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vl53l0x_VL53L0X.pdf
API_RangeValue(mm) vs. ActualTarget Distance(mm) Reflectance 1200 grey17 white88 1100 1000 900 800 700 600 500 400 300 200 100 0 0 100 200 300 400 500 600 700 800 900 1000 1100 1200 Actual Target Distance (mm) DocID029104 Rev 3 25/40 37 Performance VL53L0X Figure 21. Typical ranging - long range mode
in „Distanzmessung mit dem Pi auf 1mm genau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cmx602b_3_.pdf
Absolute Maximum Ratings Exceeding these maximum ratings can result in damage to the device. Min. Max. Units Supply (VDD - VSS) -0.3 7.0 V Voltage on any pin toSS -0.3 VDD + 0.3 V Current into or out oDDVand VSS pins -30 +30 mA Current into or out of any other pin -20 +20 mA D4 / P3 Packages Min. Max
in „EM92547 Caller ID FSK Decoder, Rufnummernanzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1045-D.pdf
p ) T * T + (66.7 W) (30⋅CńW) + 2000⋅C Worst case becomes: CSS A and DRM (T1) = 0;DRM (T2) = Spec. max. value and L = Spec. Max. Value R(ton) + R (3 s) + (40⋅C measured rise)ń2000+0.02 Figure 6.7. Maximum Allowed Resistor for Static From equation (5.4) and (5.1): Voltage Sharing http://onsemi.com 6 AN1045
in „Zwei Triacs in Reihe - warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt__CMX602B_ds-1627030.pdf
Absolute Maximum Ratings Exceeding these maximum ratings can result in damage to the device. Min. Max. Units Supply (VDD - VSS) -0.3 7.0 V Voltage on any pin toSS -0.3 VDD + 0.3 V Current into or out oDDVand VSS pins -30 +30 mA Current into or out of any other pin -20 +20 mA D4 / P3 Packages Min. Max
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PDF
4088fb.pdf
synchronous 4088fb 16 LTC4088 Applications Information Table 3. Recommended Inductors for the LTC4088 L MAX IDC MAX DCR SIZE IN mm INDUCTOR TYPE (µH) (A) (Ω) (L × W× H) MANUFACTURER LPS4018 3.3 2.2 0.08 3.9 × 3.9 × 1.7 Coilcraft www.coilcraft.com D53LC 3.3 2.26 0.034 5 × 5 × 3 Toko DB318C 3.3 1.55 0.070 3.8
in „[EAGLE Anfänger] Package finden oder herstellen“ · Platinen ·
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PDF
VIPower_30W.pdf
voltage 1 6,5 V±3% at 2.5 A Output voltage 2 10 V±8% at 1.5 A Standby consumption <1 W Efficiency >80% Max working ambient temperature 60°C 5/13 Standby AN1513 2 Standby The first test performed is the measure of the power consumption during standby operation mode as the main target of this application is
in „Schaltnetzteil - Viper50A-E 45W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
QT110_Touch_Sensor.pdf
3.5 4 4.5 5 Cs, nF Vss, Volts - 11 - Package type: 8pin Dual-In-Line Millimeters Inches SYMBOL Min Max Notes Min Max Notes a 6.096 7.112 0.24 0.28 A 7.62 8.255 0.3 0.325 M 9.017 10.922 Typical 0.355 0.43 Typical m 7.62 7.62 BSC 0.3 0.3 BSC Q 0.889 - 0.035 - P 0.254 - 0.01 - L 0.355 0.559 0.014 0.022
in „"Toch" Lampe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ED2015-0544_UM_9_Syn48E_battery_rev1.pdf
Diagnostic bus Power supply: 24V bus +BATT -BATT BMM Module supply : 5V Module: 14 cells in series (54V max) Module: 14 cells in series (54V max) Module: 14 cells in series (54V max) Module: 14 cells in series (54V max) 9 modules in series Module: 14 cells in series (54V max) Module: 14 cells in series (54V max) Module: 14 cells in series (54V max) Module: 14 cells in series (54V max) Module: 14 cells in series (54V max) Figure 5: Battery synoptic 13/45 3.2.Battery system Li-ion battery is made of: An assembly
in „CAN OPEN CiA Draft Standard 301“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS8816A-05.pdf
ambient temperatures. The maximum power dissipation can be calculated using the following formula : P D(MAX)= (TJ(MAX)T A / θJA whereT J(MAX)is the maximum junction temperature,T As theambienttemperature,andθ isthejunction-to-ambient JA thermal resistance. Forcontinuousoperation,themaximumoperatingjunction
in „Spule auf Synchronwandler wird innerhalb sekunden brennend heiß“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3756.pdf
1.5A, 36V, 2MHz High Current LED Driver V IN: 2.8V to 16V, OUT(MAX) = 36V, True Color PWMDimming = 1000:1, with 1000:1 Dimming ISD < 10μA, 5mm× 7mmQFN Package LT3477 3A, 42V, 3MHz Boost, Buck-Boost, Buck LED Driver VIN: 2.5V to 25V, OUT(MAX) = 40V, Dimming = Analog
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PDF
fs18hd.pdf
Internal slope. in_par_03 none Time constant of the internal bath. in_par_04 none Bandwidth limit (max. difference between the temperatures in the internal bath and external system). in_par_05 none Ratio for max. cooling capacity versus max. heating capacity. in_par_06 none Xp control parameter of the
in „Kältekreislauf, komischer Regeleffekt?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
SAM-LS_Data_Sheet_GPS.G3-SA-03002_.pdf
Parameter Specification Receiver!Type! ! L1!frequency,!C/A!Code,!! 16-Channels! 8192!search!bins! Max!Update!Rate! ! 4!Hz! Accuracy! Position! 2.5!m!CEP 3! 5.0!m!SEP !4 (Selective!Availabilit!!off) Position!DGPS!/!SBAS ! 2 2.0!m!CEP! 3.0!m!SEP! Acquisition !5 ! Fast!Acquisition! Normal! High!Sensitivity
in „NMEA - Protokoll / UBLOX SAM - LS / ATMEGA 16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC2945.pdf
(4) *Set Bit A4 before writing to ADC and MIN/MAX ADC Registers Table 8. ADC, ADC MIN/MAX, MIN/MAX THRESHOLD Register Data Format: LSB Bytes-Read/Write* BIT (7) BIT (6) BIT (5) BIT (4) BIT (3) BIT (2) BIT (1) BIT (0) Data (3) Data (2) Data (1) Data (0) Reserved** Reserved** Reserved** Reserved** * Set Bit A4 before writing to ADC and MIN/MAX ADC Registers ** Read as ‘0’ Table 9. POWER, MIN/MAX POWER, MIN/MAX POWER THRESHOLD Register Data Format: MSB2 Bytes- Read/Write* BIT (7) BIT (6) BIT (5) BIT (4) BIT (3) BIT (2) BIT (1) BIT (0) Data
in „U/I/P Metrer für Netzteile“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2945f.pdf
(4) *Set Bit A4 before writing to ADC and MIN/MAX ADC Registers Table 8. ADC, ADC MIN/MAX, MIN/MAX THRESHOLD Register Data Format: LSB Bytes-Read/Write* BIT (7) BIT (6) BIT (5) BIT (4) BIT (3) BIT (2) BIT (1) BIT (0) Data (3) Data (2) Data (1) Data (0) Reserved** Reserved** Reserved** Reserved** * Set Bit A4 before writing to ADC and MIN/MAX ADC Registers ** Read as ‘0’ Table 9. POWER, MIN/MAX POWER, MIN/MAX POWER THRESHOLD Register Data Format: MSB2 Bytes- Read/Write* BIT (7) BIT (6) BIT (5) BIT (4) BIT (3) BIT (2) BIT (1) BIT (0) Data
in „I2C mit Bascom Fehlersuche bei LTC2945“ · Mikrocontroller und Digitale Elektronik ·
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Datei
e3d_ic.inc
global_fontfile_courier_bold value 0.2,0 rotate<90,-90,0>} Extents(value_arial_bold, value_arial_size_min, value_arial_size_max) Extents(value_courier_bold, value_courier_size_min, value_courier_size_max) #local value_arial_size = value_arial_size_max - value_arial_size_min; #local value_courier_size = value_courier_size_max
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PDF
NCP1605-D.PDF
from 0°C to +125°C, unless otherwise specified; For NCP1605DR2G: for typical valuesJT = 25°C, for min/max valJes T = −55°C to +125°C, unless otherwise specified) (Note 7) Symbol Rating Min Typ Max Unit Gate Drive Section Trise Output Voltage Rise Time @LC = 1 nF, from 1 V to 10 V − 40 − ns T fall Output
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tas5630.pdf
LDEM = 7 H, C DEM = 680 nF, MODE = 010, unless otherwise noted. PARAMETER TEST CONDITIONS MIN TYP MAX UNIT R = 4 Ω, 10% THD+N, clipped output signal 300 L RL= 6 Ω, 10% THD+N, clipped output signal 210 RL= 8 Ω, 10% THD+N, clipped output signal 160 PO Power output per channel R = 4 Ω, 1% THD+N, unclipped
in „Ringkerntrafo 50V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SL560.pdf
Frequency = 30MHz; V CC=6V; R S R =L0 ; T AMB =22°C ± 2°C; Test Circuit: Fig.6 Characteristic Min. Typ. Max. Units Conditions Small signal voltage gain 11 14 17 dB Gain flatness 10MHz - 220MHz ±1.5 dB Upper cut-off frequency 250 MHz Output swing +5 +7 dBm V CC6V +11 dBm V CC = 9V Noise figure (common emitter
in „Vergleichstyp zu SL560C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Performance_EMI_Filter.pdf
operating voltage: 250VAC, 50/60Hz P P‘ Operating frequency: dc to 400Hz Rated currents: 1 to 16A @ 40°C max. N N‘ High potential test voltage: P –> PE 2000VAC for 2 sec P –> PE 2500VAC for 2 sec (B types) PE P –> N 1100VDC for 2 sec Cy Cy Temperature range (operation and storage): -25°C to +100°C (25/100/
in „Netzstörungen filtern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bell-System.pdf
Ursache/ Grund Messung am HTS TLM/ TM (7/ 1) DC oder HTC (7/ 1) DC 22...24 V/ 150mA p1 alles o.k. > 8V/ max. 150mA p 24 V - kein HT angeschlossen --- < 8V - Kurzschluß auf Leitung 0 V Verbindung TL/ TM zu HT: HT aktiv Messung an Ursache / Grund Messung am HTS TLM/ TM (7/ 1) DC oder HTC (7/ 1) DC 22...24 V
in „Türklingelsignal abgreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Performance_EMI_Filter.pdf
operating voltage: 250VAC, 50/60Hz P P‘ Operating frequency: dc to 400Hz Rated currents: 1 to 16A @ 40°C max. N N‘ High potential test voltage: P –> PE 2000VAC for 2 sec P –> PE 2500VAC for 2 sec (B types) PE P –> N 1100VDC for 2 sec Cy Cy Temperature range (operation and storage): -25°C to +100°C (25/100/
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PDF
imc1812.pdf
Compatible with vapor phase and infrared reflow TEST FREQ. SRF DCR RATEDDC soldering IND. (MHz) Q MIN. MAX. CURRENT (μH) TOL. L & Q MIN. (MHz) () (mA) (1) • Material categorization: for definitions of compliance 0.010 ± 20 % 50.0 50 1000 0.20 450 please see www.vishay.com/doc?99912 0.012 ± 20 % 50.0 50
in „Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pt100-Vierleiter-Verdrahtungsdiagnose.pdf
Burnout-Strom und 24-bit-ADC. Die Diagnose-Logik bleibt dieselbe; nur die Schalter sitzen im Chip. MAX31865 erkennt Open/Overvoltage, unterscheidet Vertauschungen aber nicht zuverlässig — dafür braucht es die Paarmatrix. 2. Paarmatrix — was „gut“ bedeutet Sechs Messungen reichen. Strom 1 mA in ein Paar
in „ESP 32 oder Nano“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CASLM190E03-TLB4_Acer__050303__V0.pdf
external unit to the LCDs. Table 2. Electrical Characteristics Parameter Symbol Values Unit Notes Min Typ Max MODULE : Power Supply Input Voltage V 4.5 5.0 5.5 Vdc LCD - TBD TBD mA 1 Power Supply Input Current ILCD - TBD TBD mA 2 Power Consumption P - TBD TBD Watt 1 LCD Inrush current IRUSH - - 3 A 3 Note :
in „LVDS, Motherboard und TFT (die zweite ;-) )“ · PC Hard- und Software ·
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PDF
DM0465RE.pdf
Adaptor d P w e r S i c h F P ™ Ordering Information ) Product Number Package Marking Code BV DSS RDS(ON)Max. FSDM0465REWDTU (1) TO-220F-6L (Forming) DM0465RE 650V 2.6 Ω FSDM0565REWDTU TO-220F-6L (Forming) DM0565RE 650V 2.2 Ω FSDM07652REWDTU TO-220F-6L (Forming)DM07652RE 650V 1.6 Ω Note: 1. WDTU: Forming Type
in „Wie von 400 V Gleichspannung auf 5 V für den AVR kommen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Configuration.h
#define Z_MIN_ENDSTOP_INVERTING true // set to true to invert the logic of the endstop. #define X_MAX_ENDSTOP_INVERTING true // set to true to invert the logic of the endstop. #define Y_MAX_ENDSTOP_INVERTING false // set to true to invert the logic of the endstop. #define Z_MAX_ENDSTOP_INVERTING true
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
isolation per UL standard 60950-1, 2nd90 VDC or Vpk Working Voltage for Basic Isolation V WFSI Edition 700 Vrms Working Voltage for Reinforced Isolation V For reinforced (double) isolation per UL standard 60950-636 VDC or Vpk WFRI 1, 2nd Edition 450 V rms * Allegro does not conduct 60-second testing. It
in „Stromsensor ACS758ECB-200U-PFF-T“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
isolation per UL standard 60950-1, 2nd90 VDC or Vpk Working Voltage for Basic Isolation V WFSI Edition 700 Vrms Working Voltage for Reinforced Isolation V For reinforced (double) isolation per UL standard 60950-636 VDC or Vpk WFRI 1, 2nd Edition 450 V rms * Allegro does not conduct 60-second testing. It
in „Auslegen Tiefpassfilter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
isolation per UL standard 60950-1, 2nd90 VDC or Vpk Working Voltage for Basic Isolation V WFSI Edition 700 Vrms Working Voltage for Reinforced Isolation V For reinforced (double) isolation per UL standard 60950-636 VDC or Vpk WFRI 1, 2nd Edition 450 V rms * Allegro does not conduct 60-second testing. It
in „Beispiel Anwendungen/Application zu ADCs - Abtastrate & Auflösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM230WF5-TLD1-LG.pdf
LED typical current. Min Power Consumption is calculated with PBar = Vs(Min.) x Is(Typ.) x Nstring Max Power Consumption is calculated with PBar = Vbar(Max.) x Is(Typ) x Nstring 7. LED operating DC Forward Current must not exceed LED Max Ratings at 25 r 2¶C. Ver. 0.1 Aug. 30, 2010 7 / 30 One step solution
in „Pollin LVDS Interface im Einsatz -> Falschfarben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DTZ_Logger_OPEN.ino
#define OFF 0 #define FLASHTIME 300 #define MESZ 0 // summer-time = 1 else winter-time = 0 #define MaxBuffer 700 // maximum buffer for received bytes #define polynom 0x1021 // x16 + x12 + x5 + 1 0x1021 #define TimeOf2021 1609459260 #define Watt 0x1b #define Watt/h 0x1e #define var 0x1d #define var/h
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6207.pdf
0.114 0.126 G 0 0.10 0 0.004 H 15.50 15.90 0.610 0.626 h 1.10 0.043 L 0.80 1.10 0.031 0.043 N 10° (max.) S 8° (max.) 1. “D” and “E1” do not include mold flash or protrusions. - Mold flash or protrusions shall not exceed 0.15 mm (0.006 inch). - Critical dimensions are “a3”, “E” and “G”. DocID7513 Rev
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS8130.pdf
thresholds RS4-0=00000: - 7.8 - nA (Programmable with a 5 bit value) RS4-0=00001: - 15.6 - nA (Min, Max = Typical ±30%) RS4-0=00010: 16.4 23.4 30.4 nA (Note 4) ↓ ↓ ↓ ↓ " RS4-0=11110: 169.5 242.2 314.9 nA nA RS4-0=11111: 175 250 325 Bandpass filter response High Pass -3dB: - 35 - kHz Low Pass -3dB: - 700
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PDF
1822670.pdf
0.114 0.126 G 0 0.10 0 0.004 H 15.50 15.90 0.610 0.626 h 1.10 0.043 L 0.80 1.10 0.031 0.043 N 10° (max.) S 8° (max.) 1. “D” and “E1” do not include mold flash or protrusions. - Mold flash or protrusions shall not exceed 0.15 mm (0.006 inch). - Critical dimensions are “a3”, “E” and “G”. DocID7513 Rev
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VND830SP.pdf
Electrical specifications Table 8. Status pin (continued) Symbol Parameter Test conditions Min. Typ. Max. Unit I = 1 mA 6 6.8 8 V V Status clamp voltage STAT SCL I = -1 mA -0.7 V STAT Table 9. Switching (V = 13 V) CC Symbol Parameter Test conditions Min. Typ. Max. Unit R = 6.5 Ω from V rising d(on) Turn-on
in „[V] Highside-Schalter“ · Markt ·
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PDF
mic2950.pdf
4.753 4.947 V Output Voltage MIC295x-02/-05 (±0.5%), 100µA ≤ I ≤ 150mA, T ≤ T 4.930 5.070 V L J J(max) Over Load Variation MIC295x-03/-06 (±1%), 100µA ≤ I L 150mA, T J T J(max) 4.880 5.120 V MIC2951-3.3 (±1%), 100µA ≤ I L 150mA, T ≤JT J(max) 3.221 3.379 V MIC2951-4.8 (±1%), 100µA ≤ I ≤ 150mA, T ≤ T 4.733 4.967 V L J J(max) Output Voltage MIC295x-02/-05 (±0.5%), Note 9 20 100 ppm/°C Temperature Coefficient MIC295x-03/-06 (±1%), Note 9 50 150 ppm/°C MIC2951-3.3 (±1%), Note 9 50 150 ppm/°C MIC2951-4.8 (±1%), Note 9 50 150
in „Spannungsstabilisieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
acpl-064.pdf
Min. Dimensions in Millimeters (Inches). (0.012) Note: Floating lead protrusion is 0.15 mm (6 mils) max. Lead coplanarity = 0.10 mm (0.004 inches) max. Option number 500 not marked. ACPL-M61L SO-5 Package Land Pattern Recommendation 0.33 0.64 Device Part (0.013) (0.025) Number 1.27 (0.05) For Option x6xE
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
acpl-064.pdf
Min. Dimensions in Millimeters (Inches). (0.012) Note: Floating lead protrusion is 0.15 mm (6 mils) max. Lead coplanarity = 0.10 mm (0.004 inches) max. Option number 500 not marked. ACPL-M61L SO-5 Package Land Pattern Recommendation 0.33 0.64 Device Part (0.013) (0.025) Number 1.27 (0.05) For Option x6xE
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_nrf.c
****/ bool UsartNrf_Process_ExceptionFilter(uint8_t *pBuffer, uint8_t Head, uint8_t Tail, uint16_t MaxValue) { if(((uint16_t)pBuffer[Head] << 8 | pBuffer[Tail]) > MaxValue) //pv voltage { return false; } else { return true; } } /*********************************************** ** Function name: Initialize
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PCM_master.vhd
is generic (clock_frequency: integer:= 49152000; -- Hz : here enter main clock frequency LRCK_CNT_MAX: integer:= 64; -- LRCK_CNT_MAX represents the divider max value referring to LRCK_CNT for generation of LRCK as urgently needed by PCM5142 --spi_clock_frequency: integer:= 3125000; -- Hertz : here enter
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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PDF
l6599.pdf
define the switching frequency fmax above which the L6599 will enter burst-mode operation. Once fixed f max, RF max will be found from the relationship: 3 RF min RF max = 8-⋅f----------------- --------- – 1 fmin Note that, unlike the max considered in the previous section ("Chapter 7.1: Oscillator"), here
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SAF_C515C-LM.pdf
Current Calculation Formulas Parameter Symbol Formula Active mode I 1.72 f + 1.72 CC typ * OSC ICC max 2.33 * OSC + 2.15 Idle mode I 0.9 f + 1.5 CC typ * OSC ICC max 1.3 * OSC + 2.0 Active mode with ICC typ TBD slow-down enabled ICC max TBD Idle mode with ICC typ TBD slow-down enabled ICC max TBD Note
in „SAF C515C LM auslesen verzweiflung :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS73133.pdf
The extremely low Temperature output noise (30µV with 0.1µF C ) is ideal for RMS NR • Less Than 1µA Max I inQShutdown Mode powering VCOs. These devices are protected by • Thermal Shutdown and Specified Min/Max thermal shutdown and foldback current limit. Current Limit Protection • Available in Multiple
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Datei
Font_Arial_16px_H.h
define MULTIPLE_FONT_ACTIVE 1 // If this is the first font ... mark first font #ifndef MULTIPLE_FONT_MAX // Check for unserinput for maximum fonts #define MULTIPLE_FONT_MAX 4 // If no user input set maximum fonts to 4 #endif #define FONT_DATA_BEGIN (uint8_t*)M_Font_Data // Define for easier data array
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PDF
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
specifications are at A = 25°C. IN= 1.5V unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS I Quiescent Current Switch Off 95 130 A Q IQ Quiescent Current, Step-Up No Load LT1073-5 135 A Mode Configuration LT1073-12 250 A VIN Input Voltage Step-Up Mode 1.15 12.6 V 1.0 12.6 V Step-Down
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD815.pdf
25ⴗC,SV = ⴞ15 V dcFBR = 1 k⍀ anLOAD 100 ⍀ unless otherwise noted) AD815A Model Conditions VS Min Typ Max Units DYNAMIC PERFORMANCE Small Signal Bandwidth (–3 dB) G = +1 ±15 100 120 MHz G = +1 ±5 90 110 MHz Bandwidth (0.1 dB) G = +2 ±15 40 MHz G = +2 ±5 10 MHz Differential Slew Rate V OUT= 20 V p-p, G =
in „Zusammenschalten möglich? OPV!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD815_Rev_D.pdf
25ⴗC,SV = ⴞ15 V dcFBR = 1 k⍀ anLOAD 100 ⍀ unless otherwise noted) AD815A Model Conditions VS Min Typ Max Units DYNAMIC PERFORMANCE Small Signal Bandwidth (–3 dB) G = +1 ±15 100 120 MHz G = +1 ±5 90 110 MHz Bandwidth (0.1 dB) G = +2 ±15 40 MHz G = +2 ±5 10 MHz Differential Slew Rate V OUT= 20 V p-p, G =
in „Ausgangsstufe Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPV_LT1359CN.pdf
CHARACTERISTICS TA= 25°C, VCM = 0V unless otherwise noted. SYMBOL PARAMETER CONDITIONS VSUPPLY MIN TYP MAX UNITS VOS Input Offset Voltage ±15V 0.2 0.6 mV ±5V 0.2 0.6 mV ±2.5V 0.3 0.8 mV IOS Input Offset Current ±2.5V to ±15V 40 120 nA IB Input Bias Current ±2.5V to ±15V 120 500 nA en Input Noise Voltage
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPV_LT1359CN.pdf
CHARACTERISTICS TA= 25°C, VCM = 0V unless otherwise noted. SYMBOL PARAMETER CONDITIONS VSUPPLY MIN TYP MAX UNITS VOS Input Offset Voltage ±15V 0.2 0.6 mV ±5V 0.2 0.6 mV ±2.5V 0.3 0.8 mV IOS Input Offset Current ±2.5V to ±15V 40 120 nA IB Input Bias Current ±2.5V to ±15V 120 500 nA en Input Noise Voltage
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LQ092B5DW02.pdf
t4 t5 t6 t8 t9 t10 MODE1[Note6-3] t7 VGL Table6-2 On-off conditions for supply voltage symbol MIN MAX UNIT symbol MIN MAX UNIT t1 0 20 ms t9 0 - ms t2 0 - ms t10 0 - ms t3 0 10 ms t11 0 - ms t4 0 - ms t12 0 10 ms t5 0 - ms t13 0 - ms t6 0 - ms t14 0 10 ms t7 0 50 ms t15 10 - ms t8 0 10 ms [Note6-1]
in „Anschluss TFT-LCD-Modul SHARP LQ092B5DW02 vs. LQ092B5DW01“ · Mikrocontroller und Digitale Elektronik ·