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PDF
ECW1J-64182.pdf
........................96.5Sn/3.0Ag/0.5Cu solid wire or no-clean rosin cored wire 370 °C (700 °F) max. for 3 seconds Wave Soldering ...........................................................................................................................................96.5Sn/3.0Ag/0.5Cu solder with no-clean flux 260 °C (500 °F) max. for 5 seconds Wash processes.........................................................................................................................................................................
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DE_16DE0001_TECHNIK_FEHLERSTROMSCHUTZSCHALTER.pdf
Bemessungsstrom 16 A, 25 A, 40 A, 63 A 25 A 40 A 63 A 80 A 100 A 125 A 40 A 63 A Bemessungsspannung 127/230 V~ -10% / +6% 230 / 400 V~ -10% / +6% min. Betriebsspannung: 0 V zu Erfassung von Fehlerströmen (netzspannungs- Typ A/AC unabhängig) zu Erfassung von Fehlerströmen 30 V AC Typ B Normalausführung
in „Fi-Schutzschalter nur für die Hälfte der Wohnung?“ · Haus & Smart Home ·
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PDF
LM240WU2-SLB4.pdf
ON = High 2.0 - 5.0 V Lamp OFF =Low 0.0 - 0.8 V Lamp Voltage Vout Vin=24V, Vbr=max 750 950 1150 Vrms Io(Min) Vin=24V, Vbr=min 2.5 - - mArms Lamp Current Io(Max) Vin=24V, Vbr=max 3.7 4.2 4.7 mArms Brightness Adj VBR Vin=24V 0 - 3.3 V Frequency Fo Vbr=max 40 44 48 KHz Burst Frequency Fb Vin=24V, Vbr=min - 240 - Hz Open Lamp No load Voltage Vopen 1300 - - Vrms Vin=21.6V, Vbr=max Asymmetry Ratio Vin=24V - - 10.0 % 3 Distortion Ratio Vin=24V 1.27 - 1.55 3 No load Striking Time Ts 1.0 - 2.0 Sec Vin=21.6V, Vbr=max Efficiency η Vin=24V Vbr=max 80 % LAMP : Life time 50,000 Hrs 4
in „Helligkeitsregelung mit pwm am ccfl-inverter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HC4060.pdf
(ground = 0 V). Symbol Parameter Conditions 25 °C −40 °C to +85 °C −40 °C to +125 °C Unit Min Typ Max Min Max Min Max 74HC4060 V IH HIGH-level MR input input voltage VCC = 2.0 V 1.5 1.3 - 1.5 - 1.5 - V VCC = 4.5 V 3.15 2.4 - 3.15 - 3.15 - V V = 6.0 V 4.2 3.1 - 4.2 - 4.2 - V CC RS input VCC = 2.0 V 1.7
in „Randsportart“ · Offtopic ·
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PDF
PCF7922ATT.pdf
a 32 bit pattern located in any page in the range 0 to 126. RESERVED / TRIMMING Page 126 DCFG Page 127 bit 31 bit 0 MSB LSB 0 7 0 7 0 7 0 7 BIT 0H 1H 2H 3H BYTE Figure 10. EEPROM Memory Organization Page 0 holds the device Identifier, IDE, page 126 is reserved and page 127 holds device configuration
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grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
119 59 R780 T 11 23 RP416 T 37 70 C222 T 83 109 C495 T 11 121 C834 T 138 125 R309 T 154 113 R605 T 127 58 R782 T 13 23 RP417 T 33 72 C223 T 94 98 C501 T 36 117 C835 T 153 120 IC405 T 27 87 R310 T 93 75 R606 T 127 60 R783 T 103 44 RP418 T 37 74 C224 T 99 116 C502 T 52 86 C836 T 70 99 IC406 T 27 86 R311
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
life.lst
00 00 [14] 111 ld ix,#0 0013 DD 39 [15] 112 add ix,sp 0015 F5 [11] 113 push af 114 ;life.c:63: k = MAX_ZELLEN; 0016 21 F4 01 [10] 115 ld hl,#0x01F4 0019 E3 [19] 116 ex (sp), hl 117 ;life.c:64: do { 001A 118 00101$: 119 ;life.c:65: x = prng(MAX_X); 001A 21 4F 00 [10] 120 ld hl,#0x004F 001D E5 [11] 121
in „Conways Game of Live zu langsam auf Z80“ · Softwareentwicklung ·
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PDF
ACS712-Datasheet.pdf
ambiAnt, T , and internal leadframe temperAtures, T , provided that the Maximum Junction Temperature, J(max), is not exceeded. 21G = 0.1 mT. 3R forms an RC circuit via the FILTER pin. F(INT) COMMON THERMAL CHARACTERISTICS 1 Min. Typ. Max. Units Operating Internal Leadframe Temperature TA E range –40 – 85
in „ACS712 genauigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Allegro-ACS712.pdf
ambiAnt, T , and internal leadframe temperAtures, T , provided that the Maximum Junction Temperature, J(max), is not exceeded. 21G = 0.1 mT. 3R forms an RC circuit via the FILTER pin. F(INT) COMMON THERMAL CHARACTERISTICS 1 Min. Typ. Max. Units Operating Internal Leadframe Temperature TA E range –40 – 85
in „Schaltung zum Strom messen ohne Widerstand?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ACS712-Datenblatt.pdf
ambiAnt, T , and internal leadframe temperA ures, T , provided that the Maximum Junction Temperature, J(max), is not exceeded. 21G = 0.1 mT. 3R forms an RC circuit via the FILTER pin. F(INT) COMMON THERMAL CHARACTERISTICS 1 Min. Typ. Max. Units Operating Internal Leadframe Temperature TA E range –40 – 85
in „DC Wattmeter 400W 20V 20A selber bauen Assembler ATmega8 Stromsensor ACS712ELC Reichelt“ · Projekte & Code ·
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PDF
an4545-vl6180x-basic-ranging-application-note-stmicroelectronics.pdf
tuning Changing the settings in this section can affect the performance of the overall system. 6.1.1 Max convergence time The SYSRANGE__MAX_CONVERGENCE_TIME {0x1c} register sets an upper limit for the max convergence time. See Figure 10. Figure 10. System timing diagram for a signal ranging measurement The max convergence time is made up of the convergence time and sampling period. By default the max convergence time is set to 49ms during device power-up. Reducing the max convergence time will reduce the
in „STM32F1 Probleme mit Frings I2C-Bus Routine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MITSUBISHI_CV-0MW7B51.pdf
AMP by communication with H/U. DIAG function. (DC-offset detection) SPECIFICATIONS Distortion : 0.5% max at 0.5W Offset Voltage : 50mV max S/N : 55dB min at 0.5W Backup Current : 1mA max Channel Separation : 50dB min at 0.5W Dimensions : 265.8(W) x 220(D) x 54.8(H)mm Residual Output : 0.5mVrms max at Vol.min
in „Verstärker reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sqjq160e.pdf
Siliconix SPECIFICATIONS (T = 25 °C, Cnless otherwise noted) PARAMETER SYMBOL TEST CONDITIONS MIN. TYP. MAX. UNIT Static Drain-source breakdown voltage V DS VGS = 0, D = 250 μA 60 - - V Gate-source threshold voltage V GS(th) VDS = VGS, D = 250 μA 2 3 3.5 Gate-source leakage I V = 0 V, V = ± 20 V - - ± 100
in „Hilfe mit MOSFET Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CSN-A2_User_Manual_commands.pdf
Decimal: 27 55 n1 n2 n3 Hexadecimal: 1B 37 n1 n2 n3 CSN-A2 User manual 48/70 [Description] Set “max heating dots”,” heating time”, “heating interval” n1=0-255 Max printing dots, Unit(8dots),Default:7(64 dots) n2=3-255 Heating time, Unit(10us),Default:80(800us) n3=0-255 Heating interval, Unit(10us),Default:2(20us) The more max heating dots, the more peak current will cost when printing, the faster printing speed. The max heating dots is 8*(n1+1) The more heating time, the more density, but the slower printing speed. If
in „Thermoducker - Density einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an-937_gateDrive.pdf
gate threshold voltage of MOSFETs decreases with temperature. At high temperature it can approacOL(max) specification of the logic driver. Care should be exercised to inTH(min)t the highest operating temperature is greater than VOL(max)of the various logic families in order to guarantee complete turn
in „Gatekapazität (FET)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „Polynom für PTC KTY84-110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEMP1996.PDF
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 227 Philips Semiconductors Temperature
in „Temperatur Sensor KTY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „Spezifikation Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „KTY81-110 ADC WERT -> Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBI5030.pdf
supply voltage 5 ~ 60mA at 5.0V supply voltage z Output current accuracy: between channels: <±3% (max.), and between ICs: <±6% (max.) z Staggered output delay z Maximum data clock frequency: 25MHz z Schmitt trigger input z 3.0V-5.5V supply voltage Product Description MBI5030 is designed for LED video
in „Atmega8+MBI5030+SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
VapeDisplayDriver.h
mit Extra-Rand für sauberes Löschen int x_min = x0 - radius - 1; int y_min = y0 - radius - 1; int x_max = x0 + radius + 1; int y_max = y0 + radius + 1; // Clipping auf Display-Grenzen if (x_min < 0) x_min = 0; if (y_min < 0) y_min = 0; if (x_max >= LCD_WIDTH) x_max = LCD_WIDTH - 1; if (y_max >= LCD_HEIGHT
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KTY-Philips.pdf
0.2 0.05 3.7 0.1 1.65 0.1 0.6 0.1 0.6 0.1 1 0.04 0.3 O 4.5 0.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 2.5 max1) (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 2000 Sep 06 5 Philips Semiconductors Silicon
in „Zwischenwerte vom KTY82-210 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „Atmega168 ADC - Schwankungen/Beeinflussungen vom Nachbarpin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
vysielacieho buffera Ack 12.equ NakBufferBegin =AckBufferBegin-3 ;zaciatok vysielacieho buffera Nak 127 Page: 1 File: USB90S2313.asm 5.4.2003, 18:49:42 12.equ StackBegin =NakBufferBegin-1 ;spodok zasobnika 129 130 131def ConfigByte =R1 ;0=unconfigured state .def backupbitcount =R2 ;zaloha bitcount registra
in „IGORPLUG-USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
vysielacieho buffera Ack 12.equ NakBufferBegin =AckBufferBegin-3 ;zaciatok vysielacieho buffera Nak 127 Page: 1 File: USB90S2313.asm 5.4.2003, 18:49:42 12.equ StackBegin =NakBufferBegin-1 ;spodok zasobnika 129 130 131def ConfigByte =R1 ;0=unconfigured state .def backupbitcount =R2 ;zaloha bitcount registra
in „90s2343 als usb ir empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
vysielacieho buffera Ack 12.equ NakBufferBegin =AckBufferBegin-3 ;zaciatok vysielacieho buffera Nak 127 Page: 1 File: USB90S2313.asm 5.4.2003, 18:49:42 12.equ StackBegin =NakBufferBegin-1 ;spodok zasobnika 129 130 131def ConfigByte =R1 ;0=unconfigured state .def backupbitcount =R2 ;zaloha bitcount registra
in „Per USB mit ATMega32 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
vysielacieho buffera Ack 12.equ NakBufferBegin =AckBufferBegin-3 ;zaciatok vysielacieho buffera Nak 127 Page: 1 File: USB90S2313.asm 5.4.2003, 18:49:42 12.equ StackBegin =NakBufferBegin-1 ;spodok zasobnika 129 130 131def ConfigByte =R1 ;0=unconfigured state .def backupbitcount =R2 ;zaloha bitcount registra
in „Booten auf Knopfdruck mit AT90S23X3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C408A.pdf
Current GND < V I V CC −10 +10 A [4] OS Output Short Circuit Current V CC = Max., OUT = GND −90 mA I Quiescent Power Supply Current V = Max., I = 0 mA Commercial 100 mA CCQ V CC< V , V > V IN IL IN IH Military 125 CC Power Supply Current ICC = CCQ + 1 mA/MHz × (fSI + SO)/2 Capacitance
in „Suche RAM Baustein mit gemeinsamer Daten/Adressleitung und autom. internem Adresshochzähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
69034fe-6.pdf
= 25°C. V = 2.7V to 5.5V, GND = 0V, unless otherwise noted. A SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS ∆fi Initial Frequency Accuracy f = 1.039kHz, V= 3V, CLOAD= 5pF ±0.75 % ∆f Total Frequency Accuracy (Note 7) Single Output Act+ve: Over All Settings+ V 2.7V, LOAD = 5pF 0.5 1.1 % Over All Settings
in „I2C Deadlock beim Senden - LTC6904“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mc33151u.pdf
Range Tstg –65 to +150 ⋅C ELECTRICAL CHARACTERISTICS (VCC = 12 V, for typical valAes T = 25⋅C, for min/max vaAues T is the only operating ambient temperature range that applies [Note 3.], unless otherwise noted.) Characteristics Symbol Min Typ Max Unit LOGIC INPUTS Input Threshold Voltage – High State Logic
in „Mosfett-Driver Art-Kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM24014W.pdf
Tstg Topr Remark MIN. MAX . MIN. MAX. Ambient temperature Note 4 N o t e Note I No condensation Note 2 Note 2 3 d i r e c t ( X / Y / Z ) V i b r a t i o n Shock Note 3 Note 3 6 d i r e c t i o n s Note T a . . . . . . . . .
in „Datenblatt für Sharp LCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
servobremse01.asm
umkehren sbr merker,1<<invers ;und Impulsumkehr anmelden isr_ext_int0_2a: lsl it1 ;Gain-Faktor (0..127) verdoppeln (0..254) ;Skalierung durch Multiplikation clr zh ;oberes Byte leer clr zl ;unteres Byte leer ldi tmp,8 ;8 Bits multi1: ;Multiplikation (zh:zl=it0*it1), dann durch 256, ;indem nur zh verwendet
in „Ich verstehe den Timer0 beim ATtiny 13 nicht.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ISR_XBus3.c
define XBUS_SEND_AUS PORTG &= ~(1<<XBUS_DIR) #define ohne_antwort 0x00 #define mit_antwort 0x01 #define max_FS 128 struct BitVarSO1 { uint8_t halt_verr :1; uint8_t bool2 :1; uint8_t bool3 :1; uint8_t bool4 :1; uint8_t bool5 :1; }statusso1; struct BitVarSystem { uint8_t halt :1; uint8_t an :1; uint8_t aus
in „C Optimierung ISR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dot57_wuerfel.c
} visible = !visible; _delay_ms(50); while(istast2()); _delay_ms(50); } } w1= 0; w2= 2; d57_ascii(127); sfreq= 1; // tieferen Ton fuer wuerfeln einstellen sound= 1; // und Ton einschalten while( ( istast1() )) // solange Taste 1 gedrueckt Wuerfelkombinationen { // mit max. Geschwindigkeit durchzaehlen
in „LED Dot-Matrix 5x7 Mäxle-Würfelspiel / 2er Würfel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Funktionsbeschreibung.pdf
. die Programmversionsnummer enthält. Befehlssatz / Kommandos ♦ 0 – 100 Bewegung Rückwärts ♦ 101 – 127 Reserviert ♦ 128 – 282 Bewegung Vorwärts ♦ 282 – 252 Reserviert für weitere Sonderbefehle ♦ 243 Sonderbefehl Identifizierrungsstring senden ♦ 254 Sonderbefehl Timeout setzen ♦ 255 Sonderbefehl Reset
in „[V] 2-fach ISEL Lineareinheit 300cm mit Zahnriemenantrieb Schrittmotor und Steuerung“ · Markt ·
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Datei
tbf5030_c3a_3.c
duty_pv; if(pwm2_duty_pv > pwm2_max) pwm2_duty_pv = pwm2_duty_pv - 0.1; if(pwm2_duty_pv < pwm2_max && pwm2_duty_pv < pwm2_idle) pwm2_duty_pv = pwm2_max; } } else pwm2_duty_pv = pwm2_duty_pv; //--->> pwm2_duty = (unsigned int)(pwm2_duty_pv
in „Fehler beim Compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LP171WE2-TLA4.pdf
the LCD. Horizontal 381.9 ± 0.3mm Outline Dimension Vertical 244.3 ± 0.3mm Depth 6.2mm(Typ.),6.5mm(Max.) Horizontal 370.6 ± 0.3mm Bezel Area Vertical 232.9 ± 0.3mm Horizontal 367.416± 0.2 mm Active Display Area Vertical 229.635 ± 0.2mm Weight 650g(typ) , 670g(Max.) Surface Treatment Hard coating(2H)
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PDF
Preisliste_2008-09_Stand_Aug08.pdf
190060 TransforMax EC100D pir-116 elektrokompetente E.coli ❄ ❄ 5 x 100 μl 148,00 190065 TransforMax EC100D pir+ elektrokompetente E. coli ❄ ❄ 5 x 100 μl 148,00 190068 TransforMax EC100 chemisch kompetente E. coli ❄ ❄
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PDF
TL431.pdf
otherwise noted.) A TL431BI / TL431BV TL431AI / NCV431AI TL431AC NCV431BV Characteristic Symbol Min Typ Max Min Typ Max Min Typ Max Unit Reference Input Voltage (Figure 1) V ref V VKA = VrefIK= 10 mA TA= 25°C 2.47 2.495 2.52 2.47 2.495 2.52 2.483 2.495 2.507 TA= T lowto Thigh 2.44 − 2.55 2.453 − 2.537 2.475
in „Linenarregeler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IC_LEXIKON_-_NEU.pdf
ab k6 4stk0 maxim 2x7mi max231cpc 9221b LaNrNOS pos EurSSkFREIKHerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 AbgMeng ab k6 2stk0 maxim 2x8mi max693cpe 9640 LaNrNOS Pos EurSSkFREIKHerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4
in „(V) Bauelemente 70er-90er zu verkaufen Vintage Retro“ · Markt ·
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PDF
edip128-6e.pdf
Codes Remarks reset Call macros Run normal macro N n1 Call the (normal) macro with the number n1 (max. 7 levels) Run touch macro T n1 Call the touch macro with the number n1 (max. 7 levels) Run menu macro ESC M M n1 Call the menu macro with the number n1 (max. 7 levels) Run port macro P n1 Call the port macro with the number n1 (max. 7 levels) Run bit macro B n1 Call the bit macro with the number n1 (max. 7 levels) automatic (normal-) macros Call the (normal) macro with the number n1 in n2/10s. Execution is stopped by commands
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PDF
LB084S02-TD01.pdf
operation or damage to the unit. Table 1. ABSOLUTE MAXIMUM RATINGS Parameter Symbol Condition Min Max Unit Remark Logic Voltage VCC Ta=25 -0.3 5.0 V Source Driver Voltage AVDD Ta=25 -0.5 15.0 V Digital Input Signals V I1 Ta=25 -0.3 5.0 V [Note 2-1] Analog Input Signals V I2 Ta=25 -0.5 15.0 V [Note 2
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PDF
7673-3600-0015.pdf
Function Example Input Command: Preset Voltage value Input command: VOLT<voltage>[CR] <voltage>=010<???<Max-Volt VOLT127[CR] Return value: Return value: OK[CR] *Max-Volt value refer to product specificationOK[CR] Meaning: Set Voltage value as 12.7V Input Command: Preset Current value Input command: CURR<current>[CR] <current>=000<???<Max-Curr CURR120[CR] Return value: Return value: OK[CR] *Max-Curr value refer to product specificationOK[CR] Meaning: Set Current value as 12.0A Input Command: Get PS preset Voltage & Current value Input
in „Manson HCS-3602 HCS-3600 Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ddr-buch-simson-s51-s70-1-sr50-sr80.pdf
darf keine deutlich wahrnehmbare Verschleißmarkierungen (Vertiefungen max. 0,3 mm) oder anderweitige Oberflächenschäden haben. Abtriebswelle Zu kontrollieren ist der verkupferte Bereich der Welle (Lauffläche der Losräder) auf ordentliche Oberflächenbeschaffenheit der gal-
in „Spannungsbegrenzer für Simson S50 Rücklicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2006111335_Texas-Instruments-BQ7692003PWR_C601650.pdf
pin with device in SHIP mode. Below MIN, device will not VBOOT Boot threshold voltage boot up. Above MAX, device will be 300 1000 mV guaranteed to boot up. Measured at TS1 pin. Below MIN, BOOT_max Boot threshold applicationdevice will not boot up. Above MAX, 10 2000 µs time device will be guaranteed to
in „bq76940 balancing“ · Mikrocontroller und Digitale Elektronik ·
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PDF
iec62056-21_ed1.0_en_.pdf
current loop interface a) Type of signal 20 mA current loop Absolute limits: Open-circuit voltage: max. 30 V d.c. Loop current: max. 30 mA Table 1 – Electrical interface Current Send (TX) Receive (RX) Zero, no loop current, SPACE ≤2,5 mA ≤3 mA One, 20 mA loop current, MARK ≥11 mA ≥9 mA Voltage drop Send
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PDF
SJA1000_3.pdf
Product specification Stand-alone CAN controller SJA1000 SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT Inputs VIL1 LOW-level input voltage on pins ALE/AS, −0.5 +0.8 V CS, RD/E, WR and MODE VIL2 LOW-level input voltage on pins XTAL1 − 0.3VDD V and INT V LOW-level input voltage on pins RST, −0.5
in „Can Controller "SJA1000" Probleme mit Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sony_STR-DE585_Service_Manual.pdf
100PF 5% 50V D705 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D710 8-719-991-33 DIODE 1SS133T-77 CC12 1-127-876-21 CERAMIC 0.01uF 10% 50V D721 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) CC14 1-127-876-21 CERAMIC 0.01uF 10% 50V D722 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D731 8-719-991-33 DIODE 1SS133T-77 CC16 1-127-876-21 CERAMIC 0.01uF 10% 50V D732 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D733 8-719-991-33 DIODE 1SS133T-77 D734 8-719-991-33 DIODE 1SS133T-77 CC18 1-127-876-21 CERAMIC 0.01uF 10% 50V (AEP,UK) D740
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DAP8A.pdf
affected. http://onsemi.com 3 NCP1203 ELECTRICAL CHARACTERISTICS (For typical valuJs T = 25⋅C, for min/max Jalues T = 0⋅C to +12J⋅C, Max T = 150⋅C, V = 11 V unless otherwise noted.) CC Characteristic Symbol Pin Min Typ Max Unit Supply Section (All frequency versions, otherwise noted) Turn−on Threshold LevelCCVGoing
in „Widerstand gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC14538B.PDF
CHARACTERISTICS (Voltages Referenced to SS) − 55_C 25_C 125_C Characteristic Symbol VDD Unit Vdc Min Max Min Typ Max Min Max (Note 2) Output Voltage “0” Level VOL 5.0 − 0.05 − 0 0.05 − 0.05 Vdc V in V DD or 0 10 − 0.05 − 0 0.05 − 0.05 15 − 0.05 − 0 0.05 − 0.05 “1” Level V 5.0 4.95 − 4.95 5.0 − 4.95 − Vdc
in „Platine Bedieneinheit mit Oszi durchmessen“ · Platinen ·