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AD620.pdf
0.10 % G = 10 0.15 0.30 0.10 0.15 0.15 0.30 % G = 100 0.15 0.30 0.10 0.15 0.15 0.30 % G = 1000 0.40 0.70 0.35 0.50 0.40 0.70 % Nonlinearity, VOUT = –10 V to +10 V, G = 1–1000 RL= 10 k 10 40 10 40 10 40 ppm G = 1–100 RL= 2 k 10 95 10 95 10 95 ppm Gain vs. Temperature G =1 10 10 10 ppm/°C Gain >12 –50 –50
in „Probleme mit Instrumentenverstärker AD620“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DTZ_Logger_OPEN.ino
include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(ADC_VCC); #define BoardTaster 0 #define LED 14 #define Receive485
in „DTZ541 mMe Datenlogger mit ESP (WEB-Sicht)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DTZ_Logger_OPEN.ino
include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(ADC_VCC); #define BoardTaster 0 #define LED 14 #define Receive485
in „DTZ541 mMe Datenlogger mit ESP (WEB-Sicht)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DTZ_Logger_OPEN.ino
include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(ADC_VCC); #define BoardTaster 0 #define LED 14 #define Receive485
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QN8027.pdf
0.6 s SDA falling edge to STHD SCL falling edge start3 0.6 s trc SCL rising edge 3 Level from 30% to 70% 300 ns tfc SCL falling edge 3 Level from 70% to 30% 300 ns t SCL falling edge to TBD ns dtHD next SDA rising edge 3 SDA rising edge to dtc next SCL rising edge 3 900 ns SCL rising edge to stp SDA rising
in „FM Transmitter - Antenne verstehen und messen“ · HF, Funk und Felder ·
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PDF
VND830LSP.pdf
Vising 5 30 60 µs d(on) (see Figure 5) td(off) Turn-off delay time edge to VOUTo= 11.7 Vlling 10 30 70 )µs (see Figure 5) t ( s R L 6.5 Ω from V OUT = 1.3 V c dV OUT/d(on) Turn-on voltage slopeto VOUT = 10.4 V 0.15 dSeeu 1.5 V/µs (see Figure 5) r o Figure 10 R L 6.5 Ω from VOUT = 11.7 V P dV OUT/d(off
in „[V] Highside-Schalter“ · Markt ·
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PDF
RTC4553AP.pdf
+70 °C, +10 -6 characteristics tOP VDD = 5 V (Referenced at +25 °C ) −120 × 10 DD Frequency/voltage f / V Ta = Fixed, V = 2 V to 5.5 V ± 5 × 10-6 characteristics (Referenced at 5 V) -6 Aging fa Ta = +25
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC4553AP.pdf
+70 °C, +10 -6 characteristics tOP VDD = 5 V (Referenced at +25 °C ) −120 × 10 DD Frequency/voltage f / V Ta = Fixed, V = 2 V to 5.5 V ± 5 × 10-6 characteristics (Referenced at 5 V) -6 Aging fa Ta = +25
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
0xAD,0x4E,0x24,0x0C,0xB8,0xA0,0x62,0x05,0x49,0x2F,0x35,0x32,0x2C,0x30,0xC1, 0xB6,0xAD,0xDB,0xB7,0x70,0xE3,0xCA,0x6D,0x7B,0x05,0x80,0x07,0x11,0x64,0xCD, 0x8E,0x34,0x62,0x63,0x41,0x85,0xBF,0x80,0x03,0x0B,0x1E,0x4C,0xB8,0x70,0xE0, 0x21,0x2B,0x44,0x0C,0x90,0x20,0x73,0x24,0x8B,0xB4,0x26,0xFE,0x7E,0x98,0x4C
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC4553AP.pdf
+70 °C, +10 -6 characteristics tOP VDD = 5 V (Referenced at +25 °C ) −120 × 10 DD Frequency/voltage f / V Ta = Fixed, V = 2 V to 5.5 V ± 5 × 10-6 characteristics (Referenced at 5 V) -6 Aging fa Ta = +25
in „Eine RTC R4553A am Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv5056.pdf
www.ti.com Typical Characteristics (continued) at T = 25°C (unless otherwise noted) A 30 80 75 28 ) ) T T 70 / / m 26 m ( ( i i 65 i 24 i n n e e 60 S S 22 +3STD 55 -3STD AVG AVG ▯3STD +3STD 20 50 -40 -20 0 20 40 60 80 100 120 140 160 0 10 20 30 40 50 60 70 80 85 Temperature (qC) Temperature (C) D015 D016 DRV5056A4
in „Temperaturkompensation Hall-Sensor DRV5056“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SN74LVC125A.pdf
Telecom DC/DC Modules: 2OE 4OE – Analog or Digital 2A 2Y 4A 4Y • Private Branch Exchanges (PBX) • TETRA Base Stations • Telecom Base Band Units • Telecom Shelters: – Filter Unit s – Power Distribution Units (PDU) – Power Monitoring Units (PMU) – Wireless Battery Monitoring – Remote Electrical Tilt Units (RET
in „Joy-IT 1,8" TFT Display: SD-Karten-Slot am Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16-BT-131INK.pdf
‡ VIL | VD ~0.2 :L-Level Input Voltage 0 J b g :Cut-off @Bias *1 Ek 2.0 | 3.0 Vdc fi ì • x Topr | {70 :Operating Temperature -20 à N b N fi ì ` «:Characteristics of Internal Clock Ci @ @ Ú @ @ @ @ @ @ F @ @ @ @ @ @Item Unitymbo ' ¨ › :Internal Clock FreqOSCcy DD=5.0V 4.8 \ ƒ t [ ü:Display Frame FrequeFRy
in „FUTABA Chip in Glass (CIG) VFDisplays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dasakustischaktiveprinzip.pdf
LAUTSPRECHERKABEL mit AcousticCableTuning-System 17 8.3, 8.4 ZUBEHÖR: Acoustic BalanceFoam, Acoustic BalanceBases 19 8.5-8.7 ZUBEHÖR 2011: SUB-Woofer, 2008: ARO (Acoustic RoomOptimizer), Power Cable 23 9.1 BRODMANN LAUTSPRECHER FÜR JEDEN EINSATZ 25 ANHANG A GRAFIKEN UND SCHNITTZEICHNUNGEN 30 ANHANG B TECHNIK-TEXTE
in „Suche Federkontakte für Werkzeug Akkus“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Haier_LT26M1CA__LT26M1C_LCD_TV.pdf
BEAD FB606 071G 56G151 MD CHIP BEAD FB603 071G 56K121 M CHIP BEAD FB609 071G 57U700 M CHIP BEAD 1206 70ohm Microgate FB610 071G 57U700 M CHIP BEAD 1206 70ohm Microgate FB611 071G 57U700 M CHIP BEAD 1206 70ohm Microgate FB612 071G 57U700 M CHIP BEAD 1206 70ohm Microgate L501 071G 59B121 K CHIP BEAD 120
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
RTC72423APP.pdf
50 Frequency tolerance ∆f/f0 V DD=5.0 V RTC-72423A ± 20 RTC-72423 ± 50 -6 × 10 RTC-72421 : 10 C to +70 C° +10 / 120 (+25 C reference) Operation temperature RTC-72423 : 40 C to +85 C° +10 / 220 (+25 C reference) Frequency voltage Ta=+25 C° -6 ± 5Max. × 10 / V characteristics VDD=2.0 V to 5.5 V Aging fa
in „Kleine DCF Antenne für Propeller Clock“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC-72421_3_AM_Application.pdf
Unit Supply voltage VDD 4.5 to 5.5 V Operating temperature T OPR No condensation RTC-72421 ; 10 to +70 °C RTC-72423 ; 40 to +85 °C Data hold voltage VDH 2.0 to 5.5 V CS 1ata hold time CDR See the section on data 2.0 Min. µs Operation recovery time tr hold timing 3. Frequency characteristics and current
in „Uhrenbaustein RTC 72421“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kaffeeautomat-5-OK.bas
****************************************************************** ' C-Control/BASIC KaffeMaschine.BAS ' Aufgabe: ' - Application Board mit angeschlossenem Display ' und Tastatur ' Schwerpunkt: ' - Steuerung eines Kaffeeautomaten ' - Ausgeben von Werten und Zuständen am Display '*********************
in „Eigenbau einer Kaffee- Vollautomaten-Steuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ov7670-regs.h
define REG_DENOISE_STRENGTH ( 0x4c ) // De-noise strength // size registers #define REG_SCALING_XSC 0x70 #define REG_SCALING_YSC 0x71 #define REG_SCALING_DCWCTR 0x72 #define REG_SCALING_PCLK_DIV 0x73 #define REG_SCALING_PCLK_DELAY 0xa2 //------------------------------------------------------------------
in „OV7670 an STM32F102“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TransceiverIC.pdf
Supply 3 4 OLNA Low Noise Amplifier Output 4 5 ID LNA Input decoupling (emitter) 5 6 I LNA Input (base) 6 7,81) RFGND RF Supply Ground 7 9 OA Power Amplifier Output 8 10,111) GAIN Gain Adjust (Power Amplifier) 12 Not used 13 Not used 9 14 REF Reference voltage output(for external LNA/Power Amp) 10 15
in „Transceiver IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Component_Candidacy_of_Second_Side_Reflow_with_Lead-Free_Solder.pdf
Printed Circuit Board (PCB) having 2.2 Contact angle conventional FR-4 glass epoxy as the laminate base material. At the liquid-solid interface, if the molecules of the liquid Some of the test components were assembled on electroless have a stronger attraction to the molecules of the solid surface Ni
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PDF
LM13700.pdf
Temperature Range If Military/Aerospace specified devices are required, LM13700N, LM13700AN 0˚C to +70˚C please contact the National Semiconductor Sales Office/ DC Input Voltage +V to −V S S Distributors for availability and specifications. Storage Temperature Range −65˚C to +150˚C Soldering Information
in „Logarithmisches Stero-Poti für Kopfhörerverstärker - optionen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Linear_Mode_Operation_and_Safe_Operating_Diagram_of_Power-MOSFETs.pdf
drop across the MOSFET and the current flow: P dissVDS ⋅IDS 100 Vdd 90 Vgs=4.0V 80 operation point 70 ) 60 Vgs=3.6V fan ( I 50 40 Vgs=3.3V Vgs=3.1V 30 20 Vgs=2.9V 10 gate 0 0 5 10 15 20 25 30 Vds(V) gnd Fig. 2: MOSFET used as constant current source. The current flow through the fan is controlled exclusively
in „Gleichstromlast MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-ApplicationNote_Linear_Mode_Operation_Safe_Operation_Diagram_MOSFETs-AN-v01_00-EN.pdf
drop across the MOSFET and the current flow: P dissVDS DS. 100 Vdd 90 Vgs=4.0V 80 operation point 70 ) 60 Vgs=3.6V fan ( I 50 40 Vgs=3.3V Vgs=3.1V 30 20 Vgs=2.9V 10 gate 0 0 5 10 15 20 25 30 Vds(V) gnd Fig. 2: MOSFET used as constant current source. The current flow through the fan is controlled exclusively
in „Problem mit N-MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
7499210124A.pdf
Properties: Turns Ratio n 1 : 1 ±2% Plastic Housing Material Thermoplastic PA66 Black Data rate 100BASE-TX Plastic Housing Flammability Rating UL94 V-0 LED Electrical & Optical Properties: Shielding Material Brass Value Properties Test conditions min. max. Unit Shielding Plating 50µ" Nickel Forward Voltage
in „Schaltung W5500“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2207251030_Mixic-MX1616H_C5119044-1.pdf
Electronics Co.,LTD MX1616H Package Dimensions SOP16ÿ D A3 0.25 A2 A c L A1 ÿ L1 b b1 E1 AND c1 c BASE METAL WITH PLATING b and MILLIMETER SYMBOL MIN NAME MAX - - A 1.77 A1 0.08 0.18 0.28 A2 1.20 1.40 1.60 A3 0.55 0.65 0.75 b 0.39 - 0.48 b1 0.38 0.41 0.43 - c 0.21 0.26 c1 0.19 0.20 0.21 D 9.70 9.90 10.10 AND 5.80 6.00 6.20 E1 3.70 3.90 4.10 and 1.27BSC L 0.5 0.65 0.80 L1 1.05BSC - ÿ 0° 8° Chongqing Zhongkexin Yida Electronics Co., Ltd. Shenzhen Rev1.2 2020-12-11 www.mixic.com.cn Office: 1408 10 Wanjun Economic and Trade Building
in „MX1616H Dual H-Bridge Motor Driver“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
gsm-m1-e.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70 V.24 interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70 Hybrid connector (manufacturer-specific) . . . . . . . . . . . . . . . . .
in „Pinbelegung f. Siemens M1 GSM Modem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV2462.pdf
1.5 V +kSVR V = ±2.5 V d T = 25°C d DD − 100 A − TA= 25°C t i 80 −kSVR a a R 90 R i o c −kSVR t j j 70 R 80 e e e a g l 70 l V V 60 l l p 60 p u +k u S SVR S 50 +kSVR − − V 50 V S −kSVR S −kSVR k k 40 40 10 100 1k 10k 100k 1M 10M 10 100 1k 10k 100k 1M 10M f − Frequency − Hz f − Frequency − Hz Figure 18
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·
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calling_conventions_for_different_C_compilers_and_operating_systems__fog.pdf
member function pointers, regardless of storage class. Pointers and references include the <pointer base> and <storage class> code for the target.<pointer base> is a pointer base code according to table 13, which is used only in 64-bit mode. Global pointers and references (including function pointers and member pointers) in 64-bit systems include the<pointer base> twice, both before the<storage class> code of the target and before the <storage class> code of the pointer or reference itself. (Early 64-bit C++ compilers didn't hav<pointer base> codes). Examples
in „C und C++ kompatibilität“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt_pic.pdf
Extended (LF) -175 — — ns 20 TioR Port output rise time Standard — 10 35 ns 20A Extended (LF) — 10 70 ns 21 TioF Port output fall time Standard — 10 35 ns 21A Extended (LF) — 10 70 ns 22 TINP INT pin high Standard 20 — — ns or low time 22A Extended (LF) 55 — — ns 23 TRBP RB7:RB4 change INT Standard TOSC
in „Flußdiagramm Digitale stoppuhr auf PIC 16F84A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16F84.pdf
Extended (LF) -175 — — ns 20 TioR Port output rise time Standard — 10 35 ns 20A Extended (LF) — 10 70 ns 21 TioF Port output fall time Standard — 10 35 ns 21A Extended (LF) — 10 70 ns 22 TINP INT pin high Standard 20 — — ns or low time 22A Extended (LF) 55 — — ns 23 TRBP RB7:RB4 change INT Standard TOSC
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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tps79912.pdf
(V IN – VOUT = 0.5V) FREQUENCY (V IN– VOUT = 0.25V) 90 90 I = 100mA I = 1mA 80 OUT OUT 80 I = 1mA 70 70 OUT 60 60 B B ( 50 ( 50 R R I = 200mA R 40 R 40 OUT P P 30 30 20 20 IOUT= 200mA OUT = 100mA 10 C NR= 0.01 F 10 C NR= 0.01 F C OUT= 2.2 F C OUT= 2.2 F 0 0 10 100 1k 10k 100k 1M 10M 10 100 1k 10k 100k
in „Antwort von technischem Support auf meine Frage: Wird hier die Frage eigentlich beantwortet?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2575TADJ.PDF
W Case 936A (D PAK) P D Internally Limited W Thermal Resistance, Junction−to−Ambient (Figure 34) R 70 ⋅C/W ▯JA Thermal Resistance, Junction−to−Case R ▯JC 5.0 ⋅C/W Storage Temperature Range Tstg −65 to +150 ⋅C Minimum ESD Rating (Human Body Model: C = 100 pF, R = 1.5 k▯) − 3.0 kV Lead Temperature (Soldering
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7805.pdf
o V o OutputVoltageDrift Io= 5 mA -1.0 mV/ C T eN OutputNoise Voltage B = 10Hzto 100KHz T j= 25 C 70 V SVR Supply Voltage Rejection V i 12to 23 V f= 120Hz 55 dB o Vd Dropout Voltage Io= 1 A Tj= 25 C 2 V Ro OutputResistance f = 1KHz 17 m I Short Circuit Current V = 35V T = 25 C 400 mA sc i j Iscp Short
in „Pic schaltung mit Netzteil versorgen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
179205-da-01-en-Festspannungsregler_78XX.pdf
o V o OutputVoltage Drift o = 5mA -1.0 mV/ C T eN OutputNoise Voltage B = 10Hz to100KHz T j= 25 C 70 V SVR Supply Voltage Rejection Vi= 12 to 23 V f = 120 Hz 55 dB o Vd Dropout Voltage o = 1 A Tj=25 C 2 V Ro OutputResistance f = 1 KHz 17 m I Short CircuitCurrent V = 35 V T =25 Co 400 mA sc i j Iscp
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm3916.pdf
selectable by user buffer accepts signals down to ground and up to within 1.5V n Expandable to displays of 70 dB of the po±itive supply. Further, it needs no protection againn Internal voltage reference from 1.2V to 12V parators referenced to the precision divider. Accuracy is- n Operates with single supply
in „Eingangstufe LCD Stereo VU Meter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AS5048_Datasheet.pdf
±30mT…±70mT. Figure 35: Typical Magnet and Magnetic Flux Distribution typ. 6-8mm diameter N S Magnet axis R1 Magnet axis Vertical field component N S R1 concentric circle; radius 1.1mm Vertical field component Bv (30…70mT) 0 360 AS5048A/AS5048B – 30 amsDatasheet: 2014-Jun-05 [v1-06] Application Information Physical Placement of the Magnet The best linearity can be achieved by placing the center of the magnet exactly
in „Drehwinkelmessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lme49600.pdf
FREQUENCY (Hz) +PSRR +PSRR vs vs Frequency Frequency VS= ±15V, Wide BW Mode V S ±15V, Low I ModeQ 80 80 70 70 60 60 ) 50 ) 50 B B ( ( R 40 R 40 S S P 30 P 30 20 20 10 10 0 0 20 200 2k 20k 200k 20 200 2k 20k 200k FREQUENCY (Hz) FREQUENCY (Hz) +PSRR +PSRR vs vs Frequency Frequency VS= ±15V, Wide BW Mode V S ±15V, Low I ModeQ 80 80 70 70 60 60 50 ) 50 B B ( ( R 40 R 40 S S P 30 P 30 20 20 10 10 0 0 20 200 2k 20k 200k 20 200 2k 20k 200k FREQUENCY (Hz) FREQUENCY (Hz) Copyright © 2008, Texas Instruments Incorporated Submit Documentation
in „Kopfhörerverstärker in Studioqualität gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80c827e9.pdf
RATIO vs FREQUENCY MAXIMUM OUTPUT VOLTAGE vs FREQUENCY 100 6 VS= 5.5V 90 ) - 5 80 V V = 5.0V ( S 70 g 4 ) l d 60 o ( 50 t 3 R t S 40 u VS= 2.7V P O 2 30 u m 20 x M 1 10 0 0 1 10 100 1k 10k 100k 100 1k 10k 100k 1M 10M Frequency (Hz) Frequency (Hz) NOISE vs FREQUENCY 0.1Hz TO 10Hz VOLTAGE NOISE 10k 100
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kap6.pdf
verletzt wird. 21 Eine sehr zuverlässige Schaltung für Obertonquarze bis zu 300 MHz ist die grounded-base-Schaltung (s. Bild 6.18). Der Rückkopplungskreis liegt zwischen einem kapazitiven Spannungsteiler C , CAundBdem Emitter des Oszillatortransistors. Bild 6.18: Grounded-base-Schaltung für Obertonquarze
in „4060 + Quarz wollen nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kap6.pdf
verletzt wird. 21 Eine sehr zuverlässige Schaltung für Obertonquarze bis zu 300 MHz ist die grounded-base-Schaltung (s. Bild 6.18). Der Rückkopplungskreis liegt zwischen einem kapazitiven Spannungsteiler C , CAundBdem Emitter des Oszillatortransistors. Bild 6.18: Grounded-base-Schaltung für Obertonquarze
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PDF
VND5E160J.pdf
measurements (PCB: Double layer, Thermal Vias, FR4 area= 77mm x 86mm, PCB thickness=1.6mm, Cu thickness=70µm (front and back side), Copper areas: from minimum pad lay-out to 8cm ). Figure 36. R vs. PCB copper area in open box free air condition (one channel ON) thj-amb RTHj_amb(°C/ W) 70 65 60 55 50 45 40
in „[V] Highside-Schalter“ · Markt ·
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PDF
1151463626.pdf
results with the use of transistors having high current gain since the driving power feed back to the base must be supplied from the source through primary windings N1. It is necessary to provide a current limiting resistor R1 in the base circuit, but the I2R losses in this resistance should be small to
in „Stromwandler MBS ASK31.3 50/5A Nachbau?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc4113.pdf
Power-down Mode – Power-off Flag Power Supply: 2.7V to 5.5V Temperature Ranges: Commercial (0 to +70°C) and Industrial (-40°C to +85°C) Packages: PDIL40, PLCC44, VQFP44 1. Description AT80C51RD2 microcontrollers are high performance versions of the 80C51 8-bit microcontrollers. The microcontrollers
in „STC12C5A60S2 (a.k.a 80C51) programieren mit mySmartUSB light“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W77E058Aj.pdf
.....................................................................................53 12.2 Time-base Selection......................................................................................................53 12.3 Timer/Counter 2 ...............................................................
in „[V] 12St. 8051er- NUVOTON / WINBOND PLCC44 ( 2UARTS u. 4 clocks/machine cycle- 40MHz)“ · Markt ·
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PDF
mic29150-779100.pdf
V OUT + 1V 10 35 Ground Current MIC29500 IOUT= 3A 37 mA IOUT= 2.5A, VIN V OUT + 1V 15 50 IOUT= 5A 70 MIC29750 IOUT= 4A, VIN V OUT + 1V 35 I = 7.5A 120 75 Note 8 OUT V IN= 0.5V less than specifieOUT × OUT = 10mA IGRNDDOGround Pin MIC29150 0.9 MIC29300 1.7 Current at Dropout MIC29500 2.1 mA MIC29750 3.1
in „Auslegung eines Kühlkörpers - Verständnisproblem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SIM300_HD_V1.06.pdf
Parameter Min Typ Max Unit Ambient temperature -20 25 55 ℃ Restricted operation* -20 to -25 55 to 70 ℃ Storage temperature -40 +80 ℃ * SIM300 can work, but the deviation from the GSM specification may occur. SIM300_HD_V1.06 Page 46 of 56 SIM300 Hardware Interface Description Confidential SIMCOM 5.3
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FSP_SHB_D.pdf
MHz 70 29100 MHz 70 ________ - dB FSP 40: 70 ________ - dB 30100 MHz 39100 MHz 70 ________ - dB Spiegelfrequenzunter-Seite 1.5 drückung der 3.ZFinf FSP 3/ 7/ 13/ 30/ 40: - 100 MHz 70 ________ - dB FSP 7/ 13/ 30/ 40: 3100 MHz 70 ________ - dB Unterdrückung der Seite 1.6 ersten ZF, f in 11 MHz 70 ________ - dB 100 MHz 70 ________ - dB 1701 MHz 70 ________ - dB 2990 MHz 70 ________ - dB Unterdrückung der Seite 1.6 zweiten ZF,in
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Datei
Timing_Report.txt
Cameralink.ncd Physical constraint file: Top_Modul_DDR2_Cameralink.pcf Device,package,speed: xc5vfx70t,ff1136,-1 (PRODUCTION 1.73 2012-01-07, STEPPING level 0) Report level: verbose report Environment Variable Effect -------------------- ------ NONE No environment variables were set -----------------
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pic16f88.pdf
80 Bytes 80 Bytes 80 Bytes Register EFh 16Fh 1EFh 96 Bytes accesses F0h accesses 170h accesses 1F0h 70h-7Fh 70h-7Fh 70h-7Fh 7Fh FFh 17Fh 1FFh Bank 0 Bank 1 Bank 2 Bank 3 Unimplemented data memory locations, read as ‘0’. * Not a physical register. Note 1: This register is reserved, maintain this register
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·