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lm16a211.pdf
Mechanical S~ecifications Table 1 Parameter Specification Unit Outline dimensions 84(W) X 44(H) X 11 MAX(D) mm mm Effective display area 161(W) X 15.8(H) Display format 16 characters X 2 lines I I Character format 15 X 7 dots with cursor l - l lCharacter size 12.96(w)x 4.86(H)(5 x 7 dots) I m l Dot size
in „15 LCD Displays 16x2“ · Markt ·
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PDF
mp1482.pdf
Technology” are registered trademarks of C D E O TYPICAL APPLICARION W T INPUT E R Load Currents T 2 N 1 E 195 VOUT = 3.3V O 7 ENIN BSW 3 F Y 80 VOUT= 2.5V N 8 SGND MP1482COMP 5E I 70 4 R 6 E 60 50 0 0LOAD CURRENT (A)0 2.5 MP1482 Rev. 1.31 www.MonolithicPower.com 1 7/9/2012 MPS Proprietary Informat© 2012 MPS
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LeadedDisks__B57891__M891.pdf
5.5 5.5 min. peel-off force ≥5 N W 1 9.0 9.0 +0.75/▯0.5 W 2 3.0 3.0 max. H 18.0 18.0 +2.0/▯0 H 16.0 16.0 ±0.5 0 H 1 32.2 32.2 max. D 0 4.0 4.0 ±0.2 t 0.9 0.9 max. without wires L 11.0 11.0 max. L 4.0 4.0 max. 1 Please read Cautions and warnings and Page 12 of 23 Important
in „NTC - Frage zum Verständnis“ · Mikrocontroller und Digitale Elektronik ·
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APPCHP6.PDF
current, I T(RMS) and load power over the full period of the a.c mains, with trigger angle are given T(MAX) in equation 7. Thyristor (1−cosα) IT(MAX) Current IT(AV)= IT(AV)max 2 IT(AV)max= π Trigger 2 IT(MAX) Fig. 3 Half wave control α− sin2α IT(RMS)max= IT(RMS)= IT(RMS)max 2 2 π a) b) Supply
in „Motorsteuerung verbessern bei el. Nähmaschine“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP6.pdf
current, I T(RMS) and load power over the full period of the a.c mains, with trigger angle are given T(MAX) in equation 7. Thyristor (1−cosα) IT(MAX) Current IT(AV)= IT(AV)max 2 IT(AV)max= π Trigger 2 IT(MAX) Fig. 3 Half wave control α− sin2α IT(RMS)max= IT(RMS)= IT(RMS)max 2 2 π a) b) Supply
in „defekter Drehzahlsteller eines Schwingschleifers“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP6.PDF
current, I T(RMS) and load power over the full period of the a.c mains, with trigger angle are given T(MAX) in equation 7. Thyristor (1−cosα) IT(MAX) Current IT(AV)= IT(AV)max 2 IT(AV)max= π Trigger 2 IT(MAX) Fig. 3 Half wave control α− sin2α IT(RMS)max= IT(RMS)= IT(RMS)max 2 2 π a) b) Supply
in „AQH2213 SSR Snubber dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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OP07.pdf
0.250 (6.35) 1 4 0.240 (6.10) 0.325 (8.26) 0.310 (7.87) 0.100 (2.54) 0.300 (7.62) BSC 0.060 (1.52) 0.195 (4.95) MAX 0.210 (5.33) 0.130 (3.30) MAX 0.115 (2.92) 0.015 0.150 (3.81) (0.38) 0.015 (0.38) 0.130 (3.30) MIN GAUGE 0.115 (2.92) PLANE 0.014 (0.36) SEATING 0.010 (0.25) PLANE 0.022 (0.56) 0.008 (0.20) 0.018 (0.46) 0.005 (0.13) 0.430 (10.92) MIN MAX 0.014 (0.36) 0.070 (1.78) 0.060 (1.52) 0.045 (1.14) COMPLIANT TO JEDEC STANDARDS MS-001 CONTROLLING DIMENSIONSARE IN INCHES; MILLIMETER DIMENSIONS A (IN PARENTHESES) ARE ROUNDED-OFF INCH EQUIVALENTS
in „Spannungsregler für Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
RFM12BPCmd.h
869.4 - 869.65 MHz 500 mW / ERP, Duty Cycle < 10% // band center = 869,525 // band width = 250 kHz // max. frequency deviation 120 kHz // frequency deviation = 45 kHz / 60 kHz // min. = 869.480/869.465 kHz / low bit // center frequency = 869.525 1905 // max. = 869.570/869.585 kHz / high bit // Differently
in „Rfm12B 686Mhz Bascom Testprogramm.“ · HF, Funk und Felder ·
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PDF
OP177.pdf
15 V, T A 25°C, unless otherwise noted. Table 1. OP177F OP177G Parameter Symbol Conditions Min Typ Max Min Typ Max Unit INPUT OFFSETVOLTAGE VOS 10 25 20 60 μV LONG-TERM INPUT OFFSET 1 Voltage Stability ΔV OSime 0.3 0.4 μV/mo INPUT OFFSET CURRENT OS 0.3 1.5 0.3 2.8 nA INPUT BIAS CURRENT B −0.2 +1.2 +2
in „Konstantstromquelle bis 100ma mit OPV auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_HIP_4081A.pdf
Unless Otherwise Specified TJS= -40°C TO T J= 25°C 125°C PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX MIN MAX UNITS SUPPLY CURRENTS AND CHARGE PUMPS VDD Quiescent Current IDD All inputs = 0V 8.5 10.5 14.5 7.5 14.5 mA VDD Operating Current IDDO Outputs switching f = 500kHz 9.5 12.5 15.5 8.5 15.5 mA VCC
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Output Voltage RLS 4 M7 V = 451 VDC R LS 4 M7 DC OV DC R OVP Sense Output Voltage VR OVP Input Input DC MAX @ 100 VDC = 76% Voltage DC MAX @ 100 VDC = 76% Voltage DC @ 375 VDC = 41% DC @ 375 VDC = 41% MAX D V MAX D V Reset 10 k7 CONTROL CONTROL Q C C R ROVP >3k7 S S - - PI-4756-121007 PI-4719-120307 Figure
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7680.pdf
Leakage Current ±0.3 μA max 2, 3 Floating-State Output Capacitance 10 pF max Output Coding Straight (Natural) Binary CONVERSION RATE Conversion Time 8 μs max 20 SCLK cycles with SCLK at 2.5 MHz 9.6 μs max 24 SCLK cycles with SCLK
in „AD7680 (SPI) + STM32F4Discovery“ · Mikrocontroller und Digitale Elektronik ·
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Datei
board-omap4panda.c
= { .constraints = { .min_uV = 1800000, .max_uV = 1800000, .valid_modes_mask = REGULATOR_MODE_NORMAL | REGULATOR_MODE_STANDBY, .valid_ops_mask = REGULATOR_CHANGE_MODE | REGULATOR_CHANGE_STATUS, }, }; static struct regulator_init_data omap4_panda_vdac = { .constraints = { .min_uV = 1800000, .max_uV = 1800000, .valid_modes_mask = REGULATOR_MODE_NORMAL | REGULATOR_MODE_STANDBY, .valid_ops_mask = REGULATOR_CHANGE_MODE | REGULATOR_CHANGE_STATUS, }, }; static struct regulator_init_data omap4_panda_vusb
in „CAN-Interface mit galvanischer Trennung für Pandaboard (OMAP4)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_EEPROM_-_ST24C04.pdf
sections of this specification is not im- Table 4. Absolute Maximum Ratings Symbol Parameter Min. Max. Unit TSTG Storage Temperature –65 150 °C PDIP: 10 seconds 260 T LEAD Lead Temperature during SO: 20 seconds (max) 1 235 °C Soldering 1 TSSOP: 20 seconds (max) 235 V IO Input or Output range –0.6 6.5
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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stoerbeeinfICEC1_d.pdf
0,05W / 10mm / 0,40W / AC30V / DC38V AC275V / DC350V Der maximale Energieinhalt ergibt sich zu: 2150pF 195pF W = 0,5 x 90H x ( 0,01A x 1,414 ) = 0,00899Ws 14mm / 0,10W / 14mm / 0,60W / AC30V / DC38V AC275V / DC350V W = 9,0mWs 3600pF 320pF 20mm / 0,20W / 20mm / 1,00W / Version DC 24V: AC30V / DC38V 7200pF
in „2P-Rails 230V Ausgabeeinheit“ · Mikrocontroller und Digitale Elektronik ·
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Flyer_Niederspr-ADE123016w.pdf
Spätestens ab einer Anlagenleistung größer13,8kVA aus einphasigen, ungekoppelten Wechselrichtern (max. 4,6 kVA pro Phase) muss weitere Leistung dreiphasig ins Netz gespeist werden Die kommunikative Kopplung von drei einphasigen Wechselrichtern bleibt zulässig Weiterhin erlaubt: die kommunikative Kopplung
in „Solar-Home-System“ · Analoge Elektronik und Schaltungstechnik ·
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ucc28084.pdf
to 70°C for ACC3808x, T = T (unless A J otherwise noted) overall PARAMETER TEST CONDITIONS MIN TYP MAX UNITS Start-up current VDD < UVLO start threshold voltage 120 200 µA Supply current CTRL = 0 V, CS = 0 V, 1.5 2.5 mA See Note 1 undervoltage lockout PARAMETER TEST CONDITIONS MIN TYP MAX UNITS UCC38083
in „UCC28084 läuft nicht an“ · Analoge Elektronik und Schaltungstechnik ·
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CONOX.pdf
140V8 60 4000 11 1000 1,8 6M 170VS 3,7 200 0,71 50 0,25 8M 170V8 9,6 500 1,7 125 0,61 12M170V8 170 195 253 19 1000 3,5 250 1,2 17M 170VS 36 2000 6,9 500 1,8 24M 170VS 75 4000 14 1000 2,2 3/20 IJsrotectiVaristor C Power Dimensions in mm max. 10 surgmA± 10% attypo dissipation current pF max. max. max.
in „Bauteilidentifikation (siehe Bild)“ · Analoge Elektronik und Schaltungstechnik ·
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SU1278.pdf
0.1V; T = 29.5 ± 0.5 V Loop-through characteristics for /L- types SYMBOL PARAMETER CONDITIONS TYP. MAX. UNIT αA-B attenuation (from RF A to RF B) — 3.0 dB ∆G loopthrough gain — ±3.0 dB in frequency band 950 to 2150 MHz gain deviation in channel channel width = 40 MHz — 1.5 dB ∆G B4O Vosc spurious local
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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TCM8240MD_E150405_REV13.pdf
50 ALC_HOLD L8P120S[11:8] 04 81 51 EVS_MIN[7:0] 00 82 52 EVS_SW[1:0] EVS_CUDSW EVS_MIN[9:8] 20 EVS_MAX[7:0] 83 53 FF 84 54 EVS_MODE[4:0] EVS_MAX[9:8] 03 85 55 HS_ES_LIM[2:0] MHSS[3:0] 80 86 56 MES[7:0] 3B 87 57 MES[15:8] 01 88 58 LS_ES_LIM[3:0] MES[17:16] 50 89 59 MDG[7:0] 00 90 5A AG_MIN[7:0] 3F 91
in „Cam-Modul TCM8240MD und ARM-Board per I²C“ · Mikrocontroller und Digitale Elektronik ·
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AD7302.pdf
6 and 7 V DD = 5.5 V VIH V DD and VIL GND @ 25°C 4.5 mA max Typically 2.8 mA @ T MIN to TMAX 5 mA max See Figures 6 and 7 IDD (Full Power-Down) @ 25°C 1 A max VIH= V DD and VIL GND T MINto TMAX 2 A max See Figure 18 NOTES 1Temperature ranges are as follows:
in „(S) AD7302BNZ DAC DIP20“ · Markt ·
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LQ10D421.pdf
ˠ -1ʙ +65 ˆ 5 6.Electrical Characreristics 6-1 TFT-LCDpaneldriving ɾ Change Supply voltagɿ Min Typ Max Min Typ Max Unit +4.5 +5.0 +5.5 ˠ +3.0 +3.3 +5.0 +5.5 V ɾ Change Current dissipaɿion Typ Max Typ Max Unit VCC=5.0V 280 450 ˠ 150 230 mA VCC=3.3V 180 270 mA ɾ Change the remark of Permissive input ripplɿ
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7805.pdf
Voltage. Figure 28 : ReducingPower Dissipation with Dr oppingResistor. VO= VXX+ VZ1 V i(min)XX− V DROP(max) R = IO(max) d(max) Figure 29 : RemoteShutdown. 19/25 L7800 Figure 30 : Power AM Modulator(unity voltage Figure 31 : AdjustableOutput Voltage with gain,I o < 1A). TemperatureCompensation. V = V 1 R2
in „Pic schaltung mit Netzteil versorgen“ · Mikrocontroller und Digitale Elektronik ·
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179205-da-01-en-Festspannungsregler_78XX.pdf
Figure 28 : Reducing PowerDissipation with Dropping Resistor. V O V XX + VZ1 R = V (min) VXX − VDROP(max) IO(max) Id(max) Figure29 : Remote Shutdown. 19/25 L7800 Figure30 : Power AM Modulator(unityvoltage Figure 31 : AdjustableOutput Voltage with gain, I o 1A). TemperatureCompensation. V = V (1 + R 2)
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD620.pdf
Amp IA Designs RG 1 8 RG Available in 8-Lead DIP and SOIC Packaging –IN 2 7 +VS Low Power, 1.3 mA max Supply Current +IN 3 6 OUTPUT EXCELLENT DC PERFORMANCE (“B GRADE”) –VS 4 AD620 5 REF 50 mV max, Input Offset Voltage TOP VIEW 0.6 mV/8C max, Input Offset Drift 1.0 nA max, Input Bias Current 100 dB
in „Probleme mit Instrumentenverstärker AD620“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HC_HCT4851.pdf
circuit see Fig. 8. Symbol Parameter Conditions 25 °C -40 °C to -40 °C to Unit +85 °C +125 °C Min Typ Max Min Max Min Max 74HC4851 R ON resistance V = V to GND; E = V ON(peak) I CC IL (peak) VCC = 2.0 VSWI= 2 mA - 400 650 - 670 - 700 Ω VCC = 3.0 VSWI≤ 2 mA - 215 330 - 360 - 380 Ω VCC = 3.3 VSWI≤ 2 mA -
in „4051 Analog-Multiplexer, PullUps?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA1562_PHI.pdf
R =; s = 0 ; f = 1 kHzamb= 25 °C; unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VP supply voltage operating 8 14.4 18 V non-operating − − 30 V load dump − − 45 V q(tot) total quiescent current on and mute; − 110 150 mA R L open circuit stb standby current standby − 1 50 A
in „Frage zu TDA1562 I/O Pin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA1562.pdf
R =; s = 0 ; f = 1 kHzamb= 25 °C; unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VP supply voltage operating 8 14.4 18 V non-operating − − 30 V load dump − − 45 V q(tot) total quiescent current on and mute; − 110 150 mA R L open circuit stb standby current standby − 1 50 A
in „Maximale Kapazitat an Lift Supply (TDA1562)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1082.pdf
.5V, V = VFB REF, output pin open, unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS I Supply Current 3V V V , V = 0.6V 4.5 7.0 mA Q IN MAX C Control Pin Threshold Duty Cycle = 0 0.7 0.9 1.1 V 0.5 1.25 V Normal/Flyback Threshold 0.58 0.67 0.8 V on Feedback Pin f Switching Frequency
in „Boost Converter 2MHz 50V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P20101.pdf
ELECTRICAL CHARACTERISTICS 6.1 D.C ELECTRICAL CHARACTERISTICS SYMBOL PARAMETERS CONDITIONS MIN TYP MAX UNIT VCC Driver Power Supply - 14.5 15 15.5 V (For OLED Panel) VDD Logic Power Supply - 2.4 2.8 3.3 V Logic I/O Operating VDDIO Voltage - 1.65 - 3.3 V VIH High logic input - 0.8*VDDIO - VDDIO V voltage
in „RiTdisplay - Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IKSdrehzahl_IL8190_datasheet.pdf
≤ TA≤ 85°C, 8.5 V ≤ VCC≤ 16 V, unless otherwise specified) Symbol Parameter Test Condition Min Typ Max Unit Supply Voltage Section I Supply Current V = 16 V, No Load 66 125 mA CC CC V Normal Operation Range 8.5 13.1 16 V CC Input Comparator Section VТН Positive Input Threshold 1.0 2.1 3.0 V VH Input
in „Brauche Hilfe bei der Suche nach einem IC. Bin kein Fachmann.“ · Fahrzeugelektronik ·
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EN_300744_DVBT.pdf
defined by the following. An (N -r1) bit binary word R' ii defined, with N = rog M 2 max, where M max = 2 048 in the 2K mode and M max = 8 192 in the 8K mode, where R' taies the following values: i = 0,1: R'i [Nr-2, Nr-3, ..., 1, 0] = 0, 0, ..., 0, 0 i = 2: R'i [Nr-2, Nr-3, ..., 1, 0] =
in „Frage nach günstiges Pegelmessgerät - Messprinzip über mehrere Frequenzen“ · HF, Funk und Felder ·
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PDF
t4227.pdf
V = 0 V 2 A HLD AC characteristics Output pulse with for OUT1 and Modulation according tWO200 170 195 230 ms OUT2 DCF77, 200 ms pulse Output pulse with for OUT1 and Modulation according tWO100 70 95 130 ms OUT2 DCF77, 100 ms pule Rev. A3, 20-Mar-01 7 (14) Preliminary Information T4227 Test Circuitry
in „DCF77 Emfangs-IC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn2864.pdf
Otherwise Specified SUPPLY A L ICL8038CC ICL8038BC ICL8038AC TEST PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS Supply Voltage Operating Range V SUPPLY V+ Single Suppy +10 - +30 +10 - +30 +10 - +30 V V+, V- Dual Supplies ±5 - ±15 ±5 - ±15 ±5 - ±15 V Supply Current ISUPPLY VSUPPLY
in „Rechteck -> Sinus, Dreieck, Sägezahn(!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL8038.pdf
Otherwise Specified SUPPLY A L ICL8038CC ICL8038BC ICL8038AC TEST PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS Supply Voltage Operating Range V SUPPLY V+ Single Suppy +10 - +30 +10 - +30 +10 - +30 V V+, V- Dual Supplies ±5 - ±15 ±5 - ±15 ±5 - ±15 V Supply Current ISUPPLY VSUPPLY
in „8038 IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD820.pdf
VCM= 0V 0.5 5 0.5 2.5 nA Input Offset Current 2 20 2 10 pA AtT 0.5 0.5 nA MAX Open-Loop Gain VOUT= −10V to +10V RL= 100 kΩ 500 2000 500 2000 V/mV TMINtoTMAX 500 500 V/mV RL= 10 kΩ 100 500 100 500 V/mV T toT 100 100 V/mV MIN MAX RL= 1 kΩ 30 45 30 45 V/mV T toT 20 20 V/mV MIN MAX
in „Präzisionsgleichrichter Gleichrichter Zweiweggleichrichter im IC?“ · Analoge Elektronik und Schaltungstechnik ·
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einsteckwerkzeuge_de.pdf
1 110306 9 155 0,066 1 110308 10 160 0,092 1 110310 11 170 0,089 1 110312 12 180 0,130 1 110314 13 195 0,132 1 Art. Nr. Satz leer kg VE 110316 14 205 0,147 1 220017 8-teilig 220002 1,181 1 110318 17 240 0,233 1 110320 19 260 0,236 1 110322 22 280 0,345 1 110324 24 280 0,357 1 Ratschen-Ringschlüssel 1000
in „Kunststoff Steckschlüssel“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
CS8190-D.pdf
≤ TA≤ 85°C, 8.5 V ≤ CC ≤ 15 V, unless otherwise specified.) Characteristic Test Conditions Min Typ Max Unit SUPPLY VOLTAGE SECTION ICC Supply Current V CC = 16 V, −40°C, No Load − 50 125 mA V CC Normal Operation Range − 8.5 13.1 16 V INPUT COMPARATOR SECTION Positive Input Threshold − 1.0 2.0 3.0 V Input
in „Drehspulinstrument (Air Core) steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS3930.pdf
RI/O 3.5 5 7.0 kΩ Standby Current I 3V (Note 2) 160 300 µA STBY 5V (Note 2) 195 350 2 ______________________________________________________________________ Hex Nonvolatile Potentiometer with I/O and Memory D ANALOG RESISTOR CHARACTERISTICS S (VCC = +2.7V to +5.5V;AT = -40°C to +85°C, unless otherwise specified.) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 3 9 End-to-End Resistance TA= +25°C (three 50kΩ pots in parallel) 13.2 16.5 19.8 kΩ 3 Wiper Resistance R 400 1000 Ω W 0 Factory Default Wiper Setting FF Hex Factory Default I/O Setting 0F Hex
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PDF
LT1930.pdf
C. VIN 3V, V SHDN = VINnless otherwise noted. (Note 2) LT1930 LT1930A PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS MinimumOperating Voltage 2.45 2.6 2.45 2.6 V MaximumOperating Voltage 16 16 V Feedback Voltage 1.240 1.255 1.270 1.240 1.255 1.270 V 1.230 1.280 1.230 1.280 V FB Pin Bias Current VFB
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC639_BCP56_BCX56.pdf
Amplifiers 1.4 Quick reference data Table 2. Quick reference data Symbol Parameter Conditions Min Typ Max Unit V collector-emitter voltopen base - - 80 V CEO IC collector current - - 1 A ICM peak collector currentsingle pulsep t ≤ 1 ms - - 1.5 A hFE DC current gain VCE = 2 V;CI = 150 mA 63 - 250 hFEselection
in „Alternative BC327 und 337“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INFINEON-IKW50N65F5-DS-V02_01-EN.pdf
M3 screw Maximum of mounting processes: 3 M 0.6 Nm Thermal Resistance Parameter Symbol Conditions Max. Value Unit Characteristic IGBT thermal resistance, Rth(j-c) 0.50 K/W junction - case Diode thermal resistance, Rth(j-c) 1.50 K/W junction - case Thermal resistance junction - ambient Rth(j-a) 40 K/
in „SGT40n60NPFD vs IKW50N65F5“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LC16_Trend_ScreenKey_Datasheet.pdf
transmission of data to the display, the following conditions must be adhered to. • Clock frequency max F 4 MHz max • Clock frequency min F min 50 kHz • Clock phase low max T cpl 20 µs • Clock phase low min T cpl 125 ns • Clock phase high max T 20 µs • Clock phase high min T cph 125 ns cph • Hold data
in „SPI mit Start- und 2 Stoppbit zur ScreenKey Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2599932.pdf
.100 .020 22-18 1.52-2.54 0.51 62898-1* 18-14 0.8-2.0 .090-.140 .020 63397-1 2.29-3.56 0.51 .208 .118 MAX. .018 2 [5.28] 22-17 0.3-1.0 3.00 MAX. 0.45 281622-2 D Straight w/Ins. Sup. 22-17 0.3-1.0 .118 MAX. .018 281623-2 2 [.312] 3.00 MAX. 0.45 7.92 .063-.090 .018 3 20-17 0.5-1.0 1.60-2.30 0.45 964101-2
in „IDC connector für Kupferlackdraht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr450.pdf
IBAmax =2.0A The current from a certain step number is: 1926 N = IShunt This gives a resolution of: mA 195 2000mA =195 mA step 1024steps step 9 ATtiny15 Battery Charger differential measurement of the battery charge current as shown in Figure 4. The current is measured as the differ- This chapter describes
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PDF
ImprovingCode.pdf
NOTE: Optimizations may interfere with MPLAB debugging © 2002 Microchip Technol618 IPIC18FXXX DFT Ha195 On Workshopd. Command-Line Options Memory Model l MPLAB-C18 has two memory models: -ms: small memory model (pointers to program memory are 16-bits wide) -ml: large memory model (pointers to program
in „einfache Code-Optimierungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TD_Meanwell_-_RSP-500-24__PSU_Powersupply_Stromumformer_Creality_3D-Drucker_Mean_Well_.pdf
33.4A 0 ~ 21A 0 ~ 18.6A 0 ~ 10.5A RATED POWER 297W 360W 450W 500.4W 501W 504W 502.2W 504W RIPPLE&NOISE(max.) Note.2120mVp-p 120mVp-p 150mVp-p 150mVp-p 150mVp-p 150mVp-p 150mVp-p 150mVp-p OUTPUT VOLTAGEADJ. RANGE 2.8 ~ 3.6V 3.6 ~ 4.3V 4.5 ~ 5.5V 10 ~ 13.2V 13.5 ~ 18V 20 ~ 26.4V 26 ~ 30V 41 ~ 56V VOLTAGETOLERANCE
in „Verkabelung eines 3D-Druckers“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
catalog.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 2.46 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298 [Price
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PDF
catalog.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 2.46 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298 [Price
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PDF
catalog-3.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 3.3899 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298