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PDF
DM8603EP.pdf
100Mbps3-portEthernetSwitchControllerwithMII/RMIIInterface 7.2.5 Per Port Block Control Register 2 (114h, 134h, 154h) PHY_ADR REG_ADR ABS_ADR 08h,09h,0Ah 14h 114h,134h,154h Bit ROM Type Default Description 15:11 --- RO 0h RESERVED Write as 0h, ignore when read 10:8 83h.[10:8] PSE,RW 000b BLK_UKP[2:0] 93h.[10
in „[V] DM8203 & DM8603“ · Markt ·
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PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „Temperatur Messung mit Mega8 und NTC-Widerstand 4,7k“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „NTC Berechnung nach Steinhart and Hart, 2. Gleichung geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
trc101.pdf
Note 2: At maximum, VDD+1.5 V cannot be higher than 5.5 V.. 6. DC Electrical Characteristics (Min/max values are valid over the recommended operating range Vdd = 2.2-5.4V. Typical conditions: Top = 27°C; Vdd = 3.0 V) Sym Notes Limit Unit Test Conditions Digital I/O Values min typ max Parameter 20 22
in „bidirektionale RS232 Funkbrücke mit RFM12“ · Projekte & Code ·
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PDF
de10-nano_a0.pdf
14 45 FX2_PD0 C_USB_MAX_TDI H2 TMS GCLK1p F8 CLK_MAX_24 C5 C6 RESERVED PD0 46 FX2_PD1 C_USB_MAX_TDO J2 TDI GCLK2p E10 UB2_CLK_OUT E6 GNDINT VCCINT E7 PD1 FX2_PD2 TDO GCLK3p GNDINT VCCINT 6 AGND PD2 47 F5 GNDINT VCCINT F4 VCC3P3
in „Low Cost Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MP650_datasheet.pdf
Datasheet 6.5.7 SD Card Interface Timing Fig. 6.12 SD Card Bus Timing (Defaults) Parameter Symbol Min Max. Unit Clock CLK (All values are referred to min (IH ) and max (VIL), Clock frequency Data Transfer Mode fPP 0 25 MHz Clock frequency Identification Mode fOD 0(1/100 400 kHz Clock low time WL 10 ns Clock
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX8340-B_T__DS_preliminary_v01_080313.pdf
Interface HBP Control Register (R31h).............................................................. 134 Figure 8. 50 RGB Interface VBP Control Register (R32h).............................................................. 134 Figure 8. 51 RGB Interface Signal Control Register (R33h)....................
in „SAMMELBESTELLUNG: 2"2 TFT Display mit 16bit digital interface“ · Markt ·
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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
JBT6K71-AS_A__v1.42_2006-02-07_E.PDF
correction) with software-programmable display color modes • High-speed interface operation: 20 MHz max. (when high-speed write function is used) • A broad range of display color control (batch display switching by software) • 262,144-color mode • 65,536-color mode • 8-color mode • Supply voltage: Digital
in „LCD aus Benq EL71 Handy“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA137.pdf
SHUNT MONITOR WIDE SUPPLY RANGE: ±4V to ±18V VOLTAGE-CONTROLLED CURRENT LOW QUIESCENT CURRENT: 2.9mA max SOURCE HIGH CMRR: 90dB GROUND LOOP ELIMINATOR V+ FIXED GAIN = ± 6dB 7 PACKAGES—SINGLE: 8-PIN DIP, SO-8 DUAL: 14-PIN DIP, SO-14 2 12k 6k 5 –In Sense DESCRIPTION TheINA137andINA2137aredifferentiallinereceivers
in „Differenzverstärker IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NokiaLCD_c.pdf
2003-03-09 - v0.2, Louis Frigon: 2x fonts support. 2003-03-20 - v0.3: Serialization optimized, Info : Max RAM - 512 byte : Max Stack - 10 byte ----------------------------------------------------------------------------------- ---------------*/ //#include <macros.h> //#include <iom8v.h> //#include <stdio.h
in „PORT B LCD Atmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Metex_M3610D-3650D_text.pdf
DIMENSION UNIT Q'TY PART NO. REMARKS 1 c p u KS57C2016 ea 1 ICl SAMSUNG ELECTRONICS kOREA. . . . 1 MAX130CPL MAXIM INTEGRATED PRODUCTS ea 1 1C2 LTD, U.S.A. 1 GOLDSTAR ELECTRON. kOREA 3 I . C , GD4027BD/MC14027BD ea 1 IC3 MOTOROLA SDIICON U.S.A. 4 I . C . TL062 ea 1 IC4 JRC. TI. GOLDSTAR ELECTRON. KOREA
in „Voltcraft M-3610D (Metex) reparieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
F407-IoTBoard-Schematics.pdf
TRACESWO/TIM2_CH2/SPI1_SCK/SPI3_SCK/I2S3_CK PF3/FSMC_A3/ADC3_IN9 13 PF3 FSMC_A3 SPI1_MISO JTRST PB4 134 14 PF4 FSMC_A4 SPI1_MOSI PB5 135 PB4/JNTRST/TIM3_CH1/SPI1_MISO/SPI3_MISO/I2S3ext_SD PF4/FSMC_A4/ADC3_IN14 15 PF5 FSMC_A5 DCMI_D5 PB6 136 PB5/TIM3_CH2/SPI1_MOSI/SPI3_MOSI/CAN2_RX/I2C1_SMBA/OTG_HS_ULPI_D7
in „STM32 Nucleo welches Board am besten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sed1335f.pdf
. a time. However, if a wider range of characters is Built–in CG ROM (160 characters, 5 × 7 pixels max.) CG RAM n CG RAM 2 CG RAM SAG CG RAM 1 M0 = 1 (64 characters max, 8 × 16 pixels max) Basic CG space (256 characters, 8 × 16 pixels max.) 256 characters max. CG RAM M1 = 0 CG ROM M0 = 1 Built-in CG ROM 256 characters max. (160 characters, M1 = 0 5 × 7 pixels max.) CG RAM n CG RAM 2 CG RAM CG ROM ADR CG RAM 1 (64 characters max, 8 × 16 pixels max) Note that there can be no more than 64 characters per bank. Figure 64.
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1330.pdf
. a time. However, if a wider range of characters is Built–in CG ROM (160 characters, 5 × 7 pixels max.) CG RAM n CG RAM 2 CG RAM SAG CG RAM 1 M0 = 1 (64 characters max, 8 × 16 pixels max) Basic CG space (256 characters, 8 × 16 pixels max.) 256 characters max. CG RAM M1 = 0 CG ROM M0 = 1 Built-in CG ROM 256 characters max. (160 characters, M1 = 0 5 × 7 pixels max.) CG RAM n CG RAM 2 CG RAM CG ROM ADR CG RAM 1 (64 characters max, 8 × 16 pixels max) Note that there can be no more than 64 characters per bank. Figure 64.
in „Hilfe ! Problem mit Minigrafikdisplay und AT90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1335F.pdf
. a time. However, if a wider range of characters is Built–in CG ROM (160 characters, 5 × 7 pixels max.) CG RAM n CG RAM 2 CG RAM SAG CG RAM 1 M0 = 1 (64 characters max, 8 × 16 pixels max) Basic CG space (256 characters, 8 × 16 pixels max.) 256 characters max. CG RAM M1 = 0 CG ROM M0 = 1 Built-in CG ROM 256 characters max. (160 characters, M1 = 0 5 × 7 pixels max.) CG RAM n CG RAM 2 CG RAM CG ROM ADR CG RAM 1 (64 characters max, 8 × 16 pixels max) Note that there can be no more than 64 characters per bank. Figure 64.
in „Hilfe beim Initialisieren des SED1335F gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HM17CM4096.pdf
CLLW CL DFLM t DFLM FLM tDM FR OUTPUT TIMING (VDD2.4 3.3V, Ta=-30 +85 C) ITEM SYMBOL CONDITION MIN. MAX. UNIT PORT FLM delay time tDFLM C =15pF 0 500 ns FLM FR delay time FR L 0 500 ns FR OUTPUT TIMING (VDD1.7 2.4V, Ta=-30 +85 C) ITEM SYMBOL CONDITION MIN. MAX. UNIT PORT FLM delay time tDFLM C =15pF 0
in „LCD Graphik Display mit µController ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7920_chinese_font_controller.pdf
Normal mode (450uA Typ V DD=5V) z Support 8 bit, 4 bit, serial bus MPU interface Standby mode (30uA Max V DD=5V) z 64 x 16-bits character display RAM (max. 16 z VLCD (V0~ V ss): max 7V chars x 4 lines, LCD display range 16 char. X 2 z Graphic and character mix modes display lines z Multiple instructions
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PDF
st7920_chinese.pdf
Normal mode (450uA Typ V DD=5V) z Support 8 bit, 4 bit, serial bus MPU interface Standby mode (30uA Max V DD=5V) z 64 x 16-bits character display RAM (max. 16 z VLCD (V0~ V ss): max 7V chars x 4 lines, LCD display range 16 char. X 2 z Graphic and character mix modes display lines z Multiple instructions
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Datei
ODM100.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „Frage zum ODM100 OLED Bausatz von ELV“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled1.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „AVR Oled Display odm 100-Wie ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „ODM100 OLED bleibt schwarz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
,0x00,Max_Row,0x07,0xFF); // Red => Column 65~80 Fill_Block(0x40,0x4F,0x00,Max_Row,0xF8,0x00); // Green => Column 81~96 Fill_Block(0x50,0x5F,0x00,Max_Row,0x07,0xE0); // Blue => Column 97~112 Fill_Block(0x60,0x6F,0x00,Max_Row,0x00,0x1F); // Black => Column 113~128 Fill_Block(0x70,Max_Column,0x00,Max_Row,0x00,0x00); } //-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-= // Show Character (5x7) // /
in „SSD 1351 - OLED ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SanDisk_MMC_2BRS-MMC_PM_1.0.pdf
+/- 15kV (air discharge) Human body model per IEC61000- 4-2. Vibration Operating 15 G peak-to-peak max. Non-operating 15 G peak-to-peak max. Shock Operating 1,000 G max. Non-operating 1,000 G max. Altitude1 Operating 80,000 ft. max. Non-operating 80,000 ft. max. 1Relative to sea level. © 2004 SanDisk
in „HDD und MMC Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1010.pdf
14 11 21 PD1 (TX) 22 pF EXTAL 7 TxD 13 12 20 PD0 (RX) + 1 10 M 8 MHz CTS C1 MC68HC11A1 XTAL 8 DSR 3 MAX232 52-PIN PLCC + 4 22 pF DCD DTR C2 5 3 MODA 0 V 15 2 GND MODB V RESET 17 2 + 6 DD 0 V C3 C4 26 4.7 k 1 µF + 0 V 0.1 µF C1, C2, C3, C4 — 22 mF, 25-V aluminum or tantalum CERAMIC +5 V Note: To improve
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HINK-E029A01-0629.pdf
The following specifications apply for: VSS=0V, VCI=2.4Vto 3.7V, T OPR=25℃ Symbol Parameter Min Typ Max Unit tcycle Clock Cycle Time 250 - - ns tAS Address Setup Time 150 - - ns t Address Hold Time 150 - - ns AH tCSS Chip Select Setup Time 120 - - ns tCSH Chip Select Hold Time 60 - - ns 50 - - ns tDSW
in „Sammelbestellung elektronische Preisschilder?“ · Markt ·
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Datei
with_cf.txt
v01 PTLTD HPETTBL 00060000 LTP 00000001) [ 0.000000] ACPI: Local APIC address 0xfee00000 [ 0.000000] 134MB HIGHMEM available. [ 0.000000] 887MB LOWMEM available. [ 0.000000] mapped low ram: 0 - 377fe000 [ 0.000000] low ram: 0 - 377fe000 [ 0.000000] Zone PFN ranges: [ 0.000000] DMA 0x00000010 -> 0x00001000
in „Thin client über speedport w701v einrichten“ · PC Hard- und Software ·
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PDF
ssd1623.pdf
937.0 130 SEG7 -1022.1 937.0 131 SEG6 -1091.1 937.0 132 SEG5 -1160.1 937.0 133 SEG4 -1229.1 937.0 134 SEG3 -1298.1 937.0 135 SEG2 -1367.1 937.0 136 SEG1 -1436.1 937.0 137 SEG0A -1505.1 937.0 138 COMA -1669.6 937.0 SSD1623 Rev 0.10 P 13/44 Nov 2007 Solomon Systech X Y SSD1623 Pad 1,2,3 ->10 Die size
in „E-Ink Display im Blutzuckermeßgerät“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display.c
--------------------------------------------------------------- */ static const uint16_t pwmtable8[MAX_COLOR_STEPS] = { 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 7, 8, 9, 11, 13, 14, 16, 18, 20, 23, 25, 28, 31, 33, 36, 40, 43, 46, 50, 54, 57, 61, 66, 70, 74, 79, 84, 89, 94, 99, 105, 110, 116, 122, 128, 134
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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 ·
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PDF
Transistoren_cht.pdf
600 0.75 9 TO-220 2SK2866 A ST STP9NB60FP 600 0.75 5.2 TO-220FP 2SK2843 A ST STU10NB80 800 0.85 9.7 MAX220 ST STU11NB60 600 0.65 10.7 MAX220 2SK2843 B ST STU13NB50 500 0.45 13 MAX220 2SK2842 B ST STU13NB60 600 0.45 12.6 MAX220 ST STU13NB60I 600 0.45 8 MAX220 ST STU16NB50 500 0.33 15.6 MAX220 ST STU16NB50I 500 0.33 10 MAX220 ST STU6NA100 1000 1.7 6 MAX220 ST STU6NA90 900 2 5.8 MAX220 ST STU7NA80 800 1.5 6.5 MAX220 ST STU7NA90 900 1.3 7.3 MAX220 ST STU7NB90 900 1.45 7.4 MAX220 ST STU8NA80 800 1 8.3 MAX220 ST STU8NB90
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Power_MOSET_Cross_reference.pdf
600 0.75 9 TO-220 2SK2866 A ST STP9NB60FP 600 0.75 5.2 TO-220FP 2SK2843 A ST STU10NB80 800 0.85 9.7 MAX220 ST STU11NB60 600 0.65 10.7 MAX220 2SK2843 B ST STU13NB50 500 0.45 13 MAX220 2SK2842 B ST STU13NB60 600 0.45 12.6 MAX220 ST STU13NB60I 600 0.45 8 MAX220 ST STU16NB50 500 0.33 15.6 MAX220 ST STU16NB50I 500 0.33 10 MAX220 ST STU6NA100 1000 1.7 6 MAX220 ST STU6NA90 900 2 5.8 MAX220 ST STU7NA80 800 1.5 6.5 MAX220 ST STU7NA90 900 1.3 7.3 MAX220 ST STU7NB90 900 1.45 7.4 MAX220 ST STU8NA80 800 1 8.3 MAX220 ST STU8NB90
in „Schaltregler Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSM486SE-DIGITAL-LOGIC.pdf
ELAN400 Speaker 486-66MHz LCD/VGA Video RAM DRAM 1 MByte 2 - 32 MByte Controller 65548 IrDA RTC COM2 MAX211 / ADM489 LCD CRT MSM486SEV only LiBAT COM1 3 5 ISA-BUS PC/104 BIOS Super I/O KB Char./L Watchdog UART EEPROM BUS 128kByte 37C666 Mouse CD 16C550 2kByte MAX2lMAX2ll MAX2ll FD IDE LPT1 COM2 COM3 KB
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PDF
msp430f1232.pdf
0.5 1 standard inputs − RST/NMI, TEST; JTAG: TCK, TMS, TDI/TCLK PARAMETER TEST CONDITIONS MIN TYP MAX UNIT VIL Low-level input voltage VSS V SS+0.6 V V CC = 2.2 V / 3 V VIH High-level input voltage 0.8×VCC V CC V inputs Px.x, TAx PARAMETER TEST CONDITIONS V MIN TYP MAX UNIT CC 2.2 V/3 V 1.5 cycle Port
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
systemhandbuch_isr.pdf
Verdichterlaufzeit Minimum 2842 nicht verfügbar Verdichtersillstandszeit Min 2843 nicht verfügbar Ausschalttemp. max 2844 nicht verfügbar Reduktion Ausschaltemp Max 2845 nicht verfügbar Heissgastemp Max 2846 nicht verfügbar ND-Verzögerung beim Start 2852 nicht verfügbar 38 System-Handbuch ISR-Plus Version 01.09 Parameter
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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PDF
ks0073.pdf
RAM (CGRAM): 64×8 bits. (8 characters × 5 × 8 dot) - Segment Icon RAM (SEGRAM): 16×8 bits. (96 icons max.) - Display Data RAM (DDRAM): 80×8 bits. (80 characters max.) • Low power operation - Power supply voltage range: 2.7 to 5.5 V (VDD) - LCD Drive voltage range: 3.0 to 13.0 V (VDD to V5) • CMOS process
in „RE bit beim KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
RAM (CGRAM): 64×8 bits. (8 characters × 5 × 8 dot) - Segment Icon RAM (SEGRAM): 16×8 bits. (96 icons max.) - Display Data RAM (DDRAM): 80×8 bits. (80 characters max.) • Low power operation - Power supply voltage range: 2.7 to 5.5 V (VDD) - LCD Drive voltage range: 3.0 to 13.0 V (VDD to V5) • CMOS process
in „EA DIP204-4 Datenblatt verständnis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
RAM (CGRAM): 64×8 bits. (8 characters × 5 × 8 dot) - Segment Icon RAM (SEGRAM): 16×8 bits. (96 icons max.) - Display Data RAM (DDRAM): 80×8 bits. (80 characters max.) • Low power operation - Power supply voltage range: 2.7 to 5.5 V (VDD) - LCD Drive voltage range: 3.0 to 13.0 V (VDD to V5) • CMOS process
in „LCD Display DIP204-6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
RAM (CGRAM): 64×8 bits. (8 characters × 5 × 8 dot) - Segment Icon RAM (SEGRAM): 16×8 bits. (96 icons max.) - Display Data RAM (DDRAM): 80×8 bits. (80 characters max.) • Low power operation - Power supply voltage range: 2.7 to 5.5 V (VDD) - LCD Drive voltage range: 3.0 to 13.0 V (VDD to V5) • CMOS process
in „Initialisierung von KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_driver_ks0073.pdf
RAM (CGRAM): 64×8 bits. (8 characters × 5 × 8 dot) - Segment Icon RAM (SEGRAM): 16×8 bits. (96 icons max.) - Display Data RAM (DDRAM): 80×8 bits. (80 characters max.) • Low power operation - Power supply voltage range: 2.7 to 5.5 V (VDD) - LCD Drive voltage range: 3.0 to 13.0 V (VDD to V5) • CMOS process
in „LCD Display ansteuern mit KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
RAM (CGRAM): 64×8 bits. (8 characters × 5 × 8 dot) - Segment Icon RAM (SEGRAM): 16×8 bits. (96 icons max.) - Display Data RAM (DDRAM): 80×8 bits. (80 characters max.) • Low power operation - Power supply voltage range: 2.7 to 5.5 V (VDD) - LCD Drive voltage range: 3.0 to 13.0 V (VDD to V5) • CMOS process
in „Probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt32a1.pdf
JT RST CHIP MAX 0R05 1/10W TZAI YUAN ▯ R401 061G0603000 JT RST CHIP MAX 0R05 1/10W TZAI YUAN ▯ R1133 061G0603000 JT RST CHIP MAX 0R05 1/10W TZAI YUAN ▯ R1131 061G0603000 JT RST CHIP MAX 0R05 1/10W TZAI YUAN ▯ R1129
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
GN80_2_NMEA_Protocol__1_.pdf
syntax below: “Param”: Log Output Sentence <Log Output Sentence Length in bytes> “GGAnn”:$GPGGA<82 max> GGA00-GGA60 [5](sec){GGA01} “ZDAnn”:$GPZDA<36> ZDA00-ZDA60 [5](sec){ZDA01} “GLLnn”:$GPGLL<47> GLL00-GLL60 [5](sec){GLL00} “GSAnn”:$GPGSA<69 max> GSA00-GSA60 [5](sec){GSA00} “GSVnn”:$GPGSV<70 max> GSV00-GSV60 [5](sec){GSV01} “VTGnn”:$GPVTG<46 max> VTG00-VTG60 [5](sec){VTG01} “RMCnn”:$GPRMC<77 max> RMC00-RMC60 [5](sec){RMC00} “ancnn”:$PFEC,GPanc<62> anc00-anc60 [5](sec){anc00} “accnn”:$PFEC,GPacc<49> acc00-acc60 [5](sec){acc00} “astnn”:$PFEC,
in „DGPS korreliert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3108fb.pdf
0.2 μA VAUX Quiescent Current No Load, All Outputs Charged 6 9 μA LDO Output Voltage 0.5mA Load l 2.134 2.2 2.266 V LDO Load Regulation For 0mA to 2mA Load 0.5 1 % LDO Line Regulation For VAUX from2.5V to 5V 0.05 0.2 % LDO Dropout Voltage LDO = 2mA l 100 200 mV LDO Current Limit VLDO = 0V l 4 11 mA VOUT
in „Blink LED mit Ladungspumpe für sehr niedrige Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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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
TDA-884.pdf
5X-N2 series processors LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VP supply voltage − 9.0 V Tstg storage temperature −25 +150 °C Tamb operating ambient temperature 0 70 °C T soldering temperature for 5 s − 260 °C sol Tj
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
, 4-pA max bias current, 2-µV/ºC max drift, 200-µV offset, 0.001% max non-linearity INA126/dual INA2126 Low power: 175-µA/channel supply current, 3-µV/ºC max drift, 250-µV max offset Operational Amplifiers OPA130
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ecp_ec.pdf
0 ≤ V ≤ V (MAX) — — 150 µA BHLO IN IH IBHLH Bus Hold High Overdrive current 0 ≤ VIN≤ VIH (MAX) — — -150 µA V BHT Bus Hold trip Points 0 ≤ VIN≤ VIH (MAX) V ILAX) — V IH(MIN) V 2 VCCIO = 3.3V, 2.5V, 1.8V, 1.5V, 1.2V
in „Verwendung der Pins eines Lattice LFECP6 mit Config-Dual-Funktion als I/Os“ · FPGA, VHDL & Co. ·
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PDF
ecp_ec.pdf
0 ≤ V ≤ V (MAX) — — 150 µA BHLO IN IH IBHLH Bus Hold High Overdrive current 0 ≤ VIN≤ VIH (MAX) — — -150 µA V BHT Bus Hold trip Points 0 ≤ VIN≤ VIH (MAX) V ILAX) — V IH(MIN) V 2 VCCIO = 3.3V, 2.5V, 1.8V, 1.5V, 1.2V
in „SPI-Slave im FPGA, Signal-Delay an MISO minimieren“ · FPGA, VHDL & Co. ·
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Datei
dt_502813.html
right;"> <th></th> <th>count</th> <th>score_sum</th> <th>score_min</th> <th>score_mean</th> <th>score_max</th> <th>score_cnt_low</th> <th>score_cnt_null</th> <th>score_cnt_high</th> <th>cl_min</th> <th>cl_mean</th> <th>cl_max</th> </tr> </thead> <tbody> <tr> <th>Oskar (Gast)</th> <td>1</td> <td>-2</td>
in „Linux wird nicht wirklich akzeptiert, woran liegt das ?“ · PC Hard- und Software ·