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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 „Busy-Flag bei LCDs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u.pdf
should be minimized. OSC2 VCC = 5 V V CC = 3 V 500 500 400 400 z z k k ( 300 ( 300 S (270) S (270) fO max. fO max. 200 typ. 200 typ. min. 100 100 min. 50 (91100 150 50 (75) 100 150 Rf(k ) R fk ) 55 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, CC, V5) and each common signal pin
in „2. Zeile 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 „LCD ohne Umlaute?“ · 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 ohne Datenblatt oder Hinweise zur Pinbelegung“ · 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 (von Tel) -Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780.pdf
should be minimized. OSC2 VCC = 5 V VCC = 3 V 500 500 400 400 z z k k ( 300 ( 300 S (270) S (270) fO max. f max. 200 200 typ. typ. min. min. 100 100 50 (91100 150 50 (75) 100 150 R fkΩ) R fk Ω 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
in „HD44780 Zeichen im ROM“ · 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 „Sinnlose Probleme mit LCD...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
should be minimized. OSC2 VCC = 5 V V CC = 3 V 500 500 400 400 z z k k ( 300 ( 300 S (270) S (270) fO max. fO max. 200 typ. 200 typ. min. 100 100 min. 50 (91100 150 50 (75) 100 150 Rf(k ) R fk ) 55 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, CC, V5) and each common signal pin
in „444780 LCD 5x10 klappt nicht richtig!“ · 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
HD44780.pdf
should be minimized. OSC2 VCC = 5 V V CC = 3 V 500 500 400 400 z z k k ( 300 ( 300 S (270) S (270) fO max. fO max. 200 typ. 200 typ. min. 100 100 min. 50 (91100 150 50 (75) 100 150 Rf(k ) R fk ) 55 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, CC, V5) and each common signal pin
in „Ist der HD44780 nun 8 oder 16 Zeichen lang?“ · 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
Mega32.pdf
to eight bits. In phase correct PWM mode the counter is incremented until the counter value matches MAX. When the counter reaches MAX, it changes the count direction. The TCNT0 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 33
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
16Mb, 25s(typ.) for 32Mb, and 50s(typ.) for 64Mb LowPowerConsumption - Low active read current: 25mA(max.) at 86MHz, 20mA(max.) at 66MHz and 10mA(max.) at 33MHz -Lowactiveprogrammingcurrent:20mA(max.) - Low active erase current: 20mA (max.) - Low standby current: 20uA (max.) -Deeppower-downmode1uA(typical
in „MX25L160(5AM2C) neu beschreiben? Gibt es eine DIY Lösung?“ · Mikrocontroller und Digitale Elektronik ·
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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
93LC56B.pdf
unless otherwise Industrial (I): VCC = +2.5V to +6.0V Tamb = -40°C to +85°C noted Parameter Symbol Min. Max. Units Conditions V 1 2.0 Vcc +1 V 2.7V V CC 5.5V (Note 2) High level input voltage V 2 0.7 Vcc Vcc +1 V V CC< 2.7V V IL -0.3 0.8 V V CC> 2.7V (Note 2) Low level input voltage V IL -0.3 0.2 Vcc V V
in „Primo EEPROM umprogrammieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EE93LC46A.pdf
unless otherwise Industrial (I): VCC = +2.5V to +6.0V Tamb = -40°C to +85°C noted Parameter Symbol Min. Max. Units Conditions V I1 2.0 Vcc +1 V 2.7V < CC ≤ 6.0V (Note 2) High level input voltage V I2 0.7 VCC Vcc +1 V VCC < 2.7V VI1 -0.3 0.8 V VCC > 2.7V (Note 2) Low level input voltage VI2 -0.3 0.2 Vcc V
in „Programieren eines 93LC46A (EEPROM) mit einem Attiny 13A“ · 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
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
Datasheet_ILI9225DS_V022.pdf
267 206 VCOMR 6155 -267 7 DUMMY3 -6335 -267 57 C11P -3335 -267 107 VCL -335 -267 157 AVSS 3215 -267 207 CONTACT 6215 -267 8 VGH -6275 -267 58 C11M -3275 -267 108 VCL -275 -267 158 AVSS 3275 -267 208 CONTACT 6275 -267 9 VGH -6215 -267 59 C11M -3215 -267 109 VCL -215 -267 159 AVSS 3335 -267 209 DUMMY10
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66766R.PDF
COM120 8664 1145 286 SEG345 5586 1145 366 SEG265 2546 1145 47 DB8 -3320 -1168 127 C11+ 6772 -1168 207 COM122 8626 1145 287 SEG344 5548 1145 367 SEG264 2508 1145 48 GNDDUM5 -3163 -1168 128 C11+ 6872 -1168 208 COM124 8588 1145 288 SEG343 5510 1145 368 SEG263 2470 1145 49 DB7 -3006 -1168 129 C11- 6972
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADV7175A.pdf
20 A 1.112 1.235 1.359 V REF VREFOUT POWER REQUIREMENTS 7 VAA 4.75 5.0 5.25 V Normal Power Mode I (max) 8 150 155 mA DAC 8 DAC 9min) 20 mA CCT 100 150 mA Low Power Mode I (max) 8 80 mA DAC 8 DAC (min) 15 mA CCT 9 100 150 mA Power Supply Rejection Ratio COMP = 0.1 F 0.01 0.5 %/% NOTES 1The max/min specifications
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PDF
OTM3225A.pdf
, IOVCC=1.65~3.30V Table 13-7 Item Symbol Unit Min. Typ. Max. VSYNC/HSYNC Setup time tSYNCS clock 0 - 1 ENABLE Setup time tENS ns 10 - - ENABLE Hold time tENH ns 20 - - DOTCLK low-level pulse width PWDL ns 40 - - DOTCLK high-level pulse width PWDH ns 40 - - DOTCLK
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
O-Ring_Uebersicht_0304.pdf
239 91,67 2-256 145,64 2-273 247,24 2-206 12,29 2-223 40,87 2-240 94,84 2-257 148,52 2-274 253,59 2-207 13,87 2-224 44,04 2-241 98,02 2-258 151,99 2-275 266,29 2-208 15,47 2-225 47,22 2-242 101,19 2-259 158,34 2-276 278,99 2-209 17,04 2-226 50,39 2-243 104,37 2-260 164,69 2-277 291,69 2-210 18,64 2-227
in „Langlebiges Schmiermittel für O-Ringe in Sanitär-Armaturen“ · Haus & Smart Home ·
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PDF
datasheet.pdf
Output Voltage RLS 4 M7 V = 451 VDC R LS 4 M7 DC OV DC R OVP Sense Output Voltage VR OVP Input Input DC MAX @ 100 VDC = 76% Voltage DC MAX @ 100 VDC = 76% Voltage DC @ 375 VDC = 41% DC @ 375 VDC = 41% MAX D V MAX D V Reset 10 k7 CONTROL CONTROL Q C C R ROVP >3k7 S S - - PI-4756-121007 PI-4719-120307 Figure
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Google_Uebersetzer-Prescaler_12_Ghz.html
8px;margin-left:12px}@media screen and (min-width:361px){.gb_l.gb_9a{width:354px}}@media screen and (max-width:361px){.gb_l.gb_9a{width:calc(100vw - 12px *2)}}.gb_l.gb_9a.gb_ab{max-height:-webkit-calc(100vh - 44px - 100px);max-height:calc(100vh - 44px - 100px)}.gb_l.gb_9a.gb_bb{max-height:-webkit-calc(
in „Vorverstärker und Vorteiler für Frequenzzähler“ · HF, Funk und Felder ·
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PDF
handy_lcd_schaltplan.pdf
Earphone ILI9341 - LDI (3.5 phi) DC Motor C- type TSP Receiver (9phi, 3.4T) Speaker (1115, 3.5T) PMU(MAX8986) GPS 3 DCDC BCM4751 BCM21552 / B0 18 LDOs (11X11 464 pin FBGA) WI-FI/BT/FM BCM4330 GSM/GPRS/EDGE Battery(1200mAh) /WCDMA/HSUPA/HSDPA ARM1136 (832 MHz) SIM Card Camera I/F 1.8V/3.0V Support (Up to
in „Altes Handy Display zum Basteln“ · Mikrocontroller und Digitale Elektronik ·
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Datei
datei-dmesg.txt
device (0005 -> 0007) [ 0.573199] scsi0 : ata_piix [ 0.573536] scsi1 : ata_piix [ 0.573607] ata1: PATA max UDMA/100 cmd 0x1f0 ctl 0x3f6 bmdma 0x1860 irq 14 [ 0.573611] ata2: PATA max UDMA/100 cmd 0x170 ctl 0x376 bmdma 0x1868 irq 15 [ 0.574328] libphy: Fixed MDIO Bus: probed [ 0.574560] tun: Universal TUN/TAP device driver, 1.6 [ 0.574562] tun: (C) 1999-2004 Max Krasnyansky <maxk@qualcomm.com> [ 0.574786] PPP generic driver version 2.4.2 [ 0.574982] ehci_hcd: USB 2.0 'Enhanced' Host Controller (EHCI) Driver [ 0.575023] ehci-pci: EHCI PCI platform driver [ 0.575349
in „Limux:: Netzwerk und WLAN futsch.“ · PC Hard- und Software ·
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PDF
MP600_DataSheet.pdf
Data bit 15~12 MA[7:0] MA[7:0] 121, 120, 119, 118, 117,O DRAM Address Bus bit 7~0 116, 115, 114 / 207, 206, PROM/NOR Flash Address Bus bit 7~0 205, 204, 202, 201, 200, 199 MA[11:8] MA[11:8] 125, 124, 123, 122 / 211O DRAM Address Bus bit 11~8 210, 209, 208 PROM/NOR Flash Address Bus bit 11~8 MA[12] MA
in „Datenblatt von Magic Pixel MP600BUCG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
44 COM55 124 SEG80 204 SEG0 45 COM53 125 SEG79 205 NC 46 COM51 126 SEG78 206 NC 47 COM49 127 SEG77 207 NC 48 COM47 128 SEG76 208 NC 49 COM45 129 SEG75 209 NC 50 COM43 130 SEG74 210 COM0 SEG73 COM2 51 COM41 131 SEG72 211 COM4 52 COM39 132 212 53 COM37 133 SEG71 213 COM6 54 COM35 134 SEG70 214 COM8 55
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
44 COM55 124 SEG80 204 SEG0 45 COM53 125 SEG79 205 NC 46 COM51 126 SEG78 206 NC 47 COM49 127 SEG77 207 NC 48 COM47 128 SEG76 208 NC 49 COM45 129 SEG75 209 NC 50 COM43 130 SEG74 210 COM0 SEG73 COM2 51 COM41 131 SEG72 211 COM4 52 COM39 132 212 53 COM37 133 SEG71 213 COM6 54 COM35 134 SEG70 214 COM8 55
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<219> VSS SEG<218> SEG<216> VSS SEG<215> VSS SEG<213> VSS SEG<212> VSS SEG<210> 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
in „LCD DEM240160 mit UC1698 wie Bildspeicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tle2082.pdf
8.0 mW/°C 640 mW 344 mW 200 mW recommended operating conditions C SUFFIX I SUFFIX M SUFFIX UNIT MIN MAX MIN MAX MIN MAX Supply voltageCC± ±2.25 ±19 ±2.25 ±19 ±2.25 ±19 V V CC± = ±5 V –0.9 5 –0.8 5 –0.8 5 Common-mode input voltageICV V = ±15 V –10.9 15 –10.8 15 –10.8 15 V CC± Operating free-air temperaAure
in „Bauteil gesucht: unbekannter TI-Baustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S29GL512N.pdf
Max 25 25 35 35 ns C t t Output Enable to Output Delay Max 25 25 35 35 ns GLQV OE EHQZ DF Chip Enable to Output High Z (Note 1) Max 20 ns tGHQZ DF OutputEnabletoOutput HighZ(Note1) Max 20 ns t t Output
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7707.pdf
TOM. There are two cases that give a transition without Compare Match. OCR0A changes its value from MAX, like in Figure 14-7. When the OCR0A value is MAX the OCn pin value is the same as the result of a down-counting Compare Match. To ensure symmetry around BOTTOM the OCn value at MAX must correspond
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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PDF
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
Modbus_RTU___Kommunikationshandbuch_fuer_EATON_DC1.pdf
(max: 500.0 Hz/ 30000 rpm) 206 P2-06 f-Fix6 rw RUN 3000 ≙ 50.0 Hz P1-02 (min: 0 Hz/0 rpm) - U16 P1-01 (max: 500.0 Hz/ 30000 rpm) 207 P2-07 f-Fix7 rw RUN 3000 ≙ 50.0 Hz P1-02 (min: 0 Hz/0 rpm) - U16 P1-01
in „ich bitte um Mitt-Hilfe in Sachen RS485; Modbus; Frquenzumrichter; qModMaster“ · Mikrocontroller und Digitale Elektronik ·
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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
171573-da-01-en-LT_1073_5_DIP_8_STEP_UP_1V_5V.pdf
specifications are at A = 25°C. IN= 1.5V unless otherwise specified. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS I Quiescent Current Switch Off 95 130 A Q IQ Quiescent Current, Step-Up No Load LT1073-5 135 A Mode Configuration LT1073-12 250 A VIN Input Voltage Step-Up Mode 1.15 12.6 V 1.0 12.6 V Step-Down
in „LT 1073 Spg.schwankungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40171a.pdf
program goes to normal operation at max */ /* dim. The test mode brightens to full bright, dims to */ /* full dim, flashes full bright twice, and repeats. */ /******************************************************** */ void Buttoncheck()
in „Dimm-IC (230V) für Arduino gesucht“ · Haus & Smart Home ·
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PDF
lm25576.pdf
at TJ= 25°C, and V IN24 V, R =T32.4 kΩ (unless otherwise noted). PARAMETER TEST CONDITIONS MIN TYP MAX UNIT ERROR AMPLIFIER Feedback Voltage Vfb = COMP T = –40°C to +125°C 1.207 1.225 1.243 V J FB Bias Current 17 nA DC Gain 70 dB COMP Sink / Source Current TJ= –40°C to +125°C 3 mA Unity Gain Bandwidth
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 18€)“ · Markt ·
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PDF
ATmega32.pdf
to eight bits. In phase correct PWM mode the counter is incremented until the counter value matches MAX. When the counter reaches MAX, it changes the count direction. The TCNT0 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 33
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·