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PDF
lm2596.pdf
110 173 T J 25°C 1.16 1.4 V SAT Saturation voltage (4) (5) OUT = 3 A V –40°C ≤ T ≤J125°C 1.5 (5) Max duty cycle (ON) 100% DC (6) Min duty cycle (OFF) 0% (4) (5) T J 25°C 3.6 4.5 6.9 ICL Current limit Peak current –40°C ≤ T ≤ 125°C 3.4 7.5 A J (4) Output = 0 V, V = 40 V 50 μA I Output leakage current
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lm2596.pdf
110 173 T J 25°C 1.16 1.4 V SAT Saturation voltage (4) (5) OUT = 3 A V –40°C ≤ T ≤J125°C 1.5 (5) Max duty cycle (ON) 100% DC (6) Min duty cycle (OFF) 0% (4) (5) T J 25°C 3.6 4.5 6.9 ICL Current limit Peak current –40°C ≤ T ≤ 125°C 3.4 7.5 A J (4) Output = 0 V, V = 40 V 50 μA I Output leakage current
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 18€)“ · Markt ·
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Datei
foo.dwarf-3.txt
: .string "UINT_LEAST16_MAX UINT16_MAX" .LASF1630: .string "pgm_read_word_near(address_short) __LPM_word((uint16_t)(address_short))" .LASF441: .string "UINT16_MAX (__CONCAT(INT16_MAX, U) * 2U + 1U)" .LASF434: .string "__CONCATenate
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Report_Samsung_X20.htm
GS Wavetable SW Synth <TR><TD><TD><TD>mixer.0 <TD CLASS=cc>FFFF FFFF <TD>SoundMAX Digital Audio <TR><TD><TD><TD>wave-in.0 <TD CLASS=cc>FFFF FFFF <TD>SoundMAX Digital Audio <TR><TD><TD><TD>wave-out.0 <TD CLASS=cc>FFFF FFFF <TD>SoundMAX Digital
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PDF
tsc2003.pdf
10 ns Data Hold Time HD; DAT Standard Mode 0 3.45 µs Fast Mode 0 0.9 µs High-Speed Mode, C b 100pF max 0 70 ns High-Speed Mode, C b 400pF max 0 150 ns Rise Time of SCL Signal t Standard Mode 1000 ns rCL Fast Mode 20 + 0.1Cb 300 ns High-Speed Mode, C b 100pF max 10 40 ns High-Speed Mode, C = 400pF max
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PDF
LF33.pdf
C, j C i= 0.1 F, C =o2.2 F unless otherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit V o OutputVoltage o = 50 mA, Vi= 5.3 V o 3.267 3.3 3.333 V o = 50 mA, Vi= 5.3V -25<Ta<85 C 3.234 3.366 V Vi Operating Input Voltage o = 500 mA 16 V Iout OutputCurrent Limit 1 A V o LineRegulation
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PDF
STM.pdf
C, j C i= 0.1 F, C =o2.2 F unless otherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit V o OutputVoltage o = 50 mA, Vi= 5.3 V o 3.267 3.3 3.333 V o = 50 mA, Vi= 5.3V -25<Ta<85 C 3.234 3.366 V Vi Operating Input Voltage o = 500 mA 16 V Iout OutputCurrent Limit 1 A V o LineRegulation
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e1529_k8v.pdf
DDR400 2 DoubleSide DoubleSide - DDR400 2 DoubleSide - SingleSide DDR400 2 - SingleSide SingleSide DDR333 2 - SingleSide DoubleSide DDR200 2 - DoubleSide SingleSide DDR200 2 - DoubleSide DoubleSide DDR200 2 DoubleSide - DoubleSide DDR400 3 SingleSide SingleSide SingleSide DDR333 3 SingleSide SingleSide
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Datei
console.txt
Zeichen Zeile 330 enthaelt 11 Zeichen Zeile 331 enthaelt 23 Zeichen Zeile 332 enthaelt 82 Zeichen Zeile 333 enthaelt 82 Zeichen Zeile 334 enthaelt 78 Zeichen Zeile 335 enthaelt 124 Zeichen Zeile 336 enthaelt 81 Zeichen Zeile 337 enthaelt 72 Zeichen Zeile 338 enthaelt 23 Zeichen Zeile 339 enthaelt 11 Zeichen
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PDF
TB12To5.pdf
ITF=0.7495 PTF=0 CJC=3.728E-12 + VJC=0.3997 MJC=0.2955 XCJC=0.6193 TR=1E-32 CJS=0 + VJS=0.75 MJS=0.333 FC=0.9579 Vceo=45 Icrating=100m + mfg=Philips) .model BC327 PNP( + IS=2.69972e-13 BF=255 NF=1.02306 VAF=10 IKF=1.61069 + ISE=1.54904e-10 NE=2.52512 BR=2.08944 NR=1.06916 VAR=100 + IKR=10 ISC=8.82272e
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LP2950-D.PDF
DETERMINED AT DATUM 1 2 3 PLANE H. 7. OPTIONAL MOLD FEATURE. L4 NOTE 7 INCHES MILLIMETERS c DIM MIN MAX MIN MAX b2 BOTTOM VIEW A 0.086 0.094 2.18 2.38 e SIDE VIEW A1 0.000 0.005 0.00 0.13 b b 0.025 0.035 0.63 0.89 0.005 (0.13)M C b2 0.028 0.045 0.72 1.14 TOP VIEW b3 0.180 0.215 4.57 5.46 c 0.018 0.024
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2950_LP2951.pdf
DETERMINED AT DATUM 1 2 3 PLANE H. 7. OPTIONAL MOLD FEATURE. L4 NOTE 7 INCHES MILLIMETERS c DIM MIN MAX MIN MAX b2 BOTTOM VIEW A 0.086 0.094 2.18 2.38 e SIDE VIEW A1 0.000 0.005 0.00 0.13 b b 0.025 0.035 0.63 0.89 0.005 (0.13)M C b2 0.028 0.045 0.72 1.14 TOP VIEW b3 0.180 0.215 4.57 5.46 c 0.018 0.024
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
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Datei
hardware_t.cpp
Trigger_Pos_CH4-GRID_HEIGHT/2)/ScaleFactor[Selected_Voltage_CH4][GainIdx])+ADC_ZERO; break; } Signal::CalcMinMax(start,stop,1,pSignal,&min,&max); if (((oldMin<tvalue) && (max>tvalue)) || ((oldMax>tvalue) && (min<tvalue)) || (min<tvalue && max>tvalue)) { //triggervalue crossed--> enable normal-mode ctrl_reg &=
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PDF
ts3v340.pdf
= 2L pF (unless otherwise noted) (see Figures 6 and 7) FROM TO PARAMETER (INPUT) (OUTPUT) MIN TYP MAX UNIT pd(s) IN D 2 5 ns ON IN or EN S 4 7 ns OFF IN or EN S 2 7 ns dynamic characteristics over recommended operating free-air temperature range, V = 3.3 V 0.3 V (unless otherwise noted) CC PARAMETER
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PDF
an90f.pdf
Verified Prevents Spurious Outputs AN90-3 Application Note 90 5V 5V + 22µF 10k 71k ENABLE 10k SHDN VCC MAX 2N3904 L1 OFF = 1V TO 5V FB LTC1504A VSW ON = 0V GND + 100µF * = 1% METAL FILM RESISTOR 0.01µF L1 = 47µH, SUMIDA CD54-470 = 1N4148 0.033µF 10k 10k = LASER + LT1006 – 0.02µF INPUT 10k* 80.6k* 0V TO 2.5V
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PDF
Agilent_ADNS-2051_-_153206449.pdf
MICRO-CONTROLLER DETAIL "A" SDIO .RIVEN BY ADNS-2051 DETAIL "B" Figure 27. Read operation. HOLD z 120 ns, MAX. DETAIL "A" 100 µs, MIN. SCLK d SDIO HANDOFFLER 60 ns, MIN. 0 ns, MIN. 120 ns, MAX. SDIO A 1 A0 - Hi-Z D7 D6 120 ns, MIN. 0 ns, MIN. Figure 28. Microcontroller to ADNS-2051 SDIO handoff. c DETAIL "B
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fy.html
(Freq µHz)</title> <style> body { font-family: sans-serif; display: flex; flex-direction: column; max-width: 600px; margin: 20px auto; padding: 20px; border: 1px solid #ccc; box-shadow: 2px 2px 5px rgba(0,0,0,0.1); background-color: #f9f9f9; } .control-group { border: 1px solid #ccc; padding: 15px;
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PDF
INR-18650.pdf
charge : 180min / 125mA cut-off 3.6 Charging time Rapid charge: 60min (at 25℃) / 100mA cut-off 3.7 Max. continuous discharge 20A(at 25℃), 60% at 250 cycle (Continuous) 3.8 Discharge cut-off voltage 2.5V End of discharge 3.9 Cell weight 45.0g max Height : 64.85 ± 0.15mm 3.10 Cell dimension Diameter :
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PDF
SAMSUNG_INR18650-25R.pdf
charge : 180min / 125mA cut-off 3.6 Charging time Rapid charge: 60min (at 25℃) / 100mA cut-off 3.7 Max. continuous discharge 20A(at 25℃), 60% at 250 cycle (Continuous) 3.8 Discharge cut-off voltage 2.5V End of discharge 3.9 Cell weight 45.0g max Height : 64.85 ± 0.15mm 3.10 Cell dimension Diameter :
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PDF
10350.pdf
mode OSC32K bypassed 12 30 µA Notes: 1. Typical data are based An T°C, V333.3V. 2. Data based on characterization results, tested in pro33cMCLK at V and A max. 3. Based on device characterisation, device power consumption in STOP Aode at Tpredicted to be 30µA or less in 99.730020%
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PDF
MLX90640-Datasheet-Melexis.pdf
Figure 2 MLX90640 Overview and pin description 7. Absolute Maximum Ratings Parameter Symbol Min. Typ. Max. Unit Remark Supply Voltage (over voltage) V 5 V DD Supply Voltage (operating max voltage) V 3.6 DD Reverse Voltage (each pin) -0.3 V Operating Temperature TAMB -40 +85 °C Storage Temperature TST -40
in „MLX90640 IR-Array 32x24 pixel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
Figure 2 MLX90640 Overview and pin description 7. Absolute Maximum Ratings Parameter Symbol Min. Typ. Max. Unit Remark Supply Voltage (over voltage) V 5 V DD Supply Voltage (operating max voltage) V 3.6 DD Reverse Voltage (each pin) -0.3 V Operating Temperature TAMB -40 +85 °C Storage Temperature TST -40
in „Wärmebildkamera mit dem MLX90640 und Arduino Due“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system.ucf
Glitch Squelch circuit ########################################################################### ## Max delay from output of IDDR to CE input of DQ IDDRs = tRPST + some slack ## where slack account for rise-time of DQS on board. For now assume slack = ## 0.400ns (based on initial SPICE simulations, assumes use of ODT), so ## time = 0.4*Tcyc + 0.40ns = 1.6ns @333MHz INST "*/gen_dqs[*].u_iob_dqs/u_iddr_dq_ce" TNM = "TNM_DQ_CE_IDDR"; INST "*/gen_dq[*].u_iob_dq/gen_stg2_*.u_iddr_dq" TNM = "TNM_DQS_FLOPS"; TIMESPEC "TS_DQ_CE" = FROM "TNM_DQ_CE_IDDR" TO "TNM_DQS_FLOPS
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PDF
93506.pdf
C = 0.1 µF, j I C O 2.2 F unless otherwise specified.) Symbol Parameter Test Conditions Min. Typ. Max. Unit VO Output Voltage IO= 50 mA, VI= 5.3 V 3.267 3.3 3.333 V I = 50 mA, V = 5.3 V, T = -25 to 85±C 3.234 3.366 O I a V I Operating Input Voltage IO= 500 mA 16 V IO Output Current Limit 1 A VO Line
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Carel-NTC.pdf
NTC 10K@25°C ß 3435 Temp. Valeur de résistance Temp. Valeur de résistance Temp. Valeur de résistance Max. Typique Min. Max. Typique Min. Max. Typique Min. °C KΩ KΩ KΩ °C KΩ KΩ KΩ °C KΩ KΩ KΩ -50 344,60 329,50 314,90 1 26,65 26,13 25,62 56 3,50 3,43 3,35 -49 325,00 310,90 297,30 2 25,52 25,03 24,55 57 3,39
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SSD1332_R1.61.pdf
Peripheral Interface. It has a 256 steps contrast control and 65K color control. 2 FEATURES Support max. 96RGB x 64 matrix panel Power supply: V DD= 2.4V - 3.5V VCC= 7.0V - 18.0V OLED driving output voltage, 16V maximum DC-DC voltage converter Segment maximum source current: 200uA Common maximum sink
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PDF
XC6216.pdf
SETTING VOLTAGE 2% ACCURACY 1% ACCURACY OUT=20mA OUT=100mA V OUT(T) VOUT VOUT Vdif1 Vdif2 (V) MIN. MAX. MIN. MAX. TYP. MAX. TYP. MAX. 2.0 1.960 2.040 1.980 2.020 450 600 1900 2600 2.1 2.058 2.142 2.079 2.121 450 600 1900 2600 2.2 2.156 2.244 2.178 2.222 390 520 1700 2200 2.3 2.254 2.346 2.277 2.323 390
in „Suche Spannungsregler mit kleinem Ruhestrom <<2mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XC6216.pdf
SETTING VOLTAGE 2% ACCURACY 1% ACCURACY OUT=20mA OUT=100mA V OUT(T) VOUT VOUT Vdif1 Vdif2 (V) MIN. MAX. MIN. MAX. TYP. MAX. TYP. MAX. 2.0 1.960 2.040 1.980 2.020 450 600 1900 2600 2.1 2.058 2.142 2.079 2.121 450 600 1900 2600 2.2 2.156 2.244 2.178 2.222 390 520 1700 2200 2.3 2.254 2.346 2.277 2.323 390
in „Suche Linearregler 5V für ca. 100uA minimal / 100mA max.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_1976_nurText.pdf
HardwareundSoftwarevonMikrocomputernder dem SME-System als auch mit EDV-Anlagen. SystemeSAB8080und3002. Zeichenvorrat: 64Zeichen, max. 20Zeilen, SME-800 Das Grundgerät SME arbeitet mit einem max. 1080Zeichenje Bild, Übertragungs- SAB-8080-Mikroprozessor und verfügt über geschw. 1200 bzw. 2400 bit/s (umschaltbar) einen Universalbus
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PDF
MCP320412-bitA-DConverterDatasheet.pdf
Interface Features Description • 12-bit resolution The Microchip Technology Inc. MCP3204/3208 • ± 1 LSB max DNL devices are successive approximation 12-bit Analog- to-Digital (A/D) Converters with on-board sample and • ± 1 LSB max INL (MCP3204/3208-B) • ± 2 LSB max INL (MCP3204/3208-C) hold circuitry. The
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Datei
mig_v3_4.ucf
Squelch circuit ############################################################################### # Max delay from output of IOB flip-flop to CE input of DQ IDDRs = # tRPST + some slack where slack account for rise-time of DQS on board. # For now assume slack = 0.400ns (based on initial SPICE simulations, # assumes use of ODT), so time = 0.4*Tcyc + 0.40ns = 1.6ns @333MHz INST "*/gen_dqs[*].u_iob_dqs/u_iddr_dq_ce" TNM = "TNM_DQ_CE_IDDR"; INST "*/gen_dq[*].u_iob_dq/gen_stg2_*.u_iddr_dq" TNM = "TNM_DQS_FLOPS"; TIMESPEC "TS_DQ_CE" = FROM "TNM_DQ_CE_IDDR" TO "TNM_DQS_FLOPS
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
V Gain, SOIC-8/uMAX-8 MAX4080T 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Unidirectional, 20V/V Gain, SOIC-8/uMAX-8 MAX4081F 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Bidirectional, 5V/V Gain, SOIC-8/uMAX-8 MAX4081S 76V, High-Side, Current-Sense Amplifiers with Voltage Outpute, Bidirectional, 60V/V Gain, SOIC-8/uMAX-8 MAX4081T 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Bidirectional
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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PDF
93LC46.pdf
mil (PDIP) E1 D 2 n 1 α E A2 A L c A1 β B1 eB p B Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .100 2.54 Top to Seating Plane A .140 .155 .170 3.56 3.94 4.32 Molded Package Thickness A2 .115 .130 .145 2.92 3.30 3.68 Base to Seating Plane A1 .015 0.38 Shoulder
in „Probleme mit SPI EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATGmeo5c.pdf
(85,85) Ø 3.875 B.C. (43,69) 98,43 +.0000 (2X 45˙) .3750 -.0005 Ø 9,53 -0,013 .002 0,051 -A- 2.62 MAX. 66,55 .06 1,52 .71 MAX-ENCODER Ø 2.875 ± .002 18,04 MOUNTING OPTION 73,025 ± 0,051 (.18) ONLY .003 (4,57) 0,077 A L2 ENCODER 1.25 CONNECTOR- MODEL L1 MAX. ENCODER MOUNTING NUMBER L1 MAX. L2 31,75 OPTION
in „Schrittmotor-Treiber Stepper Motor Pacific Scientific Powermax II“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC6216_XE6216.pdf
OUT20mA OUT20mA OUT100mA OUT100mA VOLTAGE(V) VOUT(T) ΔVOUT ΔV OUT Vdif1 Vdif1 Vdif2 Vdif2 (V) TYP. MAX. TYP. MAX. TYP. MAX. TYP. MAX. TYP. MAX. TYP. MAX. 2.0 450 600 450 735 1900 2600 1900 3060 2.1 2.2 2.3 390 520 390 675 1700 2200 1700 2760 2.4 2.5 2.6 2.7 310 450 310 620 1500 1900 1500 2620 2.8 2.9
in „Suche schaltung für Ladeerhaltung einer Pufferbatterie“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LDO-Spannungsregler_LFxx.pdf
specified. Table 11. LF33AB electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O = 50 mA, VI= 5.3 V 3.267 3.3 3.333 V O Output voltage V O = 50 mA, VI= 5.3 V, a = -25 to 85 °C 3.234 3.366 VI Operating input voltage O = 500 mA 16 V I Output current limit 1 A O ΔV Line regulation
in „Spannungsregelung-/Begrezung 5V.5,5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
en.CD00000546.pdf
specified. Table 11. LF33AB electrical characteristics Symbol Parameter Test conditions Min. Typ. Max. Unit O = 50 mA, VI= 5.3 V 3.267 3.3 3.333 V O Output voltage V O = 50 mA, VI= 5.3 V, a = -25 to 85 °C 3.234 3.366 VI Operating input voltage O = 500 mA 16 V I Output current limit 1 A O ΔV Line regulation
in „Brückengleichrichter verstärkt Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
24lc16.pdf
C Industrial (I): Tamb = -40°C to +85°C Automotive (E) Tamb = -40°C to +125°C Parameter Symbol Min Max Units Conditions WP, SCL and SDA pins: High level input voltage VIH .7 VCC — V Low level input voltage V IL — .3 VCC V Hysteresis of Schmitt trigger V HYS .05 CC — V (Note) inputs Low level output voltage
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PDF
AN040_Sqrt.pdf
Inc. TB040 ANALYSIS TABLE 1: PERFORMANCE Following the flow of this algorithm, there are only nine Max Time Cycles 40MHz 10MHz 4MHz loops for an 8-bit number. And summing all the mathe- matics involved, there is only one multiplication and 16-bit 149 14.9us 59.6us 149us one conditional test for each
in „Netzspannung auf LCD mit PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN040_Sqrt.pdf
Inc. TB040 ANALYSIS TABLE 1: PERFORMANCE Following the flow of this algorithm, there are only nine Max Time Cycles 40MHz 10MHz 4MHz loops for an 8-bit number. And summing all the mathe- matics involved, there is only one multiplication and 16-bit 149 14.9us 59.6us 149us one conditional test for each
in „Schneller sqrt()-Ersatz ohne FPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB12To5.pdf
ITF=0.7495 PTF=0 CJC=3.728E-12 + VJC=0.3997 MJC=0.2955 XCJC=0.6193 TR=1E-32 CJS=0 + VJS=0.75 MJS=0.333 FC=0.9579 Vceo=45 Icrating=100m + mfg=Philips) .model BC327 PNP( + IS=2.69972e-13 BF=255 NF=1.02306 VAF=10 IKF=1.61069 + ISE=1.54904e-10 NE=2.52512 BR=2.08944 NR=1.06916 VAR=100 + IKR=10 ISC=8.82272e
in „Diskreter DC/DC-Wandler in LtSpice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD66766-10.pdf
all 0 Ta = 25C, fosc = 276khz (1/176duty), 1/12 Bias CT minimum, display all 0 typ: T.B.D typ: 480 Max: T.B.D Max: 600 96 HD66766 Rev. 1.0 / 30 November 2001 Rev.0.3 page part Before After 2001.11.12 79 Clock Characteristics Min: T.B.D Min: 151 (External clock frequency) Typ: 268 Typ: 275 Max: T.B.D Max: 640 (R-C oscillation clock) Test Condition Rf Test Condition Rf = 150 Ω 200Ω Min: - Min: 220 Typ: T.B.D Typ: 275 Max: - Max: 330 84 Reset Timing Characteristics Max: 10 Max: 100 (Reset rise time) 90
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
4A-ESP8266__AT_Instruction_Set__EN_v0.40.pdf
: 8 ~ 64 bytes ASCII <chl> channel id <ecn> 0 OPEN Parameters 2 WPA_PSK 3 WPA2_PSK 4 WPA_WPA2_PSK <max conn> maximum count of stations that allowed to connect to ESP8266 soft-AP range: [1, 4] Command AT+CWSAP=<ssid>,<pwd>,<chl>,<ecn>,<max conn> Response OK ERROR Parameters The same as above. This CMD
in „ESP8266 Netzwerk verbinden WDT Reset V0.9.5.2 sdk21“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL_7106_-_07_-_FN3082.pdf
AC ISSUE B) N 40 LEAD DUAL-IN-LINE PLASTIC PACKAGE E1 INCHES MILLIMETERS IAREA 1 2 3 N/2 SYMBOL MIN MAX MIN MAX NOTES -B- A - 0.250 - 6.35 4 -A- D E A1 0.015 - 0.39 - 4 A2 0.125 0.195 3.18 4.95 - PLANE -C- A2 A B 0.014 0.022 0.356 0.558 - SEATING PLANE L C B1 0.030 0.070 0.77 1.77 8 L D1 A1 eA C 0.008
in „Digitalmultimeter Modul mit 7107“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7106_7.pdf
AC ISSUE B) N 40 LEAD DUAL-IN-LINE PLASTIC PACKAGE E1 INCHES MILLIMETERS IAREA 1 2 3 N/2 SYMBOL MIN MAX MIN MAX NOTES -B- A - 0.250 - 6.35 4 -A- D E A1 0.015 - 0.39 - 4 A2 0.125 0.195 3.18 4.95 - PLANE -C- A2 A B 0.014 0.022 0.356 0.558 - SEATING PLANE L C B1 0.030 0.070 0.77 1.77 8 L D1 A1 eA C 0.008
in „ICL7107 - Funktionsweise?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fn3082.pdf
ISSUE B) N 40 LEAD DUAL-IN-LINE PLASTIC PACKAGE INDEX E1 INCHES MILLIMETERS AREA 1 2 3 N/2 SYMBOL MIN MAX MIN MAX NOTES -B- A - 0.250 - 6.35 4 -A- D E A1 0.015 - 0.39 - 4 PLANE A2 0.125 0.195 3.18 4.95 - -C- A2 A B 0.014 0.022 0.356 0.558 - SEATING PLANE L C B1 0.030 0.070 0.77 1.77 8 L D1 A1 eA C 0.008
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad9833.pdf
ns min FSYNC to SCLK falling edge setup time t8 min 10 ns min FSYNC to SCLK hold time t8 max t4− 5 ns max t9 5 ns min Data setup time t10 3 ns min Data hold time t 5 ns min SCLK high to FSYNC falling edge setup time 11 1Guaranteed by design, not productiontested. TimingDiagrams t1 MCLK t 0
in „Aus ca. 0,3V Wechselspannung (Sinus) 15 V Wechselspannung machen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fn3082.pdf
ISSUE B) N 40 LEAD DUAL-IN-LINE PLASTIC PACKAGE INDEX E1 INCHES MILLIMETERS AREA 1 2 3 N/2 SYMBOL MIN MAX MIN MAX NOTES -B- A - 0.250 - 6.35 4 -A- D E A1 0.015 - 0.39 - 4 PLANE A2 0.125 0.195 3.18 4.95 - -C- A2 A B 0.014 0.022 0.356 0.558 - SEATING PLANE L C B1 0.030 0.070 0.77 1.77 8 L D1 A1 eA C 0.008
in „Muss ich beim ICL 7107 wirklich -5V einspeisen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
P14067EJ2V0DS00.pdf
Tstg –65 to +125 °C RECOMMENDED OPERATING CONDITIONS (T = +25°C) A Characteristics Symbol MIN. TYP. MAX. Unit Drain to Source Voltage VDS 1 2 3 V Drain Current I 5 10 15 mA Input Power P in – – 0 dBm The information in this document is subject to change without notice. Before using this document, please
in „Vorverstärker für magnetische Loop“ · HF, Funk und Felder ·
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Datei
ee24xx.lst
master transmitter mode 51:ee24xx.c **** */ 52:ee24xx.c **** restart: 53:ee24xx.c **** if (n++ >= MAX_ITER) 54:ee24xx.c **** return -1; 55:ee24xx.c **** begin: 129 .LM9: 130 0046 822F mov r24,r18 131 0048 2F5F subi r18,lo8(-(1)) 132 004a 883C cpi r24,lo8(-56) 133 004c 08F0 brlo .+2 134 004e 7CC0 rjmp
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·