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PDF
NVC-MDCS46-V1.4.pdf
dual mode module. Its radio contains on class1 board chip antenna and shielding case so ⚫ TX power +17dbm, -90dBm RX as a modular approved design it can be easily integrated into customer’s hardware. sensitivity, onboard chip antenna It has internal audio codec and amplifiers. The ACSII command interface
in „Mini Bluetooth Module mit SPP und AT Command set“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Spektrogramm einer HF-Messung
22:09:58 22:10:00 22:10:01 22:10:04 22:10:06 22:10:08 22:10:09 22:10:11 22:10:12 22:10:16 22:10:17 22:10:19 22:10:20 22:10:22 22:10:23 22:10:25 22:10:27 22:10:29 22:10:30 22:10:32 0 dB 155 160 165 170 175 180 185 190 195 200 205 210 215 220 225 230 235 240 245 250 255 260 265 270 275 280 RF < -20 dBFS
in „Radioantenne für LW“ · HF, Funk und Felder · · Oszi-Bilder
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PDF
doc4688.pdf
suppress noise. An applied field needs a time delay t (battery-to-field switch delay) to change the BFS power supply. If the field is removed from the coil, the power management will generate a reset that can be connected to the microcontroller. Figure 4-3. Switch Conditions for Power Management VCoil V FDonfor t >BFS Battery Field supply supply (VBatt VCoil V FDonfor t >BFS Note: The rectified supply voltage from the coil is limitedDDC (2.9V). During field supply, the battery is switched off and DD changes to VDDC
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM311_Datasheet.pdf
...................................................................................................17 6. ELECTRICAL CHARACTERISTIC...............................................................................................18 6.1 A BSOLUTE M AXIMUM R ATING ..........................................
in „[V] Bluetooth Module 2x BTM411 Class2 und 1xBTM331A“ · Markt ·
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PDF
BF245abc.pdf
function of frequency; typical values. MGE782 MGE783 hag ,ook, halfpage handbook, halfpage 10 fs −bfs (mA/V) gos bos 8 ( A/V) (mA/V) b os 102 1 6 gfs g os 4 10 10−1 2 −bfs 0 1 10−2 2 3 2 3 10 10 f (MHz) 10 10 10 f (MHz) 10 VDS = 15 V; GS= 0; amb = 25 °C. VDS= 15 V; GS = 0; amb= 25 °C. Fig.14 Common-source
in „Welche Steilheit hat ein BF245C?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
enc28j60.c
OPCODE_WCR 0x40 //Write Control Register #define OPCODE_WBM 0x7A //Write Buffer Memory #define OPCODE_BFS 0x80 //Bit Field Set #define OPCODE_BFC 0xA0 //Bit Field Clear #define OPCODE_SRC 0xFF //System Reset Command (Soft Reset) /* Banks */ #define BANK0 0 #define BANK1 1 #define BANK2 2 #define BANK3 3
in „ENC28j60 Initialisierung OK aber keine Verbindung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5558-eight_channel_audio_processor_with_PWM_Output.pdf
– – – Set input automute threshold less than -66dBFS 0 1 0 1 – – – – Set input automute threshold less than -60dBFS 0 1 1 0 – – – – Set input automute threshold less than -54dBFS 1 1 1 1 – – – – Set input automute threshold less than -48dBFS 1 0 0 0 –
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Datei
mcp2515.txt
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 richtig initialisiert?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads8684.pdf
0.2 % FSR A E Offset error At T = 25°C –10 10 mV A O(AUX) A SNR Signal-to-noise ratio V(AUX_IN)–0.5 dBFS at 1 kHz 87 89 dB A THD Total harmonic distortion V(AUX_IN)–0.5 dBFS at 1 kHz –102 dB B SINAD Signal-to-noise + distortion V(AUX_IN)–0.5 dBFS at 1 kHz 86 88.5 dB A SFDR Spurious-free dynamic range V
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD-PHILIPS_1999.pdf
BY328 PH SOD64 BYD13K 13K PH SOD81 BYD13M 13M PH SOD81 BY428 BY428 PH SOD64 BY448 BY448 PH SOD57 BYD17D 17D PH SOD87 BYD17G 17G PH SOD87 BY505 black SOD61A BY527 BY527 PH SOD57 BYD17J 17J PH SOD87 BYD17K 17K PH SOD87 BY584 orange SOD61A BYD17M 17M PH SOD87 BY614 black SOD61H2 BYD31D 31D SOD91 BY8004 violet
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
elv.pdf
SEG26 58 26 e d Q Q Q Q 1 C37 P8.1/SEG25 59 25 n 1 40 P5.0 P8.0/SEG24 60 24 t 8 9 6 5 41 P5.1 SEG23 61 17 42 P5.2 SEG22 62 22 F A 43 SEG21 0 9 2 1 1 Gatetime+ P5.3 SEG20 63 23 7 I 7 I 44 I SEG19 64 20 S H C C H A C C38 45 P6.0/KS0 C SEG18 65 21 S S D 3 4 0 3 46 P6.1/KS1 1 SEG17 66 18 O O 2 0 D A 47 P6.2/
in „Frequenzzähler 1Hz - 40MHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ths4509.pdf
of 10 dB driving the ADS5500 ADC, sampling at 125 MSPS, is 81 dBc SFDR and 69.1 dBc SNR with a –1 dBFS signal at 70 MHz. The THS4509 is offered in a quad, leadless QFN-16 package (RGT), and is characterized for operation over the full industrial temperature range from –40°C to +85°C. Measured 3rd Order
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CS5343-44_F5.pdf
.................................................................................................. 17 7. PACKAGE DIMENSIONS .................................................................................................................... 18 THERMAL CHARACTERISTICS .................................
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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PDF
Datenblatt_THS4531.pdf
SNR THD SINAD SFDR THS4531 + ADS8321 10kHz -0.5 dBFS 87 dBc -96 dBc 87 dBc 100 dBc ADS8321 Data Sheet (typ) 10kHz -0.5 dBFS 87 dBc -86 dBc 84 dBc 86 dBc THS4531 and ADS7945 Combined Performance To show achievable performance with a high performance SAR
in „Symmetrischer Filter, FilterPro, THS4531“ · Analoge Elektronik und Schaltungstechnik ·
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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
AD1974-1501665.pdf
Filter (RMS) 95 102 dB With A-WeightedFilter (RMS) 97 105 dB TotalHarmonicDistortion+Noise(THD+N) −1 dBFS −96 −87 dB Gain Error −10 +10 % Interchannel Gain Mismatch −0.25 +0.25 dB Offset Error −10 0 +10 mV REFERENCE Internal ReferenceVoltage FILTR pin 1.50 V External ReferenceVoltage FILTR pin 1.32 1.50
in „Verwirrende Bauteilbezeichnung Datenblatt (AD1974)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
PHIL_RF.OLB Philips NPN RF Bipolar Transistor BFR95 BFR95/PLP PHIL_RF.OLB Philips NPN RF Bipolar Transistor BFS17 BFS17/PLP PHIL_RF.OLB Philips NPN RF Bipolar Transistor BFS17W BFS17W/PLP PHIL_RF.OLB Philips NPN RF Bipolar Transistor BFS25A BFS25A/PLP PHIL_RF.OLB Philips NPN RF Bipolar Transistor BFS505 BFS505
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
parts.txt
BF314 160 BF324 30 BF362 120 BF379 2 BF414 290 BF440 25 BF450 100 BF457 26 BF459 20 BF506 2 BF679 200 BFS86 13 BFT91 5 BFX59 5 BG237 8 BGY10 2 BLW 8 BLW35 6 BLW36 36 BLW37 17 BLW38 2 BLW54 1 BLW93 2 BLW94 2 BLY78 35 BLY79 8 BLY80 7 BRY50 2 BSV56 1 BSV57 40 BSV77 18 BSX39 350 BSX46 1 BSX59 1 BSX82 2 BSY81
in „[V] Bauteilauflösung Transistoren/Audio+Video IC“ · Markt ·
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Datei
enc28j60.h
ENC_REG_EDMADSTH (0x00 | 0x15) #define ENC_REG_EDMACSL (0x00 | 0x16) #define ENC_REG_EDMACSH (0x00 | 0x17) /* enc registers bank 1 */ #define ENC_REG_EHT0 (0x20 | 0x00) #define ENC_REG_EHT1 (0x20 | 0x01) #define ENC_REG_EHT2 (0x20 | 0x02) #define ENC_REG_EHT3 (0x20 | 0x03) #define ENC_REG_EHT4 (0x20 | 0x04
in „Verzögerung Zündung TRIAC für Phasenanschnitt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
, 44.1kHz, 16bit, 1kHz, 0dBfs, Lchfromserver" 3-16 NET/(Source) Stereo(Direct) Last - - - NET - 48 F Separation "WAV, 44.1kHz, 16bit, 1kHz, 0dBfs, Rchfromserver" 3-17 NET/(Source) Stereo(Direct) Last - - - NET - 48 F "OutputLevel
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
J51 J52 TPC J6 J8 J9 LB603 LB701 LB702 ILKWANG 163 5 5 Pcs LB101 LB102 LB103 LB601 LB704 BFS3550R2F BEAD SAMWHA SER3550050BA SCC BFS3550A0L SAMHWA 164 5 1 Pcs LB703 SEB3550050BA BEAD SCC ST TELECOM LEZHI 165 5 4 Pcs P601 P602 P603 P604 PIN 5.5 * Φ2.3 (right angle in the edge) GT PIN SAMSUNG
in „LG Inverter Kapazitator abgebrannt“ · 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
17 ERXSTH RX Start High Byte (ERXST<12:8>) ---0 0101 17 ERXNDL RX End Low Byte (ERXND<7:0>) 1111 1111 17 ERXNDH RX End High Byte (ERXND<12:8>) ---1 1111 17 ERXRDPTL RX RD Pointer Low Byte (ERXRDPT<7:0>) 1111 1010 17 ERXRDPTH RX RD Pointer High Byte (ERXRDPT<12:8>) ---0 0101 17 ERXWRPTL RX WR Pointer Low Byte (ERXWRPT<7:0>) 0000 0000 17 ERXWRPTH RX WR Pointer High Byte (ERXWRPT<12:8>) ---0 0000 17 EDMASTL DMA Start
in „Webserver mit XC167“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WM8731.pdf
Range (Note 3) DR A-weighted, -60dB 85 95 dB full scale input Total Harmonic Distortion THD 1kHz, 0dBfs -88 -80 dB 1kHz, -3dBfs -92 Power Supply Rejection Ratio PSRR 1kHz 100mVpp 50 dB 20Hz to 20kHz 45 100mVpp DAC channel separation 1kHz, 0dB 100 dB Analogue Line Input to Line Output (Load = 10kΩ. 50pF
in „Deemphasis bei Audio-DAC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_chassis_qfu2.1e_la.pdf
1 2 1 2 1 2 1 2 1 2 1 2 1 E21 1 2 1 2 N11 V16 +3V3-STANDBY 5J04 IJ05 K24 AVDD33_STB AVSS F21 AH11 M17 120R IJ0B 5J0A +3V3 N12 P17 W u 3 0 J24 R12 T17 J 1 2 1 AVSS_STB B14 U12 V17 2 AVDDH n 9 A 120R H28 VDD33_XTAL DAC1 0 J 0 J N13 W17 J L +3V3-STANDBY 5J06 IJ06 AVSSH C14 1 2 1 2 R13 M18 J 0 6 0 6 0 6
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADA4807.pdf
54.............19 Caption, and Figure 40 Caption................................................... 17 Added Figure 46..............................................................................20 Changes to Figure 44 and Figure 47............................................. 18 Added Figure 49 and
in „LTSpice 24.1.9 AD4807-Simulation schlägt fehl“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC224210fc.pdf
Differential Linearity Error Differential Analog Input ● –0.7 ±0.2 0.7 LSB Offset Error (Note 6) ● –17 ±5 17 mV Gain Error External Reference ● –3.5 ±0.7 3.5 %FS 224210fc 2 LTC2242-10 CONVERTER CHARACTERISTICS The l denotes the specifications which apply over the full operating temperature range, otherwise
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
enc28j60.pdf
0>) 1111 1010 17 ERXSTH — — — RX Start High Byte (ERXST<12:8>) ---0 0101 17 ERXNDL RX End Low Byte (ERXND<7:0>) 1111 1111 17 ERXNDH — — — RX End High Byte (ERXND<12:8>) ---1 1111 17 ERXRDPTL RX RD Pointer Low Byte (ERXRDPT<7:0>) 1111 1010 17 ERXRDPTH — — — RX RD Pointer High Byte (ERXRDPT<12:8>) ---0 0101 17 ERXWRPTL RX WR Pointer Low Byte (ERXWRPT<7:0>) 0000 0000 17 ERXWRPTH — — — RX WR Pointer High Byte (ERXWRPT<12:8>) ---0 0000 17 EDMASTL
in „ENC28J60 Resetpin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
surrpressordiode.pdf
22.3 26.9 (+SMBJ15A LM BM 16.7 18.5 1.0 15 1.0 24.6 24.4 (+) SMBJ16 LN LN 17.8 21.8 1.0 16 1.0 20.8 28.8 (+SMBJ16A LP LM 17.8 19.7 1.0 16 1.0 23.1 26.0 (+SMBJ17 LQ LQ 18.9 23.1 1.0 17 1.0 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
in „DC Geräteeingang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WM8731_WM8731L.pdf
Headphone Output 11 15 HPGND Ground Headphone GND 12 16 LOUT Analogue Output Left Channel Line Output 13 17 ROUT Analogue Output Right Channel Line Output 14 18 AVDD Supply Analogue VDD 15 19 AGND Ground Analogue GND 16 20 VMID Analogue Output Mid-rail reference decoupling point 17 21 MICBIAS Analogue Output
in „Altera DE1 Board: Frage zu I2C Bus Adresse vom Audiocodec.“ · FPGA, VHDL & Co. ·
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PDF
MotorolaDatenCD_2000.pdf
GHz mA 5.1–2 dB MHz 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
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PDF
AudioCodec-WM8731_8731L.pdf
Headphone Output 11 15 HPGND Ground Headphone GND 12 16 LOUT Analogue Output Left Channel Line Output 13 17 ROUT Analogue Output Right Channel Line Output 14 18 AVDD Supply Analogue VDD 15 19 AGND Ground Analogue GND 16 20 VMID Analogue Output Mid-rail reference decoupling point 17 21 MICBIAS Analogue Output
in „Elektret-Mikrofon-Verstärker-->Line-In mit assymmetrischer Vers.Sp.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM6206_Datasheet_v2.1_en.pdf
11,String 10 Address = 9 String 13,String 12 Address = 10 String 15,String 14 Address = 11 String 17,String16 Address = 12 String 19,String 18 Address = 13 String 21,String 20 Address = 14 String 23,String 22 Address = 15 Address = 16 Address = 17 Address = 18 Address = 19 Address = 20 {8’dx,MString
in „soundchip mit mehr als stereo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
11,String 10 Address = 9 String 13,String 12 Address = 10 String 15,String 14 Address = 11 String 17,String16 Address = 12 String 19,String 18 Address = 13 String 21,String 20 Address = 14 String 23,String 22 Address = 15 Address = 16 Address = 17 Address = 18 Address = 19 Address = 20 {8’dx,MString
in „USB Stereo Eingang Mikro oder line-in“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
11,String 10 Address = 9 String 13,String 12 Address = 10 String 15,String 14 Address = 11 String 17,String16 Address = 12 String 19,String 18 Address = 13 String 21,String 20 Address = 14 String 23,String 22 Address = 15 Address = 16 Address = 17 Address = 18 Address = 19 Address = 20 {8’dx,MString
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
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PDF
CM6206_Datasheet__v2.3_1_.pdf
11,String 10 Address = 9 String 13,String 12 Address = 10 String 15,String 14 Address = 11 String 17,String16 Address = 12 String 19,String 18 Address = 13 String 21,String 20 Address = 14 String 23,String 22 Address = 15 Address = 16 Address = 17 Address = 18 Address = 19 Address = 20 {8’dx,MString
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ARTA-user-manual.pdf
the button ‘Control panel’ to open the Windows ‘Master Volume’ dialog box, which is shown on Fig. 1.17. 2) Click on menu ‘Options->Property’ and select soundcard channel that will be used for output (playback), as shown in Fig. 1.17. 3) Mute Line In and Mic channels in dialog ‘Master Volume’ (Fig. 1.16
in „Empfehlung für Audio-Meßgeräte gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HS_Systems_Part_2_for_Print_A.pdf
SAMPLING RATE = 76.8MSPS SAMPLING RATE = 76.8MSPS INPUT = 70MHz INPUT = 70MHz NOISE FLOOR = –84.3dBFS NOISE FLOOR = –95dBFS THD = –63.9dBc SFDR = 81.4dBc SFDR = 68.0dBc SNR = 52.8dBFS SNR = 42.1dBFS SFDR Improved by 13.4dB, SNR improved by 10.7dB Note: Measured at maximum gain of 35dB (gain code 255
in „ADCs: Digitale Masse und Oszillator an Analogmasse?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BF245.pdf
halfpage handbook, halfpage −b fs gos bos (mA/V) 8 ( A/V) b (mA/V) os 2 10 1 6 g fs gos 4 10 10 −1 2 −bfs 0 1 10 −2 10 102 103 10 102 103 f (MHz) f (MHz) V = 15 V; V = 0; T = 25 °C. V = 15 V; V = 0; T = 25 °C. DS GS amb DS GS amb Fig.14 Common-source forward transfer admittance Fig.15 Common-source output
in „Vorbereitung auf Klausur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EPCOS_AN_01_Principles_of_SAWR-stabilized_oscillators.pdf
is the same (about 47 nH) C08: 5p6 F SAW resonator: R705 Because of lower TX frequency, transistor BFS17P can be used here. For a transmit frequency of 418 MHz, the values of the components in the oscillator circuit are very similar to those for 433.92 MHz version shown above. A 2p7 F capacitor is used
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PDF
Vishay_Diode_Marking.pdf
TPSMA27A BPP SMAJ160A SP VP SMAJ7.5 AN WN TPSMA30 BQP SMAJ16A BP XP SMAJ7.5A AP WP TPSMA30A BRP SMAJ17 BQ XQ SMAJ70 RN ZN TPSMA33 BSP SMAJ170 SQ VQ SMAJ70A RP ZP TPSMA33A BTP SMAJ170A SR VR SMAJ75 RQ ZQ TPSMA36 BUP SMAJ17A BR XR SMAJ75A RR ZR TPSMA36A BVP SMAJ18 BS XS SMAJ78 RS ZS TPSMA39 BWP SMAJ18A
in „Unbekanntes Bauteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
TPSMA27A BPP SMAJ160A SP VP SMAJ7.5 AN WN TPSMA30 BQP SMAJ16A BP XP SMAJ7.5A AP WP TPSMA30A BRP SMAJ17 BQ XQ SMAJ70 RN ZN TPSMA33 BSP SMAJ170 SQ VQ SMAJ70A RP ZP TPSMA33A BTP SMAJ170A SR VR SMAJ75 RQ ZQ TPSMA36 BUP SMAJ17A BR XR SMAJ75A RR ZR TPSMA36A BVP SMAJ18 BS XS SMAJ78 RS ZS TPSMA39 BWP SMAJ18A
in „Suche Datenblatt zu S422“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
TPSMA27A BPP SMAJ160A SP VP SMAJ7.5 AN WN TPSMA30 BQP SMAJ16A BP XP SMAJ7.5A AP WP TPSMA30A BRP SMAJ17 BQ XQ SMAJ70 RN ZN TPSMA33 BSP SMAJ170 SQ VQ SMAJ70A RP ZP TPSMA33A BTP SMAJ170A SR VR SMAJ75 RQ ZQ TPSMA36 BUP SMAJ17A BR XR SMAJ75A RR ZR TPSMA36A BVP SMAJ18 BS XS SMAJ78 RS ZS TPSMA39 BWP SMAJ18A
in „Suche die Bezeichnung eines Bauteils“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
88912_Marking_Diodes_Vishay-061201.pdf
TPSMA27A BPP SMAJ160A SP VP SMAJ7.5 AN WN TPSMA30 BQP SMAJ16A BP XP SMAJ7.5A AP WP TPSMA30A BRP SMAJ17 BQ XQ SMAJ70 RN ZN TPSMA33 BSP SMAJ170 SQ VQ SMAJ70A RP ZP TPSMA33A BTP SMAJ170A SR VR SMAJ75 RQ ZQ TPSMA36 BUP SMAJ17A BR XR SMAJ75A RR ZR TPSMA36A BVP SMAJ18 BS XS SMAJ78 RS ZS TPSMA39 BWP SMAJ18A
in „Bauteil identifizieren diode, SMC, "G DE 47"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4272_F1.pdf
Passband Ripple. - - ±0.035 dB Stopband. (Note 17) 0.68 - - Fs Stopband Attenuation. -92 - - dB Group Delay. t - 9/Fs - s gd Quad Speed Mode Passband (-0.1 dB). (Note 17) 0 - 0.24 Fs Passband Ripple. - - ±0.035 dB Stopband. (Note 17) 0.78 - - Fs Stopband
in „darf der Chip so warm werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4272.pdf
Passband Ripple. - - ±0.035 dB Stopband. (Note 17) 0.68 - - Fs Stopband Attenuation. -92 - - dB Group Delay. t - 9/Fs - s gd Quad Speed Mode Passband (-0.1 dB). (Note 17) 0 - 0.24 Fs Passband Ripple. - - ±0.035 dB Stopband. (Note 17) 0.78 - - Fs Stopband
in „was ist "ATAPI channel mixing" Warum kein Ausgangssignal?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TAS6424-q1.pdf
......................... 17 13.6 Glossary................................................................ 58 9.2 Functional Block Diagram....................................... 17 9.3 Feature Description........................
in „Eagle lib für TAS6424“ · Platinen ·
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Datei
Devices.txt
TPSTP10SQ 18 MKDSN1,5/2-5,08 18 LF351N 18 FT232RL 18 CPOL-EU085CS-1AR 18 C-EUC0603R 18 AK500/2 18 2N3565 17 TRIM_EU-CA6V 17 TRIM_1234-S64YW 17 SMD-C 17 SE14 17 R-EU_0414/5V 17 AK300/2 16 R-EU_R1210 16 R-EU_M3216 16 CPOL-EUE5-5 16 C-EU102-043X133 16 C-EU025_050-025X075 16 C5/5.5 15 W237-102 15 MA03-2 15 LED
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
CS4344-45-46-48_F1.pdf
Supply Decoupling .................................................................................... 17 4.7 Analog Output and Filtering .......................................................................................................... 17 5. FILTER PLOTS .........................................
in „STA015, CS4344 Platinencheck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5729md.pdf
Size) 24 Clks 24 Clks LRCLK Left Channel Right Channel SCLK SCLK MSB LSB MSB LSB 24-Bit Mode 23 22 17 16 9 8 5 4 3 2 1 0 23 22 17 16 9 8 5 4 3 2 1 20-Bit Mode 19 18 13 12 5 4 1 0 19 18 13 12 5 4 1 0 16-Bit Mode 15 14 9 8 1 0 15 14 9 8 1 0 T0092-01 NOTE: All data presented in 2s-complement form with MSB
in „Leistung und Bitanzahl für Musik via BT“ · Mikrocontroller und Digitale Elektronik ·