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PDF
Amp-30W-25-110MHz-BLF244-1.pdf
The reactance of this shunting inductance is allowed to be at least 4 times the load resistance or 200 at 25 MHz. So, LAC amounts to 1.27 H and L AB to 0.318 H. To obtain the inductance L AB a ferrite rod grade 4B1 has been used with a length of 30 mm and a diameter of 5 mm. According to ref.(3) its
in „20MHz - 200MHz Isolator bzw. Zirkulator“ · HF, Funk und Felder ·
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PDF
STV0299B.pdf
bit must be programmed to zero. [5:0] AGC1 Reference Value (m1). Refer to page 12. AGC2 AND OFFSET CONTROL REGISTER (refer tSection 4.2.5n page 12 ) AGC2O 10 74 [7:5] AGC2 Coefficient [4:0] AGC2_Ref (m2) 22/36 STV0299B 5 REGISTER LIST (continued) HEX Reset Bit Name Address
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BYW29.pdf
MAX. UNIT rectifier diodes in a plastic envelope, featuring low forward voltage drop, BYW29- 100 150 200 ultra-fast recovery times and soft VRRM Repetitive peak reverse 100 150 200 V recovery characteristic. They are voltage intended for use in switched mode VF Forward voltage 0.895 0.895 0.895 V power
in „BYW29G-200 gesucht (D²Pack) oder Vergleichstyp“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_SIM800L.pdf
by STATUS pin, which is at low level at this time. For detail aboutAT command “AT+CPOWD”, please refer to document [1]. 4.2.2.3. Over-voltage or Under-voltage Power down The module software monitors the VBAT voltage constantly. If the voltage ≤ 3.5V, the following URC will be reported: UNDER-VOLTAGE
in „LM2596 an SIM800l“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PT6311.PDF
Nom. Max A - - 3.15 A1 0.00 - 0.25 A2 2.50 2.70 2.90 b 0.34 - 0.50 D 17.20BSC D1 14.00BSC. D2 12.00REF E 17.20BSC E1 14.00BSC E2 12.00REF e 1.00BSC L 0.73 0.88 1.03 L1 1.60BSC R1 0.13 - - R2 0.13 - 0.30 θ 0ο − 7 ο θ1 0ο − − θ2 5ο − 16ο ο ο θ3 5 − 16 Notes: 1. All dimensioning and tolerancing dimension
in „PT6311 und microcontroller atmel?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA137.pdf
systems. ® 2 INA137, INA2137 PIN CONFIGURATIONS Top View 8-Pin DIP/SO-8 Top View 14-Pin DIP/SO-14 Ref 1 8 NC NC 1 14 Ref A –In 2 7 V+ –In A 2 13 Out A A +In 3 6 Output 3 12 +In A Sense A V– 4 5 Sense V– 4 11 V+ +In B 5 10 Sense B B NC = No Connection –In B 6 9 Out B ABSOLUTE MAXIMUM RATINGS (1) NC 7 8 Ref B Supply Voltage, V+ to V–.................................................................... 40V Input Voltage Range.......................................................................... ±80V
in „Differenzverstärker IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX3355E.pdf
....................Infrared (15s) ...............................................................+200°C Output Current (all other pins).................................Vapor Phase (20s) .......................................................+215°C A Continuous Power DissipationA(T +70°C) 4 x 3 UCSP
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80060b32.pdf
the serial system of the MIFARE Demonstration System is described. For the parallel system please refer to ‘MIFARE - Hardware Independent Low Level Functions’. For the serial commands please refer to ‘MIFARE Serial Reader - Specification of the Software Requirements’. The picture on the next page shows
in „[V] Altes RFID Mifare Philips Eval Kit (1998)..“ · Markt ·
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PDF
CLAA070VA02.pdf
100 uA Analog Power Current IAVDD AVDD=9.6V - 29.2 60 mA Gate on Power Current IVDDG VDDG=15V - 131 200 uA Gate off Power Current IVEEG VEEG=-6V - 178 -200 uA (c)Backlight Ta=25 ℃ ITEM SYMBOL MIN TYP MAX UNIT NOTE Lamp Voltage VL 504 560 616 V IL=6.0mA Lamp Current IL 5.5 6 6.5 mA *1) Lamp Frequency FI
in „Wer kennt diesen Display-Fehler? (Typisch?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1703_MIC.pdf
V ≥ 2.5V OUT_mA R 50 100 — mA For VR < 2.5V, IN ≥ 2.7V 100 130 — mA For VR < 2.5V, IN ≥ 2.95V 150 200 — mA For VR < 2.5V, IN ≥ 3.2V 200 250 — mA For V < 2.5V, V ≥ 3.45V R IN Output Short Circuit Current IOUT_SC — 400 — mA VIN= V IN(MIN)Note 1), VOUT = GND, Current (average current) measured 10 ms after
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
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OP90.pdf
4.0 25 nA LARGE-SIGNAL VS= ±15 V, VO= ±10 V VOLTAGE GAIN A VO RL= 100 kΩ 400 800 V/mV A VO RL= 10 kΩ 200 400 V/mV A VO RL= 2 kΩ 100 200 V/mV V+ = 5 V, V– = 0, 1 V< VO< 4 V A VO RL = 100 kΩ 100 250 V/mV A VO RL= 10 kΩ 70 140 V/mV INPUT VOLTAGE RANGE 1 IVR V+ = 5 V, V– = 0 V 0/4 V VS= ±15 V –15/13.5 V OUTPUT
in „Stromverbrauch eines Mikrocontrollers zeitaufgelöst messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
203493453ADF7020_0.pdf
TYPICAL PERFORMANCE CHARACTERISTICS CARRIER POWER –0.28dBm ATTEN 0.00dB MKR1 10.0000kHz MKR4 3.482GHz REF –70.00dBc/Hz –87.80dBc/Hz REF 10dBm ATTEN 20dB SWEEP 16.52ms (601pts) 10.00 PEA K 1 dB/ LOG 1 10dB/ 3 4 REF LEVEL 10.00dBm 0 7 1 1kHz FREQUENCY OFFSET 10MHz 1 START 100MH z STOP 10.000GHz - 0 9 RES
in „LFCP_VQ löten/belichten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC4426.pdf
9.40 9.78 10.16 Tip to Seating Plane L .125 .163 .200 3.18 4.13 5.08 Lead Thickness c .008 .012 .015 0.20 0.29 0.38 Upper Lead Width B1 .045 .055 .065 1.14 1.40 1.65 Lower Lead Width B .016 .018 .020 0.41 0.46 0.51 Overall Row Spacing eB .320 .360 .400
in „Mosfet Treiber TC4426 + IRF IRF3205S (Ersatz gesucht)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C500-System.pdf
richtig vom LSD zum MSD im Riythmus gegen an IT L-Potential, so stoppt das A/D• der um den Faktor k = 1/200 vermindert n Wandlersystem mit dem Beginn der nächst Frequenz des exteroen o der internen Taktge folgenden Asbeitsphase Nullpunktkorrektur. nerators durchgeschaltet. Bild J.11 verdeut- K?O% E200 ·
in „IC C500 Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SPEC-2400__LV_and_C__L_-_May_2013_.pdf
after command is processed and output slew. 100µs typical. 2400-C and 200.00 V 5 mV 0.02% + 24 mV 5 mV Resistive load. 10µA to 100mA range. 2400 Only: OUTPUT SLEW RATE (±30%): 0.5V/µs, 200V range, 100mA compliance. (2400 and 2400-C only) 0.08V/µs, 20V range, 100mA TEMPERATURE
in „Messunsicherheiten Keithly 2400 Sourcemeter“ · Analoge Elektronik und Schaltungstechnik ·
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CW1051AL.pdf
R4 VC2 C4 R5 VC1 C5 VSS CO P- Recommended parameter SYMBOL TYPICAL RANGE UNIT R1,R2,R3,R4,R5 1000 200~2000 R6 200 200~1000 C1,C2,C3,C4,C5 0.1 0.1~0.22 F C6 0.1 0.1~0.47 F 2 © 2015-2019 Cellwise Microelectronics CW1051 Product Name CW1051 X X X X Package type, D: DFN3*4-8L M: MSOP8L Parameter
in „Tiefentladeschutzschaltung für 20V Li-ION vom ALDI/Lidl?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
msp430f5529.pdf
MDB 3 Channel Registers EEM (L: 8+2) USCI0,1 ADC12_A JTAG, TA0 TA1 TA2 TB0 USCI_Ax: 12 Bit SBW UART, 200 ksps REF COMP_B Interface MPY32 Timer_A Timer_A Timer_A Timer_B RTC_A CRC16 IrDA, SPI 5 CC 3 CC 3 CC 7 CC 12 Channels 8 Channels Registers Registers Registers Registers USCI_Bx: (10 ext, 2 int) SPI,
in „Tastatur komplett selbst erstellen“ · PC Hard- und Software ·
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PDF
ths0842.pdf
= 3.6 V 10 A Low-level input current on digital inpAVDD = DDD = DRVDD = 3.6 V, IL (OE, STDBY, PWDN_REF, CLK) Digital inputs at 0 V 10 A CI Input capacitance 5 pF †IIHleakage current on other digital inputs (OE, STDBY, PWDN_REF) is not measured since these inputs have an internal pull-down resistor of
in „ADC - Wie schnell aktualisiert der? Ist ein Oszi möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1303.pdf
6800-parallel interface mode, external V CC is shown in the following diagram: (V DD=2.7V, V =VCC REF =12V, I REF=10uA) DISPLAY PANEL SIZE 96 x 64 2 0 5 1 3 6 6 2 0 0 9 1 3 6 6 M M M M G G M M M M C C . . C C O S . . . . . . . . . . . . S E C C . . C C O SSD1303T3 V V I D ~D E (RD#) R/W# (W/R#) D/C# RES# CS# BS BV VDDB GDR RESE FB VB V CC COMH REF7 0 1 2 DD REF SS C3 R1 C 1 C 2 D0~7 E (RD#) R/W# (W/RD/C# RES# CS# BS1BS2 VDD VSS Vcc VSS [GND] Pin connected to MCU interface: D0~D7, E, R/W#, D/C#, CS#, RES# Pin externally connected to VSS: BS0,
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Datei
AD-wandler.asm
----------------+ ;debug on off .equ debug = 1 .equ Ptime = 20 ; bei 4 mhz ca 49ms bei bei 1MHZ ca 200ms und gleichzeitig noch wie oft das ergebnis gleich sein sollte ;***** Pin definitions .if debug == 1 .equ RxD = 1 ;empfangen pin is PB1 RxD .equ TxD = 4 ;Senden pin is PB4 TrD .endif .if debug == 0
in „ATtiny13 ADC FRAGE ASM (VERSTEHEN)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPU0410LR5H.pdf
11 ©2013 Knowles Electronics SPU0410LR5H-QB INTERFACE CIRCUIT VDD .1f R F V DD OUTPUT RS GROUND V REF External Gain = -F /S (Set By User) Dotted Section Represents SiSonicTM Microphone Note: All Ground pins must be connected to ground. Capacitors near the microphone should not contain Class 2 dielectrics
in „Offset bei Messung einer Schalllaufzeit, woher?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
G2R2A_1717885.pdf
B 4/10ms 006 6 4.2 0.6 90 400 1) Electrical endurance see electrical endurance graph 009 9 6.3 0.9 200 400 012 12 8.4 1.2 360 400 Contact ratings 024 24 16.8 2.4 1440 400 Type Contact Load Cycles 048 48 33.6 4.8 5520 417 IEC 61810 060 60 42.0 6.0 8570 ) 420 3 2) RT424 DC coil C (CO) 8A, 250VAC, cosφ=
in „Schalter: Öffnen bei Kleinspannung + Überlast "sicher"?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780u_lcd2.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency =16.3 ms = 61.4 Hz 1/16 duty cycle 200 clocks COM1 1 2 3 4 16 1 2 VCC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „LCD - Displaycode 4 Bitmodus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency =16.3 ms = 61.4 Hz 1/16 duty cycle 200 clocks COM1 1 2 3 4 16 1 2 VCC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „LCD-Anzeige-Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
frame = 3.7 µs × 400 × 11 = 16300 µs = 16.3 ms 1 Frame frequency =16.3 ms = 61.4 Hz 1/16 duty cycle 200 clocks COM1 1 2 3 4 16 1 2 VCC V1 V2 V3 V4 V5 1 frame 1 frame = 3.7 µs × 200 × 16 = 11850 µs = 11.9 ms Frame frequency = 1 = 84.3 Hz 11.9 ms Figure 22 Frame Frequency 38 HD44780U Instruction and Display
in „Reziproker Frequenzzähler+ Optimierte 64bit uint Routinen“ · Projekte & Code ·
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PDF
wama-online-dokumentation-public.pdf
2METALL 10,0K Widerstand 1% 10K http://www.reichelt.de/?ARTICLE=11449 R3,4,9,11 0,32 0,08 4METALL 200 Widerstand 1% 200R http://www.reichelt.de/?ARTICLE=11609 R6,7,8,10 0,32 0,08 4METALL 20,0K Widerstand 1% 20K http://www.reichelt.de/?ARTICLE=11606 0,16 0,08 2PFL 10 Pfostenbuchse 10pol http://www.reichelt.de
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PDF
gps-spec-IS_GPS_200J.pdf
REVISION RECORD LTR DESCRIPTION DATE APPROVED NC Initial Release 25 Jan 1983 A Incorporates IRN-IS-200NC-001, IRN- IS-200NC-002, 25 Sep 1984 and IRN- IS-200NC-003 B Incorporates IRN- IS-200A-001A 30 Nov 1987 C Incorporates IRN- IS-200B-001 thru IRN- IS-200B-007 10 Oct 1993 C Re-formatted in Microsoft
in „Magisches Auge für GPS-Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430fr5969.pdf
Sensor 30°C 01A23h per unit ADC 2.5-V Reference 01A24h per unit Temp. Sensor 85°C 01A25h per unit P REF Calibration REF Calibration Tag 01A26h 12h REF Calibration length 01A27h 06h R O 01A28h per unit REF 1.2-V Reference 01A29h per unit D U 01A2Ah per unit C REF 2.0-V Reference 01A2Bh per unit T REF 2.5
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
(High, Low) tw 200 - - (3) Serial Interface Chip Select Setup Time tsu1 60 - - Chip Select Hold Time th1 20 - - Mod (Refer to Fig-23) Serial Input Data Setup Tim tsu2 100 - - ns Serial Input Data Hold Time th2 100 - -
in „RE bit beim KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
(High, Low) tw 200 - - (3) Serial Interface Chip Select Setup Time tsu1 60 - - Chip Select Hold Time th1 20 - - Mod (Refer to Fig-23) Serial Input Data Setup Tim tsu2 100 - - ns Serial Input Data Hold Time th2 100 - -
in „EA DIP204-4 Datenblatt verständnis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
(High, Low) tw 200 - - (3) Serial Interface Chip Select Setup Time tsu1 60 - - Chip Select Hold Time th1 20 - - Mod (Refer to Fig-23) Serial Input Data Setup Tim tsu2 100 - - ns Serial Input Data Hold Time th2 100 - -
in „LCD Display DIP204-6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
(High, Low) tw 200 - - (3) Serial Interface Chip Select Setup Time tsu1 60 - - Chip Select Hold Time th1 20 - - Mod (Refer to Fig-23) Serial Input Data Setup Tim tsu2 100 - - ns Serial Input Data Hold Time th2 100 - -
in „Initialisierung von KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_driver_ks0073.pdf
(High, Low) tw 200 - - (3) Serial Interface Chip Select Setup Time tsu1 60 - - Chip Select Hold Time th1 20 - - Mod (Refer to Fig-23) Serial Input Data Setup Tim tsu2 100 - - ns Serial Input Data Hold Time th2 100 - -
in „LCD Display ansteuern mit KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
(High, Low) tw 200 - - (3) Serial Interface Chip Select Setup Time tsu1 60 - - Chip Select Hold Time th1 20 - - Mod (Refer to Fig-23) Serial Input Data Setup Tim tsu2 100 - - ns Serial Input Data Hold Time th2 100 - -
in „Probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN_106f.pdf
(kHz) MIN(V) MAX(V) MAX (µA) LTC1966 0.02/0.15 0.1/0.3 6 800 2.7 ±5 170 LTC1967 0.02/0.15 0.1/0.3 200 4MHz 4.5 5.5 390 LTC1968 0.02/0.15 0.1/0.3 500 15MHz 4.5 5.5 2.3mA Figure 1. Primary Differences in RMS to DC Converter Family are Bandwidth and Supply Requirements. All Devices Have Rail-to-Rail Differential
in „Netzspannung messen.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
V3_0.ino
analog sensor-values sensor = analogRead(analogDut); // DUT Analogsignal referenz = analogRead(analogRef); // REF Analogsignal poti = analogRead(analogPoti); // Poti Analogsignal für Zeitinterval // read Keys Tplus = digitalRead(PinPlus); Tenter = digitalRead(PinEnter); Tminus = digitalRead(PinMinus);
in „Fragen zu Schaltkreis“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cem.pdf
100. (n) Run the simulation and plot the output voltage. Record/print the result. (o) Change ¯ F to 200, and repeat step (n). (p) Change ¯ F to 400, and repeat step (n). Compare and comment the results. The increase of ¯ from 100 to 200 shows that the voltage gain is increased as well. However, F the
in „Kondensator LT Spice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3M-Flachkabel-AWG19.pdf
PVC 79100 Series Product Dimensions 0.100 ± 0.006 [2.54 mm] 0.[2.54 mm]06 0.[2.54 mm]06 0.100 [2.54] Ref Insulation Conductor 0.39 [10.00] Ref Inch [mm] Ordering Information 79100 - 075 - 4F1 Note:Availableinstandard200meterrolls,pleasespecify lengthwhenordering.Contact3Mforavailabilityofadditional conductorcountsand
in „Leiterplattensteckverbinder für Flachbandkabel gesucht“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Schaltplan.pdf
PIC02 GLAPIT01 5 D1 PIS15 IP- VCC PSN01 P0 25V 50V SLA PIC01SLA NC PIC02 SLA PT 1 P1SMBJ18CA ACS773ECB-200B-PFF-T C16 PIC02NC C LL H H H HL L C C C NC PIC02 PC P C P0100n N S G S G G S G S N N N GND NC1 B GND GND 3 4 5 6 7 8 9 0 1 2 3 4 I_MESS GND GND GNDA GNDA B P1 1 1 1 1 1 1 2 2 2 2 2 NGL SHC VM VM GHC
in „MOSFET für BLDC 18V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MachXO2FamilyDataSheet.pdf
–0.1 PCI –0.3 0.3VCCIO 0.5V CCIO 3.6 0.1VCCIO 0.9VCCIO 1.5 –0.5 SSTL25 Class I –0.3 VREF – 0.18 V REF+ 0.18 3.6 0.54 VCCIO - 0.62 8 8 SSTL25 Class II –0.3 VREF – 0.18 V REF+ 0.18 3.6 NA NA NA NA SSTL18 Class I –0.3 V – 0.125 V + 0.125 3.6 0.40 V - 0.40 8 8 REF REF CCIO SSTL18 Class II –0.3 V REF – 0.125 VREF + 0.125 3.6 NA NA NA NA HSTL18 Class I –0.3 V REF – 0.1 VREF + 0.1 3.6 0.40 VCCIO - 0.40 8 8 HSTL18 Class II –0.3 V REF – 0.1 VREF + 0.1 3.6 NA NA NA NA 1. MachXO2 devices allow LVCMOS inputs to be placed in I/O banks CCIOis different from what is
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
bq24780s.pdf
2017 Feature Description (continued) ICRIT IADP Adjustable Deglitch 1.05 V INOM IDCHG 50W PROCHOT Ref_DCHG 10-ms Debounce Ref VSRP ≥10 ms < 0.3 V 20-ms Deglitch BATPRES ACOK (One shot on rising edge) (One shot on falling edge) CMPOUT Figure 6. PROCHOT Profile When any event in PROCHOT profile is triggered
in „Widerstand Bestimmung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1019.pdf
DESCRIPTIO Available at 2.5V, 4.5V, 5V, and 10V The LT1019 is a third generation bandgap voltage refer- Plug-In Replacement for Present References enceutilizingthinfilmtechnologyandagreatlyimproved Ultra-Low Drift: 3ppm/°C Typical curvature correction technique. Wafer level trimming of Curvature Corrected
in „Referenz Chip LT1019 / Heizung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS1307.pdf
..........................+260°C for 10 seconds Soldering Temperature (surface mount)…..……………………….Refer to the JPC/JEDEC J-STD-020 Specification. Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation
in „[V] noch 2 x 10St. Dallas RTC DS1307Z (SO8) abzugeben“ · Markt ·
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PDF
DS1307.pdf
..........................+260°C for 10 seconds Soldering Temperature (surface mount)…..……………………….Refer to the JPC/JEDEC J-STD-020 Specification. Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation
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PDF
7673-3600-0015.pdf
with wet hands. • Do not open the casing of the power supply when it is connected to ac mains. • Refer all servicing to qualified service personnel only. • Before replacing the AC fuse at AC socket, find out and clear up the cause first. • Replace the AC fuse with the same type and rating as the original
in „Manson HCS-3602 HCS-3600 Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ds1307.pdf
..........................+260°C for 10 seconds Soldering Temperature (surface mount)…..……………………….Refer to the JPC/JEDEC J-STD-020 Specification. Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SDS1000X-E_UserManual_UM0101E-E03B.pdf
waveforms. All reference waveforms can be displayed at a time. The contents of this chapter: Save REF Waveform to Internal Memory Display REF Waveform Adjust REF Waveform Clear REF Waveform 107 WWW.SIGLENT.COM SDS1000X-E User Manual Save REF Waveform to Internal Memory Do the following steps to save the REF waveform to internal memory: 1. Press the REF button on the front to enter the REF WAVE function menu. Note that when the time horizontal format is in X-Y mode, REF function cannot be enabled. 2. Press
in „Lieber SIGLENT SDS1104X-E als RIGOL DS1054Z“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDS1000X-E_UserManual_UM0101E-E03B.pdf
waveforms. All reference waveforms can be displayed at a time. The contents of this chapter: Save REF Waveform to Internal Memory Display REF Waveform Adjust REF Waveform Clear REF Waveform 107 WWW.SIGLENT.COM SDS1000X-E User Manual Save REF Waveform to Internal Memory Do the following steps to save the REF waveform to internal memory: 1. Press the REF button on the front to enter the REF WAVE function menu. Note that when the time horizontal format is in X-Y mode, REF function cannot be enabled. 2. Press
in „*DSO* : Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CD00002265_Triac_von_ST_Microelectonics.pdf
(4Q) or very high A1 A2 G commutation (3Q) capability 2 D PAK ■ BTA series UL1557 certified (File ref: 81734) T1610G ■ RoHS ( 2002/95/EC) compliant T1635G ■ Insulated tab (BTA series, rated at 2500 VRMS ) A2 Applications ■ Snubberless versions (BTA/BTB...W and A1 A1 T1635) especially recommended for
in „Triac Probleme mit MOC3043“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTA16-600CWRG__600V__16A__TO220_isoliert__ST.pdf
(4Q) or very high A1 A2 G commutation (3Q) capability 2 D PAK ■ BTA series UL1557 certified (File ref: 81734) T1610G ■ RoHS ( 2002/95/EC) compliant T1635G ■ Insulated tab (BTA series, rated at 2500 VRMS ) A2 Applications ■ Snubberless versions (BTA/BTB...W and A1 A1 T1635) especially recommended for
in „MOIC ---> Triac, 115V, 400 Hz, 4A“ · Analoge Elektronik und Schaltungstechnik ·