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PDF
LM75A_1.pdf
6 A1 Digital input. User-defined address bit1. 7 A0 Digital input. User-defined address bit0. 8 V CC Power supply. SIMPLIFIED BLOCK DIAGRAM V CC BIAS POINTER CONFIGURATION REFERENCE REGISTER REGISTER BAND–GAP COUNTER TEMPERATURE TEMP 11–BIT REGISTER SENSOR SIGMA–DELTA A–TO–D TOS CONVERTER TIMER REGISTER
in „LM 75 temperatur wird nicht aktualisiert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CU200211-KTW260A-03.pdf
time should be less than 50ms.The inrushCC.rrent at power on can be 2 x I OPTICAL and ENVIRONMENTAL SPECIFICATIONS Parameter Value Character Size/Pitch (XxY mm) 6.5 x 11.3/9.9 x 14.85 Dot Size/Pitch (XxY mm) 1.1 x 1.2/1.35 x 1.65 Luminance 350
in „[S] VFD 2x20 datenblatt (cu200211mcpb s31a)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC10EP31-D.PDF
MC10EP31, MC100EP31 Table 4. MAXIMUM RATINGS Symbol Parameter Condition 1 Condition 2 Rating Unit V CC PECL Mode Power Supply V EE= 0 V 6 V V EE NECL Mode Power Supply V CC= 0 V −6 V VI PECL Mode Input Voltage V EE= 0 V VI≤ VCC 6 V NECL Mode Input Voltage VI≥ VEE −6 V CC= 0 V out Output Current Continuous
in „Rechtecksignal mit Anstiegszeit < 1 ns für Oszi- und Tastkopf-Tests“ · HF, Funk und Felder ·
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PDF
75176A.pdf
OUTPUT VOLTAGE LOW-LEVEL OUTPUT VOLTAGE vs vs LOW-LEVEL OUTPUT CURRENT OUTPUT CURRENT 4 0.6 V = 5 V V CC = 5 V CC V 3.5 TA= 25⋅C TA= 25⋅C – – 0.5 e e t 3 a o l V V 0.4 u 2.5 u t t O u l 2 l 0.3 t v e L e 1.5 - 0.2 i o D L – 1 ÁÁ LL O OO 0.1 V ÁÁ V 0.5 ÁÁ 0 0 0 10 20 30 40 50 60 70 80 90 100 0 5 10 15 20
in „sn75179 <-> sn75176 Unterschied?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A020BL01.pdf
Characteristics (GND=AGND=0V) ly n Parameter Symbol Condition Min. Typ. Max. Unit O Remark InforVCurrent ICC V CC.3V - 14.5 - m A Note 1 CC ICC(STANDBY) V CC.3V - 0.13 - mA e VGH V CC.3V 8 8.5 9 V s Note 2 DC-DC voltage VGL V CC.3V -6.5 -6 -5.5 UV Note 2 VCAC 5.0 5.6 6.4 l Vp-p AC component, Note 3 VCOM voltage
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PDF
LEGO_PowerFunctions.pdf
command Escape E 0 Use “Mode” to select the modes listed below 1 Combo PWM mode (timeout) Channel CC 0-3 Channel switch 1 - 4 Address a 0 Current address space (bonded configuration in RC Receiver) 1 Extra address space Mode MMM 000 Not used in PF RC Receiver 001 Combo direct (timeout) 010 Single pin
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
TLC2543.pdf
V VCC = 4.5 V to 5.5 V, OH = –20 A V CC –0.1 V = 4.5 V, I = 1.6 mA 0.4 V Low-level output voltage CC OL V OL VCC = 4.5 V to 5.5 V, OL = 20 A 0.1 High-impedance off-state outpuO = VCC , CS at CC 1 2.5 OZ current V = 0, CS at V 1 –2.5 A O CC
in „externer A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ALS31300-Datasheet__2_.pdf
ICC(LPDCM) Average current in LPDCM; Sleep = 2, – 2 – mA LPP_CNT_MAX = 0, BW Select = 0 ICC(SLEEP) V CC= 3.0 V, Sleep mode = 1 – 14 100 nA V = V , EEPROM programming CC(EE) CC CC[2]X) – 6.2 6.7 mA occurring T = 25°C, after V reaches V , Power-On Delay Time [4] POD A CC CC(MIN) – 600 – µs BW Select = 0
in „LSB/G bei einem 3D Hall Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UBA2000.pdf
switching device is turned off when the current through the internal sense resistor equals at When V CC has reached the start level (V CC(sl) and the peak value of V > V (indicating that the mains supply is least285 mA.Asaresultofthecurrentinterruptionandthe in ign presence of an inductive load, a voltage
in „Schnellstarter für Leuchtstofföhren - welche taugen was?“ · Haus & Smart Home ·
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PDF
XR2206.pdf
SYMA2 AMSI 1 16 SYMA2 STO 2 15 SYMA1 STO 2 15 SYMA1 MO 3 14 WAVEA2 MO 3 14 WAVEA2 V 4 13 WAVEA1 4 13 CC V CC WAVEA1 TC1 5 12 GND TC1 5 12 GND TC2 6 11 SYNCO TC2 6 11 SYNCO TR1 7 10 BIAS 7 10 BIAS TR2 8 9 FSKI TR1 TR2 8 9 FSKI 16 Lead PDIP, CDIP (0.300”) 16 Lead SOIC (Jedec, 0.300”) PIN DESCRIPTION Pin
in „Funktionsgenerator mit XR2206“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XR2206.pdf
SYMA2 AMSI 1 16 SYMA2 STO 2 15 SYMA1 STO 2 15 SYMA1 MO 3 14 WAVEA2 MO 3 14 WAVEA2 V 4 13 WAVEA1 4 13 CC V CC WAVEA1 TC1 5 12 GND TC1 5 12 GND TC2 6 11 SYNCO TC2 6 11 SYNCO TR1 7 10 BIAS 7 10 BIAS TR2 8 9 FSKI TR1 TR2 8 9 FSKI 16 Lead PDIP, CDIP (0.300”) 16 Lead SOIC (Jedec, 0.300”) PIN DESCRIPTION Pin
in „XR2206 Sinus Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
SYMA2 AMSI 1 16 SYMA2 STO 2 15 SYMA1 STO 2 15 SYMA1 MO 3 14 WAVEA2 MO 3 14 WAVEA2 V 4 13 WAVEA1 4 13 CC V CC WAVEA1 TC1 5 12 GND TC1 5 12 GND TC2 6 11 SYNCO TC2 6 11 SYNCO TR1 7 10 BIAS 7 10 BIAS TR2 8 9 FSKI TR1 TR2 8 9 FSKI 16 Lead PDIP, CDIP (0.300”) 16 Lead SOIC (Jedec, 0.300”) PIN DESCRIPTION Pin
in „Funktionsgenerator XR2206; Tastverhältins des Rechtecksignals ändern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
SYMA2 AMSI 1 16 SYMA2 STO 2 15 SYMA1 STO 2 15 SYMA1 MO 3 14 WAVEA2 MO 3 14 WAVEA2 V 4 13 WAVEA1 4 13 CC V CC WAVEA1 TC1 5 12 GND TC1 5 12 GND TC2 6 11 SYNCO TC2 6 11 SYNCO TR1 7 10 BIAS 7 10 BIAS TR2 8 9 FSKI TR1 TR2 8 9 FSKI 16 Lead PDIP, CDIP (0.300”) 16 Lead SOIC (Jedec, 0.300”) PIN DESCRIPTION Pin
in „Signalgenerator XR2206 Spanungsgesteuerte Amplitudenverstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206CP.pdf
SYMA2 AMSI 1 16 SYMA2 STO 2 15 SYMA1 STO 2 15 SYMA1 MO 3 14 WAVEA2 MO 3 14 WAVEA2 V 4 13 WAVEA1 4 13 CC V CC WAVEA1 TC1 5 12 GND TC1 5 12 GND TC2 6 11 SYNCO TC2 6 11 SYNCO TR1 7 10 BIAS 7 10 BIAS TR2 8 9 FSKI TR1 TR2 8 9 FSKI 16 Lead PDIP, CDIP (0.300”) 16 Lead SOIC (Jedec, 0.300”) PIN DESCRIPTION Pin
in „XR2206 - split supply“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
SYMA2 AMSI 1 16 SYMA2 STO 2 15 SYMA1 STO 2 15 SYMA1 MO 3 14 WAVEA2 MO 3 14 WAVEA2 V 4 13 WAVEA1 4 13 CC V CC WAVEA1 TC1 5 12 GND TC1 5 12 GND TC2 6 11 SYNCO TC2 6 11 SYNCO TR1 7 10 BIAS 7 10 BIAS TR2 8 9 FSKI TR1 TR2 8 9 FSKI 16 Lead PDIP, CDIP (0.300”) 16 Lead SOIC (Jedec, 0.300”) PIN DESCRIPTION Pin
in „Sinusfrequenz mittels Gleichspannung einstellen XR2206“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_XR2206.pdf
SYMA2 AMSI 1 16 SYMA2 STO 2 15 SYMA1 STO 2 15 SYMA1 MO 3 14 WAVEA2 MO 3 14 WAVEA2 V 4 13 WAVEA1 4 13 CC V CC WAVEA1 TC1 5 12 GND TC1 5 12 GND TC2 6 11 SYNCO TC2 6 11 SYNCO TR1 7 10 BIAS 7 10 BIAS TR2 8 9 FSKI TR1 TR2 8 9 FSKI 16 Lead PDIP, CDIP (0.300”) 16 Lead SOIC (Jedec, 0.300”) PIN DESCRIPTION Pin
in „Funktionsgenerator mit XR2206 - Ausgangssignale sind unsauber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6N139.pdf
CC 300 % Each Channel HCPL-2730 2500 (I = 0.5 mA, I = 2 mA, V = 4.5 V) 6N139 0.08 0.4 F O CC (F = 1.6 mA,OI = 8 mA,CC = 4.5 V) 6N139 Each Channel HCPL-2731 0.01 0.4 Logic low output voltagF (I = 5 OA, I = 15 CC,= 4.5 V) 6N139 output voltage Each Channel V HCPL-2731 0.13 0.4 OL V (Note 2) (F = 12 mA,OI = 24 mA,CC = 4.5 V) 6N139 0.20 0.4 Each Channel HCPL-2731 (F = 1.6 mA,OI = 4.8 mACCV= 4.5 V) 6N138 0.10 0.4
in „Wechselrichter mit MOSFET Endstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PCB_Project_11.pdf
101 E PI 100uF100uF100uF100uF100uF100uF100uF100uF100uF100uF 10 7 PC2 P P P PI 2 2 PI2 P P2 PI2 P2 PI1100 C7 B7 PIU6 GND PIU201 C6 B6 PIU206 PIU202 C5 B5 PIU205 PIU203 C4 B4 PIU204 PIU204 C3 B3 PIU203 15 2 Supply PI1605 C2 B2 PIU102 VCC VCC VCC VCC +5 GND PIU206 C1 B1 PIU201 100nF P0 +5VV i CJ0 CO10 PIJ0
in „VNH3sp30 Revision?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet.hk_la1836_172985.pdf
Operating Conditions at Ta = 25°C Parameter Symbol Ratings Unit Recommended supply voltage V 7.0 V CC Operating supply voltage range V CCop 6.5 to 8.5 V Electrical Characteristics at Ta = 25°C, V CC = 7.0 V unless otherwise specified (MFP package using the Yamaichi Electric IC-51-0302-426MF socket) Parameter
in „Pioneer SX-303RDS Stereo / Filterproblem C defekt im Filter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atiny2313.pdf
Voltage except VCC = 1.8V - 2.4V 0.2V CC V IL -0.5 V XTAL1 and RESET pin VCC = 2.4V - 5.5V 0.3V CC (3) Input High-voltage except VCC = 1.8V - 2.4V 0.7V CC V IH XTAL1 and RESET pins V = 2.4V - 5.5V 0.6V (3) VCC +0.5 V CC CC Input Low Voltage
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LP171WP4-TLB1.pdf
Feature support(D PM S) = Active off, RG B C olor 0 A 0000 1010 25 19 Red/G reen low Bits 1 C 0001 1100 26 1A Blue/W hite Low Bits 9 0 1001 0000 27 1B Red X Rx= 0.590 9 7 1001 0111 28 1C Red Y Ry= 0.349 5 9 0101 1001 29 1D G reen X G x= 0.328 5 3 0101 0011 C olor 30 1E G reen Y G y= 0.547 8 C 1000 1100
in „Display VGA --> lvds: LP171WP4 TLB1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GU256X16-333A_1.pdf
The module can indicate graphics patterns on the screen of V.F.Display. Power supply for logic ICs(CC 1,+5V ) and for DC/DC Converter( CC 2,+24V ) are needed. 3. Absolute Maximum Ratings Parameter Symbol Absolute Max. Unit Power Supply Voltage1 V CC1 -0.3~+6.0 V Power Supply Voltage2 V CC2 -0.3~+28.0
in „[V] Riesiges VFD Grafikdisplay mit 256x16 Pixeln von Noritake“ · Markt ·
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PDF
GU256X16-333A_1.pdf
The module can indicate graphics patterns on the screen of V.F.Display. Power supply for logic ICs(CC 1,+5V ) and for DC/DC Converter( CC 2,+24V ) are needed. 3. Absolute Maximum Ratings Parameter Symbol Absolute Max. Unit Power Supply Voltage1 V CC1 -0.3~+6.0 V Power Supply Voltage2 V CC2 -0.3~+28.0
in „{V] Verkaufe MEGA VFD Grafikdisplay von Noritake“ · Markt ·
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Datei
Lauflicht1.vhd
: out std_logic; sseg_an3 : out std_logic; sseg_ca : out std_logic; sseg_cb : out std_logic; sseg_cc : out std_logic; sseg_cd : out std_logic; sseg_ce : out std_logic; sseg_cf : out std_logic; sseg_cg : out std_logic ); end Lauflicht; architecture led of Lauflicht is -- clock counter signal count_reg
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Datei
crc16.c
0X03C0, 0X0280, 0XC241, 0XC601, 0X06C0, 0X0780, 0XC741, 0X0500, 0XC5C1, 0XC481, 0X0440, 0XCC01, 0X0CC0, 0X0D80, 0XCD41, 0X0F00, 0XCFC1, 0XCE81, 0X0E40, 0X0A00, 0XCAC1, 0XCB81, 0X0B40, 0XC901, 0X09C0, 0X0880, 0XC841, 0XD801, 0X18C0, 0X1980, 0XD941, 0X1B00, 0XDBC1, 0XDA81, 0X1A40, 0X1E00, 0XDEC1, 0XDF81
in „CRC16 - schnellere Implementierung möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at90s2313-datasheet-atmel.pdf
Voltage (XTAL1) -0.5 0.3 VCC(1) V V IH Input High Voltage (Except XTAL1, RESET) 0.6 VCC(2) V CC+ 0.5 V V Input High Voltage (XTAL1) 0.7 V (2) V + 0.5 V IH1 CC CC V Input High Voltage (RESET) 0.85 V (2) V + 0.5 V IH2 CC CC Output Low Voltage(3) I = 20 mA, V = 5V 0.6 V V OL OL CC (Ports B, D) IOL
in „AVR Studio 4.19“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90S2313_Datasheet.pdf
Voltage (XTAL1) -0.5 0.3 VCC(1) V V IH Input High Voltage (Except XTAL1, RESET) 0.6 VCC(2) V CC+ 0.5 V V Input High Voltage (XTAL1) 0.7 V (2) V + 0.5 V IH1 CC CC V Input High Voltage (RESET) 0.85 V (2) V + 0.5 V IH2 CC CC Output Low Voltage(3) I = 20 mA, V = 5V 0.6 V V OL OL CC (Ports B, D) IOL
in „Fragen zum Sleep Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-1046EN_0__3_.pdf
ns CH.A or CH. B rise Note: See Mechanical Characteristics for mounting tolerances. *Typical valuesCC= 5.0V and 25°C. 6 ElectricalCharacteristics Electrical Characteristic over Recommended Operating Range PartNo. Parameter Sym. Min Typ.* Max. Units Notes HEDS-5500 Supply Current I 17 40 mA CC HEDS-5600
in „drehzahlmessung und per bluetooth übertragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tp_uart__Siemens.pdf
guaranteed by ext. elements: -20 V for 2 µsec and 65 V for 150 µsec 2) Allowed voltage relations(a)V CC and VVSP normal / VB+ and V IFn be 0 V (b) VVSP normal / VCC, VB+ and V IFn be 0 V (c) VIFormal / V CC , VB+ and VVSP can be 0 V The combination: V normal and V = 0 V is not allowed! CC VSP 3) Human
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PDF
EIB_Uart.pdf
guaranteed by ext. elements: -20 V for 2 µsec and 65 V for 150 µsec 2) Allowed voltage relations(a)V CC and VVSP normal / VB+ and V IFn be 0 V (b) VVSP normal / VCC, VB+ and V IFn be 0 V (c) VIFormal / V CC , VB+ and VVSP can be 0 V The combination: V normal and V = 0 V is not allowed! CC VSP 3) Human
in „(V) SIEMENS EIB-Uart IC´s“ · Markt ·
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PDF
XC6216_XE6216.pdf
260 360 1300 1700 3.9 3.822 3.978 3.861 3.939 260 360 1300 1700 4.0 3.920 4.080 3.960 4.040 220 320 1100 1500 4.1 4.018 4.182 4.059 4.141 220 320 1100 1500 4.2 4.116 4.284 4.158 4.242 220 320 1100 1500 4.3 4.214 4.386 4.257 4.343 220 320 1100 1500 4.4 4.312 4.488 4.356 4.444 220 320 1100 1500 4.5 4.410 4.590 4.455 4.545 220 320 1100 1500 4.6 4.508 4.692 4.554 4.646 220 320 1100 1500 4.7 4.606 4.794 4.653 4.747 220 320 1100 1500 4.8 4.704 4.896 4.752 4.848 220 320 1100 1500 4.9 4.802 4.998 4.851 4.949 220 320 1100 1500 11/45 XC6216
in „Suche schaltung für Ladeerhaltung einer Pufferbatterie“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
plugin.xml
org.eclipse.cdt.gnuarm.as.target.mcpu.strongarm110" name="strongarm110" /> <enumeratedOptionValue command="-mcpu=strongarm1100" id="org.eclipse.cdt.gnuarm.as.target.mcpu.strongarm1100" name="strongarm1100" /> <enumeratedOptionValue command="-mcpu=arm8" id="org.eclipse.cdt.gnuarm.as.target.mcpu.arm8" name="arm8" /> <enumeratedOptionValue
in „GNUARM Eclipse Plugin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_IC2__001183650-da-01-en-IC_SWITCH_HISIDE_8C_ISO1H801G_DSO_36_INF.pdf
CC(uvlo) 1 2 mA Vcc 2.5V Operating current CC(on) 4.5 6 mA 1) not subject to production test 4.5 Output Protection Functions Parameter 1) Symbol Limit Values Unit Test Condition at T = -25 ... 125°C
in „ISO1H811G Anteuerung mit Atmega 32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT77C101B.pdf
CC Active current on V pin, 1 MHz, 25°C I 6 10 mA CC ICC Active current on CC pin, load 0 pF IV 5 6 mA Power dissipation on VCC I 20 36 mW C = 0 PCC IV 17 22 mW load Current on V in NAP mode I I 10 µA CC
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1308.pdf
CONDITIONS MIN TYP MAX UNITS Power-Supply Active Current I f = 400kHz 325 FA (Note 3) CCA SCL -33: CC = 3.63V 125 -3: V = 3.3V 125 Power-Supply Standby Current I CC FA (Note 4) CCS -18: CC = 1.89V 100 VCC = VCCMAX 200 Battery Leakage Current IBATLKG VCC R VPF -100 25 +100 nA Input Leakage (SCL) I VIN
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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Datei
MultiScreen.c
Analogeingängen und Anzeige auf LCD // Eugen Machold, Codeteile von Michael Dworkin // 29.11.2007 // Compiler CC5x // Speihersutz121345=aus,Debug11=aus,ProgrammFlash9=an,EEpromRead8=an,NiendervoltProgr7=aus // NiederVoltReset6=an,EinschaltTimer3=an,WachDogTimer2=aus,Oszilator01=LP //#pragma config |= 0b.1111.1111.0010
in „symbol has multiple definitions ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stz_zigbee_coexistence.pdf
IEEE802.15.4 page 3 of 16 2 IEEE802.15.4 2.1 IEEE802.15.4 test environment For IEEE802.15.4 equipment, CC2420-chips from ChipCon [1] are used. • two ChipCon Development Boards CC2420 DB 1.1 Rev 1.3. These boards come with a Atmel ATmega128 microcontroller with on-chip flash, which allows easy re- programming
in „Zigbee Module gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vierzeiliges_Display_DEM20488.pdf
CHARACTER PATTERN (ST7066U-OA) Upper(4bit) 0000 0001 0010 0011 0100 0101 0110 0111 1000 1001 10010 1011 1100 1101 1110 1111 Lowerr(4bit) CG RAM 0000 (1) 0001 (2) 0010 (3) 0011 (4) 0100 (5) 0101 (6) 0110 (7) 0111 (8) 1000 (1) 1001 (2) 1010 (3) 1011 (4) 1100 (5) 1101 (6) 1110 (7) 1111 (8) Version:3 11 DEM 20488
in „Probleme mit LCD-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DEM20488SYH-PY.PDF
CHARACTER PATTERN (ST7066U-OA) Upper(4bit) 0000 0001 0010 0011 0100 0101 0110 0111 1000 1001 10010 1011 1100 1101 1110 1111 Lowerr(4bit) CG RAM 0000 (1) 0001 (2) 0010 (3) 0011 (4) 0100 (5) 0101 (6) 0110 (7) 0111 (8) 1000 (1) 1001 (2) 1010 (3) 1011 (4) 1100 (5) 1101 (6) 1110 (7) 1111 (8) Version:3 11 DEM 20488
in „LCD Problem im 4-Bit Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
071148-D_CC2-AVR-board-2.pdf
praxis mikrocontroller 2-Draht-LCD ATM 18-Display für das Elektor-CC2-AVR-Projekt Von Udo Jürß und Wolfgang Rudolph Die LCD-Erweiterung des ATM18-Testboards erschließt unzählige Anwendungen. Was auf den ersten Blick wie ein Standard-LC-Display für den Anschluss an einen
in „Schaltung für Schrittmotor mit I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc59108.pdf
UNIT VCC Supply voltage 3 5.5 V VIH High-level input voltage SCL, SDA, RESET, A0, A1, A2, A3 0.7 × CC V CC V VIL Low-level input voltage SCL, SDA, RESET, A0, A1, A2, A3 0 0.3 × CC V VO Supply voltage to output pins OUT0 to OUT7 17 V V CC= 3 V 20 OL Low-level output current sink SDA mA V CC= 3 V 30 I
in „[V] 4St. LED Treiber TI - TLC59108 8-Bit Fm+ I2C-Bus Constant-Current LED Sink Driver“ · Markt ·
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Datei
stm32f10x_tim.h
) || \ ((FLAG) == TIM_FLAG_CC1) || \ ((FLAG) == TIM_FLAG_CC2) || \ ((FLAG) == TIM_FLAG_CC3) || \ ((FLAG) == TIM_FLAG_CC4) || \ ((FLAG) == TIM_FLAG_COM) || \ ((FLAG) == TIM_FLAG_Trigger) || \ ((FLAG) == TIM_FLAG_Break) || \ ((FLAG) == TIM_FLAG_CC1OF) || \ ((FLAG) == TIM_FLAG_CC2OF) || \ ((FLAG) == TIM_FLAG_CC3OF) || \ ((FLAG) == TIM_FLAG_CC4OF)) #define IS_TIM_CLEAR_FLAG(TIM_FLAG) ((((TIM_FLAG) & (uint16_t)0xE100) == 0x0000) && ((TIM_FLAG) !=
in „STM32 - Eclipse, ARM GCC - Funktionsaufruf geht nicht :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM1881.pdf
, 3, 5 5 mA Infrared (15 sec.) 220˚C Output Sink Current; Pin 7 2 mA Package Dissipation (Note 2) 1100 mW Electrical Characteristics LM1881 V = 5V; R = 680 kΩ; T = 0˚C to +70˚C by correlation with 100% electrical testing at T =25˚C CC SET A A Parameter Conditions Min Typ (Note 5) Max Units Supply Current
in „Videosignal erkennen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F10xxx_TIM_application_examples.pdf
routine, 4 pins (PC6, PC7, PC8 and PC9) are toggled at the following frequencies: ● PC6: 73.24 Hz (CC1) ● PC7: 109.8 Hz (CC2) ● PC8: 219.7 Hz (CC3) ● PC9: 439.4 Hz (CC4) This firmware is provided as TIM example 5 in the STM32F10xxx firmware library, available from the STMicroelectronics microcontrollers
in „STM32 Verwirrung o.O (Timer->CCRx)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stator.pdf
Service Station Manual / wiring diagram Vehicle Ign. Pick Up Ign. Charging AC Circuit DC Circuit 50cc 2T Red - White Green - White Blue / Grey - Earth Yellow - Blue Red - Battery Positive 88 Ω (± 5 Ω) 970 Ω (± 50 Ω) 25 - 30v AC 25 - 30v AC 1.5 - 2 amp (charged bat.=13v) Runner 125 Red - Brown Green -
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PDF
VCO_designs.pdf
oscillations closer to the reso- nant frequency.This is the principal difference between a Colpitts V 3 V CC RF IC L1 C7 33 n R 10 100 p 51 R4 R2 R1 3 k 3 k R7 47 3 k C3 C4 C5 4 p 1.5 p 1.5 p RF Out V R6 V1 2 3 k C9 C2 6 p M 2 2 p R9 6.5 x 0.2 mm 3.9 k V3 C 4 x 0.5 mm VVAR 8 R 2 p R 5 3 C1 C6 3 k 9.1 k R 8
in „RF vervielfacher und Verstärker“ · HF, Funk und Felder ·
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PDF
AT89C51CC03.pdf
Description Enable interrupt by Message Object 7-0 IECH7:0 0 - disable IT. 1 - enable IT. IECH7:0 = 0b 0000 1100 -> Enable IT’s of message objects 3 and 2. Reset Value = 0000 0000b 108 AT89C51CC03 4182D–CAN–03/04 AT89C51CC03 Table 60. CANBT1 Register CANBT1 (S:B4h) CAN Bit Timing Registers 1 7 6 5 4 3 2 1 0 -
in „Einstellung Akzeptanzfilter - Programm / Tool gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1309.pdf
: IREF Current Setting by Resistor Value SSD1309 I ~ 10uA REF (voltage at REF this pin ≈ V – 3) R1 CC V SS Since the voltage at IREFpin is V CC– 3V, the value of resistor R1 can be found as below: For IREF = 10uA, V CC =12V: R1 = (Voltage at I REF – V SS/ IREF ≈(12 – 3) / 10uA = 900k Ω SSD1309 Rev 1.1
in „Display EA OLED L128-6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5521f.pdf
TYPICAL AC PERFOR A CE CHARACTERISTICS fLO = 1700MHz, f = 2IFMHz, f RF = 1950MHz, P LO = –5dBm, V CC = 5V, EN = 2.9V, T = 2A°C, unless otherwise noted. Test circuit shown in Figure 1 is tuned for 1.95GHz output frequency and V = 5V. CC Fundamental, 2nd and 3rd Order Intermodulation Distortion Conversion
in „Anpassung Differenztialeingang LT5521“ · HF, Funk und Felder ·
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ths6012.pdf
input capacitance 1.4 pF I OUTPUT CHARACTERISTICS V = ±5 V 3 to 3.2 to CC -2.8 -3 Single ended RL= 25 Ω V V CC = ±15 V 11.8 to - 12.5 to - Output voltage 11.5 12.2 VO swing V CC = ±5 V 6 to 6.4 to -5.6 -6 Differential RL= 50 Ω V V CC = ±15 V 23.6 to - 25 to - 23 24.4 R = 5
in „DDS Endstufe DC-50 Mhz“ · Analoge Elektronik und Schaltungstechnik ·