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PDF
MSi001_R3v2.0.pdf
= 2.RF= 100 MHz,IF = 450 kHBW= 300 kHz, unless otherwise stated Note Parameter Conditions Min Typ Max Unit RF Input Frequency 64 108 MHz Input resistance Max / Min Gain 90 Input return loss 50 source 12 dB SSB Noise figure Max Gain 7.2 dB FIF 1.62 MHz 8.6 dB 1 Max Gain 106 dB Max Voltage Gain FIF
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PDF
4067B_4097B.pdf
channel will 11/16 HCC/HCF4067B HCC/HCF4097B Plastic DIP24 (0.25) MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. a1 0.63 0.025 b 0.45 0.018 b1 0.23 0.31 0.009 0.012 b2 1.27 0.050 D 32.2 1.268 E 15.2 16.68 0.598 0.657 e 2.54 0.100 e3 27.94 1.100 F 14.1 0.555 I 4.445 0.175 L 3.3 0.130 P043A 12/16
in „Analog Mux - Demux“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1n5822.pdf
equivalent dc voltage to use for conservative design, that is: equation (1). V = V F R(equiv) (FM) (4) TA(max) = TJ(max) * R θJA F(AV) * R θJA R(AV) (1) The factor F is derived by considering the properties of the various where TA(max) = Maximum allowable ambient temperature rectifier circuits and the reverse
in „Batterieschutzschaltung. Murks oder möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Lambdacontroller_ai_claude_2.ino
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lambdacontroller_ai_claude.txt
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TARGET__HiQTRX_V24S_Circuit.pdf
Ultra-Low-Noise Voltage Source 2 R2 10K +3.3VDAC 2 U2a +3.3V 0 1 - N 2 n1 2 D 0 F T2 1 R 1 3 + E 2 2 MAX4477AUA 3 6 1 R5 2K4 0 1 1 2 L3 0 1 2 9 3 2 1 1 2 C C BLM21AG331SN1D 1 E 2 R n 2 2 K 1 GND GND 0 1 / 1 9 0 C 1 1 C K 1 1 2 3 +5V +5V GND +5V AGND +5V Ultra-Low-Noise Voltage Source U1 2 MAX6126A21 K
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PDF
74hct595.pdf
hold time DS to SH_CP see Fig.9 4.5 3 − − ns rem removal time see Fig.10 4.5 13 − − ns MR to SH_CP max maximum clock see Figs 7 and 8 4.5 24 − − MHz pulse frequency SH_CP or ST_CP Tamb = −40 to +125 °C PHL PLH propagation delay see Fig.7 4.5 − − 63 ns SH_CP to Q7Õ propagation delay see Fig.8 4.5 − −
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Philips.pdf
hold time DS to SH_CP see Fig.9 4.5 3 − − ns rem removal time see Fig.10 4.5 13 − − ns MR to SH_CP max maximum clock see Figs 7 and 8 4.5 24 − − MHz pulse frequency SH_CP or ST_CP Tamb = −40 to +125 °C PHL PLH propagation delay see Fig.7 4.5 − − 63 ns SH_CP to Q7Õ propagation delay see Fig.8 4.5 − −
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Shiftregister.pdf
hold time DS to SH_CP see Fig.9 4.5 3 − − ns rem removal time see Fig.10 4.5 13 − − ns MR to SH_CP max maximum clock see Figs 7 and 8 4.5 24 − − MHz pulse frequency SH_CP or ST_CP Tamb = −40 to +125 °C PHL PLH propagation delay see Fig.7 4.5 − − 63 ns SH_CP to Q7Õ propagation delay see Fig.8 4.5 − −
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595.pdf
hold time DS to SH_CP see Fig.9 4.5 3 − − ns rem removal time see Fig.10 4.5 13 − − ns MR to SH_CP max maximum clock see Figs 7 and 8 4.5 24 − − MHz pulse frequency SH_CP or ST_CP Tamb = −40 to +125 °C PHL PLH propagation delay see Fig.7 4.5 − − 63 ns SH_CP to Q7Õ propagation delay see Fig.8 4.5 − −
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q128JV_RevI_08232021_Plus.pdf
PARAMETER SYMBOL UNIT MIN MAX (1) VCC (min) to /CS Low tVSL 20 µs (1) Time Delay Before Write Instruction tPUW 5 ms (1) Write Inhibit Threshold Voltage V WI 1.0 2.0 V Note: 1. These parameters are characterized only. VCC VCC (max
in „Speicher handling mit W25Q128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
is internally adjusted and can be tuned from 30dB to 51dB using an AT command. Microphone gain vs Max input voltage (using controller 1) Transmit Gain (dB) Max Vin (mVrms) AT+VGT(*) 30 43.80 0 to 31 33 31.01 32 to 63 36 21.95 64 to 95 39 15.54 96 to 127 42 11 128 to 159 45 7.79 160 to 191 48 5.51 192
in „[Hinweis] Kostenlose Datenverbindung fürs Handy“ · Markt ·
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PDF
MPR121.pdf
magnitude of variation to pass through the baseline filter. The range of the effective value is 1~63. Noise Half Delta (NHD): Determines the incremental change when non-noise drift is detected. The range of the effective value is 1~63. MPR121 Sensors 12 Freescale Semiconductor, Inc. Noise Count Limit
in „Probleme bei I2C-Verbindung mit MPR121 unter BASCOM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teXet_TF-127_Service_manual.pdf
08/16)2G2B-T (Lead) - HY27UF(08/16)2G2B-TP (Lead Free) PAGE READ / PROGRAM - Random access : 25us (max.) - HY27UF082G2B-F(P) - Sequential access : 25ns (min.) : 63-Ball FBGA (9 x 11 x 1.0 mm) - Page program time : 200us (typ.) - HY27UF082G2B-F (Lead) - Multi-page program time (2 pages) : 200us (typ.)
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2576.pdf
Adjustable Version Only) 50 100/500 nA fO Oscillator Frequency (Note 11) 52 kHz 47/42 kHz (Min) 58/63 kHz (Max) VSAT Saturation Voltage IOUT = 3A (Note 4) 1.4 V 1.8/2.0 V(Max) DC Max Duty Cycle (ON) (Note 5) 98 % 93 %(Min) I Current Limit (Notes 4, 11) 5.8 A CL 4.2/3.5 A(Min) 6.9/7.5 A(Max) I Output Leakage Current (Notes 6, 7): Output = 0V 2 mA(Max) L Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) I Standby Quiescent ON /OFF Pin = 5V (OFF) 50 µA STBY Current 200 µA(Max) 5 www.national.com V H 6 All Output
in „Schaltnetzteilverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803_2_0.pdf
Generator RAM (CGRAM): 64 x 8 bits (8 characters) o Display Data RAM (DDRAM): 80 x 8 bits (80 characters max.) o Segment Icon RAM (SEGRAM): 16 x 8 bits (96 icons max.) • Available in Bare Die 3 ORDERING INFORMATION Table 3-1 Ordering Information Ordering Part Package Reference on CGROM Character Code Number
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
noctua_nf_a14_industrialPPC_3000_pwm_specs_en.pdf
Waveform ** Vcc: 13.2V Max Link 5 mA Max Output Waveform LOCK VCC VOH VOHor VOLoutput is depending on the looked rotor position. VOL 2 pulses / rotation 2.5. Speed Control System PWM Control Input (W) V High Level PWM frequency
in „PWM-Controller ohne Poti aber mit Steuerspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2574.pdf
Only, OUT = 5V 50 100/500 nA Current fO Oscillator Frequency (see Note 10) 52 kHz 47/42 kHz(Min) 58/63 kHz(Max) VSAT Saturation Voltage OUT = 0.5A (Note 4) 0.9 V 1.2/1.4 V(max) DC Max Duty Cycle (Note 5) 98 % (ON) 93 % (Min) ICL Current Limit Peak Current, (Notes 4, 10) 1.0 A 0.7/0.65 A(Min) 1.6/1.8 A(Max) IL Output Leakage (Notes 6, 7) Output = 0V 2 mA(Max) Current Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) ISTBY Standby Quiescent ON /OFF Pin = 5V (OFF)
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
Only, OUT = 5V 50 100/500 nA Current fO Oscillator Frequency (see Note 10) 52 kHz 47/42 kHz(Min) 58/63 kHz(Max) VSAT Saturation Voltage OUT = 0.5A (Note 4) 0.9 V 1.2/1.4 V(max) DC Max Duty Cycle (Note 5) 98 % (ON) 93 % (Min) ICL Current Limit Peak Current, (Notes 4, 10) 1.0 A 0.7/0.65 A(Min) 1.6/1.8 A(Max) IL Output Leakage (Notes 6, 7) Output = 0V 2 mA(Max) Current Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) ISTBY Standby Quiescent ON /OFF Pin = 5V (OFF)
in „Iverting Buck Boost -5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FR5050_1.2_complete.pdf
0x61 0x0000 0x0FFF 75.9V 18.51mV potentiometer min 0x22 0x62 0x0000 0x0FFF 4.85V 1.18mV potentiometer max 0x23 0x63 0x0001 0x0FFF 4.85V 1.18mV 0x24 Status Register 0x30 Lock_level_2 Variables 0x31 0x71 Save bites 1 0x32 0x72 save bites 2 0x33 0x73 Configuration bits 1 0x34 0x74 Configuration bits 2 0x35
in „suche Poti mit Rechts- und Linkslauf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PT4515deutsch.pdf
Translated by Google PT4515HA Einzelsegment-Linear-LED-Treiberchip Millimeter Zoll Symbol Mindest Max Mindest Max A 1.350 1.750 0,053 0,069 A1 0,050 0,150 0,002 0,006 A2 1.350 1.650 0,053 0,065 B 0,330 0,510 0,013 0,020 C 0,170 0,250 0,007 0,010 D 4.700 5.100 0,185 0,201 D1 2.750 3.402 0,108 0,134 UND
in „LED mit mehr als 16V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
asus-p701-unlocked.pdf
MA_DQ52 AL3 AC7 MA_DQ53 AM2 SA_DQ52 AA4 SB_DQ61 MA_DQ54 AH3 SA_DQ53 AA5 SB_DQ62 MA_DQ55 AG3 SA_DQ54 SB_DQ63 MA_DQ56 AF3 SA_DQ55 NQ82915PM MA_DQ57 AE3 SA_DQ56 MA_DQ58 AD6 SA_DQ57 MA_DQ59 AC4 SA_DQ58 MA_DQ60 AF2 SA_DQ59 MA_DQ61 AF1 SA_DQ60 MA_DQ62 AD4 SA_DQ61 MA_DQ63 AD5 SA_DQ62 SA_DQ63 NQ82915PM A A <Variant
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IRF7401_IR.pdf
STG Junction and Storage Temperature Range -55 to + 150 °C Thermal Resistance Ratings Parameter Typ. Max. Units R Maximum Junction-to-Ambient 50 θJA °C/W 8/10/04 IRF7401PbF Electrical Characteristics @ T = 25°C Junless otherwise specified) Parameter Min. Typ. Max. Units Conditions V(BR)DSS Drain-to-Source
in „IRF7401 - Rds(On)?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon_TLE4205-1168721.pdf
Package Outlines P-DIP-18-3 (Plastic Dual In-line Package) 7.6±0.2 i 5 a 0 m . 4 3 ~1.2 ± 0.25+0.1 . 1.5max 0.25 18x 3 6.4 -0.2 2.54 +0.1 +1.2 0.45 7.6 18 10 1 9 22.7-0.2 0.4max IndexMarking GPD05035 Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book “Package Information
in „[V] Konvolut Motortreiber : 22St L293DNE-DIL16 und 9St. TLE4202B“ · Markt ·
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PDF
Infineon_TLE4205-1168721.pdf
Package Outlines P-DIP-18-3 (Plastic Dual In-line Package) 7.6±0.2 i 5 a 0 m . 4 3 ~1.2 ± 0.25+0.1 . 1.5max 0.25 18x 3 6.4 -0.2 2.54 +0.1 +1.2 0.45 7.6 18 10 1 9 22.7-0.2 0.4max IndexMarking GPD05035 Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book “Package Information
in „[V] Motortreiber 2x L6203 Multivatt11 und 5x Siemens TLE4205“ · Markt ·
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PDF
Infineon_TLE4205-1168721.pdf
Package Outlines P-DIP-18-3 (Plastic Dual In-line Package) 7.6±0.2 i 5 a 0 m . 4 3 ~1.2 ± 0.25+0.1 . 1.5max 0.25 18x 3 6.4 -0.2 2.54 +0.1 +1.2 0.45 7.6 18 10 1 9 22.7-0.2 0.4max IndexMarking GPD05035 Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book “Package Information
in „[V] Konvolut DC Motortreiber: L293D, L6203, TLE4202B, TLE4205“ · Markt ·
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PDF
panasonic-HA.pdf
j HA products (Black dot) Size 0D L A, B H I W P K Rated voltage code code B 4.0 5.4- 0.2 4.3 5.5 max. 1.8 0.65±0.1 1.0 0.35+- 0.20 Lot number C 5.0 5.4- 0.2 5.3 6.5 max. 2.2 0.65±0.1 1.5 0.35+- 0.20 D 6.3 5.4- 0.2 6.6 7.8 max. 2.6 0.65±0.1 1.8 0.35+- 0.20 D8 6.3 7.7±0.3 6.6 7.8 max. 2.6 0.65±0.1 1.8 0.35+- 0.20 R. Voltage + 0.15 (V.DC) 6.3 10 16 25 35 50 E 8.0 6.2±0.3 8.3 9.5 max. 3.4 0.65±0.1 2.2 0.35 - 0.20 F 8.0 10.2±0.3 8.3 10.0 max. 3.4 0.90±0.2 3.1 0.70±0.20 Code j A C E V H G 10.0 10.2±0.3 10.3 12.0 max. 3.5 0.90±0.2 4.6 0.70±0.20 Design and specifications are each subject
in „Kondensatortausch auf gebrauchter Platine“ · Analoge Elektronik und Schaltungstechnik ·
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3167207.pdf
Output Power Nominal Output Efficiency at 230V ACCapacitive Load Voltage and Current (%) Typ. (μF) Max. MP-LS10-13B03R3 6.6W 3.3V/2000mA 73 1500 MP-LS10-13B05R3 5V/2000mA 77 1500 MP-LS10-13B09R3 9V/1100mA 80 1000 10W MP-LS10-13B12R3 12V/830mA 82 680 MP-LS10-13B24R3 24V/420mA 83 330 Note: 1. The nominal
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Datei
lcdcon_ft245.asm
zweite Hälfte der Daten behalten or temp2, temp st X+,temp2 cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM cbr Flags, (1<<ZeileH) ;MSB Spalten Adresse =
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Datei
lcdcon_ft245.asm
zweite Hälfte der Daten behalten or temp2, temp st X+,temp2 cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM cbr Flags, (1<<ZeileH) ;MSB Spalten Adresse =
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Datei
lcdcon_ft245_4bit.asm
Displayhälfte ? rjmp untereHalfte obereHalfte: st X+,temp cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL ;Zeilen Adresse ++ cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM sbr Flags, (1<<ZeileH) ;MSB
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Datei
lcdcon_ft245_4bit.asm
Displayhälfte ? rjmp untereHalfte obereHalfte: st X+,temp cpi XAdresseLow, XMax ;Spalten Adresse > Max ? brlo normal clr XAdresseLow ;Spalten Adresse = 0 inc ZeileL ;Zeilen Adresse ++ cpi ZeileL, YMax ;Zeilen Adresse > Max ? brlo normal ldi ZeileL, YMin ;Zeile = Beginn XRAM sbr Flags, (1<<ZeileH) ;MSB
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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PDF
TI_ads809.pdf
7dB each tone) –77 dBFS Signal-to-Noise Ratio (SNR) f = 1MHz 65.5 dBFS f = 10MHz 65 dBFS f = 31MHz 63 dBFS Signal-to-(Noise + Distortion) (SINAD) f = 1MHz 64 dBFS f = 10MHz 63 dBFS f = 31MHz 61 dBFS Output Noise Input AC-Grounded 0.13 LSBs rms Aperture Delay Time 3 ns Aperture Jitter 0.5 ps rms Over-Voltage
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st6215c.pdf
operating conditions for DD , OSC , and TAunless otherwise specified. Symbol Parameter Conditions Min Max Unit IO=+10µA, TA≤125±C 0.1 I =+3mA, T ≤125±C 0.8 Outputlow level voltage for astandardI/O pin IO A (see Figure 63 and Figure 66) IO=+5mA, TA≤85±C 0.8 IO=+10mA, T A≤85±C 1.2 I =+10µA, T ≤125±C 0.1 V
in „ST6 Familie von ST“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dds-pll.asm
ocr0b,tmp ldi tmp, (1<<com0b1) + 0* (1<<com0b0) + (1<< wgm00) + (1<< wgm01) out tccr0a,tmp ldi tmp,1 ; max clock out tccr0B,tmp ; set Table for sinewave output ldi r31,high(2*sine) ; setup Z pointer hi ldi r30,low(2*sine) ; setup Z pointer low = 0 ! ; clear phaseaccumulator ldi ph3,0x00 ; clear accumulator
in „PLL mit Atmega8 läuft + Fragen!“ · Mikrocontroller und Digitale Elektronik ·
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ACS712-Datasheet.pdf
ambiAnt, T , and internal leadframe temperAtures, T , provided that the Maximum Junction Temperature, J(max), is not exceeded. 21G = 0.1 mT. 3R forms an RC circuit via the FILTER pin. F(INT) COMMON THERMAL CHARACTERISTICS 1 Min. Typ. Max. Units Operating Internal Leadframe Temperature TA E range –40 – 85
in „ACS712 genauigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Allegro-ACS712.pdf
ambiAnt, T , and internal leadframe temperAtures, T , provided that the Maximum Junction Temperature, J(max), is not exceeded. 21G = 0.1 mT. 3R forms an RC circuit via the FILTER pin. F(INT) COMMON THERMAL CHARACTERISTICS 1 Min. Typ. Max. Units Operating Internal Leadframe Temperature TA E range –40 – 85
in „Schaltung zum Strom messen ohne Widerstand?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ACS712-Datenblatt.pdf
ambiAnt, T , and internal leadframe temperA ures, T , provided that the Maximum Junction Temperature, J(max), is not exceeded. 21G = 0.1 mT. 3R forms an RC circuit via the FILTER pin. F(INT) COMMON THERMAL CHARACTERISTICS 1 Min. Typ. Max. Units Operating Internal Leadframe Temperature TA E range –40 – 85
in „DC Wattmeter 400W 20V 20A selber bauen Assembler ATmega8 Stromsensor ACS712ELC Reichelt“ · Projekte & Code ·
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PDF
LM2576.pdf
Adjustable Version Only) 50 100/500 nA fO Oscillator Frequency (Note 11) 52 kHz 47/42 kHz (Min) 58/63 kHz (Max) V Saturation Voltage I = 3A (Note 4) 1.4 V SAT OUT 1.8/2.0 V(Max) DC Max Duty Cycle (ON) (Note 5) 98 % 93 % (Min) ICL Current Limit (Notes 4, 11) 5.8 A 4.2/3.5 A(Min) 6.9/7.5 A(Max) IL Output Leakage Current (Notes 6, 7): Output= 0V 2 mA(Max) Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) ISTBY Standby Quiescent ON /OFF Pin = 5V (OFF) 50 µA Current 200 µA(Max) θJA Thermal Resistance T Package,
in „Netzteil selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NSC-LM2576-5.pdf
Adjustable Version Only) 50 100/500 nA fO Oscillator Frequency (Note 11) 52 kHz 47/42 kHz (Min) 58/63 kHz (Max) V Saturation Voltage I = 3A (Note 4) 1.4 V SAT OUT 1.8/2.0 V(Max) DC Max Duty Cycle (ON) (Note 5) 98 % 93 % (Min) ICL Current Limit (Notes 4, 11) 5.8 A 4.2/3.5 A(Min) 6.9/7.5 A(Max) IL Output Leakage Current (Notes 6, 7): Output= 0V 2 mA(Max) Output = −1V 7.5 mA Output = −1V 30 mA(Max) IQ Quiescent Current (Note 6) 5 mA 10 mA(Max) ISTBY Standby Quiescent ON /OFF Pin = 5V (OFF) 50 µA Current 200 µA(Max) θJA Thermal Resistance T Package,
in „KFZ Spannung mit LM2576 Diode vor die Spule?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD66766R.PDF
HCD667x66 Table 1 Difference HCD667x66R HCD667x66 Pad arrangement Pad No. Pad Name Pad No. Pad Name 63 Vcc 63 Vcc 63 Vcc 63 Vcc 64 Vcc 64 Vcc 66 Vcc 66 Vcc 67 AVcc 67 Vcc 68 AVcc 68 Vcc 69 AVcc 69 Vcc 70 AVcc 70 Vcc 2 HD66766R Rev. 1.0-1 / September 2002 g HD66766R PAD Arrangement (Straight Output Arrangement) P 1 3 5 NO.1 3 5 7 9 1 1 1 NO.666 nChip size: 18.65mm×2.63mm MMMM MMMM C C C C C C C C nChip thickness: 400um (typ.) DUMMY1 DUMMY13 nPad coordinate: Pad center DUMMY2 COM107 n Coordinate origin: Chip center RESET1* COM109 CEP COM111 CEP COM113 n Au bump size
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R7G_-_T7G.pdf
T7G Units Pin Notes Min. Typ. Max. Min. Typ. Max. DC Levels Supply (5V variants) 2.2 5.0 12.0 4.5 5.0 5.5 Volts 3 Supply (3V variants) - - - 2.2 3.0 4.0 Volts 3 Current & RF Power Supply current @ 7 24 mA 3 1 VCC = 5V RF output power
in „LED als Signalanzeige für Funkempfänger R7G“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rtc72423.pdf
) i 2 fa VDD=5V, Ta=25˚C, ±5 max. ppm/y 4 0 Aging first year 0.25 Three drops on a Shock resistance hard board from 75 cm ppm 90° to S.R. or 3000G x 0.3ms x ±10 max. n 105° 1/2 sine wave x 3 directions m ID1 CS =0V V DD=5V 10 max. 3 Current consumption Excludeinput/ µA DD2 outputcurrentDD=2V 5 max. Electrical characteristics RTC-72423 A p p l i c a b l e Item Symbol Condition Min. Typ. Max. Unit t e r m i n a l 16.3 max. “H” input voltage (1) VIH1 2.2 — All inputs — V other than “L” input voltage
in „S: Datenblatt RTC 72421“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mmc.c
data spi_io_mem(buffer,6); }; // gets a 1 byte long R1 static u08 MMC_get_R1(void){ u08 retval; u08 max_errors = 128; // wait for first valid response byte do{ retval = spi_io(0xff); max_errors--; }while( (retval & 0x80) && (max_errors>0)); return retval; }; // gets a 2 byte long R2 static u16 MMC_get_R2(void){ u16 retval; u08 max_errors = 64; // wait for first valid response byte do{ retval = spi_io(0xff); max_errors--; }while( (retval & 0x80) && (max_errors>0) ); // move data to upper byte retval = (retval << 8); // get second
in „[atmega8] UART-Daten auf SD-Karte schreiben“ · Mikrocontroller und Digitale Elektronik ·
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STTH16L06C.pdf
20 25 30 35 40 Figure 14: TO-220AB Package Mechanical Data REF. DIMENSIONS Millimeters Inches Min. Max. Min. Max. H2 A A 4.40 4.60 0.173 0.181 Dia C C 1.23 1.32 0.048 0.051 D 2.40 2.72 0.094 0.107 L5 L7 E 0.49 0.70 0.019 0.027 F 0.61 0.88 0.024 0.034 L6 F1 1.14 1.70 0.044 0.066 L2 F2 1.14 1.70 0.044
in „Philips TV 47PFL9664H/12 Hintergrundbeleuchtung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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MSM5299AGS-K.pdf
O56 6 75 O25 O 7 74 O 57 24 O58 8 73 O23 O59 9 72 O22 O 10 71 O 60 21 ▯ O61 11 70 O20 O62 12 69 O19 O63 13 68 O18 O64 14 67 O 17 O65 15 66 O16 O66 16 65 O15 O 17 64 O 67 14 O68 18 63 O13 O69 19 62 O12 O O 70 20 61 11 O71 21 60 O10 O72 22 59 O9 O73 23 58 O8 O74 24 57 O 7 O75 25 56 O6 O76 26 55 O5 O 27 54
in „ansteuerung von grafikdisplay UG-32F01“ · Mikrocontroller und Digitale Elektronik ·
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msm5299a.pdf
O56 6 75 O25 O 7 74 O 57 24 O58 8 73 O23 O59 9 72 O22 O 10 71 O 60 21 ▯ O61 11 70 O20 O62 12 69 O19 O63 13 68 O18 O64 14 67 O 17 O65 15 66 O16 O66 16 65 O15 O 17 64 O 67 14 O68 18 63 O13 O69 19 62 O12 O O 70 20 61 11 O71 21 60 O10 O72 22 59 O9 O73 23 58 O8 O74 24 57 O 7 O75 25 56 O6 O76 26 55 O5 O 27 54
in „Optrex DMF50191N“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ping.txt
time=10.000 ms 72 bytes from 80.69.96.12: seq=62 ttl=58 time=10.000 ms 72 bytes from 80.69.96.12: seq=63 ttl=58 time=10.000 ms 72 bytes from 80.69.96.12: seq=65 ttl=58 time=20.000 ms 72 bytes from 80.69.96.12: seq=66 ttl=58 time=10.000 ms 72 bytes from 80.69.96.12: seq=67 ttl=58 time=10.000 ms 72 bytes
in „Unitymedia DNS auch bei euch gestört?“ · Haus & Smart Home ·
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PDF
S6D0154X_Data_Sheet_Rev1.00.pdf
range for VGL to AVSS Note. 1. AVDD Min: When VCI1 = 2.25V, AVDD Max: When VCI1=3.0V 2. |VGH| & |VGL| Min : When VCI1 = 2.25V, |VGL| Max : When VCI1=2.75V, |VGH - VGL| Max : 30.0V 3. |VGH| max. should be lower than or equal to 16.5V in normal operating condition, regardless
in „Nokia N95-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCO8703.pdf
4πE − 7 × 120 × 97.6E − 6)) = 15.8 turns. So n pr8 turns and n sec= 16 turns. For each transformer V max depends on the power over 100 . V max= SQR(2 × P ×OR ) =LSQR(2 × 150 × 100) = 173.2 V B maxdepends on the parallel loss resistance at 1.6 MHz; for a power loss of 1%: B max = 1.3E − 2T. The volume A.1 needed per core is: A.1 = (V /(ω × B )) ( × )/L. max max o r A.1 = (1.73.2/(2π × 1.6E + 6 × 0.013)) (4πE − 7 × 120)/40E − 6 = 6.62E − 6 m .3 Each of the toroids has a volume of 8.97E − 6 m . Figure 7 shows one of the two parallel connected output transformers
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·