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PDF
TCND5000.pdf
CHARACTERISTICS (T amb = 25 °C, unless otherwise specified) PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT OUTPUT (DETECTOR) (2) Forward voltage IF= 50 mA VF 1 1.3 V Breakdown voltage R = 100 μA VBR 60 V Reverse dark current V = 10 V, E = 0 lx I 1 10 nA R ro Diode capacitance VR= 5 V, f = 1 MHz, E
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.cpp
/* * MAX7219.cpp * * Created: 10.03.2024 10:11:05 * Author : Fadel */ #include <avr/io.h> #define F_CPU 16000000UL #include <util/delay.h> #define dinpin 0 #define cspin 1 #define clkpin 2 #define max_port PORTB
in „Atmega32 und MAX7219“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irsf3010.pdf
to the device may occur. (T = c 25°C unless otherwise specified.) Symbol Parameter Definition Min. Max. Units Test Conditions V Continuous Drain to Source Voltage — 50 ds, max V Vin, max Continuous Input Voltage -0.3 10 Ids Continuous Drain Current — self limited Pd PowerDissipation — 40 W Tc ≤ 25°C
in „PIC steuert High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5988-7313EN.pdf
Luminous Intensity Forward Voltage. vs. DC Forward Current. 40 m 35 – T 30 N R 25 R C 20 D R A 15 R O 10 F –F 5 I 0 0 20 40 60 80 100 TA– AMBIENT TEMPERATURE – °C Figure 4. Maximum DC Current vs. Ambient Temperature. 7 10° 0° 20° 1.0 30° 10 SEC. MAX. 40° .8 T S 230°C MAX. N E 50° E R .6 N T PRE-HEAT 140-160°C 4°C/SEC. I A MAX. 60° E E I P .4 L M OVER 2 MIN. 70° M T R .2 O 4°C/SEC. MAX. 80° N TIME 90° 10° 20° 30° 40° 50° 60° 70° 80° 90°100° ANGLE Figure 6. Recommended Reflow Soldering Profile. Figure 5. Intensity vs. Angle
in „Verk. LED HSMF-C655“ · Markt ·
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Datei
diff-20100825.txt
FREQ_GHZ // 20100825 -us + frq = uint64_div32 (frq, _POW_10_FUNC(9) ); + c_freq_text = a_freq_text[FREQ_ID_GHZ]; +# endif + /* Find precision (auto-range) */ uint8_t s = MIN_RES; #if MAX_RES > 0 - while (s && frq >= (uint64_t) pow (10, MAX_RES)) { + // while (s && frq >= (uint64_t) pow (10, MAX_RES)) { + while (s && frq >= (uint64_t) _POW_10_FUNC(MAX_RES)) { frq += 5; // round frq = uint64_div32 (frq, 10); s--; @@ -405,15 +454,30 @@ extern int main (void) */ lcd_cmd (0x0c); lcd_pos (0,
in „Reziproker Frequenzzähler+ Optimierte 64bit uint Routinen“ · Projekte & Code ·
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PDF
BZX399.pdf
BZX399-C Z Z Z ZSM p XXX Z = 50 A (note 1) (see Figs 2, 3 and 4) VR = 0 V Tamb = 25 °C Tol. ±5% MIN. MAX. MAX. TYP. MAX. MAX. 1V8 1.71 1.89 0.65 −0.85 425 6.0 2V0 1.90 2.10 0.70 −0.95 410 6.0 2V2 2.09 2.31 0.75 −1.05 390 6.0 2V4 2.28 2.52 0.80 −1.15 370 6.0 2V7 2.57 2.84 0.85 −1.35 350 6.0 3V0 2.85 3.15
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
servo2.c
< MIN_DEGREE) degree = MIN_DEGREE; if (degree > MAX_DEGREE) degree = MAX_DEGREE; if (servo > MAX_SERVOS - 1) servo = MAX_SERVOS - 1; // // Maximale position (MAX_SERVOPOS) / maximaler Winkel * gewünschter Winkel + 1 // Ergebnis absolute Postion > 0 <= MAX_DEGREE // position = ((((MAX_SERVOPOS * 10) / MAX_DEGREE) * abs(degree) + 10) / 10); if (position == 0) position = 1; setServoPos(servo, position); } void deaktiateServoPorts(byte all, byte servo) {
in „Servo dreht nur 90Grad“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn74hc02.pdf
0,22 28 15 0,25 0,09 5,60 8,20 5,00 7,40 Gage Plane 1 14 0,25 A 0°–ā8° 0,95 0,55 Seating Plane 2,00 MAX 0,05 MIN 0,10 PINS ** DIM 14 16 20 24 28 30 38 A MAX 6,50 6,50 7,50 8,50 10,50 10,50 12,90 A MIN 5,90 5,90 6,90 7,90 9,90 9,90 12,30 4040065 /E 12/01 NOTES: A. All linear dimensions are in millimeters
in „Ersatztype CD4001“ · Mikrocontroller und Digitale Elektronik ·
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PDF
62761.pdf
0,22 28 15 0,25 0,09 5,60 8,20 5,00 7,40 Gage Plane 1 14 0,25 A 0°–ā8° 0,95 0,55 Seating Plane 2,00 MAX 0,05 MIN 0,10 PINS ** DIM 14 16 20 24 28 30 38 A MAX 6,50 6,50 7,50 8,50 10,50 10,50 12,90 A MIN 5,90 5,90 6,90 7,90 9,90 9,90 12,30 4040065 /E 12/01 NOTES: A. All linear dimensions are in millimeters
in „Treiberfähigkeit bei Gatter für LED-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
742792902.pdf
/ value Einheit / unittol. 5,4 [mm] properties test conditisn Max. Impedanz / 70 Mhz Z 5.000 Ω typ. max. impedance DC-Widerstand / 7,0 12,8 DC-resistance R DC 12,00 mΩ max. Nennstrom / IDC 8,00 A max. rated current 2,9 Parallel Induktivität /P-Spice Modell Lp 2,4587
in „parasitäre Bauteile aus Kennlinie ermitteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl494.pdf
O = 1 mA to 10 mA 1 15 mV Output voltage change with temperature ΔT = MIN to MAX 2 10 mV/V A Short-circuit output current REF = 0 V 25 mA (1) For conditions shown as MIN or MAX, use the appropriate value specified
in „TL494 - LED-Strip soft Start und dimmen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
l200.pdf
CHARACTERISTICS (Tamb = 25 C° unless otherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit VOLTAGE REGULATION LOOP Id Quiescent drain Current (pin 3) V i 20 V 4.2 9.2 mA e Output Noise Voltage Vo = Vref I = 10 mA N o V B = 1 MHz 80 Vo Output Voltage Range Io= 10 mA 2.85 36 V V o Voltage
in „L200 Beschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC74VHC1GT66-D.pdf
DO NOT INCLUDE 5 4 MOLD FLASH, PROTRUSIONS, OR GATE BURRS. S −B− INCHES MILLIMETERS 1 2 3 DIM MIN MAX MIN MAX A 0.071 0.087 1.80 2.20 B 0.045 0.053 1.15 1.35 C 0.031 0.043 0.80 1.10 D 0.004 0.012 0.10 0.30 G 0.026 BSC 0.65 BSC D 5 PL 0.2 (0.008) M B M H --- 0.004 --- 0.10 J 0.004 0.010 0.10 0.25 N K
in „Widerstand nötig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34063_2.pdf
in(min)− Vsat V in(min) V sat− Vout V inV sat (on + toffax 1/f min 1/fmin 1/fmin -5 -5 -5 C T 4.5x10 t on 4.5x10 t on 4.5x10 t on IPK(switch) 2I out(max)[(ton off1] 2Iout(max) 2Iout(max) [(ton off)+1] R SC 0.3/IPK(switch) 0.3/I PK(switch) 0.3/IPK(switch) C O Iout on IPK switch)(ton + toff Iout on ≅
in „12 - 24 Volt DC Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC14006B.pdf
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ V – 55_C 25_C 125_C ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎ DD Characteristic Symbol Vdc Min Max Min Typ # Max Min Max Unit ÎÎÎÎOutput VoltageÎÎÎÎÎÎÎÎΓ0” Level VOL 5.0 — 0.05 — 0 0.05 — 0.05 Vdc V = V or 0 10 — 0.05 — 0 0.05 — 0.05 ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ 15 — 0.05 — 0 0.05 — 0.05
in „Platine Bedieneinheit mit Oszi durchmessen“ · Platinen ·
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PDF
OSRAM_LSG_T676.pdf
6) page 15 (typ.)V F 2.0 2.0 V IF= 20 mA (max.) V F 2.3 2.4 V Sperrstrom (typ.)I 0.01 0.01 µA R Reverse current (max.) IR 10 10 µA VR = 12 V Temperaturkoeffizient von λpeak (typ.)TC λpeak 0.14 0.12 nm/K Temperature coefficient ofλpeak I = 20 mA
in „Farberkennung mit Fototransistor (oder doch nicht?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2302221001_Texas-Instruments-TS5A22364DRCR_C2673434.pdf
rounded corners may offer better paste release. www.ti.com PACKAGE OUTLINE DGS0010A VSSOP - 1.1 mm max height SCALE 3.200 SMALL OUTLINE PACKAGE C 5.05TYP 4.75 SEATING PLANE A PIN 1 ID 0.1 C AREA 8X 0.5 10 1 3.1 2.9 2X 2 NOTE 3 5 6 10X0.27 0.17 B 3.1 0.1 C A B 1.1 MAX 2.9 NOTE 4 0.23TYP SEE DETAIL A 0.13
in „Analog Audio Switch Beschaltung (TS5A22364)?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Relay_DIL-CL_Series_E.pdf
Resistance Current Current at 1 kHz and 1 Coil (*at both Coils) Ω mA mH t All Data at 20 °C Nom. Typ. Max. Max. Min. Min. Typ. Max. Height 5.8 mm 9 10 11 15 5 1.6 2.0 2.4 1A 81 513 M 14 15 17 15 5 2.88 3.6 4.32 Hgiht 10.6 mm 15 M 8 9 10 15 5 2.56 3.2 3.92 14 15 17 15 5 3.52 4.4 5.28 1A 81 13 M TT 18 M 3.6
in „Relaisschaltung Stromgeführt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCL-728.pdf
mm (13.4" x 3.9") Reference Voltage Internal: -5 V (±0.05 V) PCL-728: 184 x 119 mm (7.25" x 4.7") -10 V (±0.05 V) Power Consumption External: DC or AC, ±10V max. PCI-726: 5 V @ 500 mA typical, 1 A max. Output Range (Software programmable) 12 V @ 80 mA typical, 110 mA max. 12 V @ 60 mA typical, 90 mA max. Bipolar (V) ±5 PCL-728: 5V @ 800 mA max. Internal Reference Unipolar (V) 0 ~ 5, 0 ~10 Current Loop (mA) 4 ~ 20 Operating Temperature 0 ~ 50° C (32 ~ 122° F) External Reference Bipolar (V) ±10 Storage
in „[Ver-schenke/-kaufe] PC-Karten für Analog/Digital E/A, Router, Analog-Video zu VGA-Konverter“ · Markt ·
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PDF
PCL-728.pdf
mm (13.4" x 3.9") Reference Voltage Internal: -5 V (±0.05 V) PCL-728: 184 x 119 mm (7.25" x 4.7") -10 V (±0.05 V) Power Consumption External: DC or AC, ±10V max. PCI-726: 5 V @ 500 mA typical, 1 A max. Output Range (Software programmable) 12 V @ 80 mA typical, 110 mA max. 12 V @ 60 mA typical, 90 mA max. Bipolar (V) ±5 PCL-728: 5V @ 800 mA max. Internal Reference Unipolar (V) 0 ~ 5, 0 ~10 Current Loop (mA) 4 ~ 20 Operating Temperature 0 ~ 50° C (32 ~ 122° F) External Reference Bipolar (V) ±10 Storage
in „[V] PCL-728 - 2-Kanal Analog-OUT-Karte für PC (12-Bit, +/-10V, 0.10V, 4.20mA uvm.)“ · Markt ·
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Datei
max7221__5x7_dot_matrix_.h
any way. //// //////////////////////////////////////////////////////////////////////////// #ifndef MAX7221_CS #define MAX7221_CS PIN_C0 #define MAX7221_CLK PIN_C3 #define MAX7221_DIN PIN_C5 #endif // Register address map #define NO_OP 0x00 // Used when cascading max7221s #define DIGIT_0 0x01 // Digit
in „Max7221 text routieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317.pdf
apply over full Operating Tempera- ture Range. Unless otherwise specified,IN− VOUT = 5V, and OUT = 10 mA. Parameter Conditions LM117 (Note 2) Units Min Typ Max Reference Voltage V 3V ≤ (IN − VOUT) ≤ 40V, 1.20 1.25 1.30 V 10 mA ≤ OUT ≤ IMAX, P ≤ MAX Line Regulation 3V ≤ (V − V ) ≤ 40V (Note 4) 0.01 0.02
in „LM317 für 70V DC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM117.pdf
apply over full Operating Tempera- ture Range. Unless otherwise specified,IN− VOUT = 5V, and OUT = 10 mA. Parameter Conditions LM117 (Note 2) Units Min Typ Max Reference Voltage V 3V ≤ (IN − VOUT) ≤ 40V, 1.20 1.25 1.30 V 10 mA ≤ OUT ≤ IMAX, P ≤ MAX Line Regulation 3V ≤ (V − V ) ≤ 40V (Note 4) 0.01 0.02
in „Stromquelle für LED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317.pdf
apply over full Operating Tempera- ture Range. Unless otherwise specified,IN− VOUT = 5V, and OUT = 10 mA. Parameter Conditions LM117 (Note 2) Units Min Typ Max Reference Voltage V 3V ≤ (IN − VOUT) ≤ 40V, 1.20 1.25 1.30 V 10 mA ≤ OUT ≤ IMAX, P ≤ MAX Line Regulation 3V ≤ (V − V ) ≤ 40V (Note 4) 0.01 0.02
in „LM317T nicht gleich LM317T?!?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HSR_0025RT.pdf
Daten @ 25 °C Features Kontaktform A Kontaktmaterial Rh Weltkleinster Schließerkontakt! Schaltleistung max. W / VA 0,25 Mikro-Reedschalter mit 4 mm Schaltspannung max. VDC 30 Glaslänge VAC 20 Schaltstrom max. A 0,01 Größtmögliche Miniaturisierung für Dauerstrom max. A 0,7 Einsatz in Medizintechnik Spannungsfestigkeit
in „DAU-Frage: Batteriegetriebene Lösung um Reed-Kontakt eines Gaszählers zu überwachen“ · Haus & Smart Home ·
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Datei
listqc-tre2.cpp
static bool print_recursion = false; static bool no_output = false; // algo parameters static const int max_num_digits = 20; static int num_digits, min_val, max_val, checksum; // working vars static int digits[max_num_digits]; // the result static int max_cs[max_num_digits], min_cs[max_num_digits]; // helper
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Datei
listqc-tre.cpp
static bool print_recursion = false; static bool no_output = false; // algo parameters static const int max_num_digits = 20; static int num_digits, min_val, max_val, checksum; // working vars static int digits[max_num_digits]; // the result static int max_cs[max_num_digits], min_cs[max_num_digits]; // helper
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PDF
ds-CLQ6A-TKW-1140398.pdf
time = 100s max. Preheat time = 100s max. Ramp-down rate = 6ºC/s max Peak temperature = 250ºC maxmax. Ramp-down rate = 6ºC/s max. Time within 5ºC of actual Peak Temperature = 10s max Peak temperature = 250ºC max. Duration above 217ºC is 60s maxPeak Temperature = 10s max. Time within 5ºC of actual Peak Temperature = 10s max. Duration above 183ºC is 80s max. Duration above 217ºC is 80s max. Only use LP6-NPP 1-01-N1 [13] Solder = Low Lead-free
in „Wahl LED + Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_XBee_OEM_RF-Modules.pdf
OUR-XBEEPRO Agency Industry Canada (IC) 4214A-XBEE 4214A-XBEEPRO Approvals Europe (CE) ETSI ETSI (Max TX output = 10 mW) Specifications are subject to change without notice.* When operating in Europe: XBee-PRO Modules must be configured to operate at a maximum TX power output level of 10 dBm (power
in „1 Byte übertragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Optokoppler_AQV252GA.pdf
0.03 Ω Within 1 s Off state leakage F = 0 mA Maximum ILeak - 1 μA current VL= Max. Typical 1.1 ms F = 5 mA Turn on time* Ton - L = 100 mA Maximum 5.0 ms VL= 10 V i i Typical 0.1 ms 0.25 ms F = 5 mA e Turn off time* Toff - L = 100 mA c Maximum 0.5 ms VL= 10 V r h Typical 0.8 pF f
in „Zu blöd Datenblatt lesen AQV252GA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NECCS04393-1.pdf
bath temperature: 260°C max., Time: 10 seconds max., WS60-00-1 Count: Once, Preheating temperature: 120°C max. (package surface temperature) Partial heating Pin temperature: 350°C max., Time: 3 seconds max. (per pin row) − Caution
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt.pdf
(max) fDA Fall time of SDA signal 10 ns (min) High Speed Mode, C =b100pF 80 ns (max) 20 ns (min) High Speed Mode, C =b400pF 160 ns (max) Standard Mode 1000 ns (max) 20+0.1C b ns (min) Fast Mode 300 ns (max
in „ADC121 I²C-AD-Wandler funktioniert nicht, wieso?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Emerson_ave350b-48s28-6_v1_0_def2cb32b1.pdf
Input under voltage Turn off voltage 31 33 35 V threshold lockout Lockout voltage 1 2 3 V hysteresis Max. input current 10.5 11.5 A 36Vin full load No load input current 0.035 A Standby Input current 0.001 A Remote OFF Input reflected ripple current 35 mA pp Through 12 H inductor; Figure 15 Fast blow external
in „FU-Zwischenkreis aus DC/DC Wandler speisen Solarpumpe“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.cc
int i=0;i<SUBSEQ_LEN+1;i++) csum+=p2pDist[pipe[pipePos-i-1]][pipe[pipePos-i]]; if(csum>subseq_min+1e-10) return false; else return true; } // recursive calculation function void recCalc(int* pipe, int pos, int max, double sum) { // loop over all points for(int i=0;i<p2pDist.size();i++) { // if this point
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PDF
MOC3021M.pdf
Min. Typ. Max. Units d IFT LED Trigger Current Voltage = 3V3) MOC3020M 30 mA o m MOC3010M 15 P MOC3021M h s MOC3011M 10 e MOC3022M O MOC3012M 5 t o MOC3023M s I Holding Current, Either All 100 µA l H Direction t
in „Blitzgerät an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E416-E1-02_ZX1_Series_Datasheet.pdf
measurement center dis- 0.17 mm dia. 0.33 mm dia. 0.52 mm dia. 0.56 mm dia. tance) *2 Power supply voltage 10 to 30 VDC, including 10% ripple (p-p) Current consumption 250 mA max. (at power supply voltage 10 VDC) Load power supply voltage: 30 VDC max., Load current: 100 mA max. Control output (Residual voltage: 1 V max. (load current 10 mA or less), 2 V max. (load current of 10 to 100 mA)) Analog output Current output: 4 to 20 mA, maximum load resistance: 300 Digital display (red), output indicator (OUT1, OUT2)
in „Microcontroller oder AD-Wandler für ZX1 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
Z H 0.02 t2 T 0.01 NOTES: DUTY FACTOR: D = t1 2 SINGLE PULSE PEAKT J P DM x ZθJCx RθJC +TC 0.01 1 10-5 10 -4 10-3 10-2 10-1 10 0 10 t , RECTANGULAR PULSE DURATION (s) 1 FIGURE 3. NORMALIZED MAXIMUMTRANSIENTTHERMAL IMPEDANCE 400 T = MAX RATED 103 J FORTEMPERATURES ABOVE 25 C o SINGLE PULSEo DERATE PEAK
in „Motorensteuerung Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RUEF.pdf
PassiveAging 85°C, 1000 hrs ±5% HumidityAging 85°C, 85% R.H., 1000 hrs ±5% Thermal Shock 85°C to -40°C (10 times) ±5% Solvent Resistance MIL-STD-202, Method 215F No change Moisture Resistance Level Level 1, J-STD-020 40°C max, 70% RH max; devices should remain in original sealed bags prior to use. Storage
in „PTC Beschriftung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Storm_Matrixtastatur_Datasheet.pdf
Key Life (cycles) > 4 Million > 2 Million 0 0 0 0 Service Temp. (non condensing) -40 C to +100 C -10 C to +75 C Case Material Chromed zinc Super impact polymer Case Colour Silver Black Contact Materials Carbon/Gold Carbon/Gold Contact Bounce 5ms 5ms Contact Resistance 100 ohms (max) 100 ohms (max) Insulation
in „Neue Storm 4x4 Matrixtastatur mit roter Hintergrundbeleuchtung“ · Markt ·
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Datei
Maiskolben_TFT.ino
44,76,72,16,BLACK); } tft.setTextColor(off ? temperature < TEMP_COLD ? CYAN : RED : tft.Color565(min(10,abs(temperature-target_t))*25, 250 - min(10,max(0,(abs(temperature-target_t)-10)))*25, 0), BLACK); if (temperature < TEMP_COLD) { tft.print(F("COLD ")); } else { tft.write(' '); printTemp(temperature
in „Maiskolben Lötstation Display steht Kopf“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Maiskolben_TFT.ino
44,76,72,16,BLACK); } tft.setTextColor(off ? temperature < TEMP_COLD ? CYAN : RED : tft.Color565(min(10,abs(temperature-target_t))*25, 250 - min(10,max(0,(abs(temperature-target_t)-10)))*25, 0), BLACK); if (temperature < TEMP_COLD) { tft.print(F("COLD ")); } else { tft.write(' '); if (temperature < 100
in „Probleme bei kompilieren des Maiskolben-Sketch's“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pendel.pdf
mathematisches Pendel ‾‾ φ′′ t + ― ⋅sin(φ t =0 φ t =φ ⋅sin ω⋅t ) ω= ― l max l Winkelgeschwindigkeit φ′ t =φ max⋅ω⋅cos ω⋅t ) ( ) 2 ( ) ( ) Winkelbeschleunigung φ′′ t =-φ max ⋅ω ⋅sin ω⋅t =α t Tangentialbeschleunigung a =l⋅α T a (t =l⋅ -φ ⋅ω ⋅sin ω⋅t )⎞ T ⎝ max ⎠ ⎛ ⎞ asin ⎜――φ
in „Beschleunigungssenor in Weg umrechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pendel.pdf
mathematisches Pendel ‾‾ φ′′ t + ― ⋅sin(φ t =0 φ t =φ ⋅sin ω⋅t ) ω= ― l max l Winkelgeschwindigkeit φ′ t =φ max⋅ω⋅cos ω⋅t ) ( ) 2 ( ) ( ) Winkelbeschleunigung φ′′ t =-φ max ⋅ω ⋅sin ω⋅t =α t Tangentialbeschleunigung a =l⋅α T a (t =l⋅ -φ ⋅ω ⋅sin ω⋅t )⎞ T ⎝ max ⎠ ⎛ ⎞ asin ⎜――φ
in „Beschleunigungssenor in Weg umrechnen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration_adv.h
temperature errors that can occur // before a min_temp_error is triggered. (Shouldn't be more than 10.) //#define MAX_CONSECUTIVE_LOW_TEMPERATURE_ERROR_ALLOWED 0 // The number of milliseconds a hotend will preheat before starting to check // the temperature. This value should NOT be set to the time it
in „Marlin 2.0.72 lässt sich nicht compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HSDL-3612.pdf
0.50 (40 mm MIN.) DIRECTION OF PULLING CONFIGURATION OF TAPE LABEL SHAPE AND DIMENSIONS OF REELS A 10° 4 5 6 ∅1.55 ± 0.05 2.00 ± 0.10 4.00 ± 0.10 B 3 1.75 ± 0.10 5° (MAX.) 11.50 ± 0.10 2 12.50 ± 0.10 3.8 12 A 24.00 ± 0.30 1 ∅1.5 ± 0.18 0.40 ± 0.10 A A B 10 8.00 ± 0.10 A 7 11 4.25 ± 0.10 5° (MAX.) SECTION
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BUZ11.pdf
CHARACTERISTICS (Tcase = 25 C unless otherwisespecified) OFF Symbol Parameter Test Conditions Min. Typ. Max. Unit V(BR)DSS Drain-source ID= 250 A V GS= 0 50 V Breakdown Voltage DSS Zero Gate Voltage VDS = Max Rating 1 A Drain Current (GS = 0) VDS = Max Rating j= 125 C 10 A GSS Gate-body Leakage VGS = 〉 20 V 〉 100 nA Current (DS = 0) ON (∗) Symbol Parameter Test Conditions Min. Typ. Max. Unit V GS(th) Gate Threshold Voltage VDS = VGS ID= 1 mA 2.1 3 4 V R DS(on) Static Drain-source On VGS = 10V D = 19 A 0.03 0.04 Resistance DYNAMIC Symbol Parameter Test Conditions Min. Typ. Max. Unit
in „Transistorschalter für Glühlampe 12V 5W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUW84.PDF
Product specification Silicon diffused power transistors BUW84; BUW85 MGB938 handbook, full pagewidth 10 I ICM max δ = 0.01 C (A) IC max p = 20 s (1) 1 II 50 s 100 s 200 s 500 s (2) 10−1 1 ms 2 ms I 5 ms 10 ms DC 10−2 III IV 10−3 10 102 103 104 VCE (V) BUW84. Tmb ≤ 25 °C. I - Region of permissible DC operation
in „Hochspannung Regeln für eine Bildverstärker Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NC7SZ14-D.PDF
ELECTICAL CHARACTERISTICS T = +25°C T = −40 to +85°C A A Symbol Parameter V (V) Conditions Min Typ Max Min Max Unit CC VP Positive Threshold Voltage 1.65 − 1.00 1.40 − 1.40 V 1.80 − 1.10 1.50 − 1.50 2.30 − 1.40 1.80 − 1.80 3.00 − 1.75 2.20 − 2.20 4.50 − 2.45 3.10 − 3.10 5.50 − 2.90 3.60 − 3.60 VN Negative
in „Was ist das? SMD Marking code Z14B“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1N5817_1.pdf
of reverse voltage (max. values); R th j-a 100 K/W. R th j-a 100 K/W. 200 MBG432 0.20 MBG437 handbook, halfpage handbook, halfpage T PR oj (W) V V ( C) V RWM RWM R δ = 0.5 δ = 0.2 150 VRWM 0.15 δ = 0.2 100 0.10 VR VRWM δ = 0.5 50 0.05 0 0 0 10 20 30 0 10 20 30 VR(V) V RV) Fig.8 1N5818. Maximum permissible junction Fig.9 1N5818. Reverse power dissipation as a temperature as a function of reverse voltage; function of reverse voltage (max. values
in „Suche Diode mit niedriger Durchlass-Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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MC14541.pdf
2000 – Rev. 6 MC14541B/D MC14541B PIN ASSIGNMENT Rtc 1 14 VDD C 2 13 B tc RS 3 12 A NC 4 11 NC AR 5 10 MODE MR 6 9 Q/Q SEL V SS 7 8 Q NC = NO CONNECTION ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ (Voltages Referenced tSS) VDD – 55_C 25_C 125_C Characteristic Symbol Vdc Min Max Min Typ (4.) Max Min Max Unit Output
in „unbekannte Platine“ · Mikrocontroller und Digitale Elektronik ·