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LTC6803-2_4.pdf
13.15 E40 TA = 25°C R s13.10 T35 m R E P30 I13.05 M 12 CELLS T T25 DISCHARGING 6 CELLS O13.00 I S N20 DISCHARGING E12.95 E N S15 1 CELL C E DISCHARGING 12.90 C10 I 5 12.85 0 12.80 0 10 20 30 40 50 60 70 80 –40 –20 0 20 40 60 80 100 120
in „uC für Schaltregler“ · Mikrocontroller und Digitale Elektronik ·
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Audiomodul.pdf
O D L 1 1 D D K K 1 D D D D H O O O I / O O M O C L L G G C C L G G G G T I I I O I I I N I / C C / / C A I / / I / / I I O 0 S 3 4 I 0 I I I U S N G 2 1 / A M D D C O R 3 W 2 I 0 1 A 0 4 5 6 7 A C T T T T D P C S 1 2 K R L L 2 2 T 0 K C L L L L
in „"Unwichtige" Fragen für die Schaltplan-Optik“ · Platinen ·
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Datei
CRC.o.lst
1 .syntax unified 2 .cpu cortex-m4 3 .eabi_attribute 27, 3 4 .eabi_attribute 28, 1 5 .fpu fpv4-sp-d16 6 .eabi_attribute 20, 1 7 .eabi_attribute 21, 1 8 .eabi_attribute 23, 3 9 .eabi_attribute 24, 1 10 .eabi_attribute 25, 1 11 .eabi_attribute
in „Problem mit GCC-Optimierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
30332222h 159 42301 Rev 3.14 - January 23, 2013 BKDG for AMD Family 15h Models 00h-0Fh Processors Table 78: BIOS Recommendations for SlowAccessMode, Addr/Cmd Timing (C32r1 & LRDIMM) 1 Condition F 1 1 2 F F 9 2 2 _ 9 9 t _ _ 1 0 0 ] 0 0 N S _ _ m DdrRate DdrVDDIO DIMM0 DIMM1 DIMM2 o w 0 0 D A 4 0 m c d d m
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
CONFIG_BACKLIGHT_LCD_SUPPORT=y +CONFIG_LCD_CLASS_DEVICE=y +# CONFIG_LCD_L4F00242T03 is not set +# CONFIG_LCD_LMS283GF05 is not set +# CONFIG_LCD_LTV350QV is not set +# CONFIG_LCD_TDO24M is not set +# CONFIG_LCD_VGG2432A4 is not set +CONFIG_LCD_PLATFORM=y +# CONFIG_LCD_S6E63M0 is not set +CONFIG_BACKLIGHT_CLASS_DEVICE=
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
CONFIG_BACKLIGHT_LCD_SUPPORT=y +CONFIG_LCD_CLASS_DEVICE=y +# CONFIG_LCD_L4F00242T03 is not set +# CONFIG_LCD_LMS283GF05 is not set +# CONFIG_LCD_LTV350QV is not set +# CONFIG_LCD_TDO24M is not set +# CONFIG_LCD_VGG2432A4 is not set +CONFIG_LCD_PLATFORM=y +# CONFIG_LCD_S6E63M0 is not set +CONFIG_BACKLIGHT_CLASS_DEVICE=
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rfax.pdf
H1800ift,ASXXbaud) MAP AREAS: ASXX 1:20,000 Lambert 00S20W 00S70E 60S50W 60S90E FUXX 1:20,000 Mercator 05S15W 05S60E 60S15W 60S60E FSXX 1:20,000 Mercator 05S15W 05S60E 60S15W 60S60E AIAA 30E to 30W Antarctic coast to edge of ice pack except NIC West (INFORMATION DATED 2009) http://old.weathersa.co.za/Marine
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PDF
MachXO2sysCLOCKPLLDesignandUsageGuide.pdf
20.46 2.46 4.93 9.85 22.17 2.56 5.12 10.23 24.18 2.66 5.32 10.64 26.60 2.77 5.54 11.08 29.56 2.89 5.78 11.57 33.25 3.02 6.05 12.09 38.00 3.17 6.33 12.67 44.33 3.33 6.65 13.30 53.20 3.50 7.00 14.00 66.50 3.69 7.39 14.78 88.67 3.91 7.82 15.65 133.00 The NOM_FREQ attribute setting must match the value in
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
apputi01.pdf
low-pass filter and stabilized with a zener diode. The overall system consumption is approximately 45 mA. VCC C1 U2 33 39 4.7p Q1 XTAL2/IN B0 40 R2 C7 B1 1 10K 4.7p B2 2 C2 20M 32 B3 3 VDD XTAL1 B4 23 4.7p R1 B5 U5 5 RESET B6 24 C10 2.4K B7 25 R6 IC0 12 X0 X 14 C 4.7 6 INT1 VCC 26,7K IC1 13 X1 INT2 7 INT2
in „Temperaturmessung mit PT100 und UTI03“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tbf5030_c3a_3.c
; if(dummy1 > 1.0) dummy1 = 1.0; if ( state_num == 1 ) { if((tt4 > -40)&&( tt4 < 220)) { tt4_max = m_temp_set + 20.0; if (( tt4 > 180 )||(!(din_data1 & 0x01))) { if( pwm2_max > pwm2_duty_pv ) pwm2_duty_pv = pwm2_duty_pv + 0.05; } else { if( m_temp_set < tt4 ) { dummy3 = (float)(tt4 - m_temp_set)/(float)(tt4_max - m_temp_set); if (dummy3 > 1.0) dummy3 = 1.0; fan_duty = (float)( pwm2_max - pwm2_idle) * dummy3; fan_duty = pwm2_idle + fan_duty; if ( fan_duty >pwm2_duty_pv) pwm2_duty_pv = pwm2_duty_pv + 0.05; else pwm2
in „Fehler beim Compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MyPC_sch.pdf
SWC 1 J1 U$3 7 IS SWE 2 V 3 D1 0.25 6 VCC TC 3 k L2 . 2 1A 1N4004 5 FB GND 4 o 3 1 +C1 C3 2 c SUPPLY MC34063AD D S 100u 220p 3 0 47u R 6 GND GND 18k GND GND GND R3 + C2 3 2 k D R 1 1000u L g GND GND GND IC3 8 VIN VOUT 1 V 5 78L05SMD 100n GND 100n +C21 2 3 6 7 C19 C18 4,7u GND IC2 LP2985 . 1 5 3 VIN VOUT . 1 3 D 4 ON-OFF GBYPASS 2 5 R 1 3.3V C10 2 C9 C11 4 En 1u 10n 2,2u L g C14 h R27 M 2 n 100n N 8 C 1 GND GND GND GND GND 100k G 3 2. IC1 GND IC4 Q 1 D 8 1 1 n N RAM_CS 1 -CS VCC VS_RST 3 RESET XTALO 17 R 1 C 1 G ETH_SCK 6 CLK M XTALI 18 ETH_SI 5 DI Ray VS_CS 23 CS 7 -HOLD V rDO 2 VS_DCS
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KEI_181_Service.pdf
switch located on ihc rear panel. Connecl the Model 1” anal”0 “uI”ut. .ooO9888 x 1~900000V = 1.87872mV 2. Select the 2V range and input %.looOOV, Verify thal ihc 181 iRZ3,i”l iApplied = (Expected display reads OFLO, Inpurl = Readlngl 3, Adjust Rl06 for an output voltage of ~2,oOOV +~05% It 1mVi read
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Akkumaster.pdf
des Ladezyklus) geschieht in jedem Fall 18 Stunden nach Ladebeginn. t f - +20 V (Unstab.) Im54 56 mV @ 112 mA I n n E 0 12mV 0 225 mA Diese über S3 umschaltbare Stromquelle übernimmt das Laden. entladen. Der Entladestrom ist dabei über S2 ein sechs Stufen von 14...450 mA einstellbar, und bei Erreichen
in „Conrad Accu-master Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC32XSG.pdf
Notes Temperature AT ) Package OUT1 R DS(on)OUT2 OUT3 OUT4 OUT5 OUT6 RDS(on) RDS(on) RDS(on) R DS(on) MC07XSG517EK SOIC54 pins 17 mΩ 17 mΩ 7.0 mΩ 7.0 mΩ 7.0 mΩ Yes exposed pad MC07XSG517DEK SOIC54 pins 17 mΩ 17 mΩ 7.0 mΩ 7.0 mΩ 7.0 mΩ Yes exposed pad MC17XSG500EK [1] SOIC32 pins 17 mΩ 17 mΩ 17 mΩ 17 mΩ 17 mΩ Yes –40 °C to 125 °exposed pad MC17XSG500BEK SOIC32 pins 17 mΩ 17 mΩ 17 mΩ 17 mΩ 17 mΩ Yes exposed pad MC17XSG500DEK SOIC32 pins 17 mΩ 17 mΩ 17 mΩ 17 mΩ 17 mΩ Yes exposed pad [1] To order parts in tape
in „SPI High side switch mit Output Voltage Monitoring?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014.pdf
, upgrading the performance of such popular devices as the MC1458/ Strain Gauge Signal Conditioners Thermocouple Amplifiers 1558, LM158 and OP-221. The LT1013’s specifications aresimilarto(evensomewhatbetterthan)theLT1014’s. Instrumentation Amplifiers 4mA–20mA
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Dazzle_HW_mb_hsw_ult-3a-reve-0408.pdf
C579 C578 C158 47u/6.3V_8 47u/6.3V_8 1u/6.3V_4 C248 C619 C218 *47u/6.3V_8 *47u/6.3V_8 1u/6.3V_4 +1.05V +V1.05S_AXCK_LCPLL PCH HDA Power 31mA L14 2.2uH/210mA_8 +V1.05DX_MODPHY +V1.05S_AUSB3PLL +V1.05DX_MODPHY +V1.05S_ASATA3PLL 11mA 41mA 42mA A L18 2.2uH/210mA_8 L17 2.2uH/210mA_8 C68 C76 C594 A +3V_S5
in „Notebook Mainboard reparieren Aspire V5-573G, IC iTE IT8587E“ · PC Hard- und Software ·
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PDF
verfahren_zur_darstellung_von_segelflugpolaren.pdf
Umständen auch auf die Durchführbarkeit der Tagesaufgabe haben kann! Im unteren Geschwindigkeitsbereich ( Mc = -1 m/s bis 0 m/s ) der für Endanflüge besonders wichtig ist, fordert dieser Sollfahrtgeber fatalerweise zum schnelleren als nötigen Vorflug auf. Gerade am Ende des Tages ist es jedoch wichtig, bei
in „AVR: Interpolation? Splines?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel-M90E32AS-ApplicationNote.pdf
transmission of address and data bits is from high to low, which means MSB first and LSB last. Note that the M90E32AS read/write only supports single address operation, rather than continuous read or write. The M90E32AS has a special register LastSPIData [78H] for recording the last SPI read/write data. This
in „Wahl eines passenden Mikrocontrollers zur Ansteuerung des M90E32AS Energy Metering IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1819.pdf
C19 10u SMT 25V CDE AFK106M16B12T-F D1 D2 1N4148 DO35 Fairchild 1N4148TR L1 Bead 1t #16 FairRite 284300202 Q1 Q2 VRF2944 M177 Microsemi VRF2944 Q3 MJE182 TO-126 ON Semi MJE182G R1, R6 5k 3339H pot Bourns 3339H-1-502LF R2 2.2 3W
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
FULLTEXT01.pdf
through its adjustable wings [16]. The bias circuit is simulated and results are shown in figure 2.14. m3 freq=2.250GHz impedance = Z0 * (65.057 - j16.437) m2 S(1,1)=0.943 / 177.058 impedance = Z0 * (0.029 + j0.026) m4 freq=6.750GHz ) m2 S(1,1)=0.915 / -8.500 1 m3 impedance = Z0 * (5.968 - j9.S78) m4 freq
in „Buchempfehlung HF-Verstärker gesucht“ · HF, Funk und Felder ·
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PDF
siggen1-F_Fab.pdf
Fiducial n 1R47C2 T C10R115 LGALI-84 711n80003 61 1 CC00 3F6 F 1 1k R24 R48 0 0 R 16 U10 0C TR10uF/35V/0M00R76 6 6n/3nC 100nF R50R R 66nH 6 X 1 n 6 C9H11 C 00VC0 V 10uF/25V/R60310kz110k /CF L1F/ C A 1 09 L11 n15 1 2 2 1 Q100 H C40uF/2RC05413BeadC 60CR M n88 51 VCF1 F3 R56 1 / 2 F R k MC3 0 61R0nF2 0 02 BeadC160
in „KiCAD: durchsuchbarer Bestück-Plan als pdf?“ · Platinen ·
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PDF
mc68hc11a1.pdf
PC3 R T A RxD PD0 P O A2/D2 PC2 P A1/D1 PC1 A0/D0 PC0 R/W STRB AS STRA PARALLEL I/O EQUIVALENT TO MC68HC24 Figure 1 MC68HC11A8 Block Diagram MOTOROLA MC68HC11A8 4 MC68HC11A8TS/D B W I S L / / / / N N N N T R R D D S H L 7 3 6 2 / X T T O O S R R E E E E E S E S M M V V V P P P P 1 7 6 5 4 3 2 5 5 5
in „mc68hc11a1fn-uC-8bit“ · Markt ·
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PDF
33120-90017.pdf
FSK Modulation 16,000 points 35 sec 101 sec 134 sec Frequency Range: 10 mHz to 15 MHz ( 0.05% to 8,192 points 18 sec 52 sec 69 sec 600 Hz, then decreases linearly 4,096 points 10 sec 27 sec 35 sec to 4% at upper limit) Internal Rate: 10 mHz to 50 kHz 2,048 points 6 sec 14
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32H7-Disco_full.PDF
23k3 MEC PI11 D40 D41 D42 MN 33 PI0 IO-4 Gnd P12 GND 1 P3 P1 DSUB-9 IP4220CZ6 P2 D43 D44 22 22 2 PMT0M3 GND GND R172 21k8 23 22 Mounting Hole M3 PA7_Joy_Analog_X MNT 4 1 GND P3 PMT0M3 R173 GND U16 23k3 Mounting Hole M3 ESP-01 +3V3 PU0+3V3 TX PU0 PB7_STM_RxD PB4_ESP_ esPU0Reset RX PU0 PA9_STM_TxD PB5_ESP_EN
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S08DZ60_Data_Sheet.pdf
-Pin LQFP MC9S08DZ60 Series Data Sheet, Rev. 1.0 Draft B 26 PRELIMINARY Freescale Semiconductor NON-DISCLOSURE AGREEMENT REQUIRED Chapter 2 Pins and Connections O - + 6 5 4 M M M D D D A A A 6 / / H L 3 2 1 I I I
in „Bei AD-wandlung Bitsverlust“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1963.pdf
1963 G03 Quiescent Current LT1963-1.5 Output Voltage LT1963-1.8 Output Voltage 1.4 1.54 I = 1mA 1.84 L IL= 1mA 1.2 LT1963-1.5/-1.8/-2.5/-3.3 1.53 1.83 ) m )1.52 )1.82 T 1.0 ( ( E G1.51 E1.81 R 0.8 T A U LT1963 L L C V1.50 V1.80 N 0.6 U T C T1.49 P1.79 E 0.4 U U U O1.48 O1.78 Q V = 6V 0.2 RI= ∞
in „LT1963 puffern 2,5A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
1963 G03 Quiescent Current LT1963-1.5 Output Voltage LT1963-1.8 Output Voltage 1.4 1.54 I = 1mA 1.84 L IL= 1mA 1.2 LT1963-1.5/-1.8/-2.5/-3.3 1.53 1.83 ) m )1.52 )1.82 T 1.0 ( ( E G1.51 E1.81 R 0.8 T A U LT1963 L L C V1.50 V1.80 N 0.6 U T C T1.49 P1.79 E 0.4 U U U O1.48 O1.78 Q V = 6V 0.2 RI= ∞
in „Widerstände für Spannungsregler ergeben nicht gewünschte Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1963es8.pdf
1963 G03 Quiescent Current LT1963-1.5 Output Voltage LT1963-1.8 Output Voltage 1.4 1.54 I = 1mA 1.84 L IL= 1mA 1.2 LT1963-1.5/-1.8/-2.5/-3.3 1.53 1.83 ) m )1.52 )1.82 T 1.0 ( ( E G1.51 E1.81 R 0.8 T A U LT1963 L L C V1.50 V1.80 N 0.6 U T C T1.49 P1.79 E 0.4 U U U O1.48 O1.78 Q V = 6V 0.2 RI= ∞
in „LT1963 SHDN (shutdown) Pin Potenzialfrei ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AMIS-30543-D.pdf
BB Nominal operating supply range 6 30 V V BB BB Total internal current consumptUnloaded outputs 12 mA (Note 6) V DD Regulated Output Voltage LOAD within limits 4.5 5 5.5 V V Regulated Output Voltage in Sle−1 mA ≤ I ≤ 0 mA 4 5.5 V DD_SLP LOAD Mode VBB > 9 V mA INT Internal load current (Note 6) Unloaded
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MyPC_sch.pdf
J1 U$3 7 IS SWE 2 V 3 D1 0.25 6 VCC TC 3 k L2 3 2 1A 1N4004 5 FB GND 4 o 1 +C1 C3 2 c SUPPLY 100u MC34063AD 220pD S 1 0 47u R 6 GND GND 18k GND GND GND R3 + C2 3 2 k D R 1 1000u L g GND GND GND IC3 8 VIN VOUT 1 V 5 78L05SMD GND 100n 2 3 6 7 100n +C21 C19 C18 4,7u GND IC2 LP2985 V . 1 5 3 VIN VOUT . 1 3 ON-OFF DBYPASS 4 5 G 2 5 R 1 3.3V 2 C10 C9 C11 4 En 1u 10n 2,2u L g C14 h R27 D M 2 n 100n N 2 C 1 GND GND GND GND GND 100k G 3 2 IC1 GND IC4 Q 1 D 8 3 5 n N RAM_CS 6 -CS VCC VS_RST 3 RESET XTALO 18 R 1 C 1 G ETH_SCK 5 CLK A 23 XTALI ETH_SI 7 DI Ray 2 VS_CS 13 CS 15 3 -HOLD NArDO
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2222_2222A.pdf
V8E " 2 Vdc, Ie " 0, C ~ 100 kc) 2N2904 thru 2N2907 30 Current Gain - Bandwidth Product I , (Ic " 20 mAde, VCE = 20 Vde, f = 100 me) 2N22IS_19,2NZ:?:2l_22 250 (Ie " 50 mAde, VCE " 20 Vdc, f " 10() mc) 2N2904 thru 2N2907 200 Delay Time 2N2904 tb.ru2N2907 Rise Time 2N2904 thru 2N2907 t, 20 40 Turn-On Time
in „Alternative/Vergleichstyp zu 2N5109“ · HF, Funk und Felder ·
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PDF
ADE7758.pdf
Phase) Phase Error Between Channels Line frequency = 45 Hz to 65 Hz, HPF on PF = 0.8 Capacitive ±0.05 °max Phase lead 37° PF = 0.5 Inductive ±0.05 °max Phase lag 60° AC Power Supply Rejection AVDD = DVDD = 5V + 175 mV rms/120 Hz Output FrequencyVariation 0.01 % typ V1P =V2P =V3P = 100 mV rms DC Power
in „Energy Meter mit ADE7769 - AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Gasturbinen.pdf
vnd C ip J/K Mol für 298 und 600 K Stoff C v(298K) C p(298 K) κ (298 K) N2 20,81 29,12 1,399 O2 21,05 29,39 1,396 H2O 25,25 33,5 1,326 CO 2 28,81 37,5 1,302 Stoff C v(600K) C p(600 K) κ (600 K) N2 21,8 30,1 1,350 O2 23,78 32,1 1,381 H2O 27,98 36,3 1,211 CO 2 39,00 47,3 1,213 ETVT 4 Folie 13 Fakultät
in „Heizungsbrenner mit Stromerzeugung 2 - 3 KW aus Modelbautechnik“ · Haus & Smart Home ·
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PDF
LP2950-D.PDF
Regulation Reg − 0.05 0.20 %/W thermal Output Noise Voltage (10 Hz to 100 kHz) (Note 11) V mVrms n CL= 1.0 mF − 126 − CL= 100 mF − 56 − LP2951A/LP2951AC Only Reference Voltage (T = 25°C) V V A ref LP2951C/LP2951C−XX/NCV2951C
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2950_LP2951.pdf
Regulation Reg − 0.05 0.20 %/W thermal Output Noise Voltage (10 Hz to 100 kHz) (Note 11) V mVrms n CL= 1.0 mF − 126 − CL= 100 mF − 56 − LP2951A/LP2951AC Only Reference Voltage (T = 25°C) V V A ref LP2951C/LP2951C−XX/NCV2951C
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
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PDF
an19fc.pdf
capacitor for instance, might have a guaranteed 0.05 0.01 5 6 ESR of 0.02Ω. For IOUT = 6A, VOUT = 5V, VIN = 24V, V = ( ) ( ) () () = 28.8mV N = 1/3, this gives: P-P ⎛10•10 −6⎞⎛40•10 3⎞ 5 1/3•24 ⎝ ⎠⎝ ⎠( ) 6 VP-P= ⎛ 3⎞⎛ −6⎞⎛ 1 / ( ) ⎞ TOTALLY ISOLATED CONVERTER
in „LT1270 dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3642fc.pdf
Voltage vs Temperature vs Temperature 95 1.30 1.20 FIGURE 11 CIRCUIT SET OPEN V ) 90 D1.25 RISING m1.15 ILOAD = 50mA L ( H M ) 85 E1.20 T1.10 ( H R C ILOAD = 10mA T T E 80 O1.15 -1.05 C A F F ILOAD = 1mA A FALLING S E 75 P1.10 L1.00 O N C E 70 U1.05 N0.95 R I 65 1.00 0.90 10 15 20 25 30 35 40 45 –40
in „Bauteil LDYM N188 817“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD9235.pdf
Full IV 3.29 3.29 3.29 V (IOH = 50 µA) High-Level Output Voltage Full IV 3.25 3.25 3.25 V (IOH = 0.5 mA) Low-Level Output Voltage Full IV 0.2 0.2 0.2 V (IOL = 1.6 mA) Low-Level Output Voltage Full IV 0.05 0.05 0.05 V (IOL = 50 µA) DRVDD = 2.5 V High-Level Output Voltage Full IV 2.49 2.49 2.49 V (IOH = 50 µA) High-Level Output Voltage Full IV 2.45 2.45 2.45 V (IOH = 0.5 mA) Low-Level Output Voltage Full IV 0.2 0.2 0.2 V (IOL = 1.6 mA) Low-Level Output Voltage Full IV 0.05 0.05 0.05 V (IOL = 50 µA) 1Output voltage levels measured with 5 pF load on each output. SWITCHING
in „Einstellen eines ADCs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AoE3_chapter9.pdf
Vout Q Iout Cost +7 to +35V +5V max nom Tol typ max qty 25 unreg in IN OUT out Part #c (V) (V) (±%) (mA) (A) ($US) 78L05 35 5 5 3 0.1 0.29 0.33μF GND 0.1μF 1N5820 78L15 35 15 4 3 0.1 0.31 7805 35 5 4b 5 e 1.0 0.47 7824 40 24 4b 5 1.0 0.49 79L05 –35 –5 5 2 0.1 0.30 7905 79L15 –35 –15 4 2 0.1 0.30 b –7
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1302_2Cells_to_5V_600mA.pdf
C Feedback Pin Bias Current (LT1302) VFB 1V 100 nA Output Sense Voltage (LT1302-5) VC= 0.4V 4.85 5.05 5.25 V Output Ripple Voltage (LT1302-5) VC= 0.4V 50 mV Sense Pin Resistance to Ground (LT1302-5) 420 k VOS Offset Voltage See Block Diagram 15 mV Comparator Hysteresis (Note 1) 5 mV Oscillator Frequency
in „Welcher DC-DC-Converter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1302-1605370.pdf
C Feedback Pin Bias Current (LT1302) VFB 1V 100 nA Output Sense Voltage (LT1302-5) VC= 0.4V 4.85 5.05 5.25 V Output Ripple Voltage (LT1302-5) VC= 0.4V 50 mV Sense Pin Resistance to Ground (LT1302-5) 420 k VOS Offset Voltage See Block Diagram 15 mV Comparator Hysteresis (Note 1) 5 mV Oscillator Frequency
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
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PDF
lt1302.pdf
C Feedback Pin Bias Current (LT1302) VFB 1V 100 nA Output Sense Voltage (LT1302-5) VC= 0.4V 4.85 5.05 5.25 V Output Ripple Voltage (LT1302-5) VC= 0.4V 50 mV Sense Pin Resistance to Ground (LT1302-5) 420 k VOS Offset Voltage See Block Diagram 15 mV Comparator Hysteresis (Note 1) 5 mV Oscillator Frequency
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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Datei
hwinfop14s.txt
=1 E: MEI_CL_UUID=309dcde8-ccb1-4062-8f78-600115a34327 E: MEI_CL_NAME= E: MODALIAS=mei::309dcde8-ccb1-4062-8f78-600115a34327:01: P: /devices/pci0000:00/0000:00:16.0/0000:00:16.0-3c4852d6-d47b-4f46-b05e-b5edc1aa440e M: 0000:00:16.0-3c4852d6-d47b
in „Lenovo Thinkpad P14s (Intel) freeze beim Steckerziehen“ · PC Hard- und Software ·
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PDF
dac8512.pdf
, the full- 5k +15V scale output current is 1 mA which is given by the following 7 0.1 F equation: 17 6 DW ×4.095V 18 IOUT = 12 RCS R1 100 R1 10 where DW = DAC8512’s binary digital input code. 100k AMP05 8 0mA IOUT 10mA 9 2.4 A/ BIT +5V 1 0.1 F 11
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Dissertation.pdf
(y = 0,046x + 0,1259, R 2 = 0,9951). UV [J/m ] MW Abs. SD Proteingehalt [µg/mL] OD 6000,05 0 0,1875 0,002 133,91 100 0,179 0,003 115,43 200 0,1815 0,004 120,87 300 0,1845 0,001 127,39 400 0,181 0,004 119,78 500 0,179 0,008 115,43 600 0,183 0,004
in „UVC Wasserentkeimung mit Led?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ledctl.asm
;------------------------------------------------------------------------------- ; (c) 2006 MrMcCrash - mrmccrash A T gmail D O T com ; Ich uebernehme keine Haftung fuer Schaeden oder Folgeschaeden, die aus der ; Benutzung dieses Codes entstehen! ;------------------------------------------------
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PDF
GL9540_ServiceManual.pdf
frontend or the AÆ section. The forrowing pno'cedure shourd be carried out. 4-r0 u16 Pinll cLocK I 93mS l.OmS 434 Hz l6¡.S l6¡,S u16 PinlO cLocK 2 .96 mS l.OmS l6¡rS l6¡.S uts PIN IO l.O mS .96mS cLocK 3 l6¡rS l6¡.S ut5 PIN II .93 mS cLOcK 4 t.96 Ffg. 4-2 cLK I, CLK 2, CLK 3, CLK 4. A¡,fPLIT'I]t5 V 4-
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PDF
AN758.pdf
Figure 1 shows the bias voltage source employed with The recommended collector idling currents are 40 mA and each of the 300 W modules and the preamplifier. Its basic 150 mA respectively. Both devices can be operated in Class components are the integrated circuit voltage regulator A, although not specified
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
_Motorola_AN758.pdf
Figure 1 shows the bias voltage source employed with The recommended collector idling currents are 40 mA and each of the 300 W modules and the preamplifier. Its basic 150 mA respectively. Both devices can be operated in Class components are the integrated circuit voltage regulator A, although not specified
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PDF
MPX4250_AN1646.pdf
samples will clean up most of the noise. A 10 sample 2 results in a noise output on the order of 1 mV peak to peak. average reduces the noise to about 2.5 mV peak to peak and Another important consideration is that the incremental ef- a 64 sample average reduces the noise to about 1 mV peak fectiveness
in „ADC springt“ · Mikrocontroller und Digitale Elektronik ·