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PDF
Seiten_aus_IRFD_FINAL_de.pdf
the top and bottom by the complex conjugate of the denominator and inserting Eq. 2.6-1 for Rsyields (wL/QJ- jwL y --+w £2 (2.6-3) Q2 The admittance is of the form G + jB where G is a conductance, G = 11Rp, and B is a susceptance, B = 11Xp• Separating Eq. 2.6-3 into real and imaginary parts yields, upon
in „Ist ein Filter immer ein Delay dass mit Phasenauslöschung funktioniert ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MX26LV400__2_.pdf
Description TestSetup All Speed Options Unit tREADY1 RESET# PIN Low (During Automatic Algorithms) MAX 20 us to Read orWrite (See Note) tREADY2 RESET# PIN Low (NOT During Automatic MAX 500 ns Algorithms) to Read orWrite (See Note) tRP RESET# PulseWidth (During Automatic Algorithms) MIN 500 ns tRH RESET#
in „falsche u-boot nand geflasht,J-Tag möglichkeit für Flytouch2?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5051A_-_PowerLine.pdf
amplifier VO output DC level at − 2.5 − V pin TXOUT THD total harmonic distortion oo(rms)= 121 dB V on − −55 − dB CISPR16 load with the CISPR16 load; coupling network fosc= 8.48 MHz; (measured on the first ten DATA IN= LOW harmonics) (no modulation); see Figs 3 and 16 B−20dB bandwidth of the shaped Vo(rms)=
in „Probleme mit PLC-Modem-Chip TDA5051“ · Haus & Smart Home ·
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PDF
TDA5051A.pdf
amplifier VO output DC level at − 2.5 − V pin TXOUT THD total harmonic distortion oo(rms)= 121 dB V on − −55 − dB CISPR16 load with the CISPR16 load; coupling network fosc= 8.48 MHz; (measured on the first ten DATA IN= LOW harmonics) (no modulation); see Figs 3 and 16 B−20dB bandwidth of the shaped Vo(rms)=
in „µC Kommunikation (Signale) über Gleichspannung modulieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
5 7 RGMII2_RCLK 4 RGMII2_RCLK(GPIO6[30]) DART-MX6 (GPIO6[19])RGMII2_TCLK 3 RGMII2_TCLK 7 5 LINEIN1_RP 6 LINEIN1_RP HPROUT 5 HPROUT 5 7 RGMII2_RCTL 6 RGMII2_RCTL(GPIO6[24]) (GPIO6[26])RGMII2_TCTL 5 RGMII2_TCTL 7 D 5 LINEIN1_LP LINEIN1_LP J1 AGND 7 RGMII2_RD0 RGMII2_RD0(GPIO6[25]) J3 (GPIO6[20])RGMII2_
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MT8870d.pdf
10 25 A PWDN=V U DDQ DD 2 P Operating supply current DD 3.0 9.0 mA P 3 L Power consumption PO 15 mW fc=3.579545 MHz Y 4 High level input VIH 3.5 V V DD=5.0V 5 Low level input voltage VIL 1.5 V V DD=5.0V 6 I Input leakage current IH IL 0.1 A V IN SSor VDD N 7 P Pull up (source) current SO 7.5 20 A TOE
in „MT8870 (DTMF Encoder) an eine Telefonleitung anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt8870.pdf
10 25 A PWDN=V U DDQ DD 2 P Operating supply current DD 3.0 9.0 mA P 3 L Power consumption PO 15 mW fc=3.579545 MHz Y 4 High level input VIH 3.5 V V DD=5.0V 5 Low level input voltage VIL 1.5 V V DD=5.0V 6 I Input leakage current IH IL 0.1 A V IN SSor VDD N 7 P Pull up (source) current SO 7.5 20 A TOE
in „DTMF Tonwahlfrequenzen mit dem MT8870 wie funktioniert das ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E3634ser.pdf
Awerti AltA3e A2C3mC3AF2n3ri Ao bCn3ltiAco20ArAwerti AltA 3e A2C3mC3AwCoo t3Aco20AcCnnA32At2An2rp/ " hCotA2ccA3e Am2u oAbCmmn,ArtpAw2tt w3ArAplil3rnAF2n30 3 oAP 3u tA3e A+H*ArtpA +D*A3 o0ltrnbA2cA3e A2C3mC3ArbAbe2utAltA±liCo AdD;/ # hCotA2tA3e
in „0-30V 25A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ostam__LY_P47K.pdf
Storage temperature range Sperrschichttemperatur Tj + 125 °C Junction temperature Durchlassstrom IF 20 mA Forward current (T =25°C) A Stoßstrom IFM 100 mA Surge current t ≤10 µs,D = 0.005,T A=25°C 3)Seite 16 Sperrspannung VR 12 V Reverse voltage3) page 16 (T =25°C) A Leistungsaufnahme Ptot 50 mW Power
in „Reverse Mount LED in gelb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
0.5 V Output Voltage V —0.5 to V +0.5 V OUT CC Storage Temperature TSTG Ñ —55 to +150 °C Power Dissipation PD Ta = 25°C 1.0 0.7 1.0 W OPERATING CONDITION Parameter Symbol Range Unit Power Supply Voltage VCC 3 to 6 V Operating Temperature TOP —40 to +85 °C RECOMMENDED OPERATING
in „OKI M81C55 benutzen.“ · Mikrocontroller und Digitale Elektronik ·
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Leiterplatte eines Raspberry Pi Compute Module
TP34 TP33 TP65 TP45 TP44 TP19 TP23 TP82 TP25 TP18 TP56 TP10 TP24 TP22 TP21 TP29 TP57 TP26 TP50 TP16 TP20 TP15 TP14 TP13 TP12 TP11 TP1 TP2 TP3 TP4 TP5 TP6 TP7 TP8 TP9 TP10 TP11 TP12 TP13 TP14 TP15 TP16 TP17 TP18 TP19 TP20 TP21 TP22 TP23 TP24 TP25 TP26 TP27 TP28 TP29 TP30 TP31 TP32 TP33 TP34 TP35 TP36 TP37
in „raspberry pi 5 und quartz“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Datei
devlist.txt
. . .0) 84 D1,P2 AmPAL20R8B . . .0) 85 D1,P2 AmPAL20RP10A . .0) 86 D1,P2 AmPAL20RP10AL . .0) 87 D1,P2 AmPAL20RP10B . .0) 88 D1,P2 AmPAL20RP4A . . .0) 89 D1,P2 AmPAL20RP4AL . .0) 90 D1,P2 AmPAL20RP4B . . .0) 91 D1,P2 AmPAL20RP6A . . .0) 92 D1,P2 AmPAL20RP6AL . .0) 93 D1,P2 AmPAL20RP6B . . .0) 94 D1,P2 AmPAL20RP8A . . .0) 95 D1,P2 AmPAL20RP8AL . .0) 96 D1,P2 AmPAL20RP8B . . .0) 97 D1,P2 AmPAL20XRP10 . .0) 98 D1,P2 AmPAL20XRP10L . .0) 99 D1,P2 AmPAL20XRP4
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1315.pdf
. . . . . . . . . . . . . S C C . . C C SSD1315 VCC V COMH IREFD2 D1 D0 RES# VDD V SS C2 R1 C3 C1 RP RP V CC SDA SCL RES# V DD V SS Pin connected to MCU interface: RES#, SDA, SCL Pin internally connected toSS : BS0, BS2, CL, D[7:3], E, R/W#, CS#, D/C#, BGGND, LS Pin internally connected toDD : BS1,
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1315.pdf
. . . . . . . . . . . . . S C C . . C C SSD1315 VCC V COMH IREFD2 D1 D0 RES# VDD V SS C2 R1 C3 C1 RP RP V CC SDA SCL RES# V DD V SS Pin connected to MCU interface: RES#, SDA, SCL Pin internally connected toSS : BS0, BS2, CL, D[7:3], E, R/W#, CS#, D/C#, BGGND, LS Pin internally connected toDD : BS1,
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lprp_schematic.pdf
# B4 A1 S S 6 FLASH_CE_N C6 CE# 5 RAM_LB_N LB# S S 2 FLASH_WP_N G8 WP# V V 4 FLASH_WE_N E8 WE# MT45W4MW16BCGB-701LWT RFU E D 166-0001 VCC3S RP3 F1 RFU G2 RFU SD_D3 8 1 H1 RFU SD_CMD 7 2 B B8 RFU SD_DETECT_N 6 3 B SD_PROTECT_N 5 4 S S S S S S S S 4.7K VCC1_8 VCC1_8 V V V V 111-0002 RP4 RP5 PC28F256P30T85
in „ALTERA The Low Power Reference Platform (LPRP) = 19,99€!!“ · Markt ·
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k9gag08u0e.pdf
Condition Unit Min Max Min Max Min Max CI/O - 8 - 13 - 23 pF Input/Output Capacitance VIL=0V C I/O(W)* - 5 - 10 - 20 pF CIN - 8 - 13 - 23 pF Input Capacitance VIN=0V CIN(W)* - 5 - 10 - 20 pF NOTE : 1) Capacitance is periodically sampled and not 100% tested. 2) I/O(W)d CIN(W)re tested at wafer level.
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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Datei
led_fade_.asm
mode_eeprom skpnc clrf tmp call mode_delay movlw 0x1f ; limit tmp to 5 bit , 32 entry andwf tmp swapf mode,w ; move mode[1:2] to tmp[5:6] andlw 0x60 iorwf tmp,w ; incf tmp BSF STATUS, RP0 ; Bank1 MOVWF EEADR ; Address to read BSF EECON1, RD ; perform EEPROM read MOVF EEDATA, W ; store the data BCF STATUS, RP0
in „LEDs an PIC ausglimmen lassen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMAJx.pdf
Sine-wave Uni-Directional Only2 IFSM 60 A Typical Thermal Resistance, Junction To Ambient 3 R 120 °C/W θJA R 30 °C/W Typical Thermal Resistance, Junction To Lead θJL -55 to +150 Operating Junction Temperature Range T J °C Storage Temperature Range TSTG -55 to +150 °C Notes: 1. Non-repetitive current pper
in „Was für ein Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX811-MAX812.pdf
2.98 MAX81_S T = -40°C to +85°C 2.85 3.00 A TA= +25°C 2.58 2.63 2.68 MAX81_R T = -40°C to +85°C 2.55 2.70 A Reset Threshold Tempco 30 ppm/°C V = 125mV, MAX81_L/M 40 VCC to Reset Delay (Note 2) OD µs VOD = 125mV, MAX81_R/S/T 20 Reset Active Timeout Period t V = V 140 560 ms RP CC TH(MAX) MR Minimum Pulse
in „MAX 811 richtig anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAT4016_-_Catalyst_-_16ch_Constant_Current_LED_driver.pdf
] . μ 25 A 25 [ [ N T 20 E 20 N R R U 15 R 15 C U N C W 10 U 10 D L L 5 U 5 U P P 0 0 0 1 2 3 4 5 0 1 2 3 4 5 BLANK VOLTAGE [V] LATCH VOLTAGE [V] PWM Dimming on BLANK pin (f = 10kHz) BLANK Transient Response 100 80 ] [ L 60
in „Leerlaufsicherheit CAT4016“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stochino_Power_Amp_300V_us_power.pdf
2N2222A power amplifier, a non-slewing input stage is 33R the main difference relative to Fig. 1. -55V April 1997 ELECTRONICS WORLD 279 AUDIO DESIGN +48V 55V 33R c5 48p 5R 1k5 100R a a T23 60R 2N2907A T r T '6 2N2907A 2N5551 1k5 T20 IRF640 Tr 1N4448HV Tr'5 4 A 2N5551 2N5401 (x2) c, Tr'9 48p C so IRF640 + DZ, 2211 33V 1W 50R 50R 22R OR47 OR47 V in 220n 3W 3W C VF 3k3 V0' 200R 1n 100R 50R 50R OR47 OR47 1k3 3W 3W DZ 2 33V c2 T 1W 2' 48p IRF9640 0 so B Tr1 Tr Tr6 7 22 2N5551 2N5401 IRF9640 Tr2 Trs 2N2222A 60R Tr 2N5401
in „Audio-Endestufe - bitte um Erklärung der Funktion einer Teilschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D1FP_DE.pdf
12 E50G 16 E50H 25 Code Signal Öffnungsrichtung E50M 40 B +/- 10V 0...+10V -> P-A B60C 6 / 3 E +/- 20 mA 0...+20 mA -> P-A B60F QB= QA/2 12 / 6 S 4...20 mA 12...20 mA -> P-A B60G 16 / 8 B60H 25 / 12,5 B60M 40 / 20 Unterdeckung Code Dichtung E55B 3 N NBR E55C 6 V FPM E55F 12 H Für HFC Flüssigkeit E55G 16 E55H 25 E55M 40 Überdeckung Code Vorzugsstellung E01B 3 E01C 6 A 2) E01F 12 E01G 16 E01H 25 E01M 40 2) B31C 6 / 3 B B31F QB= QA/2 12 / 6 B31G 16 / 8 B31H 25 / 12,5 B31M 40 / 20 C 3) E02B 3 E02C 6 E02F 12
in „Ansteuerung direktgesteuertes Proportionalventil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KEI_181_Service.pdf
. Oescription Location Item No./Location Code Oeriq. Part No. CR-105 Rectifier Rridqe Bl 54iF3 G-i W"4rl 11.46 CR-106 Rectifier Bridge B2 55,12 G-I W"W li -46 CR-107 Rectifier Bridge n3 56/F? G-I W"4ti 9r-46 F-101 Fuse 1/4A (115V) A3 L-F 313. 25" Ftl-,, F-10, Fuse 1/8A (230V) A3 _~ L-F -- ii,-20 JlOOl
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cs5460.pdf
Notes: 14. Device parameters are specified with a 4.096 MHz clock, however, clocks between 3MHz to 20 MHz can be used. 15. If external MCLK is used, then its duty cycle must be between 45% and 55% to maintain this spec. 16. Specified using 10% and 90% points on wave-form of interest. Output loaded with
in „Leistung messen an 230V von 1W bis 2000W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1083_LT1084_LT1085_LT.pdf
/W* K PACKAGE *WITH PACKAGE SOLDERED TO 0.5IN COPPER AREA 2-LEAD TO-3 METAL CAN OVERBACKSIDEGROUNDPLANEORINTERNALPOWER θJA 35°C/W PLANE. JACAN VARY FROM 20°C/W TO > 40°C/W DEPENDING ON MOUNTING TECHNIQUE
in „Aus 12V 5V machen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1085.pdf
/W* K PACKAGE *WITH PACKAGE SOLDERED TO 0.5IN COPPER AREA 2-LEAD TO-3 METAL CAN OVERBACKSIDEGROUNDPLANEORINTERNALPOWER θJA 35°C/W PLANE. JACAN VARY FROM 20°C/W TO > 40°C/W DEPENDING ON MOUNTING TECHNIQUE
in „LT1085 parallel“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ECO6907.pdf
input impedance at the unbalanced side as a function of frequency is given in Table 2. 1998 Mar 23 20 Philips Semiconductors Design of HF wideband power Application Note transformers ECO6907 Table 2 f Rp Xp (MHz) ( ) ( ) 1.6 49.3 +j 395 5 49.6 +j 1250 15 50.2 +j 21200 28 50.2 −j 1060 7.2 50 Unbalanced
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
datasheet.pdf
onthedatasheet.Usersconsideringapplicationoutsidethelistedconditionsareadvisedtocontact their FUJITSU representatives beforehand. 22 MBM29F200TC -55/-70/-90 /MBM29F200BC -55/-70/-90 MAXIMUM OVERSHOOT 20 ns 20 ns +0.8 V –0.5 V –2.0 V 20 ns Figure 1 Maximum Negative Overshoot Waveform 20 ns V +2.0 V VCC+0.5 V +2.0 V 20 ns 20 ns Figure 2 Maximum Positive Overshoot Waveform 20 ns +14.0 V +13.0 V V +0.5 V 20 ns 20 ns Note: This waveform is applied 9or A , OE, and RESET. Figure 3 Maximum Positive Overshoot Waveform 23 MBM29F200TC -55/-70/-90 /MBM29F200BC -55/-70/-90 DC CHARACTERISTICS
in „Eprom Hersteller bzw. Vergleichstype gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCU_-_HR8P506_Datasheet_e.pdf
Offset address:H00 Reset values: 00000000_00000000_00000000_0000000B 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 Reserved 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Reserved PROT When writing 0x55AA6996 to SCU_PROT<31:0>, - bit31-1 W the PROT bit is 0; When writing other values, the PROT is 1. SCU Write
in „Re - Programmierung eines Cortex M0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teXet_TF-127_Service_manual.pdf
NAND Flash &/5 &/( &/6 &/+ W&6 &( &+ :3 :( &5 &+= W&2+ :+5 5( '+ 5($ W5+= W'6 W,5 5+2+ ,▯2[ ▯▯K 6WDWXV▯2XWSXW Figure 11: Status Read Cycle W&/5 &/( &( :& :( W:% $5 $/( W5+= W5 5& 5( W55 ,▯2[ ▯▯K &RO▯$GG&RO▯$GG▯RZ▯$GG▯ 5RZ▯$GG▯5RZ
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FR_Family_MB91F109.pdf
register 18 R/W – – – 1 1 1 1 1 B 000413 H ICR19 Interrupt control register 19 R/W – – – 1 1 1 1 1 B 000414 H ICR20 Interrupt control register 20 R/W – – – 1 1 1 1 1 B 000415 H ICR21 Interrupt control register 21 R/
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0000-USM-01-0-01_LF_MultiTag_RW_Module_UserManual1.pdf
01h Protection word Password protected 02h Control word Password protected 03h - 1Fh User memory R/W 20h Device serial number R/O 21h Device identification R/O Page 8 of 58 November 4, 2008 © 2008 HID Global Corporation. All rights reserved. LF MultiTag R/W Module 0000-USM-01-0-01 User Manual, Firmware
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PDF
an_06-65.pdf
50 220/230 50 V&A V V V R a B9 Hx 3500*210 W V V buttons. Variable voltage and current limit. 199.00 ±2.5mv ±250,<v ± 10 V. 0.015% 0.02SV* no/us/ 0-20 0-1.5 •M2A 0.2 50°C 50 220/230 50 V / A V V V R 8 8 9 H x3 5 0 D x2 1 0 W V V Front and rear
in „HP 6966A Schaltplan / Manual“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tlc274.pdf
See Figure 2 25°C 320 B Maximum output-swing bandwidth VO = V OH, C L= 20 P, –55°C 400 kHz OM RL= 10 kΩ, See Figure 1 125°C 230 25°C 1.7 B1 Unity-gain bandwidth VI =10 mV, C L 20 FP –55°C 2.9 MHz See Figure3 125°C 1.1 V = 10 mV, f = B, 25°C 46° φm Phase margin I 1 –55°C 49
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AgilentImpedance_Measurment_Handbook.pdf
Cp: Parallel capacitance (= C /w) D: Dissipation factor (= Rs/Xs = Rs/(wLs) or wCsRs) D: Dissipation factor (= Gp/Bp = Gp/(wCp) Q: Quality factor (= Xs/Rs = wLs/Rs or 1/(wCsRs)) = 1/(wCpRp) or wLpGp = wLp/Rp) Q: Quality factor (= Bp
in „Niedrige Induktivität messen, wie?“ · HF, Funk und Felder ·
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PDF
TLV2462.pdf
respect to GND. DISSIPATION RATING TABLE FOR C and I SUFFIX PACKAGE θJC θJA TA≤ 25°C TA< 125°C (°C/W) (°C/W) POWER RATING POWER RATING D (8) 38.3 176 710 mW 142 mW D (14) 26.9 122.6 1022 mW 204.4 mW D (16) 25.7 114.7 1090 mW 218 mW DBV (5) 55 324.1 385 mW 77.1 mW DBV (6) 55 294.3 425 mW 84.9 mW DGK
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Tabelle mit Änderungsvorschlägen für Röhrenmodelle auf Radiomuseum
Schaub-Lorenz AM/FM-Tuner HiFi 8063 10 17.Mar.2024, 13:47 Zeigen H Mechanik Labor, Interstar Zenegäp VMG55 3 25.Mar.2024, 09:20 Zeigen H Mechanik Labor, Modern Zenegäp VMG5516-02 2 25.Mar.2024, 09:21 Zeigen A Zenit (Marks), M Schiebespulen-Detektor 8 30.Mar.2024, 11:45 Zeigen J Sanyo Electric C, Pulsar RP-8700SS 10 07.Apr.2024, 20:26 Zeigen J Sharp, Osaka Digital DJ DRW-V2 8 14.Apr.2024, 22:00 Zeigen J CBC Charles Brow, Browni High Sensitivity 1 15.Apr.2024, 14:55 Zeigen J Siemens-Austria, UKW-Unters-Super 547W X 16.Apr.2024,
in „Bauteilbestimmung (Steinzeit, Widerstand)“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
USB_Type-C_Spec_R2.1_-_May_2021.pdf
4.9. Measured with no USB PD traffic Power for at least tRaWeaken after CONN Electronically Marked 20mW applied. Passive Cables Note: 75mW max allowed for the first tRaWeaken after CONN applied. USB 3.2 Power for Active Cables in See Table U0, U1, U2, U3, Rx.Detect, and 6-20 eSS.Disabled. U-states tV
in „USB-C Dual-Role-Device DRD mit integriertem OTG FS PHY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP-EXP430G2_LaunchPad_de.pdf
P4 2 TP5 HTCK GND 30 H TP3 HTMS 16p 16p A G TP1 HTDI Q1 b ar HTDO 63 12MHz 2 d 62 bil La GND 61 un w 60 CLK3410 d ar 58 EZ_VCC u ch 57 Pa e C4 C5 56 R2 R3 n d 55 47k 47k 1u/6,3V 100n 54 g Ex C 52 6. pe op 51 ri yri EZ_VCC 1 50 48 SBW & UART I/F zu S GND 2 49 47 R4 100R SBWTCKAr10n 9 TEST/SBWTCK m gh
in „gutes Übersetzungsprogramm für Datenblätter gesucht“ · Offtopic ·
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PDF
TimerPumpe_S01_CMOS4060.pdf
In1erDia6,5 B9.0 L25.2 7.5 AWG12-10 Yellow Terminal Cable Wire Conne2tor Insulated 0,99€ 3 4 Step-Up Boost 20A 1200W 8-60Vin 20Ai 15mA 0,5-15Aout 20A+Fan 12-83Vout 150kHz 116x52x15mm 300g Fuse 2x15A 4x 470uF 63Vin (3x 470uF 100Vout) 10,26€ /4 U-Chrimpschuh 50pcs SV1.25-4 0,5-1,5qmm I4,3mm Step-Up Boost 400W
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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PDF
Speicher.pdf
10 10 ns Ready to RE Low tRR 20 20 ns RE Pulse Width tRP 40 25 ns WE High to Busy tWB 100 100 ns Read Cycle Time tRC 60 50 ns RE Access Time tREA 35 30 ns RE High to Output High Z RHZ 30 30 ns CE High to Output High Z CHZ 20 20 ns
in „SD Karte selber bauen!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Samsung_64MB_K4M51323PC_1_8V.pdf
Symbol Min Typ Max 2 G 3 A - - 1.00 A1 0.25 - - P C E 10.9 11.0 11.1 - X E1 - 6.40 - D 12.9 13.0 13.1 X W X e D1 - 11.2 - X e e - 0.80 - k b 0.45 0.50 0.55 z - - 0.10 February 2006 K4M51323PC-S(D)E/G/C/F Mobile-SDRAM ABSOLUTE MAXIMUM RATINGS Parameter Symbol Value Unit Voltage on any pin relative ss V VIN
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_Type-C_Specification_Release_1.2.pdf
Notes: 1. USB Type-C plugs associated with the “B” end of a legacy adapter cable are required to have Rp (56 kΩ ± 5%) termination incorporated into the plug assembly – see Section 4.5.3.2.2. 2. USB Type-C plugs associated with the “A” end of a legacy adapter cable are required to have Rd (5.1 kΩ ± 20%)
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PDF
1763fh.pdf
Differential Voltage .....................20V± MP Grade.........................................55°C to 125°C SENSE Pin Voltage ............................................... ±2Storage Temperature Range ADJ Pin Voltage ........................
in „Review: USB→LT1763-3.3 V + SCD41-D-R2 (I²C), Funduino (ATMEGA2560)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1129.pdf
LT1129-3.3/LT1129-5 *PIN 2 = SENSE FOR LT1129-3.3/LT1129-5 F PACKAGE = ADJ FOR LT1129 = ADJ FOR LT1129 20-LEAD PLASTIC TSSOP θ JA= 30°C/W θ JA= 90°C/W NOTE: ALL GROUND PINS ARE INTERNALLY CONNECTED θJA= 40°C/W OBSOLETE PACKAGE FRONT VIEW FRONT VIEW 5 VIN 3 OUTPUT 4 SHDN TAB TAB IS 2 GND IS 3 GND GND GND
in „Spannungsregler durch Kurzschluß am Ausgang kaputt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT48LC16M16A2.PDF
state. Read w/auto Starts with registration of a READ command with auto precharge precharge enabled: enabled and ends when RP has been met. After RP is met, the bank will be in the idle state. Write w/auto Starts
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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Datei
sle4436.txt
******************* WEEPROM BANK1 ; Escritura del Byte Actual en la EEPROM BSF EECON1,WREN MOVLW 0x55 MOVWF EECON2 MOVLW 0xAA MOVWF EECON2 BSF EECON1,WR BTFSC EECON1,WR ; GOTO $-1 ; Espero a que Termine... BCF EECON1,WREN BANK0 RETURN ; Retorno de la LLamada LOCATEBYTE MOVF BYTEN, W ; Ponemos el valor del contador de Bytes de la semilla en W ADDWF PCL, F ; Sumamos PCL + W y salta a guardar el Byte correspondiente NOP GOTO SAVE5 GOTO SAVE4 GOTO SAVE3 GOTO SAVE2 GOTO SAVE1 MOVF BYTE,0 MOVWF C0 RETURN SAVE5 MOVF BYTE,0 MOVWF C5 RETURN SAVE1
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Datei
sle4436.txt
******************* WEEPROM BANK1 ; Escritura del Byte Actual en la EEPROM BSF EECON1,WREN MOVLW 0x55 MOVWF EECON2 MOVLW 0xAA MOVWF EECON2 BSF EECON1,WR BTFSC EECON1,WR ; GOTO $-1 ; Espero a que Termine... BCF EECON1,WREN BANK0 RETURN ; Retorno de la LLamada LOCATEBYTE MOVF BYTEN, W ; Ponemos el valor del contador de Bytes de la semilla en W ADDWF PCL, F ; Sumamos PCL + W y salta a guardar el Byte correspondiente NOP GOTO SAVE5 GOTO SAVE4 GOTO SAVE3 GOTO SAVE2 GOTO SAVE1 MOVF BYTE,0 MOVWF C0 RETURN SAVE5 MOVF BYTE,0 MOVWF C5 RETURN SAVE1
in „SLE4436 mit ASM emulieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sle4436.txt
******************* WEEPROM BANK1 ; Escritura del Byte Actual en la EEPROM BSF EECON1,WREN MOVLW 0x55 MOVWF EECON2 MOVLW 0xAA MOVWF EECON2 BSF EECON1,WR BTFSC EECON1,WR ; GOTO $-1 ; Espero a que Termine... BCF EECON1,WREN BANK0 RETURN ; Retorno de la LLamada LOCATEBYTE MOVF BYTEN, W ; Ponemos el valor del contador de Bytes de la semilla en W ADDWF PCL, F ; Sumamos PCL + W y salta a guardar el Byte correspondiente NOP GOTO SAVE5 GOTO SAVE4 GOTO SAVE3 GOTO SAVE2 GOTO SAVE1 MOVF BYTE,0 MOVWF C0 RETURN SAVE5 MOVF BYTE,0 MOVWF C5 RETURN SAVE1
in „Suche Hilfe bei einem ASM CODE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Cu-ETP.pdf
Spez. elektr. Zustand °C W/(m·K) Widerstand 2 -253 1298 °C (Ω·mm )/m -200 574 -200 0,002 -100 435 -100 0,009 20 394 20 0,018 geglüht 100 385 100 0,023 200 381 200 0,03 300 377 300 0,042 20 0,017 bis 0,018 kaltumgeformt 3.6 Spezifische
in „Auslegung einer Stromschiene aus "Elektrokupfer"“ · Analoge Elektronik und Schaltungstechnik ·