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Datei
enc28j60.h
TXSTART #define MAXFRAMELEN 1500 #define RBM_OP 0x3a #define WCR_OP 0x40 #define WBM_OP 0x7a #define BFS_OP 0x80 #define BFC_OP 0xa0 #define RESET_OP 0xff // Bank 0 registers -------- #define ERDPTL 0x00 #define ERDPTH 0x01 #define EWRPTL 0x02 #define EWRPTH 0x03 #define ETXSTL 0x04 #define ETXSTH 0x05
in „Problem mit ENC28J60“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_chassis_qfu2.1e_la.pdf
450V R501B 1 CSS VBOOT 16 4 9 C205 2 0 0 00 7 0 C214 MMSD4148 2 TP39 TP93 R520 NXB 1000uF/16V W 2 0 20 0 0 OPEN 10 10k T 82uF 450V 510K 2 DELAY HVG 15 C508 TP66 8 2 J 1 C 1 C1 2 1 6 R604A 1 R510 C504 C505 TP40 TP49 10K L511 5 TP207 T JW decal B B C B P 200K F R604 T 750K 220nF 3 14 100nF BFS3550A 7 X
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX9814.pdf
Current IDD 3.1 6 mA Shutdown Supply Current ISHDN 0.01 1 µA Input-Referred Noise Density en BW = 20kHz, all gain settings 30 nV/√Hz Output Noise BW = 20kHz 430 µV RMS BW = 22Hz to 22kHz Signal-to-Noise Ratio SNR (500mV output signal) 61 dB RMS A-weighted 64 Dynamic Range DR (Note 2) 60 dB IN = 1kHz, BW = 20Hz to 20kHz, RL= 10kΩ, V TH= 1V (threshold = P-P), 0.04 VIN= 0.5mV RMS , CT = 0V Total Harmonic Distortion Plus THD+N % Noise IN = 1kHz, BW = 20Hz to 20kHz, RL= 10kΩ, V TH = 0.1V (threshold = 0.2 200mV
in „Impedanzanpassung MAX9814 <-> PCM2912A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Transistor_Database.pdf
UHF BF981 N-FET-DG 20V 20mA VHF BF982 N-FET-DG 20V 40mA 200MHz BF989 N-FET 20V 30mA 0.2W BF990A N-FET-DG 18V 30mA 0.2W BF991 N-FET-DG 20V 20mA UHF BF992 N-FET 20V 40mA 0.2W BF994S N-FET-DG 20V 30mA 200MHz BF996S N-FET-DG
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Database.pdf
UHF BF981 N-FET-DG 20V 20mA VHF BF982 N-FET-DG 20V 40mA 200MHz BF989 N-FET 20V 30mA 0.2W BF990A N-FET-DG 18V 30mA 0.2W BF991 N-FET-DG 20V 20mA UHF BF992 N-FET 20V 40mA 0.2W BF994S N-FET-DG 20V 30mA 200MHz BF996S N-FET-DG
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
enc28j60.h
TXSTART #define MAXFRAMELEN 1518 #define RBM_OP 0x3a #define WCR_OP 0x40 #define WBM_OP 0x7a #define BFS_OP 0x80 #define BFC_OP 0xa0 #define RESET_OP 0xff // Bank 0 registers -------- #define ERDPTL 0x00 #define ERDPTH 0x01 #define EWRPTL 0x02 #define EWRPTH 0x03 #define ETXSTL 0x04 #define ETXSTH 0x05
in „enc28j60 LanController initialisieren auf ARM7“ · Mikrocontroller und Digitale Elektronik ·
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PDF
39662c.pdf
V SSTX 18 14 P Ground reference for PHY TX. VDDRX 19 15 P Positive 3.3V supply for PHY RX. VDDPLL 20 16 P Positive 3.3V supply for PHY PLL. VSSPLL 21 17 P Ground reference for PHY PLL. VSSOSC 22 18 P Ground reference for oscillator. OSC1 23 19 I ANA Oscillator input. OSC2 24 20 O Oscillator output.
in „Webserver mit XC167“ · Mikrocontroller und Digitale Elektronik ·
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Datei
board-pcm051.c
_PHY_ID 0x2000A201 #define TLK110_PHY_MASK 0xfffffff0 #define GPIO_RTC_RV4162C7_IRQ GPIO_TO_PIN(0, 20) #define GPIO_RTC_PMIC_IRQ GPIO_TO_PIN(3, 4) /* Convert GPIO signal to GPIO pin number */ #define GPIO_TO_PIN(bank, gpio) (32 * (bank) + (gpio)) #include "common.h" static struct omap2_hsmmc_info am335x_mmc
in „Probleme mit phyCore AM3352 und Cypress USB, MMC2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
surrpressordiode.pdf
19.7 30.5 (+) SMBJ17A LR LR 18.9 20.9 1.0 17 1.0 21.7 27.6 (+SMBJ18 LS BS 20.0 24.4 1.0 18 1.0 18.6 32.2 (+SMBJ18A LT BT 20.0 22.1 1.0 18 1.0 20.5 29.2 (+) SMBJ20 LU LU 22.2 27.1 1.0 20 1.0 16.8 35.8 (+SMBJ20A LV LV 22.2 24.5 1.0 20 1.0
in „DC Geräteeingang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MotorolaDatenCD_2000.pdf
dB MHz Volts mA Package Case 318–08/6 — SOT–23 MMBR5031LT1 (18c) 1.0 5 – 2.5 450 17 450 10 20 BFS17LT1 (18c) 1.3 25 – – – – – 15 – (18c) BFR92ALT1 4.5 14 – – – 15 – 15 25 MMBR901LT1 (18c) 4.0 15 7 1.9 1000 12 1000 15 30 MMBR901LT3 (18d) 4.0 15 7 1.9 1000 12 1000 15 30 (18c) BFR93ALT1 3.4 30 –
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Datei
enc28j60.c
\brief Driver code for enc28j60. * \author Iain Derrington (www.kandi-electronics.com) * \date 0.1 20/06/07 First Draft \n * 0.2 11/07/07 Removed CS check macros. Fixed bug in writePhy * 0.3 12.07/07 Altered for uIP 1.0 */ /*****************************************************************************
in „Problem mit ENC28J60“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4344-45-46-48_F1.pdf
............................................................................. 20 Figure 20. Double Speed Passband Ripple .............................................................................................. 20 Figure 21. Quad Speed Stopband Rejection ....................
in „STA015, CS4344 Platinencheck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1801_datasheet.pdf
5 V, S = 44.1 kHz, and SYSCLK = 384 f S unless otherwise noted OUTPUT SPECTRUM FULL-SCALE FFT –60 dBFS FFT 0 0 −20 −20 −40 −40 B B − −60 − −60 e e d d l l p −80 p −80 m m A A −100 −100 −120 −120 −140 −140 0 5 10 15 20 0 5 10 15 20 f − Frequency − kHz G010 f − Frequency − kHz G011 Figure 10. Figure 11
in „Analogspannung ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
enc28j60.c
\brief Driver code for enc28j60. * \author Iain Derrington (www.kandi-electronics.com) * \date 0.1 20/06/07 First Draft \n * 0.2 11/07/07 Removed CS check macros. Fixed bug in writePhy * 0.3 12.07/07 Altered for uIP 1.0 */ /*****************************************************************************
in „enc28j60 LanController initialisieren auf ARM7“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TAS6424-q1.pdf
79 and Figure 82 (unless otherwise noted) 0 0 Ch 1 to Ch 2 PV = 14.4 V Ch 2 to Ch 1 PV DD = 24 V -20 DD -20 B -40 ) ( d -40 l ( s -60 R o S r P -60 C -80 -80 -100 -120 -100 20 100 1k 10k 20k 20 100 1k 10k 20k Frequency (Hz) Frequency D002 D022 P O 1 W P O 1 W Figure 1. Crosstalk vs Frequency Figure 2. PVDD PSRR vs Frequency 0 10 PVDD = 14.4 V ) 2 : Load PVDD = 24 V ( 4 : Load -20 s o 1 N -40 + B i ( r R -60 i 0.1 R D P i -80 o r a 0.01 l -100 t T -120 0.001 20 100 1k 10k 20k 20 100 1k 10k 20k Frequency D024 Frequency (Hz) D005 P O 1 W PO= 1 W 384-kHz f SW Figure 3. VBAT PSRR
in „Eagle lib für TAS6424“ · Platinen ·
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PDF
enc28j60.pdf
SSTX 18 14 P — Ground reference for PHY TX. V DDRX 19 15 P — Positive 3.3V supply for PHY RX. V DDPLL 20 16 P — Positive 3.3V supply for PHY PLL. V SSPLL 21 17 P — Ground reference for PHY PLL. V SSOSC 22 18 P — Ground reference for oscillator. OSC1 23 19 I DIG Oscillator input. OSC2 24 20 O — Oscillator
in „ENC28J60 Resetpin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4344-45-48_F2.pdf
kHz External SCLK Mode LRCK Duty Cycle (External SCLK only) 45 50 55 % SCLK Pulse Width Low tsclkl 20 - - ns SCLK Pulse Width High sclkh 20 - - ns SCLK Duty Cycle 45 50 55 % SCLK rising to LRCK edge delay t 20 - - ns slrd SCLK rising to LRCK edge setup time tslrs 20 - - ns SDIN valid to SCLK rising setup time t 20 - - ns sdlrs SCLK rising to SDIN hold time tsdh 20 - - ns Internal SCLK Mode LRCK Duty Cycle (Internal SCLK only) (Note 12) - 50 - % 9 SCLK Period (Note 13) sclkw -------------- - - ns SCLK SCLK rising
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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PDF
CS4272.pdf
signal to the rms sum of all other spectral components over the specified bandwidth (typically 10 Hz to 20 kHz), including distortion components. Expressed in decibels. Measured at -1 and -20 dBFS as suggested in AES17-1991 Annex A. Frequency Response A measure of the amplitude response variation from 10
in „was ist "ATAPI channel mixing" Warum kein Ausgangssignal?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4272_F1.pdf
signal to the rms sum of all other spectral components over the specified bandwidth (typically 10 Hz to 20 kHz), including distortion components. Expressed in decibels. Measured at -1 and -20 dBFS as suggested in AES17-1991 Annex A. Frequency Response A measure of the amplitude response variation from 10
in „darf der Chip so warm werden?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Devices.txt
22 MA03-1 22 AT90S2313P 21 PINHD-1X5 21 MA05-2 21 JP5Q 21 HCPL0500 21 C-USC0603K 21 BC337 21 31-XX 20 XTAL/S 20 TL082P 20 R-EU_R0603R 20 OHMSCHER_WIDERSTANDSMD 20 G6K-2F 20 C-EUC3216 20 2,54/1,0 20 1N4148DO35-10 19 PINHD-2X3 19 P1-13 19 C2,5@2 18 TPSTP10SQ 18 MKDSN1,5/2-5,08 18 LF351N 18 FT232RL 18 CPOL-EU085CS
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
tas5729md.pdf
Left PO= 1W Right to Left –10 PVDD = 12V –10 PVDD = 24V R = 8 Left to Right R = 8 Left to Right L L –20 TA= 25 C –20 TA= 25 C –30 –30 ) ) d –40 d –40 k k t –50 t –50 s s r r C –60 C –60 –70 –70 –80 –80 –90 –90 –100 –100 20 200 2k 20k 20 200 2k 20k Frequency (Hz) Frequency (Hz) C019 C020 Figure 21. 8-Ohm
in „Leistung und Bitanzahl für Musik via BT“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
7805 23 74LS04N 23 5k6 23 1N4001 22 MEGA16-P 22 1n 22 1,5k 22 100µ 21 HCPL0500 21 2k 21 2,2K 21 1,5nF 20 TLC272 20 G6K-2F 20 AT90S2313P 20 180R 19 SB130 19 P1-13 19 1uF 18 TPSTP10SQ 18 OR 18 LF351N 18 FT232RL 18 BC337 18 B 18 27p 18 1N4148DO35-10 18 15p 18 15k 17 BC847 17 560 17 47n 17 200k 16 SE14 16 60R
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Vishay_Diode_Marking.pdf
BYG10M P4SMA100A 100A 100C SMA5J7.5A 5AP 5AP BYG10Y BYG10Y P4SMA110A 110A 110C SMA5J8.0 5AQ 5AQ BYG20D BYG20D P4SMA120A 120A 120C SMA5J8.0A 5AR 5AR BYG20G BYG20G P4SMA130A 130A 130C SMA5J8.5 5AS 5AS BYG20J BYG20J P4SMA150A 150A 150C SMA5J8.5A 5AT 5AT BYG21K BYG21K P4SMA160A 160A 160C SMA5J9.0 5AU 5AU
in „Unbekanntes Bauteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
BYG10M P4SMA100A 100A 100C SMA5J7.5A 5AP 5AP BYG10Y BYG10Y P4SMA110A 110A 110C SMA5J8.0 5AQ 5AQ BYG20D BYG20D P4SMA120A 120A 120C SMA5J8.0A 5AR 5AR BYG20G BYG20G P4SMA130A 130A 130C SMA5J8.5 5AS 5AS BYG20J BYG20J P4SMA150A 150A 150C SMA5J8.5A 5AT 5AT BYG21K BYG21K P4SMA160A 160A 160C SMA5J9.0 5AU 5AU
in „Suche Datenblatt zu S422“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
BYG10M P4SMA100A 100A 100C SMA5J7.5A 5AP 5AP BYG10Y BYG10Y P4SMA110A 110A 110C SMA5J8.0 5AQ 5AQ BYG20D BYG20D P4SMA120A 120A 120C SMA5J8.0A 5AR 5AR BYG20G BYG20G P4SMA130A 130A 130C SMA5J8.5 5AS 5AS BYG20J BYG20J P4SMA150A 150A 150C SMA5J8.5A 5AT 5AT BYG21K BYG21K P4SMA160A 160A 160C SMA5J9.0 5AU 5AU
in „Suche die Bezeichnung eines Bauteils“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
88912_Marking_Diodes_Vishay-061201.pdf
BYG10M P4SMA100A 100A 100C SMA5J7.5A 5AP 5AP BYG10Y BYG10Y P4SMA110A 110A 110C SMA5J8.0 5AQ 5AQ BYG20D BYG20D P4SMA120A 120A 120C SMA5J8.0A 5AR 5AR BYG20G BYG20G P4SMA130A 130A 130C SMA5J8.5 5AS 5AS BYG20J BYG20J P4SMA150A 150A 150C SMA5J8.5A 5AT 5AT BYG21K BYG21K P4SMA160A 160A 160C SMA5J9.0 5AU 5AU
in „Bauteil identifizieren diode, SMC, "G DE 47"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SARA-G3_DataSheet__UBX-13000993_.pdf
and sides views) Parameter Description Typical Tolerance A Module Height [mm] 26.0 (1023.6 mil) +0.20/-0.20 (+7.9/-7.9 mil) B Module Width [mm] 16.0 (629.9 mil) +0.20/-0.20 (+7.9/-7.9 mil) C Module Thickness [mm] 3.0 (118.4 mil) +0.25/-0.15 (+9.8/-5.9 mil) D Horizontal Edge to Lateral Pin Pitch [mm] 2.0 (78.7 mil) +0.20/-0.20 (+7.9/-7.9 mil) E Vertical Edge to Lateral Pin Pitch [mm] 2.5 (98.4 mil) +0.20/-0.20 (+7.9/-7.9 mil) F Edge to Lateral Pin Pitch [mm] 1.05 (41.3 mil) +0.20/-0.20 (+7.9/-7.9 mil) G Lateral Pin to
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
LTC1407CMSE.pdf
Integral Linearity Error (Notes 5, 17) –2 0.25 2 –4 0.5 4 LSB Offset Error (Notes 4, 17) –10 1 10 –20 2 20 LSB Offset Match fromCH0 to CH1 (Note 17) –5 0.5 5 –10 1 10 LSB Gain Error (Notes 4, 17) –30 5 30 –60 10 60 LSB Gain Match fromCH0 to CH1 (Note 17) –5 1 5 –10 2 10 LSB Gain Tempco Internal Reference
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Datei
standard.bjt.txt
MJE=0.43619 MJC=0.30013 TF=1.7028E-11 TR=2.7449n ITF=0.0010549 VTF=0.12571 XTF=0.33814 EG=1.11 VCEO=20 ICRATING=20m MFG=SIEMENS) .MODEL BFS482 NPN(IS=4.8499f ISE=8.4254f ISC=5.9438f XTI=3 BF=84.113 NR=0.54818 IKF=0.14414 IKR=0.039478 XTB=1.5 VAF=21.742 VAR=2.2595 VJE=1.0378 VJC=1.0132 RE=2.1858 RC=1.8159
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1407fa.pdf
Integral Linearity Error (Notes 5, 17) ● –2 ±0.25 2 –4 ±0.5 4 LSB Offset Error (Notes 4, 17) ● –10 ±1 10 –20 ±2 20 LSB Offset Match fromCH0 to CH1 (Note 17) –5 ±0.5 5 –10 ±1 10 LSB Gain Error (Notes 4, 17) ● –30 ±5 30 –60 ±10 60 LSB Gain Match fromCH0 to CH1 (Note 17) –5 ±1 5 –10 ±2 10 LSB Gain Tempco Internal
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PDF
slas242e.pdf
1.5 L –2.0 I 0 128 256 384 512 640 768 896 1024 Input Code Figure 9 FFT vs FREQUENCY 0 AV DD = 3 V –20 DV = 3 V DD –40 fi= 3.5 MHz, –1 dBFS d –60 – F –80 F –100 –120 –140 0 200 400 600 800 1000 1200 1400 1600 1800 2000 1.5 3 4.5 6 7.5 9 0.5 12 3.5 15 f – Frequency – MHz Figure 10 12 POST OFFICE BOX 655
in „Signal für ADC anpassen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pcm1796.pdf
EIAJ, A-weighteS, f = 96 kHz 126 dB EIAJ, A-weighted, f = 192 kHz 126 S (1)Filter condition: THD+N: 20-Hz HPF, 20-kHz AES17 LPF Dynamic range: 20-Hz HPF, 20-kHz AES17 LPF, A-weighted Signal-to-noise ratio: 20-Hz HPF, 20-kHz AES17 LPF, A-weighted Channel separation: 20-Hz HPF, 20-kHz AES17 LPF Analogperformance
in „Audio Signal verdoppeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
Unit Resolution - - - 16 Bits Output Sample Rate, sample - 8 - 96 kHz Fsample Load in= 1kHz B/W = 20Hz→20kHz 48kHz 100kΩ - 95.6 - dB SNR A-Weighted THD+N < 0.1% 48kHz 32Ω - 95.8 - dB 0dBFS input 48kHz 16Ω - 95.6 - dB F C sample Load S R 8kHz 100kΩ - 0.0025 - % 8 6 8kHz 32Ω - 0.0056 - % 4 f = 1kHz 5 in B THD+N B/W = 20Hz→20kHz 8kHz 16Ω - 0.0108 - % G 0dBFS input A 48kHz 100kΩ - 0.0027 - % D a 48kHz 32Ω - 0.0067 - % a 48kHz 16Ω - 0.0122 - % S e Digital Gain Digital Gain Resolution = 1/32 -24 - 21.5 dB e t Analogue Gain
in „A2DP Bluetooth Modul China eBay“ · HF, Funk und Felder ·
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PDF
ADC08L060.pdf
intermodulation products to the power in one of the original frequencies. IMD is usually expressed in dBFS. LSB (LEAST SIGNIFICANT BIT) is the bit that has the where f 1s the RMS power of the fundamental (output) smallest value or weight of all bits. This value is frequency and f 2through f 10are the RMS
in „Digitales Oszi im Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
mini2440/linux-2.6.37.6-patches/linux-2.6.37.6-0005.patch 2011-05-25 21:40:17.000000000 +0200 @@ -0,0 +1,20 @@ +--- /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 20:35:36.635576001 +0200 ++++ /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 21:14:12.755576001 +0200 +@@ -222,6 +222,17 @@ + S3C2410_LCDCON5
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
mini2440/linux-2.6.37.6-patches/linux-2.6.37.6-0005.patch 2011-05-25 21:40:17.000000000 +0200 @@ -0,0 +1,20 @@ +--- /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 20:35:36.635576001 +0200 ++++ /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 21:14:12.755576001 +0200 +@@ -222,6 +222,17 @@ + S3C2410_LCDCON5
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
qcamber-qt6.patch
src/main.cpp b/src/main.cpp index 80a0983..3a41cc7 100644 --- a/src/main.cpp +++ b/src/main.cpp @@ -20,7 +20,7 @@ * Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ -#include <QtGui> +#include <QtWidgets> #include "code39.h" #include "context.h" @@ -30,8 +30,8 @@ int main(int argc,
in „Qt4 -> Qt5/6: scrollbar signal handling“ · Softwareentwicklung ·
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PDF
Vergleichsliste.pdf
2SC2377 2SC2636 ECG16 2SD637 2SD636 2SC2063 2SD1199 ECG17 2SB745 ECG18 2SD638 2SD969 ECG19 2SB910 ECG20 2SD973 2SD1227 ECG21 2SB793 2SB819 ECG22 2SD1293 ECG23 2SC2498 2SC2471 2SC2671 ECG24 2SC2655 ECG25 2SA1020 ECG26 2SC1787 2SC2784 ECG27 2N4277 2N4278 2N4280 2N4281 ECG28 2N1520 2N1522 ECG29 2N5686 ECG30
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
linux-2.6.27.grasshopper.1.patch
unsigned long at32_board_osc_rates[3] = { + [0] = 32768, /* 32.768 kHz on RTC osc */ + [1] = 20000000, /* 20 MHz on osc0 */ + [2] = 12000000, /* 12 MHz on osc1 */ +}; + +/* Initialized by bootloader-specific startup code. */ +struct tag *bootloader_tags __initdata; + +/* Ethernet */ +struct eth_addr { + u8
in „AVR32 grasshopper patch für ATMEL buildroot 2.2.1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Wie_archiviert_ihr_Websites__-_Mikrocontroller.net.html
+RygFgx20Ydnx65eoBYQLgFnGY9uhIcOmKeXsQWUAbRgXiDcOD/K0D34GK0sIPpk7oYir2TpAiG3AslAIHtwGUcIOY3QREJpSJ5qV6D8o36//+Hd06diITKhaOVXIcjH++8pCGUCncK1EMm0CSKZpnawDiKZcIdkHUQywevDdRDJBK+P10FCpqnVr0G4Knvv9KkYB76I6FYdeg8hkV86lBfsWk0l
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PDF
nkat20-21.pdf
-.145 4.7 µH 20 1.2 270 31 7636/472 -.480 -.282 -.188 -.145 6.8 µH 20 1.5 240 25 7636/682 -.480 -.282 -.188 -.145 8.2 µH 20 1.6 225 23 7636/822 -.480 -.282 -.188 -.145 10 µH 35 1.8 190 20 7636/103 -.480 -.282 -.188
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PDF
ATS2503.pdf
......................115 20.2 Precaution against ESD for Semiconductors..........................................................115 20.3 Handling of Unused Input Pins for CMOS ..................................................
in „Hilfe gesucht zum IC "ATS2503"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
All.txt
SOT89 NPN TRANSISTOR 1 T2 PINHD-1X1 1X01 PIN HEADER 1 T2 -NPN-TO225AA TO225AA NPN Transistror 1 T2 BFS20 BFS20 SOT23 1 T2 BD139 BD139 TO126 NPN TRANSISTOR 1 T2 BCR135 NPN_RR-SOT23 SOT23 NPN Digital Transistor 1 T2 BC847BSMD BC847BSMD SOT23 NPN Transistor 1 T2 BC817 BC817 TRANS-2 1 T2 BC808-16-PNP-SOT23
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
AM700_SM.pdf
, typically ±0.05 dB, 50 Hz to10 kHz input frequency below 20 kHz and to <16 V (+26 dBu) for input frequencies from 20 to 80 kHz Amplitude Accuracy (relative to Accuracy at CAL Frequency) (High Bandwidth Mode) 10 Hz to 20 kHz 20 to 70 kHz 70 to 80 kHz Inputs >1
in „Tektronix AM700“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
T200 562R u t ' _ 7 U ZUDV M IIIEI C2008 D 5., U J3To«RH R2279 3ı<92 550 “Z <›¬ 089DK9 e OU R W006 20cıv R07 ›\<= :: R0 R2o3sR2BC \ı R2 9 e n R2 IEIEEI QBBK M 5 20 llCR20 A 5 S R2O7R2 REZOOTB 05% E NÜN fillRl ı\ O u 200V m X =< T: BFRT93 T2003 T4 C2157 C C C C TLOBZ R2u75 c b C200T 5 oc M; N5'“ c2oTT
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PDF
MT6252.pdf
dBm IIP3 3 -order input intercept poinDCS1800 PGA = 0 dB gain. -143 -3 dBm PCS1900 -144 -3 dBm IIP-20 3r-order input intercept poinGSM900 LNA = high gain. -5 dBm -20 °C PCS1900 PGA = 0 dB -5 dBm GSM850 -20 f o r dBm I1dB Input 1 dB compression point DCS1800 PGA = 0dBh gain. e a s -20 dBm GSM8500 Blocker
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT6223C.pdf
CON BSI +00A0h Data part of data register 19 BSI_D19_ DAT BSI +00A4h Control part of data register 20 BSI_D20_CON BSI +00A8h Data part of data register 20 BSI_D20_ DAT BSI +00ACh Control part of data register 21 BSI_D21_CON BSI +00B0h Data part of data register 21 BSI_D21_ DAT BSI +00B4h Control part
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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Datei
config-mod-LK511-mt7623n-BPiR2.txt
CONFIG_SND_CS4281 is not set # CONFIG_SND_CS46XX is not set # CONFIG_SND_CTXFI is not set # CONFIG_SND_DARLA20 is not set # CONFIG_SND_GINA20 is not set # CONFIG_SND_LAYLA20 is not set # CONFIG_SND_DARLA24 is not set # CONFIG_SND_GINA24 is not set # CONFIG_SND_LAYLA24 is not set # CONFIG_SND_MONA is not set #
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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Datei
EMS_Adapter.xml
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Datei
EMS_Adapter.xml
Tnt/D+7eDjRs+dEanC5NVrS2V5PRiHNeZsNt3w2pkP2ICYnD/qYeOaDSXd9hC2Cv3uJ5o2vfVfvkpRWTm5VfKb+eOK98rKJUmkl20+bvHfCBzdkOqMeiUT+9Xm8kiH4t6SeDJk0VjJ+/FlyTOr15hOzGk1GCjKN9oXVYnZhzbT6TXJnMnGPWC7MYuErFKqmpx4fsG1+cciUYvggG10SfIv9myz3kj+Sz/cezW8yjIURy/q+CvlZ8t4Jr6ytRWbtr4hobhuXT1rP5GMcPv3YZ2WtYD7Ll0zorWN77InSfvs1a5RuddsEZD5vg