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PDF
hd44780.pdf
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „Sinnlose Probleme mit LCD...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „System(Mikrocontroller usw) mit Batterie betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „ATMEL_2x16LCD_Zeile 2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „LCD Ansteuerung (PIC 18F1220)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.PDF
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „LCD Display in 4 Bit Modus bringen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.PDF
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „Datenblatt zu HD44780 1602 LCD Modul Display Anzeigen 2X16 Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „Standart LCD per i2c expander betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u_Datenblatt.pdf
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „hd44780 / LCD SC1602D / ATmega16 (STK500)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „LCD Initialisierung Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
apr18650m1a.pdf
batteries ≤ 2.7 Requirement Section 1A* Wh) and Wh) and Wh and (2.7 Wh < Cell (2.7 Wh < Batt. (Class 9) Max. # Cell Max. # Batt. ≤ 20 Wh) and ≤ 100 Wh) and Max. # Max. # Cell Max. # Batt. ≤ > 8/pkg > 2/pkg Cell/Batt. ≤ 8/pkg 2/pkg No Limit/pkg Capacity Labeling Yes ** – Yes*** Batteries Only*** – Yes*** Meet
in „Dimensionsionierung von Lötfahnen an Hochstrom-Rundzellen“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
DDS.vhd
= DIN_CNT_MAX-1) then ROMADDR <= ADDRESS; -- clocked address --> BRAM end if; end if; end process; -- 1 clock cycle latency caused by BROM process begin wait until rising_edge(CLK); if BCK = '1' then if (DIN_CNT = DIN_CNT_MAX-1) then SIGN <= ACCUM(ACCUM'left); end if; end if; end process; QUADRANT <= ACCUM(ACCUM'left-1); RESULT <= signed(sine_LUT(ROMADDR)); ADDRESS <= to_integer(ACCUM(ACCUM'high-2 downto ACCUM'high-11))
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
sim18_module_osp_manual__cs-129291-dc-8__1_.pdf
506 Input Message Definitions TIME_ACC_PRIORITY Description 0x00 No priority imposed 0x01 RESP_TIME_MAX has priority over HORI_ERROR_MAX/VERT_ERROR_MAX 0x02 HORI_ERROR_MAX/VERT_ERROR_MAX has priority over RESP_TIME_MAX O 0x03 SN4_GSD4t_4.0.2-B7 or later.ffective only in builds e 0x04 – 0xFF Reserved S
in „Schlampiges GPS-Receiver Datenblatt (Maestro 2035-H)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SH1106_V2.3.pdf
a = 256. 35 SH1106 DC Characteristics (Continued) Symbol Parameter Min. Typ. Max. Unit Condition V IHC High-level input voltage 0.8 X VDD1 - V DD1 V A0, D0 - D7,RD (E),WR (R/W ),CS , V ILC Low-level input voltage VSS - 0.2 X VDD1 V CLS, CL, IM0~2 and RES . VOHC High-level output
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PDF
SH1106.pdf
a = 256. 35 SH1106 DC Characteristics (Continued) Symbol Parameter Min. Typ. Max. Unit Condition V IHC High-level input voltage 0.8 X VDD1 - V DD1 V A0, D0 - D7,RD (E),WR (R/W ),CS , V ILC Low-level input voltage VSS - 0.2 X VDD1 V CLS, CL, IM0~2 and RES . VOHC High-level output
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KEM_C1003_C0G_SMD.pdf
Dimensions Metric will govern Constant Dimensions — Millimeters (Inches) R Ref. Tape Size D E P P T Max G Min 0 1 0 2 1 Note 2 1.5 +0.10-0.0 1.75 ±0.10 4.0 ±0.10 2.0 ±0.05 0.10 0.75 25 8mm (0.059 +0.004, -0.0) (0.069 ±0.004) (0.157 ±0.004) (0.079 ±0.002) (.004) Max. (.030) (.984) Variable Dimensions — Millimeters (Inches) Tape Size Pitch E2 Min F P 1 T Max W Max A 0 0 2.0 ± 0.05 8.3 8mm Half (2mm) 6.25 3.5 ± 0.05 (0.079 ± 0.002) 1.1 (0.327) Note 5 (0.246) (0.138 ± 0.002) 4.0 ± 0.10 (0.098) 8.3 8mm Single (4mm) (0.157 ± 0.004) (0.327) 1. The cavity defined
in „Quarz Dimensionierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q64FV.PDF
PARAMETER SYMBOL UNIT MIN MAX VCC (min) to /CS Low tVSL 20 µs Time Delay Before Write Instruction tPUW 5 ms Write Inhibit Threshold Voltage V WI 1.0 2.0 V Note: 1. These parameters are characterized only. VCC VCC (max) Program,
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PDF
go-SSD1325.pdf
COM75 114 SEG90 194 SEG10 35 COM73 115 SEG89 195 SEG9 36 COM71 116 SEG88 196 SEG8 37 COM69 117 SEG87 197 SEG7 SEG86 SEG6 38 COM67 118 SEG85 198 SEG5 39 COM65 119 199 40 COM63 120 SEG84 200 SEG4 41 COM61 121 SEG83 201 SEG3 42 COM59 122 SEG82 202 SEG2 43 COM57 123 SEG81 203 SEG1 44 COM55 124 SEG80 204 SEG0
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
COM75 114 SEG90 194 SEG10 35 COM73 115 SEG89 195 SEG9 36 COM71 116 SEG88 196 SEG8 37 COM69 117 SEG87 197 SEG7 SEG86 SEG6 38 COM67 118 SEG85 198 SEG5 39 COM65 119 199 40 COM63 120 SEG84 200 SEG4 41 COM61 121 SEG83 201 SEG3 42 COM59 122 SEG82 202 SEG2 43 COM57 123 SEG81 203 SEG1 44 COM55 124 SEG80 204 SEG0
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ansteuer-IS_UC1698__Vers._1.21_fuer_DEM_240160AFGH-PW___240x160.pdf
SEG<209> VSS SEG<207> VSS SEG<206> VSS SEG<204> SEG<203> VSS SEG<201> VSS SEG<200> VSS SEG<198> SEG<197> VSS2 SEG<195> SEG<193> VSS2 SEG<192> VSS2 SEG<190> VSS2 SEG<189> SEG<187> VSS2 SEG<186> VSS2 SEG<184> VSS2 SEG<183> VSS2 SEG<181> SEG<180> VSS2 SEG<178> VSS2 SEG<177> VSS2 SEG<175> VSS2 SEG<174> SEG
in „LCD DEM240160 mit UC1698 wie Bildspeicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS-00129-GD25Q41B-Rev2.0.pdf
1.70 0.31 0.18 5.13 7.70 5.18 0.50 1.21 0 mm Nom 0.15 1.80 0.41 0.21 5.23 7.90 5.28 1.27 0.67 1.31 5 Max 2.16 0.25 1.91 0.51 0.25 5.33 8.10 5.38 0.85 1.41 8 Min 0.002 0.067 0.012 0.007 0.202 0.303 0.204 0.020 0.048 0 Inch Nom 0.006 0.071 0.016 0.008 0.206 0.311 0.208 0.050 0.026 0.052 5 Max 0.085 0.010
in „ESP8266-07 Reset Loop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q256JW_SPI_RevJ_03102021_Plus.pdf
: 0.45mm. Ball Opening: 0.35mm PCB ball land suggested <= 0.35mm Millimeters Inches Symbol Min Nom Max Min Nom Max A --- --- 1.20 --- --- 0.047 A1 0.26 0.31 0.36 0.010 0.012 0.014 A2 --- 0.85 --- --- 0.033 --- b 0.35 0.40 0.45 0.014 0.016 0.018 D 7.90 8.00 8.10 0.311 0.315 0.319 D1 4.00 BSC 0.157 BSC
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ProASICPlus_DS.pdf
±1% –40°C ±2.5% ±3.5% ±1% –55°C ±2.5% ±3.5% ±1% Acquisition Time from Cold Start Acquisition Time (max.) 30 µs fVCO ≤ 40 MHz Acquisition Time (max.) 80 µs fVCO > 40 MHz Power Consumption Analog Supply Power (max.*) 6.9 mW per PLL Digital Supply Current (max.) 7 µW/MHz Duty Cycle 50% ±0.5% 5% input period
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Display_Controller.pdf
Oscillator External Mode0 Ta = 25°C Frequency fCL 128 line 60 PWM 570.57 600.6 630.63 kHz OSC Input Max OSC under FR=1,1,1,1 fOSC 767.52 959.4 1151.28 kHz Mode 10 Default Frame fFRAME 73.15 77 80.85 Hz frequency Rating Item Symbol Condition Units Applicable Pin Min. Typ. Max. Input voltage VDD (Relative
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR-ASM-Tutorial_16_05_08_v2.pdf
Potentiometer 10k • 1 HD44780-kompatibles LCD, z.B. 4x20 oder 2x16 Zeichen Teil 6 (Der UART) • 1 Pegelwandler MAX232, MAX232Aoder MAX202 • 5 Kondensatoren • Bei einem MAX232: je 1µF Elektrolytkondensator • Bei einem MAX202 oder MAX232A: je 100nF Keramik- oder Elektrolytkondensator Die Kondensatoren dürfen auch grösser sein. Ist man sich nicht sicher, welchen MAX232 man hat (Aoder nichtA), dann die grösseren Kondensatoren 1µF nehmen, die funktionieren auch beim MAX232Aoder MAX202. • 1 9-polige SUBD-Buchse (female) • 1 dazu passendes Modem(nicht Nullmodem!)-Kabel
in „AVR-ASM-Tutorial: PDF 16.5.08“ · www.mikrocontroller.net ·
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PDF
TRC103_Transceiver_RFM_121129.pdf
0.5 0.8 863 - 870 Frequency Range 902 - 928 MHz 950 - 960 Table 51 SPI TIMING PARAMETER SYM MIN TYP MAX UNITS DESCRIPTION SCK for SPI_CONFIG - - 6 MHz Max clock freq SCK for SPI_DATA - - 1 MHz Max clock freq ns SPI_CONFIG setup time SPI_CONFIG T SU_SDI 250 - - SPI_DATA T SU_SDI 312 - - ns SPI_DATA setup
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PDF
DS_S6B1713_R42.pdf
15.0V → 17.0V 3.1 Power consumption: 100μA → 80μA Oscillator frequency (1): 19 (Min.) →17 (Min.), 25 (Max.) →27 (Max.) 3.2 Oscillator frequency (2): 22 (Min.) →20 (Min.), 28 (Max.) →30 (Max.) Modified Y-axis values of “Pad Center Coordinates” 3.3 Modified the contents of “Referential Instruction Setup Flow
in „Frage zu static indicator glcd“ · Mikrocontroller und Digitale Elektronik ·
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PDF
471D81B8d01.pdf
characteriza- tion of other AVR microcontrollers manufactured on the same process technology. Min and Max values will be available after the device is characterized. 4 ATmega8(L) 2486MS–AVR–12/03 ATmega8(L) Pin Descriptions VCC Digital supply voltage. GND Ground. Port B (PB7..PB0) XTAL1/ Port B is an 8-
in „Motorregelung für Fußballroboter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
arm.pdf
A 9..24V P4X103 7 C2 C1C1 PIX104 PION / OFF 10n L2L 3.3V power supply 733-334 4 C0 DR127-470-R 3A max. 8IGND4 1 PIGND8 SW PIN101 PIL2PIL202 VCC LM2676S-ADJ 2 0 0K V2V C1 C2C 32 C3 I2 C4C4 R1R1 R2R2 TGL34-33A 10u 100n 100n 4k7 56 0A C0 31 VKV3V3 I1 0 1 30BQ040 P1 C5C5 C1 C6 VA P2 330u C2 330u 2 R3R3
in „ARM Board Layout“ · Platinen ·
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PDF
MGA-62563__AV02-1237EN_.pdf
= 5OΩ,V = 3V (unldss otherwise specified) Symbol ParametersandTestConditions Freq Units Min. Typ. Max. StdDev Id [1,2] Device Current mA 47 62 77 2.09 NF test[1,2 Noise Figure in test circuit [1] f = 0.5 GHz dB 0.93 1.4 0.06 [1,2] [1] G test Associated Gain in test circuit f = 0.5 GHz dB 20.4 22 23.4
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PDF
tl072.pdf
TL074MFKB FK LCCC 20 1 506.98 12.06 2030 NA Pack Materials-Page 5 PACKAGE OUTLINE U0010A CFP - 2.03 mm max height SCALE 1.400 CERAMIC FLATPACK .27 MAX .045 MAX .010 .002 PIN 1 ID GLASS .005 MIN TYP TYP 1 10 8X .050 .005 .27 MAX GLASS 5 6 10X .017 .002 5X .32 .01 .241+.019 5X .32 .01 -.003 .005 .001 .067.013
in „Verstärkerschaltung läuft nicht wie gewollt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DRV8825-Datasheet.pdf
Links: DRV8825 DRV8825 www.ti.com SLVSA73F –APRIL 2010–REVISED JULY 2014 7.6 Timing Requirements MIN MAX UNIT 1 ƒSTEP Step frequency 250 kHz 2 WH(STEP) Pulse duration, STEP high 1.9 μs 3 t Pulse duration, STEP low 1.9 μs WL(STEP) 4 SU(STEP) Setup time, command before STEP rising 650 ns 5 H(STEP) Hold time
in „Nano Shield zerstört Nano“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7735S.pdf
Microprocessor Interface Applications...............................................................197 13.3.1 8080-Series MCU Interface for 8-bit Data Bus (P68=0, IM2, IM1, IM0=”100”).................... 197 13.3.2 8080-Series MCU Interface for 16-bit Data Bus (P68=0, IM2, IM1, IM0=”101”).................. 197 13.3.3 8080-Series MCU Interface for 9-bit Data Bus (P68=0, IM2, IM1, IM0=”110”).................... 197 13.3.4 8080-Series MCU Interface for 18-bit Data Bus (P68=0, IM2, IM1, IM0=”111”)............
in „[STM32/HAL] Treiber für ST7735 160 x 80 TFT“ · Projekte & Code ·
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PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
ms < X “0” < 120 ms > 1 ms VPU 1-WIRE BUS GND DS18x20/DS1822 Samples DS18x20/DS1822 Samples MIN TYP MAX MIN TYP MAX 15 ms 15 ms 30 ms 15 ms 15 ms 30 ms READ “0” SLOT READ “1” SLOT 1 ms < REC<¥ VPU 1-WIRE BUS GND Master samples > 1 ms Master samples > 1 ms 15 ms 45 ms 15 ms SOFTWARE CONTROL Delay Example
in „DS18B20 zu komplizierte Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
ms < X “0” < 120 ms > 1 ms VPU 1-WIRE BUS GND DS18x20/DS1822 Samples DS18x20/DS1822 Samples MIN TYP MAX MIN TYP MAX 15 ms 15 ms 30 ms 15 ms 15 ms 30 ms READ “0” SLOT READ “1” SLOT 1 ms < REC<¥ VPU 1-WIRE BUS GND Master samples > 1 ms Master samples > 1 ms 15 ms 45 ms 15 ms SOFTWARE CONTROL Delay Example
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PDF
lpc2468board.pdf
10n L1 733-334 4 DR127-470-R 8 GND 1 GND SW VCC LM2676S-ADJ C2 R1 R2 3.3 V power supply 100n 4k7 56 max. 3 A C3 V2 C4 V3 C5 47u TGL34-33A 100n SS24 330u R3 2k7 V4 KP-2012SGC GND GND GND GND GND GND GND GND GND N2 2 6 VIN FB B BOOST 3 B 7 C6 ON / OFF 10n L2 4 DR127-470-R 8 GND 1 GND SW 1V5 LM2676S-ADJ C7 R4 R5 1.5 V power supply 100n 220 0 max. 3 A C8 V5 C9 100n SS24 560u R6 1k V6 KP-2012SGC GND GND GND GND GND GND VBAT VCC 1V5 C C C10 C11 C12 C13 C14 C15 22u 22u 22u 22u 22u 22u B1 C16 CR1632FH 100n GND GND GND GND GND GND GND GND VCC VCC
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
w25q32fv_revh_091613.pdf
8° - 87 - W25Q32FV 10.2 8-Pin VSOP 208-mil (Package Code ST) θ θ Millimeters Inches Symbol Min Nom Max Min Nom Max A ― ― 1.00 ― ― 0.039 A1 0.05 0.10 0.15 0.002 0.004 0.006 A2 0.75 0.80 0.85 0.030 0.031 0.033 b 0.35 0.42 0.48 0.014 0.017 0.019 c 0.127 REF 0.005 REF D 5.18 5.28 5.38 0.204 0.208 0.212 E
in „micro SDHC Breakout“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Helvetica_12.C
Grafik-Font "Helvetica" 12 Pixels */ const char Helvetica_12[] = { /* HCap Height Ascent Descnt Min Max */ 8, 12, 10, 2, 31, 252, /* OffHi OffLo DeltaX DeltaY */ 3, 126, 6, 12, /* CH_1F "nix" cnt= 9 ab 894*/ 3, 135, 4, 12, /* CH_20 "space" cnt= 6 ab 903*/ 3, 141, 4, 12, /* CH_21 "exclam" cnt= 6 ab 909
in „C -> Zeichen aus Font suchen / rechnen?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ec0e6f47-c1bb-4675-a7a3-18d434f2b127.pdf
20 A1, Frequenz- Smart PLGS 2012 A1. leistung.......≤20dBm Frequenzband ..2400-2483,5MHz Temperatur.max 50 °C Ladevorgang 0 - 10 °C, bzw. 50 - 60 °C bei einem Ladestrom von max. 4 A 10 - 50 °C bei einem Ladestrom von max. 12 A Betrieb......-20 - 50 °C Lagerung 8 DE AT CH Ladezeit Akku Smart PAPS 208 A1
in „Makita 18V Akku Kapazitätsmessung“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
SMD_Catalog.pdf
MAX6326_R31-T Max ZB SC70 microproc -ve reset gen 3.080V ACF MAX6347_R46-T Max ZB SC70 microproc +ve reset gen 4.630V ACH MAX6326_R23-T Max ZB SC70 microproc -ve reset gen 2.320V ACI MAX6326_R26-T Max ZB
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
217369.pdf
, y a PARTNUMBER/STANDARDCONFIGURATIONS W a Numberof “A” “B” “C” y (10,16) “A” PartNumber Contacts Max. Max. Max. R Max. Max. 1.100 .900 .700 3 514-AG21D 14 (27,49) (22,86) (17,78) 2 . 1.220 1.010 .800 n “C” (2,54) “B” 516-AG21D 16 (30,99) (25,65) (20,32) , Max. Typ. Max. g r e i Note: Before ordering
in „Kühlkörper TO3 Befestigungslöcher zu groß?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
esp32-s2_datasheet_en.pdf
Table 9: Recommended Operating Conditions Symbol Parameter Min Typ Max Unit VDDA, VDD3P3, Voltage applied to power supply pins per power domain2.8 3.3 3.6 V VDD3P3_RTC VDD_SPI (working as 1 — 1.8 3.3 3.6 V input power supply) VDD3P3_RTC_IO 2 — 3.0 3.3 3.6 V VDD3P3_CPU
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PDF
AVR-ASM-Tutorial_16_05_08_v3.pdf
Potentiometer 10k • 1 HD44780-kompatibles LCD, z.B. 4x20 oder 2x16 Zeichen Teil 6 (Der UART) • 1 Pegelwandler MAX232, MAX232Aoder MAX202 • 5 Kondensatoren • Bei einem MAX232: je 1µF Elektrolytkondensator • Bei einem MAX202 oder MAX232A: je 100nF Keramik- oder Elektrolytkondensator Die Kondensatoren dürfen auch grösser sein. Ist man sich nicht sicher, welchen MAX232 man hat (Aoder nichtA), dann die grösseren Kondensatoren 1µF nehmen, die funktionieren auch beim MAX232Aoder MAX202. • 1 9-polige SUBD-Buchse (female) • 1 dazu passendes Modem(nicht Nullmodem!)-Kabel
in „AVR-ASM-Tutorial: PDF 16.5.08“ · www.mikrocontroller.net ·
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PDF
KS0713.pdf
→ 17.0V 3.1 Power consumption: 100 μA → 80μA Oscillator frequency (1): 19 ( Min.) →17 (Min.), 25 ( Max.) →27 (Max.) 3.2 Oscillator frequency (2): 22 ( Min.) →20 (Min.), 28 ( Max.) →30 (Max.) 3.3 Modified Y-axis values of “Pad Center Coordinates” Modified the contents of “Referential Instruction Setup
in „Dbox LCD HT12538“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_Type-C_Specification_Release_1.2.pdf
plug or receptacle. See Figure 3-57. The following apply to the power and signal contacts: • 40 mΩ (Max) initial for V BUS, GND and all other contacts. • 50 mΩ (Max) after environmental stresses. • Measure at 20 mV (Max) open circuit at 100 mA. Refer to Section 3.8 for environmental requirements and test
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PDF
DCC_Laborbooster.pdf
http://greuphone.magnetmotor.ch/#ibm 67 68 69 noch zu Machen: 70 -Stringlänge über RS232 ist (STRING_MAX_LENGTH =) 21 Zeichen, wird aber nicht abgefangen 71 -Programm säubern/vereinheitlichen und dokumentieren 72 1 'Define für PIC16F1933 2 'jetzt neu für PIC16F1936 (gleich) 3 Define CONFIG1 = 0x0fc2 4 Define CONFIG2 = 0x1dff 5 Define CLOCK_FREQUENCY = 32 'MHz 6 7 Define STRING_MAX_LENGTH = 21 8 9 'DCC-Laborbooster 10 11 'noch nicht implementiert: 12 'Stringlänge über RS232 ist STRING_MAX_LENGTH = 21 Zeichen, wird aber nicht abgefangen 13 14 'PIC-Register: LCD-Modul: Funktion:
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PDF
Sony_M610__MBX-176_.pdf
CSIP 18 E - 40 ENCHG# 15K_F set BATT_PRS# high level=3.24V for EC CSIN 17 T 7 0402 BATT 16 2 1 A 6 69 MAX1909_IINP_HW 1 2 MAX1909_IINP 8 IINP B P MAX1909_CCV_1 1 2 MAX1909_CCV 13 9 MAX1909_CLS B PR25 PR26 MAX1909_CCI 12 CCV D CLS PR28&PR30_Set input current limit to 106.01W X 0_J 0402 1 PC34 1 0 20K_F MAX1909
in „Blitzschaden an Sony Vaio Notebook“ · PC Hard- und Software ·
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PDF
UC1701.pdf
impedance. When (V -90)/10 10 is too small, image contrast will In addition, please limit the min-max spread of RC become too strong, and crosstalk will increase. decay to be: For the best result, it is recommended the LC | RCMAX – RC MIN| < 2.76µS material has the following characteristics: so that
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PDF
SSD1305.pdf
524.0 196 SEG41 1299.0 479.1 276 SEG121 -2909.8 479.1 37 TR3 -1722.5 -536.0 117 COM25 3357.5 -524.0 197 SEG42 1247.1 479.1 277 SEG122 -2961.7 479.1 38 TR2 -1657.5 -536.0 118 COM24 3402.5 -524.0 198 SEG43 1195.1 479.1 278 SEG123 -3013.7 479.1 39 TR1 -1592.5 -536.0 119 COM23 3447.5 -524.0 199 SEG44 1143.1
in „i2c lese problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSASW00146882.pdf
524.0 196 SEG41 1299.0 479.1 276 SEG121 -2909.8 479.1 37 TR3 -1722.5 -536.0 117 COM25 3357.5 -524.0 197 SEG42 1247.1 479.1 277 SEG122 -2961.7 479.1 38 TR2 -1657.5 -536.0 118 COM24 3402.5 -524.0 198 SEG43 1195.1 479.1 278 SEG123 -3013.7 479.1 39 TR1 -1592.5 -536.0 119 COM23 3447.5 -524.0 199 SEG44 1143.1
in „OLED Display mit ssd1305 Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
iso_c99.pdf
positive_sign; // "" char *negative_sign; // "" char *currency_symbol; // "" char frac_digits; // CHAR_MAX char p_cs_precedes; // CHAR_MAX char n_cs_precedes; // CHAR_MAX char p_sep_by_space; // CHAR_MAX char n_sep_by_space; // CHAR_MAX char p_sign_posn; // CHAR_MAX char n_sign_posn; // CHAR_MAX char *int_curr_symbol; // "" char int_frac_digits; // CHAR_MAX char int_p_cs_precedes; // CHAR_MAX char int_n_cs_precedes; // CHAR_MAX char int_p_sep_by_space; // CHAR_MAX char int_n_sep_by_space; // CHAR_MAX char int_p_sign_posn; // CHAR_MAX char int_n_sign_posn
in „Zeichenkette auffriemeln“ · Mikrocontroller und Digitale Elektronik ·