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y3urefmanual_g.pdf
. 12 8 PROGRAMMIERUNG DER TEST FIRMWARE........................................................... 13 8.1 PROGRAMMIERUNG ............................................................................................................ 13 8.2 H ARDWARE T EST.................................................
in „[V] Yampp3-USB“ · Markt ·
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ecp_ec.pdf
147 195 288 Differential Pair Use29 46 56 29 46 72 80 46 72 97 112 72 97 144 I/O Configu- Dedicated 13 13 13 13 13 13 13 13 13 13 13 13 13 13 ration Muxed 48 48 48 48 48 48 48 48 48 48 48 56 56 56 TAP 5 5 5 5 5 5 5 5 5 5 5 5 5 5 Dedicated (total without supplies) 80 110 160 80 110 160 208 110 160 208
in „Verwendung der Pins eines Lattice LFECP6 mit Config-Dual-Funktion als I/Os“ · FPGA, VHDL & Co. ·
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PDF
ecp_ec.pdf
147 195 288 Differential Pair Use29 46 56 29 46 72 80 46 72 97 112 72 97 144 I/O Configu- Dedicated 13 13 13 13 13 13 13 13 13 13 13 13 13 13 ration Muxed 48 48 48 48 48 48 48 48 48 48 48 56 56 56 TAP 5 5 5 5 5 5 5 5 5 5 5 5 5 5 Dedicated (total without supplies) 80 110 160 80 110 160 208 110 160 208
in „SPI-Slave im FPGA, Signal-Delay an MISO minimieren“ · FPGA, VHDL & Co. ·
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68332_test.pdf
5 4 3 2 1 D[0..15] D8F 74HC14 A[1..19] 13 12 V13 1N4148 1 CS3 V12 1N4148 V9 1N4148 D VCC D VCC R1 R7 R8 C7 1 9 5 7 7 1 2 4 6 9 0 2 3 4 1k 1k 1k 100n D5 1 1 2 3 4 6 7 8 8 8 1 1 1 1 D1 D6 D0 139 D0 D D D D D D D D D D D D D D A0 115 KM684000 KM684000
in „Motorola MC68332 und BD32“ · Mikrocontroller und Digitale Elektronik ·
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P26-27-Power-thermistor.pdf
5.0 0.18 55 26 - 50 to 200 2700 1880 550 470 13.0 5D2-13 5.0 2900 5.0 0.19 55 27 - 50 to 200 2700 1880 550 470 13.0 8D2-13 8.0 3000 4.0 0.27 25 25 - 50 to 200 2880 2000 590 500 14.0 10D2-13 10.0 3050 4.0 0.32 55 29 - 50 to 200 2880 2000 590 500 14.0 12D2-13 12.0 3000 4.0 0.41 55 37 - 50 to 200 4830 3360 990 840 24.0 15D2-13 15.0 3050 3.0 0.48 55 25 - 50 to 200 4830 3360 990 840 24.0 16D2-13 16.0 3050 3.0 0.51 55 26 - 50 to 200 4830 3360 990 840 24.0 2D2
in „Auf Fehlersuche bei Nichicon-Netzteil (aus RICOH SP C250SF)“ · Analoge Elektronik und Schaltungstechnik ·
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STM32F407VGT6-cjmcu.pdf
P0J1027 P0J1028 PB7/IIC1_SD7/IIC10SDA 0 0 0 0 P0U207PA12 PE12 29 P0J10297 28 P0J1030 PC5 PC6 PC7 PC8 PA13/JTMS- WDIO 72S0SWDIO P0U2072 P0U2444 PE13PE13 GND 29 30 3.3V 1 1 0 0 0 0 N0PA14/JTCK0SWCLK PA13 PE13 P0U2045 N0PE14 31 P0J1031 P0J1032 O O 000nF 100nF 000nF 100nF 0 0 PA14/JTCK-SWCLK 76 P0U207PA14 PE14
in „Schaltplan/LED-Belegung CJMCU-407 Board mit STM32F407VG“ · Mikrocontroller und Digitale Elektronik ·
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MINI_STM32F407VGT6.pdf
P0J1027 P0J1028 PB7/IIC1_SD7/IIC10SDA 0 0 0 0 P0U207PA12 PE12 29 P0J10297 28 P0J1030 PC5 PC6 PC7 PC8 PA13/JTMS- WDIO 72S0SWDIO P0U2072 P0U2444 PE13PE13 GND 29 30 3.3V 1 1 0 0 0 0 N0PA14/JTCK0SWCLK PA13 PE13 P0U2045 N0PE14 31 P0J1031 P0J1032 O O 000nF 100nF 000nF 100nF 0 0 PA14/JTCK-SWCLK 76 P0U207PA14 PE14
in „STM32F407VGT6 China Board not working Tips?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u2270b.pdf
theICmustbesolderedfreefromdistortion.Otherwise, the oscillator frequency may be out of bounds. TELEFUNKEN Semiconductors 11 (13) Rev.A3, 13-Dec-96 U2270B Dimensions in mm Package: SO16 94 8875 12 (13) TELEFUNKEN Semiconductors Rev.A3, 13-Dec-96 U2270B Ozone Depleting Substances Policy Statement It is the policy of TEMIC TELEFUNKEN
in „Pollin RFID Entwicklungsboard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
daisy1.3.1.c
0b10000010; MMC_TRANSISTOR=1;//for p-channel, this would be off xreset=0;//hard reset delay_ms(50); putc(13);putc(10); putc(13);putc(10); king_of_france(0); putc(13);putc(10); putc(13);putc(10); printf("Firmware V1.3.1 CC 2001-2008 Raphael Abrams, www.teuthis.com"); putc(13);putc(10); putc(13);putc(10); resetvs1011
in „@ SD & MMC Spezialisten“ · Mikrocontroller und Digitale Elektronik ·
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memcpy_log_cl19.pdf
20.19 37.91 59.33 80.27 100.23 102.49 56.2 57.3 58.16 38.87 33.8 34.38 34.86 23.02 21.51 16.41 14.32 13.27 13.36 13.36 13.06 rep-movsb-cl 2.52 4.73 9.26 17.31 30.43 50.13 70.3 91.58 108.93 56.93 58.84 59.44 39.38 34.42 34.84 34.87 23.89 11.59 9.52 9.57 9.7 9.74 9.8 10.14 AgnerFog 2.55 5.7 10.68 20.21 35.17
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MKC1862.pdf
400 VDC/200 VAC W H L PCM W H L PCM W H L PCM W H L PCM 0.01µF - 310 — — — — — — — — — — — — 4.0 9.0 13.0 10 0.015µF - 315 — — — — — — — — — — — — 4.0 9.0 13.0 10 0.022µF - 322 — — — — — — — 4.0 9.0 13.0 10 4.0 9.0 13.0 10 0.033µF - 333 — — — — — — — — 4.0 9.0 13.0 10 5.5 10.5 13.0 10 0.047µF - 347 — — — — — — — — 4.0 9.0 13.0 10 5.5 10.5 18.0 15 0.068µF - 368 — — — — 4.0 9.0 13.0 10 5.5 10.5 13.0 10 5.5 10.5 18.0 15 0.1µF - 410 — — — — 4.0 9.0 13.0 10 5.5 10.5 18.0 15 6.5 12.5 18.0 15 0.15µF - 415 — — — — 5.5 10.5 13.0
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ARB_PCB16_V2.pdf
A10 A10 R31 VCC C_Small 1U1E D4 D4 6 A11 A11 12 PB2 6 IRQB IRQ 23 A11 47 D3 30 D3 W A12 22 A12 PB2 13 W 38 A11 2 VCC LED7 C 31 23 PB3 PB3 RS0 A0 A12 A12 GND V GND D2 32 D2 A13 24 A13 PB4 14 PB4 RS1 37 A1 A13 26 A13 R40 LM339 D1 D1 A14 A14 15 36 27 R20 4k7 74F02 33 D0 A15 25 PB5 PB5 RS2 A2 A14 A14 0 1
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ARB_PCB16_V2.pdf
A10 A10 R31 VCC C_Small 1U1E D4 D4 6 A11 A11 12 PB2 6 IRQB IRQ 23 A11 47 D3 30 D3 W A12 22 A12 PB2 13 W 38 A11 2 VCC LED7 C 31 23 PB3 PB3 RS0 A0 A12 A12 GND V GND D2 32 D2 A13 24 A13 PB4 14 PB4 RS1 37 A1 A13 26 A13 R40 LM339 D1 D1 A14 A14 15 36 27 R20 4k7 74F02 33 D0 A15 25 PB5 PB5 RS2 A2 A14 A14 0 1
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CZX.pdf
UL 1283 UL 1414 GB/T 14472 C(μF) (mm) (mm) (mm) (mm) (mm) 275 V AC 275 V AC 250 V AC 275 V AC 0,01 13 9 4 10 0,6 • • • • 0,015 13 9 4 10 0,6 • • • • 0,022 13 9 4 10 0,6 • • • • 0,033 13 9 4 10 0,6 • • • 0,033 13 10,5 5 10 0,6 • • • • 0,047 13 10,5 5 10 0,6 • • • 0,047 13 11,5 6 10 0,6 • • • • 0,068 13
in „Maschinensteuerung Widerstand verbrannt“ · Analoge Elektronik und Schaltungstechnik ·
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u2010b.pdf
V ≥ V V 7.0 7.4 7.8 V 6-8 T70 lim Overload Output, V , V = Open or V = V , see Figure 7-10 on page 13 T100 9 9 10 Leakage current V6-8≤VT25, 13= (V111)V 13 Ilkg 0.5 µA Saturation voltages V6-8≥ VT100 13= 10 µA 11, 12, 13 Vsat 0.1 V Output current, maximum load V9= V 8, 13 I 1 mA see Figure 7-10 on page 13 13 Leakage current V6≤V T100 13 Ilkg 4 µA Output impedance Open collector, 6≥ V T100 13 R 0 2 4 8 kΩ Saturation voltage V ≥ V , I = 10 µA 13 V 100 mV 6-8 T100 13 13-8 9 4766B–INDCO–10/05 7. Diagrams
in „U2010B Softstart Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
leuchtturm.asm
: 85 85 ldd r24, Z+13 ; 0x0d 12c: 06 06 cpc r0, r22 12e: 87 87 std Z+15, r24 ; 0x0f 130: 10 10 cpse r1, r0 132: 11 91 ld r17, Z+ 134: 12 12 cpse r1, r18 136: 13 13 cpse r17, r19 138: 14 14 cp r1, r4 13a: 15 15 cp r17, r5
in „Schaltung mit ATtiny13A aus Solar-Leuchtturm weiter gedacht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr_sim_deviceu.pas
PCINT1'+ { 9 } '*PA0 ADC0 PCINT0'+ {10 } '*GND'+ {11 } '*VCC'+ {12 } '*PC5 CLKI TPICLK PCINT17'+ {13 } '*PC4 MOSI SDA TPIDATA PCINT1'+ {14 } '*PC3 RESET PCINT15'+ {15 } '*PC2 INT0 CLKO MISO PCINT14'+ {16 } '*PC1 SCK SCL ICP1 T1 PCINT13'+ {17 } '*PC0 OC0A SS PCINT12'+ {18 } '*PB3 ADC11 PCINT11'+ {19
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at91rm9200-ek.pdf
/TCLK D10 P12 D10 PD9 B6 U12 D11 PD10 C6 PD9/PCK2/TPS0 D11 T12 D12 PD11 A5 PD10/PCK3/TPS1 D12 R12 D13 PD12 B5 PD11/TPS2 D13 U13 D14 PD13 B2 PD12/TPK0 D14 P13 D15 PD14 PD13/TPK1 D15 D16 C3 PD14/TPK2 PC16/D16 U14 PD15 C2 PD15/TD0/TPK3 PC17/D17 R13 D17 PD16 F1 PD16/TD1/TPK4 PC18/D18 U15 D18 PD17 G2 PD17
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103xb.h
/*!< Filter bit 12 */ #define CAN_F13R1_FB13_Pos (13U) #define CAN_F13R1_FB13_Msk (0x1UL << CAN_F13R1_FB13_Pos) /*!< 0x00002000 */ #define CAN_F13R1_FB13 CAN_F13R1_FB13_Msk /*!< Filter bit 13 */ #define CAN_F13R1_FB14_Pos (14U) #define CAN_F13R1
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·
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Datei
stm32f103x6.h
/*!< Filter bit 12 */ #define CAN_F13R1_FB13_Pos (13U) #define CAN_F13R1_FB13_Msk (0x1UL << CAN_F13R1_FB13_Pos) /*!< 0x00002000 */ #define CAN_F13R1_FB13 CAN_F13R1_FB13_Msk /*!< Filter bit 13 */ #define CAN_F13R1_FB14_Pos (14U) #define CAN_F13R1
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·
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Datei
SP601_RevC_annotated_master_ucf_8-28-09.ucf
FLASH_A7" LOC = "H15"; ## 22 on U10 #NET "FLASH_A8" LOC = "H14"; ## 20 on U10 #NET "FLASH_A9" LOC = "H13"; ## 19 on U10 #NET "FLASH_A10" LOC = "F18"; ## 18 on U10 #NET "FLASH_A11" LOC = "F17"; ## 17 on U10 #NET "FLASH_A12" LOC = "K13"; ## 13 on U10 #NET "FLASH_A13" LOC = "K12"; ## 12 on U10 #NET "FLASH_A14
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U2010B-1.PDF
sat 0.5 0.75 1.0 V V6-8w V T70 V lim 7.0 7.4 7.8 Overload output, V T100 , V9= open or V 9 V ,10ig. 13 Leakage current V6-8v V T25 V = (V +1)V Pin 13 I 0.5 mA 13 11 lkg Saturation voltages V6-8w V T100, 13 = 10 mA Pins 11-13 V sat 0.1 V Output current, max. load V9= V ,8fig. 13 Pin 13 I13 1 mA Leakage current V6 v V T100 Pin 13 Ilkg 4 mA Output impedance Open collector V6 w V T100 Pin 13 R 0 2 4 8 kW Saturation voltage V V , 6-8w T100 13 = 10 mA Pin 13 V 13–8 100 mV 120 250 100 Pulse Output 33 nF 6.8 nF VGT=–1.2V 200 10 nF
in „Wie funktioniert die Drehzahlregelung beim Allstrommotor“ · Analoge Elektronik und Schaltungstechnik ·
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mlaUSBCsz.pdf
FB14MC8 CH6 47 R141 11 12 21 7 USBD6 7 7 D11 A12 CH18 16 102 D5 D13 74 47 A13 FB2MC14 FB14MC6 CH7 47 R142 13 14 9 8 USBD7 8 8 47 R117 DD7 D12 A13 CH1 17 101 D6 22 D14 75 48 A14 FB2MC15 FB14MC5 CH8 47 R143 15 16 D13 A14 CH17 19 100 D7 10 D15 78 49 A15 FB2MC17 FB14MC3
in „[S] Leute die einen Logic Analyzer (MiniLA) bauen wollen“ · Markt ·
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PDF
Taiwan-Semiconductor-SMCJ.pdf
20 109 14.4 SMCJ9.0 GDU 10 12.2 1 9 10 93 16.9 SMCJ9.0A GDV 10 11.1 1 9 10 102 15.4 SMCJ10 GDW 11.1 13.6 1 10 5 83 18.8 SMCJ10A GDX 11.1 12.3 1 10 5 92 17.0 SMCJ11 GDY 12.2 14.9 1 11 1 78 20.1 SMCJ11A GDZ 12.2 13.5 1 11 1 86 18.2 SMCJ12 GED 13.3 16.3 1 12 1 71 22.0 SMCJ12A GEE 13.3 14.7 1 12 1 79 19.9 SMCJ13 GEF 14.4 17.6 1 13 1 66 23.8 SMCJ13A GEG 14.4 15.9 1 13 1 73 21.5 SMCJ14 GEH 15.6 19.1 1 14 1 61 25.8 SMCJ14A GEK 15.6 17.2 1 14 1 67 23.2 SMCJ15 GEL 16.7 20.4 1 15 1 58 26.9 SMCJ15A GEM 16.7 18.5 1
in „Bezeichnung Diode“ · Analoge Elektronik und Schaltungstechnik ·
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zusatzplatine.pdf
9 14 6 CH5 47 R140 9 10 Y5 A5 12 11 13 Y6 A6 7 CH6 47 R141 11 12 14 13 12 Y7 A7 8 CH7 47 R142 13 14 16 15 11 Y8 A8 9 CH8 47 R143 15 16 OE1 1 GND OE2 19 HDR16 CH9 2 1 K3A 18 Y1 A1 2 541 47 R144 1 HDR16 2 4 3 17 3 U3 CH10 47 R145 3 4 Y2 A2 K3 6 5 16 4 CH11 47 R146 5 6 Y3 A3 8 7 15 5 CH12 47 R147 7 8 Y4 A4 10 9 14 6 CH13 47 R148 9 10 Y5 A5 12 11 13 7 CH14 47 R149 11 12 Y6 A6 14 13 12 8 CH15 47 R150 13 14 Y7 A7 16 15 11 9 CH16 47 R151 15 16 Y8 A8 1 OE1 19 GND OE2 HDR16 2 1 K4A 18 Y1 A1 2 541 CH17 47 R152 1 HDR16 2 U4
in „[S] Leute die einen Logic Analyzer (MiniLA) bauen wollen“ · Markt ·
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PDF
16ch_schematic.pdf
OUT4 4 15 relay3 D IN7 7 8 IN8 G2 1 U18 4 OUT5 5 14 relay4 R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 D IN9 9 10 IN10 OUT6 6 13 relay5 IN11 11 12 IN12 IN2 2 3 OUT2 OUT7 7 12 relay6 IN13 13 14 IN14 5V OUT8 8 11 relay7 15 16 U15 IN15 17 18 IN16 G3 1 4 9 GND 10 +12V 2 3 L16 GND 19 20 GND 0 L11
in „16-Kanal Relais mit Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16Relais_schematic.pdf
OUT4 4 15 relay3 D IN7 7 8 IN8 G2 1 U18 4 OUT5 5 14 relay4 R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 D IN9 9 10 IN10 OUT6 6 13 relay5 IN11 11 12 IN12 IN2 2 3 OUT2 OUT7 7 12 relay6 IN13 13 14 IN14 5V OUT8 8 11 relay7 15 16 U15 IN15 17 18 IN16 G3 1 4 9 GND 10 +12V 2 3 L16 GND 19 20 GND 0 L11
in „16 Kanal Relais mit Arduino Nano ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16_channel_relay_board.pdf
OUT4 4 15 relay3 D IN7 7 8 IN8 G2 1 U18 4 OUT5 5 14 relay4 R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 D IN9 9 10 IN10 OUT6 6 13 relay5 IN11 11 12 IN12 IN2 2 3 OUT2 OUT7 7 12 relay6 IN13 13 14 IN14 5V OUT8 8 11 relay7 15 16 U15 IN15 17 18 IN16 G3 1 4 9 GND 10 +12V 2 3 L16 GND 19 20 GND 0 L11
in „Kombination Ethernet Controller + 16CH Relay Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ohne_cf.txt
INT B disabled [ 0.225016] pci 0000:00:13.2: PCI INT C -> GSI 18 (level, low) -> IRQ 18 [ 0.225141] pci 0000:00:13.2: PCI INT C disabled [ 0.225252] pci 0000:00:13.3: PCI INT B -> GSI 17 (level, low) -> IRQ 17 [ 0.225378] pci 0000:00:13.3: PCI
in „Thin client über speedport w701v einrichten“ · PC Hard- und Software ·
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Datei
with_cf.txt
INT B disabled [ 0.225061] pci 0000:00:13.2: PCI INT C -> GSI 18 (level, low) -> IRQ 18 [ 0.225187] pci 0000:00:13.2: PCI INT C disabled [ 0.225298] pci 0000:00:13.3: PCI INT B -> GSI 17 (level, low) -> IRQ 17 [ 0.225423] pci 0000:00:13.3: PCI
in „Thin client über speedport w701v einrichten“ · PC Hard- und Software ·
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Datei
nrf24_5.txt
10:09:43.898] 75 11 68:43:51:70:01 15:70:51:43:68:70:53:54:53:81:BA [2022-03-12 10:09:50.773] 75 11 13:55:23:74:01 15:74:23:55:13:70:53:54:53:81:A1 [2022-03-12 10:09:50.779] 75 11 13:55:23:74:01 15:74:23:55:13:70:53:54:53:81:A1 [2022-03-12 10:09:50.789] 75 11 13:55:23:74:01 15:74:23:55:13:70:53:54:53:
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MB997.pdf
PA11 PE11 NLPE1 PA9 PA9 PD5 PD5 PA12 PA12 PE12 PE12 IO Peripherals.SchDoc PA10 PA10 PC0 PC0 PA131 PA13 PE13 PE131 PD12D12 PD12 PA11 PA11 PA141 PA14 PE14 PE141 PD13D13 PD13 PA0 PA0A0 PA12 PA151 PE151 PD14D14 NRSTST PA12 PA15 PE15 PD15D15 PD14 NRST PB0B0 PD0D0 PD15 NLPB PB0 PD0 NLPD NLPE NLPA5 PB1 PB1 PD1
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SEW_Motorauslegung.pdf
15, 19 Effektivdrehmoment 35 11 Bemessungsleistung, Erhöhung 15 Eigenbelüftung 30 Bemessungspunkt 13 Eigenkühlung 31 12 Bemessungsspannung 11, 13 Ein-Phasenanlauf 18 Bemessungsspannungsbereich 13 Einschaltdauer 14 Bemessungsstrom 11 Einschaltdauer ED 19 Betriebsart 11, 14 Einschaltdauer, relative 15
in „Benötigtes Drehmoment eines Steppermotors berechnen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SP601_RevC_annotated_master_ucf_8-28-09.ucf
on J13 (thru series R103 200 ohm) #NET "GPIO_HDR4" LOC = "F15"; ## 2 on J13 (thru series R99 200 ohm) #NET "GPIO_HDR5" LOC = "B4"; ## 4 on J13 (thru series R98 200 ohm) #NET "GPIO_HDR6" LOC = "F13"; ## 6 on J13 (thru series R97 200 ohm) #NET "GPIO_HDR7" LOC = "P12"; ## 8 on J13 (thru series R96 200 ohm) ### NET "GPIO_LED_0" LOC = "E13"; ## 2 on DS11 LED #NET "GPIO_LED_1" LOC = "C14"; ## 2 on DS12 LED #NET "
in „Ethernet GMII“ · FPGA, VHDL & Co. ·
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PDF
Parallel_Widerstaende_E12.pdf
9,88 9,9 9,92 9,93 9,94 9,95 9,96 9,97 15 6,0 7,5 8,18 8,92 9,64 10,31 10,83 11,37 11,83 12,29 12,68 13,04 13,33 13,64 13,85 14,04 14,21 14,35 14,44 14,54 14,61 14,68 14,73 14,78 14,81 14,85 14,88 14,9 14,92 14,93 18 6,43 8,18 9 9,9 10,8 11,65 12,32 13,02 13,62 14,23 14,76 15,25 15,65 16,07 16,36 16,64
in „Excel Zellformatierung für Widerstände Kilo, Meg usw“ · PC Hard- und Software ·
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PDF
ASTRA13006d__2007V3.02_.pdf
UVEK Bundesamt für Strassen ASTRA Richtlinie Ausgabe 2007 V3.02 Funksysteme in Strassentunneln ASTRA 13 006 A S T R A O F R O U U S T R A U V I A S ASTRA 13 006 Funksysteme in Strassentunneln Impressum Autore(n)/Arbeitsgruppe Berner Marcel (ASTRA, Vorsitz) Allemann Martin (ASTRA) Hofer Andreas (ASTRA)
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Datei
spicemodel.txt
1000K RI2 9 7 1000K CI1 7 8 5.5p CI2 9 7 5.5p RO1 8 10 100K R02 9 11 100K RsourceI 10 12 1.5 RsinkI 11 13 1.5 D3 12 8 DMOD D4 9 13 DMOD LCC VCC 8 2n LEE VEE 9 2n Lsource 12 SOURCE 1n Lsink 13 SINK 1n G1 8 10 VALUE={1.39e-11*exp((V(7)-V(10))/.0032)*.5*(1+tanh(10*MAX(V(8)-V(7),0)))} G2 11 9 VALUE={1.39e-11
in „LTSpice - hierarchische Blöcke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
eGC.pdf
PIAA10D12 D11 A7IC20CIO_L6P_0 D11 PJ5C50I/O10 gpmc_d12 PIIC10AA10 PIIC20AIO_L6N_0 PIIC50I/O11 gpmc_d13 PIIC10Y913 D12 PIIC20DIO_L7P_0 D12 PIIC50I/O12 gpmc_d14 PIIC10V10 D13 PIIC20CIO_L7N_0 D13 PIIC50I/O13 1V8 PIIC10V915 D14 PIIC20B8 D14 PIIC50H7 gpmc_d15 D15 A8 IO_L33P_0 D15 G7 I/O14 AM3505-ZER A1 PC9C20AIO_L33N
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
iPhone_4_schem.pdf
6.8V-100PF 5% 5% 5% 1 1/3MF 1/3MF 1/3MF 01005 2 010052 010052 B B SIM CARD SLOT AND ESD SIM_VCC U15 13 17 NUP41SOT953G 1 1 6 C187 17 13IMCRD_RST 1 5 SIMCRD_IO 13 10%UF 17 VCC VPP 2 X5RV 2 201 J2 17 13IMCRD_CLK 3 4 SIM_VCC 13 SIM-CF-ST-SM1 17 2 7 A 17 13SIMCRD_RST RESET I/O SIMCRD_IO 13 17 SYNC_MASTER=
in „iphone 4 smd abgebrochen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
20120104.htm
[[13,10,28],24.9,24.9,25.5,25.0], [[13,11,58],24.8,24.8,25.5,24.5], [[13,13,28],24.9,24.8,25.5,24.5], [[13,14,58],24.9,24.8,25.5,24.5], [[13,16,28],24.9,24.8,25.5,24.5], [[13,17,58],24.9,24.9,25.5,24.5], [[13,19,28],24.9,24.9,25.5,25.0], [[13,20,58],24.9,24.8,25.5,24.5], [[13,22,28],24.9,24.9,25.5,25.0], [[13,23,58],24.9,24.9,25.5,25.0], [[13,25,28],24.9,24.8,25.5,25.0], [[13,26,58],24.9,24.9,25.5,25.0],
in „FTP Client (Dateien auf Webspace hochladen)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F103C8T6-Schematic-Diagram.pdf
PB10 USB_D- PA11 32 PA10 PB10 22 PB11 J_PWR PA11 PB11 USB_D+ PA12 33 PA12 PB12 25 PB12 JTMS PA13 34 PA13/JTMS/SWDIO PB13 26 PB13 F2 VCC5 U2 VCC3_3 B JTCK PA14 37 PA14/JTCK/SWCLK PB14 27 PB14 F1 1 闭 闭 6 Vin Vout B JTDI PA15 38 PA15/JTDI PB15 28 PB15 Fuse 2 开关 5 C1 C2 C5 3 开 开 4 Fuse 106 C3 GND 106
in „Löttemperatur STM32“ · Mikrocontroller und Digitale Elektronik ·
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GH025A_A3__-_090622.pdf
EQUIVALENT Page REV. 1 Page 7 INVERTER SPECIFICATION R&D GREEN C&C TECH (GH025A(A 3)) DATE : 2008.03.13 8. PCB TOP BOTTOM SILK TOP SILK BOTTOM Page REV. 0 Page 8 INVERTER SPECIFICATION R&D GREEN C&C TECH ( GH025A(A 3)) DATE : 2008.03.13 9. CIRCUIT VIN CN1 F1 VIN 1 1 3 R9 ZD1 4 5V VIN C13 T1 5 A-DIM C2
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LCMXO640C-3TN144C.pdf
0 T L14 PR11A 1 T M13 PR7D 0 C M13 PR10D 1 C K14 PR7C 0 T K14 PR10C 1 T K13 PR7B 0 C K13 PR10B 1 C J14 PR7A 0 T J14 PR10A 1 T J13 PR6B 0 C J13 PR9D 1 H13 PR6A 0 T H13 PR9B 1 G14 GNDIO0 0 G14 GNDIO1 1 G13 PR5D 0 C G13 PR7B
in „Erfahrung mit Siglent SDG 10xx Arbitrary Generatoren?“ · Markt ·
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CE041_schematics.pdf
F F F F F F F F GND EXT2_IO18 M13 IO_L02N_1_A13 N EXT2_IO13 L3 IO_L09P_3 3 O 3.3V_FX2 EXT1_IO20 L13 IO_L03P_1_A12 A EXT2_IO10 L2 IO_L08N_3 K EXT2_IO21 L14 IO_L03N_1_A11 B EXT2_IO7 L1 IO_L08P_3 N 3.3V_FX2 C10 S00nF GND EXT2_IO22 K13 VREF_IO
in „CESYS EFM01 Spartan3E hack? - Frage“ · FPGA, VHDL & Co. ·
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ds_22.pdf
749 99 von SMD-pads 2,5 1,1 15,5 5 13 552 99 Temp. Meßspitze 3,3 0,55 18 5 24 749 99 25 Heruntergeladen von manualslib.de Handbücher-Suchmachiene DSX-Serie Teilenummer 5 13 140 99 5 13 141 99 5 13 142 99 5 13 143 99 5 13 150 99 5 13 144 99 5 13 145 99 5 13 146 99 5 13 147 99 5 13 148 99 5 13 151 99 5 13 152 99 5 13 153 99 Konusreiniger DSX 5 87 067 94 26 Heruntergeladen von manualslib.de Handbücher-Suchmachiene G E R M A N Y Cooper Tools GmbH
in „Fehleranalyse Entlötstation Weller VP 801 EC“ · Mechanik, Gehäuse, Werkzeug ·
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STM32_Init.c
PG12 // </e> //--------------------------------------------------------------------------- EXTI line 13 // <e1.13> EXTI13: EXTI line 13 enable // <o2.13> interrupt enable // <o3.13> generate interrupt // <o4.13> generate event // <o5.13> use rising trigger for interrupt/event // <o6.13> use falling trigger for interrupt/event // <o10.4..7> use pin for for interrupt/event // <i> Default: pin = PA13 // <0=> pin = PA13 // <1=> pin = PB13 // <2=> pin = PC13 // <3=> pin = PD13 // <4=> pin = PE13 // <5=> pin = PF13 // <6=> pin = PG13 // </e> //--------------------------------------------------------
in „Frage zu ST-Mikrocontrollern mit eMios“ · Mikrocontroller und Digitale Elektronik ·
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STM32F103_Industrial_Board_R1.pdf
55 PD8 PE11 11 B PB7 10K CAN CANTX 96 M 56 PD9 PE10 11 PB6 GND U3TXD 47 PB9 T U3RXD/PD9 57 PD10 PE13 12 B 12 D1 PB10/SCL2 S RTS3/PD10 13 B C 13 PB5 UART3 U3RXD 48 PB11/SDA2 CTS3/PD11 58 PD11 PE12 14 B C 14 PB0 PB12 51 PB12/CS2 T4CH1//PD12 59 PD12 PE15 15 B PD0 R9 PB13 52 60 PD13 PE14 15 PD1 GND PB14
in „STM32F103VET6 Industrial Board Schaltbild“ · Mikrocontroller und Digitale Elektronik ·
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Epcos_NTCs.pdf
3.1 90.0 94.95 83.44 106.5 12.1 4.0 3.0 95.0 81.78 71.50 92.06 12.6 4.3 2.9 100.0 70.69 61.50 79.88 13.0 4.5 2.9 105.0 61.38 53.15 69.62 13.4 4.8 2.8 110.0 53.49 46.09 60.88 13.8 5.1 2.7 115.0 46.73 40.09 53.37 14.2 5.3 2.7 120.0 40.95 34.97 46.94 14.6 5.6 2.6 125.0 36.01 30.61 41.40 15.0 5.9 2.5 Please
in „Kennlinie VDO Öltemperaturgeber“ · Mikrocontroller und Digitale Elektronik ·
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Epcos_NTCs.pdf
3.1 90.0 94.95 83.44 106.5 12.1 4.0 3.0 95.0 81.78 71.50 92.06 12.6 4.3 2.9 100.0 70.69 61.50 79.88 13.0 4.5 2.9 105.0 61.38 53.15 69.62 13.4 4.8 2.8 110.0 53.49 46.09 60.88 13.8 5.1 2.7 115.0 46.73 40.09 53.37 14.2 5.3 2.7 120.0 40.95 34.97 46.94 14.6 5.6 2.6 125.0 36.01 30.61 41.40 15.0 5.9 2.5 Please
in „Temperatursensor Identifikation“ · Mikrocontroller und Digitale Elektronik ·
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LGDP4524.pdf
430 234 G46 6954 413 69 - -2485 -430 152 DUMMY 3325 -430 235 G48 6935 278 70 IOVcc -2415 -430 153 C13P 3395 -430 236 G50 6916 413 71 IOVcc -2345 -430 154 C13P 3465 -430 237 G52 6897 278 72 IOVcc -2275 -430 155 C13P 3535 -430 238 G54 6878 413 73 Vcc -2205 -430 156 C13P 3605 -430 239 G56 6859 278 74 Vcc -2135 -430 157 C13N 3675 -430 240 G58 6840 413 75 Vcc -2065 -430 158 C13N 3745 -430 241 G60 6821 278 76 Vcc -1995 -430 159 C13N 3815 -430 242 G62 6802 413 77 Vcc -1925 -430 160 C13N 3885 -430 243 G64 6783 278 78 VDDout
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