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PDF
SBR05M60BLP.pdf
0.3 N E A A A R N T 10 T = 25°C V 0.2 A A A , S T V N S F0.1 ,R, I I I 1 0 0 10 20 30 40 50 60 25 50 75 100 125 150 175 V , INSTANTANEOUS REVERSE VOLTAGE (V) o R TA, AMBIENT TEMPERATURE ( C) Fig. 3 Typical Reverse Characteristics Fig. 4 Forward Current Derating Curve 175 )50 ( E R25 T A E00 P M T T75 N
in „kleine SMD Graetz-Brücke gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DSO203.pdf
Mini DS203 OSC Manual 1 Intro DS203 V2.6 is a pocket size 4 channel digital Oscilloscope for common electronic engineering tasks. It's based on ARM cortex M3 (STM32F103VCT6) 32 bits platform, providing 72MS/
in „Welches aktuelle DSO ist gut ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top222y.pdf
TOP222Y 25 W 15 W TOP222P or TOP222G 15 W 10 W TOP223Y 50 W 30 W TOP223P or TOP223G 25 W 15 W TOP224Y 75 W 45 W TOP224P or TOP224G 30 W 20 W TOP225Y 100 W 60 W TOP226Y 125 W 75 W TOP227Y 150 W 90 W Notes:1.Packageoutline:Y03A 2.PackageOutline:P08AorG08A 3.100/115VACwithdoublerinput 4.Assumesappropriateheat
in „Suche Ersatz für TOP222Y“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz.pdf
and Synchronization in Servers, PART TEMP PIN- TOP MARK Routers, Hubs, and Switches RANGE PACKAGE DS32KHZ/DIP 0ºC to +70ºC 14 DIP DS32KHZ Automatic Power Meters DS32KHZN/DIP -40ºC to +85ºC 14 DIP DS32KHZ-N DS32KHZS 0ºC to +70ºC 16 SO (0.300”)DS32KHZS DS32KHZSN -40ºC to +85ºC 16 SO (0.300”)DS32KHZSN* DS32KHZ/WBGA 0ºC to +70ºC 36 BGA DS32KHZ DS32KHZN/WBGA -40ºC to +85ºC 36 BGA DS32KHZ-N *An “N” located in the bottom right-hand corner of the top of the package PIN CONFIGURATIONS denotes an industrial
in „ds32kHz von Maxim“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz.pdf
and Synchronization in Servers, PART TEMP PIN- TOP MARK Routers, Hubs, and Switches RANGE PACKAGE DS32KHZ/DIP 0ºC to +70ºC 14 DIP DS32KHZ Automatic Power Meters DS32KHZN/DIP -40ºC to +85ºC 14 DIP DS32KHZ-N DS32KHZS 0ºC to +70ºC 16 SO (0.300”)DS32KHZS DS32KHZSN -40ºC to +85ºC 16 SO (0.300”)DS32KHZSN* DS32KHZ/WBGA 0ºC to +70ºC 36 BGA DS32KHZ DS32KHZN/WBGA -40ºC to +85ºC 36 BGA DS32KHZ-N *An “N” located in the bottom right-hand corner of the top of the package PIN CONFIGURATIONS denotes an industrial
in „Genaue Frequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz.pdf
and Synchronization in Servers, PART TEMP PIN- TOP MARK Routers, Hubs, and Switches RANGE PACKAGE DS32KHZ/DIP 0ºC to +70ºC 14 DIP DS32KHZ Automatic Power Meters DS32KHZN/DIP -40ºC to +85ºC 14 DIP DS32KHZ-N DS32KHZS 0ºC to +70ºC 16 SO (0.300”)DS32KHZS DS32KHZSN -40ºC to +85ºC 16 SO (0.300”)DS32KHZSN* DS32KHZ/WBGA 0ºC to +70ºC 36 BGA DS32KHZ DS32KHZN/WBGA -40ºC to +85ºC 36 BGA DS32KHZ-N *An “N” located in the bottom right-hand corner of the top of the package PIN CONFIGURATIONS denotes an industrial
in „32 KHz Quarz - lange Anlaufzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solar-DS.pdf
and DS Together! Set the DS and the bottom panel right next to each other, and make sure the wires from the DS can reach the chip. Solder the positive DS wire (the blue one near the top of the battery compartment
in „Woher Mini-Solarzellen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FQPF9N25C-1120274.pdf
Current and Gate Voltage Variation with Source Current and Temperature 2000 12 CissgsC gd dshorted) C =C ds gd V =50V rss gd 10 DS V V =125V 1500 [ DS ] g VDS200V F l 8 [ o c Ciss e a1000 r 6 c Coss o a - a t 4 C 500 Crss a , ※ Notes: G 2 1.GS=0V V 2.f =1MHz ※ Note:DI =8.8A 0 0 10-1 100 101 0 5 10 15 20 25
in „Mosfet defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MIC5239_Data.pdf
632mW From Figure 4-6, the minimum amount of copper required to operate this application at a ∆T of 75°C is 2 110 mm . 2021 Microchip Technology Inc. DS20006544A-page 11 MIC5239 4.9 Adjustable Regulator Application The MIC5239YM can be adjusted from 1.24V to 20V by using two external resistors (Figure
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Datei
EPROMDATEN.TXT
Schnittstelle: 9600 Baud, no parity, 8 Bit, 1 Stopbit, (keine Handshakes) Basic: {OPEN "COM1:9600,N,8,1,CS,DS,CD" AS#1} mit WR/STROBE Adres- Da- Mnemonik: Kommentar: sen: ten: -------------------------------------------------------------------- 00 00 ]------ NOP Keine Operation 01 75 ]-START MOV SCON,#50Hex Initialisierung serielle 02 98 ] Schnittstelle Datenein-/ausgabe 03 50 ] Mode 1,(8 Bit, Receive Enable) 04 75 ]------ MOV TMOD,#10Hex Timer 0 keine Funktion, 05 89 ] Timer 1 Mode 2 C/T=0, Gate=0 06 20 ] 07 75 ]------ MOV PCON,#00Hex SMOD=0, Teiler /2 08 87 ] 09 00 ] 0A 75 ]------ MOV TH1,#100Hex TCON Timer Kontrollregister
in „Datum in Hexadezimal“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS18B20.pdf
Table 2. Thermometer Resolution Configuration R1 R0 RESOLUTION MAX CONVERSION TIME (BITS) 0 0 9 93.75ms (t /8) CONV 0 1 10 187.5ms (tCONV /4) 1 0 11 375ms (tCONV /2) 1 1 12 750ms (tCONV ) INPUT XOR XOR XOR MSB LSB Figure 11. CRC Generator www.maximintegrated.com Maxim Integrated 9 DS18B20 Programmable
in „DS18B20 Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet__ICM-20948_.pdf
0x00 BIT NAME FUNCTION 7:0 I2C_SLV4_DO[7:0] Data out when slave 4 is set to write. Document Number: DS-000189 Page 75 of 89 Revision: 1.3 ICM-20948 11.24I2C_SLV4_DI Name: I2C_SLV4_DI Address: 23 (17h) Type: USR3 Bank: 3 Serial IF: R Reset Value: 0x00 BIT NAME FUNCTION 7:0 I2C_SLV4_DI[7:0] Data read from
in „20948 I2C <-> SPI?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt-505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
Viso 2,500 V AC –40°C to +85°C –40°F to +185°F (4 V ≤ V IN≤ 6 V) Temperature Operating Topr –40°C to +75°C –40°F to +167°F (6 V < V IN≤ 15 V) Non-condensing at low limits –40°C to +60°C –40°F to +140°F (15 V < V IN≤ 30 V) temperatures Storage Tstg –40°C to +100°C –40°F to +212°F ds_x615_en_aqz10d_20d: 181206J
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PDF
505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
Viso 2,500 V AC –40°C to +85°C –40°F to +185°F (4 V ≤ V IN≤ 6 V) Temperature Operating Topr –40°C to +75°C –40°F to +167°F (6 V < V IN≤ 15 V) Non-condensing at low limits –40°C to +60°C –40°F to +140°F (15 V < V IN≤ 30 V) temperatures Storage Tstg –40°C to +100°C –40°F to +212°F ds_x615_en_aqz10d_20d: 181206J
in „Relais ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
505399_panasonic_aqz204d_photomos_relais_1_st_1_schliesser_400_vdc.pdf
Viso 2,500 V AC –40°C to +85°C –40°F to +185°F (4 V ≤ V IN≤ 6 V) Temperature Operating Topr –40°C to +75°C –40°F to +167°F (6 V < V IN≤ 15 V) Non-condensing at low limits –40°C to +60°C –40°F to +140°F (15 V < V IN≤ 30 V) temperatures Storage Tstg –40°C to +100°C –40°F to +212°F ds_x615_en_aqz10d_20d: 181206J
in „230VAC Max 200mA mit ESP32 3,3VDC schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
Viso 2,500 V AC –40°C to +85°C –40°F to +185°F (4 V ≤ V IN≤ 6 V) Temperature Operating Topr –40°C to +75°C –40°F to +167°F (6 V < V IN≤ 15 V) Non-condensing at low limits –40°C to +60°C –40°F to +140°F (15 V < V IN≤ 30 V) temperatures Storage Tstg –40°C to +100°C –40°F to +212°F ds_x615_en_aqz10d_20d: 181206J
in „MOSFET 230V AC / 3V3 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HOA1405_1.pdf
3 Dark Current vs Fig. 4 Collector Current vs Temperature gra_301.cdr Ambient Temperature gra_076.ds4 t 1.2 e r 1.0 c o 0.8 c l 0.6 c d z 0.4 a m 0.2 o N 0.0 -50 -25 0 25 50 75 100 Free-air temperature - °C Fig. 5 Collector Current vs Fig. 6 Collector Current vs Distance to Reflective Surface gra_090.ds4 IRED Forward Current gra_091.ds4 t n 1.0 n 1.80 r 0.9 r 1.60 u 0.8 c 1.40 r r t 0.7 t 1.20 e 0.6 e 1.00 o 0.5 o c 0.4 F = 30 mA c 0.80 VCE = 5V e VCE = 5.0 V e 0.60 d = 0.2 in. l 0.3 l a 0.2 a 0.40
in „Schlechte Signale mit CNY 70“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HOA1405_1.pdf
3 Dark Current vs Fig. 4 Collector Current vs Temperature gra_301.cdr Ambient Temperature gra_076.ds4 t 1.2 e r 1.0 c o 0.8 c l 0.6 c d z 0.4 a m 0.2 o N 0.0 -50 -25 0 25 50 75 100 Free-air temperature - °C Fig. 5 Collector Current vs Fig. 6 Collector Current vs Distance to Reflective Surface gra_090.ds4 IRED Forward Current gra_091.ds4 t n 1.0 n 1.80 r 0.9 r 1.60 u 0.8 c 1.40 r r t 0.7 t 1.20 e 0.6 e 1.00 o 0.5 o c 0.4 F = 30 mA c 0.80 VCE = 5V e VCE = 5.0 V e 0.60 d = 0.2 in. l 0.3 l a 0.2 a 0.40
in „Minimalbestromung CNY70 Reflexkoppler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HOA1405_1.pdf
3 Dark Current vs Fig. 4 Collector Current vs Temperature gra_301.cdr Ambient Temperature gra_076.ds4 t 1.2 e r 1.0 c o 0.8 c l 0.6 c d z 0.4 a m 0.2 o N 0.0 -50 -25 0 25 50 75 100 Free-air temperature - °C Fig. 5 Collector Current vs Fig. 6 Collector Current vs Distance to Reflective Surface gra_090.ds4 IRED Forward Current gra_091.ds4 t n 1.0 n 1.80 r 0.9 r 1.60 u 0.8 c 1.40 r r t 0.7 t 1.20 e 0.6 e 1.00 o 0.5 o c 0.4 F = 30 mA c 0.80 VCE = 5V e VCE = 5.0 V e 0.60 d = 0.2 in. l 0.3 l a 0.2 a 0.40
in „Algorithmus für Linefollower mit 5 Sensoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPP80N06S2L-07.pdf
h 2 3.23.5 3.8 4.0 4.55.0 10.0 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 V 5.0 00 20 40 60 80 A 120 V I DS D 7 Typ. transfer characteristics 8 Typ. forward transconductance I = f ( V ); V ≥ 2 x I x R g = f(I ); T=25°C D GS DS D DS(on)max fs D j parameter: t = p0 µs parameter: g fs 160 110 S A 90 120 80 s
in „Transistor (Mosfet) Temperatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mcp23008.pdf
1-6 and Figure 1-7 for more information on interrupt operations. © 2005 Microchip Technology Inc. DS21919B-page 19 MCP23008/MCP23S08 NOTES: DS21919B-page 20 © 2005 Microchip Technology Inc. MCP23008/MCP23S08 2.0 ELECTRICAL CHARACTERISTICS Absolute Maximum Ratings † Ambient temperature under bias....
in „MCP23008 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vollbr_cke_VNH3SP30.pdf
0.225 6.75 0.15 6.5 0.075 6.25 0 6 -50 -25 0 25 50 75 100 125 150 175 -50 -25 0 25 50 75 100 125 150 175 Tc (ºC) Tc (ºC) 16/26 VNH3SP30 PWM High Level Voltage PWM Low Level Voltage Vpwh (V) Vpwl (V) 5 2.8 4.5 2.6
in „VNH3SP30 auch als Halbbrücke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-IPP_B_I70P04P4_09-DS-v01_03-en.pdf
IPB70P04P4-09 IPI70P04P4-09, IPP70P04P4-09 ® OptiMOS -P2 Power-Transistor Product Summary V DS -40 V R DS(on)SMD Version) 9.1 mW ID -70 A Features • P-channel - Normal Level - Enhancement mode PG-TO263-3-2 PG-TO262-3-1 PG-TO220-3-1 • AEC qualified • MSL1 up to 260°C peak reflow • 175°C operating
in „MOSFET als Lastschalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OZ9902.pdf
SSTCMP2 ISEN2 C16 10u C24 R47 Q14 1n 10K DRV2 C23 R43 0.47u R55 1K 0.1 Figure 3 CONFIDENTIAL OZ9902-DS-0.55 Page 12 Preliminary OZ9902 PACKAGE INFORMATION – 24 PIN SOP: OZ9902GN CONFIDENTIAL OZ9902-DS-0.55 Page13 Preliminary OZ9902 PACKAGE INFORMATION – 24 PIN SSOP: OZ9902SN 24L SSOP 150mil Package Outline
in „Philips LCD Backlight Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Manualv11_07.pdf
4. Byte 5. Byte 6. Byte 7. Byte 8. Byte 9. Byte $ DG DS old SA 0x0A DS new 0 0 QS Antwort: keine Beispiel in HEX: 24 00 01 02 0A 04 00 00 11 (Gruppe 0, Gerät 1, ab sofort Gruppe 0, Gerät 4) Parameter ändern Befehl: 7 (HEX0x07) 1. Byte 2. Byte 3. Byte 4. Byte 5. Byte 6. Byte 7. Byte 8. Byte 9. Byte $ DG DS SA 0x07 Data 1 Data 2 0 QS Antwort: keine Data 1: Parameteradresse Data 2: Wert Parameter lesen Befehl: 6 (HEX0x06) 1. Byte 2. Byte 3. Byte 4. Byte 5. Byte 6. Byte 7. Byte 8. Byte 9. Byte $ DG DS SA
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Mosfet_PHT8N06_Nkanal.pdf
T = 25 ˚C. j ID% = 100⋅I /I = f(T ); conditions: V ≥ 5 V I = f(V ); parameter V D D 25 ˚C sp GS D DS GS 100 115 RDS(ON)/mOhm ID/A 110 RDS(ON) = VDS/ID tp = 4.2 1 us 105 4 10 10us 4.4 100 100 us 4.6 5 95 4.8 1 ms 90 DC 1 85 10ms 80 100ms 75 70 0.11 10 VDS/V 100 5 10 ID/A 15 20 25 Fig.3. Safe operating
in „FET Konfektionierung okay?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rtc.pdf
Hand-Held Devices PART TEMP RANGE PIN- TOP MARK GPS/Telematics Devices PACKAGE Embedded Time Stamping DS1390U-18 -40°C to +85°C 10 µSOP DS1390 rr-18 Medical Devices DS1390U-3 -40°C to +85°C 10 µSOP DS1390 rr-3 DS1390U-33 -40°C to +85°C 10 µSOP DS1390 rr-33 DS1391U-18 -40°C to +85°C 10 µSOP DS1391 rr-18 DS1391U-3 -40°C to +85°C 10 µSOP DS1391 rr-3 DS1391U-33 -40°C to +85°C 10 µSOP DS1391 rr-33 DS1392U-18 -40°C to +85°C 10 µSOP DS1393 rr-18 DS1392U-3 -40°C to +85°C 10 µSOP DS1392 rr-3 Typical Operating
in „ein Uhrenquartz für AVR und RTC???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BS170.pdf
CurrenVDS= 25V, GS = 0V All 0.5 μA 7 I Gate - Body Leakage, Forward V = 15V, V = 0V All 10 nA 0 GSSF GS DS — ON CHARACTERISTICS (Notes 1) N V Gate Threshold Voltage V = V , I = 1mA All 0.8 2.1 3 V - GS(th) DS GS D h RDS(ON) Static Drain-Source On-ResistanGS= 10V, D = 200mA All 1.2 5 Ω a n gFS Forward Transconductance VDS= 10V,DI = 200mA BS170 320 mS n VDS ≥ 2 DS(on) MMBF170 320 l I = 200mA E D n Dynamic Characteristics a n Ciss Input Capacitance VDS= 10V, GS = 0V, All 24 40 pF c C oss Output Capacitance f = 1.0MHz All 17 30 pF m e C rss Reverse Transfer Capacitance
in „BS170 Wie viel Watt verträgt er?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ssd1803_2_0.pdf
are only activated in internal divider option (when DH = "1") Determine the line for display shift. DS1 = "1/0": 1st line display Shift shift enable/disable 39us 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 DS2 = "1/0": 2nd line display enable shift enable/disable DS3 = "1/0": 3rd line display shift enable/disable DS4
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOSFET-irfiz34v.pdf
Technology D l Ultra Low On-Resistance V DSS = 60V l Dynamic dv/dt Rating l 175°C Operating Temperature R DS(on) = 28m l Fast Switching G l Fully Avalanche Rated I = 20A l Optimized for SMPS Applications S D Description AdvancedHEXFET ® PowerMOSFETsfromInternational Rectifierutilizeadvancedprocessingtechniquestoachieve
in „Frage zur Optokoppler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N5460.pdf
BR)GSS Gate-Source Breakdown Voltage G = 10 A, VDS= 0 40 V 4 2 GSS Gate Reverse Current VGS= 20 V, DS = 0 5.0 nA VGS= 20 V, DS = 0, A = 100 C 1.0 μA / VGS(off) Gate-Source Cutoff Voltage VDS= 15 V,DI = 1.0 A 5460 0.75 6.0 V M 5461 1.0 7.5 V M 5462 1.8 9.0 V VGS Gate-Source Voltage VDS= 15 V,DI = 0.1
in „Frage zu Ersatztyp für MMBF5460“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF840STM.pdf
IRF840 N-CHANNEL 500V - 0.75 - 8A TO-220 PowerMesh™II MOSFET IRF840PE 500 V < 0.85) 8 A ■ TYPICAL RDS(on) = 0.75 ■ 100% AVALANCHE TESTEDCAPABILITY ) ■ NEW HIGH VOLTAGE BENCHMARK 3 t (s ■ GATE CHARGE MINIMIZED 12 u c The PowerMESH
in „Suche günstiges Labornetzteil 400V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS2761.pdf
DS2761BE/T&R D2761EB DS2761BE on Tape-and-Reel DS2761AE-025 2761A25 TSSOP, 25mW Sense Resistor, 4.275V VOV DS2761BE-025 2761B25 TSSOP, 25mW Sense Resistor, 4.35V VOV DS2761AE-025/T&R 2761A25 DS2761AE-025
in „Akkustand mit AVR feststellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3647-1.pdf
and off. The LM3647 automatically detects the presence of a © 2001 National Semiconductor CorporatiDS101318 www.national.com 4 6 3 2.0 Connection Diagram M L DS101318-2 Top View Order Number LM3647IM See NS Package Number M20B 2.1 PIN DESCRIPTIONS Pin No. Name I/O Description 1 SEL3 I Input to Select
in „Heizungssteuerung mit Funk-Temperaturfühler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBI5026.pdf
temperature increases. Max. Power Dissipation at Various Ambient Temperature 2.50 2.25 i 2.00 a s 1.75 CN\GN Type: Rth= 53.82 D 1.50 CNS\GNS Type: Rth= 66.74 r CD\GD Type: Rth= 49.81 w 1.25 CF\GF Type: Rth= 59.01 P 1.00 CP\GP Type: Rth= 72.43 CPA\GPA Type: Rth= 72.43 0.75 0.50 10 20 30 40 50 60 70 80 90 Ambient Temperature Load Supply Voltage (V LED ) MBI5026 are designed to operate with V DS ranging from 0.4V to 1.0V considering the package power dissipating limits. VDSmay be higher enough to make P D(act)P D(max) when V LED = 5V and V DS = V LED –V F in which V LED is the load supply voltage
in „Vorschläge für Led-Treiber?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBI5026.pdf
temperature increases. Max. Power Dissipation at Various Ambient Temperature 2.50 2.25 i 2.00 a s 1.75 CN\GN Type: Rth= 53.82 D 1.50 CNS\GNS Type: Rth= 66.74 r CD\GD Type: Rth= 49.81 w 1.25 CF\GF Type: Rth= 59.01 P 1.00 CP\GP Type: Rth= 72.43 CPA\GPA Type: Rth= 72.43 0.75 0.50 10 20 30 40 50 60 70 80 90 Ambient Temperature Load Supply Voltage (V LED ) MBI5026 are designed to operate with V DS ranging from 0.4V to 1.0V considering the package power dissipating limits. VDSmay be higher enough to make P D(act)P D(max) when V LED = 5V and V DS = V LED –V F in which V LED is the load supply voltage
in „TPIC6B595N Cascade Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P2804BDG.pdf
Voltage V (BR)DSS V = 0V, I = 250µA 40 GS D V Gate Threshold Voltage VGS(th) V = V , I = 250µA 1 1.5 2.5 DS GS D Gate-Body Leakage IGSS VDS = 0V, GS= ±20V ±250 nA V DS= 32V, VGS= 0V 1 Zero Gate Voltage Drain Current IDSS µA VDS= 30V, VGS= 0V, TC= 125 °C 10 On-State Drain Current ID(ON) VDS = 10V, GS = 10V
in „Suche Ersatz für SMD Sicherung K“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Echoprogramm_auf_EPROM_als_serielle.asm
Schnittstelle: 9600 Baud, no parity, 8 Bit, 1 Stopbit, (keine Handshakes) Basic: {OPEN "COM1:9600,N,8,1,CS,DS,CD" AS#1} mit WR/STROBE Adres- Da- Mnemonik: Kommentar: sen: ten: -------------------------------------------------------------------- 00 00 ]------ NOP Keine Operation 01 75 ]-START MOV SCON,#50Hex Initialisierung serielle 02 98 ] Schnittstelle Datenein-/ausgabe 03 50 ] Mode 1,(8 Bit, Receive Enable) 04 75 ]------ MOV TMOD,#10Hex Timer 0 keine Funktion, 05 89 ] Timer 1 Mode 2 C/T=0, Gate=0 06 20 ] 07 75 ]------ MOV PCON,#00Hex SMOD=0, Teiler /2 08 87 ] 09 00 ] 0A 75 ]------ MOV TH1,#100Hex TCON Timer Kontrollregister
in „AT89S52 (8051) Entwicklungsboard – Programm-Upload / einfache Ein-/Ausgabe funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
70622B.pdf
handled through either of these interrupts discussed prior. © 2010 Microchip Technology Inc. Preliminary DS70622B-page 75 MRF89XA 3.7 Sync Word Recognition 3.7.2 PACKET HANDLER The packet handler is the block used in Packet mode. Sync word recognition (also called pattern recognition) is activated by setting
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PDF
70622B.pdf
handled through either of these interrupts discussed prior. © 2010 Microchip Technology Inc. Preliminary DS70622B-page 75 MRF89XA 3.7 Sync Word Recognition 3.7.2 PACKET HANDLER The packet handler is the block used in Packet mode. Sync word recognition (also called pattern recognition) is activated by setting
in „Wie genau funktioniert die drahtlose Kommunikation?“ · HF, Funk und Felder ·
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Datei
Tastatur.asm
Adressbyte .def C1 =r22; Count1 in BitH ;.def Komma = r22 ;Bit 1 und 0= 00 ohne; 01 1Dezimalstelle; 10 2 DS; 11 3 DS; kopiert aus Steuer .def Steuer = r23 ; Bit2 gesetzt=Minus; ; Bit 1 und 0= 00 ohne; 01 1Dezimalstelle; 10 2 DS; 11 3 DS .def adl = r24 ; Ergebnis vom ADC; sonst für Bild in Adressspeicherung
in „Hausbus für Meß- und Steueraufgaben mit Attiny“ · Haus & Smart Home ·
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PDF
QF5252F.pdf
Current BAT0 17 uA T ON Time TON Time TON 5 us Efficiency Efficiency η L1 =180uH,C =12uF 84 % QX5252_DS03EN QX Micro Devices Co., Ltd. 4 of 9 www.qxmd.com.cn QX5252 Solar LED Driver Typical Electrical Curves o VBAT=1.2V, A =25 C, unless otherwise specified QX Micro Devices Co., Ltd. QX5252_DS03EN 5 of
in „[V] Induktivitäten 4,7µH bis 560µH (Aliexpress-Bestellung teilen)“ · Markt ·
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PDF
QX5252F_EN.pdf
Current BAT0 17 uA T ON Time TON Time TON 5 us Efficiency Efficiency η L1 =180uH,C =12uF 84 % QX5252_DS03EN QX Micro Devices Co., Ltd. 4 of 9 www.qxmd.com.cn QX5252 Solar LED Driver Typical Electrical Curves o VBAT=1.2V, A =25 C, unless otherwise specified QX Micro Devices Co., Ltd. QX5252_DS03EN 5 of
in „Elektronik einer Solargartenleuchte defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PI4IOE5V9555.pdf
2.6 — — V VOH High Level Output Voltage [3] IOH= -10mA; VCC = 3.0V 2.5 — — V [3] IOH= -8mA; VCC = 4.75V 4.1 — — V [3] IOH= -10mA; VCC = 4.75V 4.0 — — V High Level Input Leakage ILIH Current VCC = 5.5V; V I VCC — — 1 μA ILIL Low Level Input Leakage VCC = 5.5V; V I= GND — — -100 μA Current C Input Capacitance
in „Schachbrettposition Erkennung“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet.pdf
Breakdown Voltage G = - 1.0 A, VDS= 0 - 35 V M I GateReverseCurrent V = - 15 V, V = 0 - 1.0 nA GSS GS DS M V GS(off) Gate-Source Cutoff Voltage V DS = 5.0 V,DI = 1.0 A J111 - 3.0 - 10 V B J112 - 1.0 - 5.0 V - 0.5 - 3.0 V F J113 J ID(off) Gate-Source Cutoff Voltage V DS = 5.0 V, GS = - 10 V 1.0 nA 1 1 1
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l6203.pdf
TRANSISTORS OFF DSS Leakage Current Fig. 11 s = 52 V 1 mA ON RDS On Resistance Fig. 4,5 0.3 0.55 V DS(ON) Drain Source Voltage Fig. 9 DS = 1A L6201 0.3 V DS = 1.2A L6202 0.36 V DS = 3A L6201PS/0 0.9 V 3 V sens Sensing Voltage – 1 4 V SOURCEDRAIN DIODE Vsd Forward ON Voltage Fig. 6a and b SD = 1A L6201
in „L6203 und 100% Einschaltdauer“ · Mikrocontroller und Digitale Elektronik ·
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L6203.pdf
TRANSISTORS OFF DSS Leakage Current Fig. 11 s = 52 V 1 mA ON RDS On Resistance Fig. 4,5 0.3 0.55 V DS(ON) Drain Source Voltage Fig. 9 DS = 1A L6201 0.3 V DS = 1.2A L6202 0.36 V DS = 3A L6201PS/0 0.9 V 3 V sens Sensing Voltage – 1 4 V SOURCEDRAIN DIODE Vsd Forward ON Voltage Fig. 6a and b SD = 1A L6201
in „Eingangsfrequenz Vollbrückentreiber L6203“ · Mikrocontroller und Digitale Elektronik ·
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L6202_L6203_STM.pdf
TRANSISTORS OFF DSS Leakage Current Fig. 11 s = 52 V 1 mA ON RDS On Resistance Fig. 4,5 0.3 0.55 V DS(ON) Drain Source Voltage Fig. 9 DS = 1A L6201 0.3 V DS = 1.2A L6202 0.36 V DS = 3A L6201PS/0 0.9 V 3 V sens Sensing Voltage – 1 4 V SOURCEDRAIN DIODE Vsd Forward ON Voltage Fig. 6a and b SD = 1A L6201
in „L6203 DMOS Full Bridge Driver testen“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronik_Sortimente.pdf
Soil Moisture Sensor Hygrometer 5x Digital Light Intensity Sensor (BH1750FVI) 5x Temperatursensor (LM75, TCN75) 5x I²C Kapazitiver-Sensor (MPR121) 3x Microphone (KY-037) ICs 5x 8-Channel 10-Bit A/D Converters with SPI (MCP3008) 3x I²C Echtzeit-Uhr (DS1307) 3x Extremely Accurate I2C-Integrated RTC/TCXO/Crystal (DS3231) 4x 2-Wire Serial EEPROM (AT24C32) ggf in DS3231 enthalten 3x Clock and calendar with 240 x 8-bit RAM (PCF8583) 5-10x 16-channel, 12-bit PWM Fm+ I2C-bus LED controller (PCA9685) 5x 16 CHANNEL LED
in „Einkaufsliste für die Einrichtung eines Elektronik-Labors“ · Mikrocontroller und Digitale Elektronik ·
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Microchip_AppNote_00994a.pdf
technical whitepaper. [4] “IEC 62053 Standard”, IEC Commission, 2003. © 2005 Microchip Technology Inc. DS00994A-page 15 AN994 NOTES: DS00994A-page 16 © 2005 Microchip Technology Inc. Note the following details of the code protection feature on Microchip devices: Microchip products meet the specification
in „Strom 10A bis 300A messen mit Tiny26“ · Mikrocontroller und Digitale Elektronik ·