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Datei
KiCadLib.py
X PIN7 7 -800 100 300 R 50 50 1 1 I C X PIN8 8 -800 0 300 R 50 50 1 1 I IC X PIN9 9 800 -300 300 L 50 50 1 1 I L X PIN10 10 800 -200 300 L 50 50 1 1 I CL X PIN11 11 800 -100 300 L 50 50 1 1 I V X PIN12 12 800 0 300 L 50 50 1 1 O X PIN13 13 800 100 300 L 50 50 1 1 B X PIN14 14 800 200 300 L 50 50 1 1 T X PIN15 15 800 300 300 L 50 50 1 1 P X PIN16 16 800 400 300 L 50 50 1 1 U ENDDRAW ENDDEF # #End Library """ #Auch dieses Bauteil aus einer
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
XTR105U-4-20mA-current-transmitter.pdf
14700 R LIN1 2(2R1–R 2R )Z 700°C 348/61.9 26100 (R +R )(R –R ) 27400 R LIN2 LIN G 2 1 2(2R1 –R2–R Z 800°C 374/60.4 24900 where: R = RTD resistance at (T+ T )/2 26700 1 MIN MAX R = RTD resistance at T 2 MAX R = 1kΩ (Internal) LIN EXAMPLE: The measurement range is –100°C to +200°C for a 3-wire Pt100 RTD
in „[V] Verschiedene SMD-IC's“ · Markt ·
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LC651152.pdf
circuit used. Oscillator stabilization time • Figure 4, fo = 400 kHz 10 (note 8) • Figure 4, fo = 800 kHz, 1 MHz, or 10 tCFS 4 MHz, with the divide-by-three or ms divide-by-four circuit used. Two-pin RC oscillator • Figure 2, Cext = 270 pF ±5% OSC1, OSC2 587 800 1298 Oscillator frequency • Figure 2,
in „SANYO LC651152 was macht der TEST pin?“ · Mikrocontroller und Digitale Elektronik ·
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Siferrit_materials.pdf
values) (f = 10 kHz, T = 25 °C) (f = 10 kHz, T = 100 °C) 600 FAL0589-W 600 FAL0590-Z mT mT B B 400 400 300 300 200 200 100 100 0-200 0 200 400 600 800 1000 A/m 1400 0-200 0 200 400 600 800 1000 A/m 1400 H H DC magnetic bias
in „Schaltregler und EMV?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
eeprom.h
, 2 Kbytes */ #define ADDR_FLASH_PAGE_25 ((uint32_t)0x0800C800) /* Base @ of Page 25, 2 Kbytes */ #define ADDR_FLASH_PAGE_26 ((uint32_t)0x0800D000) /* Base @ of Page 26, 2 Kbytes */ #define ADDR_FLASH_PAGE_27 ((uint32_t)0x0800D800) /* Base @ of Page 27
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
KiCadLib.py
X PIN7 7 -800 100 300 R 50 50 1 1 I C X PIN8 8 -800 0 300 R 50 50 1 1 I IC X PIN9 9 800 -300 300 L 50 50 1 1 I L X PIN10 10 800 -200 300 L 50 50 1 1 I CL X PIN11 11 800 -100 300 L 50 50 1 1 I V X PIN12 12 800 0 300 L 50 50 1 1 O X PIN13 13 800 100 300 L 50 50 1 1 B X PIN14 14 800 200 300 L 50 50 1 1 T X PIN15 15 800 300 300 L 50 50 1 1 P X PIN16 16 800 400 300 L 50 50 1 1 U ENDDRAW ENDDEF # #End Library """ #Auch dieses Bauteil aus einer
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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go-SSD1325.pdf
characteristics (Form 1) Write cycle (Form 1) Read cycle (Form 1) CS# CS# tCSH tCS tCSF t CS D/C# D/C# tAS tAH t t F tR t AS t AH cycle tF R tcycle WR# t t PWLW PWHW RD# tPWLR tPWHR tDSW tDHW ACC tDHR D[7:0] D[7:0] tOH Figure 38 : 8080-series parallel interface characteristics (Form 2) Write cycle (Form 2) Read cycle (Form 2) tcycle cycle tR F tR F t t CS# PWLW CS# PWLR PWHW tPWHR CS CS D/C# D/C# AS tAH tAS tAH CSF WR# RD# CSH t t t DSW DHW ACC DHR D[7:0] D[7:0] OH Solomon Systech Oct 2007 P 53/60 Rev 1.9 SSD1325 Conditions: V - V = 2.4
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
characteristics (Form 1) Write cycle (Form 1) Read cycle (Form 1) CS# CS# tCSH tCS tCSF t CS D/C# D/C# tAS tAH t t F tR t AS t AH cycle tF R tcycle WR# t t PWLW PWHW RD# tPWLR tPWHR tDSW tDHW ACC tDHR D[7:0] D[7:0] tOH Figure 38 : 8080-series parallel interface characteristics (Form 2) Write cycle (Form 2) Read cycle (Form 2) tcycle cycle tR F tR F t t CS# PWLW CS# PWLR PWHW tPWHR CS CS D/C# D/C# AS tAH tAS tAH CSF WR# RD# CSH t t t DSW DHW ACC DHR D[7:0] D[7:0] OH Solomon Systech Oct 2007 P 53/60 Rev 1.9 SSD1325 Conditions: V - V = 2.4
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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24c16.pdf
9 Data Output from Transmitter AA tAA Data Output from ACK Receiver Figure 2. Output Acknowledge SCL n o T i n T A d t O T n o P S C n SDA Figure 3. START and STOP Conditions Integrated Silicon Solution, Inc. — 1-800-379-4774 5 Rev. A
in „24C16 EEPROM I2C in C-code“ · Mikrocontroller und Digitale Elektronik ·
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DT-Tensio.pdf
500 1.14 2.50 2.40 550 1.23 600 1.31 2.30 2.20 N 650 1.38 ] [ 700 1.45 m 2.10 i [ s 750 1.51 e 2.00 t 800 1.57 a 1.90 e v k 850 1.63 e 1.80 p 900 1.68 u 1.70 / s g 950 1.73 e 1.60 n 1000 1.77 m n t 1.50 a 1050 1.82 e 1.40 s 1100 1.86 w n s 1.30 h 1150 1.90 e 1.20 i 1200 1.94 M p 1300 2.01 1.10 S 1400
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Datei
PowerLog6s_V110_bearbeitet.asm
sub_8009D04+302 o DCB 0 DCB 0 DCB 0 ; =============== S U B R O U T I N E ======================================= sub_800A12C ; CODE XREF: sub_8009D04+3E4 p PUSH.W {R4-R8,LR} MOV R4, R0 MOVS R5, #0 MOV R7, R2 MOV R6, R3 LSLS R0, R1, #0x12 BMI loc_800A148 B loc_800A14C
in „Datenlogger Jun-si PowerLog 6S verbessern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00002265_Triac_von_ST_Microelectonics.pdf
800 = 800 V B = 50 mA StandardpBW = 50 mA Snubberless C = 25 mA Standard CW = 35 mA Snubberless SW = 10 mA Logic Level Packing mode RG = Tube Figure 13. Ordering information scheme (T16 series) T 16 35
in „Triac Probleme mit MOC3043“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTA16-600CWRG__600V__16A__TO220_isoliert__ST.pdf
800 = 800 V B = 50 mA StandardpBW = 50 mA Snubberless C = 25 mA Standard CW = 35 mA Snubberless SW = 10 mA Logic Level Packing mode RG = Tube Figure 13. Ordering information scheme (T16 series) T 16 35
in „MOIC ---> Triac, 115V, 400 Hz, 4A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SS490.pdf
order Surface Mount: add -S suffix to listing. Example: SS495A-S. To order tape in Ammopack style T2: add -T2 suffix to listing. To order tape in Ammopack style T3: add -T3 suffix to listing. PDp a g e - 0 2 0reel style P (surface mount): add -SP suffix to listing. 20 Honeywell1Sensing and Control11
in „SS495A Verständnisfrage zum Einsatzzweck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1325_Salomon.pdf
characteristics (Form 1) Write cycle (Form 1) Read cycle (Form 1) CS# CS# tCSH tCS tCSF t CS D/C# D/C# tAS tAH t t F tR t AS t AH cycle tF R tcycle WR# t t PWLW PWHW RD# tPWLR tPWHR tDSW tDHW ACC tDHR D[7:0] D[7:0] tOH Figure 36 : 8080-series parallel interface characteristics (Form 2) Write cycle (Form 2) Read cycle (Form 2) tcycle cycle tR F tR F t t CS# PWLW CS# PWLR PWHW tPWHR CS CS D/C# D/C# AS tAH tAS tAH CSF WR# RD# CSH t t t DSW DHW ACC DHR D[7:0] D[7:0] OH Solomon Systech Jul 2010 P 55/63 Rev 2.3 SSD1325 Conditions: V - V = 2.4
in „OLED VGY12864Z-S005 über LPT Port ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SpartanXL.pdf
Finished, Finished will trigger the first Readback. 40 www.xilinx.com DS060 (v1.7) June 27, 2002 1-800-255-7778 Product Specification R Spartan and Spartan-XL Families Field Programmable Gate Arrays Configuration Switching Characteristics V CC RE-PROGRAM TPOR >300 ns PROGRAM TPI INIT T T ICCK CCLK CCLK
in „Logic Analyzer bauen“ · Mikrocontroller und Digitale Elektronik ·
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GSMParkHeatingControl.pdf
16V C N R C C C CC M DD N C D D D AT24C512 µC2SIM A G A A A A A/ / /7 G V 0 1 2 F F F FC C CD P P P R800 2 2 P P P P/ / /7 N n C T T T D H O A A D D D D N D 1 1 PEN F F FP PA3/AD3 R801 DBG_RXD G P C R D D I G V V G G G G N G PE0/RXD0/PDI P P P PA4/AD4 Lüften/Heizen 10K DBG_TXD I T T POWERKEY J800 J801
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
61C256AH.pdf
edge of the signal that terminates the write. AC WAVEFORMS WRITE CYCLE NO. 1 ( WE Controlled) (1,2) tWC ADDRESS VALID ADDRESS tSA tSCE tHA CE t AW tPWE1 tPWE2 WE t HZWE tLZWE HIGH-Z DOUT DATA UNDEFINED tSD tHD D IN DATA IN VALID CE_WR1.eps 6 Integrated Silicon Solution, Inc. — www.issi.com — 1-800-379
in „Write cycle SRAM“ · Mikrocontroller und Digitale Elektronik ·
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Sensorless_Speed_Controlled_BLDC.pdf
IOPB5 9 Vss HO3 18 W 47 IOPB4 13 ITRIP Vs3 14 XTAL2 COM LO3 4.9MHz R21 R22 G1 5M 0 0 0 0 0 0 0 0 1 0 T 7 6 5 4 I I II I ININ I IR2131 560R R23 C17 46 * U U S I S O T K P P P P C C C C C C C C R24 R25 R26 220R 330nF XTAL1 R E E T T T T P T I I I I A A A A A A A A U3 10R 10R 10R C16 R27 20pF 10K 3 4 4 3
in „sensorloser BLDC Motor mit PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HD66766_example.c
LCD_PrintCT(uint16_t x, uint16_t y, int value, uint16_t color, uint16_t bg) { // Ensure value is 3 digits (000 - 999) if (value > 999) value = 999; uint8_t hundreds = value / 100; uint8_t tens = (value / 10) % 10; uint8_
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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xapp105_CPLD_VHDL_Introduction.pdf
13%) 9 /34 ( 26%) 14 /108 ( 12%) All bits of the “count” signal have been automatically converted to T-type registers. XAPP105 (v2.0) August 30, 2001 www.xilinx.com 17 1-800-255-7778 R A CPLD VHDL Introduction ; Implemented Equations. "count<0>".T = reset * "count<0>" + /reset * /down * up "count<0>".
in „xilinx CPLD“ · FPGA, VHDL & Co. ·
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Datei
eeprom.h
, 2 Kbytes */ #define ADDR_FLASH_PAGE_19 ((uint32_t)0x08009800) /* Base @ of Page 19, 2 Kbytes */ #define ADDR_FLASH_PAGE_20 ((uint32_t)0x0800A000) /* Base @ of Page 20, 2 Kbytes */ #define ADDR_FLASH_PAGE_21 ((uint32_t)0x0800A800) /* Base @ of Page 21
in „STM32F3 Virtual EEPROM für große Look Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MultiSpeedI2CScanner.ino
("\ta = toggle address range, 0..127 - 8..120")); Serial.println(F("Speeds:")); Serial.println(F("\t0 = 50 - 800 Khz")); Serial.println(F("\t1 = 100 KHz only")); Serial.println(F("\t2 = 200 KHz only")); Serial.println(F("\t4 = 400 KHz only")); Serial.println(F("\t8 = 800 KHz only")); Serial.println(F("\n\t? = help - this page")); Serial.println(); } void I2Cscan() { startScan = millis(); uint8_t count = 0; if (header) { Serial.print(F("TIME\tDEC\tHEX\t")); for (uint8_t s = 0; s < speeds; s++) { Serial.print
in „Probleme mit meinem LCD-Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MultiSpeedI2CScanner.ino
("\ta = toggle address range, 0..127 - 8..120")); Serial.println(F("Speeds:")); Serial.println(F("\t0 = 50 - 800 Khz")); Serial.println(F("\t1 = 100 KHz only")); Serial.println(F("\t2 = 200 KHz only")); Serial.println(F("\t4 = 400 KHz only")); Serial.println(F("\t8 = 800 KHz only")); Serial.println(F("\n\t? = help - this page")); Serial.println(); } void I2Cscan() { startScan = millis(); uint8_t count = 0; if (header) { Serial.print(F("TIME\tDEC\tHEX\t")); for (uint8_t s = 0; s < speeds; s++) { Serial.print
in „i2c & LCD stellt sich quer :/“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MultiSpeedI2CScanner.ino
("\ta = toggle address range, 0..127 - 8..120")); Serial.println(F("Speeds:")); Serial.println(F("\t0 = 50 - 800 Khz")); Serial.println(F("\t1 = 100 KHz only")); Serial.println(F("\t2 = 200 KHz only")); Serial.println(F("\t4 = 400 KHz only")); Serial.println(F("\t8 = 800 KHz only")); Serial.println(F("\n\t? = help - this page")); Serial.println(); } void I2Cscan() { startScan = millis(); uint8_t count = 0; if (header) { Serial.print(F("TIME\tDEC\tHEX\t")); for (uint8_t s = 0; s < speeds; s++) { Serial.print
in „ADS1115 lässt Arduino Uno einfrieren“ · Mikrocontroller und Digitale Elektronik ·
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report01.pdf
47 69 6C 65 72 66 F5 68 ilerfõh 6 │ 0.01331 800 7 4E 6C 65 72 20 20 32 ler 2 7 │ 0.014821 800 2 83 BF 8 │ 0.481816 800 2 83 BF 9 │ 0.998521 800 8 00 42 6F 69 6C 65 72 20 Boiler 10 │ 1.00226 800 8 07 31 20 54 65 6D 70 2E 1 Temp. 11 │ 1.00538 800 7 0E 20 20 20 35 32 DF 52ß 12 │ 1.00751 800 8 40 4B 65 69 6E 20 42 6F Kein Bo 13 │ 1.01013 800 8 47 69 6C 65 72 66 F5 68 ilerfõh 14 │ 1.01351 800 7 4E 6C 65 72 20 20 32 ler 2 15 │ 1.01539 800 2 83 BF 16 │ 1.48227 800 2 83 BF 17 │ 1.99878 800
in „Sommerauer-Lindner canbus Steuerung Hackgut“ · Haus & Smart Home ·
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PDF
hmc253aqs24-1.pdf
Trademarks and registered trademarks are the property of their respective owners..ion Support: Phone: 1-800-ANALOG-D HMC253AQS24 / 253AQS24E v01.1015 GaAs MMIC SP8T NON-REFLECTIVE SWITCH, DC - 2.5 GHz Insertion Loss Insertion Loss vs. Temperature 0 0 -0.5 -0.5 B B T ( -1 ( -1 S S M L L O-1.5 O-1.5 S T T E
in „Gibt es billige DC-Block-Kondensatoren für 2,45 GHz?“ · HF, Funk und Felder ·
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PDF
GSMParkHeatingControl.pdf
1 LowESR 4 k 100nF TEMP_DATA R 1 R402 +3,3V_ON/OFF SD_CD 1K SD_WP GSM (7xx) Mikrocontroller (8xx) t 4 b 4 R700 LED blau 2,8V/3mA + V + J805 J806 390 D700 PISG 680µH +4V L800 C803 T700 2,2K C800 C801 2 + 1µF 8 100nF BCW66H 1 R702 C700 A 100nF 100nF C IC801 C804 7 M 7 R + C701 S 10µF A0 VCC SIM2µC 4
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GSMParkHeatingControl.pdf
1 LowESR 4 k 100nF TEMP_DATA R 1 R402 +3,3V_ON/OFF SD_CD 1K SD_WP GSM (7xx) Mikrocontroller (8xx) t 4 b 4 R700 LED blau 2,8V/3mA + V + J805 J806 390 D700 PISG 680µH +4V L800 C803 T700 2,2K C800 C801 2 + 1µF 8 100nF BCW66H 1 R702 C700 A 100nF 100nF C IC801 C804 7 M 7 R + C701 S 10µF A0 VCC SIM2µC 4
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBRS140T3-D.pdf
50 T 1 T = 100⋅C 30 T = 125⋅C N 0.7 C A 20 J R ( 10 U 0.5 T 100⋅C C E 5 R 0.3 R 2 A C 75⋅C R 0.2 E 1 F R 0.5 S 0.1 E 0.3 O0.07 E 0.2 25⋅C E T C 25⋅C , 0.1 A0.05 I N 0.03 T0.03 0.02 I0.02 , 0.1 0.2 0.3 0.4
in „Target: Meldung im Layouteditor: Gehäuse bitte überprüfen“ · Platinen ·
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PDF
DS_K4B4G1646D-BC_I_P_Rev102.pdf
572 ps. Similarly, tLZ(DQ) for DDR3-800 derates to tLZ(DQ),min(derated) = - 800 ps - 193 ps = - 993 ps and tLZ(DQ),max(derated) = 400 ps + 172 ps = + 572 ps. (Caution on the min/max usage!) Note that tERR(mper),act,min is
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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bc847_p.pdf
mgt726 103 1200 VBEsat V CEsat (mV) (mV) 1000 (1) 800 (2) 102 600 (1) (3) (2) 400 (3) 200 10 −1 2 3 0 −1 2 3 10 1 10 10 10 10 1 10 10 10 C (mA) IC(mA) IC B = 20 IC B = 10 (1) Tamb = 150 °C (1) T amb= −55 °C (2) T = 25 °C (2) T = 25 °C amb amb (3) T = −
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PDF
lm1117.pdf
to 125°C T = 25°C 1 (3) LM1117-2.5 J ΔV OUT Load Regulation over the junction temperature range mV V IN= 3.9 V, 0 ≤OUT ≤ 800 mA 0°C to 125°C 10 T = 25°C 1 LM1117-3.3 J V = 4.75 V, 0 ≤ I ≤ 800 mA over the junction
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PDF
2MBI1200XXE120P-50.PDF
typ.) Dynamic gate charge (typ.) 1000.0 V GE= 0V, f = 1MHz, vj= 25°C V CC= 600V, I C 1200A, Tvj 25°C 800 20 ] ] F [600 15 ] [ Cies C V [ r100.0 V400 CE 10 G C : V V s g GE : o l200 5 g C v l e 10.0 r 0 0 o i t r : C oes m-200 -5 t c E i n - E i 1.0 t-400 -10 - a c t p C res l-600 -15 a C C G -800 -20 0.1
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PDF
BC856_BC857_BC858.pdf
MGT714 −10 4 −1200 handbook, halfpage Vandbook, halfpage BEsat VCEsat (mV) (mV) −1000 (1) 3 (2) −10 −800 (3) −600 −10 2 −400 (1) −200 (3) (2) −10 0 −10−1 −1 −10 −102 −103 −10 −1 −1 −10 −10 2 −10 3 I (mA) I (mA) C C BC857A; IC B = 20. BC857A; IC B = 20. (1) T = 150 °C. (1) T = −55 °C. amb amb (2) Tamb=
in „LEDs: Konstantstrom-Multiplexing. Schaltung & Teile so ok?“ · Mikrocontroller und Digitale Elektronik ·
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r1210nxx2_ea-3219701.pdf
Output Voltage vs. Output Current R1210N302C R1210N302D L:27μH L:27μH 3.2 3.2 V VI:1.5V V VI:2.0V T T VI:1.5V O.1 VIN:2.0V O3.1 V VIN:0.9V V VI:0.9V g g l V I:2.5V l V I:2.5V o.0 o3.0 t t p p 2.9 u2.9 O O 2.8 2.8 0 200 400 600 800 0 200 400 600 800 Output CurrentOUT(mA) Output Current IT(mA) R1210N502C
in „[V] 90St. "ältere" StepUp Ricoh R1210N502D (0,8V =>5V) SOT23-5 (alle 10€)“ · Markt ·
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DC02EN.pdf
1200 1000 1500 1000 800 600 1250 800 600 700 1000 600 750 400 200 500 400 200 200 250 0 0 0 0 0 400 800 1200 1600 2000 0 200 400 600 800 1000 1200 1400 1600 1800 Speed (RPM) Speed (RPM) DPP728T-570 / DPP728MT-403 Torque (oz-i3600
in „[V] 2 Elektromotoren“ · Markt ·
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PDF
sct2750ny-e.pdf
curves Fig.15 Typical Capacitance Fig.16 Coss Stored Energy vs. Drain - Source Voltage 1000 9 ] 8 T a 25ºC C iss [S 7 ] S p EO [ 100 : 6 : g e C oss e 5 n n t d 4 c r p 10 t 3 a S C Crss s 2 Ta= 25ºC o f = 1MHz C 1 V = 0V GS 1 0 0.1 1 10 100 1000 0 200 400 600 800 1000 Drain - Source Voltage :DS
in „"Leiterbahn-Sicherung" erstezen - was würdet ihr tun?“ · Analoge Elektronik und Schaltungstechnik ·
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hmc472a.pdf
9106, Norwood, MA 02062-9106 Application Support: Phone: 1-800-ANALOG-D 6 HMC472ALP4 / 472ALv02.0420 0.5 dB LSB GaAs MMIC 6-BIT DIGITAL POSITIVE CONTROL ATTENUATOR, DC - 3.8 GHz Application Circuit T M S - L I G D - S R O A U E Note: For operations from 700 to 2700 MHz, pins 6 through 13 may be left unconnected. T T A For price, dPhone: 781-329-4700 • Order online at www.analog.comOne Technology Way, P.O. Box 9106, Norwood, MA 02062-9106 7 Application Support: Phone: 1-800-ANALOG-D HMC472ALP4 / 472ALP4E v02.0420
in „90dB gesteuertes Dämpfungsglied aus China - Ein (etwas längerer) Bericht von der Front :-)“ · HF, Funk und Felder ·
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PDF
db214_224-2_1_.pdf
224 6.1.4 Timing Timing Notes Min. Typ. Max. Units Serial Mode SMS Serial Mode Enable Set-Up 250 ns tPWH Serial Clock ‘High’ Pulse Width 250 ns PWL Serial Clock ‘Low’ Pulse Width 250 ns tDS Data Set Up Time 150 ns DHS Data Hold Time 50 ns LL Load/Latch Set Up Time 250 ns t 150 ns LLW Load/Latch Pulse Width Parallel Mode t 150 ns LLW Load/Latch Pulse Width DSP Data Set Up Time 150 ns DHP Data Hold Time 20 ns Table 5: Serial and Parallel Timing Serial Loading PARALLEL / SERIAL SMS tPWH SERIAL CLOCK DS t tPWL DHS SERIAL
in „Scrambler für PMR“ · Mikrocontroller und Digitale Elektronik ·
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BC549-550.pdf
Transistor Noise Model http://onsemi.com 2 BC549B,C BC550B,C 2.0 1.0 I V CE= 10 V 0.9 TA= 25⋅C G 1.5 T = 25⋅C T A 0.8 E ) V BE(sat)IC B = 10 R 1.0 T 0.7 U O VBE(on) V CE= 10 V C 0.8 ( 0.6 D E 0.5 E 0.6 A I L 0.4 A V M 0.4 V 0.3 O , 0.3 0.2 F VCE(sat) IC B = 10 h 0.1 0.2 0 0.2 0.5 1.0 2.0 5.0 10 20 50
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PDF
01_Sicherungsautomaten.pdf
S 800 B 1 1 Si^us-Halbwelle tK Abschaltzeit des Hochleistungsautomaten S 800 50 Hz = T/2 = 10 ms 1/126 Hochleistungs-Sicherungsautomaten 1 Baureihe S 800 Besondere Merkmale des S 800 Auf Nummer sicher: die
in „Kurzschlussstrom“ · Offtopic ·
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PDF
lm1117.pdf
regulation accuracy 1.6 1.6 % PSRR (120 Hz) 75 75 dB Recommended operating temperature 0 – 125 -40 – 125 °C 800 mA SOT-223 T JA 61.6 104.3 °C/W TO-220 T JA 23.8 30.1 °C/W TO-252 T JA 45.1 50.9 °C/W TO-263 T 41.3 27.5 °C/W JA WSON-8 T 39.3 38.3 °C/W JA 6 Pin Configuration and Functions Figure 6-2. NDE Package,
in „LM1117-5.0 Ausgangsspannung mit R in GND erhöhen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
spra524.pdf
, equation 5 becomes equation 6 in the following, where T1+ T +2T = To pwm =T. T pwm U out = T 1 + x U 2 x–60 + T 00 000or0 ) 111 (equation 6) From equation 6, we get equation 7 for T 1 and T 2. J -1 [T1 T2 ] = T pwm U x U x–60 ] U out (equation 7) -1 where
in „Raumzeigermodulation mit ARM implementieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hoymiles_HMS-800W-2T_Specsheet.pdf
grade Wi-Fi module. With the user-friendly Flex-S3 Plug and Play Cable, installation is HMS-600W-2T simple—just connect the microinverter directly to a socket with no need HMS-700W-2T for complicated wiring. HMS-800W-2T Monitoring the system is easy with the HMS-1000W series. You can HMS-900W-2T access
in „PV Simulator für Batteriebetrieb von Hoymiles & Co“ · Mikrocontroller und Digitale Elektronik ·
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Datei
panel-simple.c
size = { .width = 152, .height = 91, }, }; static const struct drm_display_mode foxlink_fl500wvr00_a0t_mode = { .clock = 32260, .hdisplay = 800, .hsync_start = 800 + 168, .hsync_end = 800 + 168 + 64, .htotal = 800 + 168 + 64 + 88, .vdisplay = 480, .vsync_start = 480 + 37, .vsync_end = 480 + 37 + 2, .vtotal
in „Linux RPI VC4 Driver - DRM NullPointer Exception“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hmc646.pdf
Trademarks and registered trademarks are thOrder On-line at www.hittite.comwners. Support: Phone: 1-800-ANALOG-D HMC646LP2 / 646LP2E v02.1009 GaAs MMIC 40W FAILSAFE SWITCH, 0.1 - 2.1 GHz Evaluation PCB 1 1 T M S - T D P S - S E [1] H List of Materials for Evaluation PCB C Item Description The circuit
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mic920.pdf
Slew Rate Positive Slew Rate 1400 1200 3500 V± = ±5V V± = ±5V V± = ±9V 1200 1000 3000 s s s V1000 V800 V2500 ( ( ( T 800 T T2000 A A600 A R 600 R R1500 E E400 E L 400 L L1000 S S200 S 200 500 0 200 400 600 800 1000 00 200 400 600 800 1000 00 200 400 600 800 1000 LOAD CAPACITANCE (pF) LOAD CAPACITANCE
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LT084AC27500-v05R.pdf
LT084AC27500 TIMING SPECIFICATION * 1 * * * * * Item Symbol Min. Typ. Max. Unit Remarks Frame Period t1 604 x t3 628 x t3 677 x t3 --- 16.58 17.86 ms Vertical t2 600 x t3 600 x t3 600 x t3 --- Display Term One Line t3 944 x t5 1056 x t5 1064 x t5 --- Scanning Time 26.3 26.4 --- μs Horizontal t4 800 x t5 800 x t5 800 x t5 --- Display Term Clock Period t5 24.7 25.0 27.8 ns Note 1) Refer to “TIMING CHART” and LVDS (THC63LVDF84A) specifications by THine Electronics,Inc. Note 2) If ENAB is fixed to "H"
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AP9101C.pdf
Detection Voltage DD 6.0 8.0 10.0 V VOVCHGR Overvoltage Charger Release Voltage VDD = 3.5V 5.3 7.3 9.3 V tCU Overcharge Detection Delay Time — CU ×0.8 CU tCU×1.2 ms tDL Overdischarge Detection Delay Time — tDL0.8 DL tDL1.2 ms Discharge Overcurrent Detection Delay DOC — tDOC×0.8 tDOC DOC×1.2 ms Time SHORT
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