-
Datei
valvo.txt
=de D3;;BCW33;Valvo;SOT23;Transistor;https://www.web-bcs.com/transistor/tc/bc/BCW31.php?lan=de E4;;BFS17R;Valvo;SOT23;Transistor;https://www.web-bcs.com/ F1;;BFS18;Valvo;SOT23;Transistor;https://www.web-bcs.com/transistor/tc/bf/BFS18.php?lan=de F2;;BFS19;Valvo;SOT23;Transistor;https://www.web-bcs.com/transistor/tc/bf/BFS18.php?lan=de F4;;BFS18R;Valvo;SOT23;Transistor;https://www.web-bcs.com/ F5;;BFS19R;Valvo;SOT23;Transistor;https://www.web-bcs.com/ G1;;BFS20;Valvo;SOT23;Transistor;https://www.web-bcs.com/transistor
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
603A.pdf
CHKD.DSGD. 24 / 6- 5- 19, ALC_REC_LVL Setting for ALC recovery detection level ALC_REC_LVL[3:0] 0 0 0 0 -5dBFS 0 0 0 1 -6dBFS 0 0 1 0 -7dBFS 0 0 1 1 -8dBFS 0 1 0 0 -9dBFS 0 1 0 1 -10dBFS 0 1 1 0 -11dBFS 0 1 1 1 -12dBFS 1 0 0 0 -13dBFS 1 0 0 1 -14dBFS 1 0 1 0 -15dBFS 1 0 1 1 -16dBFS 1 1 0 0 -17dBFS 1 1 0 1 -18dBFS
in „[AVR] FM-Transmitter für 1,50EUR --> Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD9235.pdf
) SINGLE-ENDED (dBFS) B d 80 SNR SFDR ) 85 n DIFFERENTIAL (dBFS) SINGLE-ENDED(dBc) c a d S ( B 70 R 80 ( SNR F R SINGLE-ENDED (dBFS) / D R F 60 S 75 / SNR N DIFFERENTIAL(dBc) S SNR 50 70 SNR SINGLE-ENDED (dBc) 7 65 0 40 - 0 25 50 75 100 125 - –30 –25 –20 –15 –10 –5 0 4 4 AIN(dBFS) 0 INPUT FREQUENCY (MHz) 0 Figure20.AD9235-20:SNR/SFDRvs.f IN Figure17.AD9235-20:SingleToneSNR/SFDRvs.A INwithfINNyquist(10MHz) Rev. C | Page 12 of 40 AD9235 0 95 SNR = 64.6dBFS SFDR = 81.6dBFS 2V SFDR
in „Einstellen eines ADCs“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ads5240.pdf
1MHz 87 dBc HD 3rd-Order Harmonic Distortion f = 5MHz 78 85 dBc 3 IN IN= 10MHz 85 dBc fIN= 1MHz 70.5 dBFS SNR Signal-to-Noise Ratio fIN= 5MHz 68 70.5 dBFS IN= 10MHz 70 dBFS fIN= 1MHz 70 dBFS SINAD Signal-to-Noise and Distortion fIN= 5MHz 67 70 dBFS f = 10MHz 69.5 dBFS IN f1= 9.5MHz at -7dBFS dBc IMD Two-Tone
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DAC904_14-Bit_165MSPS_Digital-to-Analog_Converters.pdf
vs SINGLE-ENDED SFDR vs f OUT AT 100MSPS SFDR vs IOUTFSand OUT AT 100MSPS, 0dBFS 85 80 80 75 2.1MHz 75 X 70 X Diff (–6dBFS) 5.04MHz * c70 c65 * * 10.1MHz * B B ( X ( 20.2MHz R65 R60 F X IOUT(–6dBFS) F S60 X S55 X Diff (0dBFS) X X 40.4MHz 55 X 50 X X 50 OUT(0dBFS) 45 45 40 0 10.0
-
PDF
TI_ads5102_03.pdf
= 1.8 V 19.5 DRV DD = 3.3 V 14 DRV DD = 3.3 V Fclk= 65 MHz Fclk= 40 MHz 19.0 f = 32.49 MHz at –1 dBFS 13 f = 19.99 MHz at –1 dBFS A i A i m 18.5 m 12 t t e e r 18.0 r 11 C C y 17.5 y 10 p p u 17.0 u 9 S S t t g 16.5 g 8 D D 16.0 7 15.5 6 15.0 5 –40–30–20–10 0 10 20 30 40 50 60 70 80 90 –40–30–20–10
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Clock_jitter_analyzed_in_the_Time_Domain_Part_2.pdf
clock jitter CALCULATED SNR WITH MEASURED SNR CALCULATED JITTER FROM DEVICE 1.27-ps CLOCK JITTER (dBFS) MEASURED SNR (dBFS) (fs) ADS54RF63 (fIN 1 GHz) 42.8 51.35 ~450 ~10 MHz, which is likely due to the thermal noise of the Figure 17. RF amplifier added in front of LVCMOS output buffer. The ADS54RF63
-
PDF
TI_ads809.pdf
Tested Integral Nonlinearity Error, f = 1MHz ±4.0 ±7.0 LSBs Spurious-Free Dynamic Range1) f = 1MHz 71 dBFS (2) f = 10MHz 65 68 dBFS f = 31MHz 67 dBFS 2-Tone Intermodulation Distortion fIN= 19.4MHz and 20.4MHz (–7dB each tone) –77 dBFS Signal-to-Noise Ratio (SNR) f = 1MHz 65.5 dBFS f = 10MHz 65 dBFS f = 31MHz
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Spektrum eines SDR-Empfängers bei 17,050 MHz
000.017.050.000 dBFS -60 -65 -70 -75 -80 -85 -90 -95 -100 -105 -110 -115 -120 -125 -130 -135 -140 17,010 M 17,020 M 17,030 M 17,040 M 17,050 M 17,060 M 17,070 M VFO: 17,050 MHz IF Spectrum dBFS Asymmetric Filter -60 -70
in „Breite Trägerwelle auf 7,1MHz“ · HF, Funk und Felder · · Screenshots
-
PDF
ads831.pdf
otherwise noted. A SPECTRAL PERFORMANCE SPECTRAL PERFORMANCE 0 0 f = 1MHz IN= 10MHz –10 IN –10 SNR = 49dBFS SNR = 49dBFS –20 SFDR = 68dBFS –20 SFDR = 67dBFS ) ) B –30 B –30 ( ( d –40 d –40 i i n –50 g –50 a a M –60 M –60 –70 –70 –80 –80 –90 –90 0 10 20 30 40 0 10 20 30 40 Frequency (MHz) Frequency (MHz) SPECTRAL
-
PDF
ADS830E_8Bit_60MHz__BB.pdf
unless otherwise noted. SPECTRAL PERFORMANCE SPECTRAL PERFORMANCE 0 0 fIN 1MHz IN= 10MHz –10 SNR = 49dBFS –10 SNR = 49dBFS –20 SFDR = 67dBFS –20 SFDR = 65dBFS ) ) d –30 d –30 ( e d –40 d –40 i i g –50 g –50 a a M –60 M –60 –70 –70 –80 –80 –90 –90 0 7.5 15 22.5 30 0 7.5 15 22.5 30 Frequency (MHz) Frequency
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ads830.pdf
otherwise noted. A SPECTRAL PERFORMANCE SPECTRAL PERFORMANCE 0 0 f = 1MHz f = 10MHz –10 IN –10 IN SNR = 49dBFS SNR = 49dBFS –20 SFDR = 67dBFS –20 SFDR = 65dBFS ) ) B –30 B –30 ( ( d –40 d –40 i i n –50 g –50 a a M –60 M –60 –70 –70 –80 –80 –90 –90 0 7.5 15 22.5 30 0 7.5 15 22.5 30 Frequency (MHz) Frequency (
in „USB Speicher-Oszilloskop (Anfängerhilfe)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DAC3550A_Stereo_Audio_DAC.pdf
0.01 % BW = 20 Hz...0.5 fs, (D/A converter to Line unweighted, Output) R L> 5 kΩ Input 1 kHz at 3 dBFS R ≥ 612 Ω dec THD HP Total Harmonic Distortion OUTL/R 0.05 % BW = 20 Hz...0.5 fs, (Headphone) unweighted, RL≥ 32 Ω (47 Ω series resistor required), Analog Gain = 0 dB, Input 1 kHz at 3 dBFS 22 Micronas
in „Mini-DSP für Audio-Verarbeitung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ads830.pdf
otherwise noted. A SPECTRAL PERFORMANCE SPECTRAL PERFORMANCE 0 0 f = 1MHz f = 10MHz –10 IN –10 IN SNR = 49dBFS SNR = 49dBFS –20 SFDR = 67dBFS –20 SFDR = 65dBFS ) ) B –30 B –30 ( ( d –40 d –40 i i n –50 g –50 a a M –60 M –60 –70 –70 –80 –80 –90 –90 0 7.5 15 22.5 30 0 7.5 15 22.5 30 Frequency (MHz) Frequency (
in „ads830 ad wandler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AK5388AEQ.pdf
Input Characteristics: Resolution - - 24 Bits Input Voltage (Note 6) 2.7 2.8 2.9 Vpp S/(N+D) 1dBFS 100 110 - dB fs=48kHz 20dBFS - 97 - dB BW=20kHz 60dBFS - 57 - dB fs=96kHz 1dBFS 97 107 - dB BW=40kHz 20dBFS - 90 - dB 60dBFS - 50 - dB 1dBFS - 107 - dB fs=192kHz 20dBFS - 90 - dB BW=40kHz 60dBFS - 50 - dB Dynamic Range Stereo Mode 114 120 - (60dBFS with A-weighted) Mono Mode - 123 - dB S/N Stereo Mode 114 120 - dB (A-weighted) Mono Mode - 123 - Input Resistance 3.15 3.7 4.25 k Interchannel Isolation 110 120 dB Interchannel Gain Mismatch 0.1 0.5
in „Audio-ADC - Taktfrequenzen I2S“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Ethernet_r.asm
movlw (1<<ENC_BSEL1) + (1<<ENC_BSEL0) call send bsf SPI_PORT,CS return encbank1 bcf SPI_PORT,CS ENC_BFS ENC_ECON1 call send movlw (1<<ENC_BSEL0) call send bsf SPI_PORT,CS bcf SPI_PORT,CS ENC_BFC ENC_ECON1 call send movlw (1<<ENC_BSEL1) call send bsf SPI_PORT,CS return encbank2 bcf SPI_PORT,CS ENC_BFS
in „ENC28J60 PC reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Ethernet.asm
movlw (1<<ENC_BSEL1) + (1<<ENC_BSEL0) call send bsf SPI_PORT,CS return encbank1 bcf SPI_PORT,CS ENC_BFS ENC_ECON1 call send movlw (1<<ENC_BSEL0) call send bsf SPI_PORT,CS bcf SPI_PORT,CS ENC_BFC ENC_ECON1 call send movlw (1<<ENC_BSEL1) call send bsf SPI_PORT,CS return encbank2 bcf SPI_PORT,CS ENC_BFS
in „ENC28J60 PC reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CS42L51_F3.pdf
to ADC 1 1 0 0 0 0 0 1 1 1 1.8 0 3.65 2.12 0.03 10.45 2.5 0 3.91 3.17 0.04 17.84 MIC to PGA to ADC 1 1 0 0 0 0 0 0 0 1 1.8 0 5.48 2.11 0.03 13.73 (no Bias) 2.5 0 5.76 3.17 0.04 22.45 5 Mono Playback 1 0 1 1 1 1 0 1 1 1 1.8 1.66 1.40 2.35 0.01 9.74 2.5 2.03 1.71 3.48 0.02
in „STM32H7B3I-DK - Soundausgabe“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datenblatt_RedPitaya.pdf
@ 10 MHz, 52 dB @ 20 MHz, 48 dB @ 30 MHz, 44 dB @ 40 MHz, 40 dB @ 50 MHz. (C) ○ Harmonics ■ at 3 dBFS: typical performance <45 dBc (E) ■ at 20 dBFS: typical performance <60 dBc (E) ○ Spurious frequency components: Typically <90 dBFS (F) ○ Connector type: SMA (U) ○ Frequency response is adjusted
in „VHS anderweitig bespielen.“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Ethernet1.asm
movlw (1<<ENC_BSEL1) + (1<<ENC_BSEL0) call send bsf SPI_PORT,CS return encbank1 bcf SPI_PORT,CS ENC_BFS ENC_ECON1 call send movlw (1<<ENC_BSEL0) call send bsf SPI_PORT,CS bcf SPI_PORT,CS ENC_BFC ENC_ECON1 call send movlw (1<<ENC_BSEL1) call send bsf SPI_PORT,CS return encbank2 bcf SPI_PORT,CS ENC_BFS
in „ENC28J60 PC reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Siemens_CrossRef_1998.pdf
SMBT2222 SXT2222 PZT2222 2N2222A SMBT2222A SXT2222A PZT2222A 2N2484 BC846B BC846BW BC 846 S / PN 2N2857 BFS17P 2N2907 SMBT2907 SXT2907 PZT2907 2N2907A SMBT2907A SXT2907A PZT2907A 2N3019 BCX56-16 BCP56-16 2N3053 BSS79 BCX55 BCP55 2N3440 BFN26 BFN18 BFN38 2N3563 BSS79B 2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904
in „1N4001und BC574C ==> SMD?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Siemens_CrossRef_1998.pdf
SMBT2222 SXT2222 PZT2222 2N2222A SMBT2222A SXT2222A PZT2222A 2N2484 BC846B BC846BW BC 846 S / PN 2N2857 BFS17P 2N2907 SMBT2907 SXT2907 PZT2907 2N2907A SMBT2907A SXT2907A PZT2907A 2N3019 BCX56-16 BCP56-16 2N3053 BSS79 BCX55 BCP55 2N3440 BFN26 BFN18 BFN38 2N3563 BSS79B 2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904
in „Suche NPN Transistor Low Noise SMD“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Siemens_CrossRef_1998.pdf
SMBT2222 SXT2222 PZT2222 2N2222A SMBT2222A SXT2222A PZT2222A 2N2484 BC846B BC846BW BC 846 S / PN 2N2857 BFS17P 2N2907 SMBT2907 SXT2907 PZT2907 2N2907A SMBT2907A SXT2907A PZT2907A 2N3019 BCX56-16 BCP56-16 2N3053 BSS79 BCX55 BCP55 2N3440 BFN26 BFN18 BFN38 2N3563 BSS79B 2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904
in „SMD - Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Siemens_CrossRef_1998.pdf
SMBT2222 SXT2222 PZT2222 2N2222A SMBT2222A SXT2222A PZT2222A 2N2484 BC846B BC846BW BC 846 S / PN 2N2857 BFS17P 2N2907 SMBT2907 SXT2907 PZT2907 2N2907A SMBT2907A SXT2907A PZT2907A 2N3019 BCX56-16 BCP56-16 2N3053 BSS79 BCX55 BCP55 2N3440 BFN26 BFN18 BFN38 2N3563 BSS79B 2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904
in „BC337-40 in Pspice“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Siemens_CrossRef_1998.pdf
SMBT2222 SXT2222 PZT2222 2N2222A SMBT2222A SXT2222A PZT2222A 2N2484 BC846B BC846BW BC 846 S / PN 2N2857 BFS17P 2N2907 SMBT2907 SXT2907 PZT2907 2N2907A SMBT2907A SXT2907A PZT2907A 2N3019 BCX56-16 BCP56-16 2N3053 BSS79 BCX55 BCP55 2N3440 BFN26 BFN18 BFN38 2N3563 BSS79B 2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904
in „SMD-Vergleichstypen von Transistoren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TI_ads808.pdf
Tested Integral Nonlinearity Error(1) = 1MHz ±4.0 ±7.0 LSBs Spurious-Free Dynamic Range f = 1MHz 72 dBFS (2) f = 10MHz 65 68 dBFS 2-Tone Intermodulation Distortion fIN= 19.4MHz and 20.4MHz (–7dB each tone) –77 dBFS Signal-to-Noise Ratio (SNR) f = 1MHz 64.5 dBFS f = 10MHz 64 dBFS Signal-to-(Noise + Distortion
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TI_ads808.pdf
Tested Integral Nonlinearity Error(1) = 1MHz ±4.0 ±7.0 LSBs Spurious-Free Dynamic Range f = 1MHz 72 dBFS (2) f = 10MHz 65 68 dBFS 2-Tone Intermodulation Distortion fIN= 19.4MHz and 20.4MHz (–7dB each tone) –77 dBFS Signal-to-Noise Ratio (SNR) f = 1MHz 64.5 dBFS f = 10MHz 64 dBFS Signal-to-(Noise + Distortion
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schaltplan.pdf
Unit with Integrated LED Driver Power Supply Unit with Integrated Led Driver A01 A01 L410 ! L402 D402 BFS3510A SB3200DO-201 CN5_1M99 VLED ANODE_R GND1 1 GND_AL EPC1515/55uH 2 ! L401 +12V +12V_AL EPC1515/55uH D401 3 GND_AL SB3200DO-201 4 CN2_1316 D414 ANODE_L +12V_AL 1 0 0 0 R427 5 GND_AL ANODE_L ANODE_L1
in „Defekte Netzteilplatine Philips TV 55PFL7606“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Datasheet_ADC_LTC2287.pdf
LTC2288: SFDR vs Input Level, fIN = 30MHz, 2V Range, 65Msps fIN = 30MHz, 2V Range, 65Msps 80 120 70 110 dBFS 100 60 dBFS S S 90 B B 80 d 50 D N dBc N 70 dBc c 40 c 60 d d R 30 R 50 S F 40 80dBc SFDR 20 S 30 REFERENCE LINE 20 10 10 0 0 –60 –50 –40 –30 –20 –10 0 –60 –50 –40 –30 –20 –10 0 INPUT LEVEL (dBFS) INPUT
in „Programmieren des LTC2287 Dual 10-Bit ADCs“ · FPGA, VHDL & Co. ·
-
PDF
SMD_Catalog.pdf
60V 1A R2 10k, + c to b zener E02 DTDG23YP Roh P SOT89 npn dtr 60V 1A 2k2+ 10k, + c to b zener E1p BFS17 Phi N SOT23 BFY90 BFW92 E1p BFS17W Phi N SOT323 BFY90 BFW92 E1 HSMP-3811 HP K SOT23 HP3810 pin atten diode E2 BFS17A Phi N SOT23 npn RF 3GHz 25mA E2 BAL99 Zet C - sw diode 75V 100mA E2 HSMP-3812 HP
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
-
PDF
AD1836_prc.pdf
Ambient Temperature 25°C Master Clock 12.288MHz, (48kHz f S 256 × S Mode) Input Signal 1.000 kHz, 0dBFS (Full Scale) Input Sample Rate 48 kHz Measurement Bandwidth 20Hz to 20kHz Word Width 20 Bits Load Capacitance 100 pF Load Impedance 47kΩ Input Voltage HI 2.4V Input Voltage LO 0.8V NOTE Performance
in „Audio Codec mit Filter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AD1836_prc.pdf
Ambient Temperature 25°C Master Clock 12.288MHz, (48kHz f S 256 × S Mode) Input Signal 1.000 kHz, 0dBFS (Full Scale) Input Sample Rate 48 kHz Measurement Bandwidth 20Hz to 20kHz Word Width 20 Bits Load Capacitance 100 pF Load Impedance 47kΩ Input Voltage HI 2.4V Input Voltage LO 0.8V NOTE Performance
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ths0842.pdf
UNIT AVDD 73 95 AVDD = DVDD = DRV DD = 3.3 V, DD Operating supply currenDVDD CL= 15 pF VI=1 MHz,–1 dBFS 3 3.8 mA DRV DD 17 22 PWDN_REF = L 320 393 PD Po wr dissition PWDN_REF = H 275 335 mW PD(STBY) Standby power STBY = H, CLK held high or low 11 15 logic inputs PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
in „ADC - Wie schnell aktualisiert der? Ist ein Oszi möglich?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
WM8978.pdf
1111 = 43.691s 3:0 ALCLVL 1011 ALC target – sets signal level at ADC [3:0] (-12dB) input 1111 : -1.5dBFS 1110 : -1.5dBFS 1101 : -3dBFS 1100 : -4.5dBFS ...... (-1.5dB steps) 0001 : -21dBFS 0000 : -22.5dBFS PTD Rev 2.6 November 2005 w 40 Preliminary Technical Data WM8978 REGISTER BIT LABEL DEFAULT DESCRIPTION
in „GSM + GPS Modul von Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD1937.pdf
Figure 21). Figure17.Single-LineTDMMode8-ChannelADCConfiguration Table 18. Pin Function Changes in TDM and TDM/AUX Modes Mnemonic StereoModes TDMModes TDM/AUXModes ASDATA1 ADC1 data out TDM ADC data out TDM data out ASDATA2
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
adc101s051-q1_1_.pdf
SINAD Signal-to-Noise Plus Distortion Ratio VA= +2.7 to 5.25V 61.5 60.8 dB (min) IN = 100 kHz, −0.02 dBFS SNR Signal-to-Noise Ratio VA= +2.7 to 5.25V 61.6 61.1 dB (min) IN = 100 kHz, −0.02 dBFS THD Total Harmonic Distortion VA= +2.7 to 5.25V −79 −72.5 dB (max) IN = 100 kHz, −0.02 dBFS V = +2.7 to 5.25V A SFDR Spurious-Free Dynamic Range IN = 100 kHz, −0.02 dBFS, 81 70 dB (min) ADC101S051Q V = +2.7 to 5.25V A SFDR Spurious-Free Dynamic Range IN = 100 kHz, −0.02 dBFS, 81 74 dB (min) ADC101S051 ENOB Effective Number of Bits VA= +2.7 to 5.25V 9.9 9.8 Bits (min
in „Ausgangsstrom MISO ADC“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
transistoren.txt
= 4.16619E-002 ITF = 9.82771E-002 PTF = -1.0000E+001 CJC = 1.08829E-012 VJC = 4.07523E-001) .MODEL BFS17 NPN( IS = 2.26749E-016 BF = 4.27829E+001 NF = 9.98081E-001 VAF = 3.09206E+001 IKF = 2.80682E+000 ISE = 1.25812E-011 NE = 2.69052E+000 BR = 1.50821E+001 NR = 9.89755E-001 VAR = 1.31800E+001 IKR = 3.83070E
in „MMIC mit LTSpice, realer Aufbau“ · HF, Funk und Felder ·
-
Bild
Spektrum-Analyse eines Funksignals
20:10:00 20:10:01 20:10:03 20:10:04 20:10:06 20:10:09 20:10:10 20:10:11 20:10:13 20:10:14 20:10:17 20:10:19 20:10:20 20:10:22 20:10:23 20:10:24 20:10:26 20:10:27 20:10:29 20:10:30 26590 26600 26650 26700 26750 26800 26850 26900 26950 27000 27050 27100 27150 27200 27250 27300 27350 27400 RF -17 dBFS
in „Antennenbau, Eure Bilder.“ · HF, Funk und Felder · · Screenshots
-
Datei
mcp2515_defs.h
RXF3EID0 0x13 #define RXF4SIDH 0x14 #define RXF4SIDL 0x15 #define RXF4EID8 0x16 #define RXF4EID0 0x17 #define RXF5SIDH 0x18 #define RXF5SIDL 0x19 #define RXF5EID8 0x1A #define RXF5EID0 0x1B #define TEC 0x1C #define REC 0x1D #define RXM0SIDH 0x20 #define RXM0SIDL 0x21 #define RXM0EID8 0x22 #define RXM0EID0
in „MCP2515 sendet kein SO Signal an MISO (SPI)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
MCP_Reg.h
RXF3EID0 0x13 #define RXF4SIDH 0x14 #define RXF4SIDL 0x15 #define RXF4EID8 0x16 #define RXF4EID0 0x17 #define RXF5SIDH 0x18 #define RXF5SIDL 0x19 #define RXF5EID8 0x1A #define RXF5EID0 0x1B #define TEC 0x1C #define REC 0x1D #define RXM0SIDH 0x20 #define RXM0SIDL 0x21 #define RXM0EID8 0x22 #define RXM0EID0
in „SPI-Problem mit MCP2515 und ATmega16“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
mcp2515_defs_neu.h
RXF3EID0 0x13 #define RXF4SIDH 0x14 #define RXF4SIDL 0x15 #define RXF4EID8 0x16 #define RXF4EID0 0x17 #define RXF5SIDH 0x18 #define RXF5SIDL 0x19 #define RXF5EID8 0x1A #define RXF5EID0 0x1B #define TEC 0x1C #define REC 0x1D #define RXM0SIDH 0x20 #define RXM0SIDL 0x21 #define RXM0EID8 0x22 #define RXM0EID0
in „AT90CAN128 und MCP2515-Controller“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
regs.h
RXF3EID0 0x13 #define RXF4SIDH 0x14 #define RXF4SIDL 0x15 #define RXF4EID8 0x16 #define RXF4EID0 0x17 #define RXF5SIDH 0x18 #define RXF5SIDL 0x19 #define RXF5EID8 0x1A #define RXF5EID0 0x1B #define TEC 0x1C #define REC 0x1D #define RXM0SIDH 0x20 #define RXM0SIDL 0x21 #define RXM0EID8 0x22 #define RXM0EID0
in „Problem durch Optimierung -Os“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
mcp2515_defs.h
RXF3EID0 0x13 #define RXF4SIDH 0x14 #define RXF4SIDL 0x15 #define RXF4EID8 0x16 #define RXF4EID0 0x17 #define RXF5SIDH 0x18 #define RXF5SIDL 0x19 #define RXF5EID8 0x1A #define RXF5EID0 0x1B #define TEC 0x1C #define REC 0x1D #define RXM0SIDH 0x20 #define RXM0SIDL 0x21 #define RXM0EID8 0x22 #define RXM0EID0
in „ATmega644PA und MCP2515 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
mcp2515_equ.inc
0x12 .equ RXF3EID0 =0x13 .equ RXF4SIDH =0x14 .equ RXF4SIDL =0x15 .equ RXF4EID8 =0x16 .equ RXF4EID0 =0x17 .equ RXF5SIDH =0x18 .equ RXF5SIDL =0x19 .equ RXF5EID8 =0x1A .equ RXF5EID0 =0x1B .equ TEC =0x1C .equ REC =0x1D .equ RXM0SIDH =0x20 .equ RXM0SIDL =0x21 .equ RXM0EID8 =0x22 .equ RXM0EID0 =0x23 .equ RXM1SIDH
in „CAN Controller MCP2515: Schreiben in CANCTRL“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ak4528vm-en-datasheet.pdf
Supply Rejection (Note 5) - 50 - dB DAC Analog Output Characteristics: Resolution 24 Bits S/(N+D) (0dBFS) fs=44.1kHz 88 94 dB fs=96kHz 85 93 dB DR (−60dBFS) fs=44.1kHz, A-weighted 104 110 dB fs=96kHz 96 104 dB S/N fs=44.1kHz, A-weighted 104 110 dB fs=96kHz 96 104 dB Interchannel Isolation 90 110 dB Interchannel
in „Daisy: Eingebettete Plattform für Audioprojekte“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
From_analog_to_digital_-_p281.pdf
express the noise ▯oor in dBFS/bin, because that can be read straight off the plot. Equation (37) is modi▯ed accordingly: ▯ ▯ − 1.76 + 6.02n + 10log N dBFS/bin , (38) 10 2 with N the number of samples over which the Fourier transform
in „SNR bei ADCs“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
CAN.h
RXF3EID0 0x13 #define RXF4SIDH 0x14 #define RXF4SIDL 0x15 #define RXF4EID8 0x16 #define RXF4EID0 0x17 #define RXF5SIDH 0x18 #define RXF5SIDL 0x19 #define RXF5EID8 0x1A #define RXF5EID0 0x1B #define TEC 0x1C #define REC 0x1D #define RXM0SIDH 0x20 #define RXM0SIDL 0x21 #define RXM0EID8 0x22 #define RXM0EID0
in „Atmega und CAN“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Frequenzspektrum einer Applikation
16:17 LTE 52 0 -12 -24 -36 Amplitude (dBFS) -48 -60 -72 125 -64 -84 250 -78 375 -84 500 Spectrogram Spec. Analyser Recording Playback
in „Sieht Ihr einen Brummton auf meinen Spektogrammen/FFTs?“ · Haus & Smart Home · · Screenshots
-
Bild
Spektrum eines SDR-Empfängers bei 741.367 MHz
File Tools View Help Gqrx 2.17.4 - rtl=0 -100 -80 -60 -40 -20 0 1.5 dBFS 741.367.000 740.6 740.8 741.0 741.2 741.4 741.6 741.8 742.0 742.2
in „Brennglaseffekt von Lupenleuchten noch hinter Isolierverglasung?“ · Mechanik, Gehäuse, Werkzeug · · Screenshots
-
PDF
datasheet.pdf
.................................................................................................. 17 6 Application circuit...............................................................................................................................18 7 Package.......................................
in „Stm32f4 I2C 16Bit auslesen“ · Mikrocontroller und Digitale Elektronik ·