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PDF
x24c00p.pdf
TheSCLinputisusedtoclockalldataintoandoutofthe device. served for indicating start and stop conditions. Refer to Figures 1 and 2. Serial Data (SDA) Start Condition SDA is a bidirectional pin used to transfer data into and All commands are preceded by the start condition, out of the device. It is a push/pull
in „x24c00p Namen der Speicherzellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
(16 MHz / 128kHz = 125 kHz) und ADC aktivieren ADMUX = 0x00; // Kanal waehlen (ADC0) ADMUX |= (1<<REFS0); // externe Referenzspannung nutzen ADCSRA |= (1<<ADSC); // eine ADC-Wandlung while ( ADCSRA & (1<<ADSC) ); // auf Abschluss der Konvertierung warten result0 = ADCW; // Wert abholen komma0 = result0
in „Vergleichen von acht Spannungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GN80_2_NMEA_Protocol__1_.pdf
W [1] Note: Digits below 1/10000 are ignored. 7-8. Null Fields Any entry is ignored. 9. UTC: Date “02”: DD 01-31 [2] “01”: MM 01-12 [2] “02”: YY 02-79 [2] (2002-2079) 10-12. Null Fields Any entry is ignored. 13. Checksum [2] Note : 1.UTC Time and 9.UTC date shall be set together. If any one of them is
in „DGPS korreliert nicht“ · Mikrocontroller und Digitale Elektronik ·
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ATtiny26.pdf
High Byte 1 BS2 Reading the Signature The algorithm for reading the Signature bytes is as follows (refer to Programming the Flash for Bytes details on Command and Address loading): 1. A: Load Command “0000 1000”. 2. B: Load Address Low Byte ($00 - $02). 3. Set OE to “0” and BS1 to “0”. The selected Signature
in „ATtiny26(L) Analog-Digital-Wandler ( ADC ) Datenblattübersetzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vishay_Z-Foil.pdf
FEATURES • Temperature coefficient of resistance (TCR): ±0.2 ppm/°C typical (–55°C to +125°C, +25°C ref.) (see table 1) • Rated power: to 1 W at +125°C (see table 2) • Resistance tolerance: to ±0.005% (50 ppm) • Load life stability: ±0.005% at 70°C, 2000 h or ±0.015% at 70°C, 10000 h (see table 4) The
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Operation_Manual_EPS-103__1_.pdf
Preprogrammed into the System Memory Satellite Numbers Satellite Name Longitude 01 SAT-2R (SATCOM II R) 72°W 02 GAL-2 (GALAXY II) 74°W 03 COM-3 (COMSTAR III) 76°W 04 SAT-4 (SATCOM IV) 83°W 05 TEL-02 (TELSTAR 302) 86°W 06 WES-3 (WESTAR III) 91°W 07 TEL-01 (TELSTAR 301) 96°W 08 WES-4 (WESTAR IV) 99°W 09 ANK-D1 (
in „[V] Steuergerät für Positionierung von Satelliten-Antenne“ · Markt ·
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PDF
PCN_DN43A_20000630.pdf
Capability. Consult Marketing. HECAS00301A/02A NON-IDENT 935239020112 T M 2 31-12-00 30-6-01 None-noted Limited Manufacturing Capability. Consult Marketing. HT1ICS3002U/F5A HITAG 935231310025 T M 1 30-6-00 30-6-00 None-noted Refer to ACPCN BLI 99
in „Mosfet Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
U2270B_.pdf
C HP for selected data rates can be found in Section 4., “Applications” , on page 10. 7 4684E–RFID–02/08 Figure 3-7. Equivalent Circuit of Pin HIPASS R + - R Schmitt LPF trigger V Ref R R R i HIPASS C HP 3.6 Schmitt Trigger The signal is processed by a Schmitt trigger to suppress possible noise and to
in „Verzweiflung am U2270B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2599932.pdf
0.51 8.76 2-1601155-3 1,5 .345 1601120-4 5 27-36 0.36-0.13 .040 x .020 1,5 4-1601120-4 2,5 1.02 x 0.51 8.76 2-1601120-4 .040 x .020 .456 1601095-2 4 2,4 1.02 x 0.51 11.57 2-1601095-2 2,4 4-1601095-2 B 18-34 1.02-0.16 5 Extended 1601425 .040 x .020 .485 1601041-3 1,5 4-1601041-3 2,5 PC Tab 1.02
in „IDC connector für Kupferlackdraht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Linear_Current_Sense_AN105.pdf
20k V (±1V) CONV VEE 4 V EE 5 OUT 2 A LTC1404 CLK 6 CLOCKING –5V VOUT 3 VN CIRCUITRY OPTIONAL SINGLE REF DOUT 5 SUPPLY OPERATION: 10µF GND DISCONNECT V BIAS 16V 4 8 FROM GROUND AND CONNECT IT TO VREF. 10µF DOUT REPLACE –5V SUPPLY 16V WITH GROUND. VEE 1787 TA02 OUTPUT CODE FOR ZERO –5V CURRENT WILL BE ~
in „'High Side' Strom Messen - Geht das so ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN105.pdf
20k V (±1V) CONV VEE 4 V EE 5 OUT 2 A LTC1404 CLK 6 CLOCKING –5V VOUT 3 VN CIRCUITRY OPTIONAL SINGLE REF DOUT 5 SUPPLY OPERATION: 10µF GND DISCONNECT V BIAS 16V 4 8 FROM GROUND AND CONNECT IT TO VREF. 10µF DOUT REPLACE –5V SUPPLY 16V WITH GROUND. VEE 1787 TA02 OUTPUT CODE FOR ZERO –5V CURRENT WILL BE ~
in „High-Side Strommessung AVR (Shunt)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Scheiben_Varistor_S10K20.pdf
) 250 0.9 0.02 B72210S0140K101 S10K14 14 181) 500 2.0 0.05 B72214S0140K101 S14K14 14 181) 1000 4.0 0.10 B72220S0140K101 S20K14 14 181) 2000 12.0 0.20 B72205S0170K101 S05K17 17 22 100 0.5 0.01 B72207S0170K101 S07K17
in „DC Geräteeingang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SIOV_Leaded_StandarD.pdf
) 250 0.9 0.02 B72210S0140K101 S10K14 14 181) 500 2.0 0.05 B72214S0140K101 S14K14 14 181) 1000 4.0 0.10 B72220S0140K101 S20K14 14 181) 2000 12.0 0.20 B72205S0170K101 S05K17 17 22 100 0.5 0.01 B72207S0170K101 S07K17
in „Funkenlöschung mit Varistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt-500651-tdk-b72214s231k101-s14k230-scheiben-varistor-360-v-1-st.pdf
) 250 0.9 0.02 B72210S0140K101 S10K14 14 181) 500 2.0 0.05 B72214S0140K101 S14K14 14 181) 1000 4.0 0.10 B72220S0140K101 S20K14 14 181) 2000 12.0 0.20 B72205S0170K101 S05K17 17 22 100 0.5 0.01 B72207S0170K101 S07K17
in „Welcher Varistor ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RS0012.pdf
important to note that eve64 x8bits DDRAM space. 1 line is 00 to 3F,second line is 40 to 7F.Please refer the figure below. Display Position 1 2 3 4 ………. 61 62 63 64 DDRAM Address 00 01 02 03 ………. 3C 3D 3E 3F (hexadecimal) 40 41 42 43 ………. 7C 7D 7E 7F To illustrate, for 2-line x 20 characters display,
in „OLED RAYSTAR REX001602B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RS0012.pdf
important to note that eve64 x8bits DDRAM space. 1 line is 00 to 3F,second line is 40 to 7F.Please refer the figure below. Display Position 1 2 3 4 ………. 61 62 63 64 DDRAM Address 00 01 02 03 ………. 3C 3D 3E 3F (hexadecimal) 40 41 42 43 ………. 7C 7D 7E 7F To illustrate, for 2-line x 20 characters display,
in „Brauche Hilfe Oled Display 2x16 EA W162-X3LG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS1504_Protocol.pdf
1504) [06 02 02 02 01 02 0F 01 02 21 03 00 HH LLHex 06 02 Status Stx Counted String 1 - 02 02 01 Length Parameter #2 - Volume Value – On Counted String 2 - 02 0F 01 Length Parameter #15 – Auto Clear Value – On Counted
in „Kugelschreiber mit Barcodescanner bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTE480WQ-F02_SamSung.pdf
73.08 mm (1) size Depth(D) 4.18 4.2 4.22 mm (1) Weight - TBD TBD g (2) Note (1) Not include FPC. Refer to the Outline Dimension in the "8. Outline Dimension" for further information. (2) Module and Back-light unit are included . Doc . No LTE480WQ-F02 Rev.No 002 Page ▯ /30 www.DataSheet4U.com Preliminary
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PDF
2C-SDK-Espressif_IoT_SDK_Programming_Guide_v0.9.5_revised.pdf
ip_addr_t *multicast_ip –ip of multicast group Return: 0 - succeed,#define ESPCONN_OK 0 Not 0 - Erro,pls refer to espconn.h 64 / 95 Espressif Systems February 9, 2015 ESP8266EX SDK Programming Guide 3.9.AT APIs AT APIs example refer to esp_iot_sdk/examples/5.at/user/user_main.c 3.9.1. at_response_ok Function
in „ESP8266 hängt bei gleichzeitigem senden/empfangen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2C-SDK-Espressif_IoT_SDK_Programming_Guide_v0.9.5.pdf
ip_addr_t *multicast_ip –ip of multicast group Return: 0 - succeed,#define ESPCONN_OK 0 Not 0 - Erro,pls refer to espconn.h 63 / 94 Espressif Systems January 23, 2015 ESP8266EX SDK Programming Guide 3.9.AT APIs AT APIs example refer to esp_iot_sdk/examples/5.at/user/user_main.c 3.9.1. at_response_ok Function
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADD9910_Design.pdf
V_IN_24VPI?01 PI?02 GND PI GND PC Cap 33k P? IPL?1 PIF?02CC_24V_DEV 4.7µF 4.7µF PI1 Fuse 1 P0 1 10?PIP D?DOC 2 20?PIP SMBJ24CA IPL?3 PIF?04 GND GND Header2 BNX024H01L GND NLVC0240NEG P0 VC _24V_NEG VCC_1V8_DVDD IC? LT3042HDD
in „PCB -Frequenzrampe 100khz-360 MHz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
showfile.pdf
-11-17 1.4 Updated I/O pin usage 2004-01-21 1.5 Updated I/O pin usage and application circuit 2004-02-02 1.6 Check by SW team 2004-05-27 1.7 Added moisture sensitivity information 2004-06-16 1.8 Contact 17 in page 13, modified chapter 6.1 2004-09-30 1.9 Wake-up, pin states, chapt. 4.6, ref. design 2004-12-02 2.0 Tables 3 & 4, chapt. 4.6.5, figures 6 & 7 2005-02-23 2.1 Added iTrax03 Application Board documentation 2005-09-01 2.2 Added pin description to chapter 6. 2005-09-06 2.3 Fixed some typing errors 2005
in „gps modul gpio durch programmcode steuern“ · PC Hard- und Software ·
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PDF
gpsdatasheets.pdf
-11-17 1.4 Updated I/O pin usage 2004-01-21 1.5 Updated I/O pin usage and application circuit 2004-02-02 1.6 Check by SW team 2004-05-27 1.7 Added moisture sensitivity information 2004-06-16 1.8 Contact 17 in page 13, modified chapter 6.1 2004-09-30 1.9 Wake-up, pin states, chapt. 4.6, ref. design 2004-12-02 2.0 Tables 3 & 4, chapt. 4.6.5, figures 6 & 7 2005-02-23 2.1 Added iTrax03 Application Board documentation 2005-09-01 2.2 Added pin description to chapter 6. 2005-09-06 2.3 Fixed some typing errors 2005
in „GPS daten in Visual Basic auffangen“ · PC Hard- und Software ·
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Datei
pegasus_5x7_font.bas
Load EEPROM example program (refer page 68) ' Lcd_loadpaint ' Load Gamma Table Parameter (refer page 61) Dram_write Cmd , &H30 ' Ext = 0 Dram_write Cmd , &HA7 ' Inverse Display Dram_write Cmd , &HBB ' Com Scan Direction Dram_write Dat
in „Mini-Farbdisplay (+mehr) für 1 Euro“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd-b.asm
R16, 0b10000111 ; ADEN ADSC ADFR ADIF ADIE ADPS2 ADPS1 ADPS0 OUT ADCSRA, R16 LDI R16, 0x11000000 ; REFS1 REFS0 ADLAR MUX3 MUX2 MUX1 MUX0 OUT ADMUX, R16 SBI ADCSRA, 6 ; ADSC ADC_Busy: SBIC ADCSRA, 6 ; ADSC RJMP ADC_Busy ADC_Progress: SBIS ADCSRA, 4 ; ADIF RJMP ADC_Progress IN R16, ADCL RCALL Print_Integer
in „Assembler, Nachkommastelle, DS75“ · Mikrocontroller und Digitale Elektronik ·
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PDF
enplas_plcc_opentop_burnin.pdf
"▯ ( & $▯ $ ▯▯▯▯ ▯▯▯ ʢ▯▯▯▯ʣ▯ ʢ▯▯▯▯ʣ▯ PLCC 30 SERIES (Dead Bug) Unit: mm APPLICABLE IC DIMENSIONS (REF.) OUTSIDE DIMENSIONS (REF.) PART NO. PINCOUNTPITCH C C1 D E F G A A1 B B1 +0.88 +0.5 +0.4 +0.2 +0.4 +0.2 +0.2 +0.2 PLCC-28-1.27-30 28 1.27 4.2 0 2.8-0.51 12 0 11.3 0 12 0 11.3 0 22.35 ʶ 0.5 22.35 ʶ0.5
in „Testsockel PLCC 44polig“ · Markt ·
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tidu533.pdf
Rup EN TPS24750 Rmiddle OV Rlow Figure 15. Typical Resistor Divider for OV and UV R = Rlow ´(OV U+ ref- OV ref- UV ) middle OV + UV U- ref ref (31) UV U- Rup = (R middle+R low)´ ref UV ref (32) with • UVref = 1.3 V • OVref = 1.35 V • Rlow fixed at 15 kΩ In TIDA-00180 the OV and UV can be configured to
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hmc646.pdf
HMC646LP2 / 646LP2E v02.1009 GaAs MMIC 40W FAILSAFE SWITCH, 0.1 - 2.1 GHz Typical Applications Features The HMC646LP2(E) is ideal for: High Input P0.1dB: +46 dBm Tx • LNA Protection & T/R Switching Low Insertion Loss: 0.4 dB
in „passiv Video Übertragung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OLED_Display_1_12.pdf
- CIE x 0.21 0.25 0.29 Color Coordinate White CIE1931 Darkroom CIE y 0.26 0.30 0.34 Rise Tr - - 0.02 ms - Response Time Decay Td - - 0.02 ms - Contrast Ratio Cr 5000:1 - - - Darkroom Viewing Angle △θ 160 - - Degree - Operating Life Time Top 25,000 - - Hours = L=80cd/m 2 Note: 1.L=80 cd/m2 is based on
in „SH1107G Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317.pdf
LM217 LM317 Unit Min. Typ. Max. Min. Typ. Max. V o LineRegulation V i Vo= 3 to40 V T j 25 Co 0.01 0.02 0.01 0.04 %/V 0.02 0.05 0.02 0.07 %/V o V o Load Regulation V o 5V T j 25 C 5 15 5 25 mV Io= 10 mAto IMAX 20 50 20 70 mV V o 5V T j 25 Co 0.1 0.3 0.1 0.5 % I = 10 mAto I o MAX 0.3 1 0.3 1.5 % ADJ Adjustment
in „LM317 kaputt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SG3525ANG.pdf
PIN CONNECTIONS Latching PWM to Prevent Multiple Pulses Inv. Input V Pulse−by−Pulse Shutdown 1 16 ref Noninv. Inpu2 15 V Dual Source/Sink Outputs: ▯400 mA Peak CC Pb−Free Packages are Available* Sync 3 14 Output B OSC. Output4 13 V C CT 5 12 Ground RT 6 11 Output A Discharge7 10 Shutdown Soft-Star8
in „Gegentaktwandler Überschwingen im Leerlauf“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
~(1 << PB3); chargeCounter = 0; } int checkAccuVoltage() { int rc = 0, result = 0; ADMUX = (0 << REFS2) | (1 << REFS1) |(0 << REFS0) | (1 << ADLAR) | (0 << MUX3) | (0 << MUX2) | (0 << MUX1) | (1 << MUX0); // Interne Bandgap Referenz messen um Versorgungsspannung zu errechnen ADCSRA |= (1 << ADEN) |
in „Attiny45 interne Referenz“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Spektrumanalyse eines Signals auf einem Spektrumanalysator
RIGOL 22:43:52 2026-02-08 Local Status Ref -15.01 dBm Att 10 dB Auto Skal. Peak Skal./Div -16 1.00 dB Ref Pegel TRIG Free -17 -15.01 dBm SWP Cont Input Atten -18 10 dB Auto Manuell Corr -19 Auto Skal. S.T. Skal./Div -20 1.00 dB PA -21 Skalier Typ -22 Lin C.W. Einheit -23 dBm Blank Log -24 Blank Ref Offset -25 0.00 dB Start Freq 1.0000 MHz VBW 1.000 MHz Stop Freq 200.00 MHz SWT 10.000 ms 1/2
in „HP461 - Verstärker 20/40dB“ · HF, Funk und Felder · · Oszi-Bilder
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PDF
RT8298E-02.pdf
and the ENpins. MOSFET Q2 will be under logic control to pull down the EN pin. V = V 1 R1 OUT REF R2 REN 100k Where V REF is the feedback reference voltage (0.808V V IN EN typ.). EN Q2 RT8298E External Bootstrap Diode GND Connect a 1μF low ESR ceramic capacitor between the Figure 4.Digital Enable
in „Schaltregler - maximaler Spulenstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
and the ENpins. MOSFET Q2 will be under logic control to pull down the EN pin. V = V 1 R1 OUT REF R2 REN 100k Where V REF is the feedback reference voltage (0.808V V IN EN typ.). EN Q2 RT8298E External Bootstrap Diode GND Connect a 1μF low ESR ceramic capacitor between the Figure 4.Digital Enable
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RT8298E-02.pdf
and the ENpins. MOSFET Q2 will be under logic control to pull down the EN pin. V = V 1 R1 OUT REF R2 REN 100k Where V REF is the feedback reference voltage (0.808V V IN EN typ.). EN Q2 RT8298E External Bootstrap Diode GND Connect a 1μF low ESR ceramic capacitor between the Figure 4.Digital Enable
in „Woher Eingangsschwingung am Buck“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LIS3LV02DQ28.pdf
(Self-test bit on ctrl_reg1=1)PUT[LSB] (Self-test bit on ctrl_reg1=0)4 at 12bit representation 5. Refer to table 3 3/27 LIS3LV02DQ 1 Table 3. ELECTRICAL CHARACTERISTICS All the parameters are specified @ Vdd=2.5V, T=25˚C unless otherwise noted. 2 Symbol Parameter Test Condition Min. Typ. Max. Unit Vdd
in „"Halbleiterkreisel"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS3LV02DQ28.pdf
(Self-test bit on ctrl_reg1=1)PUT[LSB] (Self-test bit on ctrl_reg1=0)4 at 12bit representation 5. Refer to table 3 3/27 LIS3LV02DQ 1 Table 3. ELECTRICAL CHARACTERISTICS All the parameters are specified @ Vdd=2.5V, T=25˚C unless otherwise noted. 2 Symbol Parameter Test Condition Min. Typ. Max. Unit Vdd
in „Beschleunigungssensor für ca +/-6g in alle 3 Achsen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPD2015FN_application_note_en_20230207_AKX01102.pdf
control not only 5.0 V MCUs but also 3.3 V MCUs. For IH detailed electrical characteristics, please refer to the data sheet of this product. Please leave the NC pin open to prevent short-circuiting with adjacent terminals. Fig. 4.1 Pin assignments 7 2023-02-07 © 2023 Rev.1.0 Toshiba Electronic Devices
in „(S) PNP-Transistorarray“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Master.c
overflows (1000000/256) = 3906,25 times per second --> all 0.256 milliseconds timer0_prescaler = (0<<WGM02) | (0<<CS02) | (0<<CS01) | (1<<CS00) ; //| (0<<FOC0A) | (0<<FOC0B) - These Bits are only active in non PWM mode //internal voltage reference with VCC, PA1 defined as ADC input with gain=1 adc_setting = (0<<REFS1) | (0<<REFS0) | (0<<MUX5) | (0<<MUX4) | (0<<MUX3) | (0<<MUX2) | (1<<MUX1) | (1<<MUX0); adc_control_status = (1<<ADEN) | (1<<ADSC) | (1<<ADATE) | (0<<ADIF) | (0<<ADIE) | (0<<ADPS2) | (1<<ADPS1) | (1
in „ATTINY84A Rechnung in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80e31c6b.pdf
COMMON-MODE VOLTAGE with SUPPLY VOLTAGE = +5V with SUPPLY VOLTAGE = 0V (Shutdown) 50 30 25 ) 40 ) A B+,B- ,REF= 0V A ( ( 20 n 30 n IB+ VREF= 2.5V r r 15 u u s 20 s i i 10 t IB+ B-, REF= 2.5V t u 10 u I I 5 IB+ B-, REF= 0V and 0 0 IB- REF = 2.5V -10 -5 0 5 10 15 20 25 30 0 5 10 15 20 25 30 Common-Mode Voltage
in „bidirektionale Strommessung Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Attiny24a-44a-84a.pdf
Alternate Functions in PA[1:0] Signal Name PA1/ADC1/AIN0/PCINT1 PA0/ADC0/AREF/PCINT0 RESET • PUOE 0 (REFS1 • REFS0 + REFS1 • REFS0) PUOV 0 0 DDOE 0 RESET • (REFS1 • REFS0 + REFS1 • REFS0) DDOV 0 0 PVOE 0 RESET • (REFS1 • REFS0 + REFS1 • REFS0) PVOV 0 0 PTOE 0 0 DIEOE PCINT1 • PCIE0 + ADC1D PCINT0 • PCIE0
in „Kann jemand über meine Inialisierung drüberfliegen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATSAMD20E18A-MU.pdf
PORT Function Multiplexing Pin(1) I/O Pin Supply Type A B(2) C D E F G H SAMD20E SAMD20G SAMD20J EIC REF ADC AC PTC DAC SERCOM ( SERCOM- TC(4) COM AC/GCLK 3) ALT 1 1 1 PA00 VDDANA EXTINT[0] SERCOM1/ TC2/ PAD[0] WO[0] 2 2 2 PA01 VDDANA EXTINT[1] SERCOM1/ TC2/ PAD[1] WO[1] 3 3 3 PA02 VDDANA EXTINT[2] AIN
in „Exposed Pad anschließen? (ATSAMD20E18A-MU und ELMOS E981.03)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX712-MAX713.pdf
SLOPE 1 1 V+ V+ (min) INTERVAL TERMINATION CONN CONN (s) At ) 2 2 Open V+ 22 21 Disabled V+ Open / 3 REF V+ M 22 21 Enabled V+ REF 4 BATT- V+ 33 21 Disabled V+ V+ A 5 V+ Open 33 21 Enabled V+ BATT- X 6 Open Open 45 42 Disabled Open Open 7 7 REF Open 45 42 Enabled Open REF 1 8 BATT- Open 66 42 Disabled Open V+ 3 66 42 Enabled Open BATT- 9 V+ REF 10 Open REF 90 84 Disabled REF Open 90 84 Enabled REF REF 11 REF REF 12 BATT- REF 132 84 Disabled REF V+ 132 84 Enabled REF BATT- 13 V+ BATT- 14 Open BATT- 180 168 Disabled BATT- Open 180 168 Enabled
in „MAX1775_Verständnisproblem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX712-MAX713.pdf
SLOPE 1 1 V+ V+ (min) INTERVAL TERMINATION CONN CONN (s) At ) 2 2 Open V+ 22 21 Disabled V+ Open / 3 REF V+ M 22 21 Enabled V+ REF 4 BATT- V+ 33 21 Disabled V+ V+ A 5 V+ Open 33 21 Enabled V+ BATT- X 6 Open Open 45 42 Disabled Open Open 7 7 REF Open 45 42 Enabled Open REF 1 8 BATT- Open 66 42 Disabled Open V+ 3 66 42 Enabled Open BATT- 9 V+ REF 10 Open REF 90 84 Disabled REF Open 90 84 Enabled REF REF 11 REF REF 12 BATT- REF 132 84 Disabled REF V+ 132 84 Enabled REF BATT- 13 V+ BATT- 14 Open BATT- 180 168 Disabled BATT- Open 180 168 Enabled
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl431.pdf
, TL432A, TL432B . . . PK (SOT-89) PACKAGE (TOP VIEW) (TOP VIEW) CATHODE REF E E O ANODE O ANODE N N A A REF CATHODE TL432, TL432A, TL432B . . . DBV (SOT-23-5) PACKAGE TL431, TL431A, TL431B . . . DBV (SOT-23-5) PACKAGE (TOP VIEW) (TOP VIEW) 1 NC 1 ANODE NC 5 REF 5 ANODE 2 †
in „Sicherung bei überschreiben von VCC auslösen, wie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl431.pdf
, TL432A, TL432B . . . PK (SOT-89) PACKAGE (TOP VIEW) (TOP VIEW) CATHODE REF E E O ANODE O ANODE N N A A REF CATHODE TL432, TL432A, TL432B . . . DBV (SOT-23-5) PACKAGE TL431, TL431A, TL431B . . . DBV (SOT-23-5) PACKAGE (TOP VIEW) (TOP VIEW) 1 NC 1 ANODE NC 5 REF 5 ANODE 2 †
in „bauelement für Spannungsdurchlass“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dB_or_not_dB.pdf
= +3 dB(V) addieren sich wie folgt zur Gesamtspannung U: U /dB(V) 0 1 U 10 20 U 10 20 1V 1V 1 ref U 2dB(V) 6 20 20 U 20 U ref 10 1V 0,5V U3/dB(V) 3 U 10 20 U 10 20 1V 1,41V 3 ref 2 2 2 U U U U 1 0,5 1,41 V 1,75V 2 1 1 1 Die Umrechnungvon U in dB(V) ergibt U 20log 1,75V dB
in „Hilfe benötigt bei Umrechnung dbµ in dB bzw. mV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dB_Rhode_u__Schwarz.pdf
= +3 dB(V) addieren sich wie folgt zur Gesamtspannung U: U /dB(V) 0 1 U 10 20 U 10 20 1V 1V 1 ref U 2dB(V) 6 20 20 U 20 U ref10 1V 0,5V U3/dB(V) 3 U 10 20 U 10 201V 1,41V 3 ref 2 2 2 U U U U 1 0,5 1,41 V 1,75V 1 1 1 Die Umrechnungvon U in dB(V) ergibt U 20log 1,75V dB(V)
in „Spannungsverstärkung und dB“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MPU-6050A-Register.pdf
of the self test response (FT) mentioned above. For the specific registers mentioned below, please refer to registers 13-15. The Factory trim value of the self test response (FT) is calculated as shown below. FT[Xg], FT[Yg], and FT[Zg] refer to the factory trim (FT) values for the gyroscope X, Y, and
in „MPU6050 Z-Achse Keine Werte“ · Mikrocontroller und Digitale Elektronik ·