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LTC1407CMSE.pdf
CH0 , 0V+to 1.25V– –82 –82 dB Distortion 1.56MHz into CH0. Also Applicable to CH1 and CH1 Code-to-Code V = 2.5V (Note 17) 0.25 1 LSB REF RMS Transition Noise Full Power Bandwidth VIN 2.5VP-P SDO = 11585LSBP-P(–3dBFS) (Note
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Heiz702.pdf
Ferner lässt sich über die Konstante P1_REF (P6_REF) die Referenz- temperatur der Umschaltpunkte festlegen. - 8 - Beispiel: P1_REF = 6 ( d.h. Codierung für Temperaturmessstelle TEMP6) ( z. B. Rücklauftemperatur des Heizkreises mit P1) P1_
in „Heizungssteuerung elektor“ · Mikrocontroller und Digitale Elektronik ·
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64F3048F16-Hitachi.pdf
/7 6 5 /4 3 2 /1 /0 / Q O O / / / / C A A A 2 2 / / / / N N 7 7 7 7 7 7 1 R 3 /2 1 1 9 8 I 2 /1 1 B A D D 1 0 / A / P P P P P P E / P P 1 P P T PT / A B A C C N N 77 7 R 1 / / / / 1 /0 7 O O O I OI E E P P / P 5 4 B B 2 B B / T T T / / /1 0 1 / P P P P P P 7 6 /5 4 3 2 P P P B6 P T P PTP T / P/ / /
in „CPU Melkanlage auslesbar? 64F3059F16“ · Mikrocontroller und Digitale Elektronik ·
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MFRC530-NXP.pdf
signal names for the TestDigiSignalSel[6:0] addresses: F4h s_data E4h s_valid D4h s_coll C4h s_clock B5h rd_sync A5h wr_sync 96h int_clock 83h BPSK_out E2h BPSK_sig MFRC530 All information provided in this document is subject© NXP B.V. 2014. All rights reserved. Product data sheet Rev. 3.4 — 12 February
in „[V] 3St. RFID (Mifare) Lese ICs NXP MFRC530 SO32 (4€)“ · Markt ·
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Steuersystem_Gew_shaus_4.pdf
= 0b00010000; //set bit break; case SW_FET_1_OFF: pCard_status &= 0b11101111; //set bit break; case SW_FET_2_ON: pCard_status |= 0b00100000; //set bit break; case SW_FET_2_OFF: pCard_status &= 0b11011111; //set bit break; case SW_FET_3_ON: pCard_status |= 0b01000000; //set bit break; case SW_FET_3_OFF: pCard_status &= 0b10111111; //set bit break; case SW_REL_1_ON: pCard_status |= 0b10000000; //set bit break; case SW_REL_1_OFF: pCard_status
in „Einfaches µC Betriebssystem - z. B. für SPS“ · Mikrocontroller und Digitale Elektronik ·
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SANMOTION_R_M0006890N.pdf
RS1△03AH P50B07040D RS1△05AH P50B08075D Request method absolute encoder 15bit RS1△10AH P60B13200H RS1△15AH P80B22350H RS1△30AH P60B18750R RS1△01AR P50B03003D RS1△03AR P50B07040D RS1△05AR P50B08075D RS1△10AR P60B13200H Absoluteencoderwithincrementaloutput 2048P/R RS1△15AR P80B22350H RS1△30AR P60B18750R RS1△01AT P50B03003D RS1△03AT P50B07040D RS1△05AT P50B08075D Wire-saving incremental encoder 2000P/R RS1△10AT P60B13200H RS1△15AT P80B22350H RS1△30AT P60B18750R
in „Servoregler/Servoverstärker Verständnislücke“ · Mikrocontroller und Digitale Elektronik ·
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ADV7175A.pdf
–6ns Figure 88. PAL YUV Lighting Plot –46– REV. B ADV7175A/ADV7176A COMPONENT NOISE LINE = 202 AMPLITUDE (0dB = 700mV p-p) NOISE dB RMS BANDWIDTH 10kHz TO 5.0MHz 0.0 –5.0 –10.0 -->Y –82.1 –15.0 Pb –82.3 –20.0 Pr –83.3 –25.0 –30.0 –35.0 –40.0 –45.0 –
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CAN_Bus_Elektor_Optimized.pdf
practical manner. In a laterAN presented.mplete CAN bus interface for a microcontroller system will be By B vom Berg & P Groppe Elektor Electronics 9/99 24 160 1 140 e 120 u o ) 100 v c e p a n 80 s i e i c ( 60 e x e 40 20 0 1989 90 91 92 93 94 95 96 97 98 99 2000 year 990060 - 11 Figure 1. Estimated world
in „CAN mir das einer mal erklären?“ · Mikrocontroller und Digitale Elektronik ·
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8020_8021_Users_Manual.pdf
0103-03300 R64 RESMTF7321% 0104-73200 R120 RESMTF61.91%1W 0104-61R9B R121 RESMTF2491%1/2W 0104-2490A R65 RESCOMP100K 0100-01040 R66 RESMTF40.2K1% 0104-40220 R122 RESMTF61.91%1W 0104-61R9B R123 RESMTF1%1W96.5 0104-96R5B R67 RESMTF7501% 0104-75100 R124 RESMTF71.51/2W1%
in „Handbuch für Funktionsgenerator Kontron 8021 gesucht“ · Offtopic ·
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UMS-21100.pdf
89 • • 90 B_RW_B n t B_NEXUSEVTI 91 • • 92 NEXUS_EN_B t n n e B_A0 93 • • 94 B_A1 e a B_A2 95 • • 96 B_A3 n r B_D7 97 • • 98 B_D15 s o B_D6 99 • • 100 B_D14 t r B_D5 101 • • 102 B_D13 t p B_D4 103 • • 104 B_D12
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Orion_Rev_3.0__1_.pdf
/DIFFIO_B49N IO_B4_AH24/DIFFIO_B65N USROUT2 D19 AA20 IO_B4_AA20/DIFFIO_B54N/DQ2B IO_B4_AH25/DIFFIO_B63P/DQ2B AH25 USROUT3 2K2 R96 AA21 IO_B4_AA21/DIFFIO_B69P/DQ0B IO_B4_AH26/DIFFIO_B68N AH26 USROUT4 D18 AB22 AH27
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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F407-IoTBoard-Schematics.pdf
2018-10-20 Sheet of MAX232 104 GND File: G:新板开发 \..\4高配版 2.SchDoc Drawn By: 1 2 3 4 1 2 3 4 5 6 3 3 P7 DS18B20 HS0038 C 网口与wifi公用IO口选择 PF12 1 2 PF13 V J7 PF14 3 4 PE15 1 2 3 蜂鸣器 1 PE14 5 6 PE11 1 2 3 P8 P9 P5 PE10 7 8 PE8 3 2 GPIO0 RMII_RX_DV RMII_RX_DV1 PE7 PG1 H L 1 2 3 C USART4_RX PA1 1 2 RMII_RX_CLK1
in „STM32 Nucleo welches Board am besten?“ · Mikrocontroller und Digitale Elektronik ·
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MFRC522.pdf
r ADDRESS s TX SA A0 A1 A2 A3 A4 A5 (1) R/W SO l f m o R p e v . d MX . n — s 1 o DTRQ 1 7 m 001aak589 9 A n S p s a l b (1) Reserved. n 2 c d 1 o Fig 10. UART write data timing diagram a 6 g d d p l Remark: The data byte can be sent directly after the address
in „Schlüsselcodes in EEPROM identifizieren“ · Fahrzeugelektronik ·
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Datasheet_MFRC522.pdf
r ADDRESS s TX SA A0 A1 A2 A3 A4 A5 (1) R/W SO l f m o R p e v . d MX . n — s 1 o DTRQ 1 7 m 001aak589 9 A n S p s a l b (1) Reserved. n 2 c d 1 o Fig 10. UART write data timing diagram a 6 g d d p l Remark: The data byte can be sent directly after the address
in „IRQ am RFID RC522“ · Mikrocontroller und Digitale Elektronik ·
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linkswitch-hp_family_datasheet-844868.pdf
BP • 12 V output. 2 A 5 Ω LinkSwitch-HP CONTROL • Schottky rectification. U1 FB 90 - 265 LNK6774V • 82% efficiency. VAC C5 J1-3 J1-1 S PD CP 4.7 µF • V OR135 V. C16 R9 10 V 100 kΩ 10 pF 10.5 kΩ • K P 0.4 for 85-265 VAC input and K = 0.6 for 1P5-265 VAC 1% 50 V 1% input. R6 1/16 W 1/16 W C4* 231% kΩ C7
in „Fujitsu B27T-7 TFT Monitor Netzteil defekt Bauteil 715G6503-P01-001-0010“ · Analoge Elektronik und Schaltungstechnik ·
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Treiber_IC-SSD0323_OLED_128x64_GELB.pdf
C t r . m e s D T e C e g e D C D O G - n l r o . D co V C m . | m . C . COM78 . COM79 . f S L S D B B R F E r C M R R L P M C C G D S G E b V C V I V A G V V R V V L B S V Figure 1 - Block Diagram Solomon Systech Oct 2004 P 6/33 Rev 1.3 SSD0323 SSD0323Z GOLD BUMP DIE PAD ASSIGNMENT PIN 1 PIN 331 z
in „[Q]Erfahrungen mit (Reichelt) Pictiva OLED Displays“ · Mikrocontroller und Digitale Elektronik ·
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WM8978.pdf
110 dB Digital to Analogue Converter (DAC) to Line-Out (LOUT1, ROUT1 with 10k Ω / 50pF load) Full-scale output PGA gains set to 0dB, AVDD/3.3 Vrms OUT34BOOST=0 PGA gains set to 0dB, 1.5x OUT34BOOST=1 (AVDD/
in „GSM + GPS Modul von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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BK2433Datasheetv1.0.pdf
settin sample_rate[4:0] adc_data[9:8] 0x95 0 DATH g ADC_CTL mode[1:0] channel[2:0] Intr_ Chan Ready 0x96 0 En n_en WDT / / EN CLR IDLE PS2 PS1 PS0 0x97 0 SCON0 SM0 SM1 SM2 REN TB8 RB8 TI RI 0x98 0 SBUF0 - - - - - - - - 0x99 0 P0_PU 0x9A 0 P1_PU 0x9B 0 P2_PU 0x9C 0 P3_PU 0x9D 0 P4_PU 0x9E 0 P2 - - - - -
in „Chinesische USB/nRF24L01 Adpapter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg_wegen_sata_problem_ohne_hdd.txt
0x6fb4d014 TPMFinalLog=0x6fba4000 SMBIOS=0x72af5000 SMBIOS 3.0=0x72af4000 MEMATTR=0x6a840418 ESRT=0x6b3eb318 MOKvar=0x72b47000 [ 0.000000] secureboot: Secure boot disabled [ 0.000000] SMBIOS 3.5.0 present. [ 0.000000] DMI: HP HP Slim Desktop S01-pF3xxx/8B3C, BIOS F.12 07/12/2023 [ 0.000000] tsc: Detected
in „Linux erkennt SATA DVD Laufwerk nicht im AHCI Modus“ · PC Hard- und Software ·
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A300_ATMEGA8xxx.pdf
XTAL1/TOSC1) PB6 7 18 AVCC (XTAL2/TOSC2) PB7 8 17 PB5 (SCK) 9 1 1 1 1 1 1 16 5 6 7 0 1 2 3 4 D D D B B B B B ) ) P) ) P) ) ) ) T N N P 1A 1 C O ( A AI I C C / I ( ( ( ( / S ( S O ( ( MLF Top View ) ) C D T / / ) ) 0 ) ) E 5 4 3 2 T X X E D D D D ( ( ( R(A ( ( A( ( 2 1 0 6 5 4 3 2 P P P P P P P P 2 1
in „atMega8-16 Au beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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Osterreich.pdf
Positions 1 level below the CEO, based on data published in [15]. Annual Salary in k€ UK 133 Italy 82 Ireland 111 Belgium 76 Switzerland 108 Russia 56 Germany 103 Poland 50 Austria 102 Chechia 46 Spain 96 Hungary 45 Sweden 94 Croatia 38 Netherlands 90 Slovakia 30 Table 10: A comparison of annual salaries
in „Können Sie mir helfen, bitte? Ghalt asl Ingeneur“ · Ausbildung, Studium & Beruf ·
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ttester.pdf
n.cnt+1 vCEs lp_otr lp2 lp_otr 680 vCEs 680 H H Y update_pins Y T 680 T lp2 < vCEs ? = 1 ? L L N n.b = TristatePin n.e = LowPin n.c = HighPin update_pins = 1 n.cnt+p.cnt>1? (n.cnt!=1)||(n.b==p.b)? Y checkDiode N P−channel savePresult Y hp1 vCEs*2+20 > lp_otr ? N−channel 680 p.cnt = p.cnt+1 vCEs > 115
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murata_caps.pdf
(8) 1.35(B) 1.6pF(1R6) B, C 0.9(8) 1.35(B) 1.8pF(1R8) B, C 0.9(8) 1.35(B) 2.0pF(2R0) B, C 0.9(8) 1.35(B) 2.2pF(2R2) 0.9(8) 1.35(B) B, C 2.4pF(2R4) B, C 0.9(8) 1.35(B) 2.7pF(2R7) B, C 0.9(8) 1.35(B) 3.0pF(3R0) B
in „100nF SMD Entstörkondensator / Brand“ · Analoge Elektronik und Schaltungstechnik ·
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Controller.pdf
stages (S1 = 1 and S0 = 1 not − r s stages allowed) Set LCD 0 0 1 V voltage store LCDin registeA V oB V (V) 3 Note 1. X = donÕt care. 4 P P d C c 2 s 1 e 1 i 9 c X o n Philips Semiconductors Product specification LCD controllers/drivers PCF2119X Table 7 Explanations of symbols used in Table 6 STATE BIT
in „LCD mit 6 Pins wie anschließen“ · Mikrocontroller und Digitale Elektronik ·
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x31ba001.f10.3__S1D13706_Spec_Rev_10.3_.pdf
Panel Display 2 bpp: bit 7 bit 0 P 0 1 2 P 3P 4 5 6 P 7 Byte 0 A0 B 0 A1 B 1 A 2 B2 A 3 B3 Byte 1 A4 B 4 A5 B 5 A 6 B6 A 7 B7 LUT Pn= RGB value from LUT Byte 2 A8 B 8 A9 B 9 A 10 B10 A 11 B11 Index (A , B ) n n Host Address Display Memory Panel Display 4 bpp: bit 7 bit 0 P 0 1 2 P 3P 4 5 6 P 7 A B C D A B C D Byte 0 0 0 0 0 1 1 1 1 Byte 1 A2 B 2 C2 D 2 A 3 B3 C 3 D3 LUT P = RGB value from LUT n Byte 2 A4 B 4 C4 D 4 A 5 B5 C 5 D5 Index (A n Bn, Cn, Dn) Host Address Display
in „TFT-Display Controller an STM32 über FSMC“ · Mikrocontroller und Digitale Elektronik ·
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tms320lf2407a.pdf
S D F T F L L C B B B C D A A P S D C C C C S T O V D O I O L P V O O O O O O O IV V O O O O T / V / D / P L / / / I / 1 / D / I / / R M P M P R P P O T X X M M T L D C C D C C S I I I S S I I T / / T T T D X S S P P
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
ov7670.c
=> sreg <= x"9100"; ov7670_set(0x91, 0x00, portNum); //when x"31" => sreg <= x"9600"; ov7670_set(0x96, 0x00, portNum); //when x"32" => sreg <= x"9a00"; ov7670_set(0x9A, 0x00, portNum); //when x"33" => sreg <= x"b084"; ov7670_set(0xB0, 0x84, portNum); //when x"34" => sreg <= x"b10c"; ov7670_set(0xB1, 0x0C, portNum); //when x"35" => sreg <= x"b20e"; ov7670_set(0xB2, 0x0E, portNum); //when x"36" => sreg <= x"b382"; ov7670_set(0xB3, 0x82, portNum); //when x"37" => sreg <= x"b80a"; ov7670_set(0xB8, 0x0A, portNum); // prescale: divide input xclock
in „brauche eure Hilfe bei diesem Project“ · Mikrocontroller und Digitale Elektronik ·
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apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
MEM_B_DQS_P<0> MEM_B_A<11> M7 A11 - C3 MEM_B_DQS_P<1> 29 12 MEM_B_A<11> M7 A11 - C3 MEM_B_DQS_P<2> 29 12MEM_B_A<11> M7 A11 - C3 MEM_B_DQS_P<3> 29 12MEM_B_A<12> K7 A12/BC* X DQS 12 73 MEM_B_A<12> K7 A12/BC*
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·
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an44fa.pdf
. 20%. Continuous Mode (90) The general formula for core loss can be expressed as; a • • V 2 p d e L PC= C • B AC • f • V C (87) L MIN*= p C, d, p = Constants (see Table 1) 2d – ( ) 2/p• f2 – p • V p BAC= Peak AC Flux Density (1/2 peak-to-peak) (gauss) C e f = Frequency Buck Mode
in „Festspannungsregler, Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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CMX813.pdf
# Freq. 1 0 0 0 0 0 0 0 80 8 822.2 EIA 0 600 1 0 0 0 0 0 0 1 81 Mot. A 9 912 1 741 1 0 0 0 0 0 1 0 82 continue A 1011.6 2 882 1 0 0 0 0 0 1 1 83 B 1122.1 3 1023 1 0 0 0 0 1 0 0 84 Diag. 979.9 4 1164 1 0 0 0 0 1 0 1 85 Mot. B 0 371.5 5 1305 1 0 0 0 0 1 1 0 86 1 412.1 6 1446 1 0 0 0 0 1 1 1 87 2 457.1
in „leidiges Thema - SPI“ · Mikrocontroller und Digitale Elektronik ·
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AT89C51ED2.pdf
CKCON1 5 4235D–8051–12/03 Table 2. C51 Core SFRs Mnemonic Add Name 7 6 5 4 3 2 1 0 ACC E0h Accumulator B F0h B Register PSW D0h Program Status Word CY AC F0 RS1 RS0 OV F1 P SP 81h Stack Pointer DPL 82h Data Pointer Low Byte DPH 83h Data Pointer High Byte Table 3. System Management SFRs Mnemonic Add Name
in „Einstieg in die C-Programmerung für µC“ · Mikrocontroller und Digitale Elektronik ·
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siemens-m20-handbuch.pdf
dekodiert CI Cell identity (4 Hexadezimalstellen) z.B. 4EAF Wert 0000: Nicht dekodiert BSIC Base station identity code (2 Dezimalstellen) z.B. 32 Wert 99: Nicht dekodiert ARFCN Channel number of BCCH (Dezimal) z.B. 82 RSSI Receiving signal level +110 dBm
in „[V] Weiterer M8, GPS, GSM Siemens M20, ATmega128“ · Markt ·
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PDF
tlv320aic12k.pdf
8 KHz (1) TEST PARAMETER MIN TYP MAX MIN TYP MAX UNIT CONDITIONS AIC12/13/14/15 AIC12K/14K V I -1 dB 82 88 75 88 SNR Signal-to-noise ratio V I -9 dB 78 82 82 V = -40 dB 46 I V I -1 dB 84 90 75 90 THD Total harmonic distortion V I -9 dB 82 88 88 dB V = -40 dB 67 I V I -1 dB 79 87 87 Signal-to-harmonic
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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APP-BW10-1550-T-T7-Application-Notes-v1.7.pdf
mechanical tuning responses to input frequencies (Up to ~1 MHz on the tuning contact) Figure 4 100 e n p e R10−1 i u T −2 10101 102 103 Frequency (kHz) 4. Low Speed Testing Setup and Electrical Diagram Please ensure the first-time power on sequence in section 4.5 when you power up the device. 4.1. Best
in „Laser Tuningvoltage mit DAC AD5761“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RTC4553AP.pdf
time tD — 0.2 — — WR setup time tWR — 1.0 — — WR hold time tWR — 0.5 — — SOUT delay time tDS0 CL=100 pF — 150 500 Time lag between CS0 , CS1 enable tSZ1 CL=100 pF — — 100 and SOUToutput Time lag between CS0 disable and tSZ2 CL=100 pF — — 100 SOUT high Z ns Time lag between CS1 enable and tPZ1 CL=100 pF
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC4553AP.pdf
time tD — 0.2 — — WR setup time tWR — 1.0 — — WR hold time tWR — 0.5 — — SOUT delay time tDS0 CL=100 pF — 150 500 Time lag between CS0 , CS1 enable tSZ1 CL=100 pF — — 100 and SOUToutput Time lag between CS0 disable and tSZ2 CL=100 pF — — 100 SOUT high Z ns Time lag between CS1 enable and tPZ1 CL=100 pF
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC4553AP.pdf
time tD — 0.2 — — WR setup time tWR — 1.0 — — WR hold time tWR — 0.5 — — SOUT delay time tDS0 CL=100 pF — 150 500 Time lag between CS0 , CS1 enable tSZ1 CL=100 pF — — 100 and SOUToutput Time lag between CS0 disable and tSZ2 CL=100 pF — — 100 SOUT high Z ns Time lag between CS1 enable and tPZ1 CL=100 pF
in „Eine RTC R4553A am Arduino“ · Mikrocontroller und Digitale Elektronik ·
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MB1137.pdf
P0U8B050 N0PF12 P0USB0DP SB1P0SB13201 P0SB13202PA12 104 P0U8A0104 73 PB12 PD12 81 P0U8B081 50 PF12 USB_DP PA13 1053 PA12 PB12 P0U8A744 PB130PB13 JP7 PD130PD13 82 PD12 PF12 P0U85353 PF130PF13 TMSP0TMS P0U8A010PA13
in „Suche Mikrocontroller mit 16Bit ADCs und DACs“ · Mikrocontroller und Digitale Elektronik ·
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Kap4.pdf
(R (r) + R (T)) (18) Bei der Resonanzfrequenz f krnnen die tatsächlichen Werte von Quarzbelastung P c und Quarzstrom l dcrekt aus dem U -WBrt errechnet werden: P (μW) = 0,048 R (Ω) U 2(mV )2 (19) c r B U BmV) c (mA) = 4,57 (20) 4.1.2 Messung der Ersatzdaten C 1 L 1 Q Die dynamische Kapazität und Induktivität
in „Bitte um Identifizierung Quartz“ · Analoge Elektronik und Schaltungstechnik ·
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TOFC100-xx.pdf
B TOTX197 TORX198 (2) TOCP100 - BTOCP100P - B DC to 6 670 Up to 40 ±55 5± 0.25 – 40 to 85 APF (980/1000) TOCP155- BTOCP155P- B TOTX170A (3)TORX170 TOCP100- BTOCP100P- B DC to 6 650 Up to 40 ±55 5± 0.25
in „TosLink als einfacher Datenlink“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_Puffer_Check_fix.asm
pins MOVWF ADCON1 ; as digital inputs bcf STATUS, RP0 ; unschalten auf Bank 0 bsf STATUS, RP0 movlw B'00000000' ; RA output movwf TRISA bcf STATUS, RP0 clrf PORTA bsf STATUS, RP0 movlw B'11000000' ;RB0-RB5 output movwf TRISB bcf STATUS, RP0 clrf PORTB bsf STATUS, RP0 movlw B'00001000' ; RC output movwf
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_abfragen_fix.asm
pins MOVWF ADCON1 ; as digital inputs bcf STATUS, RP0 ; unschalten auf Bank 0 bsf STATUS, RP0 movlw B'00000000' ; RA output movwf TRISA bcf STATUS, RP0 clrf PORTA bsf STATUS, RP0 movlw B'11000000' ;RB0-RB5 output movwf TRISB bcf STATUS, RP0 clrf PORTB bsf STATUS, RP0 movlw B'00001000' ; RC output movwf
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_abfragen_fix.asm
pins MOVWF ADCON1 ; as digital inputs bcf STATUS, RP0 ; unschalten auf Bank 0 bsf STATUS, RP0 movlw B'00000000' ; RA output movwf TRISA bcf STATUS, RP0 clrf PORTA bsf STATUS, RP0 movlw B'11000000' ;RB0-RB5 output movwf TRISB bcf STATUS, RP0 clrf PORTB bsf STATUS, RP0 movlw B'00010000' ; RC output movwf
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AND8020-D.PDF
where R1 R1 VEE = GND, V TT = 1.3 V, and 0 = 50 : Driver Receiver * T−Line Z * R2 + 50 ǒ 3.3 * 0 Ǔ+ 82.5 (eq. 20) 0 3.3 * 1.3 * T−Line 0 * R1 + 82.5 ǒ 3.3 * 1.3Ǔ + 126 (eq. 21) R2 R2 1.3 * 0 * or Twisted Pair and cross−checking for VTT V * V TT + VCC * 2.0V EE VTT + 3.3 ǒ 82.5 Ǔ + 1.3 V (eq. 22) (eq.
in „3.3V->PECL->1.8V High-speed Terminierung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ATmegaBOOT.c
responses we don't care about } /* Device Parameters DON'T CARE, DEVICE IS FIXED */ else if(ch=='B') { getNch(20); nothing_response(); } /* Parallel programming stuff DON'T CARE */ else if(ch=='E') { getNch(5); nothing_response(); } /* Enter programming mode */ else if(ch=='P') { nothing_response(
in „Bootloader startet überhaupt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D865GBF_D865GLC_TechProdSpec.pdf
Layouts Figure 1 shows the location of the major components on the Desktop Board D865GBF. A D E F H B C G I FF J EE DD K L CC M BB N AA Z Y W U S R Q P O X V T OM15914 A Auxiliary line-in connector Q Diskette drive connector B Audio codec R Parallel ATA IDE connectors C Front panel audio connector S
in „VS: Intel D865GBF, Pentium 4 (3GHz/1M/800) SL7PM, Matrox G45“ · Markt ·
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datasheet.pdf
1011110 1F0000–1F7FFF SA52 0110100 2A0000–2A7FFF SA95 1011111 1F8000–1FFFFF SA53 0110101 2A8000–2AFFFF SA96 1100000 300000–307FFF SA54 0110110 2B0000–2B7FFF SA97 1100001 308000–30FFFF SA55 0110111 2B8000–2BFFFF SA98 1100010 310000–317FFF SA56 0111000 2C0000–2C7FFF SA99 1100011 318000–31FFFF SA57 0111001 2C8000
in „S29GL064A Flash Speicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8583.pdf
PCF8583 15 PACKAGE OUTLINES DIP8: plastic dual in-line package; 8 leads (300 mil) SOT97-1 D M E n l p i a A s 2 A A 1 L c Z w M b 1 e (1 ) MH b b 8 5 2 pin 1 index E 1 4 0 5 10 mm scale DIMENSIONS (inch dimensions are derived from the original mm dimensions) UNIT A A1 A2 b b b c D (1) E(1) e e L M M
in „RTC PCF8583 einen Interrupt ausloesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8583_5_rtc_real_time_clock.pdf
PCF8583 15 PACKAGE OUTLINES DIP8: plastic dual in-line package; 8 leads (300 mil) SOT97-1 D M E n l p i a A s 2 A A 1 L c Z w M b 1 e (1 ) MH b b 8 5 2 pin 1 index E 1 4 0 5 10 mm scale DIMENSIONS (inch dimensions are derived from the original mm dimensions) UNIT A A1 A2 b b b c D (1) E(1) e e L M M
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PDF
PCF8583P.pdf
PCF8583 15 PACKAGE OUTLINES DIP8: plastic dual in-line package; 8 leads (300 mil) SOT97-1 D M E n l p i a A s 2 A A 1 L c Z w M b 1 e (1 ) MH b b 8 5 2 pin 1 index E 1 4 0 5 10 mm scale DIMENSIONS (inch dimensions are derived from the original mm dimensions) UNIT A A1 A2 b b b c D (1) E(1) e e L M M