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ST6265C.pdf
power-on V +50 mV 4.1 4.3 V up dn Vdn LVDthresholdinpowerdown 3.6 3.8 Vup -50 mV V V = 5.0V; I = +10µA 0.1 Low Level Output Voltage DD OL All Output pins VDD= 5.0V;OL = + 5mA 0.8 VDD= 5.0V;OL = + 10mAv 1.2 V OL VDD= 5.0V;OL = +10µA 0.1 V Low Level Output Voltage V = 5.0V; I = +10mA 0.8 30 mA Sink I/
in „Code Space Overlap Fehler“ · Mikrocontroller und Digitale Elektronik ·
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ina121.pdf
FREQUENCY 60 120 G=1000V/V 50 ) ( 100 40 n G = 1000V/V G=100V/V t e 80 B 30 e G = 100V/V ( R i 20 d 60 a G=10V/V o G 10 - o 40 m G = 10V/V 0 G=1V/V o C 20 –10 G = 1V/V –20 0 1k 10k 100k 1M 10M 10 100 1k 10k 100k 1M Frequency (Hz) Frequency (Hz) POSITIVE POWER SUPPLY REJECTION NEGATIVE POWER SUPPLY REJECTION
in „Pulsmessung über Kontaktflächen“ · Mikrocontroller und Digitale Elektronik ·
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NItut_2856.pdf
cost of field wiring. A variety of I/O types are available including ±80 mV thermocouple inputs, ±10 V simultaneous sampling analog inputs/outputs, 24 V industrial digital I/O with up to 1 A current drive, differential/TTL digital inputs with 5 V regulated supply output for encoders, and 250 V rmsuniversal
in „NI(LabView): Compact RIO FPGA Hardware“ · FPGA, VHDL & Co. ·
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Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
PSU5 VIN5ND B P2 0200nF B C1C 220nF/275V 2COR1 PSUGND PSUGND PSUGND PIC101 PIC1020 100R VD9D 4 0 9 10 2 PIT10PIT10PIVD901 PIVD902 PIL5PIL502 PSU15 PIL1PIL103 . OC F R191 L5L5 2 1 2 .2 047k SR1100 C0C181 C1C25 0C2727 PSUGND 8 21CCC9 PIRPIR10P0I1C1202C2IC1201/ C0470uF/ 35V 0100nF 0 CR 1 R10 5112 220pF
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bk_2610_2636_datasheet.pdf
Max. (Positive or Negative) Peak Mode: Output Voltage: 100mV/dB; 5V DC re FSD; 7V Measurement Range: 10 V to 30V FSD se- Dynamic Range: +20 to –40dB re FSD (10mA) max. lectable in accurate 10 ±0.05dB steps Accuracy: ±0.2dB typ. See Fig.6 Output Impedance: ~50 Indication Ranges: 0 to 10 and 1 to 30 loga
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TDA5144.pdf
in saturation voltagIO= −100 mA − − 180 mV between upper transistors LIM current limiting VVMOT = 10 V; O = 1.2 1.8 2.0 2.5 A r rise time switching output VVMOT = 15 V; see Fig.6 5 10 15 s f fall time switching output VVMOT = 15 V; see Fig.6 10 15 20 s V diode forward voltage (diode DI = −500 mA; −
in „BLDC Motor Treiber Geschwindihkeitsregelung“ · Mikrocontroller und Digitale Elektronik ·
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LCW_CQ7P.CC.pdf
Surge current t ≤50 ms, D = 0.016, TS=25°C Reverse Current* R 200 mA Sperrstrom* (max.) * A minimum of 10 h of reverse operation is permissable in total. Eine Gesamtbetriebszeit von wenigstens 10 h in Sperrrichtung ist gewährleistet. 2011-12-23 4 Released LCW CQ7P.CC Kennwerte Characteristics (TS = 25 °C
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leitfaden_laserstrahlung.pdf
Laserstrahlen - Kurze Expositionsdauer < 10 s Wellenlänge [nm] n Dauer [s] u f -13 -11 -11 -9 -9 -7 -7 -5 -5 -5 -5 -3 -3 1 Ö 10 - 10 10 - 10 10 - 10 10 - 1,8 · 10 1,8 · 10 - 5 · 10 5 · 10 - 10 10 – 10 UV-C 180 - 280 280 - 302 H = 30 [J m ] -2
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MPU-6050.pdf
Components Component Label Specification Quantity Regulator Filter Capacitor (Pin 10) C1 Ceramic, X7R, 0.1µF ±10%, 2V 1 VDD Bypass Capacitor (Pin 13) C2 Ceramic, X7R, 0.1µF ±10%, 4V 1 Charge Pump Capacitor (Pin 20) C3 Ceramic, X7R, 2.2nF ±10%, 50V 1 VLOGIC Bypass Capacitor (Pin 8) C4
in „MPU 6050 Gyrosensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PS-MPU-6000A-00v3.4.pdf
Components Component Label Specification Quantity Regulator Filter Capacitor (Pin 10) C1 Ceramic, X7R, 0.1µF ±10%, 2V 1 VDD Bypass Capacitor (Pin 13) C2 Ceramic, X7R, 0.1µF ±10%, 4V 1 Charge Pump Capacitor (Pin 20) C3 Ceramic, X7R, 2.2nF ±10%, 50V 1 VLOGIC Bypass Capacitor (Pin 8) C4
in „Neigungswinkelinkelmessung beweglicher Teile“ · Analoge Elektronik und Schaltungstechnik ·
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341001.pdf
, more than Vertical Porch = 2 and Horizontal Porch = 4. LD-20302A -10 Note 4) Horizontal Porch(R16h)(POR=9F86h) R/W DC IB15 IB14 IB13 IB12 IB11 IB10 IB9 IB8 IB7 IB6 IB5 IB4 IB3 IB2 IB1 IB0 W 1 1 0 0 1 1 1 1 1 1 0 HBP5 HBP4 HBP3 HBP2 HBP1 HBP0 POR 1 0 0 1 1 1 1 1 1 0 0
in „TFT Display Ansteuern, Tipps und Tricks“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
, more than Vertical Porch = 2 and Horizontal Porch = 4. LD-20302A -10 Note 4) Horizontal Porch(R16h)(POR=9F86h) R/W DC IB15 IB14 IB13 IB12 IB11 IB10 IB9 IB8 IB7 IB6 IB5 IB4 IB3 IB2 IB1 IB0 W 1 1 0 0 1 1 1 1 1 1 0 HBP5 HBP4 HBP3 HBP2 HBP1 HBP0 POR 1 0 0 1 1 1 1 1 1 0 0
in „Outdoor Displayauswahl“ · Mikrocontroller und Digitale Elektronik ·
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w25q32fv_revh_091613.pdf
Output Byte 1 Byte 2 Byte 3 Byte 4 Byte 5 Byte 6 Clock Number (0, 1) (2, 3) (4, 5) (6, 7) (8, 9) (10, 11) Write Enable 06h Volatile SR Write Enable 50h Write Disable 04h Read Status Register-1 05h (S7-S0)2) (4) (4) Write Status Register-1 01h (S7-S0) (2) Read Status Register-2 35h (S15-S8) Write Status
in „micro SDHC Breakout“ · Mikrocontroller und Digitale Elektronik ·
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MLX90614ESF-BAA.pdf
...................................................................................................10 8.1 Block diagram....................................................................................................................................................................................10
in „Wärmebildkamera für Arme“ · Mikrocontroller und Digitale Elektronik ·
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HMC6352.pdf
Sleep Mode (Vsupply = 3.0V) 1 µA Steady State (Vsupply = 3.0V) 1 mA Steady State (Vsupply = 5.0V) 2 10 mA Dynamic Peaks mA Field Range (2) Total applied field 0.10 - 0.75 gauss Heading Accuracy HMC6352 2.5 degRMS Heading Resolution 0.5 deg Heading Repeatability 1.0 deg Disturbing Field Sensitivity starts
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Datei
NRF24_SendRcvMIesp.ino
Sending Limit:")); DEBUG_OUT.println(Limit); UsrData[0]=0x5A;UsrData[1]=0x5A;UsrData[2]=100;//0x0a;// 10% limit UsrData[3]=((Limit*10) >> 8) & 0xFF; UsrData[4]= (Limit*10) & 0xFF; //WR needs 1 dec= zB 100.1 W size = hmPackets.GetCmdPacket((uint8_t *)&sendBuf, dest >> 8, DTU_RADIO_ID >> 8, Cmd, UsrData,5
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NRF24_SendRcvMIesp.ino
Sending Limit:")); DEBUG_OUT.println(Limit); UsrData[0]=0x5A;UsrData[1]=0x5A;UsrData[2]=100;//0x0a;// 10% limit UsrData[3]=((Limit*10) >> 8) & 0xFF; UsrData[4]= (Limit*10) & 0xFF; //WR needs 1 dec= zB 100.1 W size = hmPackets.GetCmdPacket((uint8_t *)&sendBuf, dest >> 8, DTU_RADIO_ID >> 8, Cmd, UsrData,5
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NRF24_SendRcvMIesp.ino
Sending Limit:")); DEBUG_OUT.println(Limit); UsrData[0]=0x5A;UsrData[1]=0x5A;UsrData[2]=100;//0x0a;// 10% limit UsrData[3]=((Limit*10) >> 8) & 0xFF; UsrData[4]= (Limit*10) & 0xFF; //WR needs 1 dec= zB 100.1 W size = hmPackets.GetCmdPacket((uint8_t *)&sendBuf, dest >> 8, DTU_RADIO_ID >> 8, Cmd, UsrData,5
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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ths4509.pdf
Figure 8 HD , G = 10 dB vs Output Voltage Figure 9 2 HD 3 G = 10 dB vs Output Voltage Figure 10 HD 2 G = 10 dB vs Common-Mode Input Voltage Figure 11 HD 3 G = 10 dB vs Common-Mode Input Voltage Figure 12 IMD 2 G = 6 dB,
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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iC-JX.pdf
I/O LOGIC I/O STAGE 7 VREF VREF IH1 IO7 IH2 INTERFACE SCF1 I/O LOGIC I/O STAGE 8 IO8 FH(1:0) PN(11:10) VB3 BLFQ FREQUENCY NIBBLE 2 I/O LOGIC I/O STAGE 9 IO9 CLK DIVIDER I/O LOGIC I/O STAGE 10 NIOL IO10 IL0 IL1 I/O LOGIC I/O STAGE 11 IO11 RSET IL2 IBIAS VREFAD I/O LOGIC I/O STAGE 12 IO12 SCF2 PN(21:20
in „iC-JX: fertige GPIO / bidirektionale Pegelwandler für 12/24V und High-Side Treiber“ · Mikrocontroller und Digitale Elektronik ·
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Klima-erdgeschichte_01_2003.pdf
Venus und Erde bei der Akkretion etwa gleich 20 viel CO 2erworben haben. Auf der Venus gibt es etwa 6x10 kg CO 2 Wenn man alle oberflächennahen Resevoirs der Erde addiert, ergibt sich eine Äquivalentmenge von 8x10 19 kg CO (Abb. 4.). Die Differenz, etwa der Faktor 7, steckt wahrscheinlich noch 2 im Erdmantel
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VHF-COMM.1983.3.pdf
PO &., 1S0 rOORt,,.,;. VIJ I.S2 Te?·~·B,lS2 Fed , Rep, of Germany Bel gi um COMEl EC D \'!Imu~ RUL10·.JlI'~.2 Telephones (9 \ 33) 855,856 7000 MONS Tel 0653t 609 7 Sr(H(loOhQusOru:~els~Sh'(>nwQQ ~'6 8·£2' 18 GENr PCROO( )'lOJt2~7CCP To)1 (0'91 ,3 1 2 1 1 1 Publlshet: Terry Bittan. OJ 0 8 0 O~nmark Fl.o
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pca9545.pdf
transactions Data is transmitted to the PCA9545 control register using the write mode as shown in Figure 10. SLAVE ADDRESS CONTROL REGISTER SDA S 1 1 1 0 0 A1 A0 0 A X X X X B3 B2 B1 B0 A P start condition R/W acknowledge acknowledge stop condition from slave from slave SW00760 Figure 10. WRITE control register
in „Multiplexer I2C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anatek_50-1S_LabPowerSupply1.pdf
.2OO ¡rV rms maximum J-OO¡rV :rortypicaf (ZBO pV p-p) Tra.nsient Response: Output returns to within 10 ¡rV or less p(stepus value in 20¡rsec to f\-rl-Ìoad.)change from hal-f StabiJ-ity O.O2lo over B hours after fr". alarm-up period. å Temp. Coefficient. O.Oþ|,/oC Operating Temp. .. O --35oC d.erate 12
in „Nachbausicheres Klein Labornetzgeraet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP41HVX1.pdf
8-bit VAB = 10V to 36V Differential -0.25 ±0.125 +0.25 LSb 7-bit V = 10V to 36V Non-linearity AB -0.25 ±0.125 +0.25 LSb 10 k 8-bit VAB = 10V to 36V (Note 10, Note 17) -0.125 ±0.1 +0.125 LSb 7-bit VAB = 10V to 36V
in „MCP41HVX READCMD falsch verstanden??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD22057.pdf
Output Current 7 11 25 mA T = T to T 5 27 mA A MIN MAX BW –3 dB –3 dB Bandwidth V O +1 V dc 20 30 kHz SR Slew Rate 0.2 V/ s N SD Noise Spectral Density f = 100 Hz to 10 kHz 0.2 V/ Hz PSR Power Supply Rejection V =5 V, V =1 Vto 4.2 V S O V S24 V, V O1 Vto 22 V T A=T MINto TMAX VOS Input Offset Voltage 20.0
in „Grundsätzliches zur Spannungs,Srommessung“ · Analoge Elektronik und Schaltungstechnik ·
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ucc28084.pdf
LOAD) OSCILLATOR FREQUENCY, 1 nF LOAD 12 200 180 10 VDD = 14 V VDD = 14 V 160 140 8 VDD = 10 V 120 m 6 VDD = 10 V m 100 – – D D VDD = 6 V I I 80 4 60 VDD = 6 V 40 2 20 0 0 10 100 1000 10 100 1000 Frequency – kHz Frequency – kHz Figure 8 Figure 9 12 www.ti.com
in „UCC28084 läuft nicht an“ · Analoge Elektronik und Schaltungstechnik ·
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MAX4249-MAX4257.pdf
3 Gain-Bandwidth Product GBW MHz MAX4249/MAX4255/MAX4256/MAX4257 22 MAX4250–MAX4254 0.3 Slew Rate SR V/µs MAX4249/MAX4255/MAX4256/MAX4257 2.1 Peak-to-Peak Input-Noise Voltage enP-P f = 0.1Hz to 10Hz 760 nVP-P f = 10Hz 27 Input Voltage-Noise Density en f = 1kHz 8.9 nV/ Hz f = 30kHz 7.9 Input Current-Noise
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tlc59108.pdf
of spikes that must be SP suppressed by the input filter(6) 50 50 50 ns Reset W Reset pulse width 10 10 10 ns REC Reset recovery time 0 0 0 ns t Time to reset (7) (8) 400 400 400 ns RESET (1) t = time for Acknowledgment signal from SCL low to SDA (out) low. VD;ACK (2) tVD;DAT= minimum time for SDA data
in „[V] 4St. LED Treiber TI - TLC59108 8-Bit Fm+ I2C-Bus Constant-Current LED Sink Driver“ · Markt ·
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65c02.pdf
D7 8D 8Q D7 E3 D7 EN 8D 8Q D7 E3 D7 EN 8D 8Q D7 E3 D7 D7 E3 D7 K VECTOR S0° INV9 2A1 7 2Y1 MCR20 MCR10 MCR9 MCR34 A5 1 D5 MCR61 MCR66 EN HD7 MCR64 MCR67 EN HD25 MCR65 EN HD27 DBus10 MCR79 EN HD5 DBus19 MCR77 EN HD15 EN HD1 O I/O° 2A2 2Y2 DBus12 DBus29 DBus31 DBus11 DBus20 DBus2 A6 R D6 ENL° 2A3 2Y3 CLK
in „Dynamisch visualisierbarer Schaltplan eines 65C02 Mikroprozessors“ · Mikrocontroller und Digitale Elektronik ·
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sbfa002.pdf
Ripple ) d d Ripple e –10 4-Pole Chebyshev e–10 5-Pole Chebyshev n n p –20 3dB Ripple p–20 3dB Ripple e e r r i –30 i–30 F F –40 –40 –50 –50 f /100 f /10 f 10f f /100 f /10 f 10f C C C C C C C C Normalized Frequency Normalized
in „Rechteck Sinus“ · Analoge Elektronik und Schaltungstechnik ·
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0900766b80c827e9.pdf
Gain = 5 M C 40 10 0 20 –10 –20 0 10 100 1k 10k 100k 1M 10M 10 100 1k 10k 100k Frequency (Hz) Frequency (Hz) POWER-SUPPLY REJECTION RATIO vs FREQUENCY MAXIMUM OUTPUT VOLTAGE vs FREQUENCY 100 6 VS= 5.5V 90 ) - 5 80 V V = 5.0V ( S 70 g 4 ) l d 60 o ( 50 t 3 R t S 40 u VS= 2.7V P O 2 30 u m 20 x M 1 10 0 0 1 10 100 1k 10k 100k 100 1k 10k 100k 1M 10M Frequency (Hz) Frequency (Hz) NOISE vs FREQUENCY 0.1Hz TO 10Hz VOLTAGE NOISE 10k 100 ) 1k 10 ) H z / √ d n f V ( ( µ I I 2 N100 1 N V I 10 0.1 1 10 100
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pic33h_1_same_dac.s
, 0x2C60 , 0x2A00 , 0x27C0 .word 0x2580 , 0x2350 , 0x2120 , 0x1F10 , 0x1D10 .word 0x1B10 , 0x1930 , 0x1750 , 0x1590 , 0x13E0 .word 0x1230 , 0x10A0 , 0x0F20 , 0x0DB0 , 0x0C50 .word 0x0B00 , 0x09C0 , 0x0890 , 0x0780 , 0x0670 .word 0x0580 , 0x04A0 , 0x03D0 , 0x0320 , 0x0270
in „Filter mit dpic33fj“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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SP3222EBEP.pdf
232 receiver input. 9 9 8 R1OUT TTL/CMOS reciever output. 13 15 12 R2OUT TTL/CMOS reciever output. 10 10 9 T1IN TTL/CMOS driver input. 12 13 11 T2IN TTL/CMOS driver input. 11 12 10 GND Ground. 16 18 15 VCC +3.0V to +5.5V supply voltage 17 19 16 Shutdown Control Input. Drive HIGH for normal device operation
in „Adafruit Ultimate GPS Breakout mit SP3232 an RS232“ · Mikrocontroller und Digitale Elektronik ·
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sp3222_3232e.pdf
R1OUT 6 13 R1OUT C2- V- 7 14 N.C. V- 7 12 T1IN T2OUT 8 13 T1IN T2OUT 8 11 T2IN R2IN 9 12 T2IN R2IN 9 10 R2OUT R2OUT 10 11 N.C. DIP/SO SSOP/TSSOP Figure 4. Pinout Configurations for the SP3222E C1+ 1 16 VCC V+ 2 15 GND C1- 3 14 T1OUT C2+ 4 SP3232E 13 R1IN C2- 5 12 R1OUT V- 6 11 T1IN T2OUT 7 10 T2IN R2IN
in „Kein TX bei GSM Modul“ · Mikrocontroller und Digitale Elektronik ·
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PCA82C251_PHI.pdf
V I off-state output leakage −2 V< (V , V ) < 7 V −2 − +2 mA LO 6 7 current −5 V< (V6, 7 ) < 36 V −10 − +10 mA V7 CANH output voltage V1= 1 V; VCC= 4.75 to 5.5 V 3.0 − 4.5 V V1= 1 V; VCC= 4.5 to 4.75 V 2.75 − 4.5 V V6 CANL output voltage V1= 1 V 0.5 − 2.0 V V difference between output V = 1 V 1.5 − 3.0
in „Differentielle Datenübertragung, welcher Baustein empfehlenswert?“ · Mikrocontroller und Digitale Elektronik ·
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lsm6dsl.pdf
enabled) 1. This bit is effective if the IRON_EN bit of MASTER_CONFIG (1Ah) and the FUNC_EN bit of CTRL10_C (19h) are set to 1. DocID028475 Rev 7 67/114 114 Register description LSM6DSL 9.22 CTRL10_C (19h) Control register 10 (r/w). Table 76. CTRL10_C register WRIST_ TIMER_ PEDO_ TILT_ PEDO_RST SIGN_ 0(1
in „LSM6DSL Gyro+Accelerometer, Gyro gibt keine Werte aus.“ · Mikrocontroller und Digitale Elektronik ·
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CLC_Configurable_Logic_Cell_Tips__n_Tricks.pdf
MCLR VPP RA4 3 20 AN3 — — — — T1G — IOC Y CLKOUT RA5 2 19 — — — NCO1CLK — T1CKI — IOC Y CLKIN RB4 13 10 AN10 — — — — — — IOC Y — RB5 12 9 AN11 — — — — — — IOC Y — RB6 11 8 — — — — — — — IOC Y — RB7 10 7 — — — — — — — IOC Y — RC0 16 13 AN4 — — — CLC2 — — — — — (1) RC1 15 12 AN5 — — NCO1 — — PWM4 — — — RC2
in „Funktionsgenerator, NCO, PIC“ · Mikrocontroller und Digitale Elektronik ·
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howto_-tasmota-sml.pdf
SCL) müssen später in den Geräteeinstellungen in der WEBGUI der Tasmotafirmware eingestellt werden. 10 Damit das EEPROM funktioniert muss auch dieser Treiber geladen werden und dem Scripteditor verfügbare Größe des Speichers definiert werden: #define USE_I2C #define USE_24C256 #define EEP_SCRIPT_SIZE
in „Wärmezähler über optische M-Bus-Schnittstelle auslesen“ · Haus & Smart Home ·
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2011-01_digitale_Senderliste_mit_Frequenzen_1_.pdf
ACM Channel italienisch 634 256 K41 italienisch 9 Al Jazeera arabisch arabisch 634 256 K41 arabisch 10 Al Jazeera Children arabisch 634 256 K41 arabisch 11 Animal Planet (WT) deutsch 626 256 K40 wt Pay-TV 12 Animax (WT) deutsch 682 256 K47 wt Pay-TV 13 ANIXE HD deutsch 690 256 K48 HDTV 14 ANIXE SD deutsch
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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Datei
systemctl-output.txt
plugged WDC_WD4002FYYZ-01B7CB1 sys-devices-pci0000:00-0000:00:17.0-ata7-host6-target6:0:0-6:0:0:0-block-sr0.device loaded active plugged PLDS_DVD+_-RW_DU-8A5LH sys-devices-pci0000:00-0000:00:1f.3-sound-card0-controlC0.device loaded active plugged /sys/devices/pci0000:00/0000:00:1f.3/sound/card0/controlC0
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AD8228.pdf
±0.0001 1±0.0001 V/V DYNAMIC RESPONSE Small Signal −3 dB Bandwidth 650 650 kHz Settling Time 0.01% 10 V step 6 6 μs Settling Time 0.001% 10 V step 9 9 μs Slew Rate 2 2.5 2 2.5 V/μs GAIN VOUT= −10 V to +10 V Gain Error 0.07 0.02 % Gain Nonlinearity RL= 10 kΩ 3 10 3 10 ppm RL= 2 kΩ 3 10 3 10 ppm Gain vs
in „Schaltung verstehen.“ · Analoge Elektronik und Schaltungstechnik ·
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Magazin_Bauteile.pdf
0,30 30 Widerstand 330k 5% 0,25W 0,030 0,90 2 0 Widerstand 360k 0,030 0,00 3 10 Widerstand 390k 0,030 0,30 3 10 1 1 0 Widerstand 430k 0,030 0,00 2 10 Widerstand 470k 0,030 0,30 30 Widerstand 470k 5% 0,25W 0,030 0,90 3 0 Widerstand 510k 0,030 0,00 3 10 2 1 10 Widerstand 560k 0,030 0,30 2 0 Widerstand 620k 0,030 0,00 3 10 Widerstand 680k 0,030 0,30 30 Widerstand 680k 5% 0,25W 0,030 0,90 3 10 3 1 0 Widerstand 750k 0,030 0,00 2 10 Widerstand 820k 0,030 0,30 3 0 Widerstand 910k 0,030 0,00 3 10 4 1 10 Widerstand 1M 0,030
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PCA82C250_PHI.pdf
summary CONDITION FORCED AT PIN Rs MODE RESULTING VOLTAGE OR CURRENT AT PIN Rs V > 0.75V standby I < 10 A Rs CC Rs −10 A < I Rs < −200 A slope control 0.4V CC < VRs < 0.6V CC V Rs< 0.3V CC high-speed Rs < −500 A 2000 Jan 13 4 Philips Semiconductors Product specification CAN controller interface PCA82C250
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PDF
82C250.pdf
summary CONDITION FORCED AT PIN Rs MODE RESULTING VOLTAGE OR CURRENT AT PIN Rs V > 0.75V standby I < 10 A Rs CC Rs −10 A < I Rs < −200 A slope control 0.4V CC < VRs < 0.6V CC V Rs< 0.3V CC high-speed Rs < −500 A 2000 Jan 13 4 Philips Semiconductors Product specification CAN controller interface PCA82C250
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lib_AT91SAM7S256.h
rate divisor register if (speed == 0) baud_value = 0; else { baud_value = (unsigned int) (mainClock * 10)/(2*speed); if ((baud_value % 10) >= 5) baud_value = (baud_value / 10) + 1; else baud_value /= 10; } pSSC->SSC_CMR = baud_value; } //*-----------------------------------------------------------------
in „C Datein werden in Eclipse nicht kompiliert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC8P53_____.pdf
CONT-3)被复位,预分频器分配给 TCC. 写入一个值到 TCC 寄存器后,TCC 计数器的内容会被刷新。 5.1.3 R2(程序计数器 PC)和堆栈 根据具体的器件类型,R2 和硬件堆栈为 10 位宽。图 3 描绘了相关结构图。 生成 1024×13 位程序指令代码的片内 OTP ROM 地址。一个程序页为 1024 字长。 复位条件下,R2 所有位均清“0”。 "JMP" 指令直接加载程序计数器的低 10 位。因此,"JMP" 允许 PC 跳转到一个程序页的任何位置。 "CALL" 指令首先加载 PC 的低 10 位,然后将 PC+1 推入堆栈。因此,子程序的入口地址可位于一个
in „Chinesische PIC-Clones“ · Mikrocontroller und Digitale Elektronik ·
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LQ121S1LG75.pdf
2.1 - - V 【*4】 Input voltage IH V IL - - 0.8 V IOH - - 400 μ A V I23.3V 【*4】 Input reak current I -10 - +10 μ A V =0V 【*4】 OL I2 Terminal resistor R T - 100 - Ω Differential input 【*1】 On-off conditions for supply voltage 0.9 CC 0.9 CC 0 < t 1 ≦ 10ms 0.1 CC 0.1 CC 0 < t 2 ≦ 20ms VCC t1 t3 0 < t 3 ≦ 1s
in „Mini2440 LVDS Display Adapter für größere TFTs“ · Projekte & Code ·
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PDF
A_Design_of_High_Speed_and_Real-time_DSO_Based_on_FPGA.pdf
& 'l;~ ::%:OlH:'I~ I!l~i* IIHOl *ltiiliof' lilHli ffi ~~ .L~F (lh) of' )r)~ (11,) J& I 2.5ns IG 25 10 I llii I 200M 5 2 50s IG 50 10 2llii I 100M 5 3 IOns IG 100 10 H lIl 50M 5 4 25ns IG 250 I Illii I 20M 5 5 SOns IG 500 I 2llil I 10M 5 6 O. lus IG 1000 I H lil SM 5 7 O. 25us IG 2500 I 10llii I 2M 5
in „Oszilloskop - SoC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Values.txt
0.47u 14 ZPD 5,1 14 TP06SQ 14 ISP 14 680R 14 4,7n 14 22pf 14 16MHz 13 NC 13 250 13 22uF 13 16Mhz 13 10 13 0.1u 13 0 12 TLC5940-PWPOTV 12 SR104 12 IRFP460 12 IRF540 12 HD-H103 12 BL 12 BD140 12 AMP 12 7-SEG_SA10-21 12 74LS08N 12 47µ 12 4052D 12 35701331 12 27pF 12 27k 12 2,2n 12 22µ 12 1N4446 12 1,8k 12
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·