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RM-MPU-3300.pdf
Clock Speed Divider 0 348 kHz 23 1 333 kHz 24 2 320 kHz 25 3 308 kHz 26 4 296 kHz 27 5 286 kHz 28 6 276 kHz 29 7 267 kHz 30 8 258 kHz 31 9 500 kHz 16 10 471 kHz 17 11 444 kHz 18 12 421 kHz 19 13 400 kHz 20 14 381 kHz 21 15 364 kHz 22 Parameters: MUL_MST_EN When set to 1, this bit enables multi-master
in „SPI Kommunikation mit MPU3300“ · Mikrocontroller und Digitale Elektronik ·
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UC1698u_Revision__1.5.pdf
G2 G1 G0 B3 B2 B1 B0 t i 2 Write Data Cycle 0 0 0 0 R3 R2 R1 R0 G3 G2 G1 G0 B3 B2 B1 B0 LC[7:6] = 10b ( RRRRR-GGGGGG-BBBBB, 64K-color ) n 1Data Write Sequence (8-bit)orD[7:0]16 RAM bits directly. e 1stWrite Data Cycle R4 R3 R2 R1 R0 G5 G4 G3 id 2nd Write Data Cycle G2 G1 G0 B4 B3 B2 B1 B0 f Dsta Write
in „Defekte Heizungsregelung RC310 Display leuchtet“ · Haus & Smart Home ·
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PDF
datasheet__4_.pdf
specified. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Oscillator Cosc integrated oscillator 20 25 30 pF capacitance fosc oscillator stability for V DD = 100 mV; − 2 × 10−7 − T = 25 °C; V = 1.5 V amb DD i input frequency note 1 − − 1 MHz Quartz crystal parameters (f = 32.768 kHz) Rs series resistance − − 40 k CL parallel load capacitance − 10 − pF CT trimmer capacitance 5 − 25 pF IC-bus timing (see Fig.22; notes 2 and 3) SCL SCL clock frequency − − 100 kHz SP tolerable spike width on bus − − 100 ns BUF bus free time 4.7 − − s t START condition
in „Wie verbindet man pcf8593 und arduino (eigentlich irgend uC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rej09b0101_16c29hm_2_.pdf
PD9 323 03B316 03F416 Port P10 register P10 324 03B416 03F516 03B516 CRC snoop address register CRCSAR 314 03F616 Port P10 direction register PD10 323 03B616 CRC mode register CRCMR 314 03F716 03F816 03B716 03B816 DMA0
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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pm2519ocr.pdf
3 1 4 1 4 C 5 0 7 1 O N F 100V 4 8 2 2 1 2 2 3 1 4 1 4 5 0 9 1 O N F 1 0 0 V 4 8 2 2 122 3 1 4 1 4 e 5 1 0 1 U F 4 0 % 2 5 V 4 8 2 2 124 20944 eit 1UF 40% 25V 48221242094 e512 10UF 50% 16V 53221241406, 513 2200UF 10% 100V 482212421382
in „Pjilips PM2519“ · Markt ·
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PDF
harman_kardon_avr145_sm.pdf
harman/kardon NJM2595 EQUIVALENT CIRCUIT PIN No. PIN NAME INSIDE EQUIVALENT CIRCUIT VOLTAGE 14 SW1 Vcc 10 SW2 20k SW 32k - 16k 4k Gnd Vee TEST CIRCUIT + V Vout2.2 Vout2.1 Vout3.2 Vout3.1 75 VCL VCH 75Ω 75 VCL V CH 75Ω Ω Ω 0.1µF Vin1 Vin2 + SW1 SW2 75 75 100µF Ω 10µF Ω 10µF + + 16 15 14 13 12 11 10 9 + 3 V u W i N u W i o S V G V S V V t 5 5 3 4 4 3 o W i S i S V V V S V V 1 2 3 4 5 6 7 8 + + + 75 10µF 10µF 10µF Ω SW5 SW3 SW4 0.1µF Vin5 Vin4 Vin3 + 100µF 75Ω 75Ω 75Ω 75Ω VCL VCH VCL V CH VCL VCH Vout1.2 Vout1.1 - V 75 AVR145 harman/kardon 76 AVR145 harman/kardon 77 AVR145 harman/kardon 78 AVR145 harman
in „Relais beim AVR 145 von harman/kardon durch SSR ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
RGB_LED_10bitPWM.asm
, accu2 ; accu1=(42-f) (f steht in accu2) lds accu2, hsv_s ; accu2 =S rcall HSV_MULT ; accu2(L):accu3(H)= (S*(42-f)) ldi accu1, low(10710) ldi accu4,high(10710) sub accu1, accu2 ; accu2(L):accu3(H)= 10710 - (S*(42-f)) sbc
in „Mega8 Assembler RGB Fader“ · Mikrocontroller und Digitale Elektronik ·
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SSD1332_R1.61.pdf
N-FET with low RDSon) and low Vth voltage. e.g. MGSF1N02LT1 [ON SEMICONDUCTOR] R1, R2 Resistor 1%,1/10W R3 Resistor, 1.2Ω 1%, 1/2W C1 Capacitor, 1µF 16V C2 Capacitor, 22µF Low ESR, 25V C3 Capacitor, 1µF 16V C4 Capacitor, 10nF 16V C5 Capacitor, 1 ~ 10 µF 16V C6 Capacitor, 0.1 ~ 1µF 16V C7 Capacitor, 15nF
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
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at91rm9200-ek.pdf
offender to legal proceedings. 8 7 6 5 4 3 2 1 8 7 6 5 4 3 2 1 L2 742792093 3V3 1 2 3V3 D D C16 C15 C14 C10 C205 C204 C9 100NF 100NF 10 uF 10µF 100NF 100NF 100NF 10V LINE OUT 10 9 18 J5 U2 5 4 AVDD1 AVDD0 VDD C11 3 150uF 2 16V C1 + R203 47R 1 OUT_L 5 330PF R217 10K 21 DEECTRL OUT_R 7 + R200 47R ST-3081-5N
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1565.pdf
Data setup time D0 to D7 tDS8 80 — ns Address hold time tDH8 30 — ns RD access time tACC8 CL = 100 pF — 280 ns Output disable time tOH8 10 200 ns *1 The input signal rise time and fallt,t) is specified at 15 ns or less. When the system cycle time is extremely fast, ( f) ≤tCYC8– tCCLW –tCCHW ) forr+ t
in „Pollin 128x64 GLCD : Bild verzerrt“ · Mikrocontroller und Digitale Elektronik ·
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SSD2119_Specification.pdf
. The valid range is from 1 to 240. G1 1st line of G1 data 1st line of G30 data SCN8-0 SCN8-0 = 000000000 = 000011101 G240 G240 Sleep mode (R10h, R12h) Reg# R/W DC IB15 IB14 IB13 IB12 IB11 IB10 IB9 IB8 IB7 IB6 IB5 IB4 IB3 IB2 IB1 IB0 R10h W 1
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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at91rm9200.pdf
F7 PB16 J6 PB29 B4 PB21 D6 PD7 F9 PB11 J12 GND B5 PD12 D7 PB14 F11 PA30 J13 GNDOSC B6 PD9 D8 VDDIOP F12 PA28 J14 VDDOSC B7 GND D9 PB8 F13 PA4 J15 VDDPLL B8 PB10 D10 PB2 F14 PD2 J16 GNDPLL B9 PB5 D11 GND F15 PD1 J17 XIN B10 PB0 D12 PA22 F16 PA5 K1 HDPA B11 VDDIOP D13 PA21 F17 PLLRCB K2 DDM B12 PA24 D14 PA16 G1 PD19 K3 HDMA B13 PA17 D15 PA10 G2 PD17 K4 VDDIOP B14 PA15 D16 PD6 G3 GND K5 DDP B15 PA11 D17
in „S1D113513 + AT91RM9200“ · Mikrocontroller und Digitale Elektronik ·
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ds-mb86r01-jade-rev1-4.pdf
I2S_WS0 - - - 197 G3 DOUTR1[4] MEM_ED[28] I2S_SDI0 - - - 280 G4 DOUTR1[3] MEM_ED[27] I2S_SDO0 - - - 6 F1 DOUTR1[2] MEM_ED[26] - GPIO_PD[12] - - 105 F2 DOUTG1[7] MEM_ED[25] - GPIO_PD[11] - - 196 F3 DOUTG1[6] MEM_ED[24] - GPIO_PD[10] - - 279 F4 DOUTG1[5] MEM_ED[23] - GPIO_PD[9] - - 5 E1 DOUTG1[4] MEM_ED[
in „Bild im Bild in der Instumententafel Range Rover“ · Mikrocontroller und Digitale Elektronik ·
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038-05058-01-X-MLCC_REVB03_SKIT.pdf
CONFIG1 [12] G2 K11 G3 STDP4320_GPIO13_DP_TX1_CONFIG2 [12] MASTER3_IRQ_IN DNC_14 GPIO13/TX1_CONFIG2 F2 GPO C C U27C STDP4320 PS_1V2 A1 E5 A14 GND_A1 DVDD12_E5 E10 B6 GND_A14 DVDD12_E10 F5 1 C330 1 C331 1 C332 1 C240 1 C333 1 C334 1 C335 1 C336 B7 GND_B6 DVDD12_F5 F10 GND_B7 DVDD12_F10 0.01uF 0.01uF 0.47UF
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Magazin_Bauteile.pdf
0,00 2 2 5 1 8 Keramik Kondensator 100nF SMD 50V 5% AVX 1206 Kyocera Farnell 228-0701 0,124 0,99 2 10 Keramik Kondensator 1µF 50V 10% X7R 1206 Kemet Farnell 299-1419 0,151 1,51 3 6 Keramik Kondensator 10µF 25V 10% X6S 1206 Murata Farnell 267
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MS-17631_2.0.pdf
PAD2 4 EC50 X_C0.1u10X0402 EC10 C0.1u10X0402 SME_ATEC048 SME_ATEC048 HOLES_8X8_D3MM_VIA5 HOLES_8X8_D3MM_VIA5 HOLES_8X8_D3MM_VIA5 EC19 C0.1u10X0402 EC123 C0.1u10X0402 HOLES_R276D185P_PT HOLES_R276D185P_PT 1 1 3 6 3 6 3 6 EC25
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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PCD8544_1.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „(Dieser Beitrag wurde geloescht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcd8544.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
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PDF
PCD8544_1.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „MSP430F2013 steuert Nokia-3310-Display an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „Atmega8 Nokia 3310 Display und AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „Display Nokia 5110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5110.pdf
voltage generator V V tolerance internally V = 2.85 V; V = 7.0 V; − 0 300 mV LCD LCD DD LCD generated fSCLK = 0; display load = 10 A; note 5 TC0 VLCD temperature coefficient 0 V DD= 2.85 V; VLCD = 7.0 V; − 1 − mV/K fSCLK = 0; display load = 10 A TC1 VLCD temperature coefficient 1 V DD= 2.85 V; VLCD = 7.0 V; − 9 − mV/K fSCLK = 0; display load = 10 A TC2 VLCD temperature coefficient 2 V DD= 2.85 V; VLCD = 7.0 V; − 17 − mV/K f = 0; SCLK display load = 10 A TC3 V temperature coefficient 3 V = 2.85 V; V = 7.0 V; − 24 − mV/
in „Nokia 5110 ansteuern für newbie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6neds.pdf
(Note 4) 3.3 CONV Conversion time (8bit) f(XI)= 16MHz, øAD= 2AD/2 = 8MHz(Note 4) 3.5 µs f(XI)= 10MHz, øAD= 2AD = 10MHz (Note 4) 2.8 tSAMP Sampling time f(XI)= 16MHz, øAD= 2AD/2 = 8MHz(Note 4)0.375 µs f(XI)= 10MHz, øAD= 2AD = 10MHz (Note 4) 0.3
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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HX8352-A.pdf
Single Chip Driver DATA SHEET V05 Example 2: MPU write is slower than panel read MCU to Memory Time 1st 320th TE output signal Time Memory to LCD Time 1st 320th a b c d e f Image on LCD Figure 5. 31 The MPU to Frame Memory write begins just after Panel Read has commenced i.e. after one horizontal sync
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mb1045_changed.pdf
P0C2202 P0C2201 P0R1901 P0R1902 PC14-OSC32_IN P0R23102 P0R23101 P0U3BPF0 PI0 P0R27702 P0R27701 PC15PC15 F1 P0U3A0F1 P0U3A0G13 PK00PK0 LCD_G5LCD0G5 A1N0A1 PF10PF1 R226 33 E2 P0U3B0E2 P0U3B0D14 R276 33 PI1 D25 N0D25 2 1 0 PC15-OSC32_OUT PK0 P0R22602 P0R22601 PF1 PI1 P0R27602 P0R27601 10pFP0X102 P0X101 P0U3A0FF12
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PDF
mb1045_changed_korrigiert.pdf
P0C2202 P0C2201 P0R1901 P0R1902 PC14-OSC32_IN P0R23102 P0R23101 P0U3BPF0 PI0 P0R27702 P0R27701 PC15PC15 F1 P0U3A0F1 P0U3A0G13 PK00PK0 LCD_G5LCD0G5 A1N0A1 PF10PF1 R226 33 E2 P0U3B0E2 P0U3B0D14 R276 33 PI1 D25 N0D25 2 1 0 PC15-OSC32_OUT PK0 P0R22602 P0R22601 PF1 PI1 P0R27602 P0R27601 10pFP0X102 P0X101 P0U3A0FF12
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NASA_Technical_Note_D-822.pdf
_o._0o ,,a._oB1 ka o_BT _za.672_ _,a.8o_i 800 _.9_ _%o'/_ _.L,o_o _._y/_ k_._T_O _.60_ _).T,3BB _.ST'aO _.OOT_ _.zz,_ 8].0 _._70 _, .k_.t _._T_ _,_.6_ _-_._ _.9_ _.090T _._'o _._ _._o_ 8= _.6Y/"3 k_.'F_ _.%9L_8 _.o_gk _6._2 _.60_ 8_0 _.7.0._. _.T._-, kT.Tl_T _.1_1 _.2T9O _9. "_ _o.z,r_o _0._,_ _._'r
in „Komplexe Berechnung auf µC - geschickte Annäherung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lss.txt
ldi r26, 0x60 ; 96 88: b0 e0 ldi r27, 0x00 ; 0 8a: e4 ed ldi r30, 0xD4 ; 212 8c: f0 e1 ldi r31, 0x10 ; 16 8e: 02 c0 rjmp .+4 ; 0x94 <__do_copy_data+0x10> 90: 05 90 lpm r0, Z+ 92: 0d 92 st X+, r0 94: a2 36 cpi r26, 0x62 ; 98 96: b1 07 cpc r27, r17 98: d9 f7 brne .-10 ; 0x90 <__do_copy_data
in „2 Programme in einem AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Assembler.s
.equ UBRRH = 0x20 .equ UCSRC = 0x20 .equ EEARL = 0x1e .equ EEARH = 0x1f .equ EEDR = 0x1d .equ EECR = 0x1c .equ DDRA = 0x1a .equ PINA = 0x19 .equ DDRB = 0x17 .equ PINB = 0x16 .equ DDRC = 0x14 .equ PINC = 0x13 .equ DDRD = 0x11 .equ PIND = 0x10 .equ SPDR = 0x0f .equ SPSR =
in „ISR macht Newbie fertig :P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSPIC33EP512GM710_datasheet.pdf
F10BP3 F10BP2 F10BP1 F10BP0 F9BP3 F9BP2 F9BP1 F9BP0 F8BP3 F8BP2 F8BP1 F8BP0 0000 h o C1BUFPNT4 0426 F15BP3 F15BP2 F15BP1 F15BP0 F14BP3 F14BP2 F14BP1 F14BP0 F13BP3 F13BP2 F13BP1 F13BP0 F12BP3 F12BP2 F12BP1
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20120224183241077.pdf
/Pixel 00 1st to 2nd 1st to 3rd 01 – 10 Setting Disabled 11 2nd to 1st 3rd to 1st Note 1: During read operation, the setting of TCREV is ignored; data is transferred from 1st to 2nd/1st to 3rd. Note 2: Reset TCREV
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40001722A.pdf
F0Fh F8Fh 1 C10h — C90h — D10h — D90h — E10h E90h F10h F90h 7 C11h — C91h — D11h — D91h — E11h E91h F11h F91h — C92h — D12h — D92h — E12h E92h F12h F92h 0 C12h 3 C13h — C93h — D13h — D93h — E13h E93h F13h
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD3311C_3312C_2.pdf
1970.0 1 0 0 1 0 1 25 C7 2093.0 2103.1 1 0 1 1 1 1 2F C#7 2217.5 2223.3 0 0 1 1 1 0 06 D7 2349.3 2358.1 0 0 0 1 1 1 07 D#7 2489.0 2470.4 1996 Nov 21 10 Philips Semiconductors Product specification DTMF/modem/musical-tone generators PCD3311C; PCD3312C 8 I
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dm9161-ds-f05_091008.pdf
F/2KV Chasis GND Figure10-2 Final 43 Version: DM9161-DS-F05 September 10, 2008 DM9161 10/100Mbps FastEthernetPhysicalLayer TX/FXSingleChipTransceiver 10.4100Base-FXApplication FXVCC (3.3V) 127Ω 3.3V Fiber
in „Beschaltung VICOM DM9161CEP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vacon-x2c-series-user-s-manual.pdf
0 0 1 36-F5 1 0 1 37-F6 0 1 1 38-F7 1 1 1 32-FMAX 0 0 N/A Basic speed setpoint (keypad or terminals) 1 0 N/A 33-F2 PS1, PS2[1] 0 1 N/A 34-F3 1 1 N/A 35-F4 ST1 Digital output (open transistor collector). May be
in „TWIKE - Gedanken zu einem anderen Antriebssystem“ · Offtopic ·
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AVR_ATmega_328PB.pdf
accessed directly, or as the Data Space locations following those of the Register File, 0x20 - 0x5F. In addition, this device has Extended I/O space from 0x60 - 0xFF in SRAM where only the ST/STS/STD and LD/LDS/LDD instructions can be used. 10.2. ALU – Arithmetic Logic Unit The high-performance AVR
in „ATmega328PB: UART(MC) empfängt falsche Daten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
abused_bootloder_disassembly.txt
93 st X+, r25 195c: 08 95 ret 195e: cf 93 push r28 1960: cf b7 in r28, 0x3f ; 63 1962: cf 93 push r28 1964: df 93 push r29 1966: c3 95 inc r28 1968: 87 9b sbis 0x10, 7 ; 16 196a: e9 f7 brne .-6 ; 0x1966 <_
in „ATmega-Bootloader vom Hauptprogramm aus flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
8006ddc: e7e3 b.n 8006da6 <d_print_comp+0x10ee> 8006dde: f8d0 2114 ldr.w r2, [r0, #276] ; 0x114 8006de2: ab16 add r3, sp, #88 ; 0x58 8006de4: f843 2d40 str.w r2, [r3, #-64]! 8006de8: f8c0 3114 str.w r3, [r0, #276] ; 0x114 8006dec: f8d0 3110 ldr.w
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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SCF5740-20_4xDotmatrix_LED.pdf
14 22 µF 39 TAN XTAL1 P0.0 ID + 19 U1 VCC 10 VCC 8031 19 RST CLKSEL 21 GND 8 1 RST 2 CLK I/O .01 µF 9 P1.0 20 Figure 13. Display Interface with Motorola 68HC05C4 Microprocessor (using SPI port) VCC VCC 15 SDCLK GND 40 PA0 11 13 LD DATA 14 38 OSC1 10 22 µF PA1 33 ID TAN SCLK + MOSI 32 VCC 10 OSC2 19 RST CS 21 39 2 GND CLK I/O8 .01 µF VCC U1 68HC05C4 1 RST 9 PA2 20 Figure 14. Cascading Multiple Displays RST VCC RST CLK I/O CLK SEL 14 more displaysRST
in „[V] Intelligente LED-Matrix-Displays, HDSP 2112, SCF 5740, PD 2435“ · Markt ·
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PDF
datasheet.pdf
= usually between 1K Ω and 3.3K Ω as per the microphone characteristics C1 = 10pF to 33pF C2 = C3 = C4 = 47pF to 100pF C5 = 47µF L1 = L2 = 100nH R1 and R4 are used as a voltage supply filter with C5. C1 has to be the nearest possible to the microphone. Microphone manufacturers provide
in „[Hinweis] Kostenlose Datenverbindung fürs Handy“ · Markt ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
cycle and a fXTAL_CLK /2 clock in another count cycle. The average clock frequency is f /2.5, which is 16 MHz, i.e. the CNT_CLK in Figure 10-2. The timer counting is XTAL_CLK incremented by 1/16 µs on each CNT_CLK
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
cycle and a fXTAL_CLK /2 clock in another count cycle. The average clock frequency is f /2.5, which is 16 MHz, i.e. the CNT_CLK in Figure 10-2. The timer counting is XTAL_CLK incremented by 1/16 µs on each CNT_CLK
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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88E1111_DS.pdf
50/7550/75S_OUT+ 50/75lShER M 7 M S_OUS_IN+ velND g Internal bias 8 sink 50I75 ohm 4 SgINNT u 1d E f 6 FD 3 - O N 7 ua C zf L 1z VE December 3, 2vDocument Classification: ProPage 45y InformationF 7 M 88E1111 Integrated 10/100/1000 Ultra Gigabit Ethernet Transceiver c r 3 ct 10 T88E111Description2ce
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Atmel-8209-8-bit_AVR_ATmega16M1-32M1-64M1_Datasheet_1_.pdf
accessing the actual DIR register for the Port. Atmel ATmega16M1/32M1/64M1 [DATASHEET] 121 Atmel-8209F-ATmega16M1/32M1/64M1_Datasheet_Complete-10/2016 14.4.10. Port D Input Pins Address When addressing I/O Registers as data space using LD and ST instructions, the provided offset must be used. When using
in „Externer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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haupt.pdf
Bandbegrenzung, bei Zwischenfre- quenz von 10 ¢ f = 3.561 GHz, mit Empfange˜rauschen . . . . . . 164 p F.2.2 1-Bit-Korrelation mit doppelter Bandbegrenzung ohne Rauschen, bei Zwischenfrequenz von 10 ¢ f . . . . . . . . . . . . . . . . . . . 165
in „Verstaerker mit inverser charakteristik“ · Analoge Elektronik und Schaltungstechnik ·
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Verlauf.txt
find_file(): found C:/Ac6/SystemWorkbench/plugins/fr.ac6.mcu.debug_2.1.1.201708311556/resources/openocd/st_scripts/target/stm32f1x.cfg Debug: 63 31 configuration.c:84 find_file(): found C:/Ac6/SystemWorkbench/plugins/fr.ac6.mcu.debug_2.1.1.201708311556/resources/openocd/st_scripts/target/swj-dp.tcl Debug:
in „SW4STM32 hängt bei in procedure 'ocd_bouncer'“ · Mikrocontroller und Digitale Elektronik ·
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AN0003_Binary_Messages_SkyTraq_Venus6.pdf
Structure: <0xA0,0xA1>< PL><31>< message body><CS><0x0D,0x0A> Example: A0 A1 00 57 31 00 02 00 77 88 04 61 10 00 00 00 00 00 00 00 00 00 00 00 00 DB DF 59 A6 00 00 1E 0A 1 2 3 ………………………………………………………………………………………… 28 29 47 7C 00 77 88 88 DF FD 2E 35 A9 CD B0 F0 9F FD A7 04 8E CC A8 10 2C A1 0E 22 31 59 A6 74 00
in „[V] Mini GPS Module - SkyTraq Venus 6 (22x22x8mm)“ · Markt ·
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STM32H7-Disco_full.PDF
R13632 1 R139 2 GND +5V PI41 Vcc Q6 PU46 PI10 P162 PR30 PI30 1 1 Q7 PU47 R1383 R142 P0 PI PI10 Gnd Q7S PU49 PI10 P182 PR40 PI40 CO131 C132 P02.2uF PI 100nF 74HC595D 1 R14042 1k0 C 2 2 PI10 P102 C 2k0 COR4 GND PR401PI40 NLoo 1k0 Lo p2 GND 1 R14112
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·