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Datei
avr200.asm
implementations ;*;*************************************************************************** .include "1200def.inc" rjmp RESET ;reset handle ;*************************************************************************** ;* ;* "mpy8u" - 8x8 Bit Unsigned Multiplication ;* ;* This subroutine multiplies the two
in „Eine Frage bzg. Macro in AVR-Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ES51922.pdf
the LCD panel. Original State (Auto/Manual) Push REL Push REL 〝REL〞active. The relative value Push Max/Min Push Max/Min > 1s 〝 REL〞and〝Max〞active. 〝REL〞and〝Min〞active. 〝REL〞 〝Max〞 〝Min〞 Maximum rel. value Minimum rel. value blink. Current rel. value Push Max/Min Push Max/Min Push HOLD Push HOLD Push HOLD 〝REL〞,〝Max〞, 〝 REL〞, 〝Min〞, 〝REL〞 〝, Max〞 , Min〞 , 〝H〞active. Hold 〝H〞active. Hold 〝H〞blink. Hold the Push Max/Min Push Max/Min max. rel. value min. rel. value current rel. value Push Max/Min 3.7 Zero : In manual
in „UT61E Batterieabschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4x20_Display.pdf
RATINGS ITEM SYMBOL CONDITION MIN MAX UNIT POWER SUPPLY ( LOGIC) Vdd 25 C -0.3 7.0 V POWER SUPPLY (LCD) V0 25 C Vdd -13.5 Vdd +0.3 V INPUT VOLTAGE Vin 25 C -0.3 Vdd +0.3 V OPERATING TEMPERATURE Vopr ___ -20 70 C ___ STORAGE TEMPERATURE
in „Leerzeichen beim Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DatenblattDisplay.pdf
EK79001HN+EK73215BCGA OR COMPATIBLE / 13 Weight 167.0 g 2. ABSOLUTE MAXIMUM RATINGS Item Symbol Min. Max. Unit Power supply input voltage(TFT Module) VDD -0.5 5.0 V Backlight current (normal temp.) ILED - 150 mA Operation temperature Top -20 +70 °C Storage temperature Tst -30 +80 °C Humidity RH - 90%(Max60
in „Display zeigt Fehler in Spalten auf halben Bildschirm“ · Mikrocontroller und Digitale Elektronik ·
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ltc4010.pdf
CC, CHARGER ENABLED AND TEMPERATURE OK (OPTIONAL) V CELL 900mV PRECHARGE** CHECK (C/5 FOR BATTERY tMAX/12) 900mV V > 900mV VCELL> VCELL< 900mV CELL NiMH V < 1.22V AT t*/12 TOP-OFF ∆T/∆t CELL MAX CHARGE** FAST CHARGE** OR TIME =MAX FAULT (C/10) (1C) NiCd OR NiMH – ∆V V > 1.95V V < 1.325V OR PWM FAULTS
in „NiMH-Ladeschaltung mit LTC4010 lädt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10134fd.pdf
unless otherwise noted. LT1013C/D/I LT1013AC LT1014AC LT1014C/D/I SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS VOS Input Offset Voltage l 55 240 65 270 80 400 µV LT1013D/I, LT1014D/I l 230 1000 µV V = 5V, 0V; V = 1.4V l 75 350 85 380 110 570 µV S O LT1013D/I, LT1014D/I l 280 1200
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
E5148_M4A77D_V2.pdf
Sets theCPUVDDAvoltage. Use<+>/ <->keys toadjust thevalue. Configurationoptions: [Auto] [Min.=2.5V] [Max.=2.8V] LoadLineCalibration[Auto] Sets theLoadLine. Thevalues rangefrom0%to100%witha3.225%increment. Usethe <+>/ <->keys toadjust thevalue. Configurationoptions: [Auto] [Max. =100%] [Min. =0%] HTLinkFrequency
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datasheet.pdf
CHARACTERISTICS (Tj=25°C, unless otherwise noted) Limits Symbol Parameter Test conditions Unit Min. Typ. Max. IEX Collector cutoff current VCE=600V, VEB=2V — — 2.0 mA CBO Collector cutoff current VCB=600V, Emitter open — — 2.0 mA EBO Emitter cutoff current VEB=7V — — 150 mA VCE (sat) Collector-emitter saturation
in „Was ist das für eine Art Transistormodul?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RequiresAcrobat6.pdf
Electrical Characteristics (J = 25°C unless otherwise noted) Parameter Symbol Test Condition Min Typ Max Unit Static Drain-Source Breakdown Voltage BVDSS VGS = 0V,DI = 250µA 20 – – V Gate Threshold Voltage VGS(th) VDS = VGS, D = 250µA 0.6 – – V Gate-Body Leakage GSS VDS = 0V, GS= ± 8V – – ± 100 nA Zero
in „Ersatz-MosFet für GF9926“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
15C02CH-_CD_-.pdf
.7353-1/6 15C02CH Electrical Characteristics at Ta=25°C Ratings Parameter Symbol Conditions min typ max Unit Collector Cutoff Current ICBO VCB =12V,EI =0A 100 nA Emitter Cutoff Current I V =4V, I =0A 100 nA EBO EB C DC Current Gain hFE VCE =2V,CI =50mA 300 800 Gain-Bandwidth Product fT VCE =2V,CI =50mA
in „SMD-Bauteil cd 2 D4“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
V Gain, SOIC-8/uMAX-8 MAX4080T 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Unidirectional, 20V/V Gain, SOIC-8/uMAX-8 MAX4081F 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Bidirectional, 5V/V Gain, SOIC-8/uMAX-8 MAX4081S 76V, High-Side, Current-Sense Amplifiers with Voltage Outpute, Bidirectional, 60V/V Gain, SOIC-8/uMAX-8 MAX4081T 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Bidirectional
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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LT3575.pdf
of several of these transformers. affect the input and output currents, making it hard to 14 14 14 MAX POUT MAXIMUM MAX POUT MAXIMUM MAXIMUM MAX POUT 12 OUTPUT 12 OUTPUT 12 OUTPUT 10:1 7:1 POWER 7:1 4:1 POWER POWER 2:1 ) 5:1 ) 3:1 ) ( 10 4:1 ( 10 5:1 ( 10 E E E 3:1 1:1 W 8 3:1 W 8 2:1 W 8 P P P U 6 2
in „LT3575 Simulation Problem Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Configuration_adv.h
its usage. */ //#define MAX7219_DEBUG #if ENABLED(MAX7219_DEBUG) #define MAX7219_CLK_PIN 64 #define MAX7219_DIN_PIN 57 #define MAX7219_LOAD_PIN 44 //#define MAX7219_GCODE // Add the M7219 G-code to control the LED matrix #define MAX7219_INIT_TEST 2 // Test pattern at startup: 0=none, 1=sweep, 2=spiral #define MAX7219_NUMBER_UNITS 1 // Number of Max7219 units in chain. #define MAX7219_ROTATE 0 // Rotate the display clockwise (in
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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MCP9501-2-3-4.pdf
Unless otherwise indVDD= 2.7V to 5.5VA T = -40°C to +125°C, and GND = Ground. Parameters Sym Min Typ Max Unit Conditions Sensor Accuracy -15°C ≤ TA≤ +75°C -4 ±1 +4 °C Note 1 -40°C ≤ TA≤ +125°C -6 ±2 6 °C Power Supply Operating Voltage V 2.7 — 5.5 V DD Operating Current IDD — 25 40 µA Line-Regulation Δ°
in „Thermal Shutdown“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
viper100-e.pdf
= 1A 250 ns Off b Blanking Time 250 360 ns ton(min) Minimum On Time 350 1200 ns Table 7. Shutdown and Overtemperature Section Symbol Parameter Test Conditions‘ Min Typ Max Unit VCOMPth Restart Threshold (see Figure 8) 0.5 V DISsu Disable Set Up Time (see Figure 8) 1.7 5 µs Ttsd
in „Hochvoltspannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VIPer100.pdf
= 1A 250 ns Off b Blanking Time 250 360 ns ton(min) Minimum On Time 350 1200 ns Table 7. Shutdown and Overtemperature Section Symbol Parameter Test Conditions‘ Min Typ Max Unit VCOMPth Restart Threshold (see Figure 8) 0.5 V DISsu Disable Set Up Time (see Figure 8) 1.7 5 µs Ttsd
in „VIPer50 Flyback Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
40146F.pdf
0°C to +70°C Industrial(I):Tamb = -40°C to BSEL = 0 BSEL = 1 +85°C Symbol Characteristic Min Typ. Max. Min. Typ. Max. Units TE Basic pulse element 260 400 620 130 200 310 μs TBP PWM bit pulse width 3 3 TE TP Preamble duration 28 28 TE TS Sync Pulse duration 10 10 TE TH Header duration 10 10 TE THOP
in „Fehlersuche Funksender Zentralverriegelung Toyota Yaris“ · Fahrzeugelektronik ·
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PDF
21483b.pdf
temperature range is specified (-40°C to +85°C for E device, 0°C to +70°C for C device). A Parameter Min Typ Max Min Typ Max Min Typ Max Units Test Conditions Voltage-to-Frequency Accuracy TC9400 TC9401 TC9402 Linearity 10kHz — 0.01 0.05 — 0.004 0.01 — 0.05 0.25 % Output Deviation from Full Scale Straight Line
in „Frequenzen vervielfachen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX5116_4.3inch.pdf
Input Current IIL/IIH No pull up or pull low -1 - 1 µA Pull high resistance RH Pull up pins 600 900 1200 KΩ Pull low resistance RL Pull low pins 600 900 1200 KΩ S1~S107, High Output Current IOH Vo=4.9V vs. 4V 50 - - µA S1~S107, Low Output Current IOL Vo=0.1V vs. 1V - - -50 µA Output leakage Current IOZ
in „OLED CMEL SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
andilcd_conoled_sheet_de_hx5116.pdf
Input Current IIL/IIH No pull up or pull low -1 - 1 µA Pull high resistance RH Pull up pins 600 900 1200 KΩ Pull low resistance RL Pull low pins 600 900 1200 KΩ S1~S107, High Output Current IOH Vo=4.9V vs. 4V 50 - - µA S1~S107, Low Output Current IOL Vo=0.1V vs. 1V - - -50 µA Output leakage Current IOZ
in „HX 5116 Anschlussbelegung an einem Atmega 644“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an920-d.pdf
, t on(max), is set by selecting + 0.37 ) 1 a value for CT. + 14.6 ms C T 4.0 10 −5 ton Since ton(max) ) t off+ 20 ms + 4.0 10 − 5(5.4 10− 6) ton(max) + 20 ms * 14.6 ms + 216 pF + 5.4 ms Use a standard 220 pF
in „MC34063 als Step Up arbeitet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D.PDF
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063_AN920-D.PDF
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „Spule für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.pdf
, t on(max), is set by selecting + 0.37 ) 1 a value for CT. + 14.6 ms C T 4.0 10 −5 ton Since ton(max) ) t off+ 20 ms + 4.0 10 − 5(5.4 10− 6) ton(max) + 20 ms * 14.6 ms + 216 pF + 5.4 ms Use a standard 220 pF
in „Spannungsregelung mit Step-Up/Down Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.PDF
of t(t + t ) does not exceed on on off t ) t the maximum of 6/7 or 0.857. This maximum is off+ on(max) off defined by the 6:1 ratio of charge−to−discharge ton) 1 off current of timing capacitor T (refer to Figure 3). 20 10−6 4. The maximum on−time, t on(max), is set by selecting + 0.37 ) 1 a value for T . + 14.6 ms C T 4.0 10 −5 ton Since ton(max) ) t off+ 20 ms + 4.0 10 −5 (5.4 10−6 ) ton(max) + 20 ms * 14.6 ms + 216 pF + 5.4 ms Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND V CC
in „Suche Buck-Boost für LiIon-Spannung auf 3,3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC1864.pdf
operating temperature range, otherwise specifications aAe at T = 25°C. VCC = 5V, VREF= 5V, SCK= fSCK(MAX)as defined in Recommended Operating Conditions, unless otherwise noted. LTC1864/LTC1865 LTC1864A/LTC1865A PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Resolution l 16 16 Bits No Missing Codes Resolution
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PDF
ADC_LTC1865.pdf
operating temperature range, otherwise specifications aAe at T = 25°C. VCC = 5V, VREF= 5V, SCK= fSCK(MAX)as defined in Recommended Operating Conditions, unless otherwise noted. LTC1864/LTC1865 LTC1864A/LTC1865A PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Resolution l 16 16 Bits No Missing Codes Resolution
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21425b.pdf
141°C IH = Quiescent Current with all outputs LOW TJ= Maximum allowable junction temperature (4 mA max.) I = Quiescent Current with all outputs HIGH (+150°C) L θJA = Junction-to-ambient thernal resistance (0.6 mA max.) (83.3°C/W) 14-pin plastic package D = Duty Cycle V = Supply Voltage S Note: Ambient
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OVC3860_RevE_PSKeys_Setting_v1.2.pdf
Mode 1: EXT_INTR1 BIT6: 0: GPIO Mode 1: EXT_INTR2 BIT7: 0: GPIO Mode 1: EXT_INTR3 auto_conn_time sbc_max_mute_num Key Name Key Number Default Value Range(byte) sbc_max_mute_num 21 0x06 1 This PS key sets the threshold number of receive mute packet, if reach the setting value, system will close external
in „A2DP Bluetooth Modul China eBay“ · HF, Funk und Felder ·
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PDF
OVC3860_RevE_PSKeys_Setting_v1.2.pdf
Mode 1: EXT_INTR1 BIT6: 0: GPIO Mode 1: EXT_INTR2 BIT7: 0: GPIO Mode 1: EXT_INTR3 auto_conn_time sbc_max_mute_num Key Name Key Number Default Value Range(byte) sbc_max_mute_num 21 0x06 1 This PS key sets the threshold number of receive mute packet, if reach the setting value, system will close external
in „OVC3860 RevV Develop Tool - not connected :/“ · HF, Funk und Felder ·
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PDF
CAN_Bit_Timing.pdf
cause the bit time to be lengthened or shortened. dominant edges. This implies that there can be a max- imum of ten bits between resynchronization due to bit Synchronization Rules: stuffing (Figure 6). 1. Only recessive-to-dominant edges will be used The oscillator tolerance between the slowest node
in „Infos zum CAN Bit-Timing gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Weidezaun_S03_4093.pdf
LY3369-EH gelb 2,2V 2mA 67S5321RV1.25-3 (Red Ring Insulated Wire Connector Crimp Terminal 1,71-/100 max18V R6 GND 11,1V 3s 3,7V 2,5-4,2V 2600mAh SonyVTC5 230Vac 6Vac 2,5A EI57x25 87/60x27x50 2xBLD4x73mm 13,81€ u A war 10M R2 war 22k 3msR2 rd3mm 0R (11k)ZPD3v3 1000u 16V D8x16mm LowESR R3=220R@13,8V 6Vac
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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Datei
AVRootloader.asm
"usb82def.inc" ; AT90USB82 ; unsupported devices, no self programming or sram to small ;.include "1200def.inc" ; AT90S1200 ;.include "2313def.inc" ; AT90S2313 ;.include "2323def.inc" ; AT90S2323 ;.include "2343def.inc" ; AT90S2343 ;.include "4414def.inc" ; AT90S4414 ;.include "4433def.inc" ; AT90S4433
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Datei
AVRootloader.asm
"usb82def.inc" ; AT90USB82 ; unsupported devices, no self programming or sram to small ;.include "1200def.inc" ; AT90S1200 ;.include "2313def.inc" ; AT90S2313 ;.include "2323def.inc" ; AT90S2323 ;.include "2343def.inc" ; AT90S2343 ;.include "4414def.inc" ; AT90S4414 ;.include "4433def.inc" ; AT90S4433
in „Bootloader von Hagen - Port toggeln während des Flashens“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
usb647def.inc" ; AT90USB647 ;.include "usb82def.inc" ; AT90USB82 ; unsupported devices ;.include "1200def.inc" ; AT90S1200 ;.include "2313def.inc" ; AT90S2313 ;.include "2323def.inc" ; AT90S2323 ;.include "2343def.inc" ; AT90S2343 ;.include "4414def.inc" ; AT90S4414 ;.include "4433def.inc" ; AT90S4433
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PDF
UserManualForTTL-WiFi.pdf
data bit, parity check, stop bits, and/or subcontracting time; Support baud rate (bps): 300/600/1200/2400/4800/9600/19200/38400/57600/74800/115200/ 230400/460800/921600/1843200/3686400; Support AP enable, self-defined SSID/password, self-defined IP and network duration; Automatically scan the peripheral
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PDF
ErklearungDriverSimulation.pdf
Transient, and Noise analyses. * Most specs, including: propgation delays, rise times, fall times, max sink/source current, * input thresholds, voltage ranges, supply current, ... , etc. * Temperature effects for Ibias, Iquiescent, output current, output * resistance,....,etc. * * © 2009 Microchip Technology
in „Spice Simulation von Treiber TC4229“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
24lc32a.pdf
supply with operation down to 2.5V PDIP - Maximum write current 3 mA at 6.0V - Standby current 1 A max at 2.5V 2 A0 1 8 Vcc • 2-wire serial interface bus,compatible 2 • 100 kHz (2.5V) and 400 kHz (5V) compatibility A1 2 L 7 WP • Self-timed ERASE and WRITE cycles 3 • Power on/off data protection circuitry
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EE42_core_15-z.pdf
Effective parameter Electrical characteristics Part No. C1 Ae e Ve AL-value (nH/N )∗ Core loss (W) max. Weight –1 2 3 100kHz, 200mT, (g) (mm ) (mm ) (mm) (mm ) Without air gap With air gap 100°C PC40EI12.5-Z 1.48 14.4 21.3 308 1200±25% 63±7% 0.12 1.9 100±10% 80±7% PC40EI16-Z 1.75 19.8 34.6 685 1100±25%
in „Resonanzkoverter: Tank dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_IVT-S_V1.02.pdf
(max. time) 5min ±120 ±320 ±730 ±1100 ±2700 A 30s ±200 ±430 ±860 ±1400 ±3200 A 10s ±300 ±600 ±1000 ±2000 ±4300 A 1s ±900 ±1600 ±2700 ±5500 ±11300 A 200ms ±2000 ±3600 ±6000 ±12000 ±24000 A 5.3.Current measurement
in „Strommessung bis 60V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
widap_electronic_components_MAB.pdf
) * for KP/MKP P=5; 7.5mm and L=10.5mm:Tmax. = 250°C for 3s Pre-heating: it must be made at +110°C max. for 1 min. max. (+100°C max. for KP/ MKP units with leads pitch P≤ 7.5mm or axial units with body length L≤ 10.5mm). Avoid excessive thermal stress which mayresult in the capacitors damage, inparticular
in „Besserer Kondensator gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
amd_functional_datasheet.pdf
corresponding to this voltage. 7. For example, the IDDslew1 calculation for a 1.2-GHz part is (.0583 x 1200)µ=s.9.96 A/ 8. The processor’s VID[4:0] outputs select VID_PON nom before PWROK is asserted. Transients up to VDD_max are allowed. 9. VDDIO_ac and VTT_ac parameters are measured +/- 1ns of all data
in „Am3 Mainboard Vcore instabil wenn kalt“ · PC Hard- und Software ·
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PDF
UBN30_MODBUS.pdf
NUMBER OF EXTERNAL MODULES * 0=none 1=EM80A (8 analog outputs) $E015 1 NUMBER OF HARMONICS $0A66 2 MAX MEMORY SIZE OF MIN/AVG/MAX RECORDING $0A68 2 MEMORY SIZE OF THE CURRENT MIN/AVG/MAX RECORDING $0A9B 2 MAX MEMORY SIZE OF DAILY ENERGY COUNTERS RECORDING $0A9D 2 MEMORY SIZE OF THE CURRENT DAILY ENERGY
in „[V] Digitalzähler“ · Markt ·
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PDF
INA114.pdf
14 INA114 INA14 Precision INSTRUMENTATION AMPLIFIER DESCRIPTION FEATURES LOW OFFSET VOLTAGE: 50 V max The INA114 is a low cost, general purpose instrumen- tation amplifier offering excellent accuracy. Its versa- LOW DRIFT: 0.25 V/ °C max tile 3-op amp design and small size make it ideal for a LOW INPUT
in „Differnezverstärker für Strommessung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
14 INA114 INA14 Precision INSTRUMENTATION AMPLIFIER DESCRIPTION FEATURES LOW OFFSET VOLTAGE: 50 V max The INA114 is a low cost, general purpose instrumen- tation amplifier offering excellent accuracy. Its versa- LOW DRIFT: 0.25 V/ °C max tile 3-op amp design and small size make it ideal for a LOW INPUT
in „Messen von Mikrofonpegeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-3080-Avago.pdf
0x14 SROM_Enable W 0x00 0x15 Reserved 0x16 Reserved 0x17 Reserved 0x18 Reserved 0x19 Frame_Period_Max_Bound Lower R/W 0xE0 0x1a Frame_Period_Max_Bound_Upper R/W 0x2E 0x1b Frame_Period_Min_Bound_Lower R/W 0x7E 0x1c Frame_Period_Min_Bound_Upper R/W 0x0E 0x1d Shutter_Max_Bound_Lower R/W 0x00 0x1e Shutter_Max_Bound_Upper
in „ADNS3080 Steuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
Power – Watts Volts Trigger Pulse (mm) (mm) (mm) (mm) Ko 0.5 Const. 0.5 Convection Forced V min V max kV msec Ohms-Amps Watts (sec) Air 5 13 150 275 7.14/13 14.8 3.90 x 10 919 1838 900 3150 20 1.2 5 13 200 325 7.14/13 19.7 5.20 x 10 1225 2450 1100 3850 20 1.6 5 13 250 375 7.14/13 24.6 6.50 x 10 1532
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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Perkin_Elmer_Flash___Arc_Tubes.pdf
Power – Watts Volts Trigger Pulse (mm) (mm) (mm) (mm) Ko 0.5 Const. 0.5 Convection Forced V min V max kV msec Ohms-Amps Watts (sec) Air 5 13 150 275 7.14/13 14.8 3.90 x 10 919 1838 900 3150 20 1.2 5 13 200 325 7.14/13 19.7 5.20 x 10 1225 2450 1100 3850 20 1.6 5 13 250 375 7.14/13 24.6 6.50 x 10 1532
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