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ONJU_Schematic.pdf
Ohms P2 SCK PIM14 BCLK PR32 P20 PM202 SELECT DATA_OUT PIM06 SDI PIU02 SPICS1 GPIO36 PIU04 SPI_CS CR25 GND PIM103 PC DNP PI SCK PM204 BCLK 0.1 µF SPICLPS PIU03 SPICLK GPIO37 PIU04 AL SPID PIU305DI(IO0) DNP CR6 GND PIM03 P73CI GND SPIQ PIU03 SPIQ GPIO38 PIU04MUTE SPIQ PIU302DO(IO1) GND P2 SPH0645LM4H-B
in „Bitte um Review meiner erweiterten ONYU-Schaltpläne (Bluetooth-Erweiterung mit CSR8635)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MMA7455L_AppNote.pdf
PTDDD_PTDDD3=1; Xdata=0; CTLReg=0; //Set up sensor for SPI 3 Wire Mode or 4 Wire Mode by writing to SPI3W in Register $16 spi_write(0x16,0x25); //3 Wire Mode Set up in the Accelerometer // spi_write(0x16,0x05); //4 Wire Mode Set up in the Accelerometer CTLReg=spi_read(0x16); // Read back the value that has
in „Dezimal zu 2er Komplement“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slod006b.pdf
important enough to warrant further investigation, so the equation forBZ is given be- low. ȡ sb 0 ȣ R 1 ) w Z B h ) ib B ȧ T ȧ (8–25) b0) 1 Sb 0 Ȣ 1 ) b )1 w Ǔ ȱ 0 T At low frequencies hib50Ω and R /(βB+1)0= 25 Ω, so Z =7BΩ. Z varieB in accordance with Equation 8–25 at high frequencies. Also, the transistor
in „Einfache Verstaerkerschaltung mit OP“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OP_Amps_for_slod006b.pdf
important enough to warrant further investigation, so the equation forBZ is given be- low. ȡ sb 0 ȣ R 1 ) w Z B h ) ib B ȧ T ȧ (8–25) b0) 1 Sb 0 Ȣ 1 ) b )1 w Ǔ ȱ 0 T At low frequencies hib50Ω and R /(βB+1)0= 25 Ω, so Z =7BΩ. Z varieB in accordance with Equation 8–25 at high frequencies. Also, the transistor
in „Vor- und Nachteile: Unipolare vs. Bipolare Spannungsversorgung bei OpAmps“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GM47_Integrators_Manual_R1C.pdf
: <wAiur>, setting <wRx>, <topRx>, <codings> • +CME ERROR: <err> • OK • ERROR Show if the command AT+CHSN=? • +CHSN: (list of is supported supported <wAiur>s), (list of supported <wRx>s), (list of supported
in „GM47 GSM Spannungsversorgung aus LiIo-Akku“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kap14.pdf
Gorbacheva, N.B. Tolochkov, Elektrokhimiya 16 (1980) 56. [39] M. Maja, N. Penazzi, J. Power Sources 25 (1989) 99. [40] M. Maja, N. Penazzi, J. Power Sources 25 (1989) 229. [41] S. Bodoardo, M. Maja, N. Penazzi, J. Power Sources 55 (1995) 183. [42] D.M. Bernardi, M.K. Carpenter, J. Electrochem. Soc. 142 (1995) 2631. [43] J. Newman, W. Tiedemann, J. Electrochem. Soc. 144 (1997) 3081. [44] W.B. Gu, G.Q. Wang, C.Y. Wang, J. Power Sources 108 (2002) 174. This page intentionally left blank PART 6 Calculation of the Active Materials in
in „Ungleiche AGM-Akkus in Reihenschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSP430FR59xx.pdf
12T30 Temp C ADC(raw) CAL_ADC_20T30 85 30 30 CAL_ADC_20T85 CAL_ADC_20T30 85 30 Temp C ADC(raw) CAL_ADC_25T30 30 CAL_ADC_25T85 CAL_ADC_25T30 (9) 1.14.3.4 Random Number Seed Table 1-10 shows the tags used for the random number seed. Table 1-10. Random Number Tags Random TAG 15h Number Length 10h 16 bytes 128
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430FR59xx.pdf
12T30 Temp C ADC(raw) CAL_ADC_20T30 85 30 30 CAL_ADC_20T85 CAL_ADC_20T30 85 30 Temp C ADC(raw) CAL_ADC_25T30 30 CAL_ADC_25T85 CAL_ADC_25T30 (9) 1.14.3.4 Random Number Seed Table 1-10 shows the tags used for the random number seed. Table 1-10. Random Number Tags Random TAG 15h Number Length 10h 16 bytes 128
in „Schaltung für Vibrationsmessung mit Piezo“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT6252.pdf
Bit 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 NType IR/W7 IR/W6 ReBit 15 14 13 12 110x2710 9 8 7 6 5 4 30x26 2 1 0 NType IR/W5 IR/W4 Reset 0x25 0x24 0x8101_0028 IRQ Selection 10 Register IRQ_SEL10 Namet 31 30 29 28 2IRQ2B26
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
iso_c99.pdf
following members: the 26 uppercase letters of the Latin alphabet A B C D E F G H I J K L M N O P Q R S T U V W X Y Z the 26 lowercase letters of the Latin alphabet a b c d e f g h i j k l m n o p q r s t u v w x y z the 10 decimal digits 0 1 2 3 4 5 6 7 8 9 the following 29 graphic characters ! "
in „Zeichenkette auffriemeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS9530_KM_G_071030.pdf
verändernden Größe erfolgt mit den rechts neben dem Display P - Limit angeordneten Tasten U, I und P. W Active W 3 Drehimpulsgeber 0 Zur Einstellung der Sollwert-Vorgaben Standby Overtemp. Locked Remote Memory A mit dem Incrementalgeber (Drehimpuls- geber) ist zuerst mit Hilfe der Tasten U, I Die hervorragenden
in „ELV Netzteil "PS 9530" 0-30V/0-10A - Erfahrungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NECCS04393-1.pdf
PACKAGE DRAWINGS 100-PIN PLASTIC LQFP (FINE PITCH) (14x14) A B 75 51 76 50 detail of lead end S C D Q R 100 26 1 25 F G H I M J P K S N S L M NOTE ITEM MILLIMETERS Each lead centerline is located within 0.08 mm of A 16.00±0.20 its true position (T.P.) at maximum material condition. B 14.00±0.20 C 14.00
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
boards.txt
build.spiffs_blocksize=4096 generic.menu.FlashSize.512K64.upload.maximum_size=434160 generic.menu.FlashSize.512K128=512K (128K SPIFFS) generic.menu.FlashSize.512K128.build.flash_size=512K generic.menu.FlashSize.512K128.build.flash_ld=eagle.flash.512k128.ld generic.menu.FlashSize.512K128.build.spiffs_start=0x5B000
in „Frage zu ESP und Nodemcu“ · Mikrocontroller und Digitale Elektronik ·
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3B036723d01.pdf
10 C 5 7 pF C 40 pF 0 0 C 1 8 12 nF C 1 4.3 pF C 15—40 15—30 pF C 30 pF OSC1 OSC1 C OSC2 15—30 15—25 pF C OSC2 30 pF R 10 10 Mƒ R 1—10 Mƒ P P Q 30000 40000 Ñ Q 1250 Ñ (d)Typicalcrystalandceramicresonatorparameters Figure 2-6 Oscillator connections MC68HC05B6 MODES OF OPERATION AND PIN DESCRIPTIONS MOTOROLA
in „unbekanntes Touchpad, wie anschliessen und verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
netwerk-atmega.xml
parts> <xLoc>872</xLoc> <yLoc>184</yLoc> <index>7</index> <layer>0</layer> <name></name> <filename>q_HC49_4H.xml</filename> <rotation>0</rotation> <value>25 Mhz</value> </parts> <parts> <xLoc>976</xLoc> <yLoc>-10</yLoc> <index>8</index> <layer>0</layer> <name>led_green.xml</name> <filename>led_green.xml
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PDF
TMC5072_datasheet.pdf
to their slave addresses sequentially. www.trinamic.com TMC5072 DATASHEET (Rev. 1.21 / 2016-APR-22) 25 TMC5072 TMC5072 TMC5072 NEXTADDR #1 NEXTADDR #2 NEXTADDR #3 CSN/IO0 CSN/IO0 RFILT RFILT S S S S S S +VIO W W CFILT W W CFILT W W O O +VIO k O O +VIO k O O P N 1 P N 1 P N 1k A Master CPU (µC with RS485
in „TMC5072 SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads5240.pdf
IAVDD, IDVDD vs SAMPLE RATE DYNAMIC PERFORMANCE vs SAMPLE RATE 0.30 90 f = 5MHz fIN= 5MHz IN SFDR 0.25 ) 85 F ) B 80 ( 0.20 ( D A SNR V I 75 I 0.15 S , IAVDD R 70 D N V 0.10 , I R 65 SINAD F 0.05 S 60 IDVDD 0 55 20 25 30 35 40 45 20 25 30 35 40 45 Sample Rate (MSPS) Sample Rate (MSPS) Figure 9. Figure
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
asm.txt
2b05 cmp r3, #5 8000de8: d110 bne.n 8000e0c <HAL_RCC_OscConfig+0x524> 8000dea: 4a20 ldr r2, [pc, #128] ; (8000e6c <HAL_RCC_OscConfig+0x584>) 8000dec: 4b1f ldr r3, [pc, #124] ; (8000e6c <HAL_RCC_OscConfig+0x584>) 8000dee: f8d3 3090 ldr.w r3, [r3, #144] ; 0x90 8000df2: f043 0304 orr.w r3, r3, #4 8000df6
in „NUCLEO-L432KC Blinky Projekt mit 11kB Speicherverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_NTC_Databook.pdf
at 25 °C P 150 mW 25 Resistance tolerance R/R N ± 2 % Rated temperature TN 25 °C B value tolerance B/B ± 1 % Dissipation factor (in air) δ 1) approx. 2,6 mW/K t1 Thermal cooling time constant (in air) τc )
in „Hellblauer Temperatursensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APT_Communications_Protocol.pdf
only FE 04 Actuator 00 d s Ident ActuatorIdents: ZST_LEGACY_6MM 0x20 ZST_LEGACY_13MM 0x21 ZST_LEGACY_25MM 0x22 ZST_NEW_6MM 0x30 ZST_NEW_13MM 0x31 ZST_NEW_25MM 0x32 ZFS_NEW_6MM 0x40 ZFS_NEW_13MM 0x41 ZFS_NEW_25MM 0x42 DRV013_25MM 0x50 DRV014_50MM 0x51 Example: Setthe actuatortypeto NewZFS 13 mm Travel:
in „Thorlabs Laser-Source mit über FTDI232BM ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
,<CR><LF><AT command n+1>, ..., <AT command n+m> [...]] OK Example: &W, &Y, A, B, E, H, I, L, M, O, P, Q, S0, S10, S12, S2, S3, S4, S5, S6, S7, S8, T, V, X, Z, \Q, ... +USORD, +USORF, +USOSO, +USOST, +USOWR, +USPM, +USTN, +USTOPFILE, +USTS, +UTEST, +UTGN, +UUBF OK UBX-13002752
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
moxa-awk-1137c-series-datasheet.pdf
5.320 GHz (4 channels) 5.500 to 5.700 GHz (11 channels) Wireless Security WEP encryption (64-bit and 128-bit) WPA/WPA2-Enterprise (IEEE 802.1X/RADIUS, TKIP, AES) WPA/WPA2-Personal 4 Wireless Roaming Turbo Roaming Transmission Rate 2.4 GHz: Up to 144.4 Mbps 5 GHz: Up to 300 Mbps Transmitter Power US EU
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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PDF
TCM8240MD_E150405_REV13.pdf
ST_MODE[2:0] 07 35 23 STOUT_POL STOUT_W[1:0] ST_OUTSIG F0 36 24 5E 37 25 10 38 26 01 39 27 32 40 28 40 41 29 58 42 2A 20 43 2B 10 44 2C FRAME_LV[7:0] 00 45 2D CB_MODE[2:0] FRAME_LV[9:8] 0E 46 2E DINSW 44 47 2F 00 48 30 00 APCSW 49 31 03 50
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vs1001.pdf
(R) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25 6.5.6 AUDATA (R) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26 6.5.7 WRAM (W) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26 6.5.8 WRAMADDR (W
in „VS1001k: SDI & SCI am SPI-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D15G14E_14_030526.pdf
E I 8 8 / ( / S 0 0 1 2 3 4 5 I C S S S R M C S P D ( C A D D D D D D ( ( E E E A R R D D T T T R W 2 EPSON Rev.1.4 S1D15G14 Series 4. PIN LAYOUT DIE layout 502 141 503 140 (0,0) 527 116 1 115 Chip size: 14720µm × 2020µm Chip thickness: 400µm ±25µm(for reference) : This value is specified in delivery
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f413.pdf
CURRENT TYPICAL LOW-LEVEL OUTPUT CURRENT vs vs LOW-LEVEL OUTPUT VOLTAGE LOW-LEVEL OUTPUT VOLTAGE 16 25 A V = 2.2 V T = 25°C A V = 3 V m CC A m CC − 14 P1.0 − P1.0 TA= 25°C n n e e 20 T = 85°C u 12 u A C TA= 85°C C u u t 10 t 15 O O e 8 e v v - - w 6 w 10 L L l l i 4 i y y 5 T T − 2 − O O I I 0 0 0.0 0.5
in „MSP430F413 Analog eingänge“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
8003798: fa05 f502 lsl.w r5, r5, r2 800379c: 3207 adds r2, #7 800379e: f014 0f80 tst.w r4, #128 ; 0x80 80037a2: ea43 0305 orr.w r3, r3, r5 80037a6: d1f3 bne.n 8003790 <read_sleb128(unsigned char const*, long*)+0x6> 80037a8:
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DA-Converter.pdf
(CC) 17 VDC 2 Voltage at Any Digital Input V to GND CC Operating Conditions Voltage at REF Input ±25V Temperature Range TMIN≤TA≤TMAX Storage Temperature Range −65˚C to +150˚C Part numbers with “LCN” suffix 0˚C to +70˚C Package Dissipation Part numbers with “LCWM” suffix 0˚C to +70˚C at TA=25˚C (Note
in „Problem mit DA-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega_328.pdf
1.00 (0.20 R) 3 A3 0.20 REF E2 b 0.18 0.23 0.30 K D 4.90 5.00 5.10 D1 4.70 4.75 4.80 D2 2.95 3.10 3.25 E 4.90 5.00 5.10 b e L E1 4.70 4.75 4.80 E2 2.95 3.10 3.25 BOTTOM VIEW e 0.50 BSC L 0.30 0.40 0.50 P – – 0.60 – – 12o 0 Note: JEDEC Standard MO-220, Fig. 2 (Anvil Singulation), VHHD-2. K 0.20 – – 5/25
in „1 Wire mit Atmega328“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kapazitaetstester_03.asm
=r22 ; result byte 2 .def m32u3 =r23 ; result byte 3 .def m32u4 =r24 ; result byte 4 .def m32u5 =r25 ; result byte 5 .def m32u6 =r26 ; result byte 6 .def m32u7 =r27 ; result byte 7 (MSB) .def mcnt32u =r28 ; loop counter Mul32b: clr mc32u1 ;multiplicand is one byte Mul32w: clr mc32u2 ; two bytes Mul32t
in „Bitte um Codebeispiele“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM8_Programming_Manual.pdf
capture 1 (see datasheet for information on which timer is connected in the specific product). Figure 25. AWU block diagram CKAWUSEL PRSC[1:0] OPTION bit OPTION bits HSE clock (1 - 24 MHz) Prescaler MSR ~ 128 kHz LS clock To timer input capture (for measurement) LSI RC 128 kHz fLS APR[5:0] fLS 6-BIT PROG
in „STLINK V2 und China Boards“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATTINY_3216_DB.pdf
change-protected (Access = R) • If LOCK bit in WDT.STATUS is ‘0’, all bits can be changed (Access = R/W) Value Name Description 0x0 OFF - 0x1 8CLK 0.008s 0x2 16CLK 0.016s 0x3 32CLK 0.031s 0x4 64CLK 0.063s 0x5 128CLK 0.125s 0x6 256CLK 0.25s 0x7 512CLK 0.5s 0x8 1KCLK 1s 0x9 2KCLK 2s 0xA 4KCLK 4s 0xB 8KCLK
in „Attiny 3216 QTouch Funktion“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OCH582B_PUHZ_P200_250YKA_R1_.pdf
1 ( ) 24 mode 4 deg up * Not available 2 Fan speed during the Extra low 1 heating thermo OFF Stop 25 2 Set fan speed 3 Fan speed during the Set fan speed 1 cooling thermo OFF Stop 27 2 Detectionof abnormality ofilable 28 1 thepipetemperature P8 Not available 2 PEAD-RPHAL•JA(L)Q deg up ModeSetting :
in „Unbekannter Bauteil Mitsubishi Klima“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Gooligum.pdf
: Z C A > B 0 1 A = B 1 1 A < B 0 0 We can use this to test whether the elapsed time is lcnt_8msn< 25) as follows: movlw .25 ; if time < 200 ms (25 x 8 ms) subwf cnt_8ms,w btfss STATUS,C bsf GPIO,1 ; turn on success LED Baseline PIC Assembler, Lesson 5: Using Timer0 Page 5 © Gooligum Electronics 2013
in „PIC10F202/etc: Programmierung unter Linux(Ubuntu)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f1232.pdf
= 25°C MHz 3 V 0.61 0.75 0.9 2.2 V 1 1.2 1.5 f(DCO53) R sel= 5, DCO = 3, MOD = 0, DCOR = 0, TA= 25°C 3 V 1 1.3 1.5 MHz 2.2 V 1.6 1.9 2.2 f(DCO63) R sel= 6, DCO = 3, MOD = 0, DCOR = 0, TA= 25°C MHz 3 V 1.69
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ETM12E_03_R8564LC.pdf
Electrical Characteristics ". 7. Frequency Characteristics * Unless otherwise specified, GND = 0 V , Ta = +25 °C , DD = 3.0 V Item Symbol Comments Min. Typ. Max. Unit ( Typ. ) Output frequency fo 32.768 kHz Frequency precision ∆ f / f Ta = +25 °C 5 ± 23 (1)∗2) × 106 VDD = 3.0 V Frequency Ta = +25 °C ( Max. )
in „Kompatible zu RX8564LC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ETM12E_03_R8564LC.pdf
Electrical Characteristics ". 7. Frequency Characteristics * Unless otherwise specified, GND = 0 V , Ta = +25 °C , DD = 3.0 V Item Symbol Comments Min. Typ. Max. Unit ( Typ. ) Output frequency fo 32.768 kHz Frequency precision ∆ f / f Ta = +25 °C 5 ± 23 (1)∗2) × 106 VDD = 3.0 V Frequency Ta = +25 °C ( Max. )
in „Kompatible zu RX8564LC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ETM12E_03_R8564LC.pdf
Electrical Characteristics ". 7. Frequency Characteristics * Unless otherwise specified, GND = 0 V , Ta = +25 °C , DD = 3.0 V Item Symbol Comments Min. Typ. Max. Unit ( Typ. ) Output frequency fo 32.768 kHz Frequency precision ∆ f / f Ta = +25 °C 5 ± 23 (1)∗2) × 106 VDD = 3.0 V Frequency Ta = +25 °C ( Max. )
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PDF
20110806094947526.pdf
OTM4001A 3. HTT3.0〞APPLICATION NOTE 3.1. Application Circuit HTT30WQ3-D00 1 T T 2 NULL M 3 3 NO metal 0 W NULL A Q 4 NULL S 5 COM 0 6 COM COM 7 COM VGL 8 VGL 9 GND GND 10 GND 11 COM 12 COM 13 COM 14 COM COM 15 COM 16 COM 17 COM 18 COM 19 COM 20 DUMMY 21 VPP3A 22 VPP3A 23 VPP1 24 VPP1 25 VPP1 26 DUMMYA 27
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PicoMite_User_Manual_4_.pdf
Ctrl-E DOWN Ctrl-X HOME Ctrl-U END Ctrl-K PageUp Ctrl-P PageDn Ctrl-L DEL Ctrl-] INSERT Ctrl-N F1 Ctrl-Q F2 Ctrl-W F3 Ctrl-R ShiftF3 Ctrl-G F4 Ctrl-T F5 Ctrl-Y If you are using Tera Term, Putty, MMEdit or GFXterm as the terminal emulator it is also possible to position the cursor by left clicking the PC's
in „Qual der Wahl - Sensoren Auswertung auf Display ("Analog")“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny1614-16-17-DataSheet-DS40002204A_1_.pdf
change-protected (Access = R) • If LOCK bit in WDT.STATUS is ‘0’, all bits can be changed (Access = R/W) Value Name Description 0x0 OFF - 0x1 8CLK 0.008s 0x2 16CLK 0.016s 0x3 32CLK 0.031s 0x4 64CLK 0.063s 0x5 128CLK 0.125s 0x6 256CLK 0.25s 0x7 512CLK 0.5s 0x8 1KCLK 1s 0x9 2KCLK 2s 0xA 4KCLK 4s 0xB 8KCLK
in „50% PWM für H-Brücke mit Attiny1614“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C63813-SXC-Cypress-Semiconductor-datasheet-11779157.pdf
space. This requires setting the XIO bit in the CPU flags register. Document 38-08035 Rev. *P Page 25 of 86 CY7C63310, CY7C638xx Table 10-5. USB Osclock Clock Configuration (OSCLCKCR) [0x39] [R/W] Bit # 7 6 5 4 3 2 1 0 Field Reserved Fine Tune Only USB Osclock Disable Read/Write – – – – – – R/W R/W Default
in „Welche Relais und Controller zum Schalten von USB?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xe166_um_v2.1_2008_08_vol2per.pdf
104.9 ms 78.125 kHz 12.8 µs 838.9 ms 128 312.5 kHz 3.2 µs 209.7 ms 39.06 kHz 25.6 µs 1.678 s 256 156.25 kHz 6.4 µs 419.4 ms 19.53 kHz 51.2 µs 3.355 s 512 78.125 kHz 12.8 µs 838.9 ms 9.77 kHz 102.4 µs 6.711 s 1024 39.06 kHz 25.6 µs 1.678 s
in „Kernel State Configuration Register KSCCFG xe164 xe166 xe164f xe16x“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xc2200_um_v2.1_2008_08_vol2per.pdf
104.9 ms 78.125 kHz 12.8 µs 838.9 ms 128 312.5 kHz 3.2 µs 209.7 ms 39.06 kHz 25.6 µs 1.678 s 256 156.25 kHz 6.4 µs 419.4 ms 19.53 kHz 51.2 µs 3.355 s 512 78.125 kHz 12.8 µs 838.9 ms 9.77 kHz 102.4 µs 6.711 s 1024 39.06 kHz 25.6 µs 1.678 s
in „Schlechte Datenblätter von Infineon (CAN)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slas272d.pdf
CURRENT TYPICAL LOW-LEVEL OUTPUT CURRENT vs vs LOW-LEVEL OUTPUT VOLTAGE LOW-LEVEL OUTPUT VOLTAGE 16 25 V = 2.2 V T = 25°C V = 3 V CC A CC A 14 P2.7 A P2.7 TA= 25°C m m t t 20 n 12 n TA= 85°C r TA= 85°C r u u t 10 t 15 p p u 8 u O O e e e 6 e 10 - - w w L 4 L – – 5 L L I 2 I 0 0 0.0 0.5 1.0 1.5 2.0 2.5
in „MSP430 Interrupt Port1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPR121.pdf
Interval - Selects the period between samples used for the second level of filtering. The maximum is 128ms, Programmable to 2^n ms 000 Encoding 0 - Period set to 1 ms 001 Encoding 1 - Period set to 2 ms ESI ~ 100 Encoding 4 - Period set to 16 ms (Default) ~ 111 Encoding 7 - Period set to 128 ms MPR121
in „Probleme bei I2C-Verbindung mit MPR121 unter BASCOM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mispav.htm
valign="top"><tt>S14.399V 1.600 A US </tt> <br> <tt>I 7.365V 775.0mA IS </tt> <br> <tt>5.708 W 00:09:45 >KA </tt> <br> <tt>128.1mAh 63.2C RS</tt></td> </tr> </tbody> </table> <br> <table border="1"> <caption><br> </caption><tbody> </tbody> <tbody> <tr> <td valign="top"><tt>S24.020V 10.050A
in „Implementierung von Menüs auf alphanumerischen Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P89C51RC_IN.pdf
89C51RX+ has internal data memory that is mapped into four MOV @R0,#data separate segments: the lower 128 bytes of RAM, upper 128 bytes of where R0 contains 0A0H, accesses the data byte at address 0A0H, RAM, 128 bytes Special Function Register (SFR), and 256 bytes rather than P2 (whose address is 0A0H).
in „[V] 8St. 8051er Philips P89C51RC+IA PLCC44 (6€)“ · Markt ·
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PDF
isl94203.pdf
CURRENT (A) SENSE DSC THRESHOLD 5x -250 to 250 -250A to 250A SETTING (mV) 0.3mΩ 0.5mΩ 1mΩ 2mΩ 5mΩ 50x -25 to 25 -25A to 25A 000 16 53.3 32 16 8 3.2 500x -2.5 to 2.5 -2.5A to 2.5A 001 24 80 48 24 12 4.8 010 32 106.7 64 32 16 6.4 The second part is the analog current direction, overcurrent and short circuit
in „Registerwerte verändern von Intersil ISL94203“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDF-Demo_Board.pdf
Power-up PICDEM™ 2 Plus Voltmeter RA4=Next RB0=Now Volts=0.33V RB0=Exit Buzzer RA4=Next RB0=Now Prd=128 DC=128 RA4=-> RB0=++ Temperature RA4=Next RA4 = 3 presses RB0=Now Temp=022C RB0=Exit Clock RA4=Next RB0=Now 00.00.02 RA4=Set RB0=Menu 00.00.03 RA4=-> RB0=++ RA4 = 3 presses Figure 3.1: Tutorial Program
in „PIC steuert LED sehr seltsam“ · Mikrocontroller und Digitale Elektronik ·