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mcp23008.pdf
11 GP0 of the input port data N/C 10 N/C External reset input Low standby current: 1 µA (max.) MCP23S08 PDIP/SOIC Operating voltage: - 1.8V to 5.5V @ -40°C to +85°C (I-Temp) SCK 1 18 V DD - 2.7V to 5.5V @ -40°C to +85°C (I-Temp) SI 2 17 GP7 SO 3 8 16 GP6 - 4.5V to 5.5V @ -40°C to +125°C (E-Temp) 4 0
in „MCP23008 Problem“ · Mikrocontroller und Digitale Elektronik ·
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MCP4821-MCP4822.pdf
. Frequency. 4.100 1.10.0 V )4.096 ( ( e U4.092 1.1. 0 Eniin P-P V l l4.088 VDD: 5.5V V c e S VDD: 5V o u4.084 1.E-04 F u 4.080 t Eniin RMS u 4.076 O Maximum Measurement Time = 10s 1.E- 5 -40 -20 0 20 40 60 80 100
in „Digital-Analog-Umsetzer (10V -> 1mV Auflösung)“ · Mikrocontroller und Digitale Elektronik ·
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DE.pdf
resistance, current, power, allowable V DC (max.) V DC (min.) Ω (±10%) voltage, V DC (initial) (initial) mA (±10%) mW V DC DET-1.5V 1.5 1.05 0.15 11.3 132.7 200 1.95 DET-3V 3 2.1 0.3 45 66.6 200 3.9 DET-4.5V 4.5 3.15 0.45 101 44.5 200 5.85 DET-5V 5 3.5 0.5 125 40 200 6.5 DET-6V 6 4.2 0.6 180 33.3 200 7.8 DET
in „Spart man Strom wenn man den ADC langsamer taktet?“ · Mikrocontroller und Digitale Elektronik ·
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PCA82C251_PHI.pdf
1 voltage at pins 6 and 7 V1= 1 V; RL= 45 1.5 − − V V1= 4 V; no load −500 − +50 mV I short-circuit CANH currentV = −5 V − − −200 mA sc7 7 V7= −36 V − −100 − mA sc6 short-circuit CANL currentV6= 36 V − − 200 mA DC bus receiver [V = 4 V; pins 6 and 7 externally
in „Differentielle Datenübertragung, welcher Baustein empfehlenswert?“ · Mikrocontroller und Digitale Elektronik ·
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69034fe-6.pdf
Supply Peak-to-Peak Jitter vs Frequency Frequency Voltage 10 10 60 V = 3V 9 50 ) 8 ) ( A ( R ( 7 E 40 E 1 T N J E 6 T K R 5 I 30 E C E - Y 4 + T - P V = 5V U 20 A 0.1 U 3 T P S + O 2 V = 3V 10 1 0 0.01 0 0.1 1 10 100 0.001 0.01 0.1 1 10 100 2.5 3.0 3.5 4.0 4.5 5.0 5.5 FREQUENCY (MHz) FREQUENCY (MHz)
in „I2C Deadlock beim Senden - LTC6904“ · Mikrocontroller und Digitale Elektronik ·
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HIP4086_Mostfet.pdf
INPUTS = 5V C GATE= 1000pF DD ) ) 200kHz A A ( 5 ( 25 T VDD = 15V T N N R R 100kHz R VDD= 12V R U 4 C 20 50kHz Y Y L V = 10V L P DD P U U S 3 V = 8V S 15 20kHz D DD D 10kHz V V V = 7V DD 2 10 -60 -40 -20 0 20 40 60 80 100 120 140 160 -60 -40 -20 0 20 40 60 80 100 120 140 160 JUNCTION TEMPERATURE (
in „Kommunikation zwischen mehreren µC“ · Mikrocontroller und Digitale Elektronik ·
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VISH-S-A0008073360-1.pdf
30 GSOT24C e ) e n e ) e e l ( 25 l l l ( 60 20 µs to 50 % l l n R s n d P s n 2 V 20 GSOT15C 1 2 2 IP 1 2 40 15 100 100 GSOT12C 10 GSOT08C 20 5 0 10 0 10 0.01 1 100 10 000 0 10 20 30 40 IR(µA) t (µs) Fig. 2 - Typical Reverse Voltage R vs. Reverse Current R Fig. 5 - 8
in „Diode, heil oder defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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cd4066b.pdf
1.5 V = 10V DD TA= 25°C 1.3 mA Vis 0V TA= 85°C 1.1 TA= 125°C 0.9 IIS Switch input current TA= –55°C -1.6 TA= –40°C -1.5 VDD = 10V T = 25°C -1.3 mA Vis 10V A TA= 85°C -1.1 TA= 125°C -0.9 TA= –55°C 4.2 TA= –40°C 4 VDD = 15V V = 0V TA= 25°C 3.4 mA is TA= 85°C 2.8 T = 125°C 2.4 A T = –55°C -4.2 A TA= –40°C -4 V = 15V DD TA= 25°C -3.4 mA Vis 15V TA= 85°C -2.8 TA= 125°C -2.4 6 Submit Document Feedback Copyright © 2024 Texas Instruments Incorporated
in „Audi Delta mit Bluetooth per AM Taste“ · Fahrzeugelektronik ·
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ABB_Brochure_Terra_DC_Fast_charger_oct_2021.pdf
kA (UL models) Pre- charge current < 1 A < 1 A Inrush current < 100 A < 100 A Leakage current 0.8 mA 0.8 mA Energy metering Optional: MID metering for AC and DC outlets Optional: Eichrecht/PTB compliant metering solution for AC and DC outlets Cellular communication GSM / 4G / LTE GSM / 4G / LTE User
in „Standbyverbrauch Schnelladestation.“ · Haus & Smart Home ·
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IL74.pdf
current 1.5 T Normalized to: 1000 C Vce = 10V, IF = 10mA, Ta = 25°C e Ta = 25°C d s A 100 z1.0 CTRce(sat) Vce = 0.4V B - Icb = 1.0357 *IF ^1.3631 l r t m c e 10 o l ur N o c 1 -0.5 - t R Ta = 85°C b h T NCTR(SAT) I P .1 N 0.0 NCTR .01 .1 1 10 100 100 .1 1 10 IF - LED Current - mA IF
in „Hilfe für Schaltung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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IL74_ILD74_ILQ74_SIE.pdf
current 1.5 T Normalized to: 1000 C Vce = 10V, IF = 10mA, Ta = 25°C e Ta = 25°C d s A 100 z1.0 CTRce(sat) Vce = 0.4V B - Icb = 1.0357 *IF ^1.3631 l r t m c e 10 o l ur N o c 1 -0.5 - t R Ta = 85°C b h T NCTR(SAT) I P .1 N 0.0 NCTR .01 .1 1 10 100 100 .1 1 10 IF - LED Current - mA IF
in „Eingänge über Optokoppler abfragen“ · Mikrocontroller und Digitale Elektronik ·
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m1306b.pdf
1.4 A 1.1 A Power = 30,00 dBm GSM 1800 During 1TX bursts @Pcl0 @ 32 V 570 mA 380 mA Input average supply current in @ 5.5 V 300 mA 240 mA communication mode Power = 33,10 dBm GSM 900 Average 1Rx/1Tx @Pcl5
in „[V] gebrauchtes GSM-Modem von Wavecom Fastrack“ · Markt ·
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tlc59108.pdf
temperature range (unless otherwise noted) MIN MAX UNIT VCC Supply voltage 0 7 V VI Input voltage –0.4 7 V V Output voltage –0.5 20 V O O Output current 120 mA TJ Junction temperature –40 150 °C Tstg Storage temperature –55 150 °C (1) Stresses beyond those listed under Absolute Maximum Ratings may cause
in „[V] 4St. LED Treiber TI - TLC59108 8-Bit Fm+ I2C-Bus Constant-Current LED Sink Driver“ · Markt ·
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NSI45060JD-D.pdf
typ @ Vak = 7.5 V U 0 T C , e −10 S 10 I TA= 25°C, adj= Open g DC Test Steady State, Stilladj Open −20 Ir 0 −10 0 10 20 30 40 50 60 0 1 2 3 4 5 6 7 8 9 10 Vak, ANODE−CATHODE VOLTAGE (V) Vak, ANODE−CATHODE VOLTAGE (V) Figure 1. General
in „Strombegrenzungs-IC?“ · Analoge Elektronik und Schaltungstechnik ·
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Nexperia-74AHCT123APW_118-datasheet.pdf
2.0 - 1.9 - 1.9 - V voltage O CC O = 50 A; V CC = 3.0 V 2.9 3.0 - 2.9 - 2.9 - V O = 50 A; V CC = 4.5 V 4.4 4.5 - 4.4 - 4.4 - V I = 4.0 mA; V = 3.0 V 2.58 - - 2.48 - 2.40 - V O CC O = 8.0 mA; V CC = 4.5 V 3.94 - - 3.8 - 3.70 - V V OL LOW-level V I V IH or VIL output voltage O = 50 A; V CC = 2.0
in „Einfache digitale Wiedereinschaltverzögerung im µs Bereich“ · Mikrocontroller und Digitale Elektronik ·
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Teileliste-04-19-1539.pdf
Audio-IC 1-Kanal DIP-8 TDA 7267 3 1,60 EUR 0,56 EUR 51 Finder Subminiaturrelais 250V 10A, 5V FIN 36.11 5V 4 1,99 EUR 0,70 EUR 52 Omron Relais G8P-1A4P 1 2,00 EUR 53 Meder Reedrelais 1A, 5V DIP 7212-L 5V 0 1,85 EUR 0,65 EUR 54 Sharp Halbleiter-Relais S202S02 1 3,00 EUR 55 Drucksensor 20 … 250 kPa, 20 mV/kPa
in „Bauelemente abzugeben“ · Markt ·
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Teileliste-04-19-1957.pdf
Audio-IC 1-Kanal DIP-8 TDA 7267 3 1,60 EUR 0,56 EUR 51 Finder Subminiaturrelais 250V 10A, 5V FIN 36.11 5V 4 1,99 EUR 0,70 EUR 52 Omron Relais G8P-1A4P 1 2,00 EUR 53 Meder Reedrelais 1A, 5V DIP 7212-L 5V 0 1,85 EUR 0,65 EUR 54 Sharp Halbleiter-Relais S202S02 1 3,00 EUR 55 Drucksensor 20 … 250 kPa, 20 mV/kPa
in „Bauelemente abzugeben“ · Markt ·
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Teileliste-04-20-1111.pdf
Audio-IC 1-Kanal DIP-8 TDA 7267 3 1,60 EUR 0,56 EUR 51 Finder Subminiaturrelais 250V 10A, 5V FIN 36.11 5V 4 1,99 EUR 0,70 EUR 52 Omron Relais G8P-1A4P 1 2,00 EUR 53 Meder Reedrelais 1A, 5V DIP 7212-L 5V 0 1,85 EUR 0,65 EUR 54 Sharp Halbleiter-Relais S202S02 1 3,00 EUR 55 Drucksensor 20 … 250 kPa, 20 mV/kPa
in „Bauelemente abzugeben“ · Markt ·
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maxim_481_483_491.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 MAX481, MAX485, MAX1487 20 90 200 1 Figures 6 and 10, Receiver Input to Output PLH PHL RDIFF= 54Ω,
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MAX485.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 MAX481, MAX485, MAX1487 20 90 200 1 Figures 6 and 10, Receiver Input to Output PLH PHL RDIFF= 54Ω,
in „Kommunikation mit PC“ · Mikrocontroller und Digitale Elektronik ·
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SIM800_Hardware_Design_V1.09.pdf
cause permanent damage to SIM800. Table 35: Absolute maximum ratings Symbol Min Typ Max Unit VBAT - - 4.5 V Peak Current 0 - 2.0 A USB_VBUS - - 12 V II* - 4 mA IO* - 4 mA These parameters are for digital interface pins, such as keypad, GPIO, I2C, UART, LCD and PCM. 6.2 Recommended Operating Conditions
in „SIM800L Verbindung instabil“ · Mikrocontroller und Digitale Elektronik ·
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BettyHHU.pdf
KBDO1 KBDO1 KBDO1 A4 38 AMB_D4 AMB_A5 21 DQ3 1% 4 AMB_A6 20 DQ4 A4 38 AMB_D4 VDD3 1 BM1 A5 40 AMB_D5 AMB_A6 20 DQ4 R3 0R T 5 BM0 AMB_A7 19 DQ5 A5 40 AMB_D5 50MA 2 AMB_OE ICT4 6 SW8 SW6 SW16 A6 42 AMB_D6 AMB_A7 19 DQ5 WUERTH
in „Innenleben von Betty TV“ · Mikrocontroller und Digitale Elektronik ·
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LM317L.pdf
BODY SIZE (NOM) • Ripple Rejection Typically 80 dB • For Higher Output Current Requirements, SOIC (8) 4.90 mm × 3.91 mm TO-92 (3) 4.30 mm × 4.30 mm See LM317M (500 mA) and LM317 (1.5 A) LM317L SOT-89 (3) 4.50 mm × 2.50 mm 2 Applications TSSOP (8) 3.00 mm × 4.40 mm • Electronic Points of Sale • Medical,
in „0-10V in Stufen mit Auf-/Ab-Kontakt durchschalten“ · Haus & Smart Home ·
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SS8050_D-2320098.pdf
Cut-Off Current V EB= 6 V,CI = 0 100 nA h V = 1 V, I = 5 mA 45 FE1 CE C hFE2 DC Current Gain V CE= 1 V,CI = 100 mA 85 300 hFE3 V CE= 1 V,CI = 800 mA 40 VCE (sat) Collector-Emitter Saturation VoltIC= 800 mA, B = 80 mA 0.5 V VBE (sat) Base-Emitter Saturation Voltage
in „LED Ansteuerung für Lazertag Projekt“ · Mikrocontroller und Digitale Elektronik ·
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EW162B0YLY.pdf
. 0 V CLOCK OSCILLATION FOSC Ta = 25 °C 270 KHZ FREQUENCY LED FORWARD VOLTAGE VF IF = 130 mA 4 . 24 . 6 V LED FORWARD CURRENT IF 1 3 0 mA LED REVERSE CURRENT IR VR = 8 V 0.2 mA MODEL NO. VERSION PAGE E M E R G I N G D I S P L A Y TECHNOLOGIES CORPORATION 162B0(LED TYPES) 4 4 5 .
in „Probleme bei 16x2 LCD mit KS0066 (EW162B0YLY)“ · Mikrocontroller und Digitale Elektronik ·
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BTS141_DS_14.pdf
caused by the second 2 temperature sensor, achieved by an integrating measurement. Datasheet 5 Rev. 1.4, 2012-07-11 Smart Low Side Power Switch HITFET BTS 141 Maximum allowable power dissipation On-state resistance P = f(T ) R ON = f(T j; I D12A; V =10VIN tot c BTS 141 160 60 W Ω 120 ) o t S 40 t D P 100
in „BTS141 - welcher Pin ist mit dem Gehäuse verbunden“ · Analoge Elektronik und Schaltungstechnik ·
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2243913.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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22107B-1180063.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
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PDF
2243913.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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PDF
2243913.pdf
DNL 0.2 R ( 220 INL ( 220 INL c DNL 0.1 b c 4 b n s180 S a 180 S s m ( s m ( s h 0 o s 140 2 o e (o40 r R ( RW r r RW -0.1 E r 100 E p 100 125°C p 0 i 85°C -0.2 i -40°C W 60 25°C W 60 25°C DNL -40°C 125°C 85°C 20 -0.3 20 -2 0 32 64 96 128 160 192
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
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BTS462T_20040127.pdf
through input pin (DC) IN ± 5 mA Operating temperature Tj -40 ...+150 °C Storage temperature Tstg -55 ... +150 Power dissipation 1) P 41.6 W tot Inductive load switch-off energy dissipation)2) EAS 4.4 J single pulse, (see page 8) Tj
in „Schaltregler-Diskussion“ · Analoge Elektronik und Schaltungstechnik ·
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74HC_HCT573.pdf
V). Symbol Parameter Conditions 25 C 40 C to +85 C 40 C to +125 C Unit Min Typ Max Min Max Min Max 74HC573 V IH HIGH-level V CC = 2.0 V 1.5 1.2 - 1.5 - 1.5 - V input voltage V = 4.5 V 3.15 2.4 - 3.15 - 3.15 - V CC V CC = 6.0 V 4.2 3.2
in „Hilfe bei der Programmierung von LCD mit einem ATmega16“ · Mikrocontroller und Digitale Elektronik ·
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RTC-58321.pdf
V = 0V -1 Input capacity C I f = 1MHz 5 pF Current consumption IP VDD = 5V *4 100 500 mA *5 20 40 VDD = 3V *4 15 30 *5 7 20 Oscillation start time *6 tosc VDD = 5V 1.5 3.0 sec. Ta = 25ºCºC *1 Pins CS , WRITE, READ, ADDRESS WRITE, STOP, TEST and D to D 3 *2 CS 1 *3 Pins CS , CS
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INN3977CQ.pdf
S2 (MOSFET Switching at f SW 0.85 2.00 TJ= 25 °C -1.75 -1.35 -0.88 ICH1 V BP= 0 V -1.93 -0.75 BPP Pin Charge Current VDS= 30 VDC mA TJ= 25 °C -5.98 -4.65 -3.32 ICH2 V BP= 4 V -6.87 -2.49 BPP Pin Voltage
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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BF1009SW_2001_INF.pdf
15 mA mW 12 11 t 200 10 t D P I 9 150 8 7 6 100 5 4 3 50 2 1 0 0 0 20 40 60 80 100 120 °C 150 0.0 1.0 2.0 3.0 4.0 V 6.0 T S VG2S Insertion power gain Forward transfer admittance 2 | S21 | = f (V G2S ) | Y21 | = f (V G2S ) 10 28 dB mS 0 24 -5 22 2 1 -10 | 20 2 -15 2 18 | | -20 16 -25 14 -30 12 -35 10 -40 8 -45 6 -50 4 -55 2 -60 0 0.0 1.0 2.0 3.0 4.0 V 6.0 0.0 1.0 2.0 3.0 4.0 V 6.0 V G2S VG2S 3 Jun-28-2001 BF1009SW Gate
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lm3916.pdf
mA I = 20 mA 1 3 mA LED Dropout Voltage ILED(ON)= 20 mA @ VLED = 5V, ∆I = 2 mA 1.5 V LED Saturation Voltage ILED= 2.0 mA, IL(REF)= 0.4 mA 0.15 0.4 V Output Leakage, Each Collector Bar Mode (Note 5) 0.1
in „Eingangstufe LCD Stereo VU Meter“ · Analoge Elektronik und Schaltungstechnik ·
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adl-66505tl.pdf
670 nm P =50mW ,CW o Threshold current Ith - 45 60 mA Kink free Operating current I - 90 120 mA op Operating voltage V op 2.0 2.5 3.0 V η Differential efficiency 0.7 1.0 1.4 mW/mA Po=45-50mW Monitor current* Im 0.05 0.2 0.5 mA Po=50mW, VRD5V Parallel divergence
in „Laser-Diode in Kühlkörper einlöten (oder wird's ihr zu heiß?)“ · Analoge Elektronik und Schaltungstechnik ·
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2N4416.pdf
V 2 c Drain-Source On-Resistance rDS(on) VGS = 0 V,DI = 300 mA 150 W Gate-Source Forward Voltage V GS(F) IG= 1 mA , DS = 0 V 0.7 V Dynamic Common-Source b gfs 6 4.5 7.5 4.5 7.5 4.5 7.5 mS Forward Transconductance VDS = 15 V, GS = 0 V Common-Source f = 1 kHz Output
in „OP-Amp schützen“ · Analoge Elektronik und Schaltungstechnik ·
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HT1621.pdf
, RD 5V 0 1.0 V ¾ V 3V 2.4 ¾ 3.0 V IH Input High Voltage DATA, WR, CS, RD 5V 4.0 ¾ 5.0 V 3V VOL=0.3V 0.5 1.2 ¾ mA IOL1 DATA, BZ, BZ, IRQ 5V VOL=0.5V 1.3 2.6 ¾ mA 3V VOH =2.7V -0.4 -0.8 ¾ mA IOH1 DATA, BZ, BZ 5V VOH =4.5V -0.9
in „Picomite und LCD Display PC-6749-UUW von Densitron“ · Mikrocontroller und Digitale Elektronik ·
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ths7316.pdf
CAPACITIVE LOADING OUTPUT VOLTAGE 10 -20 VS=−5−V F−=−8−MHz B 0 ! -30 Load−=−150 W ||−13−pF B n d !10 t -40 n V =−5−V t F−=−16−MHz a S i − !20 VO=−200−mV PP − -50 a Load−=−150 W ||−C n i !30 L o -60 - C =−13−pF r a L H m !40 r -70 S C L−5−pF r !50 − d -80 CL=−20−pF 2 F−=−4−MHz F−=−2−MHz F−=−1−MHz !60 -90 1
in „Videopfad - LM1881 -Sync-Problem“ · Analoge Elektronik und Schaltungstechnik ·
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bourns_bd242-1159279.pdf
COLLECTOR-EMITTER SATURATION VOLTAGE vs vs COLLECTOR CURRENT BASE CURRENT 1000 TCS632AH -10 TCS632AB - V CE= -4 V TC= 25°C e tp= 300 µs, duty cycle < 2% TC = 80°C g l V n i i a a t u -1·0 n a r S u e C 100 i C m - r F t h e -0·1 l C - C = -100 mA s C = -300 mA E VC C = -1 A C = -3 A 10 -0·01 -0·01 -0·1 -1·0 -10 -0·1 -1·0 -10 -100 -1000 C - Collector Current - A IB- Base Current - mA Figure 1. Figure 2. BASE-EMITTER VOLTAGE vs COLLECTOR CURRENT -1 TCS632AC V CE= -4 V T = 25°C C V -0·9 - g l o r -0·8 e i m - s -0·7 B - B V -0·6 -0·5 -0·01 -0·1 -1 -10 C - Collector Current - A Figure
in „[V] Komplementäre 27St. BD241A und 10St BD242A und Reste geschenkt“ · Markt ·
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max232.pdf
Single 5-V Power Supply With 1.0-mF Charge-Pump Capacitors C1+ 1 16 VCC D Operates Up To 120 kbit/s VS+ 2 15 GND C1− 3 14 T1OUT D Two Drivers and Two Receivers C2+ 4 13 R1IN D ±30-V Input Levels C2− 5 12 R1OUT D Low Supply Current . . . 8 mA Typical V 6 11 T1IN S− D ESD Protection Exceeds JESD 22 T2OUT
in „Problem mit RS232“ · Mikrocontroller und Digitale Elektronik ·
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FSA.pdf
to 5.5 22 30 40 o CL= 35pF w C = 1.0nF, 2.7 to 3.6 10 V Charge L o Q Injection VGE = 0V, 4.5 to 5.5 20 pC Figure 5 t RGEN = 0Ω g f = 1MHz, R= 50Ω 2.7 to 3.6 -65 e OIRR Off Isolation L dB Figure 6 S 4.5 to 5.5 -65 P
in „Switch in der Versorgungsleitung“ · Mikrocontroller und Digitale Elektronik ·
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opa547.pdf
Tolerance R CL= 31.6kΩ (LIM= ±375mA), ±10 ±30 mA RL= 50Ω Capacitive Load Drive See Typical Curve(4) OUTPUT ENABLE /STATUS (E/S) PIN Shutdown Input Mode V E/SHIGH (output enabled) E/S Pin Open or Forced HIGH (V–) +2.4 V V E/SLOW (output disabled) E/
in „Simples digitalgesteuertes Netzteil nur mit D/A und Op-Amp?“ · Analoge Elektronik und Schaltungstechnik ·
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ICM7216.pdf
Leakage Pins 27, 28, 2ILK - - 20 A Input Range of Change, dVlNdt Supplies Well Bypassed - 15 - mV/ s ICM7216A Digit Driver: Pins 15, 16, 17, 19, 20, 21, 22, 23 High Output Current, OH VOUT = V DD -2.0V -140 -180 - mA Low Output Current, OL VOUT = V SS +1.0V - 0.3 - mA Segment Driver: Pins 4, 5, 6, 7
in „[V] 1St. Harris ICM7216AIJI Ceramic DIP28 8-Digit, Multi-Function, Frequency Counters/Timers“ · Markt ·
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WT11_Data_Sheet.pdf
details. 8 2. ELECTRICAL CHARACTERISTICS Absolute maximum ratings Min Max Unit Storage temperature -40 85 °C Operating temperature -40 85 °C Supply voltage -0,3 3,6 V Terminal voltages -0,4 Vdd + 0,4 V Output current from PIOs 35 mA The module should not continuously run under these conditions. Exposure
in „WT11 von Bluegiga, Registrierung?“ · Mikrocontroller und Digitale Elektronik ·
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rpc_f_2.pdf
Radiometrix Limited Issue 4, 04 February 2001 RPC-UHF Radio Packet Controller Modules: RPC-418-40: IC+BiM, UK version RPC-433-40: IC+BiM, Euro version IC s: RPC-000-DIL: 18 pin DIL IC RPC-000-SO: 18 pin SO IC The RPC-418-40 and
in „Problem mit BIM2 und RPC Funkübertragung“ · Mikrocontroller und Digitale Elektronik ·
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EKG_usw_Informationformedicalapplications_von_TI.pdf
G>5 I2 S 0.1 0.4 10 5.6 80 135 ±4.5 to ±18 7.5 $12.25 OPA627 Very low THD+N, low offset I2 S 0.1 0.4 10 5.6 16 55 ±4.5 to ±18 7.5 $12.25 OPA130 Low power I S, D, Q 1 2 20 16 1 2 4.5 to 36 0.65 $1.40 OPA132 THD
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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MOC3020-M.pdf
sec. duration) D PD Total Device Power Dissipation @ 25°C Ambient All 330 mW P R Derate above 25°C 4.4 mW/°C a EMITTER d o IF Continuous Forward Current All 60 mA m VR Reverse Voltage All 3 V P h PD Total Power Dissipation @ 25°C Ambient All 100 mW s Derate above 25°C 1.33 mW/°C e DETECTOR O t VDRM
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70687A-1.pdf
resources. • “MRF24J40MA 2.4 GHz IEEE Std. 802.15.4 RF Transceiver Module” (DS70329) • “MRF89XAM8A Data Sheet 868 MHz Ultra-Low Power Sub-GHz Transceiver Module” (DS70651) • “MRF89XAM9A Data Sheet 915 MHz Ultra-Low Power Sub-GHz
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·