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PDF
CYStech_MTB06N03H8.pdf
Min. Max. Min. Max. Min. Max. A 0.1890 0.1969 4.80 5.00 I 0.0161 0.0240 0.41 0.61 B 0.2244 0.2283 5.70 5.80 J 0.1331 0.1488 3.38 3.78 C 0.2323 0.2402 5.90 6.10 K 0.0433 - 1.10 - D 0.0130 0.0201 0.33 0.51 L 0.0201 0.0280 0.51 0.71 E 0.0500* 1.27* M - - 0° 12° F 0.0354 0.0472 0.90 1.20 G 0.0067 0.0118 0.17
in „[S] CYStech MOSFETs“ · Markt ·
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PDF
mctds-08.pdf
cycles per switch. Operation Force : 1000gf maximum. Stroke : 1.0mm. Operation Temperature : -20°C to +70°C. Storage Temperature : -40°C to +85°C. Vibration Test : MIL-STD-202F METHOD 201A. Frequency : 10 - 55 - 10Hz/1 minute. Directions : X, Y, Z, three mutually perpendicular directions. Time : 2 hours
in „Neue Bauteile: vom Tristate-DIP-Schalter bis zum umgedrehten Taster“ · Mikrocontroller und Digitale Elektronik ·
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MR851-G.pdf
Reverse Voltage VRWM 50 100 200 400 600 800 V DC Blocking Voltage VR RMS Reverse Voltage VR(RMS) 35 70 140 280 420 560 V Average Rectified Output Current@T L 75°C IO 3.0 A Non-Repetitive Peak Forward Surge Current 8.3ms Single half sine-wave superimposed on IFSM 150 A rated load (JEDEC Method) Forward
in „LTspice Diode Kenngrößen verändern (average forward current, breakdown voltage)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SchreibtischSteuerung_Rev1.1.pdf
Frequenz Rechteck IRFZ34 MSTBV4 C X1-2 2 +15V C +5V white B1 AC1 GND +5V GND GND PJ16B6 - + D8 R5 BAS70-05 100k R1 GND 220 white AC2 3 F2 X1-3 750mA + +C5 R4 + C4 4k7 D5 C3 1000µ/25V 4µ7/100V ZF5,1 100µ/10V GND GND GND GND GND Trafo Toroid International IP00 TR1 Transf.No. TI-004005 Rev H DIN VDE 61558
in „Steuerung für höhenverstellbaren Schreibtisch“ · Projekte & Code ·
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PDF
SchreibtischSteuerung_Rev1.1.pdf
Frequenz Rechteck IRFZ34 MSTBV4 C X1-2 2 +15V C +5V white B1 AC1 GND +5V GND GND PJ16B6 - + D8 R5 BAS70-05 100k R1 GND 220 white AC2 3 F2 X1-3 750mA + +C5 R4 + C4 4k7 D5 C3 1000µ/25V 4µ7/100V ZF5,1 100µ/10V GND GND GND GND GND Trafo Toroid International IP00 TR1 Transf.No. TI-004005 Rev H DIN VDE 61558
in „Höhenversllbarer Schreibtisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTV817.pdf
Parameter Symbol Rating Unit Forward Current I 50 mA Input Reverse Voltage VR 6 V Power Dissipation P 70 mW Collector-Emitter Voltage VCEO 35 V Emitter-Collector Voltage VECO 6 V Output Collector Current IC 50 mA Collector Power Dissipation PC 150 mW Total Power Dissipation Ptot 200 mW Operating Temperature
in „Vorwiderstand Optokoppler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DSAUD0065719.pdf
Leakage: Slight sensitivity to visible light leaking through the s i 60 glass-to-metal seal on the base may be observed. Optical Design: Use of a detector with a filter in an optical system s 40 n may require consideration of the image displacement toward the filter. r 20 This displacement (s) caused
in „Eltec 1592 Sensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm2731.pdf
13. Efficiency vs Load Current - X Option Figure 14. Efficiency vs Load Current - X Option 80 100 70 90 80 60 % 70 ) 50 ( ( C 60 C N I 40 I 50 I I E 30 F 40 E 30 20 20 10 10 0 0 10 20 30 40 50 0 0 100 200 300 400 500 600 LOAD (mA) LOAD (mA) VIN = 2.7 V V OUT = 12 V VIN = 5 V V OUT = 12 V Figure 15.
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (8€)“ · Markt ·
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PDF
lm2731.pdf
13. Efficiency vs Load Current - X Option Figure 14. Efficiency vs Load Current - X Option 80 100 70 90 80 60 % 70 ) 50 ( ( C 60 C N I 40 I 50 I I E 30 F 40 E 30 20 20 10 10 0 0 10 20 30 40 50 0 0 100 200 300 400 500 600 LOAD (mA) LOAD (mA) VIN = 2.7 V V OUT = 12 V VIN = 5 V V OUT = 12 V Figure 15.
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (15€)“ · Markt ·
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Datei
errorlog.txt
org.eclipse.cdt.internal.core.model.Parent.getChildren(Parent.java:55) at org.eclipse.cdt.internal.ui.BaseCElementContentProvider.getSourceRoots(BaseCElementContentProvider.java:346) at org.eclipse.cdt.internal.ui.BaseCElementContentProvider.getChildren(BaseCElementContentProvider.java:182) at org.eclipse.cdt.internal.ui.cview.CViewContentProvider.getChildren
in „AVR Eclipse Plugin 2.3“ · Mikrocontroller und Digitale Elektronik ·
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Datei
miclog.txt
m_chipInfo.dieIDAddr=0x67f0 m_chipInfo.stackTop=0x7ff m_chipInfo.stackBottom=0x600 m_chipInfo.core=0x3 dmCellNb=1 baseAddress[0]=0x7f90 m_systVectors.ramTblBaseAddr=0x0 m_systVectors.resetVectAddr=0x8000 m_FCR2_Address=0x505b m_IAPSR_Address=0x505f m_TMU_Ctrl_Address=0x5808 m_mappedRegAddr=0x7f00 m_swimMonitorAddr=0x0
in „STM8S-Testboard“ · Mikrocontroller und Digitale Elektronik ·
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RDA5851S.pdf
...................................................................................................70 G. Ball Out .........................................................................................................................................................71 H. Glossary ...................
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89C51RD2.pdf
PART ORDER AND PACKAGE MODE MODE NUMBER PART MARKING 1 P89C51RB2HBP P89C51RB2BP 16 kB 512 B 0 to +70, PDIP 4.5–5.5 V 0 to 20 MHz 0 to 33 MHz SOT129-1 2 P89C51RB2HFP P89C51RB2FP 16 kB 512 B –40 to +85, PDIP 4.5–5.5 V 0 to 20 MHz 0 to 33 MHz SOT129-1 3 P89C51RB2HBA P89C51RB2BA 16 kB 512 B 0 to +70, PLCC
in „P89C51RC2 12Clock mod“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP300L.PDF
. The internal resistince, R is simply (W) (kW) calculated usininI = 0.26 mA at 2.6 V. ÁÁÁÁÁÁÁÁÁÁ2.70ÁÁ 2.84 0.135 0 − V increasing: ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2.87 0.17 100 10 2.70 2.88 0.18 100 6.8 ǒ RH Ǔ ǒ Ǔ ÁÁÁÁÁÁÁÁÁÁ2.70ÁÁ 2.91 0.21 100 4.3 V th R ) 1 VDET* 2.70 2.90 0.20 220 10 in ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2.70 2.94 0.24 220 6.8 V inIncreasing: ÁÁÁÁÁÁÁÁÁÁ2.70ÁÁ 2.98 0.28 220 4.3 ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 2.97 0.27 470 10 R H ǒ Ǔ 2.70 3.04 0.34 470 6.8 V th ǒR ø R ) 1 Ǔ VDET* ) V HYS ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ in L 2.70 3.15 0.45 470 4.3 ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ V HYS = V increasing
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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stgp10nc60kd.pdf
DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A 4.40 4.60 0.173 0.181 b 0.61 0.88 0.024 0.034 b1 1.15 1.70 0.045 0.066 c 0.49 0.70 0.019 0.027 D 15.25 15.75 0.60 0.620 E 10 10.40 0.393 0.409 e 2.40 2.70 0.094 0.106 e1 4.95 5.15 0.194 0.202 F 1.23 1.32 0.048 0.052 H1 6.20 6.60 0.244 0.256 J1 2.40 2.72 0.094
in „IGBT mit und ohne Reverse-Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn65240_USB_TVS.pdf
85°C A65240 SN65240PW (Rail) TSSOP−8 PW SN65240PWR (Reel) DIP−8 P SN75240P (Rail) SN75240 2 0°C to 70°C TSSOP−8 PW A75240 SN75240PW (Rail) SN75240PWR (Reel) ABSOLUTE MAXIMUM RATINGS over operating free-air temperature range unless otherwise noted UNIT Continuous power dissipation See Dissipation Rating
in „sn65240 USB TVS Diode. Paralell schalten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
chargepump.pdf
REG710-5V, REG71050) 90 90 REG710-5, REG71050 REG71055 VIN 2.7V 80 80 VIN 3V REG710-3.3 V = 3.3V ) 70 ) 70 IN ( REG710-3 ( V = 3.6V y y IN n 60 n 60 c c VIN 4.2V f f E 50 E 50 REG710-2.5 VIN V OUT 40 REG710-2.7 40 30 30 0.1 1 10 100 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 VINV) Load Current (mA) Figure 1
in „chargepump enable eingang“ · Analoge Elektronik und Schaltungstechnik ·
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gravity_g.pdf
88,0x70,0x00,0xF8,0x08,0x08,0x10,0x20,0x40,0x80,0x00,0x70,0x88,0x88,0x70,0x88,0x88,0x70,0x00,0x70,0x88,0x88,0x78,0x08,0x10,0xE0,0x00,0x00,0x00,0x20,0x00,0x20,0x00,0x00,0x00,0x00,0x00,0x20,0x00,0x20,0x20,0x40,0x00,0x08,0x10,0x20,0x40,0x20
in „Microchip springt auf den Arduino Zug auf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA186.pdf
nominal Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm) INA186A1IDCKR SC70 DCK 6 3000 180.0 180.0 18.0 INA186A1IDCKT SC70 DCK 6 250 180.0 180.0 18.0 INA186A1IDDFR SOT-23-THIN DDF 8 3000 210.0 185.0 35.0 INA186A1IYFDR DSBGA YFD 6 3000 220.0 220.0 35.0 INA186A2IDCKR SC70 DCK
in „INA186 Noise Problem“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
messages.txt
hwrng registered Apr 25 17:36:49 raspberrypi kernel: [ 0.275896] vc-mem: phys_addr:0x00000000 mem_base=0x3ec00000 mem_size:0x40000000(1024 MiB) Apr 25 17:36:49 raspberrypi kernel: [ 0.276404] vc-sm: Videocore shared memory driver Apr 25 17:36:49 raspberrypi kernel: [ 0.291370] brd: module loaded Apr
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Datei
FT800_commands.c
ft800_write_string(text); ft800_cs_clear(); } #ifdef FT_81X_ENABLE void ft800_cmd_setbase(uint32_t base) { ft800_start_cmd(CMD_SETBASE); spi_transmit((uint8_t)(base)); /* send data low byte */ spi_transmit((uint8_t)(base >> 8)); spi_transmit((uint8_t)(base >> 16)); spi_transmit((uint8_t)(base >> 24));
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Datei
NTC.html
material-components-web * https://material-components-web.appspot.com/elevation.html */ --jp-shadow-base-lightness: 0; --jp-shadow-umbra-color: rgba( var(--jp-shadow-base-lightness), var(--jp-shadow-base-lightness), var(--jp-shadow-base-lightness), 0.2 ); --jp-shadow-penumbra-color: rgba( var(--jp-shadow-base-lightness), var(--jp-shadow-base-lightness), var(--jp-shadow-base-lightness), 0.14 ); --jp-shadow-ambient-color: rgba( var(--jp-shadow-base-lightness), var(--jp-shadow-base-lightness), var(--jp-shadow-base-lightness), 0.12 ); --jp-elevation-z0
in „NTC auto kalibrierung - Matheformel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serwaageDocPlusDisp.asm
----------------------- ;Bits: ; USE: ; Public: no ; Private: no ; BASE: ; Public: no ; Private: no ; no ;------------------------------------------------------------------------------ ;---------------|---------------|---------------|------------------------------ ;****
in „Küchenwaage mit seriellem Port?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325.pdf
G1 ~ G320 as follows GON DTE G1 ~G320 Gate Output 0 0 VGH 0 1 VGH 1 0 VGL 1 1 Normal Display BASEE Base image display enable bit. When BASEE = “0”, no base image is displayed. The ILI9325 drives liquid crystal at non-lit display level or displays only partial images. When BASEE = “1”, the base image is
in „Programmierung von ILI9325 TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325DS_V0.28.pdf
G1 ~ G320 as follows GON DTE G1 ~G320 Gate Output 0 0 VGH 0 1 VGH 1 0 VGL 1 1 Normal Display BASEE Base image display enable bit. When BASEE = “0”, no base image is displayed. The ILI9325 drives liquid crystal at non-lit display level or displays only partial images. When BASEE = “1”, the base image is
in „Chinesisches TFT LCD zum Schnäppchenpreis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206.pdf
-55⋅C to +12⋅C XR-2206P 16 Lead 300 Mil PDIP –40 C to +85⋅C XR-2206CP 16 Lead 300 Mil PDIP 0 C to +70C XR-2206D 16 Lead 300 Mil JEDEC SOIC 0 C to +70C Rev. 1.03 ▯1972 EXAR Corporation, 48720 Kato Road, Fremont, CA 94538 ▯ (510) 668-7000 ▯ (510) 668-7017 1 XR-2206 VCC GND BIAS 12 4 10 11 SYNCO TC1 5 Timing
in „Funktionsgenerator mit XR2206“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XR2206.pdf
-55⋅C to +12⋅C XR-2206P 16 Lead 300 Mil PDIP –40 C to +85⋅C XR-2206CP 16 Lead 300 Mil PDIP 0 C to +70C XR-2206D 16 Lead 300 Mil JEDEC SOIC 0 C to +70C Rev. 1.03 ▯1972 EXAR Corporation, 48720 Kato Road, Fremont, CA 94538 ▯ (510) 668-7000 ▯ (510) 668-7017 1 XR-2206 VCC GND BIAS 12 4 10 11 SYNCO TC1 5 Timing
in „XR2206 Sinus Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
-55⋅C to +12⋅C XR-2206P 16 Lead 300 Mil PDIP –40 C to +85⋅C XR-2206CP 16 Lead 300 Mil PDIP 0 C to +70C XR-2206D 16 Lead 300 Mil JEDEC SOIC 0 C to +70C Rev. 1.03 ▯1972 EXAR Corporation, 48720 Kato Road, Fremont, CA 94538 ▯ (510) 668-7000 ▯ (510) 668-7017 1 XR-2206 VCC GND BIAS 12 4 10 11 SYNCO TC1 5 Timing
in „Funktionsgenerator XR2206; Tastverhältins des Rechtecksignals ändern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
-55⋅C to +12⋅C XR-2206P 16 Lead 300 Mil PDIP –40 C to +85⋅C XR-2206CP 16 Lead 300 Mil PDIP 0 C to +70C XR-2206D 16 Lead 300 Mil JEDEC SOIC 0 C to +70C Rev. 1.03 ▯1972 EXAR Corporation, 48720 Kato Road, Fremont, CA 94538 ▯ (510) 668-7000 ▯ (510) 668-7017 1 XR-2206 VCC GND BIAS 12 4 10 11 SYNCO TC1 5 Timing
in „Signalgenerator XR2206 Spanungsgesteuerte Amplitudenverstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206CP.pdf
-55⋅C to +12⋅C XR-2206P 16 Lead 300 Mil PDIP –40 C to +85⋅C XR-2206CP 16 Lead 300 Mil PDIP 0 C to +70C XR-2206D 16 Lead 300 Mil JEDEC SOIC 0 C to +70C Rev. 1.03 ▯1972 EXAR Corporation, 48720 Kato Road, Fremont, CA 94538 ▯ (510) 668-7000 ▯ (510) 668-7017 1 XR-2206 VCC GND BIAS 12 4 10 11 SYNCO TC1 5 Timing
in „XR2206 - split supply“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
-55⋅C to +12⋅C XR-2206P 16 Lead 300 Mil PDIP –40 C to +85⋅C XR-2206CP 16 Lead 300 Mil PDIP 0 C to +70C XR-2206D 16 Lead 300 Mil JEDEC SOIC 0 C to +70C Rev. 1.03 ▯1972 EXAR Corporation, 48720 Kato Road, Fremont, CA 94538 ▯ (510) 668-7000 ▯ (510) 668-7017 1 XR-2206 VCC GND BIAS 12 4 10 11 SYNCO TC1 5 Timing
in „Sinusfrequenz mittels Gleichspannung einstellen XR2206“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_XR2206.pdf
-55⋅C to +12⋅C XR-2206P 16 Lead 300 Mil PDIP –40 C to +85⋅C XR-2206CP 16 Lead 300 Mil PDIP 0 C to +70C XR-2206D 16 Lead 300 Mil JEDEC SOIC 0 C to +70C Rev. 1.03 ▯1972 EXAR Corporation, 48720 Kato Road, Fremont, CA 94538 ▯ (510) 668-7000 ▯ (510) 668-7017 1 XR-2206 VCC GND BIAS 12 4 10 11 SYNCO TC1 5 Timing
in „Funktionsgenerator mit XR2206 - Ausgangssignale sind unsauber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL783CKC.pdf
OUT terminal is in electrical D 0.001%/V Typical Input Voltage Regulation contact with the mounting base. D 76-dB Typical Ripple Rejectionegulation TO-220AB D Standard TO-220AB Package IO A description high-voltage regulator with an output range of capable of sourcing more than 700 mA. It isr e performance
in „Wie im Bereich von 1,2Vdc - 117Vdc einstellbare Konstantspannung aus 20Vdc erzeugen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PMT_handbook_v4E.pdf
channel of 6 millimeters square while scanning the light spot every 0.1 millimeters. 100 90 T U 80 T 70 U O 60 E 50 I 40 A L 30 80 R 20 70 10 60 0 50 0 10 40 20 mm 30 30 40 20 mm 50 60 10 70 80 0 THBV4_0910EA Figure 9-10: Anode output uniformity within one channel (typical example) THBV4_0910EA 196 CHAPTER
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads5240.pdf
fIN= 1MHz 87 dBc HD 3rd-Order Harmonic Distortion f = 5MHz 78 85 dBc 3 IN IN= 10MHz 85 dBc fIN= 1MHz 70.5 dBFS SNR Signal-to-Noise Ratio fIN= 5MHz 68 70.5 dBFS IN= 10MHz 70 dBFS fIN= 1MHz 70 dBFS SINAD Signal-to-Noise and Distortion fIN= 5MHz 67 70 dBFS f = 10MHz 69.5 dBFS IN f1= 9.5MHz at -7dBFS dBc IMD
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC1377.pdf
ORDERING INFORMATION Operating Device Temperature Range Package MC1377DW SO–20L MC1377P TA= 0⋅ to +70⋅C Plastic DIP Figure 1. Representative Block Diagram Quad Decoup VCC VB 19 14 16 18 Oscout Voltage PAL Oscillator Controlled 8.2V Switch Chroma 13 17 Buffer 90⋅ Regulator 0/180⋅ Amp ChromaOut Oscin 90
in „Phasenverschiebung -90 bis -180° erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC1377.PDF
ORDERING INFORMATION Operating Device Temperature Range Package MC1377DW SO–20L MC1377P TA= 0⋅ to +70⋅C Plastic DIP Figure 1. Representative Block Diagram Quad Decoup VCC VB 19 14 16 18 Oscout Voltage PAL Oscillator Controlled 8.2V Switch Chroma 13 17 Buffer 90⋅ Regulator 0/180⋅ Amp ChromaOut Oscin 90
in „Problem beim FBAS Signal am Amiga 500“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps65131.pdf
100 95 95 90 O = 100 mA 90 85 IO= 50 mA 85 I = 50 mA O = 100 mA % % O − 80 − 80 c c e 75 e 75 c c f 70 IO= 5 mA f 70 E E IO= 5 mA 65 65 60 60 55 VPOS = 12 V 55 V NEG= −4 V In Power−Save Mode In Power−Save Mode 50 50 2.5 2.9 3.3 3.7 4.1 4.5 4.9 5.3 2.5 2.9 3.3 3.7 4.1 4.5 4.9 5.3 VI− Input Voltage − V
in „OLED Sammelbestellung“ · Markt ·
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PDF
DCDC-Konverter.pdf
100 95 95 90 O = 100 mA 90 85 IO= 50 mA 85 I = 50 mA O = 100 mA % % O − 80 − 80 c c e 75 e 75 c c f 70 IO= 5 mA f 70 E E IO= 5 mA 65 65 60 60 55 VPOS = 12 V 55 V NEG= −4 V In Power−Save Mode In Power−Save Mode 50 50 2.5 2.9 3.3 3.7 4.1 4.5 4.9 5.3 2.5 2.9 3.3 3.7 4.1 4.5 4.9 5.3 VI− Input Voltage − V
in „DC-DC-Konverter Tps65131 Funktionalität“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SGST-S-A0003208530-1.pdf
Table 30: TO-220 (dual gauge) mechanical data mm Dim. Min. Typ. Max. A 4.40 4.60 b 0.61 0.88 b1 1.14 1.70 c 0.48 0.70 D 15.25 15.75 D1 1.27 E 10 10.40 e 2.40 2.70 e1 4.95 5.15 F 1.23 1.32 H1 6.20 6.60 J1 2.40 2.72 L 13 14 L1 3.50 3.93 L20 16.40 L30 28.90 ∅P 3.75 3.85 Q 2.65 2.95 DocID2574 Rev 31 39/53 Package
in „[V] 27Stück Positiv Low Drop Spannungsregler, SMD, 3.3 V LF33CPT PPAK 5Pin“ · Markt ·
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PDF
en.CD00000546.pdf
Table 30: TO-220 (dual gauge) mechanical data mm Dim. Min. Typ. Max. A 4.40 4.60 b 0.61 0.88 b1 1.14 1.70 c 0.48 0.70 D 15.25 15.75 D1 1.27 E 10 10.40 e 2.40 2.70 e1 4.95 5.15 F 1.23 1.32 H1 6.20 6.60 J1 2.40 2.72 L 13 14 L1 3.50 3.93 L20 16.40 L30 28.90 ∅P 3.75 3.85 Q 2.65 2.95 DocID2574 Rev 31 39/53 Package
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PDF
TRC103_Transceiver_RFM_121129.pdf
receiver chain. The main blocks include: A digital waveform generator that provides the I and Q base-band signals. This block includes digital-to- analog converters and anti-aliasing low-pass filters. A compound image-rejection mixer to up convert the base-band signal to the first IF at 1/9th of
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PDF
ths4509.pdf
100 MHz –68 f = 10 MHz –108 C 3rd-order harmonic distortion f = 50 MHz –92 dBc f = 100 MHz –81 C = 70 MHz –78 2nd-order intermodulation distortion 200 kHz Tone spacing, C = 140 MHz –64 RL= 499 Ω dBc 3rd-order intermodulation distortion C = 70 MHz –95 f = 140 MHz –78 C C = 70 MHz 78 2nd-order output intercept
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SH7709.pdf
TLB miss exceptions is H'00000100. The interrupt vector address offset is H'00000600. The vector base address is loaded into the vector base register (VBR) by software. The vector base address should reside in P1 or P2 fixed physical address space. Figure 4.1 shows the relationship between the vector base address, the vector offset, and the vector table. VBR + Vector offset (Vector base address) H'A000 0000 Vector table Figure 4.1 Vector Table In table 4.2, exceptions and their vector addresses are listed
in „HD6417709A F133B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1010.pdf
SCI. At this point, it is necessary to initiate the PC S record downloader program, called EELOAD.BAS (written in BASIC). It will display a header message and prompt the user for the number of the COM channel (either one or two) which is connected to the M68HC11. A listing of EELOAD.BAS is given at
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0fr3wdgekryxzkwteer8ge0a7f7y.pdf
C stg TL Lead solder temperature (10 second duration) 260 °C T op Operating temperature range 0 to 70 °C P r Power rating per resistor 100 mW TECHNICAL INFORMATION Fig. A1: USB Standard requirements 3.3V 1.5k Rt D+ D+ Rt Full-speed or Full-speed USB Low-speed USB Ct Twisted pair shielded Ct Transceiver
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PDF
Data_and_signal_line_chokes_Epcos.pdf
problems can be significantly reduced. Applications ■ Automotive applications, e.g. CAN bus Terminals ■ Base material CuSn6 ■ Layer composition Ni, Ag, Au ■ Electro-plated Marking ■ Marking on component: Manufacturer, bifilar or sector winding (coded), L value (nH, coded), date of manufacture (YWWD) ■ Minimum
in „Welche Gleichtaktdrossel für CAN bus?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup_same70q21.c
/** * \file * * \brief GCC startup file for ATSAME70Q21 * * Copyright (c) 2018 Atmel Corporation, a wholly owned subsidiary of Microchip Technology Inc. * * \license_start * * \page License * * Licensed under the Apache License, Version 2.0 (the "License
in „SAM Atmelstudio7 Interupts ohne ASF“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PiezoBasics.pdf
on the feedback line. A simple way to use feedback is to have the feedback line connected to the base of a transistor. As the piezo element oscillates, the feedback signal will oscillate and the transistor will alternately block or allow current to flow. The feedback line provides a voltage that is
in „Fluke 867B ungewöhnliches Problem.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5620CN_DIP14.pdf
functions in space-critical applications. The TLC5620C is characterized for operation from 0°C to 70°C. The TLC5620I is characterized for operation from –40°C to 85°C. The TLC5620C and TLC5620I do not require external trimming. AVAILABLE OPTIONS PACKAGE SMALL OUTLINE PLASTIC DIP TA (D) (N) 0°C to 70
in „Wie verhält sich der DAC am SPI-Bus (TLC5620)“ · Mikrocontroller und Digitale Elektronik ·