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AVR_1zu4_LCD.pdf
8-bit Features Microcontrollers • 4K byte self-programming Flash Program Memory. • 512 byte SRAM, 256 Byte EEPROM. • 8 Channel 10-bit A/D-converter (TQFP/MLF). • debugWIRE On-chip Debug System. Application Note • Up to 20 MIPS throughput at 20 MHz. • 23 to 28 I/O lines, depending on package. • PDIP
in „Display für 3V betrieb“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crc16.c
**************************************************************** const unsigned short crc16_table2[256] = { 0x0000,0xC0C1,0xC181,0x0140,0xC301,0x03C0,0x0280,0xC241, 0xC601,0x06C0,0x0780,0xC741,0x0500,0xC5C1,0xC481,0x0440, 0xCC01,0x0CC0,0x0D80,0xCD41,0x0F00,0xCFC1,0xCE81,0x0E40, 0x0A00,0xCAC1,0xCB81,0x0B40,0xC901,0x09C0,0x0880,0xC841
in „Checksumme "reversen"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
203493453ADF7020_0.pdf
Keying ASK Modulation Depth 30 dB OOK–PA Off Feedthrough −50 dBm Transmit Power4 −20 +13 dBm VDD= 3.0 V,AT = 25°C Transmit Power Variation vs. Temp. ±1 dB From −40°C to +85°C Transmit Power Variation vs. VDD ±1 dB From 2.3 V to 3.6 V at 915 MHA, T = 25°C Transmit Power Flatness ±1 dB From 902 MHz to 928 MHz
in „LFCP_VQ löten/belichten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8591.pdf
. 6 seconds. Typical dwell time is 4 seconds at 250 °C. 17.2.2 R EPAIRING SOLDERED JOINTS A mildly-activated flux will eliminate the need for removal Apply a low voltage soldering iron (less than 24 V) to the of corrosive residues in most applications
in „Datentransfer an PCF8591“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8591.pdf
. 6 seconds. Typical dwell time is 4 seconds at 250 °C. 17.2.2 R EPAIRING SOLDERED JOINTS A mildly-activated flux will eliminate the need for removal Apply a low voltage soldering iron (less than 24 V) to the of corrosive residues in most applications
in „I2C Analog Mux/Demux im DIP gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Jesper_1x1536x8_9.txt
equ TW_ST_DATA_ACK = 0xB8; xB8 10111000 (TWDR was tranfered; ACK received .equ TW_ST_DATA_NACK = 0xC0; xC0 11000000 (TWDR was tranfered; ACK NOT received .equ TW_ST_LAST_DATA = 0xC8; xC8 11001000 (last data byte LDS TWDR was tranfered (TWEA = "0"); Ack received .equ TW_NO_INFO = 0xF8; xF8 11111000 (
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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K_LINEPLAYITV100.pdf
be installed to the local hard disk. It can be started from the CDROM. Host interface Serial (RS232C) interface capable to handle communication at 9600 baud. 1.3 Package contents Please verify that you have received all parts listed in the package contents list attached to the K_Line - Play it! package
in „[V] NEC V850 Demonstration Kit K-Line "Play it"“ · Markt ·
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an75f_Low_Power-Design.pdf
than diodes, enhancing clean oscillator gating. The con- verter typically holds 1LSB accuracy over 0°C to 70°C. afterC1Aswitchessavesconsiderablepower,particularly at modest E Xalues at high conversion rates. When Q5 Achievable conversion time varies with input. At tenth switchesthecurrentsourceoff,chargingcontinuesviathe
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1151463626.pdf
temperature, it is quite use- ful in magnetic devices, which are to be exposed to temperatures between 200ºC and processed to meet and 500ºC. At higher temperatures, flux density, however, must be reduced. Also, at higher temperatures, unboxed cores only should be used due to box temperature exacting magnetic
in „Stromwandler MBS ASK31.3 50/5A Nachbau?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
0513.asm
jpic.jal ; x84_eedata * 0047:19 jpic.jal ; 08:1 : ; ; ee_write * 0909:24 jpic.jal ; 08:2 : ; ; ee_write_enable * 0910:24 jpic.jal ; 09:0 : ; ; x84_eeadr * 0048:19 jpic.jal ; 0C:0 : ; ; transfer_bit ; 0C:1 : ; ; f 0054:09 0513.jal ; 0C:2 : ; ; up 0054:12 0513.jal ; 0C:3 : ; ; down 0054:24 0513.jal ; 0C:4 : ; ; rain 0054:38 0513.jal ; 0C:5 : ; ; freezing 0045:04 lm75.jal ; 0C:6 : ; ; x 0079:25 i2ci.jal ; x 0093:24 i2ci.jal ; 0D:0 : ; ; transfer_byte ; 0E:0 : ; ; d * 0385:33 jpic.jal ;
in „Jal compilieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test2.3.asm
Startwert Timer0 für 20µs .equ timer0swla=254-(clock/42667) ;Startwert Timer0 für 1,5ms .equ tim1zu=clock/256 ;Timer1-Interrupt-Takt .equ baud=23 ;USART-Baudrate 9k6 .equ tap=pinC ;Port für die Tasten .equ tli=3 ;Taste links .equ tho=2 ;Taste hoch .equ tru=1 ;Taste runter .equ tre=0 ;Taste rechts .equ alltast
in „MENÜ-STEUERUNG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Soundausgabe_datasheet.pdf
ON/OFF(loop) LOOP PLAY(after power on) 256 KEY YES DAC/PWM ON/OFF(edge) 256 KEY YES DAC/PWM ON/OFF(level) TWO LINE SERIAL 256 BY MCU YES DAC/PWM 7.CONTROL MODES 7.1.MP3 MODE In the MP3 mode, WTV020-SD module default with 6 I/Os I/O P02 P03 P04
in „I2C-Adresse des WTV020-SD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
41540.pdf
ON/OFF(loop) LOOP PLAY(after power on) 256 KEY YES DAC/PWM ON/OFF(edge) 256 KEY YES DAC/PWM ON/OFF(level) TWO LINE SERIAL 256 BY MCU YES DAC/PWM 7.CONTROL MODES 7.1.MP3 MODE In the MP3 mode, WTV020-SD module default with 6 I/Os I/O P02 P03 P04
in „WTV-020 Soudmodul Code für C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS6422_F1.pdf
Voltage Analog Vina -0.3 AVDD+0.3 V Digital Vind -0.3 DVDD+0.3 Ambient Operating Temperature TA -40 85 °C Storage Temperature Tstg -65 150 °C WARNING: Operation beyond these limits may result in permanent damage to the device. Normal operation is not guaranteed at these extremes. RECOMMENDED OPERATING CONDITIONS
in „Schaltung um Echo rauszufiltern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite06.asm
data_led_7_8 .equ dled79 = 0b11010000 ;data_led_7_9 .equ dled7a = 0b11000000 ;data_led_7_a .equ dled7c = 0b10101100 ;data_led_7_c .equ dled7e = 0b10100100 ;data_led_7_e .equ dled7f = 0b11100100 ;data_led_7_f .equ dled7h = 0b11000001 ;data_led_7_h .equ dled7l = 0b10101101 ;data_led_7_l .equ dled7p = 0b11100000
in „SMD Lötpaste“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite06.asm
data_led_7_8 .equ dled79 = 0b11010000 ;data_led_7_9 .equ dled7a = 0b11000000 ;data_led_7_a .equ dled7c = 0b10101100 ;data_led_7_c .equ dled7e = 0b10100100 ;data_led_7_e .equ dled7f = 0b11100100 ;data_led_7_f .equ dled7h = 0b11000001 ;data_led_7_h .equ dled7l = 0b10101101 ;data_led_7_l .equ dled7p = 0b11100000
in „meinungen zu ass.prog.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite06.asm
data:led_7_8 .equ dled79 = 0b11010000 ;data:led_7_9 .equ dled7a = 0b11000000 ;data:led_7_a .equ dled7c = 0b10101100 ;data:led_7_c .equ dled7e = 0b10100100 ;data:led_7_e .equ dled7f = 0b11100100 ;data:led_7_f .equ dled7h = 0b11000001 ;data:led_7_h .equ dled7l = 0b10101101 ;data:led_7_l .equ dled7p = 0b11100000
in „meinungen zu ass.prog.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lite06.asm
data:led_7_8 .equ dled79 = 0b11010000 ;data:led_7_9 .equ dled7a = 0b11000000 ;data:led_7_a .equ dled7c = 0b10101100 ;data:led_7_c .equ dled7e = 0b10100100 ;data:led_7_e .equ dled7f = 0b11100100 ;data:led_7_f .equ dled7h = 0b11000001 ;data:led_7_h .equ dled7l = 0b10101101 ;data:led_7_l .equ dled7p = 0b11100000
in „meinungen zu ass.prog.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xe166_um_v2.1_2008_08_vol2per.pdf
same number of steps with their respective internal count frequency. In the above example, T5 running at 1 MHz will count down to the value FF9C /-100 for H D a 10 kHz input signal applied at CAPIN, while T6 counts up from FF9C tHrough FFFF H to 0000 H So the overflow occurs after 100 timing ticks of T6
in „Kernel State Configuration Register KSCCFG xe164 xe166 xe164f xe16x“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc0856.pdf
R12 •R11 •R10 •R9 •R8 •R7• R6• R5• R4• R3• R2 •R1• R0 Set if the result is $0000; cleared otherwise. C: R15 • Rdh7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rdh:Rdl after the operation (Rdh7-Rdh0 = R15-R8, Rdl7-Rdl0=R7-R0). Example: adiw r25:24,1 ; Add 1 to
in „Wie schnell ist euer uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INSTR_SET.pdf
R12 •R11 •R10 •R9 •R8 •R7• R6• R5• R4• R3• R2 •R1• R0 Set if the result is $0000; cleared otherwise. C: R15 • Rdh7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rdh:Rdl after the operation (Rdh7-Rdh0 = R15-R8, Rdl7-Rdl0=R7-R0). Example: adiw r25:24,1 ; Add 1 to
in „Schritt für Schritt zum Programierer!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INSTR_SET.pdf
R12 •R11 •R10 •R9 •R8 •R7• R6• R5• R4• R3• R2 •R1• R0 Set if the result is $0000; cleared otherwise. C: R15 • Rdh7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rdh:Rdl after the operation (Rdh7-Rdh0 = R15-R8, Rdl7-Rdl0=R7-R0). Example: adiw r25:24,1 ; Add 1 to
in „Maschinensprache für ATMEL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_Instruction_Set__doc0856.pdf
R12 •R11 •R10 •R9 •R8 •R7• R6• R5• R4• R3• R2 •R1• R0 Set if the result is $0000; cleared otherwise. C: R15 • Rdh7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rdh:Rdl after the operation (Rdh7-Rdh0 = R15-R8, Rdl7-Rdl0=R7-R0). Example: adiw r25:24,1 ; Add 1 to
in „Benötigte Taktzyklen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr_instruction_set.pdf
R12 •R11 •R10 •R9 •R8 •R7• R6• R5• R4• R3• R2 •R1• R0 Set if the result is $0000; cleared otherwise. C: R15 • Rdh7 Set if there was carry from the MSB of the result; cleared otherwise. R (Result) equals Rdh:Rdl after the operation (Rdh7-Rdh0 = R15-R8, Rdl7-Rdl0=R7-R0). Example: adiw r25:24,1 ; Add 1 to
in „HEX Code Tabelle“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LASMOT02.ASM
;Steuerung eines Laser-Spiegel-Schrittmotors mittels AT-Mega8 ;(c) 01/2005 by ...HanneS... & LinTroniC ; ;Version für Schrittmotor aus uraltem 5,25" Diskettenlaufwerk mit 200 Vollschritten. ;Zur Nullpunkterkennung sollte der Laserstrahl im Nullpunkt einen
in „Schalt-, Tast Funktion mit ATMega8 (ASM)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LASMOT02.ASM
;Steuerung eines Laser-Spiegel-Schrittmotors mittels AT-Mega8 ;(c) 01/2005 by ...HanneS... & LinTroniC ; ;Version für Schrittmotor aus uraltem 5,25" Diskettenlaufwerk mit 200 Vollschritten. ;Zur Nullpunkterkennung sollte der Laserstrahl im Nullpunkt einen
in „LCD geht bei Tastendruck aus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lasmot02.asm
;Steuerung eines Laser-Spiegel-Schrittmotors mittels AT-Mega8 ;(c) 01/2005 by ...HanneS... & LinTroniC ; ;Version für Schrittmotor aus uraltem 5,25" Diskettenlaufwerk mit 200 Vollschritten. ;Zur Nullpunkterkennung sollte der Laserstrahl im Nullpunkt einen
in „Taster als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JRXEWKbQXBFOb1fH.pdf
disk drive, 40 GB, 9.5 mm, 5,400 92P6342 * rpm ThinkPad STD for T40/T40p, T41/T41p OP v 2373-22x, 24x, 25x, 29x, 2Ax, 2Bx, 42x, 44x, 47x, 49x, 4Ax, 4Bx, 54x, 71x, 72x, 75x, 76x, 78x, 7Ax, 7Cx, 81x, 82x, 85x, 86x, 88x, 8Ax, 8Cx, 8Dx, B2x, B5x, BDx, C3x, C4x, C7x, C8x, CAx, G1x, G2x v 2373-2Ex, 2Fx, 2Px
in „Lenovo T42 Ladeelektronik spielt verrückt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xc2200_um_v2.1_2008_08_vol2per.pdf
same number of steps with their respective internal count frequency. In the above example, T5 running at 1 MHz will count down to the value FF9C /-100 for H D a 10 kHz input signal applied at CAPIN, while T6 counts up from FF9C tHrough FFFF H to 0000 H So the overflow occurs after 100 timing ticks of T6
in „Schlechte Datenblätter von Infineon (CAN)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stm32f405rg.pdf
fHCLK (MHz) Typ. at A = Unit 25 °C 160 36.2 144 29.3 120 24.7 IDD Supply current in All peripheral 90 19.3 mA Run mode disabled 60 13.4 30 7.7 25 6.0 1. When peripherals are enabled, the power consumption corresponding
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PDF
SSD1325_Salomon.pdf
the input data is interpreted as data or command. Data is interpreted based upon the input of the D/C# pin. If D/C# pin is HIGH, the input at D -7 is0written to Graphic Display Data RAM (GDDRAM). If it is LOW, the input at D -D is interpreted as a Command which will be decoded and be written to the 7
in „OLED VGY12864Z-S005 über LPT Port ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FM_AM-Tuner_TEA5757HL_5759HL_1.pdf
DESCRIPTION Application diagrams; see Figs 9 and 10 1 L1 = 250 H ferroceptor 2 L2 = 7P 7DRS-11459N, 110 H at 796 kHz, Q = 80, TOKO 3 L3 = 7PA7MCS-11844N, C = 180 pF, Q = 90, TOKO 4 L4 = 7PA7MCS-11845Y, C = 180 pF, Q = 90, TOKO 5 L5 = 7PA7MCS-11845Y, C = 180 pF, Q = 90, TOKO 6 L6 = 60 nH 7 L7 = MC117E523FN-2000242
in „Autoradio selber bauen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC224210fc.pdf
DDVO 24 1 3 1 F 51 V O O D D D D D D D D D D D / L/ D O O D D D D D D D D 43 0 R S μ n 1 26 DDV - –4+ 3 L L DDVO 62 μ 2 7 8 0 i 0 DDV 4 D D C C . C B C 0 t 2 F 36 DNG 2 DNGO 0 F F 8 a C 1 61 T DNGO 05 C μ μ
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OTM3225A.pdf
G1 G320 6’h01 G9 G312 G17 G304 6’h02 G17 G304 G33 G288 6’h03 G25 G296 G49 G272 6’h04 G33 G288 G65 G256 6’h05 G41 G280 G81 G240 6’h06 G49 G272 G97 G224 6’h07 G57 G264 G113 G208 6’h08 G65 G256 G129 G192 6’h09 G73 G248 G145 G176 6’h0A G81 G240 G161 G160 6’h0B G89 G232 G177 G144 6’h0C G97 G224 G193 G128
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
irl7486mpbf-936689.pdf
0.311 0.319 STANDARD OPTION (QTY 4800) METRIC IMPERIAL B 3.90 4.10 0.154 0.161 CODE MIN MAX MIN MAX C 11.90 12.30 0.469 0.484 A 330.0 N.C 12.992 N.C D 5.45 5.55 0.215 0.219 E 5.10 5.30 0.201 0.209 B 20.2 N.C 0.795 N.C F 0.256 C 12.8 13.2 0.504 0.520 6.50 6.70 0.264 D 1.5 N.C 0.059 N.C G 1.50 N.C 0.059 N.C E 100.0 N.C 3.937 N.C H 1.50 1.60 0.059 0.063 F N.C 18.4 N.C 0.724 G 12.4 14.4 0.488 0.567 H 11.9 15.4 0.469 0.606 Note: For the most current drawing please refer to IR webite at http://www.irf.com/package
in „Reparatur Makita XWT08Z (DTW1002Z)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arith_Hardware_Multiply_doc1631.pdf
to do 32-bit multiplication with 32-bit result. 5 1631C–AVR–06/02 16-bit x 16-bit = 24-bit The routine’s functionality is illustrated in Figure 4. For the 24-bit version of the multipli- Operation cation routines, the result is present in registers r18:r17:r16. The algorithm gives correct results provided that the product C = Aless than when using unsigned multipli- cation, and less than ±2en using signed multiplication. Figure 4. 16-bit Multiplication, 24-bit Result AH AL X BH BL AH B* 1 AL * BL 2 + AH BL 3 * + BH A* 4
in „AVR 8Bit-Werte mit Faktor 0-1 multiplizieren (Synth)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xc164cm_ds_v1.4_2007_03.pdf
/EX2IN/MTRS1 3 46 P9.3/CC19IO/CAN1_TxD P1H.3/EX3IN/T7IN/SCLK1 4 45 P9.2/CC18IO/CAN1_RxD/E* P1H.4/CC24IO/EX4IN 5 44 P9.1/CC17IO/CAN2_TxD P1H.5C C25O EX 5N 6 43 P9.0/CC16IO/CAN2_RxD/E* V SS 7 42 P3.15/CLKOUT/FOUT V DDP 8 41 V SS P5.0/AN0 9 XC164CM 40 VDDP P5.1/AN1 10 39 P3.13/SCLK0/E* P5.2/AN2 11 38 P3.11
in „xc164cm16ff und cc770“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
interrupt is executed. In PWM mode, this bit is set when Timer/Counter2 changes counting direction at $00. Timer/Counter Prescaler Figure 64. Prescaler for Timer/Counter2 clk I/O clT2S 10-BIT T/C PRESCALER TOSC1 Clear /S / / 2 5 2 T 2 2 /S /S 1 c lT l T T /2 AS2 c c c c kT c PSR2 0 CS20 CS21 CS22 TIMER
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF7922ATT.pdf
IEC 134) VSS = 0V; VSSA= 0V; VSSPA= 0V PARAMETER MIN MAX UNIT Operating temperature range -40 +85 °C Storage temperature range -55 +125 °C Voltage at any I/O and BATpin to SS -0.5 3.6 V Voltage at PAOUT pin to SS -0.5 7.2 V Voltage at any I/O pin tSSV -0.5 V BAT+0.3 V Peak output current port P1x and
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PDF
pic18f2320.pdf
(Instructions) 2048 4096 2048 4096 Data Memory (Bytes) 512 512 512 512 Data EEPROM Memory (Bytes) 256 256 256 256 Interrupt Sources 19 19 20 20 I/O Ports Ports A, B, C (E) Ports A, B, C (E) Ports A, B, C, D, E Ports A, B, C, D, E Timers 4 4 4 4 Capture/Compare/PWM Modules 2 2 1 1 Enhanced Capture/ 0
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.DM00091010.pdf
28 27 26 25 24 23 22 21 20 19 18 17 16 USART3 I2C_ I2C_ I2C_ I2C_ I2C_ I2C_ Res. Res. Res. Res. Res. _DMA_ Res. Res. PA10_ PA9_ Res. I2C1_ PB9_ PB8_ PB7_ PB6_ RMP FMP FMP FMP FMP FMP FMP FMP rw rw rw rw rw rw rw rw
in „EFM32F030 und Standby“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Zaehlwerk_27-080_01__man.pdf
Sequence (SEC) 2. Power Up Sequence (Host) 3. Commands a. <20> Request Status b. <21> Request Market Type c. <22> Request Last Error d. <23> Request Version e. <24> Reset Counter Value f. <25> Request Last Command ID g. <26> Request Fingerprint h. <30> Set Number of Counters i. <31> Set Market Type j. <32>
in „[T] Wannenstecker 10 und 14 polig in SMD(auch THT)“ · Markt ·
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PDF
PDFresult.pdf
0AFFH) 010110 = Data bank 22 (0B00H - 0B7FH) 010111 = Data bank 23 (0B80H - 0BFFH) 011000 = Data bank 24 (0C00H - 0C7FH) 011001 = Data bank 25 (0C80H - 0CFFH) 011010 = Data bank 26 (0D00H - 0D7FH) 011011 = Data bank 27 (0D80H - 0DFFH) Publication Release Date: December 2000 - 17 - Revision A1 W742E/C811
in „Pocket Comm One µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K4S56163LF.pdf
2004 K4S56163LF - X(Z)E/N/G/C/L/F Mobile-SDRAM AC OPERATING TEST CONDITIONS (VDD= 2.5V ± 0.2V,AT= -25 to 85°C for Extended, -25 to 70°C for Commercial) Parameter Value Unit AC input levels (Vih/Vil) 0.9 x DDQ / 0.2 V Input timing
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HT12.pdf
Max. A 393 ¾ 419 B 256 ¾ 300 C 12 20 ¾ C¢ 496 ¾ 512 D ¾ ¾ 104 E ¾ 50 ¾ F 4 ¾ 12 G 16 ¾ 50 H 8 ¾ 13 a 0° ¾ 8° Rev. 1.20 9 February 20, 2009 HT12D/HT12F Product Tape and Reel Specifications Reel Dimensions SOP 20W Symbol Description Dimensions in mm A Reel Outer Diameter 330.0±1.0 B Reel Inner Diameter 100.0±1.5 +0.5/-0.2 C Spindle Hole Diameter 13.0 D Key Slit Width 2.0±0.5 +0.3/-0.2 T1 Space Between Flange 24.8 T2 Reel Thickness 30.2±0.2 Rev. 1.20 10 February 20, 2009 HT12D/HT12F Carrier Tape Dimensions SOP 20W Symbol
in „Suche was womit ich ein DSO für 5-10 MS/s bauen kann“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NEC_78F.pdf
μPD78F0527D only μPD78F0537D only μPD78F0547D only Operating ambient • Standard products, (A) grade products:AT= –40 to +85°C <R> temperature • (A2) grade products: A = –40 to +110°C, TA= –40 to +125°C Note Select either of the functions of these alternate-function pins. 28 User’s Manual U17336EJ5V0UD CHAPTER
in „NEC bzw. Renesas Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xorg.0.log.txt
) SIS(0): SiS driver (2006/10/17-1, compiled for X.org 1.11.3.0) [ 20.325] (II) SIS(0): Copyright (C) 2001-2005 Thomas Winischhofer <thomas@winischhofer.net> and others [ 20.325] (II) SIS(0): *** See http://www.winischhofer.at/linuxsisvga.shtml [ 20.325] (II) SIS(0): *** for documentation, updates and
in „Notebook mit externem Monitor unter Ubuntu 12.04 LTS (32-bit) - Problem mit Auflösung“ · PC Hard- und Software ·
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PDF
Part_1_Physical_Layer_Specification_Ver3.01_Final_100218.pdf
R1 CMD41 R3 CMD11 R1 Voltage SwitcCMD2r R2 Bit 24: S18R=1 Bit 30: CCS Invalid Bit 30: CCS=1 t o Bit 24: S18A Invalid Bit 24: S18A=1 c Figure 4-5 : ACMD41 Timing Followed by Voltage Switch Sequencu CMD0 d CMD2 CMD8 n CMD3 ACMD41 HCS=1, S18R=1 o CMD42
in „MicroSD STM32 und Mosfet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MIK-k05-AVR_uc.pdf
den Aufbau der Steuerlogik der AVR - Familie. In der Betriebsart Timer können die Taktraten für T/C0, T/C1 mit Hilfe eines Vorteilers und je eines Multiplexers jeweils individuell eingestellt werden. Dazu dient ein 10 – stufiger Teiler mit Ausgängen bei Φ/8, Φ/64, Φ/256 und Φ/1024. Weiters kann Φ direkt
in „Warum komme ich beim Auswärten des ADC's nur bis 25% ?“ · Mikrocontroller und Digitale Elektronik ·
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ADXL362_Analog_Devices_DS.pdf
3.6 3.7 3.8 - –200 0 200 400 600 800 1000 - 7 7 CURRENT CONSUMPTION (µA) 1 TEMPERATURE SENSOR BIAS AT 25°C (LSB) 1 Figure24.CurrentConsumptionat25°C,LowNoiseMode, Figure27.TemperatureSensorResponseat25°C,V =2V S ODR=100Hz,V =2V S 35 40 30 35 ) ) ( ( N N 30 I 25 I T T L L 25 U 20 U P P P P 20 F F O 15
in „Wake up Modus ADXL362“ · Mikrocontroller und Digitale Elektronik ·