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OM5610.pdf
kHz; temperature range = 15 to 35 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT FM mono Φlim 3 dB limiting sensitivity V9 11= −3 dB; − 5.5 7.5 V V9 11= 0 dB at FMi> 100 V ΦRF RF sensitivity (S + N)/N = 26 dB − 3.5 5 V S/N signal-to-noise ratio V = 1 mV − 68 − dB FMi L lower audio frequency measured
in „[V] FM Tuner OM5610“ · Markt ·
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Software-Screenshot eines Crystal Ladder Filter Calculators
Crystal Ladder Filter Calculator "DISHAL" Vers. 3.0.2.3 HF Tools by DJ6EV Lm 62 mH fs= 7020.271 kHz Xtal Rm 10 Xtal Qu 273469 3 8 Series Freq. [kHz] 7020 B3db [kHz] 8 FP= 2.14 Display Freq. Span 10db <-> 1dB Filter Type Chebyshev/Butterworth F Ripple
in „Quarzfilterprogramm Dishal3023“ · HF, Funk und Felder · · Screenshots
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PDF
AS183-92LF.pdf
Transmit/receive switches in 802.11 b/g WLAN Bluetooth™ systems Features • IP1dB: +30 dBm typical @ 3 V • IP3: +43 dBm typical @ 3 V • Low insertion loss: 0.3 dB @ 0.9 GHz • Low DC power consumption Figure 1. AS183-92/AS183-92LF Block Diagram • Ultra-miniature, SC-70 (6-pin, 2.00 x 1.25 mm) package (
in „Masseflächen auf Bauteilseite der Platine“ · HF, Funk und Felder ·
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Kalibrierung_Netznachbildung_LISN.pdf
5 Ω) 0,009 – 0,15 MHz 0‐40 dB, mit dem Logarithmus der Frequenz linear ansteigend 0,15 – 30 MHz 40 dB 50 Ω / 50 µH 0,15 – 30 MHz 40 dB 50 Ω / (5 µH + 1 Ω) 0,05 – 3 MHz 0‐40 dB, mit dem Logarithmus der Frequenz linear ansteigend 3 – 108 MHz 40 dB Copyright © METRIX Electromagnetics Ltd. 2010 Seite 4 METRIX
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Ansteuer-IS_UC1698__Vers._1.21_fuer_DEM_240160AFGH-PW___240x160.pdf
Pads Description D ATABUS Bi-directional bus for parallel host interfaces. In serial modes, connect DB[0] to SCK, DB[8] to SDA. BM=1x BM=0x BM=0x BM=00 BM=01 (16-bit) (8-bit) (8-bit) (S8/S8uc) (S9) ID1=0 ID1=1 DB0 D0 D0/D8 D0/D8 SCK SCK DB1 D1 – D1/D9 – – DB2 D2 D1/D9 D2/D10 – – DB3 D3 – D3/D11 – – DB4 D4 D2/D10 D4/D12 – – D0~D15 I/O 16 DB5 D5 – D5/D13 – – DB6 D6 D3/D11 D6/D14 – – DB7 D7 – D7/D15 – – DB8 D8 D4/D12 – SDA SDA DB9 D9 – – – – DB10 D10 D5/D13 – – – DB11 D11 – – – – DB12 D12 D6/D14 – – – DB13 D13 – – 0:S8/1:S8uc 0 DB14 D14 D7
in „LCD DEM240160 mit UC1698 wie Bildspeicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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IgorPlug-USB__AVR__firmware.pdf
--------------- Page: 11 File: USB90S2313.asm 5.4.2003, 18:49:42 1416VendorStringDescriptor: 1417 .db (VendorStringDescriptorEnd-VendorStringDescriptor)*4-2,3 ;dlzka, typ: string deskriptor 1418CopyRight: 1419 .db "Ing. Igor Cesko, Copyright(c) 2003" 1420CopyRightEnd: 1421VendorStringDescriptorEnd: 1422
in „IGORPLUG-USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
--------------- Page: 11 File: USB90S2313.asm 5.4.2003, 18:49:42 1416VendorStringDescriptor: 1417 .db (VendorStringDescriptorEnd-VendorStringDescriptor)*4-2,3 ;dlzka, typ: string deskriptor 1418CopyRight: 1419 .db "Ing. Igor Cesko, Copyright(c) 2003" 1420CopyRightEnd: 1421VendorStringDescriptorEnd: 1422
in „90s2343 als usb ir empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
--------------- Page: 11 File: USB90S2313.asm 5.4.2003, 18:49:42 1416VendorStringDescriptor: 1417 .db (VendorStringDescriptorEnd-VendorStringDescriptor)*4-2,3 ;dlzka, typ: string deskriptor 1418CopyRight: 1419 .db "Ing. Igor Cesko, Copyright(c) 2003" 1420CopyRightEnd: 1421VendorStringDescriptorEnd: 1422
in „Per USB mit ATMega32 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
--------------- Page: 11 File: USB90S2313.asm 5.4.2003, 18:49:42 1416VendorStringDescriptor: 1417 .db (VendorStringDescriptorEnd-VendorStringDescriptor)*4-2,3 ;dlzka, typ: string deskriptor 1418CopyRight: 1419 .db "Ing. Igor Cesko, Copyright(c) 2003" 1420CopyRightEnd: 1421VendorStringDescriptorEnd: 1422
in „Booten auf Knopfdruck mit AT90S23X3“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Ausschnitt.asm.txt
- . . . ;------------------------------------------------------------------------------- menue71: .db " Licht 1 " menue72: .db "--------------------" menue73: .db " An = xx:xx " menue74: .db " Aus = xx:xx " ;-------------------------------------------- menue81: .db " Licht 2 " menue82: .db "--------------------" menue83: .db " An = xx:xx " menue84: .db " Aus = xx:xx " ;--------------------------------------------
in „"komische" Zeichen auf dem LCD“ · Mikrocontroller und Digitale Elektronik ·
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Spektrumanalyse eines Signals
Spike Ref 40.00 dB Div 10.0 Step 20.000000 MHz Atten -- Version 3.9.0 VBW -- Mkr 1: 20.010000 MHz, 26.44 dB Mkr 2: 500.010000 MHz, 27.20 dB Mkr 3: 1.000010 GHz, 26.72 dB Mkr 4: 1.500010 GHz, 25.55 dB Mkr 5: 2.400010 GHz, 20.70 dB 20.00 0.00 -20.00 -40.00 -60.00 Start 10.000000 kHz Center 1.500005 GHz Span 2.999990 GHz Stop 3.000000 GHz 151 pts in 984 ms 30/01/2026 17:23:01 Signal Hound BB60C, Serial: 19304114, Firmware: 8
in „Welcher HF Chip ist da verbaut“ · HF, Funk und Felder · · Oszi-Bilder
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KD035HVFMD057_SPEC_V1.2.pdf
3. Input terminal Pin Assignment NO. SYMBOL DISCRIPTION I/O 1 GND Ground. P 2 IOVCC Supply voltage for IO(1.8-3.3V) P 3 VCI Supply voltage(3.3V). P 4 IM0 IM2 IM1 IM0 Interface type DB Pin in use 0 0 0 DBI Tyb_ 18-bit interface DB17-DB0 5 IM1 0 0 1 DBI Tyb_ 9-bit interface DB8-DB0 0 1 0 DBI Tyb_ 16-bit interface DB15-DB0 I 0 1 1 DBI Tyb_ 8-bit interface DB7-DB0 6 IM2 1 0 1 3-Wire 9 BIT data serial interfSDA SCL CS 1 1 1 4-Wire
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Bildschirmfoto_2026-02-01_um_16.11.33.pdf
first two bytes, and temperature information on the last two bytes. Dummy Byte Odd Even Dummy Byte 1 DB1: 111X 0000 Dummy Byte 2 DB2: 111X 0000 Dummy Byte 3 DB3: rrrr nnnn Dummy Byte 4 DB4: tttt pppp Note: x represents 0 or 1 The sequence 111X0000 111X0000 appears on every frame (exactly every 1124 clock
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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AD623.pdf
94 100 dB G = 100 VCM0Vto3V 105 110 105 110 105 110 dB G = 1000 VCM0Vto3V 105 110 105 110 105 110 dB OUTPUT Output Swing RL= 10 kΩ 0.01 (+VS− 0.01 (+VS)− 0.01 (+VS)− V 0.5 0.5 0.5 RL= 100 kΩ 0.01 (+VS− 0.01 (+
in „PT 100 mit AD623 auswerten möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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From_analog_to_digital_-_p281.pdf
about DNL, such as when performing spectrography, avoid using successive approximation ADCs. Table 3: Some successive approximation converters Type Bits Conv. rate BW SFDR INL DNL Notes AD7476 12 1 MS/s 6.5 MHz 80 dB 1 LSB 0.75 LSB 6-lead SOT23 LTC2356 14 3.5 MS/s 50 MHz 86 dB 0.5 LSB 0.4 LSB 10-lead
in „SNR bei ADCs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Powertip_PE12864LRF-042-H-Q.pdf
Must be connected to VDD 8 /RD Must be connected to VDD 9 DB0 Must be connected to VDD 10 DB1 Must be connected to VDD 11 DB2 Must be connected to VDD 12 DB3 Must be connected to VDD 13 DB4 Must be connected to VDD 14 DB5 Must be connected to VDD 15 DB6(SCL) Serial data input serial clock input 16 DB7(SDA) 17 A Power supply LED backlight(+) 18 K Power supply LED backlight(-) PE12864LRF-042-H-Q (DK) Page13 SAMPLE Ver.01 SPEC Edi.003 2.3 Timing Characteristics PE12864LRF-042-H-Q (DK) Page14 SAMPLE
in „POWERTIP LCD PE12864-003 Anschlussbelegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
.3 f=120Hz, IOUT=20mA, 54 60 - dB Short Circuit Current Limit ISC Fig.1 Tj25 - 1.9 - A Average Temperature T I =5mA Coefficient of Output Voltage CVO Fig.1 OUT - -1.0 - mV/ Dropout Voltage VD Fig.1 Tj25
in „Denon AVR 1509 Spannungsregler und Dionen getauscht, jedoch weiterhin nicht funktionstuechtig“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Lcd.c
WAIT_WHILE_BUSY { while (ReadBusyFlag() & BUSY); } // LCD-Datenpins liegen auf Port 2 // // E RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 // // P2.2 P2.0 P2.1 P7.7 P7.6 P7.5 P7.4 P7.3 P7.2 P7.1 P7.0 // sbit P70 = P7^0; sbit P71 = P7^1; sbit P72 = P7^2; sbit P73 = P7^3; sbit P74 = P7^4; sbit P75 = P7^5; sbit
in „LCD Ansteuerung am C167“ · Mikrocontroller und Digitale Elektronik ·
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cm6206_2_3.pdf
:37 AudioPrecision 10/18/0616:35:25 +0.5 dx=-2.8594kHz dy=-0.279 dB +0.5 dx=-2.8594kHz dy=-0.279 dB +0.4 +0.4 +0.3 +0.3 +0.2 +0.2 d +0.1 d +0.1 B +0.044 B +0.045 r +0 r +0 A A -0.1 -0.1 -0.2 -0.2 -0.234 -0.234 -0.3 -0.3 -0.4 -0.4 -0.5 -0.5 20 50 100 200 500 1k 2k 2.93555k
in „USB Stereo Eingang Mikro oder line-in“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
:37 AudioPrecision 10/18/0616:35:25 +0.5 dx=-2.8594kHz dy=-0.279 dB +0.5 dx=-2.8594kHz dy=-0.279 dB +0.4 +0.4 +0.3 +0.3 +0.2 +0.2 d +0.1 d +0.1 B +0.044 B +0.045 r +0 r +0 A A -0.1 -0.1 -0.2 -0.2 -0.234 -0.234 -0.3 -0.3 -0.4 -0.4 -0.5 -0.5 20 50 100 200 500 1k 2k 2.93555k
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
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PDF
CM6206_Datasheet__v2.3_1_.pdf
:37 AudioPrecision 10/18/0616:35:25 +0.5 dx=-2.8594kHz dy=-0.279 dB +0.5 dx=-2.8594kHz dy=-0.279 dB +0.4 +0.4 +0.3 +0.3 +0.2 +0.2 d +0.1 d +0.1 B +0.044 B +0.045 r +0 r +0 A A -0.1 -0.1 -0.2 -0.2 -0.234 -0.234 -0.3 -0.3 -0.4 -0.4 -0.5 -0.5 20 50 100 200 500 1k 2k 2.93555k
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
User_def_chars.asm
_1: ; Pixel des Charakters ASCII_01 .db 0x00, 0x04, 0x04, 0x1F, 0x04, 0x04, 0x00, 0x00 ; ascii_2: ; Pixel des Charakters ASCII_02 .db 0x1F, 0x1B, 0x1B, 0x00, 0x1B, 0x1B, 0x1F, 0x00 ; ascii_3: ; Pixel des Charakters ASCII_03 .db 0x00, 0x01,
in „Lcd die 1000ste“ · Mikrocontroller und Digitale Elektronik ·
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BK3231Datasheet.pdf
IVDD Current at 0dBm output power mA IVDD Current at 2dBm output power 24 mA Receiver Max Input 1 E-3 BER -20 10 dBm RXSENS 1 E-3 BER sensitivity -88 dBm IIP3 IIP3, Pin=-63 dBm; Punwant=-39 -21 -16 dBm dBm; f0=2f1-f2, f2-f1=3 MHz or 4 MHz or 5 MHz C/ICO Co-channel C/I 11 dB C/I1ST ACS C/I 1MHz 0 dB C/I2ND ACS C/I 2MHz -30 dB C/I3RD ACS C/I 3MHz -40 dB C/I1STI ACS C/I Image channel -9 dB C/I2NDI ACS C/I 1 MHz adjacnet to image -20 dB channel © 2011Beken Corporation Proprietary and Confidential Page 11 of 12 BK3231 v0.1 Table
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Display eines Spektrumanalysators mit Kalibrierungsergebnissen
CALIBRATION RESULTS Level Corr Val [dB] -0.980 PASSED Filter Corr Val [dB] 5kHz/3dB +1.070 PASSED feed forward compensation: DAC Vals: 124 120 PASSED LO Suppression, Level of LO after Supp: -77.244 dBm PASSED IQ Level, Corr Val: Bypass -1.28 dB PASSED IF 6.4MHz -0.89 dB PASSED LC Filter IF 6.4MHz -0.64 dB PASSED XTAL Filter IF 6.4MHz -1.08 dB PASSED IF 6.4MHz -0.25 dB PASSED rel diff NORMAL IF 6.4MHz -0.02 dB PASSED IF 6.4MHz +0.13 dB PASSED Center 1.75 GHz Span 3.5 GHz
in „[V] Konvolut älterer aber hochwertiger Messgeräte“ · Markt · · Fotos
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Datei
sine_values.txt
5c5dc35c", 526 => x"5c809166", 527 => x"5ca35124", 528 => x"5cc60293", 529 => x"5ce8a5ab", 530 => x"5d0b3a69", 531 => x"5d2dc0c6", 532 => x"5d5038be", 533 => x"5d72a24a", 534 => x"5d94fd66", 535 => x"5db74a0d", 536 => x"5dd98838", 537 => x"5dfbb7e3", 538 => x"5e1dd909", 539 => x"5e3feba3", 540 => x"5e61efae
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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tda7375.pdf
Bridge 32 35 W THD Distortion RL = 4 Single Ended, P = 0.1 to 4W 0.02 % O Bridge, O = 0.1 to 10W 0.03 0.3 % CT Cross Talk f = 1KHz Single Ended 70 dB f = 10KHz Single Ended 60 dB f = 1KHz Bridge 55 dB f = 10KHz Bridge 60 dB RIN Input Impedance Single Ended 20 30 K Bridge 10 15 K G Voltage Gain Single Ended 19 20 21 dB V Bridge 25 26 27 dB G V Voltage Gain Match 0.5 dB EIN Input Noise Voltage Rg= 0; ”A” weighted, S.E. Non Inverting Channels 2 V Inverting Channels 5 V Bridge Rg = 0; 22Hz to 22KHz 3.5 V SVR Supply Voltage
in „SCHALTUNGS-problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tda7375.pdf
Bridge 32 35 W THD Distortion RL = 4 Single Ended, P = 0.1 to 4W 0.02 % O Bridge, O = 0.1 to 10W 0.03 0.3 % CT Cross Talk f = 1KHz Single Ended 70 dB f = 10KHz Single Ended 60 dB f = 1KHz Bridge 55 dB f = 10KHz Bridge 60 dB RIN Input Impedance Single Ended 20 30 K Bridge 10 15 K G Voltage Gain Single Ended 19 20 21 dB V Bridge 25 26 27 dB G V Voltage Gain Match 0.5 dB EIN Input Noise Voltage Rg= 0; ”A” weighted, S.E. Non Inverting Channels 2 V Inverting Channels 5 V Bridge Rg = 0; 22Hz to 22KHz 3.5 V SVR Supply Voltage
in „END-VERSTÄRKER probs“ · Analoge Elektronik und Schaltungstechnik ·
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microstrip_filters.pdf
parasitic elements 2. For L2and C o2 L an4 C (fi4ed Ɩ , ƖL1 L2d Ɩ ) L3 where The same method can be applied to L an4 C and4the corrected length are Ɩ = 6L49 mm and Ɩ = 4.24 mm. C4 3. C2 and ƖC4on open end effect Prof. T. L. Wu Example LPF with attenuation poles ➢ Asharp
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PDF
LDO-Spannungsregler_LFxx.pdf
f = 120 Hz 80 IO= 5 mA, V I 5.3 ± 1 V SVR Supply voltage rejection f = 1 kHz 75 dB Ta = 25 °C f = 10 kHz 65 eN Output noise voltage B = 10 Hz to 100 kHz, a = 25 °C 50 µV IO= 200 mA 0.2 1.3 V d Dropout voltage V IO = 500 mA 0.4 1.3
in „Spannungsregelung-/Begrezung 5V.5,5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_PG240128ERS-XYABP1_Display.pdf
LCDremains readable. Note 5: Storage at -20 °C < 48 hr. www.DataSheet4U.com MECHANICAL DIMENSIONS 159.4 3.5 152.4+/-0.3 8.5 142.4 9.5MAX. 5 .9 126.0+/-0.3 (3.0) 0.50*239+0.47=119.97+/-0.1 4.9 EL SEALING AREA 1.5 MAX A1 A20 B1 B10 1.2+/-0.2 +/-0.5 2.54 2.54 4-Æ 3.0 12.0 48.26+/-0.3 (3.5) 22.86+/-0.3 12.0+/-0.5 (3.5) BLOCK DIAGRAM POWER SUPPLY FLM CS CL1 +5V RES R X1 VDD RS L CL2 IC1 64 R/W O 3 E T 6 D1 LCD DB0 N D 240*128 VR VO C H 8 X128 DB7 IC2 64 Y1 Y240 VEE OSC 13 80 80 80 -15V 8 RAM VR: 10~20K Ω IC3 IC4
in „Problem mit Grafikdisplay (Powertip)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMG6401PLGE.pdf
change but the LCDremains readable. Note 5: Storage at -20 °C < 48 hr. MECHANICAL DIMENSIONS 159.4 3.5 152.4+/-0.3 8.5 142.4 9.5MAX. 5 .9 126.0+/-0.3 (3.0) 0.50*239+0.47=119.97+/-0.1 4.9 EL SEALING AREA 1.5 MAX A1 A20 B1 B10 1.2+/-0.2 +/-0.5 2.54 2.54 4-Æ 3.0 12.0 48.26+/-0.3 (3.5) 22.86+/-0.3 12.0+/-0.5 (3.5) BLOCK DIAGRAM POWER SUPPLY FLM CS CL1 +5V RES R X1 VDD RS L CL2 IC1 64 R/W O 3 E T 6 D1 LCD DB0 N D 240*128 VR VO C H 8 X128 DB7 IC2 64 Y1 Y240 VEE OSC 13 80 80 80 -15V 8 RAM VR: 10~20K Ω IC3 IC4
in „[V] Grafikdisplay 240x128“ · Markt ·
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PDF
LMG6401PLGE.pdf
change but the LCDremains readable. Note 5: Storage at -20 °C < 48 hr. MECHANICAL DIMENSIONS 159.4 3.5 152.4+/-0.3 8.5 142.4 9.5MAX. 5 .9 126.0+/-0.3 (3.0) 0.50*239+0.47=119.97+/-0.1 4.9 EL SEALING AREA 1.5 MAX A1 A20 B1 B10 1.2+/-0.2 +/-0.5 2.54 2.54 4-Æ 3.0 12.0 48.26+/-0.3 (3.5) 22.86+/-0.3 12.0+/-0.5 (3.5) BLOCK DIAGRAM POWER SUPPLY FLM CS CL1 +5V RES R X1 VDD RS L CL2 IC1 64 R/W O 3 E T 6 D1 LCD DB0 N D 240*128 VR VO C H 8 X128 DB7 IC2 64 Y1 Y240 VEE OSC 13 80 80 80 -15V 8 RAM VR: 10~20K Ω IC3 IC4
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Datei
lab9a_c180.txt
$C3CC $FF $FF $FF lds LFFFF ;$C3CF $FF $FF $FF lds LFFFF ;$C3D2 $FF $FF $FF lds LFFFF ;$C3D5 $FF $FF $FF lds LFFFF ;$C3D8 $FF $FF $FF lds LFFFF ;$C3DB $FF $FF $FF lds LFFFF ;$C3DE $FF $FF $FF lds LFFFF ;
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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LD1117.pdf
Supply Voltage Rejection IO= 40 mA f = 120Hz TJ= 25°C 60 75 dB Vin 6.3 V Vripple 1 PP V Dropout Voltage I = 100 mA 1 1.1 V d O IO= 500 mA 1.05 1.15 IO= 800 mA 1.10 1.2 Thermal Regulation T = 25°C 30ms Pulse 0.01 0.1 %/W a 6/28 LD1117 SERIES Table 10: Electrical
in „Probleme mit 12 Volt Spannungsversorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ad9833.pdf
is not implied. Operation beyond VDD to DGND −0.3V to +6V the maximum operating conditions for extended periods may AGND to DGND −0.3V to +0.3V affect product reliability. CAP/2.5V 2.75V Digital I/OVoltage to DGND −0.3V toVDD + 0.3V Analog I/OVoltage
in „Aus ca. 0,3V Wechselspannung (Sinus) 15 V Wechselspannung machen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CM6206_Datasheet_v2.1_en.pdf
LFE Out Audio Precision 10/18/06 15:24:37 AudioPrecision 10/18/0616:35:25 dx=-2.8594kHz dy=-0.279 dB dx=-2.8594kHz dy=-0.279 dB +0.5 +0.5 +0.4 +0.4 +0.3 +0.3 +0.2 +0.2 d +0.1 d +0.1 B +0.044 B +0.045 r +0 r +0 A -0.1 A -0.1 -0.2 -0.2 -0.234 -0.234 -0.3 -0.3 -0.4 -0.4 -0.5 -0.5 20 50 100 200 500 1k 2k
in „soundchip mit mehr als stereo“ · Mikrocontroller und Digitale Elektronik ·
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Datei
250422_mcnet_mcrhis_fibonacci_382_80digits.asm
STA 79 ;## CLD ; Clear decimal mode (optional) RTS ; === BCD number: 1234567890 === org $0000 NumA: db $00,$00,$00,$00,$00,$00,$00,$00,$00,$00 ; LSB first db $00,$00,$00,$00,$00,$00,$00,$00,$00,$00 ; LSB first db $00,$00,$00,$00,$00,$00,$00,$00,$00,$00 ; LSB first db $00,$00,$00,$00,$00,$00,$00,$00,$00,$00 ; LSB first NumB: db $00,$00,$00,$00,$00,$00,$00,$00,$00,$00 ; LSB first db $00,$00,$00,$00,$00,$00,$00,$00,$00,$00 ; LSB first db $00,$00,$00,$00,$00,$00,$00,$00,$00,$00 ; LSB first db $00,$00,$00,$00,$00,$00,$00,$00,$00
in „Wettkampf Opa(MOS6502) gegen Frischling(ATmega)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PCM_master.vhd
2937BC5A", 247 => x"2958A9AE", 248 => x"297979FE", 249 => x"299A2D32", 250 => x"29BAC333", 251 => x"29DB3BEB", 252 => x"29FB9742", 253 => x"2A1BD522", 254 => x"2A3BF575", 255 => x"2A5BF823", 256 => x"2A7BDD17", 257 => x"2A9BA439", 258 => x"2ABB4D74", 259 => x"2ADAD8B2", 260 => x"2AFA45DC", 261 => x"2B1994DB
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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Datei
Seriell_out.txt
sjmp START ;------------------------------Zeitschleifen----------------------------- ZTS_100ms: mov r3,#1d LOOP5: mov r2,#194d LOOP6: mov r1,#255d LOOP7: djnz r1,LOOP7 djnz r2,LOOP6 djnz r3,LOOP5 ret ;----------------------------Interruptroutine---------------------------- INT: mov r4,#01h push ACC ;Inhalt
in „FT232R sendet Mist wenn COM aktiviert“ · Mikrocontroller und Digitale Elektronik ·
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Datei
temp_senden.asm
: .db 16,152,46,113,1,8,0,75 ID_Tabelle3: .db 16,37,74,113,1,8,0,8 ID_Tabelle4: .db 16,215,97,113,1,8,0,156 ID_Tabelle5: .db 16,86,244,113,1,8,0,36 ID_Tabelle6: ;.db 16,186,79,123,1,8,0,84 .db 16,51,94,123,1,8,0,153 ID_Tabelle7: .db 16,170,84,123,1,8,0,3 ID_Tabelle8: .db 16,7,41,123,1,8,0,148 ID_Tabelle9: .db 16,185,42,123,1,8,0,206 ID_Tabelle10: .db 16,0,66,123,1,8,0,112
in „DS1820/DS18S20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RGS24128064YW001.pdf
to receive the Write Data signal. RD# 6 I This pin is used to receive the Read Data signal. DB0 7 DB1 8 DB2 9 DB3 10 I/O 8 bit MCU interface DB4 11 DB5 12 DB6 13 DB7 14 CS# 15 I Chip select NC 16 - No connection RES# 17 I Reset NC 18 - No connection NC 19 - No connection DISB 20 I For external
in „Wer hat Infos zum OLED Display RGS24128064YW (Ritek)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
179191-da-01-en-7809_1A.pdf
voltage B =10Hz to 100KHz, T J 25°C 40 µV/VO SVR Supply voltage rejection V I 8 to 18V, f = 120Hz 68 dB Vd Dropout voltage IO= 1A, T J 25°C 2 2.5 V RO Output resistance f = 1 KHz 17 mΩ Isc Short circuit current V I 35V, TJ= 25°C 0.75 1.2 A I Short circuit peak currentT = 25°C 1.3 2.2 3.3 A scp J 1. Load
in „Anfängerfragen zum 7809“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
L7800_ST.pdf
voltage B =10Hz to 100KHz, T J = 25°C 40 µV/VO SVR Supply voltage rejection V I 8 to 18V, f = 120Hz 68 dB Vd Dropout voltage IO= 1A, T J 25°C 2 2.5 V RO Output resistance f = 1 KHz 17 mΩ Isc Short circuit current V I 35V, TJ= 25°C 0.75 1.2 A I Short circuit peak currentT = 25°C 1.3 2.2 3.3 A scp J 1. Load
in „Spannungsversorgung +5v -5v“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad835.pdf
1 V, X = 0 V –60 dB DYNAMIC CHARACTERISTICS –3 dB Small-Signal Bandwidth 150 250 MHz –0.1 dB Gain Flatness Frequency 15 MHz Slew Rate W = –2.5 V to +2.5V 1000 V/ s Differential Gain Error, X f = 3.58 MHz 0.3 % Differential Phase Error, X f = 3.58 MHz 0.2 Degrees Differential Gain Error, Y f = 3.58 MHz 0.1 % Differential Phase Error, Y f = 3.58 MHz 0.1 Degrees Harmonic Distortion X or Y = 10 dBm, 2nd and 3rd Harmonic Fund = 10 MHz –70 dB Fund
in „Verständnisfrage: Multiplikative Mischung und PSK“ · HF, Funk und Felder ·
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PDF
LMC6482.pdf
0.9 2.7 3.7 3.8 max TCV OS Input Offset Voltage Average Drift 2.0 mV/§C I Input Bias Current 0.02 pA B I Input Offset Current 0.01 pA OS CMRR Common Mode 0V s V s 3V 74 64 60 60 dB CM Rejection Ratio min PSRR Power Supply 3V s V a s 15V, V e 0V 80 68 60 60 dB Rejection Ratio min V Input Common-Mode For CMRR t 50 dB Vb b 0.25 0 0 0 V CM Voltage Range max Va a 0.25 Va Va Va V min V Output Swing R e 2 kX to V /2 2.8 V O L
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
0.9 2.7 3.7 3.8 max TCV OS Input Offset Voltage Average Drift 2.0 mV/§C I Input Bias Current 0.02 pA B I Input Offset Current 0.01 pA OS CMRR Common Mode 0V s V s 3V 74 64 60 60 dB CM Rejection Ratio min PSRR Power Supply 3V s V a s 15V, V e 0V 80 68 60 60 dB Rejection Ratio min V Input Common-Mode For CMRR t 50 dB Vb b 0.25 0 0 0 V CM Voltage Range max Va a 0.25 Va Va Va V min V Output Swing R e 2 kX to V /2 2.8 V O L
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
0.9 2.7 3.7 3.8 max TCV OS Input Offset Voltage Average Drift 2.0 mV/§C I Input Bias Current 0.02 pA B I Input Offset Current 0.01 pA OS CMRR Common Mode 0V s V s 3V 74 64 60 60 dB CM Rejection Ratio min PSRR Power Supply 3V s V a s 15V, V e 0V 80 68 60 60 dB Rejection Ratio min V Input Common-Mode For CMRR t 50 dB Vb b 0.25 0 0 0 V CM Voltage Range max Va a 0.25 Va Va Va V min V Output Swing R e 2 kX to V /2 2.8 V O L
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
0.9 2.7 3.7 3.8 max TCV OS Input Offset Voltage Average Drift 2.0 mV/§C I Input Bias Current 0.02 pA B I Input Offset Current 0.01 pA OS CMRR Common Mode 0V s V s 3V 74 64 60 60 dB CM Rejection Ratio min PSRR Power Supply 3V s V a s 15V, V e 0V 80 68 60 60 dB Rejection Ratio min V Input Common-Mode For CMRR t 50 dB Vb b 0.25 0 0 0 V CM Voltage Range max Va a 0.25 Va Va Va V min V Output Swing R e 2 kX to V /2 2.8 V O L
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
0.9 2.7 3.7 3.8 max TCV OS Input Offset Voltage Average Drift 2.0 mV/§C I Input Bias Current 0.02 pA B I Input Offset Current 0.01 pA OS CMRR Common Mode 0V s V s 3V 74 64 60 60 dB CM Rejection Ratio min PSRR Power Supply 3V s V a s 15V, V e 0V 80 68 60 60 dB Rejection Ratio min V Input Common-Mode For CMRR t 50 dB Vb b 0.25 0 0 0 V CM Voltage Range max Va a 0.25 Va Va Va V min V Output Swing R e 2 kX to V /2 2.8 V O L
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
0.9 2.7 3.7 3.8 max TCV OS Input Offset Voltage Average Drift 2.0 mV/§C I Input Bias Current 0.02 pA B I Input Offset Current 0.01 pA OS CMRR Common Mode 0V s V s 3V 74 64 60 60 dB CM Rejection Ratio min PSRR Power Supply 3V s V a s 15V, V e 0V 80 68 60 60 dB Rejection Ratio min V Input Common-Mode For CMRR t 50 dB Vb b 0.25 0 0 0 V CM Voltage Range max Va a 0.25 Va Va Va V min V Output Swing R e 2 kX to V /2 2.8 V O L
in „Suche OVP Schaltung für ideale Diode“ · Mikrocontroller und Digitale Elektronik ·