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BM77SPP_and_BM79BLETR__Command_Set_v0_96.pdf
, Hsinchu 30077, Taiwan, R.O.C. TEL : 886-3-577-8FAX : 886-3-577-8501 www.issc-tech.com 3. Command Op Code Definition Command Op Auto Manual Type Code Command Return Event Pattern Pattern F Common 0x01 Read_Local_Information Command_Complete 0x02 Reset N/A 0x03 Read_BM77_Status BM77_Status_Report N/A
in „BM77 API für Blauzahn - Modul - Microchip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BM77_v1.4_Host_MCU_Programming_Guide_v0.6.pdf
Opened 31 2 3 34 35 31 32 33 34 35 UART Protocol UART Packet Format • LENGTH: Data length includes OP Code and OP code PARAM • Check SUM Rule : Summation of every byte after SINC WORD (LENGTH, OP Code, OP Code PARAM, CHK SUM) is 0x0100 HEAD MID DATA CRC START LENGTH COM/Event.ID COM/Event PARAM CHKSUM
in „BM77 API für Blauzahn - Modul - Microchip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AAN_105-03__Designing_a_Potentiostatic_Circuit_.pdf
large capacitance, so significant currents can flow for small potential shifts, so ensure that your op amp has a low offset voltage, certainly less than 1 mV and preferably less than 100µV; also check the op amp offset voltage at the maximum usage temperature. Typically, for an oxidisable gas (such as
in „Suche Schadgas Sensoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W77E058Aj.pdf
(op-code A5H), which helps in improving programming flexibility for the user. Power Management Like the standard 80C52, the W77E058 also has IDLE and POWER DOWN modes of operation. The W77E058 provides a
in „[V] 12St. 8051er- NUVOTON / WINBOND PLCC44 ( 2UARTS u. 4 clocks/machine cycle- 40MHz)“ · Markt ·
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Schaltplan einer Verstärkerschaltung
Q1 bd241c R1 20 R7 0.22 V+ Last 4A C3 100µ R14 10 C4 10m I2 50m R8 10k D1 1N4148 C1 100p U1 1N4148 OP77 Vi AC {u(-prb)} AC {u(prb)} Testpunkt V1 4 R12 10k D2 1N4148 R10 1k R11 100k R9 1k C2 1n V4 50 Rser=0.1 I1 4m V+ .lib NE5532.sub .include TL081.301 .include UA741.301 .ac dec 100 0.10 100Meg .step
in „Netzteil-Regelung Stabilitätsanalyse "Loop Gain"“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
3260.pdf
and Test Conditions Test Length Samples Comments Biased Humidity (HAST) TA= 130°C, RH = 85% 50 hrs 77 VCC = VOUT = 5 V High-Temperature JESD22-A108, 408 hrs 77 VCC = 24 V, Operating Life (HTOL) TA= 150°C, TJ≤ 165°C VOUT = 20 V Accelerated HTOL TA= 175°C, TJ= 190°C 504 hrs 77 VCC = 24 V, VOUT = 20 V Autoclave, Unbiased JESD22-A102, Condition C, 96 hrs 77 TA= 121°C, 15 psig High-Temperature MIL-STD-883, Method 1008, 1000 hrs 77 (Bake) Storage Life TA= 170°C Temperature Cycle MIL-STD-883, Method 1010, 500 cycles 77 -65°C to +150°C Latch-Up — Pre/Post 6
in „Schaltnetzteil TNY Ersatztyp Kompatibel ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LOG_T77K_Pb_free.pdf
backlighting, etc.) Anzeigen im Innen- und Aussenbereich displays in- and outdoor 2004-12-17 1 LOG T77K Bestellinformation Ordering Information Typ Emissionsfarbe Lichtstärke 1) Seite 15 1) page 15 Type Color of Emission Luminous Intensity IF= 2 mA I (mcd) V orange green LOG T77K orange / green 4.5 …
in „TOPLED Suche“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
block-cordic.asm
, DW_AT_location[DW_OP_regx 0x46] $C$DW$77 .dwtag DW_TAG_TI_assign_register, DW_AT_name("ISR") .dwattr $C$DW$77, DW_AT_location[DW_OP_regx 0x47] $C$DW$78 .dwtag DW_TAG_TI_assign_register, DW_AT_name("ICR") .dwattr $C$DW$78
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
harman_kardon_avr507_sm.pdf
-77 D583 HVD1SS133MT DIODE 1SS133T-77 D584 HVD1SS133MT DIODE 1SS133T-77 D585 HVD1SS133MT DIODE 1SS133T-77 D601 HVD1SS133MT DIODE 1SS133T-77 D801 HVD1SS133MT DIODE 1SS133T-77 D802 HVD1SS133MT DIODE 1SS133T-77 D803 HVD1SS133MT DIODE 1SS133T-77 D804 HVD1SS133MT DIODE 1SS133T-77 D901 KVD1N4003ST DIODE 1N4003 D902 HVD1SS133MT DIODE 1SS133T-77 D911 HVD1SS133MT DIODE 1SS133T-77 D912 HVD1SS133MT DIODE 1SS133T-77
in „Harman Kardon geht nicht an (hängt im Standby fest)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MD_NMRA_DCC.h
DCC_Accesory_Decoder && DCC_Sound_Decoder) #error "Not possible to make Sound and Accesoir Decoder!" #endif enum _op_mode //represents byte after adress { OP_DecoderConsistControl=0, OP_AdvancedControl, OP_Speed_Back, OP_Speed_Front, OP_FunctionsF0_F4, OP_FunctionsF5_F12, OP_FutureExpansion, OP_CV_PROG }; enum _op_mode_advanced { OP_ADV_128 = 0x1F, OP_ADV_RestrSpeedStep = 0x1E, OP_ADV_Analog_Group = 0x1D }; enum _op_future_expansion { OP_FE_BS_CTR_LONG = 0x00, //binary state OP_FE_BS_CTR_SHORT = 0x1D, //binary state7 OP_FE_F13_F20
in „FULL NMRA DCC Library, Encoder, Generator, Bremsmodul“ · Projekte & Code ·
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PDF
DS1821.pdf
FA# INFANT LIFE 9741 125C, 7.0 VOLTS 48 HRS 237 0 HIGH VOLTAGE LIFE 9741 125C, 7.0 VOLTS 1000 HRS 77 0 INFANT LIFE 9746 125C, 7.0 VOLTS 48 HRS 230 0 HIGH VOLTAGE LIFE 9746 125C, 7.0 VOLTS 1000 HRS 77 0 HIGH VOLTAGE LIFE 0111 125C, 7.0 VOLTS 1000 HRS 80 0 HIGH VOLTAGE LIFE 0147 125C, 7.0 VOLTS 1000 HRS
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PDF
en.DM00096551.pdf
Low High 0.16 * Vcc < Vout2 < 0.84 * Vcc High High Low Vout2 > 0.84 * Vcc Low High High 3.4 The best op-amp for each architectural stage The schematics show that a quad op-amp is a good choice for the current application: one op-amp for stage 1, a second op-amp for stage 2 and two additional op-amps for
in „D203S PIR mit ATMega 328 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MD_NMRA_DCC.c
return (uint32_t)((decoder.dcc.RX[decoder.dcc.operation_instr_pos] & 0x0F) << 9); } else if (DCC_GET_OP_MODE == OP_FutureExpansion) { if (DCC_GET_SUP_OP_MODE == OP_FE_F13_F20) return (uint32_t)((uint32_t)decoder.dcc.RX[decoder.dcc.operation_instr_pos + 1] << 13); else if (DCC_GET_SUP_OP_MODE == OP_FE_F21
in „FULL NMRA DCC Library, Encoder, Generator, Bremsmodul“ · Projekte & Code ·
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PDF
en.DM00133498-1.pdf
1 45.5 61.3 77.5 0.1 65.5 81.3 97.5 In Table 2 we can see that the 3-op amp instrumentation amplifier offers a better CMRR. Moreover, it has a high input impedance thanks to the op amps in the first stage. However,
in „Differenzverstärker Abweichung von mehreren mV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
an4586-signal-conditioning-differential-to-singleended-amplification-stmicroelectronics.pdf
1 45.5 61.3 77.5 0.1 65.5 81.3 97.5 In Table 2 we can see that the 3-op amp instrumentation amplifier offers a better CMRR. Moreover, it has a high input impedance thanks to the op amps in the first stage. However,
in „Frage zu Instrumentenverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDS_RS-5V.pdf
load. Contact voltage Contact current Contact protection circuit Operating speed Expected life, min. op. 6 V DC 232 mA 0.2 F + 1k or diode 2 op./s 3×10 7 7 12 V DC 106 mA 0.2 F + 1k or diode 2 op./s 3×10 24 V DC 54 mA 0.1 F + 1k or diode 2 op./s 3×10 7 7 100 V DC 15 mA 0.1 F + 1k or diode 2 op./s 2×10 24 V DC 80 mA 0.2 F + 1k 2 op./s 3×10 7 100 V DC 20 mA 0.1 F + 1k or varistor 2 op./s 2×10 7 7 200 V DC 10 mA 0.1 F + 1k 2 op./s 2×10 (Notes) 1. When inrush current occurs in the capacitor load circuit or incandescent lamp load circuit
in „[S] Reed-Kontakt "NC"“ · Markt ·
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PDF
SDS-R-Relais.pdf
load. Contact voltage Contact current Contact protection circuit Operating speed Expected life, min. op. 6 V DC 232 mA 0.2 F + 1k or diode 2 op./s 3×10 7 7 12 V DC 106 mA 0.2 F + 1k or diode 2 op./s 3×10 24 V DC 54 mA 0.1 F + 1k or diode 2 op./s 3×10 7 7 100 V DC 15 mA 0.1 F + 1k or diode 2 op./s 2×10 24 V DC 80 mA 0.2 F + 1k 2 op./s 3×10 7 100 V DC 20 mA 0.1 F + 1k or varistor 2 op./s 2×10 7 7 200 V DC 10 mA 0.1 F + 1k 2 op./s 2×10 (Notes) 1. When inrush current occurs in the capacitor load circuit or incandescent lamp load circuit
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PDF
IL300app.pdf
photoconductive isolation amplifier with tracking reference +Vcc 3 + 7 0.1V 470Ω 6 1 IL300 8 90K 10K OP77 Gain Adjust +Vcc 1V 2 - 4 2 K2 7 Vin 900K K1 7.5K 5K -Vcc 20pF +Vcc 3 6 10V -Vcc 9M 4 5 4 10K -Vcc IP1 IP2 100V 2 - OP77 6 + 3 7 0 - 100 mV Output +Vcc -Vcc +Vref2 220pF 4 IP2 IP1 + 5 4 +Vref1 3 -Vcc 6 3 +Vcc 10K OP77 4.7K 4 - 2 6 Vcc K1 - 7 K2 2 OP77 7 2 6 Vcc +Vcc 1 470Ω + 5K 8 IL300 7 3 73.2K +Vcc Zero Adjust 1K Tracking Reference Appnote 50 11–12 Differential Photoconductive Isolation Amplifier is accomplished
in „Grüne LED leuchtet schon bei ca 10 uA?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hauptplatine.pdf
SCL VCC PIU203 100nF L7805CV 100nF PIY202 PIY201 PIU201SDA VBAT PIU202X1 PIU207 32kHz X2 SQW/OUT 0 P7OP7 12 10 PIU204 BT1T1 PIP701 GND C11 C12 GND Battery POT4 PIP702 1 10 Cap 10 Cap DS1307 T4 2 P2P 12.5pF 12.5pF 02 Taster P6OP6 PIP208010 9 PIP207 VCC PIP601 GND PIP206 8 7 PIP205 PIP602 1 VCC PIP204 6
in „AVR Wecker mit Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl431.pdf
SOT-23 DBV 5 3000 178.0 9.0 3.23 3.17 1.37 4.0 8.0 Q3 TL432ACDBZR SOT-23 DBZ 3 3000 180.0 8.4 3.15 2.77 1.22 4.0 8.0 Q3 TL432ACDBZT SOT-23 DBZ 3 250 180.0 8.4 3.15 2.77 1.22 4.0 8.0 Q3 TL432AIDBVR SOT-23 DBV 5 3000 178.0 9.0 3.23 3.17 1.37 4.0 8.0 Q3 TL432AIDBZR SOT-23 DBZ 3 3000 180.0 8.4 3.15 2.77 1.22
in „Analogeingang: Problem bei Überlast“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT8870d.pdf
0.356) 0.022 (0.558) 0.014 (0.356) 0.022 (0.558) 0.014 (0.356) 0.022 (0.558) b 2 0.045 (1.14) 0.070 (1.77) 0.045 (1.14) 0.070 (1.77) 0.045 (1.14) 0.070 (1.77) 0.045 (1.14) 0.070 (1.77) 0.008 0.014 (0.356) 0.008 (0.203) 0.014(0.356) 0.008 (0.203) 0.014 (0.356) 0.008 (0.203) 0.014 (0.356) C (0.203) D 0.355
in „MT8870 (DTMF Encoder) an eine Telefonleitung anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt8870.pdf
0.356) 0.022 (0.558) 0.014 (0.356) 0.022 (0.558) 0.014 (0.356) 0.022 (0.558) b 2 0.045 (1.14) 0.070 (1.77) 0.045 (1.14) 0.070 (1.77) 0.045 (1.14) 0.070 (1.77) 0.045 (1.14) 0.070 (1.77) 0.008 0.014 (0.356) 0.008 (0.203) 0.014(0.356) 0.008 (0.203) 0.014 (0.356) 0.008 (0.203) 0.014 (0.356) C (0.203) D 0.355
in „DTMF Tonwahlfrequenzen mit dem MT8870 wie funktioniert das ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
2N3642 70403642 3642 BACKSTAGE 30 (LIMITER) TO-126 TRANSISTOR SJE-5331 SJE-360, SJE-5919 MJE-243 CASE 77 70405331 LEAD CONFIG. MAY DIFFER SJE-5332 SJE-5920, FT-417B MJE-253, MJE-15029 70405332 LEAD CONFIG. MAY DIFFER MJE-243/4 SJE-5331 MJE-243, CASE 77 70405331 + & - 42 VOLT RAILS ONLY M-10049 SJE-5331 70405331 SEE ABOVE. MJE-253/4 SJE-5332 CASE 77 70405332 SEE ABOVE. SJE-5986 SJE-5332 CASE 77 70405332 SEE ABOVE. SJE-7036 SJE-5332 CASE 77 70405332 SEE ABOVE. SJE-360 SJE-5331 SEE ABOVE 70405331 SJE-6018 355-1 MJE-340, SJE-3517 70406018 SJE-6019
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_CrossRef_2010.pdf
2N3642 70403642 3642 BACKSTAGE 30 (LIMITER) TO-126 TRANSISTOR SJE-5331 SJE-360, SJE-5919 MJE-243 CASE 77 70405331 LEAD CONFIG. MAY DIFFER SJE-5332 SJE-5920, FT-417B MJE-253, MJE-15029 70405332 LEAD CONFIG. MAY DIFFER MJE-243/4 SJE-5331 MJE-243, CASE 77 70405331 + & - 42 VOLT RAILS ONLY M-10049 SJE-5331 70405331 SEE ABOVE. MJE-253/4 SJE-5332 CASE 77 70405332 SEE ABOVE. SJE-5986 SJE-5332 CASE 77 70405332 SEE ABOVE. SJE-7036 SJE-5332 CASE 77 70405332 SEE ABOVE. SJE-360 SJE-5331 SEE ABOVE 70405331 SJE-6018 355-1 MJE-340, SJE-3517 70406018 SJE-6019
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Disassembler8048_mc1981.pdf
DISASSEMBLER 110 A$="0123456789ABCDEF" 120 DIM H$(15):FOR I=1 TO 16:H$(I-1)=MID$(A$,I,1):NEXT:GOTO 630 130 OP$=H$(INT(OP/16))+H$(OP-16*INT(OP/16)) 140 RETURN 150 DATA 00,NOP,02,"OUTL BUS/A",05/EN I,07,DEC A 160 DATA 08,"INS A,BUS"09,"IN A,P1",OA,"IN A,P2" OC 170 DATA "MOVD A,P4fl,OD,flMOVD A/P5"/OE/"MOVD A,P6
in „80C48 MCS48 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
, op_NEG, store_nop ;74 ;NEG instr fetch_nop, op_retn, store_nop ;75 ;RETN instr fetch_nop, op_IM1, store_nop ;76 ;IM 1 instr fetch_nop, op_nop, store_nop ;77 ;NOP instr fetch_C, op_IN, store_A ;78 ;IN A,
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Frequenzgang-Diagramm mit Magnitude und Phase
120dB 100dB 80dB 60dB 40dB 20dB 0dB -20dB -40dB -60dB -80dB -100dB 100Hz 1kHz 10kHz 100kHz 1MHz 10MHz Test_Netzteil2_DAC.asc Cursor 1: Freq: 425.028MHz Mag: -105.879dB Phase: -176.091° Cursor 2: Freq: 485.417MHz Mag: -N/A Phase: -N/A Group Delay: -N/A
in „Netzteil-Regelung Stabilitätsanalyse "Loop Gain"“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
MAX4249-MAX4257.pdf
temperature 75 100 dB MAX4250AAUK 72 R L= 10k to DD/2; E temperature 80 116 V OUT= 25mV to VDD MAX4250AAUK 77 – 4.97V Large-Signal Voltage Gain A V dB R L= 1k to DD/2; E temperature 80 112 V OUT= 150V to DD – 4.75V MAX4250AAUK 77 E 8 25 VDD - OH A 30 Output Voltage Swing VOUT |VIN+- VIN- 10mV; mV R L 10k to
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PDF
Platinfuch_IIa_BOM_20210217.pdf
X7R Digi-Key 1276-1292-2-ND 0.078 0.466 C21, C26, C28, C31, C32, C33, 7 18 C34, C38, C39, C57, C61, C77, Capacitor 0805 100nF / 50V / X7R Farnell 175-9265 0.009 0.160 C79, C80, C81, C83, C112, C113 8 2 C22, C23 Capacitor 0805 150pF / 50V / NPO Farnell 175-9205 0.012 0.024 C27, C76, C78, C98, C99, 9 15
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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PDF
TL770x.pdf
Software Community TL7702A,TL7705A,TL7709A,TL7712A,TL7715A SLVS028K –APRIL 1983–REVISED SEPTEMBER 2016 TL77xxASupply-VoltageSupervisors 1 Features 3 Description • Power-On Reset Generator The TL77xxA family of integrated-circuit supply- voltage supervisors is designed specifically for use as • Automatic Reset
in „Atmega16 Flash leergeröntgt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
projekt_snt.pdf
U 98,2V ZK_max AV DR t 7µs I = I * EIN_ mi= 6,77A* =5,07A (bei UZK_max= 325V AV Primär_eff _ U_maxPrimär_max T 12,5µs RMS tEIN_max 11,5µs IPrimär_eff _ U_minIPrimär_max = 6,77A* = 6,49A RMS (bei UZK_min= 213V AV T 12,5µs 2 P VD = IPrimär_eff*R DS_On
in „2kW Gleichstromleistung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP196_296_496_empfehlung_aus_AAN_105-03_.pdf
the 0°C to 125°C temperature range. V+ 4 OP496 11 V– 3 +IN A 12 +IN D The single OP196 and the dual OP296 are available in 8-lead +IN B 5 10 +IN C V+ 4 OP496 11 V– SO-8 surface mount packages. The dual OP296 is available in –IN B 6 9 –IN C OUT
in „OPV: Invertierer mit dual Supply?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Z80int-jmp.asm
;77 ;LD (HL),A instr fetch_B, op_nop, store_A ;78 ;LD A,B instr fetch_C, op_nop, store_A ;79 ;LD A,C instr fetch_D, op_nop, store_A ;7A ;LD A,D instr fetch_E, op_nop, store_A ;7B ;LD A,E instr fetch_H, op_nop
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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gh_usb_rev_a1.pdf
PIR502PIR501 NLD P I U 2 D66 H H_DP1 P I U 2 0 5 1 C8C8 C9C9 440068-1 1M COU1 3 D3 D12 38 U1B D8D P I 9 2 D77 47 C122pFI1 22pF 1 COJ2 I/OP I2U 1 0D4 D13 P I37 1 I/O 8 D9D P I10 2 D89 2 H_PSW2_N P 52U 2 0 4 7 R6R622R PI2201VBUS C10C10 I/OP I1U 1 0D5 D14 P I36 1 I/O 7 NLD10 P I11 2 D91 0 S H_DM2 P 53U 2 0 5 2
in „Grasshopper und USB-Host“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1152_Achieving_Higher_ADC_Resolution.pdf
analog signal is sinusoidal L F 0.707, then SNR Q is given by Equation 3. EQUATION 3: SNR = 6.02N + 4.77 – 3 = 6.02N + 1.77[dB] Q–MAX From Equation 3, it is clear that the improvement in the SNR of the ADC is 6.02 dB per bit. The higher the num- ber of bits associated with the ADC, the higher the SNR Q.
in „Berechnung zur Auflösung ADC - wie richtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM358_Messungen.pdf
LM358 als Operationsverstärker für Strommessung OpAmp LM358 mit einem Shunt von 1 Ω in einem Schaltkreis mit 5,18 V Spannung. Als Opera- tionsschaltung wird ein nichtinvertierender Verstärker verwendet mit 4,66 kΩ und einem 979 Ω Widerstand und somit einem Verstärkungsfaktor von 5,76. Alles mit Multimeter gemessen. R I Shunt mA/Shunt mV Op-Ausgang OP/Shunt U U / I 10 Ω 342,00 mA 385,00 mV 1,126 Ω 2.253,00 mV 5,85 x 4,46 V 13,04 Ω 18 Ω 226,00 mA 246,00 mV 1,088 Ω 1.461,00 mV 5,94 x 4,73 V 20,93 Ω 23 Ω 175,00 mA 183,60 mV 1,049 Ω 1.072,00
in „Anomalien beim Strommessen mit LM358 und Shunt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HF32FV-G.PDF
N[r5 Eicf N[r5 mqcn]bcha ]oll_hn 87C ?C Wifn[a_ WFE WFE Wifn[a_ S_mcmn[h]_ N[r5 mqcn]bcha jiq_l 9<77WC6:77X 9777WC69;7X WFE g[r5 81 gch581 WFE2 91 N_]b[hc][f _h^ol[h]_ 8 r 87PQT : 959< 758< :5@ 97 r 08 87-1 < 8 r 87PQT 087C 9<7WCE S_mcmncp_ fi[^3 < :5>< 759< =5< << r 08 87-1 Tn[h^[l^ ; [n liig n_gj53
in „Defekte Pumpe (Elektronik)“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Frequenzgang-Diagramm mit Amplituden- und Phasenverlauf
140dB 100mHz 1Hz 10Hz 100Hz 1kHz 10kHz 100kHz 1MHz 10MHz 0° -20° -40° -60° -80° -100° -120° -140° -160° -180° -200° -220° -240° -260° -280° -300° -320° -340° -360°
in „Netzteil-Regelung Stabilitätsanalyse "Loop Gain"“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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Datei
rechner.vhdl
'; ausgabe(19 downto 0) <= x"00000"; zustand <= ZAHL21; when others => zustand <= ERROR; end case; OP_typed <= '0'; elsif(OP_typed='0') then if(usignal(4) ='1') then case usignal(3 downto 0) is when "0000" => OP_typed <='1'; zustand <= OP; when "0001" => OP_typed <='1'; zustand <= OP; when "0011" => OP_typed <='1'; zustand <= OP; when "0101" => OP_typed <='1'; zustand <= OP; when "0110" => OP_typed <='1'; zustand <= OP; when "0100" => vorzeichen <= '0'; wert1(15 downto 0) <= x"0000"; wert2(15 downto
in „Process wird kontinuierlich durchloffen - Altium LiveDesign Board“ · FPGA, VHDL & Co. ·
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PDF
bltn_eng_pir-1075997.pdf
max. Ambient temperature = 25°C 77°F Output current (When detecting) Iout 100µA max. 100µA max. Vout Vdd-0.5V Operating voltage 5V (VZ) 3V (WL) Ambient temperature = 25°C 77°F Output voltage (When detecting) Vout Vdd-0.5VDC min. Vdd-0.5VDC
in „Frage zu PaPIR / Panasonic PIR Sensor Schaltung (S.9)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mtd_dataflash.c
0x81 #define OP_ERASE_BLOCK 0x50 /* move data between buffer and flash */ #define OP_TRANSFER_BUF1 0x53 #define OP_TRANSFER_BUF2 0x55 #define OP_MREAD_BUFFER1 0xD4 #define OP_MREAD_BUFFER2 0xD6 #define OP_MWERASE_BUFFER1
in „Probleme mit Atmel DataFlash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E3634ser.pdf
sMP LOWWNOISw SINyLw h PIN Zaedb OPWbgyS Ubi ahbfWahaa c Iu OP sMP LOWWtIsSWzWIMPv vUsL h PIN Zaedb TLZgbsuv UcZ ahbfWafbb c Iu OP sMP LOWWtIsSWzWIMPv QUsv ad PIN Zaedb TLZgduv Uca ahbfWbdbZ c Iu OP sMP LP vUsL h PIN PLsTuWSOIu Zaedb svgZfZZbJR Ucb ahbZWdcdf a Iu
in „0-30V 25A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
todo_table_macro.txt
do_fetch_H ; 74 ; LD (HL),H intr do_store_MHL , do_nop , do_fetch_L ; 75 ; LD (HL),L intr do_nop , do_op_INV , do_nop ; 76 ; HALT intr do_store_MHL , do_nop , do_fetch_A ; 77 ; LD (HL),A intr do_store_A , do_nop , do_fetch_B ; 78 ; LD A,B intr do_store_A , do_nop , do_fetch_C ; 79 ; LD A,C intr do_store_A
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
todo_table_macro_A.txt
do_store_MHL ; 74 ; LD (HL),H intr do_fetch_L , do_nop , do_store_MHL ; 75 ; LD (HL),L intr do_nop , do_op_INV , do_nop ; 76 ; HALT intr do_fetch_A , do_nop , do_store_MHL ; 77 ; LD (HL),A intr do_fetch_B , do_nop , do_store_A ; 78 ; LD A,B intr do_fetch_C , do_nop , do_store_A ; 79 ; LD A,C intr do_fetch_D
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mmc_spi.txt
=0x00;CMD[3]=0x00;CMD[4]=0x00;CMD[5]=0x95; cmd_befehl(CMD,1); return(mmc_control); } void app_send_op_cond(void) //ACMD41=CMD55 + CMD41 nur für SD-Karten { unsigned char mmc_temp; mms_count=0; do { mms_count++; CMD[0]=0x77;CMD[1]=0x00;CMD[2]=0x00;CMD[3]=0x00;CMD[4]=0x00;CMD[5]=0xFF; //CMD55 //140208
in „MMC / SD mit SPI und PIC. MMC ja, SD nein.“ · Mikrocontroller und Digitale Elektronik ·
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vers_13.pdf
Bild 2). Die Senderleistung beträgt 50 kW, die abge- strahlte Leistung liegt bei etwa 30 kW. Die DCF77-Zeitsignale werden am Sendeort Mainflingen bei Frankfurt am Main von Atomuhren der PTB abgeleitet und von der PTB Braunschweig aus kontrolliert. Die Trägerfrequenz 77,5 kHz von DCF77 ist eine hochstabile
in „Strecke mainflingen Köln simulieren“ · HF, Funk und Felder ·
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DA6180D_003.pdf
using about 3 Hz higher frequency crystal than the received time signal frequency. For example, in DCF77 application a 77.503 kHz crystal resonates at the desired DCF77 77.500 kHz frequency when the load capacitor is missing. Table 1. Time-Signal System Frequencies Time-Signal System Location Antenna Frequency Recommended Crystal Frequency DCF77 Germany 77.5 kHz 77.503 kHz HGB Switzerland 75 kHz 75.003 kHz MSF United Kingdom 60 kHz 60.003 kHz WWVB USA 60 kHz 60.003 kHz JJY Japan 40 kHz and 60 kHz 40.003 kHz and 60.003 kHz BPC China 68.5 kHz
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Yaskawa-SGDB-xxADx-x-TSE-S800-16E.pdf
indicated by this icon explains the operating procedure using hand-held type digital operator (Type: JUSP-OP02A-1). JUSP-OP02A-1 The text indicated by this icon explains the operating procedure using mount type digital operator (Type: JUSP-OP03A). NOTE A Σ-Series Servodrive alone cannot ensure the functionality
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report.pdf
qbsbnfufs iboemf/ Bt jo bmm npevmft- uifsf jt bo jojujbmj–bujpo gvodujpo dbmmfe dbmmcbdl joju xjui op qbsbnfufst boe op sfuvso wbmvf/ 5/3/ Jnqmfnfoubujpo Bgufs ibwjoh ejtdvttfe uif pvufs wjfx pg uif npevmf ˝ j/f/ uif gvodujpot boe uifjs nfbojoh ˝ J xjmm eftdsjcf uif joufsobm npevmf efubjmt jo uijt tfdujpo
in „Zilog Encore Experimentierplatine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
report.pdf
qbsbnfufs iboemf/ Bt jo bmm npevmft- uifsf jt bo jojujbmj–bujpo gvodujpo dbmmfe dbmmcbdl joju xjui op qbsbnfufst boe op sfuvso wbmvf/ 5/3/ Jnqmfnfoubujpo Bgufs ibwjoh ejtdvttfe uif pvufs wjfx pg uif npevmf ˝ j/f/ uif gvodujpot boe uifjs nfbojoh ˝ J xjmm eftdsjcf uif joufsobm npevmf efubjmt jo uijt tfdujpo
in „z8 encore: Timer wird nicht angesprungen“ · Mikrocontroller und Digitale Elektronik ·