail = 0; uint16_t *ptr16 = nullptr; uint8_t *ptr = nullptr; if constexpr (NUMBER < 3) { // UARTn_BAUD = BAUDREGISTER(BAUDRATE); ptr16 = reinterpret_cast<uint16_t*> (regBAUD[NUMBER]); // Adresse holen *ptr16 = static_cast
in „AVR C Programmierung unter Linux“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
m_mops386a_p389m115.pdf
0000-00-0). The following table shows the pinout. Header Pin Signal Name Function In/Out 1 TXD+ 10BASE-T Transmit Differential Output 2 TXD- 10BASE-T Transmit Differential Output 3 RXD+ 10BASE-T Receive Differential Input 4 NC Unused 5 NC Unused 6 RXD- 10BASE-T Receive Differential Input 7 LNLED LAN
in „Kontron PC-104 MOPS386A board from Bender Unimet 1000 ST“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
bios.asm
licenses/>. msize: equ 62 ;size of available RAM in k bias: equ (msize-20) * 1024 ccp: equ $3400+bias ;base of cpm ccp bdos: equ ccp+$806 ;base of bdos bios: equ ccp+$1600 ;base of bios cdisk: equ $0004 ;current disk number (0 ... 15) iobyte: equ $0003 ;intel iobyte buff: equ $0080 ;default buffer address
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
serialAccelerometer.ino
HardwareSPI acc(1); #define CS 67 int x, y, xx, yy, z, zz; int i; byte ctrl[2] = {0x20, 0xc7}; int16 xg, yg, zg; int16 x_array[100]; int16 y_array[100]; int16 z_array[100]; float x_avg, y_avg, z_avg; float xyz_theta; uint8 spiTransfer( uint8 data) { SPI1_BASE->DR = data; delay(10); while (!(SPI1_BASE->SR & SPI_SR_RXNE)); return SPI1_BASE->DR; } uint8 spiRead(uint8 reg) { uint8 in; uint8 data = 0x80 | reg; gpio_write_bit(GPIOE, 3, 0); // cs low delay(2); spiTransfer(data); delay(2); in = spiTransfer(0xdead); gpio_write_bit(GPIOE, 3,
in „STM32F4 Discovery Arduino“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
BI8921.INC
ldi r25,0x260 ldi r22,0x01 rcall BI8921_SetReg rjmp BI8921_Delay1ms BI8921_SetExposureTime: push r16 mov r22,r25 mov r16,r24 ldi r24,0x08 ldi r25,0x25 rcall BI8921_SetReg rcall BI8921_Delay1ms ldi r24,0x09 ldi r25,0x25 mov r22,r16 rcall BI8921_SetReg rcall BI8921_Delay1ms pop r16 ret BI8921_ColorConversionMatrix
in „pollin kamera au-85“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
B772_datasheet.pdf
Absolute Maximum Ratings Table 1. Absolute Maximum Rating Symbol Parameter Value Unit V Collector-Base Voltage (I = 0) -60 V CBO E V CEO Collector-Emitter VoltaBe (I = 0) -30 V V EBO Collector-Base VoltagC (I = 0) -5 V C Collector Current -3 A ICM Collector Peak CurrenP (t < 5ms) -6 A B Base Current
in „NPN mit PNP Transistor ersetzen für SHARP Pocket-Interface?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lcd_t6963.c
{ case 's': ptr = va_arg(ap,char *); while(*ptr) T6963cPutChar((uint8_t)*ptr++); break; case 'b': Base = 2; goto ConversionLoop; case 'c': //Int to char format_flag = va_arg(ap,int); T6963cPutChar((uint8_t)format_flag); break; case 'i': Base = 10; goto ConversionLoop; case 'o': Base = 8; goto ConversionLoop; case 'x': Base = 16; //**************************** ConversionLoop: //**************************** itoa(va_arg(ap,int),str_buffer,Base); int b = 0; while (str_buffer[b++] != 0) ; b--; if (b < move) { move -= b; for
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2Gb_1_35V_DDR3L.pdf
2Gb: x4, x8, x16 DDR3L SDRAM Description 1.35V DDR3L SDRAM MT41K512M4 – 64 Meg x 4 x 8 banks MT41K256M8 – 32 Meg x 8 x 8 banks MT41K128M16 – 16 Meg x 16 x 8 banks Description • Automatic self refresh (ASR) • Write leveling
in „DDR3 Datenblatt richtig lesen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Infineon-BFQ790-DS-v02_00-EN.pdf
TestCondition Min. Max. Collector emitter voltage VCE – 6.1 V TA=25°C – 5.1 T =40°C A Collector base voltage VCB – 18 V – Instantaneous total base emitter VBE -2.0 – V DC +RFswing reverse voltage Instantaneous total collectorcurrentCi – 600 mA DC+ RFswing DC collector current IC – 300 mA – DC base
in „HF-Ausgangsleistung - Verständnisfrage“ · HF, Funk und Felder ·
-
PDF
ULN200xA_data.pdf
1 through 7 Darlington base input 5B 5 6B 6 7B 7 1C 10 2C 11 3C 12 4C 13 O Channel 1 through 7 Darlington collector output 5C 14 6C 15 7C 16 COM 8 I/O Common cathode node for flyback diodes (required for inductive loads) E 7 —
in „[V] Darlington Transistor Arrays, npn, Relaistreiber“ · Markt ·
-
PDF
MJE13009-D.PDF
1 Collector−Emitter Voltage VCEO(sus) 400 Vdc 2 3 Collector−Emitter Voltage V CEV 700 Vdc Emitter−Base Voltage V 9 Vdc EBO MARKING DIAGRAM Collector Current− Continuous C 12 Adc − Peak (Note 1) ICM 24 Base Current − Continuous B 6 Adc − Peak (Note 1) IBM 12 MJE13009G Emitter Current − Continuous E 18
in „Elektronischen Halogen-Trafo auf LED-Betrieb umrüsten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
UMW-SMBJ.pdf
- RoHS-compliant, commercial grade Base P/N-M3 - halogen-free, RoHS-compliant, commercial grade Base P/NHE3 - RoHS-compliant and AEC-Q101 qualified Base P/NHM3 - halogen-free, RoHS-compliant, and PRIMARY CHARACTERISTICS AEC-Q101 qualified
in „TVS Diode gefälscht?“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
startup_stm32f0xx.S
4 #ifdef __HEAP_SIZE .equ Heap_Size, __HEAP_SIZE #else .equ Heap_Size, 0x400 #endif .globl __HeapBase .globl __HeapLimit __HeapBase: .if Heap_Size .space Heap_Size .endif .size __HeapBase, . - __HeapBase __HeapLimit: .size __HeapLimit, . - __HeapLimit .section .isr_vector .align 4 .globl __isr_vector
in „[ARM] em::blocks StartupCode und Linker Script“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
NTC.html
:0 0 0 1px rgba(16, 22, 26, 0.15), 0 0 0 rgba(16, 22, 26, 0), 0 0 0 rgba(16, 22, 26, 0); box-shadow:0 0 0 1px rgba(16, 22, 26, 0.15), 0 0 0 rgba(16, 22, 26, 0), 0 0 0 rgba(16, 22, 26, 0); } .bp3-elevation-0.bp3-dark, .
in „NTC auto kalibrierung - Matheformel“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
readme.txt
--------------+ | | +------------------------------------------------------------+ | U +5V | --+ | 16 | TxD | | | 9 18 | | S D+ | ----------| 6 2 |--------|----|--| 3 RxD Vdd PD1 | | B D- | ----------| 5 CH340G | RxD | | | | | GND | --+ | 3 |--------|----|--| 2 TxD PA1 5 |---+ +--------+ | +---| 4 |
-
PDF
1MA98_4E_dB_or_not_dB.pdf
power gains of 12 and 16, respectively, we obtain a total gain of 12 times 16 = 192 (which you can hopefully calculate in your head – do you?). In logarithmic terms, the two amplifiers have gains of 10.8 dB and 12 dB, respectively
in „Wie stehen dBm und Volt zueinander?“ · HF, Funk und Felder ·
-
Datei
mphexeditorreg.pas
', TBytesPerUnitProperty); RegisterPropertyEditor(TypeInfo(Byte), TCustomMPHexEditor, 'RulerNumberBase', TRulerNumberBaseProperty); {$IFDEF DELPHI6UP} RegisterPropertiesInCategory(sVisualCategoryName, TCustomMPHexEditor, ['DrawGridLines', 'Colors', 'CaretStyle', 'BytesPerRow', 'FocusFrame', 'BytesPerColumn
-
Datei
dmesg.txt
-0xfebfffff [ 0.368623] pci 0000:00:1e.0: PREFETCH window: disabled [ 0.368634] alloc irq_desc for 16 on node -1 [ 0.368636] alloc kstat_irqs on node -1 [ 0.368641] pci 0000:00:01.0: PCI INT A -> GSI 16 (level, low) -> IRQ 16 [ 0.368644] pci 0000:00:01.0: setting latency timer to 64 [ 0.368651] pci 0000
in „Sporadische Gnome-Abbrüche auf Ubuntu 10.04“ · PC Hard- und Software ·
-
PDF
Schematic.pdf
A FB1 R2 R1 PIR0 P PIR0 PI11 GND GND 20k 80.6k R6 VPUP1 PI62 PI61 100k CO6 PG1 PC01 PC62 P0 P1 U1 BAS16GWJ CO CO5 SC2440A D3 P0 PI505 PI50FPI50 PI5PU05 FB1 PG1 PIU0 PID302 PID301 C1 CO7 COMP1 BST1 SW1 PC P0 22µF 13.3k 470pF CO2 PI70 PI70 PU03 SS1 PC 100nF SW1 PIU0 PL11 PIL0 OUT1 22nF PU14 SYNC D 5V
in „Dual Step-Down Spannungsregler Semtech SC2440A Eval-PCB“ · Markt ·
-
Datei
dmesgbeautified.txt
Sun Feb 27 12:16:13 2011 ] MTRR variable ranges enabled: [ Sun Feb 27 12:16:13 2011 ] 0 base 000000000 mask F80000000 write-back [ Sun Feb 27 12:16:13 2011 ] 1 disabled [ Sun Feb 27 12:16:13 2011 ] 2 disabled [ Sun Feb
in „Sporadische Gnome-Abbrüche auf Ubuntu 10.04“ · PC Hard- und Software ·
-
PDF
mmbt4401-d.pdf
M M V Collector-Emitter Breakdown I = 1.0 mA, I = 0 40 V B (BR)CEO Voltage(5) C B T 4 V Collector-Base Breakdown I = 0.1 mA, I = 0 60 V 0 (BR)CBO Voltage C E 1 — V(BR)EBO Emitter-Base Breakdown Voltage IE= 0.1 mA, C = 0 6.0 V BL Base Cut-Off Current VCE = 35 V, EB = 0.4 V 0.1 μA N N ICEX Collector Cut-Off
in „moderner Ersatztyp für BC550 Audio low noise gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HN_PDTC114E_SER.pdf
Table 3. Pinning Pin Description Simplified outline Graphic symbol SOT23; SOT323; SOT416 1 input (base) 2 GND (emitter) 3 3 R1 3 output (collector) 1 R2 1 2 2 006aaa144 sym007 SOT883 1 input (base) 1 2 GND (emitter) 3 3 2 1 R1 3 output (collector) Transparent R2 top view 2 sym007 3. Ordering information
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MSP430F5438IPZ.pdf
REGISTER OFFSET CRC data input CRC16DI 00h CRC result CRC16INIRES 04h Table 16. RAM Control Registers (Base Address: 0158h) REGISTER DESCRIPTION REGISTER OFFSET RAM control 0 RCCTL0 00h Table 17. Watchdog Registers (Base Address: 015Ch)
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
555an.pdf
the basic concept of the timer let’s first examine the When Q 10 and Q 11 turn on, they provide a base drive for Q15 timer in block form as in Figure 1. turning it on. Q and Q form a bistable flip-flop. When Q is 16 17 15 The resistive divider network is used to set the comparator levels. saturated,
in „Nachbau NE555 ->interner Aufbau“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
555-applikations.pdf
the basic concept of the timer let’s first examine the When Q 10 and Q 11 turn on, they provide a base drive for Q15 timer in block form as in Figure 1. turning it on. Q and Q form a bistable flip-flop. When Q is 16 17 15 The resistive divider network is used to set the comparator levels. saturated,
in „NE555 Einfachen Blinker bauen“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
eagle.app.v6.ld
= 0x40000000); /* Various memory-map dependent cache attribute settings: */ _memmap_cacheattr_wb_base = 0x00000110; _memmap_cacheattr_wt_base = 0x00000110; _memmap_cacheattr_bp_base = 0x00000220; _memmap_cacheattr_unused_mask = 0xFFFFF00F; _memmap_cacheattr_wb_trapnull = 0x2222211F; _memmap_cacheattr_wba_trapnull
in „ESP8266 C++11 features wie lambdas“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FH23.pdf
17S-0.3SHW(51) 586-1300-7-51 17 17.6 14.2 14.8 15.43 FH23-21S-0.3SHW(51) 586-1314-1-51 21 18.8 15.4 16.0 16.63 FH23-23S-0.3SHW(51) 586-1324-5-51 23 19.4 16.0 16.6 17.23 FH23-25S-0.3SHW(51) 586-1322-0-51 25 10.0 16.6 17.2 17.83 FH23-27S-0.3SHW(51) 586-1308-9-51 27 10.6 17.2 17.8 18.43 FH23-31S-0.3SHW(51
-
PDF
FH23.pdf
17S-0.3SHW(51) 586-1300-7-51 17 17.6 14.2 14.8 15.43 FH23-21S-0.3SHW(51) 586-1314-1-51 21 18.8 15.4 16.0 16.63 FH23-23S-0.3SHW(51) 586-1324-5-51 23 19.4 16.0 16.6 17.23 FH23-25S-0.3SHW(51) 586-1322-0-51 25 10.0 16.6 17.2 17.83 FH23-27S-0.3SHW(51) 586-1308-9-51 27 10.6 17.2 17.8 18.43 FH23-31S-0.3SHW(51
in „OLED Sammelbestellung“ · Markt ·
-
PDF
OLED-Stecker_0.3pitch.pdf
17S-0.3SHW(51) 586-1300-7-51 17 17.6 14.2 14.8 15.43 FH23-21S-0.3SHW(51) 586-1314-1-51 21 18.8 15.4 16.0 16.63 FH23-23S-0.3SHW(51) 586-1324-5-51 23 19.4 16.0 16.6 17.23 FH23-25S-0.3SHW(51) 586-1322-0-51 25 10.0 16.6 17.2 17.83 FH23-27S-0.3SHW(51) 586-1308-9-51 27 10.6 17.2 17.8 18.43 FH23-31S-0.3SHW(51
in „OLED Sammelbestellung“ · Markt ·
-
Datei
cDCF77.h
newtimedate.second == 59 ) { //*************************************** _synchronize = 0xFF; // TimeBase::sync_sec(); // reload timer0 //******************************************************************* cClock<Display,TimeBase>::_timedate.second = 0; cClock<Display,TimeBase>::_timedate.minute = _newtimedate.minute; cClock<Display,TimeBase>::_timedate.hour = _newtimedate.hour; cClock<Display,TimeBase>::_timedate.wday = _newtimedate.wday; cClock<Display,TimeBase>::_timedate.day = _newtimedate.day; cClock<Display,TimeBase>::_timedate.month
in „Frage zu Interrupts in C++“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
st96_messinstrument_e.html
scaleGroup.appendChild(text); }); // Paddelförmiger Sockel hinter dem Zeiger (rotierte, feste Kite-Form) const needleBaseGroup = document.getElementById('needleBaseGroup'); // Lokale Form: Spitze zeigt entlang +x, symmetrisch um die x-Achse const baseShape = "M -30,0 Q 0,-24 30,0 Q 0,24 -30,0 Z"; document.getElementById('needleBase').setAttribute('d', baseShape); function drawBase(value) { const angle = valueToAngle(value); // SVG rotate ist im Uhrzeigersinn (y-down) -> -angle entspricht unserer // mathematischen (y-up) Winkelkonvention
in „Suche Grafiker-Hilfe: analoge Messinstrumente nachbilden“ · Softwareentwicklung ·