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sn74hc165.pdf
SN74HC165PW TSSOP (16) 6.60 mm × 5.10 mm SN54HC165FK LCCC (20) 9.09 mm × 9.09 mm SN54HC165J CDIP (16) 21.34 mm × 7.52 mm SN54HC165W CFP (16) 9.40 mm × 7.75 mm (1) For all available packages, see the orderable addendum at the end of the data sheet. Logic Diagram Positive Logic A B C D E F G H 1 11 12 13
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PDF
B57164K_ENG_TDS.pdf
Dimensions in mm Approx. weight 0.4 g General technical data Climatic category (IEC 60068-1) 55/125/21 Max. power (at 25 °C) P 25 450 mW Resistance tolerance RR/RR ±5, ±10 % Rated temperature T R 25 °C Dissipation factor (in air) δ approx. 7.5 mW/K th Thermal cooling time constant (in air) τc approx.
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PDF
ccba_lago_0321_gb.pdf
other parameters, 22 AF see [Expert – Set parameters – p. 24]. 22 Lago 0321 Set DIP switches 20 78 5 21 6 18 ON = OFF 2 20T1 T2 9 10 78 5 21 6 18 1 2 3 4 5 6 KF, SPF, VF, AF… (5 k ) = ON F P 2 ON V S F V S 1 2 3 4 5 6 KFS, SPFS, VFAS, AFS… (1 k ) 2 See [Expert – Set DIP switches – p. 23] for expla- KF
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89C51CC01C-SLSUM.pdf
misinterpretation of voltage (and therefore, logic) levels at the pin. For example, a Port bit used to drive the base of an external bipolar transistor can not rise above the transistor’s base-emitter junction voltage (a value lower than VIL). With a logic one written to the bit, attempts by the CPU to read the Port
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PDF
pic18f2320.pdf
Technology Inc. PIC18F2220/2320/4220/4320 FIGURE 1-1: PIC18F2220/2320 BLOCK DIAGRAM Data Bus<8> PORTA 21 Table Pointer <2> Data Latch 8 8 8 8 RA0/AN0 Data RAM RA1/AN1 inc/dec logic (512 Bytes) RA2/AN2/V REF-/CVREF 21 RA3/AN3/V REF+ 21 Address Latch RA4/T0CKI/C1OUT Address Latch 20 PCLATU PCLATH (2) RA5/
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PDF
QuadSignals.pdf
orientation of the final complex spectra by adding or subtracting the jq(n) sequence as shown in Figure 21. i(n) -1 Freq i(n) - jq(n)-B/2 B/2 q(n) 0 Freq i(n) + jq(n)-B/2 B/2 0 Figure 21. Using the sign of q(n) to control spectral orientation. -j2πf t The top path in Figure 21 is equivalent to multiplying
in „Abtastrate Quadratursignal“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
QuadSignals.pdf
orientation of the final complex spectra by adding or subtracting the jq(n) sequence as shown in Figure 21. i(n) -1 Freq i(n) - jq(n)-B/2 B/2 q(n) 0 Freq i(n) + jq(n)-B/2 B/2 0 Figure 21. Using the sign of q(n) to control spectral orientation. -j2πf t The top path in Figure 21 is equivalent to multiplying
in „Komplexe Frequenz“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
QuadSignals.pdf
orientation of the final complex spectra by adding or subtracting the jq(n) sequence as shown in Figure 21. i(n) -1 Freq i(n) - jq(n)-B/2 B/2 q(n) 0 Freq i(n) + jq(n)-B/2 B/2 0 Figure 21. Using the sign of q(n) to control spectral orientation. -j2πf t The top path in Figure 21 is equivalent to multiplying
in „Negative Frequenzen bei Transformation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
QuadSignals.pdf
orientation of the final complex spectra by adding or subtracting the jq(n) sequence as shown in Figure 21. i(n) -1 Freq i(n) - jq(n)-B/2 B/2 q(n) 0 Freq i(n) + jq(n)-B/2 B/2 0 Figure 21. Using the sign of q(n) to control spectral orientation. -j2πf t The top path in Figure 21 is equivalent to multiplying
in „Simulation eines I-Q-Mischers! Negative Frequenzen in der FFT?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
APD5_Install_en_revF.pdf
.................................................................................................. 21 Adding the printer ............................................................................................................................... 21 Uninstalling the printer.........................
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PDF
CD4538.pdf
Propagation Delay tPLH CL= 50pF A, B to Q 2 - - 250 - 315 - 375 ns 4.5 - - 50 - 63 - 75 ns C = 15pF 5 - 21 - - - - - ns L CL= 50pF 6 - - 43 - 54 - 64 ns A, B to Q tPHL CL= 50pF 2 - - 250 - 315 - 375 ns 4.5 - - 50 - 63 - 75 ns C = 15pF 5 - 21 - - - - - ns L CL = 50pF 6 - - 43 - 54 - 64 ns R to Q tPHL CL= 50pF 2 - - 250 - 315 - 375 ns 4.5 - - 50 - 63 - 75 ns C = 15pF 5 - 21 - - - - - ns L CL= 50pF 6 - - 43 - 54 - 64 ns R to Q tPLH CL= 50pF 2 - - 250 - 315 - 375 ns 4.5 - - 50 - 63 - 75 ns C = 15pF 5 - 21 - - - - - ns L CL= 50pF 6 - - 43 - 54 - 64 ns Output Transition Time
in „Unterschied CD4528 zu CD4538 ?“ · Mikrocontroller und Digitale Elektronik ·
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20002019c.pdf
Pins N 8 Pitch e .100 BSC Top to Seating Plane A - - .210 Molded Package Thickness A2 .115 .130 .195 Base to Seating Plane A1 .015 - - Shoulder to Shoulder Width E .290 .310 .325 Molded Package Width E1 .240 .250 .280 Overall Length D .348 .365 .400 Tip to Seating Plane L .115 .130 .150 Lead Thickness c
in „Pulsschweisgerät mit Auto Batt Schaltungs Verbesserung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DTZ_Logger_OPEN.ino
include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> //ADC_MODE(ADC_VCC); #define BoardTaster 0 #define LED 14 #define Receive485
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt.pdf
output pulses, while the frequency measurement must accumulate pulses during the entire counter time-base period. Time measurements can be made from either the TC9400’s PULSE FREQ OUT output, or from the FREQ/2 OUT output. The FREQ/2 OUT output changes state on the rising edge of PULSE FREQ OUT, so FREQ
in „Frequenz-Spannungswandler OP-Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FR5050_1.2_complete.pdf
Register0x14 Input Pulse Width 0x15 0x19 I*R compensation gain 0x20 0x60 0x0000 0x0FFF top speed 0x21 0x61 0x0000 0x0FFF 75.9V 18.51mV potentiometer min 0x22 0x62 0x0000 0x0FFF 4.85V 1.18mV potentiometer max 0x23 0x63 0x0001 0x0FFF 4.85V 1.18mV 0x24 Status Register 0x30 Lock_level_2 Variables 0x31 0x71
in „suche Poti mit Rechts- und Linkslauf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
R-IN32M-CL_CC-Link_IE_Field_Intelligent_device_station.pdf
/TIA/EIA-568-B shielded connector? Pulse transformer 3 selection Did you select an IEEE 802.3 1000BASE-T compatible component? Did you select a component that satisfies the following specifications? (1)IEEE 802.3 1000BASE-T full duplex compatible component (2)Component having an auto negotiation function
in „Wie funktioniert der Interrupt- bzw. Eventaufruf?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-8209-8-bit_AVR_ATmega16M1-32M1-64M1_Datasheet_1_.pdf
ATmega16M1/32M1/64M1 [DATASHEET] 267 Atmel-8209F-ATmega16M1/32M1/64M1_Datasheet_Complete-10/2016 20.11.21. CAN Identifier Tag Registers V2.0 part B Name: CANIDT Offset: 0xF0 Reset: Property: R/W Bit 31 30 29 28 27 26 25 24 IDT28 IDT27 IDT26 IDT25 IDT24 IDT23 IDT22 IDT21 Access Reset Bit 23 22 21 20 19 18
in „Externer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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burst3.asm
;GENERIC CLOSED INNER LOOP OUTLOOP EQU 0X24 ;GENERIC OUTER LOOP FOR INLOOP MULTIPLES REDACT EQU 0X21 ;RED ACTUAL INTENSITY GRNACT EQU 0X22 ;GREEN ACTUAL INTENSITY BLUACT EQU 0X23 ;BLUE ACTUAL INTENSITY REDTARG EQU 0X35 ;RED TARGET INTENSITY GRNTARG EQU 0X36 ;GREEN TARGET INTENSITY BLUTARG EQU 0X37 ;
in „12F629 LED Ansteuern in versch. Helligkeitsstufen“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
Tube 800: 800V -TR:Tape & Reel SENSITIVITY: 35: 35mA 3/7 BTA/BTB16 and T16 Series OTHER INFORMATION Base Packing Part Number Marking Weight quantity mode BTA/BTB16-xxxyz BTA/BTB16xxxyz 2.3 g 250 Bulk BTA/BTB16-xxxyzRG BTA/BTB16-xxxyz 2.3 g 50 Tube T1635-xxxG T1635xxxG 1.5 g 50 Tube T1635-xxxG-TR T1635xxxG
in „Kühlkörper für Triac auswählen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dmesg_pollin.txt
<5>Linux version 2.6.21.3PNX8550 (root@smithy) (gcc version 4.0.0 (DENX ELDK 4.0 4.0.0)) #1743 Fri Feb 11 10:49:15 OMST 2011 <4>Setting initial splash screen display mode SD (50Hz) <4>CPU revision is: 00061200 <4>Determined
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PDF
WEVO_Haerter_300_-_MSDB.pdf
Isomeren und Homologen 009016-87-9 Xn R 20-R42/43 R36/37/38 > 98 % Isophthalsäuredichlorid 99-63-8 Xn R 21- R36/37/38 R 43 0,1 % 3. Mögliche Gefahren Gesundheitsschädlich beim Einatmen. Reizt die Augen, Atmungsorgane und die Haut. Sensibilisierung durch Einatmen und Hautkontakt möglich. Personen mit Überempfindlichkeit
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1050.pdf
S R 5 5 T R 2.75 ø1.3 ø1.3 2.75 7.5 7.5 E 7.5 7.5 H I W T PCB terminal (cover side) PCB terminal (base side) O F right angled left angled S 19.8 E C 9.5 5.1 6.4 I 7.5 3 S E 2 K 3 3 . N 3 A C T 0.5 1.3 2.75 2.5 0 7.5 7.5 E . C 1 I W N I C PCB terminal - A sealed S S H I 19.5 W L 9.5 A I - 8 R 6 I M 3
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BTA_16-600B.pdf
Tube 800: 800V -TR:Tape & Reel SENSITIVITY: 35: 35mA 3/7 BTA/BTB16 and T16 Series OTHER INFORMATION Base Packing Part Number Marking Weight quantity mode BTA/BTB16-xxxyz BTA/BTB16xxxyz 2.3 g 250 Bulk BTA/BTB16-xxxyzRG BTA/BTB16-xxxyz 2.3 g 50 Tube T1635-xxxG T1635xxxG 1.5 g 50 Tube T1635-xxxG-TR T1635xxxG
in „BTA 16-600B Triacs“ · Markt ·
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PDF
SERIES_76_and_78.pdf
76SD01T 76RSD01T 76STD01T Form D 2 0.780" 19,8mm 13 76SD02T 76RSD02T 76STD02T DPDT 1 0.480" 12,2mm 21 78K01T — — 4 Circ. 2 0.880" 22,4mm 12 78K02T — — A top tape seal is required for switches that are machine soldered or heavily cleaned after hand soldering.Toordertopsealversions,add"S"beforethe"T"intheGrayhillpartnumber.Notavailable
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C535A_WJN_877.pdf
Temperature T -40 ~ +100 °C stg Lead Soldering Temperature T Max. 260°C for 3 sec. max. sol (3 mm from the base of the epoxy bulb) Note: Pulse width ≤0.1 msec, duty ≤1/10. TYPICAL ELECTRICAL & OPTICAL CHARACTERISTICS (T = 25°C) A Characteristics Symbol Condition Unit Minimum Typical Maximum Forward Voltage V
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Modifikationen.pdf
MIN TYP MAX MIN TYP MAX A1 5,90 6,10 6,30 0,232 0,240 0,248 A2 2,10 2,30 2,50 0,083 0,091 0,098 A3 21,50 22,50 23,50 0,846 0,886 0,925 b1 6,30 0,248 b2 7,40 0,291 D 15,50 15,70 15,90 0,610 0,618 0,626 D1 12,75 12,80 12,85 0,502 0,504 0,506 Package modification is available for the following types: BYY53
in „Wie Lötöse an Einpressdiode anschweißen?“ · Mechanik, Gehäuse, Werkzeug ·
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bta06.pdf
current (full cycle,jTnitial = 25°C)F = 60 Hz t = 16.7 ms 63 A I t I t Value for fusing tp= 10 ms 21 A²s dI/dt Critical rate of rise of on-state cuF = 120 Hz T = 125°C 50 A/µs rent G = 2 x GT , r ≤ 100 ns j GM Peak gate current tp= 20 µs T j 125°C 4 A P Average gate power dissipation T = 125°C 1 W G
in „Bauteil identifizieren Phasenanschnitt Kitchenaid“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
155574-da-01-en-OP_VERST_LM2902N_STM.pdf
exists when the voltage at any of the input leads is driven negative. It is due to the collector-base junction of the input PNP transistor becoming forward biased and thereby acting as input diodes clamps. In addition to this diode action, there is also NPN parasitic action on the IC chip. This transistor
in „Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AS-MLV-P2_Datasheet_EN_v2.pdf
party shall arise or flow out of ams AG rendering of technical or other services. ams Datasheet Page21 [v1-01] 2015-Oct-12 Document Feedback AS-MLV-P2− DocumentStatus Document Status Document Status Product Status Definition Information in this datasheet is based on product ideas in Product Preview Pre-Development
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PDF
Wlan-SW4_S01_Funk433MHz.pdf
0,08€/10 PCB5_12Vto5V + 5PS1_Fast-Start-U1L X2 ncBAV70 ncBAV70 BAV70 10S8050 0,02€/100 SOT23 (A4s), BAS70-05 10S7454 0,08€/100 SOT23 Schottky (75s) MP1584EN_PCB_Adj5V (43k+8k2) 2 ~ ~4 4OUT L-ACin 3 O C 8 K5 Relais 1um 10A 5Vdc 89,3mA 55R 5Pin P21,2V 3,1Von 2,9Voff0,8V P4 GND_X1-13 +Ub_X1-14 LM1117-3,3V
in „Tuya Motorsteuerung Rollo Fenster Garage Gewächshaus Auf Zu APP WLAN+433MHz 7-32Vdc 10A 2Ch 4Ch“ · Projekte & Code ·
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FA-Bauteiletester_BX-232_Bauanleitung.pdf
E D A11 u PD4(T0/XCKPCINT20) 2 U N N P D D +5V 0 0 18 9 V V C C G V + 1 1 20 AVCC PD5(T1/OC0B/PCINT21) 10 2 2 2 2 2 2 n AREF PD6(AIN0/OC0A/PCINT22) 11 1 6 1 PD7(AIN1/PCINT23) C C 3 C PB0(ICP1/CLKO/PCINT0) 12 PB1(OC1A/PCINT1) 13 5 T6 21 AGND PB2(SS/OC1B/PCINT2) 14 + BSS123 2 4 PB3(MOSI/OC2A/PCINT3) 15
in „Funkamateur Bauteiletester BT2 BX232 Wer kann mir helfen?“ · PC Hard- und Software ·
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PDF
Atmel_8051__Cs.pdf
be read. This addressing mode is intended for reading look-up tables in Program Memory. A 16-bit base register (either DPTR or the Program Counter) points to the base of the table, and the Accumulator is set up with the table entry number. The address of the table entry in Program Memory is formed by adding the Accumulator data to the base pointer. Another type of indexed addressing is used in the “case jump” instruction. In this case the destination address of a jump instruction is computed as the sum of the base pointer and the Accumulator
in „serielle Ausgaben auf AT89S52 Baud-Raten-Generator startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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bq2060a.pdf
monitors capacity and other critical VCC 7 22 SR1 battery parameters for NiCd, NiMH, Li-ion, and VSS 8 21 SR2 DISP 9 20 SRC lead-acid chemistries. The bq2060A uses a volt- 10 19 age-to-frequency converter with automatic offset error LED1 TS correction for charge and discharge counting. For LED2 11 18 THON
in „Verstehe dieses Datenblatt nicht (BQ2060A)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC89C51RC-en.pdf
................20 Chapter 3 Memory Organization...................................................21 3.1 Program Memory...............................................................................21 3.2 Data Memory....................................................................................
in „stc89c52rc programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90CAN128.pdf
IDT20 IDT19 IDT18 IDT17 IDT16 IDT15 IDT14 IDT13 CANIDT2 IDT28 IDT27 IDT26 IDT25 IDT24 IDT23 IDT22 IDT21 CANIDT1 263 7679H–CAN–08/08 Bit 31/23 30/22 29/21 28/20 27/19 26/18 25/17 24/16 Read/Write R/W R/W R/W R/W R/W R/W R/W R/W Initial Value - - - - - - - - V2.0 part A • Bit 31:21 – IDT10:0: Identifier
in „uC + 3 Schieberegister + 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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MCU.pdf
2.2.23 DAC (digital-to-analog converter) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21 2.2.24 Temperature sensor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21 2.2.25 Serial wire JTAG debug port (SWJ-DP) . . . . . . . . . . . . . . . . . . . . . . .
in „suche die pins für flash speicher“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
orrsne.w ip, r4, r0 800a68e: ea55 0c02 orrsne.w ip, r5, r2 800a692: ea7f 5c64 mvnsne.w ip, r4, asr #21 800a696: ea7f 5c65 mvnsne.w ip, r5, asr #21 800a69a: f000 80e2 beq.w 800a862 <__adddf3+0x1ee> 800a69e: ea4f 5454 mov.w r4, r4, lsr #21 800a6a2: ebd4 5555 rsbs r5, r4, r5, lsr #21 800a6a6: bfb8 it lt
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top222y.pdf
CD1 Minimum D I = 10 mA, See Figure 10 0.7 1.7 2.7 % Duty Cycle MIN C PWM I = 4 mA, T = 25 ˚C C j -21 -16 -11 %/mA Gain See Figure 4 PWM Gain See Note A -0.05 %/mA/˚C Temperature Drift External Bias Current B See Figure 4 0.8 2.0 3.3 mA I = 4 mA, T = 25 ˚C Dynamic Z C j Impedance C See Figure 11 10 15
in „Suche Ersatz für TOP222Y“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TOP222Y.pdf
Figure 10 Minimum D 0.7 1.7 2.7 % Duty Cycle MIN IC= 10 mA, See Figure 10 PWM IC= 4 mA, T J 25 °C -21 -16 -11 %/mA Gain See Figure 4 PWM Gain See Note A -0.05 %/mA/°C Temperature Drift External Bias Current B See Figure 4 0.8 2.0 3.3 mA I = 4 mA, T = 25 °C Dynamic Z C J Ω Impedance C See Figure 11 10
in „Voltcraft SPS-1540 PFC defekt - Reparaturhilfe benötigt“ · Analoge Elektronik und Schaltungstechnik ·
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HCPL-4731.pdf
V Input Power Dissipation (Each Channel) P 15 mW I Output Current (Each Channel) IO 60 mA Emitter Base Reverse Voltage (HCPL-4701/070A) VEB 0.5 V Output Transistor Base Current (HCPL-4701/070A) IB 5 mA Supply Voltage V -0.5 18 V CC Output Voltage VO -0.5 18 V Output Power Dissipation (Each Channel) PO
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
platformio.ini
gcode/sd/M808.cpp> -<src/gcode/temp/M104_M109.cpp> -<src/gcode/temp/M155.cpp> -<src/gcode/units/G20_G21.cpp> -<src/gcode/units/M149.cpp> -<src/libs/BL24CXX.cpp> -<src/libs/W25Qxx.cpp> -<src/libs/L64XX> -<src/module/stepper/L64xx.cpp> -<src/libs/hex_print.cpp> -<src/libs/least_squares_fit.cpp> -<src/libs
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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TASMMAN.pdf
The following table indicates the current extended instruction sets available in the TASM tables: Base Table Base Family Ext 1 (-x3) Ext 2 (-x7) Ext 3 (-x5) Ext 4 (-x9) 48 8048 8041A 8022 8021 65 6502 R65C02 R65C00/21 05 6805 M146805 CMOS HC05C4 80 Z80 HD64180 68 6800 6801/6803 68HC11 51 8051 85 8080
in „Suche verschiedene BASIC Eprom's für Z80 Rechner.“ · Markt ·
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DSA00206265.pdf
CONSTANT V-s/rad 0.055 0.057 0.168 0.059 0.185 0.196 0.206 0.204 V/krpm 5.74 5.98 17.6 6.14 19.4 20.5 21.6 21.3 ARMATURE RESISTANCE Ω 4.5 2.6 28.6 1.5 13.6 6.5 2.4 2.1 ARMATURE INDUCTANCE mH 1.5 0.9 8.7 0.7 6.2 3.2 1.7 1.1 INSTANTANEOUS PEAK TORQUE N-cm 0.353 0.54 0.54 1.05 1.05 2.11 3.51 5.39 kgf-cm 3.6 5.5 5.5 10.7 10.7 21.5 35.8 55 INSTANTANEOUS MAX CURRENT A 6.4 9.5 3.2 17.8 5.7 10.8 16.1 26.5 MAX SPEED rpm 4,500 4,500 4,500 4,000 4,000 4,000 4,000 4,000 ROTOR INERTIA kg-m 2 3.1 x 10-6 5.88 x 10-6 5.88 x 10-6 1.73 x
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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m3s_v2-0.pdf
4.5 Protokoll 09: Dateitransfer . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21 4.6 Protokoll 14: Erweitert . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21 5 Basisbefehlssatz 22 5.1 Slaveinformationen lesen . . . . . . . . . . . . . . . . . . . . . . .
in „API-Feedback / Protokollfeedback: Kommunikationsstack für serielle Bussysteme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA_128.pdf
$26 ($46) ICR1L Timer/Counter1 - Input Capture Register Low Byte 134 $25 ($45) TCCR2 FOC2 WGM20 COM21 COM20 WGM21 CS22 CS21 CS20 151 $24 ($44) TCNT2 Timer/Counter2 (8 Bit) 153 $23 ($43) OCR2 Timer/Counter2 Output Compare Register 153 $22 ($42) OCDR IDRD/ OCDR6 OCDR5 OCDR4 OCDR3 OCDR2 OCDR1 OCDR0 242 OCDR7 $21 ($41) WDTCR - - - WDCE WDE WDP2 WDP1 WDP0 51 $20 ($40) SFIOR TSM - - ADHSM ACME PUD PSR0 PSR321 67, 104, 139, 237 $1F ($3F) EEARH - - - - EEPROM Address Register High 19 $1E ($3E) EEARL EEPROM Address
in „ATMEGA128 Board im Neuhold Newsletter 2/2011“ · Mikrocontroller und Digitale Elektronik ·
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AS5048_Datasheet.pdf
R flag. If the previous command was a write command a second package has to be transmitted. Figure 21: SPI Write Data Package Data Package Bit MSB 14 13 12 11 10 9 8 7 6 5 4 3 2 1 LSB PAR R Data <13:0> Bit Definition & Description PAR Parity bit (EVEN) R Has to be 0 Data 14 bit data to write to former
in „Drehwinkelmessung“ · Mikrocontroller und Digitale Elektronik ·
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tFXKSKyORc24h2V2.pdf
D 1 3 D 1 E OSDDNG 1 0 1 M 0 G 41 31 B1NET E1 5 W S W S 9 8 R 20 1 X 31 2 S S F 01 RM 7Q 7 D F 7R 21 21 A1NET 3 4 6SK/ 1SK KLCS_I PS M11 PCHS6Q 6 9 A 6R 11 11 6 5 2 5 3 PCTS21 PCTS 5Q 5 4 0 1 O 5R 01 01 3 p 2 3 S T S 5 T EO/31 EO 4Q 4 R 2 W L 4R 9 9 3 ) 4 0 G D S C 0 1 0 S C "2ODEL 41 SD 3Q 3 8 D 7
in „Risiko | Nicht?“ · Offtopic ·
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High_Voltage_Low_Noise_DC_DC_Converters_an118fa.pdf
Figure 13. Output Noise is 100μV P-P 5V + 33μF DANGER! Lethal Potentials Present — See Text L1 1N5712 BAS521 100k 100Ω 300Ω OUTPUT 200V Q1 1μF = 2x – 1μF IRF840 0.47μF 15V 1N5256B 250V 1N4702 30V 5% 1N5819 1M* BAS521 0.47μF SW 250V 5V VIN LT1172 FB + 1μF 6.19k* VC GND E2 E1 = FERRITE BEAD FERRONICS 21-110J
in „Morpheus + Rudi“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCS12COREUG.pdf
MIN-MAX Each rule input is 8-bit offset from base address in Y. N REV rule Each rule output is 8-bit offset from base address in Y. ƒ evaluation $FE separates rule inputs from rule outputs. $FF terminates rule list. i REV can be interrupted. L Find
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RM-MPU-3300.pdf
C LAVE4 CONTROL ...................................................................................21 2 4.12 REGISTER 54 – I C ASTER S TATUS..................................................................................................23 4.13 REGISTER 55 – INT PIN/ YPASS ENABLE C ONFIGURATION ....
in „SPI Kommunikation mit MPU3300“ · Mikrocontroller und Digitale Elektronik ·