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PDF
AD1937.pdf
22 kHz 96 kHz mode, typical @ 96 kHz 0.3646 × S 35 kHz 192 kHz mode, typical @ 192 kHz 0.3646 × S 70 kHz Pass-Band Ripple 48 kHz mode, typical @ 48 kHz ±0.01 dB 96 kHz mode, typical @ 96 kHz ±0.05 dB 192 kHz mode, typical @ 192 kHz ±0.1 dB Transition Band 48 kHz mode, typical @ 48 kHz 0.5 ×Sf 24 kHz
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TAS5611.pdf
configuration at 4Ohm (6kHz) - 4Ohm (1kHz) 1%THD+N o – 130W Stereo into 3Ω o 1 D – 105W Stereo into 4Ω i – 70W Stereo into 6Ω m 0,1 H – 55W Stereo into 8Ω t - • >90% Efficient Power Stage With 60-mΩ +0,01 Output MOSFETs H T TC = 75 C • Self-Protection Design (Including CONFIG = BTL Undervoltage, Overtemperature
in „TAS5611 Layout erfahrung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps62200.pdf
100 95 O 95 VO= 1.8 V 90 V = 3.7 V 90 I VI= 2.7 V 85 85 80 VI= 5 V 80 % − 75 − 75 V = 3.7 V y y I n 70 n 70 c i f 65 fi 65 E E 60 60 VI= 5 V 55 55 50 50 45 45 40 40 0.010 0.100 1 10 100 1000 0.010 0.100 1 10 100 1000 I − Load Current − mA I −Load Current − mA L L Figure 6. Efficiency vs Load Current Figure
in „Schaltregler für 1,2 V (oder 1,5 V ?) aus Li-Ion-Akku“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XBee_Datasheet.pdf
20 cm 7.1 dB A24-F8NF Omni-directional (Fiberglass base station) 8.0 dBi Fixed 2 m 10.1 dB A24-F9NF Omni-directional (Fiberglass base station) 9.5 dBi Fixed 2 m 11.6 dB A24-F10NF Omni-directional (Fiberglass base station) 10.0 dBi Fixed 2 m 12.1 dB A24-F12NF Omni-directional (Fiberglass base station) 12.0 dBi Fixed 2 m 14.1 dB A24-F15NF Omni-directional (Fiberglass base station) 15.0 dBi Fixed 2 m 17.1 dB A24-W7NF Omni-directional (Base station) 7.2 dBi Fixed 2 m 9.3 dB A24-M7NF Omni-directional
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Datei
asm.txt
access to Backup domain */ SET_BIT(PWR->CR1, PWR_CR1_DBP); 8000d96: 4a36 ldr r2, [pc, #216] ; (8000e70 <HAL_RCC_OscConfig+0x588>) 8000d98: 4b35 ldr r3, [pc, #212] ; (8000e70 <HAL_RCC_OscConfig+0x588>) 8000d9a: 681b ldr r3, [r3, #0] 8000d9c: f443 7380 orr.w r3, r3, #256 ; 0x100 8000da0: 6013 str r3, [r2
in „NUCLEO-L432KC Blinky Projekt mit 11kB Speicherverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ON_Semiconductor_LSTTL_Data_DL121-D.pdf
pF Cext= 1000 pF Cext= 1000 pF 0.5 0.5 0.5 0⋅C –55⋅C –55⋅C K –55⋅C K K 0⋅C 0⋅C 25⋅C 0.45 0.45 0.45 70⋅C 25⋅C 25⋅C 70⋅C 70⋅C 125⋅C 125⋅C 0.4 0.4 0.4 125⋅C 0.35 0.35 0.35 4.5 5 5.5 4.5 5 5.5 4.5 5 5.5 VCC V RC V CC =VRC Figure 5. K versus V Figure 6. K versus V Figure 7. K versus V and V CC RC CC RC 100000
in „Tasterentprellung nach microcontroller.net“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
drv103.pdf
40 619k 124k 29.4k 50 681k 137k 33.2k DUTY CYCLE AND DUTY CYCLE ERROR 60 750k 150k 37.4k vs VOLTAGE 70 825k 165k 40.2k 100 2 80 887k 182k 44.2k 90 953k 196k 47.5k 90 1.5 95 1M 200k 49.9k 80 1 ) ) 70 ( TABLE III. Duty Cycle Adjust Resistance. ( 0.5 o l 60 E y 50 0 l y y DUTY CYCLE vs R PWM u 40 –0.5 C
in „PWM Signal wie stell ich das ein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „Kennt sich irgendwer mit CVAVR aus, geht um DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DAL.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „DS1820 physikalisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „CVAVR und DS1820 nix als Ärger!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1820.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „1-Wire und DS1820 Testprog“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDS_DS18S20.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „2x HW Uart / Sinnvoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DA-Converter.pdf
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 3) 500 mW DC Voltage Applied to Part numbers with “LCV” suffix 0˚C to +70˚C Part numbers with “LCJ” suffix −40˚C to
in „Problem mit DA-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc1549_.pdf
full operating free-air temperature range. The TLC1549C is characterized for operation from 0⋅C to 70⋅C. The TLC1549I is characterized for operation from –40⋅C to 85⋅C. The TLC1549M is characterized for operation over the full military temperature range of –55⋅C to 125⋅C. AVAILABLE OPTIONS PACKAGE TA SMALL OUTLINE CHIP CARRIER CERAMIC DIP PLASTIC DIP (D) (FK) (JG) (P) 0⋅C to 70⋅C TLC1549CD — — TLC1549CP –40⋅C to 85⋅C TLC1549ID — — TLC1549IP –55⋅C to 125⋅C — TLC1549MFK TLC1549MJG — Please be aware that an important notice concerning availability, standard warranty, and use in
in „10 Bit ADC (seriell) wie TLC1549 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS79630.pdf
FREQUENCY EN 1 IN 2 6 IN 2 7 NC 80 0.7 GND 3 GND OUT 3 6 GND VIN= 4 V H VIN= 5.5 V OUT 4 OUT 4 5 NR 70 COUT= 10 μ F V 0.6 COUT= 2.2 μ F NR/FB 5 60 OUT= 1 mA CNR= 0.01 μ F − CNR = 0.1 μ F B t 0.5 − 50 n i OUT= 1 A D 0.4 KTT (DDPAK) PACKAGE c 40 s e o 0.3 (TOP VIEW) l 30 a IOUT= 1 mA p c 0.2 EN 1 R 20 p
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „DS1820 Umrechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „1-Wire Protokollablauf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1803.pdf
CHARACTERISTICS 0 0.2 −10 −20 0.0 −30 B B −0.2 d −40 d − − d d −0.4 i −50 i p p m −60 m A A −0.6 −70 −80 −0.8 −90 −100 −1.0 0.0 0.1 0.2 0.3 0.4 0 1 2 3 4 Normalized Frequency [× S /1000] Normalized Frequency [×Sf /1000] G005 G006 Figure 5. Figure 6. 7 Submit Documentation Feedback PCM1803 www.ti.com
in „PCM1803 Audio ADC ewige Einschwingzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1803.pdf
CHARACTERISTICS 0 0.2 −10 −20 0.0 −30 B B −0.2 d −40 d − − d d −0.4 i −50 i p p m −60 m A A −0.6 −70 −80 −0.8 −90 −100 −1.0 0.0 0.1 0.2 0.3 0.4 0 1 2 3 4 Normalized Frequency [× S /1000] Normalized Frequency [×Sf /1000] G005 G006 Figure 5. Figure 6. 7 Submit Documentation Feedback PCM1803 www.ti.com
in „ADC (PCM1803) rauscht bei hoher Abtastrate“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820_eng-ds.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „DS18S20, DS18B20, DS1820?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DALLAS.pdf
DD =3.6V to 5.5V) PARAMETER SYMBOL CONDITION MIN TYP MAX UNITS NOTES Thermometer Error t –0⋅C to +70⋅C 〉 / ⋅C ERR 2 – 55⋅C to 0⋅ and +70⋅C to See Typical Curve 1, 9, 10 +125⋅C Input Logic High VIH 2.2 5.5 V 2, 3 Input Logic Low VIL –0.3 +0.8 V 2, 4 Sink Current L VI/O=0.4V –4.0 mA 2 Standby Current
in „18x20 welches Messprinzip“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps61046.pdf
Characteristics V IN3.6 V, V OUT = 12 V, T J –40°C to 125°C, unless otherwise noted. 100 100 90 90 80 80 70 70 ) ) ( 60 ( 60 c c e 50 e 50 i i f 40 f 40 E E 30 30 VIN = 1.8 V 20 VIN = 3.0 V 20 VOUT = 5 V 10 VIN = 3.6 V 10 VOUT = 12 V VIN = 4.2 V VOUT = 24 V 0 0 0.0001 0.001 0.01 0.1 1 0.0001 0.001 0.01 0.1
in „Ruhestrom Spannungswandler DC DC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
127135 I ' 1NF R70e0 w RD-1-12V M 3 6 Z 2 h R7171 R7170 |5 *WEPF W 20 RD+12v 7097 IÜA 22014/F0[1E Rmm W49 7 mm.E2DD1 51'“ 1717D13e40 ,Q E IIII0R70saDRQ u VR70D4 n I5 C017R »v 17 RD»12v RURGV 10K0 RD-1-12V 50K o C7104 c
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PDF
ucc28c43.pdf
14.5V / 9.0V UCC38C42D UCC38C42P UCC38C42DGK 100% 8.4V / 7.6V UCC38C43D UCC38C43P UCC38C43DGK 0°C to 70°C 7.0V / 6.6V UCC38C40D UCC38C40P UCC38C40DGK 14.5V / 9.0V UCC38C44D UCC38C44P UCC38C44DGK 50% 8.4V / 7.6V UCC38C45D UCC38C45P UCC38C45DGK 7.0V / 6.6V UCC38C41D UCC38C41P UCC38C41DGK †D (SOIC−8) and
in „SNT will nicht anlaufen - falsches TI Datenblatt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
Sheet 35 of 88 5 4 3 2 1 5 4 3 2 1 SSID = User.Interface D D TPM board CONN TPM1 +3.3V_RUN 11 1 [24,37,70] LPC_LAD0 LPC_LAD0 2 SB-1022 [24,37,70] LPC_LAD1 LPC_LAD1 3 C [24,37,70] LPC_LAD2 LPC_LAD2 4 C Add R3601 [24,37,70] LPC_LAD3 LPC_LAD3 5 [24,37,70] LPC_LFRAME# LPC_LFRAME# 6 DY PLT_RST# R3601 1 2 PLT_RST
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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Datei
oe2chl.txt
!...i.uU.| 00004550 11 d2 5d f3 01 1c e5 55 70 02 a1 63 d5 e0 02 a1 |..]....Up..c....| 00004560 9e a1 9e d1 1c 69 ce 75 55 00 11 d2 5e 12 01 1c |.....i.uU...^...| 00004570 e5 55 70 02 a1 9e d5 e0 02 a1 9e a1 9e d1 1c 69 |.Up............i| 00004580
in „LED Laufschrift Software“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OTM3225A.pdf
DTE bit is summarized at Table 6-6 Table 6-6 APE DTE Gate Output 1 0 VGL 1 VGH/VGL BASEE: To enable Base image display BASEE Display 0 (1) Non-lit display (2) Partial image display 1 Base image is display on the LCD PTDE1-0: To set the partial-display enables function. PTDE [0]: “0” Partial image 1 display
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
DSA00206265.pdf
kg L SST39C1010 SST39C1011 0.9 4 0.8 5 1.4 0.65 17 6 0.17 31 SST39C1020 SST39C1021 0.9 6 0.6 10 3 0.70 17 6 0.17 31 SST39C1030 SST39C1031 0.9 11 0.3 37.5 11 0.70 17 6 0.17 31 SST40C1010 SST40C1011 0.9 4 0.8 5 5 1.15 17 6 0.17 31 SST40C1020 SST40C1021 0.9 9.6 0.4 24 26 1.20 17 6 0.17 31 SST40C1030 SST40C1031
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tms320lf2407a.pdf
ÈÈÈÈÈÈÈÈÈ 04FF Digital I/O Control Register7090−709F 0500 ÈÈÈÈÈÈÈÈÈ Illegal ADC Control Registers 70A0−70BF 07FF ÈÈÈÈÈÈÈÈÈ ÈÈÈÈÈÈÈÈÈ 0800 SARAM (2K) Illegal 70C0−70FF ÈÈÈÈÈÈÈÈÈ 0FFF CAN Control Registers 7100−710E 1000 ÈÈÈÈÈÈÈÈÈ ÈÈÈÈÈÈÈÈÈ Illegal Illegal 710F−71FF 6FFF 7000 ÈÈÈÈÈÈÈÈÈ ÈÈÈÈÈÈÈÈÈ CAN Mailbox
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
max232.pdf
PDIP (N) Tube of 25 MAX232N MAX232N Tube of 40 MAX232D SOIC (D) Reel of 2500 MAX232DR MAX232 0°C to 70°C Tube of 40 MAX232DW SOIC (DW) Reel of 2000 MAX232DWR MAX232 SOP (NS) Reel of 2000 MAX232NSR MAX232 PDIP (N) Tube of 25 MAX232IN MAX232IN Tube of 40 MAX232ID SOIC (D) MAX232I −40°C to 85°C Reel of 2500
in „Problem mit RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
PDIP (N) Tube of 25 MAX232N MAX232N Tube of 40 MAX232D SOIC (D) Reel of 2500 MAX232DR MAX232 0°C to 70°C Tube of 40 MAX232DW SOIC (DW) Reel of 2000 MAX232DWR MAX232 SOP (NS) Reel of 2000 MAX232NSR MAX232 PDIP (N) Tube of 25 MAX232IN MAX232IN Tube of 40 MAX232ID SOIC (D) MAX232I −40°C to 85°C Reel of 2500
in „CES Hautwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina169.pdf
n –55° l G = 10 c40 t G = 25 i T –1 u Q20 Use the INA169 with (V+) > 40V –2 0 0 10 20 30 40 50 60 70 0 10 20 30 40 50 60 70 Power-Supply Voltage (V) Power-Supply Voltage (V) INA139, INA169 4 www.ti.com SBOS181D TYPICAL CHARACTERISTICS (Cont.) At TA= +25°C, V+ = 5V, IN+= 12V, and L = 25kΩ, unless otherwise
in „Stromaufnahme von Digitaleservo mit ADC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt6_06.pdf
UCB1200 PS/2 16 TTL mouse or RS232 RS232 Ethernet I/O ports keyboard serial port 1serial port 3 10 Base-T Ext IrDA / CompactFlash/ MMC CAN UART SSP RTC PCMCIA-Adaption interface interface serial port 2serial port 4 +3V3 Regulator +24V +12V Power Fuse Filter Regulator Supply +5V Regulator MT6N (MT606)
in „CAN-Bus Ansteuerung über C# - Compact Framework“ · Softwareentwicklung ·
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Datei
sfr32c83.h
addr 00dfH /* Group 0 time measuring control register7 */ #pragma ADDRESS g0bt_addr 00e0H /* Group 0 base timer register */ #pragma ADDRESS g0bcr0_addr 00e2H /* Group 0 base timer control register0 */ #pragma ADDRESS g0bcr1_addr 00e3H /* Group 0 base timer control register1 */ #pragma ADDRESS g0tpr6_addr
in „Timer funktioniert nicht ( M32C83 )“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bestandsliste.pdf
DIL 16 2Stk 1,43 € 2,86 € 1771 SAS560 Sensortasten Baustein DIL 16 2 Stk 1,41 € 2,82 € 1772 SIMM1M-70 SIMM RAM Modul 1MB 70nS 45Stk 3,15 € 141,86 € 1773 SIMM256K-70 SIMM RAM Modul 256KB 70/80nS 12Stk 0,00 € 0,03 € 1774 EDO1MX32-60 SIMM RAM Modul 4MB 60nS PS2 o.Parity 3Stk 3,36 € 10,09 € 1775 TL7705 Spannungregler
in „Auflösung Elektronik Shop“ · Markt ·
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PDF
MC145012.pdf
Current (per Package) IDD During Strobe On, IRED Off 12.0 — 2.0 mA (Does Not Include IRED Current into Base of Q1) Configured per Figure 8 During Strobe On, IRED On 12.0 — 3.0 Configured per Figure 8 Low-Level Input Voltage I/O V 9.0 — 1.5 V IL Feedback 9.0 — 2.7 Test 9.0 — 7.0 High-Level Input Voltage I/
in „Lithiumbatterien in Rauchmeldern - gefährlich?“ · Haus & Smart Home ·
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Datei
startup_stm32f40xx.lst
STM32F4xx_DSP_StdPeriph_Lib_V1.3.0\Libraries\CM SIS\Device\ST\STM32F4xx\Source\Templates\arm\startup_stm32f40xx.s __heap_base 00000000 Symbol: __heap_base Definitions At line 56 in file ..\..\STM32F4xx_DSP_StdPeriph_Lib_V1.3.0\Libraries\CMS IS\Device\ST\STM32F4xx\Source\Templates\arm\startup_stm32f40xx.s Uses None Comment: __heap_base unused __heap_limit 00000200 Symbol: __heap_limit Definitions At line 58 in file ..\..\STM32F4xx_DSP_StdPeriph_Lib_V1.3.0\Libraries\CMS IS\Device\ST\STM32F4xx\Source\Templates\arm\startup_stm32f40xx.s
in „Stm32f4 UART löst kein receive Interrupt aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BH1415F.pdf
Pin1,22 Pre-emphasis time constant set up ranget PRE − − 155 µsec Pin2,21 Transmission frequency fTX 70 − 120 MHz Pin9,11 Control terminal "H" level input voltageVIH 0.8VCC − V CC V Pin15,16,17,18 Control terminal "L" level input voltageVIL GND − 0.2VCC V Pin15,16,17,18 BH1415F Audio ICs zBlockdiagram
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PDF
23861038920081.pdf
end, 175KHz improves range Environmental Sense & Control 10mW Transmit RF power output Vehicle to Base Station Data Transfer Serial Input & Output for transparent data transmission Remote Data Acquisition Low operating voltage - 3.6 Volts – Single Lithium Cell Electronic Point of Sale equipment Low power
in „2 AVR`s per Funk vernetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ER400TRS.pdf
range Environmental Sense & Control 10mW Transmit RF power output, -105dBm sensitivity Vehicle to Base Station Data Transfer Serial Input & Output for transparent data transmission Remote Data Acquisition Low operating voltage - 3.6 Volts – Single Lithium Cell Electronic Point of Sale equipment Low power
in „funkkomunikation zwischen 2 atmels?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
er400trs.pdf
typically -105dBm @ 19.2 Kbps Environmental Sense & Control 10mW Transmit RF power output Vehicle to Base Station Data Transfer Serial Input & Output for transparent data transmission Remote Data Acquisition Low operating voltage - 3.6 Volts – Single Lithium Cell Electronic Point of Sale equipment Low power
in „Datenübertragung mittels ASK“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slyt086.pdf
support.ti.com Customers should obtain the latest relevant information before TI Semiconductor KnowledgeBase Home Page placing orders and should verify that such information is current support.ti.com/sc/knowledgebase and complete. All products are sold subject to TI's terms and Product Information Centers
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PDF
uDRIVE-uSD-G1-DS-rev2.pdf
Video and Image file storage card can be at (FAT based) file levels or at raw disk • GPS type data base storage byte levels. Applications can range from data logging, program storage, music files, image and • Industrial, medical, automotive, security and video files or any type of general purpose data
in „Speichergrößenproblem mit XE164- Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB-4750.pdf
Channels 2 independent 32-bit counters (low 16bit by hardware and high Resolution 16bit by firmware) Base Clock Internal 20MHz max. 2 independent program- mable clock sources Frequency Measurement Input frequency from 0.1Hz to 8Mhz External Input Divide 2 to 65535 A.4 General 10-pin screw terminal *4 I/
in „Avantec USB-4750 32-Channel Isolated Digital I/O USB Module“ · PC Hard- und Software ·
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PDF
mic5205.pdf
Regulation L = 0.1mA to 150mA, Note 5 0.02 0.2 % 0.5 % V INV O Dropout Voltage, Note 6 L = 100µA 10 50 mV 70 mV L= 50mA 110 150 mV 230 mV L= 100mA 140 250 mV 300 mV I= 150mA 165 275 mV L 350 mV I Quiescent Current V ≤ 0.4V (shutdown) 0.01 1 µA GND EN VEN≤ 0.18V (shutdown) 5 µA I Ground Pin Current, Note 7 V
in „schalten eines 3v3 Spannungsreglers mit 2 Transistoren (funktioniert nicht richtig)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arduino_Cheat_Sheet_fuer_ESP32_V3c.pdf
PC bzw. RX/TX bool digitalRead (pin) sin (rad) cos (rad) tan (rad) } * mal / geteilt sqrt (x) pow (base, exponent) begin (long speed)//bis 921600Bit/s void loop ( ) { % Modulo (Rest der GZ-Division) digitalWrite (pin, [HIGH, LOW]) int constrain(x, minval, maxval) begin (speed, config) //Config z.B. //
in „ESP32 Arduino Cheat Sheet (aktuell für BSP3.x)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino_Cheat_Sheet_fuer_ESP32_V3d.pdf
PC bzw. RX/TX bool digitalRead (pin) sin (rad) cos (rad) tan (rad) } * mal / geteilt sqrt (x) pow (base, exponent) begin (long speed)//bis 921600Bit/s void loop ( ) { % Modulo (Rest der GZ-Division) digitalWrite (pin, [HIGH, LOW]) int constrain(x, minval, maxval) begin (speed, config) //Config z.B. //
in „ESP32 Arduino Cheat Sheet (aktuell für BSP3.x)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino_Cheat_Sheet_fuer_ESP32_V3e.pdf
PC bzw. RX/TX bool digitalRead (pin) sin (rad) cos (rad) tan (rad) } * mal / geteilt sqrt (x) pow (base, exponent) begin (long speed)//bis 921600Bit/s void loop ( ) { % Modulo (Rest der GZ-Division) digitalWrite (pin, [HIGH, LOW]) int constrain(x, minval, maxval) begin (speed, config) //Config z.B. //
in „ESP32 Arduino Cheat Sheet (aktuell für BSP3.x)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino_Cheat_Sheet_fuer_ESP32_V3e_PDF_A.pdf
PC bzw. RX/TX bool digitalRead (pin) sin (rad) cos (rad) tan (rad) } * mal / geteilt sqrt (x) pow (base, exponent) begin (long speed)//bis 921600Bit/s void loop ( ) { % Modulo (Rest der GZ-Division) digitalWrite (pin, [HIGH, LOW]) int constrain(x, minval, maxval) begin (speed, config) //Config z.B. //
in „ESP32 Arduino Cheat Sheet (aktuell für BSP3.x)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bh1415f.pdf
Pin1,22 Pre-emphasis time constant set up ranget PRE − − 155 µsec Pin2,21 Transmission frequency fTX 70 − 120 MHz Pin9,11 Control terminal "H" level input voltageVIH 0.8VCC − V CC V Pin15,16,17,18 Control terminal "L" level input voltageVIL GND − 0.2VCC V Pin15,16,17,18 BH1415F Audio ICs zBlockdiagram
in „Stereo-HF-Transmitter fürs Autoradio“ · HF, Funk und Felder ·