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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
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AN10496-NXP.pdf
P89LPC901 9. Appendix D Main Loop Key 1 & Key 2 N pressed together? N Y Key 1 pressed? Key Value = Max Y Key value N exceed? Process Increase or Decrease soft Y switch Increase Key Value Convert Key Value into Phase Value N Key 2 pressed? Phase Value between N 40 and 140 Degree? Y Key Value N Y Negative
in „Controller an 230VAC wie realisieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si4734-35-C40.pdf
level is adjustable capacitors are provided. Refer to "2. Typical Application using the FM_SOFT_MUTE_MAX_ATTENUATION and Schematic (QFN)" on page 17. This mode is enabled AM_SOFT_MUTE_MAX_ATTENUATION properties. using the POWER_UP command. Refer to Table 14, “Selected Si473x Commands,” on page 27. 5.12
in „[V] LCD Display, xMega128 mit USB, AM/FM Radio Empfänger“ · Markt ·
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PDF
datenblatt_pic.pdf
typ) = 10 ms TDEW (typ) = 10 ms TDEW (typ) = 10 ms T DEW (typ) = 4 ms Erase/Write cycle time T DEW (max) = 20 ms TDEW (max) = 20 ms TDEW (max) = 20 ms T DEW (max) = 8 ms (TDEW). See parameter # D122 in the electrical specs for more detail. Port Output Rise/Fall TioR, TioF (max) = 25 ns TioR, TioF (max) = 35 ns TioR, TioF (max) = 35 ns TioR, TioF (max) = 35 ns time (TioR, TioF). See (C84) (C84) (C84) (C84) parameters #20, 20A, TioR, TioF (max) = 60 ns TioR, TioF (max) = 70 ns TioR, TioF (max) = 70 ns TioR, TioF (max) = 70
in „Flußdiagramm Digitale stoppuhr auf PIC 16F84A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16F84.pdf
typ) = 10 ms TDEW (typ) = 10 ms TDEW (typ) = 10 ms T DEW (typ) = 4 ms Erase/Write cycle time T DEW (max) = 20 ms TDEW (max) = 20 ms TDEW (max) = 20 ms T DEW (max) = 8 ms (TDEW). See parameter # D122 in the electrical specs for more detail. Port Output Rise/Fall TioR, TioF (max) = 25 ns TioR, TioF (max) = 35 ns TioR, TioF (max) = 35 ns TioR, TioF (max) = 35 ns time (TioR, TioF). See (C84) (C84) (C84) (C84) parameters #20, 20A, TioR, TioF (max) = 60 ns TioR, TioF (max) = 70 ns TioR, TioF (max) = 70 ns TioR, TioF (max) = 70
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
panasonic_tx-p50u20b_e_tx-pr50u20_chassis_gpf13de_sm.pdf
0.063W 1 R5475 ERJ6GEYJ221V M 220 OHM,J,1/ 1 R8011 D0GB331JA041 M330 OHM J 1/10W 1 10W R5479 ERJ6GEYJ471 M 470 OHM,J,1/ 1 R8014 ERJ2GEJ103 M 10KOHM, 1 J,0.063W 10W R8015 ERJ2GEJ102X M 1KOHM, 1 R5481 ERJ2GEJ221 M 220 OHM, 1 J,0.063W J,0.063W R5485 ERJ6GEYJ104V M 100KOHM,J,1/ 1 R8017 D0GA471JA015 M 470OHM
in „Panasonic TX-P50U20E“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP6562.pdf
TA= +25°C, VIN = VDD/2, IN- =SS, R = 10 kΩ to V /2 (see Figure 1-1). L DD Parameters Symbol Min Typ Max Units Conditions Power Supply Supply Voltage VDD 1.8 — 5.5 V Quiescent Current per comparator Q 60 100 130 µA IOUT = 0 Power Supply Rejection Ratio PSRR 63 70 — dB V CM = SS Input Input Offset Voltage
in „Schmitttrigger mit MCP6562 unklare Abweichung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
compile_Tasmota_stable_in_docker_container.txt
Compiling .pio/build/tasmota32-DE/liba6f/HTTPClient/HTTPClient.cpp.o Compiling .pio/build/tasmota32-DE/lib471/WebServer/Parsing.cpp.o Compiling .pio/build/tasmota32-DE/lib471/WebServer/WebServer.cpp.o Compiling .pio/build/tasmota32-DE/lib471/WebServer/detail/mimetable.cpp.o Compiling .pio/build/tasmota32-DE
in „Dlock 11827 und Tasmota - compilieren für FW-Update“ · Haus & Smart Home ·
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PDF
PCD8544_1.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
in „(Dieser Beitrag wurde geloescht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcd8544.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
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PDF
PCD8544_1.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
in „MSP430F2013 steuert Nokia-3310-Display an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
in „Atmega8 Nokia 3310 Display und AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
in „Display Nokia 5110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5110.pdf
VSS VLCD - 2 V 4 V 5 V (t) 0 V 0 V state2 V - V 3 2 V SS - 5 V 4 V LCD −V LCD 0 1 2 3 45 6 7 8 ... 471 2 3 45 6 7 8 ... 47 MGL637 V (t) = C1(t) - R0(t). state1 V state2) = C1(t) - R1(t). Fig.2 Typical LCD driver waveforms. 1999 Apr 12 7 Philips Semiconductors Product specification 48 × 84 pixels matrix
in „Nokia 5110 ansteuern für newbie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Service_5962-8119.pdf
Scope, or DC Load RMSvoltmeter Ammeter resistor 400 ohm (for CV tests) - - b. + DVM or -+ 240 VDC MAX RMSvoltmeter Current +S + - -S monitor (for CC tests) - + - + Electronic DC Load resistor Load Ammeter 1 k ohm (see note) - Note: Use dc supply with same polarity + - connections for - CC tests. Replace
in „Wachsende Unterstützung der Selbstreparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX8352-A.pdf
1.0μF VGH Connect to Capacitor (Max 21V): VGH ---(+)----| |--- (-)----- VSSA 1.0μF VCL Connect to Capacitor (Max 5V): VCL ---(-)----| |--- (+)----- VSSA 1.0μF C22A,C22B Connect to Capacitor (Max 7V): C22A ---(+)----| |--- (-)-----C22B
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O-Ring_Uebersicht_0304.pdf
10,00 6-816 670,00 10,00 6-1223 860,00 3,00 2-391 557,61 5,33 6-301 677,00 7,00 6-363 865,00 12,00 2-471 557,66 6,99 6-535 680,00 5,00 6-707 865,00 8,40 6-462 558,00 10,00 6-236 689,00 10,00 6-890 870,00 8,00 6-1229 564,30 6,99 6-266 693,50 10,10 6-597 875,00 8,00 T I PO-Ring Divsion Europe L S 63 A M
in „Langlebiges Schmiermittel für O-Ringe in Sanitär-Armaturen“ · Haus & Smart Home ·
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PDF
DSAIH000309343.pdf
circuit frequency is a typ. value, and the max. value indicates the maximum operability. S1D15721 Series Technical Manual (Rev.2.1) EPSON 61 9. DC CHARACTERISTICS Table 9.2 Specified value Applicable Item Symbol Conditions Unit Min. Typ. Max. pin
in „Pollin Display VL-FS-COG-VLGEM1277-01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS8364.pdf
Operating Supply Current (DIDD) 2.5 4 mA Power Dissipation BV DD = 3V 413.1 470.9 mW BV DD = 5V 413.5 471.5 mW NOTES: (1) All values are atAT = 25°C. (2) Applies for 5.0V nominal SuppDD:(min) = 4.5V and BDD (max) = 5.5V. (3) Applies for 3.0V nominal SupplyDDBV (min) = 2.7V and BVDD (max) = 3.6V. ADS8364
in „ADC ADS8364 ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DDS.vhd
= DIN_CNT_MAX-1) then ROMADDR <= ADDRESS; -- clocked address --> BRAM end if; end if; end process; -- 1 clock cycle latency caused by BROM process begin wait until rising_edge(CLK); if BCK = '1' then if (DIN_CNT = DIN_CNT_MAX-1) then SIGN <= ACCUM(ACCUM'left); end if; end if; end process; QUADRANT <= ACCUM(ACCUM'left-1); RESULT <= signed(sine_LUT(ROMADDR)); ADDRESS <= to_integer(ACCUM(ACCUM'high-2 downto ACCUM'high-11))
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
AN559-1.pdf
< I < 0.1 Ib 1 ±1.5% ±2.5% be adapted to suit specific regional requirements, e.g., in 0.1 Ib< I < MAX 1 ±1.0% ±2.0% theUnitedStatespowerisusuallydistributedtoresidential 0.1 Ib < I < 0.2 Ib 0.5 Lag ±1.5% ±2.5% customers as single-phase, three-wire. 0.8 Lead ±1.5% 0.2 Ib< I < MAX 0.5 Lag ±1.0% ±2.0%
in „Wirkleistungsmessung am Stromnetz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mirkonet_tmp.pdf
XC6206P502MR TOREX VREG LDO 5,0V 0,2A YES YES 0,625 0,750 3,750 Farnell SOT-23 N/A LDO 5,0V 0,2A 2% Drop max. 0,25V 2% -40/+85 N/A N/A 5,3 6 5 0,25W 8797005 10 VREG XC6206P332MR TOREX VREG LDO 3,3V 0,2A YES YES 0,554 0,665 6,648 Farnell SOT-23 N/A LDO 3,3V 0,2A 2% Drop max. 0,25V 2% -40/+85 N/A N/A 3,6 6 3,3
in „Komplettverkauf Bauteile, was wert? - Tabelle“ · Markt ·
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PDF
Si4730-31-34-35-D60.pdf
Quad Flat No-Lead (QFN) Table 15. Package Dimensions Symbol Millimeters Symbol Millimeters Min Nom Max Min Nom Max A 0.50 0.55 0.60 f 2.53 BSC A1 0.00 0.02 0.05 L 0.35 0.40 0.45 b 0.20 0.25 0.30 L1 0.00 — 0.10 c 0.27 0.32 0.37 aaa — — 0.05 D 3.00 BSC bbb — — 0.05 D2 1.65 1.70 1.75 ccc — — 0.08 e 0.50
in „LM2528-3.3 & SI4735 & Bluetooth anliegen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAN-BootloaderPIC18F.pdf
Purpose BitRate Property Sets the bit rate of the comm port. CommPort Property Specifies the comm port. MaxTimeOut Property Specifies the maximum wait (in milliseconds) for data to be received in the computer’s serial buffer. MaxRetrys Property Specifies the maximum number of times to resend a serial packet
in „CAN-Bootloader für PIC18F“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_NTC_Databook.pdf
spans and minimum distances have to be r observed: c Dip soldering Iron soldering i o Bath temperature max. 260 °C max. 360 °C s Soldering time max. 4 s max. 2 s Distance from thermistor min. 6 mm min. 6 mm Under more severe soldering conditions the resistance may change. 1.2 Leadless NTC thermistors In
in „Hellblauer Temperatursensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AMIS-30543-D.pdf
external decoupling capacitor) Supply Type 3 Table 2. ABSOLUTE MAXIMUM RATINGS Symbol Parameter Min Max Unit VBB Analog DC supply voltage (Note 1) −0.3 +40 V TST Storage temperature −55 +160 °C TJ Junction Temperature under bias (Note 2) −50 +175 °C V ESD Electrostatic discharges on component level, All
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Boonton_Measurements_Corp_Model_59_Army.pdf
a bucking voltage, are connected together. Figure 6 shows the AOO:38.63A 7 R6 C4 ·+4.4V 10K J5 50 MAX B R9 L4,L5 470 L6,L7 V3 L8 - 955 J6 C3 50 R16 R10 6800 6800 R8 R15 6800 6800 ~ = ~ P2 C RA PD 238634 J2 5 3 -J3- Figure 5.Meter bridge circuit, partial schematic. I PHONES I S2 (REF) 11 2 .simplified
in „Was ist das für ein Röhren- Dipper ?“ · HF, Funk und Felder ·
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PDF
LTJournal-V24N2-02-df-BenchSupply-Szolusha.pdf
EMZA350ADA101MF80G 50V D4: GREEN LED IMON MON IN LIM 10µA L1: WÜRTH 744325550 1k L2: MURATA LQH32CN471K23L 1% ISET + Q1: SI2309CDS 50µA Q2: CMST3904TR SET + – Q3, Q4: MMBT3906 Q5: FMMT493 0.01µF – 10mΩ SET OUT RI(LIM) BOURNS INC. 91A1A‐B28‐A13L OUT 1% 200Ω RV(OUT:BOURNS INC. 91A1A‐B28‐A15L 47.5k 1% S1: PHILMORE 30‐10002B LT3081 TEMP 10µF 50V 10k VOUT ADJUST TEMP2 ×3 11.3k JP1 VOUT(MAX) RV(OUT) 10k 1% 5V 10k 15V B140 73.2k 24V 14 | July 2014 : LT Journal of Analog Innovation design features Once target voltage is precisely dialed-in, you don’t want to see the bench supply voltage
in „Dimensionierung meines Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTJournal-V24N2-02-df-BenchSupply-Szolusha.pdf
EMZA350ADA101MF80G 50V D4: GREEN LED IMON MON IN LIM 10µA L1: WÜRTH 744325550 1k L2: MURATA LQH32CN471K23L 1% ISET + Q1: SI2309CDS 50µA Q2: CMST3904TR SET + – Q3, Q4: MMBT3906 Q5: FMMT493 0.01µF – 10mΩ SET OUT RI(LIM) BOURNS INC. 91A1A‐B28‐A13L OUT 1% 200Ω RV(OUT:BOURNS INC. 91A1A‐B28‐A15L 47.5k 1% S1: PHILMORE 30‐10002B LT3081 TEMP 10µF 50V 10k VOUT ADJUST TEMP2 ×3 11.3k JP1 VOUT(MAX) RV(OUT) 10k 1% 5V 10k 15V B140 73.2k 24V 14 | July 2014 : LT Journal of Analog Innovation design features Once target voltage is precisely dialed-in, you don’t want to see the bench supply voltage
in „Suche Stereo Multiturn Potentiometer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADA2200-EVALZ_UG-702.pdf
thick film chip, R0805 Panasonic ERJ-6ENF1004V 1 R28 Resistor, metal film chip, 0.1% Panasonic ERA-6AEB471V 1 RESET Switch, tactile, SPST NO TE Connectivity FSM2JSMA 1 U1 IC, CMOS linear regulator, LDO, 3.3V Analog Devices ADP151AUJZ-3.3-R7 1 U2 IC,sampledanalogfilter,synchronousdemodulatorAnalog Devices ADA2200 1 X1 Socket, 8-pin, DIP Mill-Max 110-43-308-41-001000 1 Y1 Ceramic resonator, 400 kHz ECS ZTB400P 4 Corners Bump on, cylindrical, 0.312X.200, black 3M SJ61A1 2 R23, R24 Resistor, precision thin film chip, R0603 Panasonic ERA-3AEB1581V
in „Lock In Verstärker; Vibrometer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronusches_Uhren_Relay-V4.pdf
AUlg. Mitteilg.Tag G o. Gepr. Gel. Norm ~. f(1. Nv.27.2.8t I 21F J o T echnische Daten Min. Nennw. Max. B etriebsspannung ( e in s te llb a r ) 21,5 V 24 V 30 V 32 V 36 V 45 V (Bei ü b e rla g e rte r W echselspannung d ü rfen d ie A ugenblicksw erte d ie angegebenen Maximal- und M inim al w erte n ic
in „Polwechselnden Impuls mit Transistoren verstärken“ · Analoge Elektronik und Schaltungstechnik ·
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DTM_GHS_D_99.pdf
o m T A 2ax A 1ax 1/2 GW 3x7 MH Gabelweite GW ± 1,5 135 Achsende 2-flach 8,6 Achsgewinde T FG 10,5 Max. Aufbau unter Achsmutter A1 max 9,5 Max. Aufbau unter Achsmutter A max 9,5 2 Zahnkränze Kassette 7-fach Z = 12/28 Kettenlinie an Zahnkranzkassette CL 45 Speichenloch – Anzahl 36 – Durchmesser Ds 2,6
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PDF
TI-AN032_Regulations2_4GHz_SRD.pdf
Indoor use without restrictions. Outdoor use limited to 10mW EIRP within 2454 to 2483.5 MHz. 11a: Max EIRP 500mW. Iceland: 4a: Not applicable. Italy: 3a: If used outside of own premises general authorization is required. 4a: Not implemented. 11a: Not implemented. Luxembourg: 3a: General authorization
in „2.4GHz: Was gilt bei FCC Spurious > 1GHz“ · HF, Funk und Felder ·
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PDF
MGA-62563__AV02-1237EN_.pdf
= 5OΩ,V = 3V (unldss otherwise specified) Symbol ParametersandTestConditions Freq Units Min. Typ. Max. StdDev Id [1,2] Device Current mA 47 62 77 2.09 NF test[1,2 Noise Figure in test circuit [1] f = 0.5 GHz dB 0.93 1.4 0.06 [1,2] [1] G test Associated Gain in test circuit f = 0.5 GHz dB 20.4 22 23.4
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PDF
PIC12F508_Datasheet.pdf
............................................................................................800 mW Max. current out of V SS pin................................................................................................................................200 mA Max. current into V DD pin.............
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
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PDF
PIC12F508.pdf
............................................................................................800 mW Max. current out of V SS pin................................................................................................................................200 mA Max. current into V DD pin.............
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
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PDF
INN3977CQ.pdf
winding helps reduce radiated K = K = (1 – D) x T/ t = V × (1 – D ) / ((V – V ) × D ) EMI. P DP OR MAX MIN DS MAX 4. Shield windings can also be used to improve conducted and It is recommended that a K close to 0.9 at the minimum expected DC radiated EMI margins. P bus voltage should be used for most
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mispav.cpp
der letzten 200 ms #define POTIFAKTOR 4 // Das POTI ist ansonsten zu langsam u32 startsectick ; u32 max_difftick ; u32 max_difftickLCD ; u16 anzeigesec ; u16 restsec ; // u16 soll ; PGM_P letzteMeldung ; PGM_P ausmeldung ; u32 ulSekunden ; float Ladung_as ; char format_7_2_f[] = "%7.2f" ; // fuer out_printf
in „Implementierung von Menüs auf alphanumerischen Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ibm_thinkpad_t42_apollo_rev0.49_sch.pdf
RADEON M9_CSP (5/7) 64. BATTERY INPUT 4 22. RADEON M9_CSP(6/7)(7/7) 65. BATTERY MONITOR 4 23. DC/DC MAX PWR CTRL 66. POWER SEQUENCE 24. LCD CONNECTOR 67. DC-DC VCC3M/VCC5M(MAX1631) 25. ICH4-M(1/3) 68. DC-DC VCCCPUCORE (ADP3205) 26. ICH4-M(2/3) 69. DC-DC VCC1R2M/VCCCPUIO(MAX1845) 3 27. ICH4-M(3/3) 70.
in „Lenovo T42 Ladeelektronik spielt verrückt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sager_D87P_Service_Manual_Part4.pdf
# 31 PGM GND 16 0.1U R63 100K 22 FORCEON 25 Sheet 26 of 39 h VCC5 Z461 FORCEOFF GND TC7S32F 29F020 MAX3243 e C311 Flash ROM/LPT1 m 0.1U R62 10K VDD3 a PME# [18,25,27,28,29,30,31] D t Q3 i COM1RI G CN5 c 2N7002(R) S 12 R84 100K 5 RI1# 9 D DTR1# 4 CTS1# 8 RTS1# 7 i RN94 BK32164S121 SIN1 2 a RN7 8P4R-32164S471
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Thermoelement.pdf
die Abb. 12 für verschie- c r dene Rohrabmessungen, die Belastungs- D grenzen (Richtwerte) auf. Die max. Druck- belastung zylindrischer Schutzrohre ist als Funktion der Wandstärke bei verschiedenen Rohrdurchmessern dargestellt. Die Angaben gelten für Schutzrohre aus Edel- stahl 1.4571, Einbaulänge 100mm
in „Wie funktioniert Thermosensor in Heizofen“ · Haus & Smart Home ·
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PDF
DCC_Laborbooster.pdf
http://greuphone.magnetmotor.ch/#ibm 67 68 69 noch zu Machen: 70 -Stringlänge über RS232 ist (STRING_MAX_LENGTH =) 21 Zeichen, wird aber nicht abgefangen 71 -Programm säubern/vereinheitlichen und dokumentieren 72 1 'Define für PIC16F1933 2 'jetzt neu für PIC16F1936 (gleich) 3 Define CONFIG1 = 0x0fc2 4 Define CONFIG2 = 0x1dff 5 Define CLOCK_FREQUENCY = 32 'MHz 6 7 Define STRING_MAX_LENGTH = 21 8 9 'DCC-Laborbooster 10 11 'noch nicht implementiert: 12 'Stringlänge über RS232 ist STRING_MAX_LENGTH = 21 Zeichen, wird aber nicht abgefangen 13 14 'PIC-Register: LCD-Modul: Funktion:
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IR-Protokolle_Diplomarbeit.pdf
name, f) { zeit = 50; // Startzeitwert 50ms zmode = 0x00FFF010; // 0 0 ... ... help ... zeit open max_y = 280; // 320-30 Pixel sichtbare Displayhoehe max_x = 238; // 240-2 Pixel nutzbare Displaybreite resize (max_x, max_y); timer = new QTimer(this); connect( timer, SIGNAL(timeout()), SLOT(animate())
in „Lernfunktion für IR Signale.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7627.pdf
52 30,580 82 10,128 -7 556,056 23 110,116 53 29,378 83 9,793 -6 523,757 24 104,919 54 28,229 84 9,471 -5 493,555 25 100,000 55 27,133 85 9,161 -4 465,300 26 95,342 56 26,085 86 8,863 -3 438,854 27 90,930 57 25,084 87 8,576 -2 414,089 28 86,750 58 24,126 88 8,300 -1 390,890 29 82,787 59 23,211 89 8,035
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
eeprom_write_byte(&eeFooByte, nKeyPress); dauer = 0; Warte (100); } } } else{ bPortB = 1; } } return 0; int maxValue(int a[1998], int cnt) { int max; for(int i=0 ; i<cnt ; i++) { if(a[i] > a[i-1]) { 1998 = a[i]; } } return max; } int Array [1998]; Array [ 0 ] = 1999 ; Array [ 1 ] = 1998 ; Array [ 2 ] = 1997 ;
in „Geschwindigkeit durch Taster aus einem Array anwählen“ · Mikrocontroller und Digitale Elektronik ·
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AN332.pdf
2 7:0 AMAGCNDX AM AGC Index This byte reports the current AGC gain index. 0 = Minimum attenuation (max gain) 1 – 36+ATTN_BACKUP = Intermediate attenuation 37+ATTN_BACKUP = Maximum attenuation (min gain) Note: The max index is subject to change. See Property 0x3705 AM_FRONTEND_AGC_CONTROL for details
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20200316NukiSmartLockAPI2_1__1_.pdf
Characteristic Value sub-procedure. Value UUID: a92ee201-5501-11e4-916c-0800200c9a66 Type: uint8 array (max size is 20 Bytes) Properties: write (long), indicate Client configuration Properties: write 2.3.2 User-Specific Data Input Output characteristic The User-Specific Data Input Output characteristic is
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SMD_Catalog.pdf
MAX6326_R31-T Max ZB SC70 microproc -ve reset gen 3.080V ACF MAX6347_R46-T Max ZB SC70 microproc +ve reset gen 4.630V ACH MAX6326_R23-T Max ZB SC70 microproc -ve reset gen 2.320V ACI MAX6326_R26-T Max ZB
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