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Datasheet_ILI9225DS_V022.pdf
4R RAP49 AVP50 RGP27 GVP27 5R RGN27 GVN27 4R RAP50 5R RGP28 GVP28 4R RAN49 AVN50 5R RGN28 GVN28 AVP51 5R RGP29 GVP29 4R RAN50 AVN51 5R RGN29 GVN29 4R RAP51 AVP52 5R RGP30 GVP30 4R RAN51 AVN52 5R RGN30 GVN30 4R RAP52 AVP53 5R RGP31 GVP31 4R RAN52 AVN53 5R RGN31 GVN31 4R RAP53 AVP54 4R RAN53 AVN54 4R RAP54
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_IVT-S_V1.02.pdf
interval of 6 ms. In this case the sensor sends a current result every 6 ms, and the voltage result U1, U2 and U3 every 6 ms, as well. 5 ms 10 ms 5 ms 15 ms CAN U U U U U U U U U U U messages I 1 I 1 2 I 1 3 I 1 2 I 1 I 1 2 3 5 ms 10 ms 15 ms 20 ms 25 ms 30 ms t Figure 10: Four channels; different measure interval Configuration condition (Figure 10): Four channels are configured: Current channel (5ms interval), Voltage channel
in „Strommessung bis 60V“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
GLCD.c
0x0090, 0x0010); LCD_WriteReg(0x0092, 0x0600); LCD_WriteReg(0x0007,0x0021); LCD_Delay(5); /* delay 50 ms */ LCD_WriteReg(0x0007,0x0061); LCD_Delay(5); /* delay 50 ms */ LCD_WriteReg(0x0007,0x0133); /* 262K color and display ON */ LCD_Delay(5); /* delay 50 ms */ } else if(DeviceCode==0x9919) { /* POWER ON
in „STM32 24Bit Bmp nach 565RGB Format“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GLCD.c
0x0090, 0x0010); LCD_WriteReg(0x0092, 0x0600); LCD_WriteReg(0x0007,0x0021); LCD_Delay(5); /* delay 50 ms */ LCD_WriteReg(0x0007,0x0061); LCD_Delay(5); /* delay 50 ms */ LCD_WriteReg(0x0007,0x0133); /* 262K color and display ON */ LCD_Delay(5); /* delay 50 ms */ } else if(DeviceCode==0x9919) { /* POWER ON
in „STM32 24Bit Bmp nach 565RGB Format“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GLCD.c
0x0090, 0x0010); LCD_WriteReg(0x0092, 0x0600); LCD_WriteReg(0x0007,0x0021); LCD_Delay(5); /* delay 50 ms */ LCD_WriteReg(0x0007,0x0061); LCD_Delay(5); /* delay 50 ms */ LCD_WriteReg(0x0007,0x0133); /* 262K color and display ON */ LCD_Delay(5); /* delay 50 ms */ } else if(DeviceCode==0x9919) { /* POWER ON
in „STM32 24Bit Bmp nach 565RGB Format“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Shruthi2_102.txt
; int value = pot_temp; if (value < 10) { disp.setCursor(x + 6, y); disp.print(value); disp.print("ms"); } else if (value < 100) { disp.setCursor(x + 4,y); disp.print(value); disp.print("ms"); } else if (value < 1000) { disp.setCursor(x, y); disp.print(value); disp.print("ms"); } else if (value < 10000
in „Teensy Synth "Shruthi 2"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP320412-bitA-DConverterDatasheet.pdf
3.99 Overall Length D .337 .342 .347 8.56 8.69 8.81 Chamfer Distance h .010 .015 .020 0.25 0.38 0.51 Foot Length L .016 .033 .050 0.41 0.84 1.27 Foot Angle φ 0 4 8 0 4 8 c Lead Thickness .008 .009 .010 0.20 0.23 0.25 Lead Width B .014 .017 .020 0.36 0.42 0.51 Mold Draft Angle Top α 0 12 15 0 12 15 Mold
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PDF
OP184_284_484.pdf
for C2. Off/on transition ThefiltersectionusesanOP484inaTwin-Tconfigurationwhose time is less than 1 ms, while the on/off transition is longer, but frequency selectivity is very sensitive to the relative matching of less than 10 ms. the capacitors and resistors in the twin-T section. Mylar is the 3 V,
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0.96-inch_OLED_screen_12864_specifications.pdf
e o . . edi St cat no C 1 O i o o s l 1 0 eul G 0 e U l T e ng U n i A G D edi St cat no C xa M mm51. 0=t mm2. 0=t mm360. 0x8x51 l epa Tevo me R reziral oP B8131# M3 v r e p ur r a e i t S 6 u C 5 2-R0.4± 0.05 0 SS V ) 3 H MDC V 3 1 " FE RI 0 7 D ± 6 l 5 DD 0 e e r . e 3 DD 0 i i z 0 x 2 D W l S a A
in „Display von I-Radio wurde langsam immer dunkler.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0.96-inch_OLED_screen_12864_specifications.pdf
e o . . edi St cat no C 1 O i o o s l 1 0 eul G 0 e U l T e ng U n i A G D edi St cat no C xa M mm51. 0=t mm2. 0=t mm360. 0x8x51 l epa Tevo me R reziral oP B8131# M3 v r e p ur r a e i t S 6 u C 5 2-R0.4± 0.05 0 SS V ) 3 H MDC V 3 1 " FE RI 0 7 D ± 6 l 5 DD 0 e e r . e 3 DD 0 i i z 0 x 2 D W l S a A
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
0.96-inch_OLED_screen_12864_specifications.pdf
e o . . edi St cat no C 1 O i o o s l 1 0 eul G 0 e U l T e ng U n i A G D edi St cat no C xa M mm51. 0=t mm2. 0=t mm360. 0x8x51 l epa Tevo me R reziral oP B8131# M3 v r e p ur r a e i t S 6 u C 5 2-R0.4± 0.05 0 SS V ) 3 H MDC V 3 1 " FE RI 0 7 D ± 6 l 5 DD 0 e e r . e 3 DD 0 i i z 0 x 2 D W l S a A
in „Kleine Frage zu TWI bzw. I²C Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Allvision_0_96_inch_OLED_128x64_SSD1306.pdf
e o . . edi St cat no C 1 O i o o s l 1 0 eul G 0 e U l T e ng U n i A G D edi St cat no C xa M mm51. 0=t mm2. 0=t mm360. 0x8x51 l epa Tevo me R reziral oP B8131# M3 v r e p ur r a e i t S 6 u C 5 2-R0.4± 0.05 0 SS V ) 3 H MDC V 3 1 " FE RI 0 7 D ± 6 l 5 DD 0 e e r . e 3 DD 0 i i z 0 x 2 D W l S a A
in „Display"fehler" bei OLED Module IIC I2C 128x64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Allvision_0_96_inch_OLED_128x64_SSD1306.pdf
e o . . edi St cat no C 1 O i o o s l 1 0 eul G 0 e U l T e ng U n i A G D edi St cat no C xa M mm51. 0=t mm2. 0=t mm360. 0x8x51 l epa Tevo me R reziral oP B8131# M3 v r e p ur r a e i t S 6 u C 5 2-R0.4± 0.05 0 SS V ) 3 H MDC V 3 1 " FE RI 0 7 D ± 6 l 5 DD 0 e e r . e 3 DD 0 i i z 0 x 2 D W l S a A
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S8254A_E.pdf
CCTpincapacitance0.1F 0.5 1.0 1.5 s 3 Overdischargedetection delaytime DL CDTpincapacitance0.1F 50 100 150 ms 3 Overcurrentdetection t CDTpincapacitance0.1F 5 10 15 ms 3 delaytime1 IOV1 Overcurrentdetection tIOV2 0.4 1 1.6 ms 3 delaytime2 Overcurrentdetection delaytime3 tIOV3 FETgatecapacitance2000pF 100
in „TP4056 zuwarm (72+C) dumm verlötet und schlechte Idee ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S8254A_E-23610.pdf
CCTpincapacitance=0.1μF 0.5 1.0 1.5 s 3 Overdischargedetection DL CDTpincapacitance=0.1μF 50 100 150 ms 3 delaytime Overcurrentdetection tIOV1 CDTpincapacitance=0.1μF 5 10 15 ms 3 delaytime1 Overcurrentdetection delaytime2 tIOV2 ⎯ 0.4 1 1.6 ms 3 Overcurrentdetection tIOV3 FETgatecapacitance=2000pF 100
in „Wie funktioniert so ein Protection Board?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ABLIC-S-8254A.pdf
CCTpincapacitance0.1F 0.5 1.0 1.5 s 3 Overdischargedetection delaytime DL CDTpincapacitance0.1F 50 100 150 ms 3 Overcurrentdetection t CDTpincapacitance0.1F 5 10 15 ms 3 delaytime1 IOV1 Overcurrentdetection tIOV2 0.4 1 1.6 ms 3 delaytime2 Overcurrentdetection delaytime3 tIOV3 FETgatecapacitance2000pF 100
in „BMS an Li-Ionen Akkupack 4S1P funktioniert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Funkschau_Inhalt_1980-1990.pdf
500 DM angekündigt 85/18/64 Btx; Grafikfähiger Btx-Decoder aus Kronach 85/1/62 Btx-Nachrichten 85/1/51, 2/37, 3/47, 4/51, 5/44, 8/103, 9/45, 10/55, 11/74, 15/53, 17/50,18/64,19/57,21/62,24/68,25/58,26/40 Btx; Planungsunterlagen aus dem Postministerium gefragt 85/14/55 Btx; Tastatur als Fernbedienung (
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PDF
top247.pdf
with 10ms duration. In addition to start-up, soft-start is also “active-on” (Figures 22, 29 and 36) while a transistor or an activated at each restart attempt during auto-restart and when optocoupler output connected
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
top247.pdf
with 10ms duration. In addition to start-up, soft-start is also “active-on” (Figures 22, 29 and 36) while a transistor or an activated at each restart attempt during auto-restart and when optocoupler output connected
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DOGM162W-A.asm
---------------------------------------------------------------------------------- ; Wartezeit 0.1 ms bei 4 MHz wait01ms: push R16 push R17 ldi R17 , 1 ; für 0.1 ms = 1 w01ms1: ldi R16 , 123 w01ms2: dec R16 brne w01ms2 dec R17 brne w01ms1 pop R17 pop R16 ret ;----------------------------------------------------------------------------------------- ; Wartezeit 5 ms bei 4 MHz wait5ms: push R16 push R17 ldi R17 , 50 ; für 1 ms = 10 w5ms1: ldi R16 , 123 w5ms2: dec R16 brne w5ms2 dec R17 brne w5ms1 pop R17 pop R16 ret ;----------------------------------------------
in „DVM mit DOGM162W-A, ATMEGA8A, AVRASM“ · Projekte & Code ·
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PDF
BMP581.pdf
Output data rate in NORMAL mode 0.125 240 Hz (ODR) range Conversion time conv_p OSR = 1x -5% 1.0 +5% ms pressure OSR = 2x -5% 1.7 +5% ms OSR = 4x -5% 2.9 +5% ms OSR = 8x -5% 5.4 +5% ms OSR = 16x -5% 10.4 +5% ms OSR = 32x -5% 20.4 +5% ms OSR = 64x -5% 40.4 +5% ms OSR = 128x -5% 80.4 +5% ms Conversion time conv_t OSR = 1x -5% 1.0 +5% ms temperature OSR = 2x -5% 1.1 +5% ms OSR = 4x -5% 1.5 +5% ms OSR = 8x -5% 2.1 +5% ms OSR = 16x -5% 3.3 +5% ms OSR = 32x -5% 5.8 +5% ms OSR = 64x -5% 10.8 +5% ms OSR = 128x -5% 20.8 +5% ms © Bosch Sensortec
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bfr183.pdf
V, ZS= Z Sopt f = 900 MHz - 0.9 - f = 1.8 GHz - 1.4 - Power gain, maximum stable 1) G - 17.5 - dB ms IC = 15 mA, VCE = 8 V, ZS= Z Sopt, L = ZLopt, f = 900 MHz 1) Power gain, maximum available G ma - 11.5 - dB I = 15 mA, V = 8 V, Z = Z , Z = Z , C CE S Sopt L Lopt f = 1.8 GHz Transducer gain |S 21e2
in „Induktivität SOT23“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1-buz171.pdf
, T = 25°C parameter: D = t / T C p -102 101 K/W p = 90.0µs A 100 µs I Z D D thJC 100 S/ -101 VD 1 ms )= So RD 10 -1 10 ms D = 0.50 0.20 0 -10 0.10 DC 0.05 10 -2 0.02 single pulse 0.01 -10-1 0 1 2 10 -3 -7 -6 -5 -4 -3 -2 -1 0 -10 -10 V -10 10 10 10 10 10 10 10 s 10 V t DS p Semiconductor Group 5 07/96
in „IRF9Z34N als Ersatz für BUZ171“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LC_DISPLAY_20X4.pdf
nm Y/G 2.3 OPTICAL CHARACTERISTICS ITEM SYMBOL CONDITION MIN. TYP. MAX. UNIT Contrast K θ=0°, Φ=0° 51 -- -- Deg. Viewing angle K=5, Φ=0° θ2θ1=30 -- -- Deg. θ K=5, θ=10° Φ=±30 -- -- Deg. Response Time TON 25°C -- -- 250 ms TOFF 25°C -- -- 250 ms Revision: 1.0 Author: MB/SK Date: 02.10.2009 Page: 4/13
in „Set DDRAM Address am 4 zeiligen LCD durch ATMega 32 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC2004_bei_robotikhardware.de.pdf
Reference ViewAngle θ C>2.0, ∅ = 0° 40° - - Notes 1 & 2 Contrast Ratio C θ = 5°, ∅ = 0° 5 7 - Note 3 - 200ms 300ms Response Time(rise) tr θ = 5°, ∅ = 0° Note 4 - 150ms 225ms Response Time(fall) tf θ = 5°, ∅ = 0° Note 4 PC2004LRU-CWA-HDHQ Rev.0 (DK) Page5 Note 1: Definition of angles θ and ∅ Note 2: Definition
in „Atmega2560 8 Bit Steuerung LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC2004LRU-CWA-HDHQ_4x20.pdf
Reference ViewAngle θ C>2.0, ∅ = 0° 40° - - Notes 1 & 2 Contrast Ratio C θ = 5°, ∅ = 0° 5 7 - Note 3 - 200ms 300ms Response Time(rise) tr θ = 5°, ∅ = 0° Note 4 - 150ms 225ms Response Time(fall) tf θ = 5°, ∅ = 0° Note 4 PC2004LRU-CWA-HDHQ Rev.0 (DK) Page5 Note 1: Definition of angles θ and ∅ Note 2: Definition
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PDF
CAT4104.pdf
ILED= 80 mA 440 TF LED fall time ILED= 175 mA 360 ns ILED= 80 mA 320 TLO EN/PWM low time 1 ms T HI EN/PWM high time 5 ms T PWRDWN EN/PWM low time to shutdown delay 4 8 ms THI TPWRDWN TLO EN/PWM SHUTDOWN POWERDOWN SHUTDOWN 0 mA TP2 T 1.2 V F ILED+ 100 T PS TP1 TR RSET 90% LED CURRENT 50% 50% 10%
in „ATtiny85, energiesparende Schaltung mit PIR und LED FadeIn/FadeOut (Newbie)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4x20_Display.pdf
___ ___ TR ___ ___ RESPONSE TIME(RISE) 150 250 ms RESPONSE TIME(FALL) TF ___ ___ 150 250 ms DEFINITION OF ANGLE & DEFINITION OF VIEWING ANGLE 1 & 2 o 2 t R Y ( = 180 ) 1 s r n o C 1.4 X X` Y ( = 0 ) 1 2 Viewing Angle DEFINITION OF CONTRAST RATIO K(=
in „Leerzeichen beim Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test.asm
;$NOMOD51 ;$INCLUDE (89V51RD2.MCU) ;$TITLE(CF_FAT) $MOD51RD2 $TITLE(CF_FAT) $PAGEWIDTH(132) $NODEBUG $OBJECT $NOPAGING; $SYMBOLS ;******************************************************************************
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PDF
ak4528vm-en-datasheet.pdf
-80 0.4 -90 0.2 -100 0 127 111 95 79 63 47 31 15 Input Data(Level) Figure 10. ATT characteristics MS0011-E-03 2013/03 - 22 - [AK4528] Internal Data Gain (dB) Step width (dB) (DATT) 127 8031 0 - 126 7775 −0.28 0.28 125 7519 −0.57 0.29 : : : : 112 4191 −5.65 0.51 111 3999 −6.06 0.41 OATT 110 3871 −6.34
in „Daisy: Eingebettete Plattform für Audioprojekte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0108b.pdf
0 6 S57 6 1 5 S8 0 7 8 4 S56 B S9 1 6 S55 8 3 S10 1 6 S54 9 2 S11 0 1 S53 S12 2 6 S52 1 0 S13 2 5 S51 2 9 S14 3 8 S50 S15 2 5 S49 4 7 S16 2 5 S48 5 6 S17 6 5 S18 S47 2 5 S46 7 4 S19 2 5 S45 8 3 S20 9 2 S44 S21 0 1 S43 S22 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0
in „Grafik LCD: Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1990a.pdf
F3 SIZE F5 SIZE PART TEMP RANGE PIN-PACKAGE 3.10mm 5.89mm DS1990A-F5+ -40°C to +85°C F5 iButton 0.51mm 0.51mm BRANDING DS1990A-F3+ -40°C to +85°C F3 iButton ® 16.25mm DS1990AA-F5+ -40°C to +85°C F5 iButton i DS1990AA-F3+ -40°C to +85°C F3 iButton 89 01 Y00000FB®52B5 +Denotes a lead(Pb)-free/RoHS-compliant
in „V 30 iButton DS1990A“ · Markt ·
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Datei
Sht11_neu.a51
$ ERRORPRINT $ NOSYMBOLS $ NOMOD51 $ NOLIST $ INCLUDE (REG515.INC) $ INCLUDE (MACRO.INC) $ LIST ORG 4100H SCL EQU P5.0 SDA EQU P5.1 V24init mov a,#0000$0001B sendadez start: mov a,#00 CALL I2C_BUS_START clr c mov R5,#8 ;Anzahl der Bits
in „Tips für i2c?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PI_Regler1.c
2147483000; //nur alle 64 us Stellwert neu rechnen da sonst zu schnell für PWM (Timer1)??? if ((isr_count%51) == 0) { // P-Anteil I-Anteil Stellwert = (K_R * error) + (0.25 * K_R * error_sum); //0.25 = T_abtast / T_nachstell if (Stellwert > 250) OCR1B = 250; //voll aufdrehen else if (Stellwert <= 20) OCR1B
in „Stromregelung für Gleichstrommotor“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PI_Regler1.c
2147483000; //nur alle 64 us Stellwert neu rechnen da sonst zu schnell für PWM (Timer1)??? if ((isr_count%51) == 0) { // P-Anteil I-Anteil Stellwert = (K_R * error) + (0.25 * K_R * error_sum); //0.25 = T_abtast / T_nachstell if (Stellwert > 250) OCR1B = 250; //voll aufdrehen else if (Stellwert <= 20) OCR1B
in „Stromregelung für Gleichstrommotor - Abtastzeit“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
main.pdf
Eingabe); 47 48 if(Position <= 3) 49 { 50 if((Eingabe != 13) && ((Eingabe >= 48) && (Eingabe <= 57))) 51 { 52 Duty[Position] = Eingabe; 53 Position++; 54 } 55 else if (Eingabe == 13) 56 { 57 zahl1 = atof(Duty); 58 if (zahl1 <=100) 59 { 60 printf("\n \rDas Duty ist: %2.0f (in Prozent) \n \r",zahl1); 61 Position
in „PWM programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Marq6425_mrk.pdf
Übergangswiderstand (Neuzustand) < 250 mOhm n Isolationswiderstand (Neuzustand) > 100 MOhm t T Prellzeit < 5 ms Kontaktabstand < 3 mm e Temperaturbereich -20 °C ... +70 °C l h Kontaktmaterial Au p a h Material Betätiger P OM S G ehäuse PBTP e A nschlüsse verzinnt a c A nschlussart L eiterplattenanschluss l n S
in „[S] Custom Tastaturkappen mit individueller Beschriftung“ · Markt ·
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Datei
Displaytest_1.asm
Befehle 5 ms ---------------------- delay5ms: ;5ms Pause ldi counter2, 50 ;50 * 0,1ms = 5ms delay1: ;0,1ms Pause ldi counter1, 100 ; delay1_: nop ;0,25 mysek Pause dec counter1 ;0,25 mysek Pause brne delay1_ ;0,50 mysek Pause = 1mysek * 100 = 0,1ms dec counter2 ; brne delay1 ; ret ;Und wieder zurück ;DISPLAY-Initialisierung: muss ganz am Anfang des Programms aufgerufen werden init_lcd: ldi counter3,3 ;3* 5ms = 15ms powerupwait: ;15ms warten auf
in „Aufzeichen von Daten PC Tast in Logfile“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dtmf-decoding-encoding.txt
** * 1500 (1500.00000) 45.000 (45) 0.000 * 1633 (1633.33333) 48.990 (49) 0.010 * 1700 (1700.00000) 51.000 (51) 0.000 * 2400 (2400.00000) 72.000 (72) 0.000 * 2600 (2600.00000) 78.000 (78) 0.000 * * notice, 697 and 700hz are indestinguishable (same K) * all other tones have a seperate k value. * these
in „CTCSS decoder / encoder“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3021M.pdf
MOC3010M/1M/2M 250 V o MOC3020M/1M/2M/3M 400 s l ITSM Peak Repetitive Surge Current All 1 A t (PW = 1ms, 120pps) r P Total Power Dissipation @ 25°C Ambient All 300 mW s D r Derate above 25°C 4 mW/°C a Note: c r 1. Isolation surge volISO, is an internal device dielectric breakdown rating. For this test,
in „Blitzgerät an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K5011627391.pdf
55 TA3 RS 2 47 TA2 TA5 3 54 TA2 TA5 3 46 GND TA6 4 53 GND TA6 4 45 TA1 GND 5 52 TA1 GND 5 44 TA0 6 51 6 43 N/C TB0 7 50 TA0 TB0 7 42 TB1 8 49 TD0 TB1 8 41 LVDS GND TD2 LVDS GND VCC TA- VCC 9 48 TA- TB2 9 40 TA+ TD3 10 47 TA+ TB3 10 39 TB- TB2 11 46 TB- GND 11 38 TB+ TB3 12 45 TB+ TB4 12 37 LVDS VCC GND
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Y1_Kondensator.pdf
or 12.5 VY1222M37Y5VQ6### 3300 11.0 VY1332M43Y5VQ6### 3900 12.0 VY1392M47Y5VQ6### 4700 13.0 VY1472M51Y5VQ6### Notes • Straight leads available on request • Coating extension DR valid for straight leads only (1)± 10 % available on request Revision: 16-Sep-2021 2 Document Number: 28537 For technical questions
in „Y1 Kondensator welche Spannung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ILI9325.pdf
every scan cycle. ISC3 ISC3 ISC3 ISC3 Scan Cycle f =60 Hz FLM 0 0 0 0 0 frame - 0 0 0 1 1 frame 17ms 0 0 1 0 3 frame 50ms 0 0 1 1 5 frame 84ms 0 1 0 0 7 frame 117ms 0 1 0 1 9 frame 150ms 0 1 1 0 11 frame 184ms 0 1 1 1 13 frame 217ms 1 0 0 0 15 frame 251ms 1 0 0 1 17 frame 284ms 1 0 1 0 19 frame 317ms 1 0 1 1 21 frame 351ms 1 1 0 0 23 frame 384ms 1 1 0 1 25 frame 418ms 1 1 1 0 27 frame 451ms 1 1 1 1 29 frame 484ms The information contained herein is the exclusive property of ILI Technology Corp. and shall not be distributed
in „Programmierung von ILI9325 TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9325DS_V0.35.pdf
every scan cycle. ISC3 ISC3 ISC3 ISC3 Scan Cycle f =60 Hz FLM 0 0 0 0 0 frame - 0 0 0 1 1 frame 17ms 0 0 1 0 3 frame 50ms 0 0 1 1 5 frame 84ms 0 1 0 0 7 frame 117ms 0 1 0 1 9 frame 150ms 0 1 1 0 11 frame 184ms 0 1 1 1 13 frame 217ms 1 0 0 0 15 frame 251ms 1 0 0 1 17 frame 284ms 1 0 1 0 19 frame 317ms 1 0 1 1 21 frame 351ms 1 1 0 0 23 frame 384ms 1 1 0 1 25 frame 418ms 1 1 1 0 27 frame 451ms 1 1 1 1 29 frame 484ms The information contained herein is the exclusive property of ILI Technology Corp. and shall not be distributed
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
ILI9325DS_V0.28.pdf
every scan cycle. ISC3 ISC3 ISC3 ISC3 Scan Cycle f =60 Hz FLM 0 0 0 0 0 frame - 0 0 0 1 1 frame 17ms 0 0 1 0 3 frame 50ms 0 0 1 1 5 frame 84ms 0 1 0 0 7 frame 117ms 0 1 0 1 9 frame 150ms 0 1 1 0 11 frame 184ms 0 1 1 1 13 frame 217ms 1 0 0 0 15 frame 251ms 1 0 0 1 17 frame 284ms 1 0 1 0 19 frame 317ms 1 0 1 1 21 frame 351ms 1 1 0 0 23 frame 384ms 1 1 0 1 25 frame 418ms 1 1 1 0 27 frame 451ms 1 1 1 1 29 frame 484ms The information contained herein is the exclusive property of ILI Technology Corp. and shall not be distributed
in „Chinesisches TFT LCD zum Schnäppchenpreis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APT_Communications_Protocol.pdf
MGMSG_RACK_REQ_STATUSBITS 0x0226 50 MGMSG_RACK_GET_STATUSBITS 0x0227 50 MGMSG_RACK_SET_DIGOUTPUTS 0x0228 51 MGMSG_RACK_REQ_DIGOUTPUTS 0x0229 51 MGMSG_RACK_GET_DIGOUTPUTS 0x0230 51 MGMSG_PZ_SET_POSCONTROLMODE 0x0640 155 MGMSG_PZ_REQ_POSCONTROLMODE 0x0641 155 MGMSG_PZ_GET_POSCONTROLMODE 0x0642 155 MGMSG_PZ_SET_OUTPUTVOLTS
in „Thorlabs Laser-Source mit über FTDI232BM ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66766R.PDF
automatically reinitialized when the HD66766R is reset. The reset input must be held for at least 200 ms. Do not access the GRAM or initially set the instructions until the R-C oscillation frequency is stable after power has been supplied (10 ms). Instruction Set Initialization: 1. Start oscillation executed
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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txb0108.pdf
operating conditions table. (4) The package thermal impedance is calculated in accordance with JESD 51-7. (5) The package thermal impedance is calculated in accordance with JESD 51-5. Copyright © 2006–2010, Texas Instruments Incorporated Submit Documentation Feedback 3 Product Folder Link(s): TXB0108
in „Logic Level Converter / Adafruit 8 Channel“ · Analoge Elektronik und Schaltungstechnik ·
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349_529-15.pdf
3 2 2 Q a e g C WW 0 0 1 2 s S ) e e / k b 5 h n e e z ) o l e e e e d d - o 2 0 e e a m c e 2 0 n 51 – u 0 1 R O u p 0 C g n r 2 5 b r 2 l 6 2 O Q ü l C a K u 4 A 3 t ) 1 B 4 r n i b k V 0 n 3 U 5 n g l a m / ) t - g s - )) P - 7 a F 3 1 5 » 5 u A D e S R b p ° i n 0 b 2 0 g t a h I Q r o C l c m s
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
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NORMA_D5155_Instruction_Manual.pdf
channeL. During hoLd operation, the underrange or overrange message can be polled by the Interface 3 ms after applying a measuring vaLue.0n caLling the internaL calibraEion program, accurate triangular signals (constant currents at approx. 70 Hz) are appLied to the transformer outputs, correcting values
in „Power Analyzer "Norma D5155" - Bedienungsanleitung oder Bedienhinweise“ · Mikrocontroller und Digitale Elektronik ·