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MRF89XAM8A.pdf
NP0, Johanson Technology500R07S220JV4 SMT 0402 C5 1.8 pF Capacitor, Ceramic, 50V, ±0.1 pF, UHIJohanson Technology 500R07S1R8BV4 NP0, SMT 0402 C6 — Designator not used — — C7 33 pF Capacitor, Ceramic, 50V
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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MCP1802.pdf
3.3V, C = 1 µF Ceramic (X7R), C = 1 µF Ceramic (X7R), I = 100 µA, R OUT IN L TA = +25°C, V IN = V R 1.0V, SOT-23-5. 0.925 0.920 VOUT= 0.9V 0°C VIN 2.0V 0.920 ILOAD 1 mA ) 0.915 VOUT= 0.9V V ( 0.910 e e g 0.915 a 0.905 l -45°C l +25 V 0.910 0°C +25°C V 0.900 t t -45°C p 0.905 p 0.895 +90°C u u 0.890 O 0.900
in „Spannungsregler LDO - Ausgangs-Spannung schaltet nicht 100% ab“ · Analoge Elektronik und Schaltungstechnik ·
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MCP1801.pdf
3.3V, C = 1 µF Ceramic (X7R), C = 1 µF Ceramic (X7R), I = 100 µA, R OUT IN L TA = +25°C, V IN= V R 1.0V, SOT-23-5. 0.920 0.920 VOUT= 0.9V VIN 2.0V 0.915 LOAD= 1 mA 0.915 VOUT= 0.9V V V 0.910 e 0°C e g 0.910 g 0.905 l l +25°C, -45°C V 0.905 o 0.900 t -45°C +25°C t p 0.900 p 0.895 0°C u u 0.890 +90°C O
in „USB-Spannungsversorgung lässt PIC24FJ128 abstürzen?“ · Mikrocontroller und Digitale Elektronik ·
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25040.pdf
executed latch, and the WRDI will reset the latch. WP line is low FIGURE 3-4: WRITE ENABLE SEQUENCE CS 0 1 2 3 4 5 6 7 SCK SI 0 0 0 0 0 1 1 0 High-impedance SO FIGURE 3-5: WRITE DISABLE SEQUENCE CS 0 1 2 3 4 5 6 7 SCK SI 0 0 0 0 0 1 10 0 SO High-impedance © 2006 Microchip Technology Inc. DS21204E-page 9
in „Eeprom Philip Pines Auslesen mit CH341“ · Fahrzeugelektronik ·
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ILD6150.pdf
5 LEDs 8 LEDs 3 LEDs 6 LEDs 9 LEDs 3 LEDs 6 LEDs 9 LEDs Duty Cycle versus V and number of LEDs S 1 0.9 0.8 0.7 [ l 0.6 y 0.5 y u 0.4 D 0.3 0.2 0.1 0 0 5 10 15 20 25 30 35 40 45 50 55 60 V [V] S 1 LED 4 LEDs 7 LEDs 10 LEDs 2 LEDs 5 LEDs 8 LEDs 3 LEDs 6 LEDs 9 LEDs Data Sheet 17 Revision 3.2, 2014-07-
in „Kondensatorgröße für 5V LED-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_MIC2875.pdf
Current VIN — 1 — mA Operating at minimum switching frequency VINShutdown Current VINSD — 1 3 μA VEN = 0V, IN= 5.5V,OUT = 0V VOUT Shutdown Current VOUTSD — 2 5 μA VEN = 0V, IN= 0.3V,OUT = 5.5V Output Voltage VOUT VIN — 5.5 V — Feedback Voltage VFB 0.8865 0.9 0.9135 V Adjustable versioOUT= 0A Voltage Accuracy
in „MI2875 PG-PIN“ · Analoge Elektronik und Schaltungstechnik ·
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25AA640A_25LC640A-MIC.pdf
CS 0 1 2 3 4 5 6 7 8 9 10 11 21 22 23 24 25 26 27 28 29 30 31 SCK Instruction 16-bit Address Data Byte 1 SI 0 0 0 0 0 0 1 0 15 14 13 12 2 1 0 7 6 5 4 3 2 1 0 CS 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46
in „Atmega 328p uint16_t auf EEPROM per SPI geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2016jnic.pdf
std Y+2, r16 ldi r24, 0x01 Y+3 and Y+4 (Y is the concatenation of the 0x0100 + size(.data) .bss rjmp .+2 registers r29 and r28). Then, jumps to 0x2c00. Store_data Load data 0x2c00 pop r29 Loads the new values at r17 and r16
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AVR_ISP_USER_GUIDE.PDF
bit hex. value to verify against. q Read back fuse bytes. x Fill unspecified locations with a value (0x00-0xff). The default is to not program locations not specified in the input files. af Flash address range. Specifies the address range of operations. The default is the entire Flash. Byte addresses.
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super_simpler_tasker.pdf
the initial priority */d */ SST_ISR_ENTRY(pin, TICK_ISR_PRIO); SST_post(TICK_TASK_A_PRIO, TICK_SIG, 0); /* post the Tick to Task A */ SST_post(TICK_TASK_B_PRIO, TICK_SIG, 0); /* post the Tick to Task B */ SST_ISR_EXIT(pin, outportb(0x20, 0x20)); } /*...................................................
in „Einfaches Multithreading für ATMEGAs“ · Projekte & Code ·
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PDF
PIC18Fxx2.pdf
/4 0 8 1 Sync with 1 Internal TMR0L RA4/T0CKI pin Clocks Programmable 0 Prescaler T0SE (2 CY delay) 3 PSA Set Interrupt T0PS2, T0PS1, T0PS0 Flag bit TMR0IF T0CS on Overflow Note: Upon RESET, Timer0 is enabled
in „AD1 und AD2 Multiplexen (PIC18F452)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73832T.pdf
O S 0 C = 4.7 µF, X7R Ceramic -0.25 O 0.00 -0.25 OUT COUT= 4.7 µF, X7R Ceramic -2 -0.30 -0.20 -0.30 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 4 6 8 1 1 1 1 1 2 2 4 6 8 1 1 1 1 1 2 Time (µs) Time (µs) FIGURE
in „LiPo-Charger mit MCP73832T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP73831-2_ENG_TDS.pdf
O S 0 C = 4.7 µF, X7R Ceramic -0.25 O 0.00 -0.25 OUT COUT= 4.7 µF, X7R Ceramic -2 -0.30 -0.20 -0.30 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 4 6 8 1 1 1 1 1 2 2 4 6 8 1 1 1 1 1 2 Time (µs) Time (µs) FIGURE
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AF143086415692en-000101.pdf
Compressors Electronic units & Applications Electronic units (voltages & code numbers) Compressors t 0 0 1 d C 0 C 0 r C 0 d C 0 I C 0 r C 0 C C 0 e & A i C 0 0 8 0 5 0 2 R134a Code a D 2 I D 2 t D 2 p D 2 E D 3 t D 3 a D 4 a D 4 n D 0 5 o D 6 6 x D 0 N x D 0 7 D 7 o D 7 o D 7 R404A/R507 * numbers n 4 N E 4 N h 4 N S 4 N O 4 N E h 4 N o 0 N o 5 N c 4 2 N m 4 N N N V 8 0 N V 8 N V N e V N e V N R600a ** S 2 0 2 0 i 2 0 i 2 0 A 2 0 A i 2 0 S 0 0 S 0 0 C - - 0 u 2 0 0 0 1 0 : 0 2 0 0 2 0 T 4 0 T 4 0 R290 *** 1 1 1 1 H 1 1 H 1 1 1 1 H 1 1
in „Kompressor für Campingkühlschrank - elektrischer Anschluss?“ · Fahrzeugelektronik ·
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PDF
Danfoss_Katalog_BLDC_Compressors.pdf
Compressors Electronic units & Applications Electronic units (voltages & code numbers) Compressors t 0 0 1 d C 0 C 0 r C 0 d C 0 I C 0 r C 0 C C 0 e & A i C 0 0 8 0 5 0 2 R134a Code a D 2 I D 2 t D 2 p D 2 E D 3 t D 3 a D 4 a D 4 n D 0 5 o D 6 6 x D 0 N x D 0 7 D 7 o D 7 o D 7 R404A/R507 * numbers n 4 N E 4 N h 4 N S 4 N O 4 N E h 4 N o 0 N o 5 N c 4 2 N m 4 N N N V 8 0 N V 8 N V N e V N e V N R600a ** S 2 0 2 0 i 2 0 i 2 0 A 2 0 A i 2 0 S 0 0 S 0 0 C - - 0 u 2 0 0 0 1 0 : 0 2 0 0 2 0 T 4 0 T 4 0 R290 *** 1 1 1 1 H 1 1 H 1 1 1 1 H 1 1
in „12V Kompressor Kühlbox - Steuerung defekt - eigenes Thermostat verwenden“ · Haus & Smart Home ·
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PDF
Sensirion_Humidity_SHT21_Datasheet_V4.pdf
4 0 to 100 %RH Long Term Drift 5 Typ. < 0.25 %RH/yr DRH (%RH) DT (°C) ± 10 ± 2.0 maximum accuracy maximum accuracy ± 8 typical accuracy ± 1.5 typical accuracy ± 6 ± 1.0 ± 4 ± 2 ± 0.5 ± 0 ± 0.0 0 10 20 30
in „Rechnung mit dem PIC16F“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sensirion_Humidity_Sensors_SHT25_Datasheet.pdf
4 0 to 100 %RH Long Term Drift 5 Typ. < 0.25 %RH/yr DRH (%RH) DT (°C) ± 10 ± 2.0 maximum accuracy maximum accuracy ± 8 typical accuracy ± 1.5 typical accuracy ± 6 ± 1.0 ± 4 ± 0.5 ± 2 ± 0 ± 0.0 0 10 20 30
in „SHT25 Feuchteanzeige über 100%“ · Mikrocontroller und Digitale Elektronik ·
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fn3082.pdf
placing the sensing The resistor values within the bridge are determined by the desired transistor in ice water and adjusting the zeroing potentiometer for a sensitivity. 000.0 reading. The sensor should then be placed in boiling wate and the scale-factor potentiometer adjusted for a 100.0 reading. FIGURE
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn3082.pdf
placing the sensing The resistor values within the bridge are determined by the desired transistor in ice water and adjusting the zeroing potentiometer for a sensitivity. 000.0 reading. The sensor should then be placed in boiling wate and the scale-factor potentiometer adjusted for a 100.0 reading. FIGURE
in „Muss ich beim ICL 7107 wirklich -5V einspeisen?“ · Analoge Elektronik und Schaltungstechnik ·
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ICL_7106_-_07_-_FN3082.pdf
sensing The resistor values within the bridge are determined by the desired sensitivity. transistor in ice water and adjusting the zeroing potentiometer for a 000.0 reading. The sensor should then be placed in boiling water and the scale-factor potentiometer adjusted for a 100.0 reading. FIGURE 17. ICL7107
in „Digitalmultimeter Modul mit 7107“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7106_7.pdf
sensing The resistor values within the bridge are determined by the desired sensitivity. transistor in ice water and adjusting the zeroing potentiometer for a 000.0 reading. The sensor should then be placed in boiling water and the scale-factor potentiometer adjusted for a 100.0 reading. FIGURE 17. ICL7107
in „ICL7107 - Funktionsweise?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
REN_icl7106-07-07s_DST_20251218.pdf
sensing The resistor values within the bridge are determined by the desired sensitivity. transistor in ice water and adjusting the zeroing potentiometer for a 000.0 reading. The sensor should then be placed in boiling water and the scale-factor potentiometer adjusted for a 100.0 reading. FIGURE 17. ICL7107
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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25AA128.pdf
CS 0 1 2 3 4 5 6 7 8 9 10 11 21 22 23 24 25 26 27 28 29 30 31 SCK Instruction 16-bit Address Data Byte 1 SI 0 0 0 0 0 0 1 0 15 14 13 12 2 1 0 7 6 5 4 3 2 1 0 CS 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46
in „SPI EEPROM -> Kein Page read :- O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
Units Test Conditions Voltage-to-Frequency Accuracy TC9400 TC9401 TC9402 Linearity 10 kHz — 0.01 0.05 — 0.004 0.01 — 0.05 0.25 % Output Deviation from Full Scale Straight Line Between Normalized Zero and Full Scale Input Linearity 100 kHz — 0.1 0.25 — 0.04 0.08 — 0.25 0.5 % Output Deviation from
in „Frequenz-Spannungswandler OP-Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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RDR-158.pdf
Minimum Efficiency in Active Mode of Operation Nameplate Output (P )NP (Rounded to Hundreds) ≤ 1 W ≥ 0.48 × NP+ 0.14 ≥ 0.0626 × ln (NP) + 0.622 > 1 W to ≤ 49 W [ln = natural log] > 49 W 0.87 Nameplate Output (P )NP Maximum No-load Input Power 0 to <50 W ≤ 0.3 W ≥50 to ≤250 W ≤ 0.5 W Low-voltage Models
in „Trafo oder schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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dimplex_la17-26ps_fd9202_de-gb-fr.pdf
/ 3,0 12,5 / 2,9 4 16,1 / 2,9 20,5 / 3,0 21,6 / 3,0 2 3 11,8 / 4,1 11,4 / 4,1 13,7 / 4,2 13,5 / 4,1 15,0 / 4,1 14,7 / 4,0 bei A10 / W35 kW / --- 4 19,6 / 3,8 19,2 / 3,8 23,4 / 4,0 23,2 / 3,9 26,2 / 4,0 25,9
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Novatek_NT96650.pdf
DR_A2 T2 DR_A3 A T1 DR_A5 I V1 DR_A7 O - DRAM address bus. W2 DR_A9 T R2 DR_A10 W1 DR_A12 F1 DR_DQM0 DRAM data mask: DQM0 corresponds to DQ0-DQ7 and J2 DR_DQS0 O - DQM1 corresponds to DQ8-DQ15. J1 DR_DQS0# I/O - DRAM data Etrobe. DQS0 corresponds to DQ0-DQ7 and C2 DR_DQS1# DQS1 corresponds to DQ8-DQ15
in „Unbekannte Firmware disassemblieren“ · Mikrocontroller und Digitale Elektronik ·
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70599B.pdf
(TRISGP2 (0x34<2>) = 1 and TRISGP1 (0x34<1>) = 1). (0x34<1>) = 1). 3. Set GPIO2 (0x33<2>) = 1 and GPIO1 3. Set GPIO2 (0x33<2>) = 0 and GPIO1 (0x32<1>) = 0. This enables the LNA and (0x32<1>) = 0. This disables the
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
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AN734.pdf
data movwf FSR0L ; memory address and offset value. movf Offset,W addwf FSR0L,F endm © 2008 Microchip Technology Inc. DS00734B-page 13 AN734 PRG CODE 0x00 goto Start INT1 CODE 0x08 goto Int INT2 CODE 0x18 goto Int MAIN
in „I2C example code“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADUC7019_7020_7021_7022_7024_7025_7026_7027_7028.pdf
27 of 92 ADuC7019/20/21/22/24/25/26/27/28 TYPICAL PERFORMANCE CHARACTERISTICS 1.0 1.0 fS = 774kSPS fS= 774kSPS 0.8 0.8 0.6 0.6 0.4 0.4 0.2 0.2 ) ) S 0 S 0 ( ( –0.2 –0.2 –0.4 –0.4 –0.6 –0.6 –0.8 0 –0.8 0 5 5 0 0 –1.0 –1.0 0 1000 2000 3000 4000 0 1000 2000 3000 4000 ADC CODES ADC CODES
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50002370A.pdf
BAUD Baud Crystal Frequency (MHz) Actual Baud Error Rate (%) 921600 16 941176 2.12 460800 16 457143 -0.79 307200 16 307692 0.16 230400 16 231884 0.64 115200 16 117647 2.1 57600 16 57145 -0.97 38400 16 38462 0.16 28800 16 28623 -0.62 19200 16 19231 0.16 14400 16 14480 0.55 9600 16 9615 0.16 4800 16 4808 0.16 2400 16 2399 -0.03 DS50002370A-page 18 Advance Information 2015 Microchip Technology Inc. RN4677 5.0 ORDERING INFORMATION Table 5-1 provides ordering information for the RN4677 module. TABLE 5-1
in „[V] 2St. Microchip Bluetooth4.0 Module RN4677“ · Markt ·
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PDF
MCP79521.pdf
HRONE2 HRONE1 HRONE0 HRTEN1 0Fh ALM0WKDAY ALM0PIN ALM0MSK2 ALM0MSK1 ALM0MSK0 ALM0IF WKDAY2 WKDAY1 WKDAY0 10h ALM0DATE — — DATETEN1 DATETEN0 DATEONE3 DATEONE2 DATEONE1 DATEONE0 11h ALM0MTH — — — MTHTEN0 MTHONE3 MTHONE2 MTHONE1
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP794xx.pdf
HRTEN1 0Dh ALM0WKDAY ALMPOL ALM0MSK2 ALM0MSK1 ALM0MSK0 ALM0IF WKDAY2 WKDAY1 WKDAY0 0Eh ALM0DATE — — DATETEN1 DATETEN0 DATEONE3 DATEONE2 DATEONE1 DATEONE0 0Fh ALM0MTH — — — MTHTEN0 MTHONE3 MTHONE2 MTHONE1 MTHONE0
in „MCP794xx EUI-64 Node Adresse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
waldbreitbach.pdf
ein Zubrot bei einer zwei- Im Sand 56, 53619 Rheinbreitbach, ten Arbeitsstelle. Darf man denn Tel.: (0 22 24) 7 64 82, Fax: (0 22 24) 90 02 92, das so einfach? Rechtsanwalt E-Mail: info@rheinkiesel.de, www.rheinkiesel.de Christof Ankele informiert über Layout, Satz und GYvonne Schneider, Rheinbreitbach
in „Trafo für mein nächstes Netzteil: Auf die Dauer hilft nur Power“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
22/14/6 29/21/13/5 28/20/12/4 27/19/11/3 26/18/10/2 25/17/9/1 24/16/8/0 U-0 U-0 U-0 U-0 U-0 U-0 U-0 U-0 31:24 — — — — — — — — U-0 U-0 U-0 U-0 U-0 U-0 U-0 U-0 23:16 — — — — — — — — R/W-0 R/W-0 R/W-0 R/W-0 R/W-0 R/W-0 R-0 R-0 15:8 BMXDKPBA<15:8> R-0 R-0 R-0 R-0 R-0 R-0 R-0
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
22/14/6 29/21/13/5 28/20/12/4 27/19/11/3 26/18/10/2 25/17/9/1 24/16/8/0 U-0 U-0 U-0 U-0 U-0 U-0 U-0 U-0 31:24 — — — — — — — — U-0 U-0 U-0 U-0 U-0 U-0 U-0 U-0 23:16 — — — — — — — — R/W-0 R/W-0 R/W-0 R/W-0 R/W-0 R/W-0 R-0 R-0 15:8 BMXDKPBA<15:8> R-0 R-0 R-0 R-0 R-0 R-0 R-0
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A300_25AA640A_25LC640A-MIC.pdf
±&OH(\%0ZW% > FDLF ; ; RH%\'037W)80G,6'\0JHO ; ; EL? 0±'GF, ED ZK,0E0NK(<W'0K,%\&0)\W8<7\0/W$0NW7$102<80/<(802\0'HSW8\%0;K8QK,08Q\0QW8SQ\%0W7\WD LD ZWS+W6\0/W$0QWN\0H,\0H70/H7\0\&OH(\%08K\02W7(0W80\,%(D PD 3K
in „SPI funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1703_MIC.pdf
-16: Dynamic Line Response. Current. 0.50 900 VOUT 5.0V ) VOUT 2.5V ) 0.45 A 800 ROUT 0.? ( 0.40 +130°C ( 700 e 0.35 n a +90°C r 600 l 0.30 +25°C u 500 V 0.25 t u 0.20 u 400 o i 300 o 0.15 +0°C C D 0.10 -45°C r 200 0.05 h 100 S 0.00 0 0 25
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP738312.pdf
O S 0 C = 4.7 µF, X7R Ceramic -0.25 O 0.00 -0.25 OUT COUT= 4.7 µF, X7R Ceramic -2 -0.30 -0.20 -0.30 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 4 6 8 1 1 1 1 1 2 2 4 6 8 1 1 1 1 1 2 Time (µs) Time (µs) FIGURE
in „MCP73832 Beschaltung für die Auswertung mit µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73811_2.pdf
O S 0 C = 4.7 µF, X7R Ceramic -0.25 O 0.00 -0.25 OUT COUT= 4.7 µF, X7R Ceramic -2 -0.30 -0.20 -0.30 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 4 6 8 1 1 1 1 1 2 2 4 6 8 1 1 1 1 1 2 Time (µs) Time (µs) FIGURE
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP_73831.pdf
O S 0 C = 4.7 µF, X7R Ceramic -0.25 O 0.00 -0.25 OUT COUT= 4.7 µF, X7R Ceramic -2 -0.30 -0.20 -0.30 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 4 6 8 1 1 1 1 1 2 2 4 6 8 1 1 1 1 1 2 Time (µs) Time (µs) FIGURE
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Low_Drop_Spannungsregler_MCP_1702-5002.pdf
-17: Dynamic Line Response. Current. 0.50 ) 600.00 0.45 VOUT= 5.0V A VOUT= 2.8V ) (500.00 R OUT 0.1 ( 0.40 +130°C n e 0.35 +90°C e 400.00 t 0.30 u o +25°C C 300.00 t 0.25 u u 0.20 +0°C r p 0.15 C 200.00 r -45°C r D 0.10 h 100.00 0.05 S 0.00
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12f1840_programming_41439A.pdf
. TABLE 4-1: COMMAND MAPPING Mapping Data/Note Command Binary (MSb … LSb) Hex Load Configuration x 0 0 0 0 0 00h 0, data (14), 0 Load Data For Program Memory x 0 0 0 1 0 02h 0, data (14), 0 Load Data For Data Memory x 0 0 0 1 1 03h 0, data (8), zero (6), 0 Read Data From Program Memory x 0 0 1 0 0 04h 0, data (14), 0 Read Data From Data Memory x 0 0 1 0 1 05h 0, data (8), zero (6), 0 Increment Address x 0 0 1 1 0 06h — Reset Address x 1 0 1 1 0 16h — Begin Internally Timed Programmxng 0 1 0 0 0 08h
in „PIC16LF1847 flashen mit ATmega / USBasp / Arduino Nano / ponyser?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1700.pdf
i1.6 O Q 1.4 1.194 TJ= - 40°C 1.192 1.2 1.0 1.190 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 Input Voltage (V) Input Voltage (V) FIGURE 2-1: Input Quiescent Current vs. FIGURE 2-4: Output Voltage vs. Input Input Voltage
in „ESP-01 mit LiPo betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1640.pdf
40.0 0.1 1.0 10.0 100.0 1000.0 Output Current (mA) DS22234B-page 2 2011 Microchip Technology Inc. MCP1640/B/C/D 1.0 ELECTRICAL † Notice: Stresses above those listed under “Maximum Ratings” may cause permanent
in „ESP32-C6 an 18650 Akku betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fs18hd.pdf
connection D = Pressure pump connection K = Float H = Height adjustment When working at temperatures below 0 °C and using the "D+S" Level Adapter do not use oil as the bath liquid. Condensing air will result in the formation of ice and thus affects the function of the float. 10 Downloaded from www.Manualslib.com
in „Kältekreislauf, komischer Regeleffekt?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
MT6252.pdf
GSM/GPRS Baseband Processor Data Sheet ConfidentialA 1MIXEDSYS_MON_DATA1 efo 1RF_TEST_EN_DCXlRelas GP0Key-pad row 2, KROW2unction 0DST2 ICE data M1UTXD3 X 1Reserved enon_WC GP0Configured as GPIO function 0BRXENad row 1, KROW1 1LSDA ICE clock 1Reserved GPIGPIO mode selection 0Key-pad row 0, KROasefotion
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dm00451014-controlling-a-triac-with-a-phototriac-stmicroelectronics.pdf
a ¼ W resistor is still fitting? C = 0.01 × 2 × P/V² = 47 nF, with P = 0.25 W and V = 230 √2 ¼W if the snubber capacitance C1 is above 47 nF, then a ½ W resistor has to be used (230 V mains). AN5114 - Rev 2 page 19/27 AN5114 Snubber sizing
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B1nn.pdf
\WN(7\08W$0 W7$10+(N08(&N0+\0'HSWN\<0/KNQ0NQ\0QWNSQ\<0W7\WD LD 20YK6,K)KSW,N0;QW7WSN\7K&NKSD ±D 3K8\,&KH,&030W,<0:E0<H0,HN0K,S'(<\08H'<0)'W&Q0H70O7HN7(&KH,&D0RH'<0)'W&Q0H70O7HN7(&KH,&0&QW''0,HN0\%S\\<0DFEF 0O\70&
in „IPL Lampe Blitzcounter rücksetzten“ · Mikrocontroller und Digitale Elektronik ·
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RCDN9.pdf
KIA79L12BP R945 3 G 1 1 ICE3BS03LJG 150K NC DGND 7 DGND 9 N 3 D936 p N C 1N4448W 22 5 1K8 1K8 0 u F B HV AMP_V R944 C948 C952 NC KTA1298Y 1 0 1 -12V 6 O 4 GATE VCC 7 0 Q924 0 0 -12V T 2 5 5 6 7 R908 6 4 0 4 2 3 IC95 R948 R949
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·