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87C257.pdf
band removed simultaneously or after V . 2. Sampled only, not 100% tested. PP PP Figure 5. Read Mode AC Waveforms A0-A14 VALID tASLAX tAXQX tAVASL ASV PP tASHASL tASLGL tAVQV E tGLQV tEHQZ G tELQV tGHQZ Hi-Z Q0-Q7 DATA OUT AI00931 6/13 M87C257 (1) Table 9. Programming Mode DC Characteristics (TA= 25 °C
in „externes EPROM auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SeikoChar.pdf
700 msec Measuring equipment : Canon illuminater LC-4SR Anode Cathode total number of LED chips =2 x 14 = 28 pcs 25 L2012 (20 x 2) AN No.SIG-CHMO9805A EL Backlight 1.Absolute Maximum Ratings 3.3 Maximum Ratings (Inverter only) Item Symbol Standard Unit Item Specifications Unit Operating Vopr AC 150V, 1KHz
in „Display Seiko L2432 und Kontrastproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hewlett_Packard_Operating_and_Service_Manuals_for_HP361XA_30W_Bench_Series_DC_Power_Supplies.pdf
^K^o] o^7iEii4. 7|7i7|. sq-f°) 4:5- t!°^4-M- -f*M 4l^4. 4^-?r -i^S-ll-ttf'il, 4-^ '^U4 4 4 li-^H^ AC 4 ^ 4 (4^ -:?-H^ -S-4)5^ 444(44sJ 4tll)4 °.14-£l4°f CAUTION jL4-^ ?14-gr s|..|^i. 1V4. 4. 4-;^- --r^m-']^ i-^44 <I1-S- 4*11 si.^ 4-V-ii- -t!r4-^l?144 4 4^ ^ i °J^r -S-i- 4-4''|- 7°r44 7hd^o^ 4 ^ ^ -fr4
in „Gebrauchtes Labornetzteil HP Agilent“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Thyristor_Triac_App_Note__by_Littlefuse.pdf
obtain the proper timing or Load triggering for 180º in each half-cycle. R1 3.3 k R4* Figure AN1003.14 shows a simple single-time-constant 100 AC Q 1 light dimmer (phase control) circuit, giving values for both Input R 3 R2 120 V and 240 V operation. C1 15 k 1/2W C2 C3 C * 0.1 µF Diac 4 100V Note: 1 and 1 form an * dv/dt snubber network RFI filter that may be eliminated when required AC AC Input Load Voltage Current R2 C1, 2 , 4 L1 Q 1 120V ac 8 A 250 k 0.1 µF 200V 100 µH Q4010LTH 60 Hz 240V ac 6 A 500 k 0.1 µF 400V 200 µH Q6008LTH 50 Hz 240V ac 6 A 500 k 0.1 µF 400V 200 µH Q6008LTH
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Littelfuse_App_Note_AN1003.pdf
obtain the proper timing or Load triggering for 180º in each half-cycle. R1 3.3 k R4* Figure AN1003.14 shows a simple single-time-constant 100 AC Q 1 light dimmer (phase control) circuit, giving values for both Input R 3 R2 120 V and 240 V operation. C1 15 k 1/2W C2 C3 C * 0.1 µF Diac 4 100V Note: 1 and 1 form an * dv/dt snubber network RFI filter that may be eliminated when required AC AC Input Load Voltage Current R2 C1, 2 , 4 L1 Q 1 120V ac 8 A 250 k 0.1 µF 200V 100 µH Q4010LTH 60 Hz 240V ac 6 A 500 k 0.1 µF 400V 200 µH Q6008LTH 50 Hz 240V ac 6 A 500 k 0.1 µF 400V 200 µH Q6008LTH
in „Phasenanschnittsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
an1003.pdf
-101 60 Hz at operating temperature or equivalent R5= 10 k Potentiometer D 1-4= 200 V Diode 240 V ac 3 A 500 k 0.1 µF 400 V200 µH Q4004L4 R6= 5 M Potentiometer D 5 20 V Zener 50/60 Hz R7= 100 k, 1/2 W D 6 100 V Diode R8= 1 k, 1/2 W C 1 0.1 µF, 30 V Figure AN1003.14 Single-time-constant Circuit for Incandescent
in „hysteresefreie Phasenanschnittsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HLG-120H-spec.pdf
Yellow) 300±20 2 T case 4 8 tc 98 300±20 AC/L(Brown) 3 6 AC/N(Blue) SJOW 17AWG&H05RN-F 1.0mm *3C 2 4 -V(Black) . 3 SJOW 17AWG&05RN-F 1.0mm *2C2 +V(Red) 9 ψ4.2×4PL tc : Max. Case Temperature . 3 File Name:HLG-120H-SPEC 2018-09-30 120W Constant
in „Netzteil für Getriebemotor“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
obegransad_usec.ino
0b00111110, 0x00, 0x36, 0x36, 0x00, 0x00, 0x00, // : 0x00, 0x56, 0x36, 0x00, 0x00, 0x00, // ; 0x00, 0x08, 0x14, 0x22, 0x41, 0x00, // < 0x14, 0x14, 0x14, 0x14, 0x14, 0x00, // = 0x41, 0x22, 0x14, 0x08, 0x00, 0x00, // > 0x02, 0x01, 0x51, 0x09, 0x06, 0x00, // ? 0x32, 0x49, 0x79, 0x41, 0x3E, 0x00, // @ 0x7E, 0x11,
in „LEDs flackern unregelmäßig bei geringer Helligkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CUPP_RELAYS.pdf
CONDITIONS SYMBOL MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS Contact Ratings Switching Voltage Max DC/PeakAC Resistive V L - - 500 - - 1000 - - 200 Volts Switching Current Max DC/PeakAC Resistive IL - - 2 - - 2 - - 0.75 Amps Carry Current Max DC/PeakAC Resistive IC - - 3 - - 3 - - 2 Amps Contact Rating Max
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PDF
Relais_BE_Serie_D.pdf
die angegebene ma- 50 10 25 W ximale Schaltleistung nicht übersteigen Schaltspannung DC oder peak AC 500 200 1000 V Schaltstrom DC oder peak AC 2 0.5 1.0 A Transportstrom DC oder peak AC 2 1.25 2 A Kontaktwiderstand statiscBei 0.5 V & 50 mA 80 150 150 mΩ Kontaktwiderstand Bei 0.5 V & 50 mA , 1.5 ms
in „[V] Quecksilber-Relais - Elfein ECO 842M-2Q39-5V“ · Markt ·
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PDF
AN1.pdf
ratios greater than 50% can be obtained. The array of (10) inverters are used as the gate driver. 74AC14 Type gates can continuously (1) sink/source 24mA of current. According to Fairchild Semiconductor’s datasheets for the 74AC14, each gate has a guaranteed “maximum dynamic output current” of +/- 75mA
in „Steuerung von Leistungsmosfets“ · Analoge Elektronik und Schaltungstechnik ·
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REV12schoen.pdf
1 0 C PWM ) 1 C31 V 2 D 2 6 12V 5 G 2 u 5 HLK-PM03 c _ 1 . M D B l GND E R 4 2 S 1 3 E m c T 1 2 2 AC_1 -V0 4 J m 2 m 2 1 C24 mlcc 100V 4.7uF C16 AC_2 +V0 7 9 o 1 c? R28 1 IC14 K 0 5 V 100Kohm 5 R22 4N35S-6A1 1 R24.9Kohm + 1 2 C25 2 P CRGH1206F390R 6 2 mlcc 1uf 16v 0 2 ANODE BASE 1 +3V3 GND GND 1 5 D
in „Probleme mit Konstantstromtreiber / gatetreiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DA_Mean-Well-GST90A24-P1M-Tischnetzteil-Festspannung-24-V-DC-3.75A-90W.pdf
90WAC-DC High Reliability IndustrialAdaptor GST90A series ■ Features ■ Applications Universal AC input / Full range Consumer electronic devices 3 pole AC inlet IEC320-C14 Telecommunication devices Built-in active PFC function Office facilities No load power consumption<0.15W Industrial equipments
in „Welcher IC ist das? SOT23-6 Marking: 368L 4? 945“ · Analoge Elektronik und Schaltungstechnik ·
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tle2082.pdf
11.5 11.5 25°C –13.8 –14.2 –13.8 –14.2 O = 200 µA Full range –13.7 –13.7 Maximum negative peak 25°C –13.5 –14 –13.5 –14 VOM– O = 2 mA V output voltage swing Full range –13.4 –13.4 25°C –11.5 –12.4 –11.5 –12.4 I = 20 mA O Full
in „Bauteil gesucht: unbekannter TI-Baustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
22SM-29S_Interface_Protocol1.pdf
Current type and measured variable 1, 2 a) menu item AdAPt isSI-232 StorE function variable 1 - 0000 V AC 0001 V(AC+DC) 0010 V DC 0011 Ω , Ω + buzzer 0100 Diode, Diode + buzzer 0101 °C °F 0110 Farad 0111 mA DC 1000 A DC 1001 mA(AC+DC) 1010 A(AC+DC) 1011 Hz AC, Hz AC+DC 1100 dB 1101 Events AC, Events AC+DC
in „Checksumme beim MetraHit-Protokoll bilden, wie?“ · Softwareentwicklung ·
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Aneng682.pdf
Kapazität ............................................................................................14 Temperaturmessung ................................................................................14 NCV-Test..........................................................................................
in „[S] Deutsche BA für Aneng 681“ · Mikrocontroller und Digitale Elektronik ·
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VOLTCRAFT_VC_870_DMM.pdf
gemessene Span- nung negativ (oder die Messleitungen sind ver- tauscht). Der Spannungsbereich „V DC/AC“ weist einen Ein- gangswiderstand von >10 MOhm auf. - Entfernen Sie nach Messende die Messleitungen vom Messobjekt und schalten Sie das DMM aus. Zur Messung von Wechselspannungen „AC“ (V ) gehen Sie
in „Welches Tisch Multimeter ?“ · Analoge Elektronik und Schaltungstechnik ·
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tm512ac_v1-7_en.pdf
OUTW GND 上电复位er-on reset REXT GND Figure 1 Pin Arrangement of SOP16 GND 1 16 VDD OUTR 2 15 NC OUTG 3 14 NC OUTB 4 13 PWM OUTW 5 TM512AC 12 BI REXT 6 11 AI ADRO 7 10 ADRI SET 8 9 NC Figure 2 ©Titan Micro Electronics 2 www.titanmec.com V1.7 DMX512 16-Bit high gray driving IC TM512AC SOP16 pin function Pin
in „TM512AC - Startadresse programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tm512ac_v1-7_en.pdf
OUTW GND 上电复位er-on reset REXT GND Figure 1 Pin Arrangement of SOP16 GND 1 16 VDD OUTR 2 15 NC OUTG 3 14 NC OUTB 4 13 PWM OUTW 5 TM512AC 12 BI REXT 6 11 AI ADRO 7 10 ADRI SET 8 9 NC Figure 2 ©Titan Micro Electronics 2 www.titanmec.com V1.7 DMX512 16-Bit high gray driving IC TM512AC SOP16 pin function Pin
in „TM512AC - Startadresse programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5521f.pdf
C m T IM2 G–1.0 85°C G 2 25°C 21 ) P –40°C G U–60 0 C 20 O IM2 –1.5 –80 –2.0 –2 19 –100 IM3 –4 18 –14 –12 –10 –8 –6 –4 –2 0 2 4 6 –2.–25 –20 –15 –10 –5 0 5 10 15 1750 1850 1950 2050 2150 PIN(dBm) PIN(dBm) RFOUT (MHz) 5521 G03 5521 G04 5521 G05 5521f 4 LT5521 WU TYPICAL AC PERFOR A CE CHARACTERISTICS
in „Anpassung Differenztialeingang LT5521“ · HF, Funk und Felder ·
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PDF
ad630_Datenblatt.pdf
11 +V sensitive detection. 20 S 13 PRECISION PHASE COMPARATOR 2.5kΩ B 10kΩ MODULATED 17 AMP B 10kΩ 14 OUTPUT 18 –V SIGNAL The balanced modulator topologies of Figure 28 and Figure 29 15 19 5kΩ 16 can also be used as precision phase comparators. In this case, CARRIER COMP AD630 INPUT 7 an ac waveform
in „AD630 Lock In Verstärker board, DC Offset am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ISL88731.PDF
Accuracy) 10m sense resistors. The ISL88731 provides 0.5% end-of-charge battery voltage accuracy. - AC-Adapter Detection The ISL88731 provides a digital output that indicates the • 11-Bit Battery Voltage Setting presence of the AC adapter as well as an analog output which • 6 Bit Charge Current/Adapter
in „Chip gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DOGM162W-A.asm
after "POWER ON" ; : DC Range: 0.25 V ; : DC Range: 2.5 V ; : DC Range: 25 V ; : DC Range: 250 V ; : AC Range: AUTO ; : AC Range: 0.25 V ; : AC Range: 2.5 V ; : AC Range: 25 V ; : AC Range: 250 V ; : ; Diagrams : Entire Diagram ; : Upper Circuit Board ; : Lower Circuit Board ; : ;----------------------
in „DVM mit DOGM162W-A, ATMEGA8A, AVRASM“ · Projekte & Code ·
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PDF
FT232H.pdf
34 ADBUS7 13 12 SHLD C2 C3 RESET# 21 AC0 ADBus 11 440247-1 47pF 47pF 5 ACBUS0 25 AC1 10 R3 REF ACBUS1 26 AC2 9 B 0 GND GND GND R4 ACBUS2 27 AC3 8 B ACBUS3 7 12k CS# 45 EECS ACBUS4 28 AC4 R5 6 CLK 44 EECLK ACBUS5 29 AC5 5 GND VCC3V3 DATA 43 EEDATA ACBUS6 30 AC6 27R 4 GND ACBUS7 31 AC7 3 32 AC8 R6 1 ACBUS8 33 AC9 2 10k OSCI ACBUS9 1 ACBus 1 Y1 2 2 C4 OSCO D D D 100nF 12MHz G G G N N N N N N N N 42 TEST A A A G G G G G G G G C5 C6 GND 22pF 22pF 4 9 1 0 3 5 6
in „Problem FT232H“ · Mikrocontroller und Digitale Elektronik ·
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amstrad_srx100_srx200_sat_receiver_sch.pdf
17 18 16 1 6.0 6.1 6.1 0 6.0 6.0 5.9 2.6 2.6 2.w 1.1 2.6 E1.1 12.0 12.0 16 R314 470 8 9 10 11 12 13 14 9 10 11 12 e 13 14 L 15 16 1 15 3.6 5.9 GND VREF r w E VCC 14 R429 R312 C310 15 2 L306 − − i s K 0 0 0 0 6.1 0 6.1 12.0 12.0BUFFER 13 330 560 + + G BUFF. - e T 12 4 0.01 3.6 0 12µH 8 LPF ICe0k R 9 10
in „10,52 MHz Keramik Piezo Filter Resonator ZF IF“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Steu4414.hex.asm
L0663 rcall L01EA clr r2 sts D0081,r2 L059F: ldi r16,k26 rcall L0277 rjmp L05B9 rcall L068D brcc L05AC rcall L02BB rcall L0701 ldi r16,k10 ldi r17,k00 rcall L0068 rcall L0715 rcall L0214 rjmp L05AE L05AC: ldi r24,k14 rcall L065D L05AE: lds r24,D008F cpi r24,k01 brne L05B9 sbis p10,b5 rjmp L05B7 ldi r24
in „Gerät mit AT90S4414 retten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM78LXX.pdf
mV/˚C V Minimum Value of Input Voltage 7.9 V IN (Min) Required to Maintain Line Regulation LM78L82AC = Unless otherwise specified,IN 14V Symbol Parameter Conditions Min Typ Max Units VO Output Voltage 7.87 8.2 8.53 V 11V ≤ V IN≤ 23V 1 mA ≤ I ≤ 40 mA 7.8 8.6 O (Note 3) 1 mA ≤ IO≤ 70 mA 7.8 8.6 (Note
in „Hilfe bei Berechnung des zul. Ausgangsstroms beim Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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appl_1a.pdf
DC ationsinpulse widthorcountingofthenumberofpulse used to encode the LED emission. driving system, AC driving system (including modula- tion systems), and pulse driving system. Figures 11 through 14 show typical pulse driving Features of the pulse driving system: circuits. Figure 15 shows the pulse driving
in „Lichtsensor überprüfen aber wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014.pdf
Linearized Output +5V 1 *1% METAL FILM RESISTOR SENSOR = CALECTRO-GC ELECTRONICS #J4-807 OR FIGARO #813 14 LT1004 –5V 1.2V 0.033 CD4016 1N4148 (4) 390k* 9 – A3 8 100k* 13 LT1014 – 74C04 2.7k 10 + A4 14 11 12 LT1014 + 5 8 74C04 LTC1044 +5V –5V 4 2 3 10µF + 10µF+ 470pF 470pF 10k +5V 1 74C04 14 SENSOR 1N4148
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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OV5620_CLCC_DS__1.3_.pdf
mode changes 1: Sensor timing resets when mode changes Bit[0]: Reserved Automatic Exposure Control - AEC[10:3] 6MSBs(AEC[16:11])areinregisterREG45[5:0]and3LSBs(AEC[2:0]) are in register REG04[2:0]). AEC[16:0] - Exposure time 10 AEC 63 RW T = t x AEC[16:0] EX LINE Note: The maximum exposure time is 1 frame
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bq51051B.pdf
VIEW) (TOP VIEW) PGND PGND 1 20 A1 A2 A3 A4 PGND PGND PGND PGND A21 A19 B1 B2 B3 B4 BOOT1 RECT 3 18 AC2 AC2 AC1 AC1 BAT BOOT2 4 17 C1 C2 C3 C4 BOOT2 RECT RECT BOOT1 CLMP1 CLMP2 5 16 D1 D2 D3 D4 BAT BAT BAT BAT COMM1 COMM2 6 15 E1 E2 E3 E4 COMM2 CLMP2 CLMP1 COMM1 CHG FOD 7 14 F1 F2 F3 F4 AD-EN TS/ TS/CTRL
in „BQ51051B Beschaltung Widerstand Ros“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC7800-D.pdf
CHARACTERISTICS (V = 23 V, I = 1.0 A, T = Tto 125°C (Note 22), unless otherwise noted) in O J low MC7815AB/MC7815AC Characteristic Symbol Min Typ Max Unit Output Voltage (T = 25°C) V 14.7 15 15.3 Vdc J O Output Voltage (5.0 mA ≤ I ≤ 1.0 A, P ≤ 15 W) V 14.4 15 15.6 Vdc O D O 17.9 Vdc ≤ V ≤ 30 Vdc in Line Regulation
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PDF
ml50x_schematics.pdf
FPGA_M1 % IO_L9P_GC_3 H19 PHY_MDC TMS_0AC14 FPGA_EXP_TMS 1 1 IO_L9N_GC_3 H20 PHY_INT TDI_0AC15 FPGA_TDI 7 D_OUT_BUSY_0 AD15 FPGA_DOUT_BUSY R 0 SG-BGA-6046 TDO_0AD14 FPGA_TDO 2 1 2 % 3 % 4 % 1 5 % 7 % 8 % FPGA_CLK-C SG-BGA-6046 5 5 5 1 5 5 5
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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PDF
uPD6126A.PDF
17 KI/O7 S-OUT 8 21 K I/O5 OSC-OUT 9 16 KI0 REM 9 20 K I/O6 OSC-IN 10 15 KI1 VDD 10 19 K I/O7 VSS11 14 KI2 OSC-OUT 11 18 K I0 AC 12 13 KI3 OSC-IN 12 17 K I1 VSS 13 16 K I2 AC 14 15 K I3 2 PD6125A, 6126A BLOCK DIAGRAM ROM × CNTL CNTL D.P. L 1002 10 bit (L) (H) ROM H ROM 32 × 5 bit D.P. MPX (L) SP X RAM
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ultrasonic_Anemometer_2D_Ultrasonic.pdf
interface 4 9 (I) RX- serial interface 10 (K) TX- serial interface 11 (L) Power electr. 12 ... 24V AC/DC 12 (M) Power electr. 12 ... 24V AC/DC Mounting shaft 16 pol. 13 (N) Power heater 24 V AC/DC bridged with PIN 14 for mast tube 1?“ plug 14 (O) Power heater 24 V AC/DC bridged with PIN 13 40 mm depth intheshaft 15 (P) Power heater 24 V AC/DC bridged with PIN 16 Ø 70 16 (R) Power heater 24 V AC/DC bridged with PIN 15 5.1 Remarks concerning Power Supply of Instrument: The connecting cables for the heating (13 u. 14; 15 u. 16) must be bridged
in „Hitzdrahtanemometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C1041DV33-10ZSXI.pdf
11 CC D SS 11 A17 7 3 CC D A IO A VCC IO4 NC 16 12 VSS E VCC IO 12 NC 16 IO4 VSS E IO IO IO6 IO5 A14 A15 IO13 14 F IO14 IO13 A14 A15 IO5 6 F IO7 NC A12 A13 WE IO15 G IO15 NC A12 A13 WE IO7 G NC A8 A9 A10 A11 NC H NC A 8 A9 A10 A11 NC H Notes 2. Automotive product information is Preliminary. 3. NC pins
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PDF
Ultrasonic_Anemometer_2D_Ultrasonic.pdf
interface 4 9 (I) RX- serial interface 10 (K) TX- serial interface 11 (L) Power electr. 12 ... 24V AC/DC 12 (M) Power electr. 12 ... 24V AC/DC Mounting shaft 16 pol. 13 (N) Power heater 24 V AC/DC bridged with PIN 14 for mast tube 1?“ plug 14 (O) Power heater 24 V AC/DC bridged with PIN 13 40 mm depth intheshaft 15 (P) Power heater 24 V AC/DC bridged with PIN 16 Ø 70 16 (R) Power heater 24 V AC/DC bridged with PIN 15 5.1 Remarks concerning Power Supply of Instrument: The connecting cables for the heating (13 u. 14; 15 u. 16) must be bridged
in „Modellbau Anemometer und Windrichtung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an75f_Low_Power-Design.pdf
andusedittocharacterizeafast input capacitor via the Q5 route (trace D). This current coincidencedetector(Figures14–18andassociatedtext) removal resets C1’s negative input ramp to a potential I had previously abandoned. This exercise proved fatally slightly below ground. The 50pF capacitor furnishes AC catalytic.Thingsrapidlyproceededinapredictabledirec
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PDF
NCP1605-D.PDF
V Rout1 V CC in Rbo1 Vout Rout2 Icoil R bo2 STBY control Rovp1 + 1 16 CV CC L1 2 15 R V out Cbo 3 14 OVP ovp2 FB CV ctrl 4 13 D1 5 12 LOAD Rzcd V CC CV ref M1 Ac line 6 11 pfcOK 7 10 Cbulk+ C in Ct 8 9 EMI C osc Filter R Rdrv ocp coil Rcs Figure 1. MAXIMUM RATINGS Pin Rating Symbol Value Unit 11 Power
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IGrid-TT-10KW-15KW-Brochure.pdf
Number of MPP Trackers / Maximum Input Current ▯▯▯▯▯▯Y▯▯▯▯▯" ▯▯▯▯"▯▯▯▯▯▯▯"▯▯#▯▯▯▯▯▯" GRID OUTPUT (AC) Nominal Output Voltage 230 VAC (P-N) / 400 VAC (P-P) Output Voltage Range 184 - 265VAC* per phase 184 - 264.5VAC per phase Nominal Output Current 14.5A per phase 21.7A per phase Power Factor > 0.99
in „cos(Φ) bei WR und induktiver Last“ · Haus & Smart Home ·
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PDF
A20_user_manual_v1.3_20141010.pdf
Co., Ltd. All Rights Reserved. Page 171 / 853 Register Name Offset Description AC_DAC_FIFOS 0x08 DAC FIFO Status Register AC_DAC_TXDATA 0x0C DAC TX Data Register AC_DAC_ACTL 0x10 DAC Analog Control Register AC_DAC_TUNE 0x14 DAC/ ADC Performance Tuning Register AC_ADC_FIFOC 0x1C ADC
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Windmessger_Ultraschall1.pdf
) RX- serielle Schnittstelle 10 (K) TX- serielle Schnittstelle 11 (L) Versorgung Elektronik 12-24V AC/DC 12 (M) Versorgung Elektronik 12-24V AC/DC 13 (N) Versorgung Heizung 24V AC/DC gebrückt mit PIN 14 14 (O) Versorgung Heizung 24V AC/DC gebrückt mit PIN 13 15 (P) Versorgung Heizung 24V AC/DC gebrückt mit PIN 16 Versorgung Heizung 24V AC/DC gebrückt mit PIN 15 16 (R) 5.1 Hinweise zur Versorgung des Gerätes: Die Anschlussleitungen für die Heizung (13 u. 14; 15 u. 16) müssen auf der Speiseseite gebrückt werden, um die volle Heizleistung
in „Windgeschwindigkeit und Richtungsmessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STEVAL-ILL004V1_AN2263_AppNote_.pdf
thHA ≤---------------P----------------= -------------4, 8------------------------------------------ = 14.7° C ⁄ W For example, the thermal resistance of the heat sink for the output power of 3 kW using a BTB16-600CW TRIAC is expressed as follows: Equation 9 125 – 40 – 14 • 1.2 – 14 • 0.5 R thHA ≤-------
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Datei
Dump.txt
0x0000: 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 0x0010: 10 11 12 13 14 15 16 17 18 19 1A 1B 1C 1D 1E 1F 0x0020: 20 21 22 23 24 25 26 27 28 29 2A 2B 2C 2D 2E 2F 0x0030: 30 31 32 33 34 35 36 37 38 39 3A 3B 3C 3D 3E 3F 0x0040: 40 41 42 43 44 45 46 47 48 49 4A 4B 4C 4D 4E 4F
in „I²C/TWI Speicherzugriff prüfen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ths7316.pdf
720p/1080i, G'B'R' (R'G'B'), – DC-Coupled With 140-mV Input Shift B R and VGA/SVGA/XGA signals. – AC-Coupled with Sync-Tip Clamp As part of the THS7316 flexibility, the input can be – Allows AC-Coupled With Biasing configured for ac or dc coupled inputs. The DC + • Built-in 6-dB Gain (2V/V) 140-mV input
in „Videopfad - LM1881 -Sync-Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ecp_ec.pdf
Function Bank LVDS Dual Function Number Function Bank LVDS Function AF4 PB13B 5 C AF4 PB13B 5 C AE5 PB14A 5 T BDQS14 AE5 PB14A 5 T BDQS14 AA9 PB14B 5 C AA9 PB14B 5 C AF5 PB15A 5 T AF5 PB15A 5 T Y10 PB15B 5 C Y10 PB15B 5 C AD6 PB16A 5 T AD6 PB16A 5 T AC10 PB16B 5 C AC10 PB16B 5 C AF6 PB17A 5 T AF6 PB17A
in „Verwendung der Pins eines Lattice LFECP6 mit Config-Dual-Funktion als I/Os“ · FPGA, VHDL & Co. ·
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PDF
ecp_ec.pdf
Function Bank LVDS Dual Function Number Function Bank LVDS Function AF4 PB13B 5 C AF4 PB13B 5 C AE5 PB14A 5 T BDQS14 AE5 PB14A 5 T BDQS14 AA9 PB14B 5 C AA9 PB14B 5 C AF5 PB15A 5 T AF5 PB15A 5 T Y10 PB15B 5 C Y10 PB15B 5 C AD6 PB16A 5 T AD6 PB16A 5 T AC10 PB16B 5 C AC10 PB16B 5 C AF6 PB17A 5 T AF6 PB17A
in „SPI-Slave im FPGA, Signal-Delay an MISO minimieren“ · FPGA, VHDL & Co. ·
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doc8209.pdf
time from power-down and Additional delay from reset 3..0 SUT1..0 power-save (V = 5.0V) CC 00 1K CK 14CK 0011 01 1K CK 14CK + 4ms RC Osc 10 1K CK 14CK + 64ms 11 16K CK 14CK 00 1K CK 14CK 01 1K CK 14CK + 4ms 0101 Ext Osc 10 16K CK 14CK + 4ms 11 16K CK 14CK + 64ms 00 6 CK (1) 14CK 0001 01 6 CK (1) 14CK
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TCM8240MD_APPNOTE041214.pdf
automatic switching of flickerless frequency 0:OFF(manual select) 1:ON(automaticaly select) 0x5F [6] AC5060HZ Manual setting of AC frequency 0:AC50[Hz] 1:AC60[Hz] 0x58 [7:4] LSESLIM (4) Maximum setting of exposure time 04/12/14 1/3 TCM8240MD LSESLIM have to be set to satisfy following equation Time of
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
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RDR-158.pdf
per Energy Star “Test Method for Calculating the Energy ESV1.1 Efficiency of Single-Voltage External AC-DC and AC-AC Power 2008 Supplies (August 11, 2004)”. Required average efficiency per ηESV1(0.09 lnNP )+0.5 ηESV2 67 ηESV2(0.075 lNPP )+0.561 Energy Star EPS v2 April, 2008 Environmental Conducted EMI
in „Trafo oder schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·