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NSC.pdf
output swings to ground for a with variable reluctance magnetic pickups t zero frequency input. n Op amp/comparator has floating transistor output o The op amp/comparator is fully compatible with the tachom- n 50 mA sink or source to operate relays, solenoids, V eter and has a floating transistor as
in „Frequenz Spannungswandler Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sboa059.pdf
by the op amp. A “single-supply op amp” would handle this particular application more successfully. There are, however, many G= +1 ways to use a standard op amp in single-supply applications VOUT= VIN which may
in „Schalter welcher bei 4 Volt bei einer Spannung von 0.75 -4V schaltet bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT25080A.pdf
reception (SI). MSB: The Most Significant Bit (MSB) is the first bit transmitted and received. SERIAL OP-CODE: After the device is selected with CS going low, the first byte will be received. This byte contains the op-code that defines the operations to be performed. INVALID OP-CODE: If an invalid op-code
in „Atmel 25080A - SPI - AT89C51RB2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ths6214.pdf
.................... 37 S 6.7 Timing Requirements.............................................. 10 11 Device and Documentation Support................. 38 6.8 Typical Characteristics: V = S12 V, Full Bias........ 11 11.1 Receiving Notification of Documentation Updates 38 6.9 Typical Characteristics:
in „HF Linearverstärker für Messzwecke“ · HF, Funk und Felder ·
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Datei
sd_mmc_spi.c
CSD[0]<5:2> bits to know the version : 0x0=1.x, 0x1=1.4, 0x2=2.x, 0x3=3.x, 0x4=4.0 //! Moreover the OP_FORCED_ERASE command can also have no effect on some cards ! //! //! @param operation //! OP_LOCK -> to lock the card (the current password must be specified) //! OP_UNLOCK -> to unlock the card (the current password must be specified) //! OP_RESET_PWD -> to clear the current password (the current password must be specified) //! OP_SET_PWD -> to set a new password to the card (the old password must have been cleared first) //! OP_FORCED_ERASE
in „ASF, sd_mmc_spi.c, Teilersetzung durch PDCA?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sd_mmc_spi.c
CSD[0]<5:2> bits to know the version : 0x0=1.x, 0x1=1.4, 0x2=2.x, 0x3=3.x, 0x4=4.0 //! Moreover the OP_FORCED_ERASE command can also have no effect on some cards ! //! //! @param operation //! OP_LOCK -> to lock the card (the current password must be specified) //! OP_UNLOCK -> to unlock the card (the current password must be specified) //! OP_RESET_PWD -> to clear the current password (the current password must be specified) //! OP_SET_PWD -> to set a new password to the card (the old password must have been cleared first) //! OP_FORCED_ERASE
in „ASF, sd_mmc_spi.c, Teilersetzung durch PDCA?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
todo_table_macro.txt
intr do_store_A , do_op_RRC , do_fetch_A ; 0F ; RRCA intr do_nop , do_op_INV , do_nop ; 10 oo ; DJNZ o intr do_store_DE , do_nop , do_fetch_DIR16 ; 11 nn nn ; LD DE,nn intr do_store_MDE , do_nop , do_fetch_A ; 12 ; LD (DE),
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
todo_table_macro_A.txt
intr do_fetch_A , do_op_RRC , do_store_A ; 0F ; RRCA intr do_nop , do_op_INV , do_nop ; 10 oo ; DJNZ o intr do_fetch_DIR16 , do_nop , do_store_DE ; 11 nn nn ; LD DE,nn intr do_fetch_A , do_nop , do_store_MDE ; 12 ; LD (DE),
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kurve3sheet.pdf
R9 .tran 0 1 0 1m R2 10k100k7 1N4148 10k R8 R12 .options plotwinsize=0 D1 R10 OP07 R1 10k 9k .inc BV_logtable1.txt 5 5 5k 5 R11 5 xdB 5 10k 1 R6 1 1 1 V1 1 10k U8 xdB out2 R3 U4 1k U5 U6 U2 22k OP07 OP07 OP07 OP07 PWL(0 -85 1 10) out2 R4 1 1 1 1 5 R5 - - - R13 - - -15 R14 100kR15
in „LT-Spice Einbindung von excel-file in Spannungsquelle mit Hilfe von PWL-File“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
minirv32ima.cpp
0b010: MINIRV32_STORE4( addy, rs2 ); break; default: trap = (2 + 1); } } break; } case 0b0010011: // Op-immediate case 0b0110011: // Op { uint32_t imm = ir >> 20; imm = imm | (( imm & 0x800 ) ? 0xfffff000 : 0); uint32_t rs1 = REG((ir >> 15) & 0x1f); uint32_t is_reg = !!( ir & 0b100000 ); uint32_t rs2 =
in „RISC/V kommt in Schwung“ · Mikrocontroller und Digitale Elektronik ·
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IEA-1254A.pdf
DECODER..................................................................................................11 1.3.10 WITHOUT SEGMENT DECODER...........................................................................................11 1.3.11 LOAD DATA POINTER............................................................................................................11 1.3.12 WRITE DATA MEMORY..........................................................................................................11 1.3.13 OR DATA MEMORY.............................................
in „LCD ansprechen, welches Protokoll? (μPD7225) siehe Anhang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICE2AS01.pdf
0.3V PWM-Latch 0.3V Gate Driver t Oscillator C5 V Gate Driver OSC 0.8V 10kΩ x3.65 t T2 R 1 V 1 PWM OP Figure 7 Light Load Conditions C 1 20pF 3.2.1 PWM-OP Voltage Ramp The input of the PWM-OP is applied over the internal leading edge blanking to the external sense resistor Figure 6 Improved Current Mode
in „TFT LP mit IC ICE2AS01 defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX8340-B_T__DS_preliminary_v01_080313.pdf
23 CP 22 21 CP 20 CP 43 CP 33 CP 32 CP 31 30 OP 04 OP 03 01 OP 00 6 6 6 OP 13 OP12P OP 11 10 CGM CGM CGM CGM 11 10 01 00 MN MN MN V0 Negative 02 01 00 Polarity 6-bit Grayscale 6-bit Grayscale V1 MN 12 MN 11 10 6-bit Grayscale Grayscale Register D/
in „SAMMELBESTELLUNG: 2"2 TFT Display mit 16bit digital interface“ · Markt ·
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PDF
R1610C.PDF
Memory push uOP, and 5 cycles if it has previous Memory push or Memory Write uOP. Pipeline stages for Memory push uOP after Memory push uOP (another 5 cycles): st Fetch Decode EA Access Idle T0 T1 T2 T3 WB (1 Memory push uOP) nd (2 uOP) Fetch Decode EA Access Access Access Access Access Idle T0 T1 T2 T3 WB pipeline stall 4.3 MUL uOP and DIV of ALU function uOP for 8 bits operation need both 8 cycles, for 16 bits operation
in „Hilfe JTAG für IP Webcam ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kurve2sheet.pdf
R9 .tran 0 1 0 1m R210k 100k 1N4148 10k R8 R12 .options plotwinsize=0 D1 R10 OP07 R1 10k 9k 5 .inc BV_logtable1.txt 5 5 7k 5 R11 5 1 - xdB 5 1 R6 1 1 1 V2 V3 V1 1 10k 10k U8 xdB out2 R3 U4 1k U5 U6 U2 22k OP07 OP07 OP07 OP07 15 PWL(0 -85 1 10) out2 R4 1 1 1 1 15 5 R5 - - - R13 -
in „LT-Spice Einbindung von excel-file in Spannungsquelle mit Hilfe von PWL-File“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDS_RS-5V.pdf
load. Contact voltage Contact current Contact protection circuit Operating speed Expected life, min. op. 6 V DC 232 mA 0.2 F + 1k or diode 2 op./s 3×10 7 7 12 V DC 106 mA 0.2 F + 1k or diode 2 op./s 3×10 24 V DC 54 mA 0.1 F + 1k or diode 2 op./s 3×10 7 7 100 V DC 15 mA 0.1 F + 1k or diode 2 op./s 2×10 24 V DC 80 mA 0.2 F + 1k 2 op./s 3×10 7 100 V DC 20 mA 0.1 F + 1k or varistor 2 op./s 2×10 7 7 200 V DC 10 mA 0.1 F + 1k 2 op./s 2×10 (Notes) 1. When inrush current occurs in the capacitor load circuit or incandescent lamp load circuit
in „[S] Reed-Kontakt "NC"“ · Markt ·
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PDF
SDS-R-Relais.pdf
load. Contact voltage Contact current Contact protection circuit Operating speed Expected life, min. op. 6 V DC 232 mA 0.2 F + 1k or diode 2 op./s 3×10 7 7 12 V DC 106 mA 0.2 F + 1k or diode 2 op./s 3×10 24 V DC 54 mA 0.1 F + 1k or diode 2 op./s 3×10 7 7 100 V DC 15 mA 0.1 F + 1k or diode 2 op./s 2×10 24 V DC 80 mA 0.2 F + 1k 2 op./s 3×10 7 100 V DC 20 mA 0.1 F + 1k or varistor 2 op./s 2×10 7 7 200 V DC 10 mA 0.1 F + 1k 2 op./s 2×10 (Notes) 1. When inrush current occurs in the capacitor load circuit or incandescent lamp load circuit
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PDF
BISS0001.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „PIR Sensor auswerten .“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BISS0001-AppNote.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „Bewegungsmelder nur 1s schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BISS0001.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „HC-SR501 LDR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BISS0001-AppNote.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „HC-SR501 LDR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BISS0001-AppNote.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „PIR Sensor Pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BISS0001.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „HC-SR501 Verständnisfrage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BISS0001-AppNote.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „Atmega Strom sparen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BISS0001.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „Solar PIR Hofleuchte vom LIDL (& Co.)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BISS0001-AppNote.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „Problem mit Bewegungsmelder PIR HC-SR501.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BISS0001.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „HC-SR501 PIR Sensor delay ändern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BISS0001.pdf
Normally high. Low=reset) 9 VC Trigger disable input (VC >0.2Vdd=enable; Vc<0.2Vdd =disabled) 10 IB Op-amp input bias current setting 11 Vdd Supply voltage 12 2OUT 2ndstage Op-amp output nd 13 2IN - 2 stage Op-amp inverting input 14 1IN + 1 st stage Op-amp non-inverting input 15 1IN - 1 st stage Op-amp inverting input 16 1OUT 1 st stage Op-amp output * Tx = The time duration during which the output pin (Vo) remains high after triggering. Ti = During this time period, triggering is inhibited. See timing charts for details. Tx ≈ 24576 xR10
in „PIR Bewegungssensor, der aber nur bei Dunkelheit anspricht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
scale oP I applied for 5 mOP = 25°C to 150°C – 19.75 – mV/A Sens(TOP)LT Full scale oP I applied for 5 mOP= –40°C to 25°C – 20.5 – mV/A Noise2 V T = 25°C, 10 nF on VIOUT pin to GND – 6 – mV NOISE A Nonlinearity
in „ACS 758 Strommessgenauigkeit“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD623.pdf
currents. When amplifying floating input sources, such as bebuffered with a precision single-supply op amp, such as the transformers or ac-coupled sources, there must be a direct dc OP113. This op amp can swing from 0 V to 4 V on its output path into each input in order that the bias current can flow.
in „PT 100 mit AD623 auswerten möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP23017-Datasheet.pdf
with the master generating a Stop or Restart condition. FIGURE 3-2: BYTE AND SEQUENTIAL READ Byte S OP W SR OP R DOUT P SequentiaS OP W SR OP R D OUT ....DOUT P 3.2.2.3 I2C Sequential Write/Read The sequence ends with the master sending a Stop or Restart condition. For sequential operations (Write or
in „kennt jemand sich aus mit MC23017 IO-Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
scale oP I applied for 5 mOP = 25°C to 150°C – 19.75 – mV/A Sens(TOP)LT Full scale oP I applied for 5 mOP= –40°C to 25°C – 20.5 – mV/A Noise2 V T = 25°C, 10 nF on VIOUT pin to GND – 6 – mV NOISE A Nonlinearity
in „Passender ADC für Dtrommessung mit ACS758“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM3X.pdf
C4 PB22 F4 PA0 J4 PB31 M4 VBUS C5 PC22 F5 PD7 J5 TST M5 XIN32 C6 PC21 F6 GND J6 FWUP M6 XOUT32 C7 PB11 F7 GND J7 PB27 M7 VDDOUT C8 PB7 F8 VDDIO J8 NRST M8 VDDIN C9 PC10 F9 PC17 J9 PA19 M9 PC8 C10 PA29 F10 PC14 J10 PA22 M10 GNDANA C11 PA21 F11 PB20 J11 PA4 M11 ADVREF C12 PC29 F12 PB17 J12 PA6 M12 PB15
in „ARM SAM3x Zähleingang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM3X.pdf
C4 PB22 F4 PA0 J4 PB31 M4 VBUS C5 PC22 F5 PD7 J5 TST M5 XIN32 C6 PC21 F6 GND J6 FWUP M6 XOUT32 C7 PB11 F7 GND J7 PB27 M7 VDDOUT C8 PB7 F8 VDDIO J8 NRST M8 VDDIN C9 PC10 F9 PC17 J9 PA19 M9 PC8 C10 PA29 F10 PC14 J10 PA22 M10 GNDANA C11 PA21 F11 PB20 J11 PA4 M11 ADVREF C12 PC29 F12 PB17 J12 PA6 M12 PB15
in „Arduino Due: Programmierung ohne 16U2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
oP I applied for 5 OP,= 25°C to 150°C – 39.4 – mV/A Sens Full scale of I applied for 5 ms= –40°C to 25°C – 41 – mV/A (TOP)LT P OP Noise2 VNOISE TA= 25°C, 10 nF on VIOUT pin to GND – 10 – mV Nonlinearity
in „Stromsensor ACS758ECB-200U-PFF-T“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
oP I applied for 5 OP,= 25°C to 150°C – 39.4 – mV/A Sens Full scale of I applied for 5 ms= –40°C to 25°C – 41 – mV/A (TOP)LT P OP Noise2 VNOISE TA= 25°C, 10 nF on VIOUT pin to GND – 10 – mV Nonlinearity
in „Auslegen Tiefpassfilter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
oP I applied for 5 OP,= 25°C to 150°C – 39.4 – mV/A Sens Full scale of I applied for 5 ms= –40°C to 25°C – 41 – mV/A (TOP)LT P OP Noise2 VNOISE TA= 25°C, 10 nF on VIOUT pin to GND – 10 – mV Nonlinearity
in „Beispiel Anwendungen/Application zu ADCs - Abtastrate & Auflösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Design_Report.pdf
R1 (Stage 1) 1 Standard 7,96KΩ Exact: 0% Resistor C1 (Stage 1) 1 Standard 10nF Exact: 0% Capacitor OpAmp (Stage 1) 1 Standard Ideal OpAmp R2 (Stage 1) 1 Standard 2,11KΩ Exact: 0% Resistor R3 (Stage 1) 1 Standard 1KΩ Exact: 0% Resistor R1 (Stage 2) 1 Standard 2,07KΩ Exact: 0% Resistor R2 (Stage 2) 1 Standard
in „Analoger Anti-Alias Tiefpass an Soundkarte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD623.pdf
a thermocouple application. In dc-coupled resistive bridge Table III. Buffering Options +VS –INPUT Op Amp Comments OP113 Single Supply, High Output Current RG AD623 VOUT OP191 Rail-to-Rail Input and Output, Low Supply Current +INPUT REFERENCE OP150 Rail-to-Rail Input and Output, High Output Current LOAD
in „Op - Messbereich - Strom - ACS 750LCA-050“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D100940D.pdf
-A9389 P-DIP-8-6 1) TDA 16834 Discontiued P-DIP-8-6 TDA 16831G Q67000-A9421 P-DSO-14-11 TDA 16832G Discontiued) P-DSO-14-11 TDA 16833G Q67000-A9419 P-DSO-14-11 1) Last delivery:31.08.2003 Version 2.0 4 8 Aug 2002 TDA 16831-4 Overview 1) Device Output Power Range/Required Heatsink V in=
in „Wie startet dieses SNT ?“ · Mikrocontroller und Digitale Elektronik ·
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KEI_181_Service.pdf
NoisyQ41310pVlcm50ms/cm .............................. .... ................ ............... ,.,,5-11 5-20 Quiet041310~VV/cmWms/cm ...................... ..... .......... ....... .................. ,5-11 5-21 NoisyU4O1lOpV/cmWms/cm.. ............................... ............. .....................
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Elektronische_Last_5.pdf
R143 10k 8 3 R149 100n LM317 C103 C105 3k3 6 6 6 6 100n R120 2 1k R133 2 1k R139 2 1k R145 2 1k GND N OP07CN X107-2 OP07CN X109-2 OP07CN X111-2 OP07CN X113-2 GND GND GND GND G 5 4 R132 5 4 R138 5 4 R144 5 4 R150 IC103 1 7 8 3 IC104A 3 6 100R IC104D 12 1 -5V -5V -5V -5V 2 14 R115 2 1k 3k3 3k3 3k3 3k3 D R103 OP07CN 100n R108 13 C107 2k32 I1 D 12k 5 4 C106 R121 R128 R135 R141 R147 N 100p TLC274P 1k G TLC274P I2 R104 R122 10k 1k -5V R116 I3 1k15 R123 1k GND I4 R124 GND Elektronische Last 50V / 20A / 200W E Leistungsteil
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD1937.pdf
master clock rate setting 01 Input 384 (× 44.1 kHz or 48 kHz) 10 Input 512 (× 44.1 kHz or 48 kHz) 11 Input 768 (× 44.1 kHz or 48 kHz) 4:3 00 XTAL oscillator enabled MCLKO/MCLKXO pin, master clock rate setting 01 256 × S VCO output 10 512 × S VCO output 11 Off 6:5 00 MCLKI/MCLKXI PLL input 01 DLRCLK
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MEM4X16E43VTW-5.pdf
Data-Out (EDO) PAGE MODE access VCC 6 45 VSS • 4,096-cycle CAS#-BEFORE-RAS# (CBR) REFRESH DQ4 7 44 DQ11 distributed across 64ms DQ5 8 43 DQ10 DQ6 9 42 DQ9 • Self refresh for low-power data retention DQ7 10 41 DQ8 NC 11 40 NC VCC 12 39 VSS WE# 13 38 CASL# OPTIONS MARKING RAS# 14 36 CASH# NC 16 35 NC# •
in „SN74ABTH16460 4-to-1 Multiplexed/Demultiplexed Transceivers with 3-State Outputs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F10xxx__20xxx__21xxx_L1xxxx_Cortex-M3_programming_manual.pdf
subtract the middle words with carry SBCR2, R8, R11; subtract the most significant words with carry 3.5.2 AND, ORR, EOR, BIC, and ORN Logical AND, OR, exclusive OR, bit clear, and OR NOT. Syntax op{S}{cond} {Rd,} Rn, Operand2 where: • ‘op’ is one of:
in „Einstieg in STM32 : STM32F103C8T6 --> Kompilieren und Flashen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Linear_Current_Sense_AN105.pdf
. This circuit is exceptionally precise due to the supply for the first op amp. The N-MOSFET drain delivers use of Zero Drift op amps. The scaling accuracy is estab- a metered current into the virtual ground of the second lished by the quality of the user-selected resistors
in „'High Side' Strom Messen - Geht das so ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN105.pdf
. This circuit is exceptionally precise due to the supply for the first op amp. The N-MOSFET drain delivers use of Zero Drift op amps. The scaling accuracy is estab- a metered current into the virtual ground of the second lished by the quality of the user-selected resistors
in „High-Side Strommessung AVR (Shunt)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fakten.txt
TFD40W11-B1 - 4" LCD Display ========================= Pinbelegung: ------------ [in] logic power (5V) 2[in] horiz sync input 3[in] vert sync input 4[out] signal voltage / phase inversion control out 5[in] ground
in „4" TFT für 7,97€“ · Markt ·
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leLM392_Op.pdf
to both amplifiers unless otherwise stated) (Note 5) Parameter Conditions LM392 Units Min Typ Max OP AMP ONLY + Large Signal Voltage Gain V = 15 VDC , o swing = 1 VDC to 11 VDC , 25 100 V/mV RL = 2 kΩ, TA= 25˚C Output Voltage Swing RL= 2 kΩ, T A 25˚C 0 V −1.5 V + Common-Mode Rejection Ratio DC, TA=
in „Temperatursensor LM35 DZ will nicht funktionieren“ · Mikrocontroller und Digitale Elektronik ·
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cpu6801.pdf
<= op_code; end else begin case(op_ctrl) reset_op : begin op_code <= 8'b 00000001; // nop end fetch_op : begin op_code <= data_in; end default : begin // when latch_op => op_code <= op_code; end endcase end