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Datei
LED_CUBE.txt
} void linespin (int iterations, int delay) { float top_x, top_y, top_z, bot_x, bot_y, bot_z, sin_base; float center_x, center_y; center_x = 4; center_y = 4; int i, z; for (i = 0; i < iterations; i++) { //printf("Sin base %f \n",sin_base); for (z = 0; z < 8; z++) { sin_base = (float)i / 50 + (float)z / (10 + (7 * sin((float)i / 200))); top_x = center_x + sin(sin_base) * 5; top_y = center_x + cos(sin_base) * 5; //top_z = center_x + cos(sin_base/100)*2.5; bot_x = center_x + sin(sin_base + 3.14) * 10; bot_y = center_x + cos(sin_base + 3.14) * 10; //bot_z = 7-top_z;
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Cube_Gro_.ino
} void linespin (int iterations, int delay) { float top_x, top_y, top_z, bot_x, bot_y, bot_z, sin_base; float center_x, center_y; center_x = 4; center_y = 4; int i, z; for (i = 0; i < iterations; i++) { //printf("Sin base %f \n",sin_base); for (z = 0; z < 8; z++) { sin_base = (float)i / 50 + (float)z / (10 + (7 * sin((float)i / 200))); top_x = center_x + sin(sin_base) * 5; top_y = center_x + cos(sin_base) * 5; //top_z = center_x + cos(sin_base/100)*2.5; bot_x = center_x + sin(sin_base + 3.14) * 10; bot_y = center_x + cos(sin_base + 3.14) * 10; //bot_z = 7-top_z;
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F5438IPZ.pdf
PMM interrupt flags PMMIFG 0Ch PMM interrupt enable PMMIE 0Eh Table 14. Flash Control Registers (Base Address: 0140h) REGISTER DESCRIPTION REGISTER OFFSET Flash control 1 FCTL1 00h Flash control 3 FCTL3 04h Flash control 4 FCTL4 06h Table 15. CRC16 Registers (Base Address: 0150h) REGISTER DESCRIPTION
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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USB-DMX512_EN.pdf
the ,xalamp base access refer to the file of the AVOLITES,Downloaded database AVOLITES lights, Found the lamp base what you want, open with WordPad. find the following form: DMX A 2 61 L 1 100 1N O 1 "Shutter" 35 35
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2012_02-RIAA.pdf
220u R60 R63 22u R64 6 3 15p 35V 0 C36 0 35V 2 IC5A R49 R50 220u R58 2 4 M 1 C28 R 35V 2M2 100p 1 1 R70 R72 * 6 R65 110k 10k * 27k K2 R52 IC1B 7 150k 11k MC_R R51 56k R53 5 R59 39k R71 R73 2 0 k 2 R66 C40 C45 1 2 6 10n 4n7 MM_R C33 IC6B 7 C41 C46 470n 5 10n 4n7 C31 R54 6 C42 C47 0 3 10n 4n7 3 7 IC2B R67
in „Empfehlung für Phono-Vorverstärker-Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
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PH2925U.pdf
continuous drain current as a Fig 2. Normalized total power dissipation as a function of mounting base temperature function of mounting base temperature 003aaa438 103 D (A) Limit DSon= VDS D 2 tp= 10 μs 10 100 μs 1 ms 10 10 ms DC 100 ms 1 -1 10 -1 2 10 1 10 10 VDS (V) Fig 3. Safe operating area; continuous
in „Mosfet IRFP4568PbF wird extrem heiß - warum?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
Engine Registers - FT81x Series Programmers Guide Section 3.1 // Addresses defined as offsets from the base address called RAM_REG and located at 0x302000 // Discussion: Defining this way leads to an additional add operation in code that can be avoided by defining // these addresses as 32 bit values, but
in „STM32F407 DISCOVERY mit EVE3 50GTPC von MatrixOrbital“ · Mikrocontroller und Digitale Elektronik ·
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VHF-COMM.1983.3.pdf
ways The developmenl target was to obtain a 2 m and One can, for instance. Irrstty convert the 2 m 70 em transmit signal Irom an SSB IF-signal at 70em Band J l1 J I _ zoo " I:~ _~_ o I YJO ) I ~ ZOO l SOOtIMHz! 9M~1 11711'/ " 145 z i I ..----- 415. SSB-IF I. -I;. t of:, lO4MHI J78MHI <.J1MHl Jedhamonl'o
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mosfet.pdf
reverse base drive Device Symbol. currents are required to obtain fast turn-off. Despite the very advanced state of manufacturability and lower costs of BJTs, these limitations have made the base drive circuit design
in „MOSFET - welche Leistung?“ · Analoge Elektronik und Schaltungstechnik ·
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mosfet.pdf
reverse base drive Device Symbol. currents are required to obtain fast turn-off. Despite the very advanced state of manufacturability and lower costs of BJTs, these limitations have made the base drive circuit design
in „NT mit Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Mosfet-Basics-IR.pdf
reverse base drive Device Symbol. currents are required to obtain fast turn-off. Despite the very advanced state of manufacturability and lower costs of BJTs, these limitations have made the base drive circuit design
in „MOSFET Sättigung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
evdp610.pdf
-bitmode,the PWM base period is equal to 256 PWM clock cycles. 2.3 Input Clock Selection and Jumper Settings In 7-bit mode the PWM base period is equal to 128 Theevaluationboardhas3jumpersettings(labeledJP1 PWM clock cycles
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Datei
objdump.txt
f2c4 0300 movt r3, #16384 ; 0x4000 8005370: 429a cmp r2, r3 8005372: d108 bne.n 8005386 <TIM_TimeBaseInit+0x76> { /* Select the Counter Mode */ tmpcr1 &= (uint16_t)(~(TIM_CR1_DIR | TIM_CR1_CMS)); 8005374: 89fb ldrh r3, [r7, #14] 8005376: f023 0370 bic.w r3, r3, #112 ; 0x70 800537a: 81fb strh r3, [r7
in „STM32F4 HardFault Interrupt bei stdlib Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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edison-module_HG_331189.pdf
communicate to PMIC. Figure 7 Definition of timing for high speed-mode devices on I C bus 2 Sr trDA Sr P fDA 70% 70% 70% SDAH 30% 30% 30% SU;STA SU;STO tHD;STA tHD;DAT SU;DAT 70% 70% 70% 70% 30% 30% 30% tfCL SCLH trCL trCL1 (1) tLOW LOW rCL1 t t (1) HIGH HIGH = MCS current source pull-up = Rp resistor pull-up
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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MC1496.pdf
0.9 ( 10 ( 0.8 N E I 20 N 0.7 E T 0.6 P MC1496 I Side Band P 30 D 0.5 Sideband Transadmittance S (70⋅C) S out▯(Each▯Sideband) E 40 N 0.4 ▯21▯ V ▯(Signal) V out▯ 0 R R 0.3 in A , , 50 2 0.2 Iignal Port Transadmittance S γ ▯ ▯ out ▯V ▯ 0▯▯|V | ▯ 0.5▯Vdc VC60 0.1 21 V out C 0 in 70 0.1 1.0 10 100 1000
in „Analogmultiplizierer aufbauen - Audiobereich“ · Analoge Elektronik und Schaltungstechnik ·
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solidstate.pdf
20g) Encapsulation: Thermally Conductive Epoxy BOTTOM VIEW CURRENT DERATING CURVES 1 draft top to base 4.0 1.00 S3.0 (25.4) .025 M (.64) ( N LOAD CONTROL R2.0 MP240D4 U .25 TYP. (6.35) 1 2 3 4 D MP120D3 O MP240D3 .20 .16 L MPDCD3 (5.1) (4.1) 1.0 .70 .40 .040 (1.0) DIA. (17.8) (10.2) (4 PLACES) 1.10 .30 (27.9) (7.6) AC Output 0 1.70 PIN 1: AC LOAD 20 40 60 80 (43.1) PIN 2: AC LOAD AMBIENT TEMPERATURE (C) PIN 3: +DC CONTROL PIN 4: -DC CONTROL All dimensions areininches (millimeters) DC Output PIN 1: +DC LOAD PIN 2: -DC LOAD PIN 3
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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untitled.pdf
Amplifier 100n Dl 8 GND 3 3 L y 1 GND GND 3 R k 8 N GND 200 R7 IC1A , 4 D 1 N 4 RB886G / 1SS351 / BAS70 3 R G R15 22 23 6 LM393D R50 200 22 R54 7 BIAS1 N THS6214 IN1 D9 C17 p 1 5 10k G R13 R1 R5 1k n R IC3B 1µ IC1BIAS 1,2k 51||51 R52 7 TR2 C1 10Meg IADJ C X6 T4-1T-X65 0 R3 T1 X2 GND GND C IN1 6 1 1p
in „HF Linearverstärker für Messzwecke“ · HF, Funk und Felder ·
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hdsp_5082-7340_7300.pdf
Luminous 7302 Left Hand D.P. Intensity • Hexadecimal 5082-7340 Assures Uniformity of Light 0-9, A-F, Base 16 Operation Output From Unit to Unit Blanking Control, Conserves Within a Single Category Power No Decimal Point Description • DTL/TTL Compatible Hewlett-Packard’s 5082-7300 The 5082-7300 numeric indicator
in „[V] LED Punkt 7 Segment Anzeigen rot hex Hdsp5082-7340/7300 ähnlich Til311“ · Markt ·
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Datei
Uhr_7Seg.c
Empf-Wert--------------------- else // Nach dem Ende des 1-Pegels -> Auswertung { count0++; if(count1<70) //Fehler --> Keine Sync mehr { Anzeige[4].dp=1; //Anzeige Erkannter Fehler Zeit[Prot_Start]=0; } else if ((count1>=70) && (count1<=160)) //0 Empfangen { Zeit[Prot_Start]=0; Anzeige[5].dp=0; //0-Empfangen
in „DCF77-Modul Empfang weiter verbessern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AIO486.PDF
256K B8000 8 2,3* A/N 16/256K 80x25 640x350 8x14 25.175 31.55 70.3 256K B8000 8 2,3+ A/N 16/256K 80x25 720x400 9x16 28.322 31.34 69.8 256K B8000 8 4,5 APA 4/256K 40x25 320x200 8x8 25.175 31.55 70.3 256K B8000 1 6 APA 2/256K 80x25 640x200 8x8 25.175 31.55 70.3 256K
in „AIO486 CPU-Board“ · Offtopic ·
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AIO486.PDF
256K B8000 8 2,3* A/N 16/256K 80x25 640x350 8x14 25.175 31.55 70.3 256K B8000 8 2,3+ A/N 16/256K 80x25 720x400 9x16 28.322 31.34 69.8 256K B8000 8 4,5 APA 4/256K 40x25 320x200 8x8 25.175 31.55 70.3 256K B8000 1 6 APA 2/256K 80x25 640x200 8x8 25.175 31.55 70.3 256K
in „AIO486 CPU-Board“ · Offtopic ·
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Datei
Main.java
ib.iow(0x3d8,0xa0); else ib.iow(0x3b8,0xa0); } static boolean et4000_test() { int newv, old, val, base; et4000_unlock(); // test for tseng old = ib.ior(0x3cd); ib.iow(0x3cd,0x55); newv=ib.ior(0x3cd); ib.iow(0x3cd,old); if(newv!=0x55) return false; // test for et4000 if((ib.ior(0x3cc)&1)!=0) base=0x3d4; else base = 0x3c4; ib.iow(base, 0x33); old=ib.ior(base+1); newv=old ^ 0xf; ib.iow(base+1, newv); val=ib.ior(base+1); ib.iow(base+1, old); if(val==newv) return true; return false; } static void writeSequencer(
in „VGA Grafikkarte an uC“ · Mikrocontroller und Digitale Elektronik ·
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DS1643-DS1643P.pdf
ORDERING INFORMATION VOLTAGE RANGE PART TEMP RANGE PIN-PACKAGE TOP MARK (V) DS1643-85+ 5.0 0°C to +70°C 28 EDIP (0.740) DS1643+85 DS1643-100+ 5.0 0°C to +70°C 28 EDIP (0.740) DS1643+100 DS1643P-85+ 5.0 0°C to +70°C 34-PowerCap* DS1643P+85 DS1643P-100+ 5.0 0°C to +70°C 34-PowerCap* DS1643P+100 *DS9034I-PCX
in „parallele SRAM Bausteine (nennt man das so ?) in Bascom“ · Mikrocontroller und Digitale Elektronik ·
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TTA0002_datasheet_en_20131101.pdf
amplifier output stage. Absolute Maximum Ratings (Tc = 25°C) Characteristics Symbol Rating Unit Collector-base voltage VCBO -160 V Collector-emitter voltage V -160 V CEO Emitter-base voltage VEBO -5 V DC IC -18 A Collector current Pulse CP -35 A JEDEC ― Base current IB -9 A Collector power dissipation PC 180
in „Vergleichstyp Onkyo Endstufe TX NR 838, TTA0001, TTC0001“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ntp-4.2.8p10_hopf_clockmouse_V0.9_2017-11-30.diff
<ImportGroup Label="PropertySheets"> - </ImportGroup> - <PropertyGroup Label="UserMacros"> - <OutBaseDir>$(SolutionDir)\$(Platform)-out\$(Configuration)</OutBaseDir> - <TmpBaseDir>$(SolutionDir)\$(Platform)-tmp\$(Configuration)</TmpBaseDir> - </PropertyGroup> - <PropertyGroup> - <_ProjectFileVersion
in „Hopf Clock Mouse --> Abfrageprotokoll“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sl11hspec.pdf
TO TRANSFER 128-BYTES OF DATA TO APERIPHERAL: ..................................16 2.3.1 USB Host Base Address [01H] ............................................................................................16 2.3.2 USB Host Base Length [02H] ........................................................
in „[V] SL11H, USS720E ua.“ · Markt ·
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Nokia_6100_LCD_Display_Driver.pdf
, // 4 0xF8,0x80,0xF0,0x08,0x08,0x88,0x70,0x00, // 5 0x38,0x40,0x80,0xF0,0x88,0x88,0x70,0x00, // 6 0xF8,0x08,0x08,0x10,0x20,0x40,0x80,0x00, // 7 0x70,0x88,0x88,0x70,0x88,0x88,0x70,0x00, // 8 0x70,0x88,0x88,0x78,0x08,0x10,0xE0,0x00, // 9 0x00,0x00,0x20,0x00,0x20,0x00,0x00,0x00
in „Alles was man über das Nokia 6100 Display wissen muss“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XLampXML2.pdf
Inc. 2 ® xlamp xm-l2 leds Flux Characteristics (T = 85 °C) J The following table provides several base order codes for XLamp XM-L2 LEDs. It is important to note that the base order codes listed here are a subset of the total available order codes for the product family. For more order codes, as well
in „Li Akku effizient in WLED endladen“ · Analoge Elektronik und Schaltungstechnik ·
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m_mops386a_p389m115.pdf
0000-00-0). The following table shows the pinout. Header Pin Signal Name Function In/Out 1 TXD+ 10BASE-T Transmit Differential Output 2 TXD- 10BASE-T Transmit Differential Output 3 RXD+ 10BASE-T Receive Differential Input 4 NC Unused 5 NC Unused 6 RXD- 10BASE-T Receive Differential Input 7 LNLED LAN
in „Kontron PC-104 MOPS386A board from Bender Unimet 1000 ST“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6603.pdf
mW/°C above +70°C).........................1481Storage Temperature Range.............................-65°C to +150°C 10-Pin TDFN Multilayer Board Lead Temperature (soldering, 10s).................................+300
in „Temperaturmessung mit Mikrocontroller im Batteriebetrieb“ · Mikrocontroller und Digitale Elektronik ·
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MOSFET_oder_bipolarer_Transistor__Zetex.pdf
to be careful what conditions are specified. For example, bipolar transistors require sufficient base current to achieve the lowest R CE(sat)lues, and when calculating power losses the base drive loss must be taken into account. High gain devices have been developed to minimize these losses. Bipolar
in „mit 2,7V schalten“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Verpackung von Original Bungard Leiterplattenmaterial
ORIGINAL BUNGARD BEL/ Ihr Weg zur Leiterplatte... Presensitized Base Material Attention: Light Sensitive 708.84.16 * U3 258 B 25 $ EPOXYDPL.100X1 529273 MG 4007194.2571137 .04 Materialarten FR 4 FR 2 CEM 1 Materialstärken in mm 0,5 0,8 1,0 1,5 2,0 2,5 Kupferlagen in µm 18/0 18/18 35/0 35/35 70/0 70/70 Size 100 x 160 mm Contents 10 sheets Format 100 x 160 mm Inhalt/Menge 10 St.
in „[V] Bungard Basis Material Einseitig 6x Europa-Format“ · Markt · · Fotos
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OCXO-131.pdf
L: 36.3 12.0 ±0.4 ± 5 0~+50 Output Symmetry * Not Normal RoHS XX.XXXXXX Series W: 27.2 5.0 ± 10 0~+70 CMOS15pF 50±10% selectable Compliant H: 19.1 ± 20 -30~+70 Sine Wave by Please refer Not RoHS customer ± 30 to "OUTLINE Compliant ± 50 DRAWING" Ordering Example: OCXO131 Series; V DD : 12V; Pulling Range: ±0.4ppm; Freq. Stability: ± 20 ppb; Temp. Range: -30ºC to 70ºC; Sine Wave; Pin Out: Normal; RoHS Compliant; Freq. 10.000000 MHz. Freq. Stability vs. TEMP. Range Outline Drawing ppb ±5 ±10 : ±20 Temp. (ºC) 0 to +50 0 to +70 -30 to +70
in „Glasquarze, Quarzofen u.a. - siehe Foto abzugeben“ · Markt ·
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MSM486SE-DIGITAL-LOGIC.pdf
configured with the values stored in an EEPROM. The default values are: Configuration: IOS0: IOS1: IOS2: Base- IRQ: Bus: Interface: Jumper position J68 J69 J70 address: 0 closed closed closed 300 5 16 10BASE-T 1 open closed closed 300 10 16 10BASE-T 2 closed open closed 320 10 16 10BASE-T 3 open open closed 340 11 16 10BASE-T 4 closed closed open 340 5 16 10BASE-T 5 open closed open 340 10 16 10BASE-T 6 closed open open 320 11 16 10BASE-T 7 open open open Software downloadable configuration On the board, the default configuration
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PDF
BD137__FAI-2013.pdf
T = 25°C unless otherwise noted. 3 C 9 Symbol Parameter Value Units — BD135 45 F V CBO Collector-Base Voltage BD137 60 V a BD139 80 u r BD135 45 s V CEO Collector-Emitter Voltage BD137 60 V BD139 80 V EBO Emitter-Base Voltage 5 V C Collector Current (DC) 1.5 A ICP Collector Current (Pulse) 3.0 A I Base
in „High Freq Power Amplifier“ · Analoge Elektronik und Schaltungstechnik ·
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lmh6642.pdf
Sourcing to V /2 Circuit Current V = 200mV (6)(7) 40 55 115 ID mA Sinking to V /2 V = −200mV (6)(7) 55 70 140 ID OUT Output Current VO= 0.5V from either supply ±70 mA +PSRR Positive Power V+ = 4.0V to 6V dB Supply 79 90 Rejection Ratio S Supply Current No Load (per channel) 5.00 2.70 4.25 mA (6) Short circuit
in „Funkentstörung mobiler Kopfhörerverstärker“ · HF, Funk und Felder ·
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PDF
rej09b0101_16c29hm_2_.pdf
RST1 Base timer reset matching the G1PO0 register RW cause select bit 1 1: The base timer is reset by matching (1) with the G1PO0 register 0: The base timer is not reset by RST2 Base timer reset applying "L"
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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Datei
e3d_tex.inc
{Red} finish{ambient(0.01 * global_ambient_mul)} } //Dark gray for SMD aluminium electrolytic cap base #declare e3d_tex_cap_smd_electrolytic_base = //texture{e3d_tex_cap_smd_electrolytic_base} texture{ pigment {Gray10} finish{ambient(0.1 * global_ambient_mul)} } //The shade of brown you see on 100nF
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Datei
main.c
uint8_t RegFrMid = 0x07; uint8_t RegFrLsb = 0x08; uint8_t RegFifoAddrPtr = 0x0D; uint8_t RegFifoTxBase = 0x0E; uint8_t RegFifoRxBase = 0x0F; uint8_t RegFifoRxCurrent = 0x10; uint8_t RegIrqFlags = 0x12; uint8_t RegRxNbBytes = 0x13; uint8_t RegModemStat = 0x18; uint8_t RegPktSnr = 0x19; uint8_t RegPktRssi
in „Probleme mit SX1276 LoRa Trasceiver“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pt1000_rp2040.ino
Faktor 0,00385. Die beiden Messungen dauern ca. 14 µs, was bei 5 Messungen/s eine Einschaltzeit von 70 µs/s ergibt. Durch dieses kleine Tastverhaeltnis wird dem PT1000 eine vernachlaessigbare Leistung von lediglich < 200 nW zugeführt. Aus dem gemessenen ADC_wert und R_REF wird der Widerstand PT_x ermittelt
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PDF
ref3125.pdf
REF3112, REF3120, REF3125, REF3130, REF3133, REF3140 (2) OUTPUT VOLTAGE TEMP DRIFT dVOUT/dT 0°C ≤T A≤ +70°C 5 15 ppm/ °C –40°C ≤ TA ≤+125 C 10 20 ppm/ °C LONG-TERM STABILITY 0-1000h 70 ppm LINE REGULATION VREF + 0.051≤ VIN≤ 5.5V 20 65 ppm/V LOAD REGULATION (3) dVOUT/dLOAD Sourcing 0mA < I < 10mA, 10 30 µV
in „=> Referenzspannungsquelle für 2,5-4.5V Versorgung gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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iW1816.pdf
Electrical Characteristics (continued) Parameter Symbol Test Conditions Min Typ Max Unit Collector-Base breakdown voltage V I = 0.1mA 800 V CB0 C Collector-Emitter breakdown voltage V I = 1mA, R = 0Ω 800 V (Emitter and base shorted together) CES C EB Collector-Emitter sustain voltage VCEO(SUS) IC= 1mA
in „Fritz Powerline 540E abgeraucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
twi_lib.c
regardless of Debug Level setting. SrvS.DebugLevel = cDebugOnUARTinAnyCase; switch( twi1.Addr_SLA_Base ) { case DS1631_BaseAdr: strMessage = (char *) strP_Err_DS1631; break; case PCF8574_BaseAdr: strMessage = (char *) strP_Err_PCF8574; break; case PCF8574A_BaseAdr: strMessage = (char *) strP_Err_PCF8574A
in „TWI MUX per SW an einem Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
si1539cd.pdf
devices EVALUATION BOARDS FOR THE DUAL with a range of on-resistance specifications in 6-pin versions. SC70-6 The new 6-pin SC-70 package enables improved on-resistance values and enhanced thermal performance. The 6-pin SC-70 evaluation board (EVB) measures 0.6 inches by 0.5 inches. The copper pad traces are
in „7-Segment Display (elektromagnetisch) Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Butler_OT_XO.pdf
operation. 11.2 Butler’s Emitter Follower Oscillator Operation ward. Let us break the circuit at the base junction and draw its ac equivalent cir- cuit as shown in Figure 11.2. We start at the base in which the base-to-emitter 237 238 Understanding Quartz Crystals and Oscillators Figure 11.1 Butler’s emitter
in „3rd-OT-Oszillator mit NE602 (an Pin 6 und 7)“ · HF, Funk und Felder ·
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Datei
MKL25Z4.h
FPTB_BASE (0xF80FF040u) /** Peripheral FPTB base pointer */ #define FPTB ((FGPIO_Type *)FPTB_BASE) /** Peripheral FPTC base address */ #define FPTC_BASE (0xF80FF080u) /** Peripheral FPTC base pointer */ #define FPTC ((FGPIO_Type *)FPTC_BASE) /** Peripheral FPTD base address */ #define FPTD_BASE (0xF80FF0C0u) /** Peripheral FPTD base pointer */ #define FPTD ((FGPIO_Type *)FPTD_BASE) /** Peripheral FPTE base address */ #define FPTE_BASE
in „Interrupts bei Keil ARM? (KL25Z)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM8603EP.pdf
Support 1b 1 = 100BASE-TX full duplex is supported by the local device 0 = 100BASE-TX full duplex is not supported 7 TX_HDX RW 100BASE-TX Support 1b 1 = 100BASE-TX half duplex is supported by the local device 0 = 100BASE-TX
in „2 Port Switch IC wie in IP telefonen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM8603EP.pdf
Support 1b 1 = 100BASE-TX full duplex is supported by the local device 0 = 100BASE-TX full duplex is not supported 7 TX_HDX RW 100BASE-TX Support 1b 1 = 100BASE-TX half duplex is supported by the local device 0 = 100BASE-TX
in „[V] DM8203 & DM8603“ · Markt ·
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PDF
LOG_RATIO_-_log102.pdf
10kΩ, unless otherwise noted. A S L LOG CONFORMITY vs V LOG CONFORMITY vs TEMPERATURE 5 LOGOUT 300 4 70°C V 3 ) m m 200 y 2 ( i i 6 Decades (1nA to 1mA) r 1 r n f o o g 0 25°C C 100 L o –1 L 5 Decades (1nA to 100µA) –2 0°C –3 0 –3 –2 –1 0 1 2 3 0 10 20 30 40 50 60 70 VLOGOUT(V) Temperature (°C) TOTAL ERROR vs TEMPERATURE 60 50 1nA ) V 40 ( 1mA o E 30 a o T 20 10 10nA to 100µA 0 0 10 20 30 40 50 60 70 Temperature (°C) LOG102 5 SBOS211B www.ti.com APPLICATION INFORMATION R 2 10kΩ V– The LOG102 is a true logarithmic amplifier that uses the V+ base-emitter voltage relationship of bipolar transistors
in „Logarithmic and log ratio amplifier“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ca3140-a.pdf
, 29) 86 100 - 86 100 - dB Common Mode Rejection Ratio CMRR - 32 320 - 32 320 V/V (See Figure 34) 70 90 - 70 90 - dB Common Mode Input Voltage Range (See Figure 8)VICR -15 -15.5 to +12.5 11 -15 -15.5 to +12.5 12 V Power-Supply Rejection Ratio, PSRR - 100 150 - 100 150 V/V VIOV SSee Figure 36) 76
in „OpAmp Ausgang schwingt mit 50Hz (oder 100)“ · Analoge Elektronik und Schaltungstechnik ·