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PDF
LMC7111BIM5X.pdf
Conditions (Note 5) Limit Limit Units (Note 6) (Note 6) + V OS Input Offset Voltage V = 2.7V 0.9 3 7 mV 5 9 max TCV OS Input Offset Voltage 2.0 µV/˚C Average Drift IB Input Bias Current (Note 9) 0.1 1 1 pA 20 20 max I Input Offset Current (Note 9) 0.01 0.5 0.5 pA OS 10 10 max R IN Input Resistance > 10 Tera +
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PDF
LMC7111BIM5X.pdf
Conditions (Note 5) Limit Limit Units (Note 6) (Note 6) + V OS Input Offset Voltage V = 2.7V 0.9 3 7 mV 5 9 max TCV OS Input Offset Voltage 2.0 µV/˚C Average Drift IB Input Bias Current (Note 9) 0.1 1 1 pA 20 20 max I Input Offset Current (Note 9) 0.01 0.5 0.5 pA OS 10 10 max R IN Input Resistance > 10 Tera +
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mc33063a.pdf
max ) Ipk switch) on max ) pk switch ) on max ) Ioutton Ipk switch)▯ton ▯ t off Ioutton C O 9 V 9 V ripple pp) 8V ripple pp ripple pp) 1.25(1▯ R2 ) 1.25(1▯ R2 ) ▯1.25(1▯ R2 ) V out R1 R1 R1 See Figure 6
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LT1085.pdf
operating temperature range, otherwise specifications are at T = A5°C. PARAMETER CONDITIONS MIN TYP MAX UNITS Reference Voltage I = 10mA, T = 25°C, OUT J (VIN– VOUT ) = 3V 1.238 1.250 1.262 V 10mA ≤ I OUT≤ IFULL LOAD 1.5V ≤(V IN OUT) ≤ 25V (Notes 4, 6, 7) ● 1.225 1.250 1.270 V Line Regulation I = 10mA
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PDF
LT1084CP.pdf
operating temperature range, otherwise specifications are at T = A5°C. PARAMETER CONDITIONS MIN TYP MAX UNITS Reference Voltage I = 10mA, T = 25°C, OUT J (VIN– VOUT ) = 3V 1.238 1.250 1.262 V 10mA ≤ I OUT≤ IFULL LOAD 1.5V ≤(V IN OUT) ≤ 25V (Notes 4, 6, 7) ● 1.225 1.250 1.270 V Line Regulation I = 10mA
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FDC6327C.pdf
unless otherwise noted 6 Electrical Characteristics A 3 Symbol Parameter Test Conditions Type Min Typ Max Units 2 7 C Off Characteristics BV DSS Drain-Source Breakdown VGS = 0 V, D = 250 µ N-Ch 20 V Voltage VGS = 0 V, D = - 250µA P-Ch -20 ∆BV DSS Breakdown Voltage ID= 250 µ, Referenced to 25 C° N-Ch 12
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4N27-M.pdf
specified) c u Individual Component Characteristics p e Symbol Parameter Test Conditions Min. Typ.* Max. Unit r s EMITTER V Input Forward Voltage I = 10mA 1.18 1.50 V F F IR Reverse Leakage Current V R 6.0V 0.001 10 µA DETECTOR BV CEO Collector-Emitter Breakdown VoltagIC= 1.0mA, F = 0 30 100 V BV CBO
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sp721_leadfree.pdf
ISSUE D) 8 LEAD DUAL-IN-LINE PLASTIC PACKAGE N E1 INCHES MILLIMETERS INDEX 1 2 3 N/2 AREA SYMBOL MIN MAX MIN MAX NOTES -B- A - 0.210 - 5.33 4 -A- A1 0.015 - 0.39 - 4 D E BASE A2 0.115 0.195 2.93 4.95 - PLANE A2 A -C- B 0.014 0.022 0.356 0.558 - SPLANEG L L B1 0.045 0.070 1.15 1.77 8, 10 D1 e D1 A1 A C
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PDF
Display_Controller.pdf
Oscillator External Mode0 Ta = 25°C Frequency fCL 128 line 60 PWM 570.57 600.6 630.63 kHz OSC Input Max OSC under FR=1,1,1,1 fOSC 767.52 959.4 1151.28 kHz Mode 10 Default Frame fFRAME 73.15 77 80.85 Hz frequency Rating Item Symbol Condition Units Applicable Pin Min. Typ. Max. Input voltage VDD (Relative
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PDF
LT3582-12_Datasheet.pdf
otherwise noted. (Note 3) Switching Regulator Characteristics SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS VIN_MIN MinimumOperating Voltage l 2.4 2.475 2.55 V V MaximumOperating Voltage l 5.5 V IN_MAX IVIN VINuiescent Current Ramp Current Configured to 1μA, 325 450 μA SWOFF Bit Active IVIN_SHDN VINuiescent
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PDF
XMEGA-A3BU_XPLAINED_Design_Documentation_rev2.PDF
2.54mm pinheader 21 L200 1 BLM15BB221SN1 Murata BLM15BB221SN1 SMD RF inductor 0402. Z=220Ohm (@100MHz), Max R(dc)=0.80Ohm, Max current=200mA 22 L300 1 BLM18HE152SN1 Murata BLM18HE152SN1 SMD RF inductor 0603. Z=1500Ohm (@100MHz), Max R(dc)=0.50Ohm, Max current=500mA 23 LABEL1 1 Label PCBA ACT Logimark AS 505462
in „LED toggeln mit ATxmega256A3BU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kubheute.c
Rka<40) { B[3]=0; } else { B[3]= Rka/10; if (Rka - B[3] *10 >=5) B[3] +=1; } } if(Rka > 6000) Rka = max_value; } if ((Rsa + Rka) <= (VmiVms1*Rsa*Rka/Rsi)) { B[4] = 255; Rki = max_value; } else { Rki = (VmiVms1*Rsa*Rka) / (Rsa + Rka - VmiVms1*Rsa*Rka/Rsi); if (Rki>2200) { B[4]=255; //Rki = max_value; }
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PDF
ADM485.pdf
0.0160 (0.41) PLANE 0.0075 (0.19) 8-Lead Plastic DIP (N-8) 8 5 0.280 (7.11) PIN 1 0.240 (6.10) 1 4 0.325 (8.25) 0.430 (10.92) 0.348 (8.84) 0.300 (7.62) 0.060 (1.52) 0.210 0.015 (0.38) 0.195 (4.95) (5.33) 0.115 (2.93) MAX 0.130 0.160 (4.06) (3.30) 0.015 (0.381) 0.115 (2.93) MIN 0.008 (0.204) 0.022 (0.558
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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4051.pdf
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ – 55_C 25_C 125_C ÎÎÎÎÎÎÎÎÎCharacteristicÎÎÎÎSymbolÎ VDD Test Conditions Min Max Min Typ # Max Min Max Unit ÎÎÎSUPPLY REQUIREMENTS (Voltages Referenced to EE) ÎÎÎÎPower Supply VoltageÎÎÎÎVÎDDÎÎ — VDD – 3.0 ↓SS ↓ VEE 3.0 18 3.0 — 18 3.0 18 V Range ÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
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PDF
CA3280.pdf
SUPPLY = ±15V, Unless Otherwise Specified CA3280 CA3280A PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Input Offset Voltage V I = 1mA - - 3 - - 0.5 mV IO ABC ABC = 100µA - 0.7 3 - 0.25 0.5 mV ABC = 10µA - - 3 - - 0.5 mV ABC = 1mA to 10µA, - 0.8 4 - 0.8 1.5 mV T = Full Temp. Range A
in „Suche OTA für +/-2.5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4051.pdf
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ – 55_C 25_C 125_C ÎÎÎÎÎÎÎÎÎCharacteristicÎÎÎÎSymbolÎ VDD Test Conditions Min Max Min Typ # Max Min Max Unit ÎÎÎSUPPLY REQUIREMENTS (Voltages Referenced to EE) ÎÎÎÎPower Supply VoltageÎÎÎÎVÎDDÎÎ — VDD – 3.0 ↓SS ↓ VEE 3.0 18 3.0 — 18 3.0 18 V Range ÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
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LTC490_LT.pdf
Military grade parts. DC E LECTR AL CHICACTERIST ICS V CC= 5V ±5% SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS VOD1 Differential Driver Output Voltage (Unloaded) IO= 0 5 V V Differential Driver Output Voltage (with Load) R = 50 (RS422) 2 V OD2 R = 27 (RS485) (Figure 1) 1.5 5 V V Change in Magnitude of
in „µC -- RS485 Frage“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12B_STM.c
---------*/ volatile unsigned char delaycnt=0; volatile unsigned char secflag; unsigned char rxbuf[MAX_BUF+1]; // Puffer für empfangene Daten unsigned char txbuf[MAX_BUF+1]; // Puffer für zu sendende Daten unsigned char flags, tx_cnt, rx_cnt, tx_id, tx_status, retrans_cnt; unsigned char rx_data[41];
in „ST32F103 ---> AVR RFM12B“ · Mikrocontroller und Digitale Elektronik ·
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NUD4001.pdf
coverage. ELECTRICAL CHARACTERISTICS (TA= 25°C unless otherwise noted) Characteristic Symbol Min Typ Max Unit Output Current1 out1 305 325 345 mA (Vin= 12 V, Rext= 2.0 W, LEDs = 10 V) Output Current2 I 95 105 115 mA (V = 30 V, R = 7.0 W, V = 24 V) out2 in ext LEDs Bias Current I − 5.0 8.0 mA Bias (Vin
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PDF
Ender3_schematic.PDF
10k PI P210k P5 - obviously swap out the A4988 chips for TMC2208 chips C33 VMOT C355 VMOT VCC 1,48V max! PI100nF VCC 1,48V max! P500nF - the sense resistors need to be changed, Creality3D uses 0,15R GND VBB1 PI302 GND VBB1 PU42 VBB2 PI308 VBB2 PU42 - the CP1/CP2 capacitors need to be changed to 22nF PC
in „Problem mit SD Card Melzi Creality3D V1.1.3 Sanguino Atmega 1284“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1302_2Cells_to_5V_600mA.pdf
CHARACTERIST DC E IC ICS T A 25°C, V =IN.5V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IQ Quiescent Current VSHDN= 0.5V, FB= 1.3V 200 300 A VSHDN= 1.8V 15 25 A VIN Input Voltage Range 2.0 V 2.2 8 V V Feedback Voltage (LT1302) V = 0.4V 1.22 1.24 1.26 V FB C Feedback Pin Bias Current
in „Welcher DC-DC-Converter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1302-1605370.pdf
CHARACTERIST DC E IC ICS T A 25°C, V =IN.5V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IQ Quiescent Current VSHDN= 0.5V, FB= 1.3V 200 300 A VSHDN= 1.8V 15 25 A VIN Input Voltage Range 2.0 V 2.2 8 V V Feedback Voltage (LT1302) V = 0.4V 1.22 1.24 1.26 V FB C Feedback Pin Bias Current
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
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PDF
lt1302.pdf
CHARACTERIST DC E IC ICS T A 25°C, V =IN.5V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IQ Quiescent Current VSHDN= 0.5V, FB= 1.3V 200 300 A VSHDN= 1.8V 15 25 A VIN Input Voltage Range 2.0 V 2.2 8 V V Feedback Voltage (LT1302) V = 0.4V 1.22 1.24 1.26 V FB C Feedback Pin Bias Current
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PDF
NT7701Ver2.1.pdf
bits shift register) or in a Shift Clock frequency : dual mode (80-bits shift register x 2) 14 MHz (Max.) (V DD = 5V 10%) 1. Y1 Y160 Single mode 8 MHz (Max.) (V DD = 2.5V - 4.5V) 2. Y160 Y1 Single mode Adopts a data bus system 3. Y1 Y80, Y81 Y160 Dual mode 4-bit/8-bit parallel input modes
in „Wintek WD-H3224V 320x240“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S8254A_E.pdf
Wide operating temperature range −40°C to + 85°C (9) Low current consumption • During operation 30 μA max. (+25°C) • During power-down 0.1 μA max. (+25°C) (10) Lead-free, Sn100%, halogen-free *3 *1. Overcharge hysteresis voltage n (n = 1 to 4) can be selected as 0 V or from a range of 0.1 V to 0.4 V in
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Datei
tan.c
277, 279, 282, 284, 286, 289, 291, 294, 296, 298, 301, 303, 306, 308, 311, 313, 316, 318, 320, 323, 325, 328, 330, 333, 335, 338, 340, 343, 345, 348, 350, 353, 355, 358, 360, 363, 365, 368, 370, 373, 375, 378, 380, 383, 385, 388, 391, 393, 396, 398, 401, 403, 406, 409, 411, 414, 416, 419, 422, 424, 427
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PDF
AT24C01A_02_04_08_16__2001_.pdf
2.5 Low-voltage (2.5V to 5.5V) -1.8 Low-voltage (1.8V to 5.5V) 11 AT24C04 Ordering Information tWR(max) ICC(max) ISB(max) MAX (ms) (µA) (µA) (kHz) Ordering Code Package Operation Range 10 3000 18 400 AT24C04-10PC 8P3 Commercial AT24C04N-10SC 8S1 (0°C to 70°C) AT24C04-10TC 8T 3000 18 400 AT24C04-10PI
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FN8222.pdf
be recalled • Low power CMOS —V = 5V upon a subsequent power-up operation. CC —Active current, 3mA max. The device can be used as a three-terminal potentiom- —Standby current, 750µA max. eter or as a two-terminal variable resistor in a wide • High reliability variety of applications including: —Endurance
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PDF
UC1698u_Revision__1.5.pdf
output impedance.IC to the active area + 1/160 1/12 7.93% e 6.3% 5.7% In addition, please limit the min-max spread of RC decay to 1/160 1/11 7.77% 6.2% 5.6% be: f i | RC MAX– RC MIN | < 0.15 S VIDEO CSTN & COG applications. For LCM with r ft = 180mS ~ 200mS or smaller, bottom of the screen are uniform.e top
in „Defekte Heizungsregelung RC310 Display leuchtet“ · Haus & Smart Home ·
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PDF
MAX534.pdf
MAX534M 8.3 SCLK Pulse Width High tCH MAX534C/E 40 ns MAX534M 50 MAX534C/E 40 SCLK Pulse Width Low tCL ns MAX534M 50 MAX534C/E 40 CS Fall to SCLK Rise Setup CSS ns Time MAX534M 50 SCLK Rise to CS Rise Hold
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PDF
AP9101C.pdf
0.150V 0.600V -0.150V 8.0V 7.3V Selectable Auto Option 1 Permission -BMTRG1 Release AP9101Cxxx Auto 4.325V 4.075V 2.500V 2.900V 0.150V 0.600V -0.100V 8.0V 7.3V Selectable Option 1 Prohibition -BNTRG1 Release AP9101Cxxx Auto -BOTRG1 4.325V 4.075V 2.500V 2.900V 0.150V 0.500V -0.150V 8.0V 7.3V Selectable Release Option 1 Prohibition AP9101Cxxx 4.325V 4.125V 2.500V 2.800V 0.150V 0.600V -0.100V 8.0V 7.3V Selectable Auto Option 1 Permission -BPTRG1 Release AP9101Cxxx 4.300V 4.100V 2.300V 2.300V 0.250V 0.600V -0.100V 8.0V 7.3V Selectable Auto Option
in „LiPo Tiefentladeschutz 1S/Einzel-Zellen "Mini/Nano"“ · Platinen ·
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PDF
PK566-NB.pdf
Characteristics No. No. Description 1 24 VDCʶ 10% +24 VDC 2 Connect + and GND wires of DFC1507, 1.1 A max. 3 the +24 VDC power supply DFC1514, 1.5 A max. CN1 GND 4 Ripple Voltage, 5 Vp-p max. 5 +5V DC Connect + and GND wires of 5 VDC ʶ5%, 0.1 A min. 6 GND 5 VDC stabilized power supply 24V type GND, 5V type
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PDF
UA741CP_datasheet.pdf
〉15 V (unless otherwise noted) CC〉 PARAMETER TEST T † A741C A741I, A741M UNIT CONDITIONS A MIN TYP MAX MIN TYP MAX 25⋅C 1 6 1 5 VIO Input offset voltage V O = 0 Full range 7.5 6 mV VIO(adj) Offset voltage adjust rangV O = 0 25⋅C 〉 15 〉 15 mV 25⋅C 20 200 20 200 IO Input offset current V O = 0 Full range
in „OP Spannung 1,82V bei Min.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34063A-D.PDF
5 −5 −5 C T 4.0 x 10 ton 4.0 x 10 ton 4.0 x 10 on I pk(switch) 2I ǒ ton ) 1 Ǔ 2I 2I ǒ on ) 1 Ǔ out(max) toff out(max) out(max) off Rsc 0.3/Ipk(switch) 0.3/pk(switch) 0.3/pk(switch) L(min) (V * V ) (V * V * V ) (V * V ) ǒ in(min) sat Ǔ t ǒ in(min) sat out Ǔ t ǒ in(min) sat Ǔ t pk(switch) on(max) Ipk(switch) on(max ) Ipk(switch) on(max) C O I t I (t ) t ) I t 9 out on pk(switch) on off 9 out on V ripple(pp) 8V ripple(pp) V ripple(pp) V sat= Saturation voltage of the output switch. V F Forward voltage drop of the
in „MC34063 Invertierte Spannung berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ON_SEMICONDUCTOR__C34063AP1G_DATASHEET.pdf.pdf
5 −5 −5 C T 4.0 x 10 ton 4.0 x 10 ton 4.0 x 10 on I pk(switch) 2I ǒ ton ) 1 Ǔ 2I 2I ǒ on ) 1 Ǔ out(max) toff out(max) out(max) off Rsc 0.3/Ipk(switch) 0.3/pk(switch) 0.3/pk(switch) L(min) (V * V ) (V * V * V ) (V * V ) ǒ in(min) sat Ǔ t ǒ in(min) sat out Ǔ t ǒ in(min) sat Ǔ t pk(switch) on(max) Ipk(switch) on(max ) Ipk(switch) on(max) C O I t I (t ) t ) I t 9 out on pk(switch) on off 9 out on V ripple(pp) 8V ripple(pp) V ripple(pp) V sat= Saturation voltage of the output switch. V F Forward voltage drop of the
in „Step Down Regler zu heiss & Fragen zur Umsetzbarkeit einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063A-D.PDF
5 −5 −5 C T 4.0 x 10 ton 4.0 x 10 ton 4.0 x 10 on I pk(switch) 2I ǒ ton ) 1 Ǔ 2I 2I ǒ on ) 1 Ǔ out(max) toff out(max) out(max) off Rsc 0.3/Ipk(switch) 0.3/pk(switch) 0.3/pk(switch) L(min) (V * V ) (V * V * V ) (V * V ) ǒ in(min) sat Ǔ t ǒ in(min) sat out Ǔ t ǒ in(min) sat Ǔ t pk(switch) on(max) Ipk(switch) on(max ) Ipk(switch) on(max) C O I t I (t ) t ) I t 9 out on pk(switch) on off 9 out on V ripple(pp) 8V ripple(pp) V ripple(pp) V sat= Saturation voltage of the output switch. V F Forward voltage drop of the
in „Fehler in MC33063A-LTSpice-Modell“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Carel-NTC.pdf
NTC 10K@25°C ß 3435 Temp. Valeur de résistance Temp. Valeur de résistance Temp. Valeur de résistance Max. Typique Min. Max. Typique Min. Max. Typique Min. °C KΩ KΩ KΩ °C KΩ KΩ KΩ °C KΩ KΩ KΩ -50 344,60 329,50 314,90 1 26,65 26,13 25,62 56 3,50 3,43 3,35 -49 325,00 310,90 297,30 2 25,52 25,03 24,55 57 3,39
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Datei
RTC.C
char c_str[20]; char r_str[20]; char *lefts( char *str1, unsigned char num1 ) { static char copy1[MAX_STRING]; char bak1[MAX_STRING]; strcpy(bak1, str1); if( num1<32 && num1<=strlen(bak1) ) { strncpy(copy1, bak1, num1 ); *(copy1+num1)=0; } // if( num1<32 && num1<=strlen(bak1) ) return copy1; } // char
in „DS3231 RTCmit PC synchronisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1307.pdf
the operating range*) PARAMETER SYMBOL MIN TYP MAX UNITS NOTES Input Leakage (SCL) LI 1 mA I/O Leakage (SDA & ILO 1 mA SQW/OUT) Logic 0 Output (OL = 5mA) V OL 0.4 V Active Supply Current ICCA 1.5 mA 7 Standby Current I 200 1 CCS mA Battery Current (
in „Real-Time Clock (ds1307)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
innoswitch3-ep_family_datasheet.pdf
FEEDBACK (FB) + FEEDBACK INH DRIVER - VREF QR CABLE DROP COMPENSATION/ SR FEEDBACK COMPENSATION TsMAX + - IS THRESHOLD t OFF(MIN) OSCILLATOR/ SECINH(MAX) TIMER t SS(RAMP) SECONDARY ISENSE GROUND (IS) (GND) PI-8045l-101619 Figure 4. Secondary Controller Block Diagram. 2 Rev. W 06/24 www.power.com InnoSwitch3
in „Fritz Repeater 2400“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
rfm12.c
---------*/ volatile unsigned char delaycnt=0; volatile unsigned char secflag; unsigned char rxbuf[MAX_BUF+1]; // Puffer für empfangene Daten unsigned char txbuf[MAX_BUF+1]; // Puffer für zu sendende Daten unsigned char flags, tx_cnt, rx_cnt, tx_id, tx_status, retrans_cnt; struct TELEGRAM Telegram; unsigned
in „RFM12 und STM32F1xx“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP1800AC52.pdf
Excursions 275 300 May not meet all requirements, but will maintain output regulation. Surges 300 325 May shut down but will not get damaged. Input Frequency 44 66 Hz Input Current 13.3 At 100 Vac 11.2 A At 120 Vac 9.8 At 200 Vac 8.2 At 240 Vac Inrush Transient Measured at 25°C for all line conditions
in „Problem mit 1800W Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP320412-bitA-DConverterDatasheet.pdf
Interface Features Description • 12-bit resolution The Microchip Technology Inc. MCP3204/3208 • ± 1 LSB max DNL devices are successive approximation 12-bit Analog- to-Digital (A/D) Converters with on-board sample and • ± 1 LSB max INL (MCP3204/3208-B) • ± 2 LSB max INL (MCP3204/3208-C) hold circuitry. The
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PDF
2331212.pdf
x 21 - - - - - - 2-pin: 4-pin: 6-pin: ≤ Ø 10 mm x Ø 12.5 mm x ≥ Ø 16 mm 2 HMAX. 2 HMAX. x HMAX. 0 MAX. 0.3 0 MAX. 0.3 ( MAX. 0.3 . . . a a . A2 2 / L 2 2 / 3 1 3 a 4 0 V . D - 0 V . D R0 5 / H u . H 0 . H 0 V . D i u i u . m m m W W W MAX. MAX. MAX. B B B L1 MAX. S LMAX. L1MAX. S LMAX. L1 MAX. S LMAX
in „[V] 80St. Aluminium-Elektrolytkondensatoren, SMD, Becher, radial - SMD, 100 µF, 50 V, Baureihe 146 C“ · Markt ·
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Datei
svpwm_fast.m
alpha; v = -.5*alpha + sqrt(3)/2*beta; w = -.5*alpha - sqrt(3)/2*beta; % Mittelwert des Min und des Max bilden mid = mean([min([u v w]) max([u v w])]); % von -1 1 auf 0 1 bringen, das geht mal Timer Reload in das % Compare register des Timers t1 = (u - mid)*.5 + .5; t2 = (v - mid)*.5 + .5; t3 = (w - mid
in „SVPWM mit LPC1769“ · Mikrocontroller und Digitale Elektronik ·
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PDF
basic_interpreter.pdf
Bootloader flashen Da die Codegröße des Interpreters 7730 Bytes beträgt und damit sehr knapp unterhalb der max. Größe liegt wenn ein Bootloader den Flashvorgang übernehmen soll, kann alternativ die Firmware über den Bootloader geflasht werden (die max. Codegröße bei der Verwendung eines Bootloaders beträgt 7744
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
Units (Note 5) (Note 6) (Note 6) (Note 6) V Input Offset Voltage 0.750 3.0 3.0 mV OS 0.11 1.35 3.7 3.8 max TCVOS Input Offset Voltage 1.0 mV/ C Average Drift § B Input Current (Note 13) pA 0.02 4.0 4.0 10.0 max I Input Offset Current(Note 13) pA OS 0.01 2.0 2.0 5.0 max CIN Common-Mode 3 pF Input Capacitance
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·