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lm324_DeepL_de.pdf
angegeben)1) LM324B, LM324BA, LM324xx, LM224xx, LM2902 LM2902B, LM2902BA LM2902xxx, LM124x UNIT MIN MAX MIN MAX MIN MAX Versorgungsspannung, V CC(2) 40 26 32 V Differenzeingangsspannung, VID3) ±40 ±26 ±32 V Eingangsspannung, VI(beide Eingänge) -0.3 40 -0.3 26 -0.3 32 V Dauer des Ausgangskurzschlusses
in „gutes Übersetzungsprogramm für Datenblätter gesucht“ · Offtopic ·
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PDF
ST7920-1.pdf
Normal mode (450uA Typ VDD=5V) l Support 8-bit, 4-bit and serial bus MPU interface Ø Standby mode (30uA Max VDD=5V) l 64 x 16-bit display RAM (DDRAM) l VLCD (V0 to VSS: max 7V Ø Supports 16 words x 4 lines (Max) l Graphic and character mixed display mode Ø LCD display range 16 words x 2 lines l Multiple instructions
in „DDRAM Adressierung (DG-14032 GLCD)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7920.pdf
Normal mode (450uA Typ VDD=5V) l Support 8-bit, 4-bit and serial bus MPU interface Ø Standby mode (30uA Max VDD=5V) l 64 x 16-bit display RAM (DDRAM) l VLCD (V0 to VSS: max 7V Ø Supports 16 words x 4 lines (Max) l Graphic and character mixed display mode Ø LCD display range 16 words x 2 lines l Multiple instructions
in „Display mit ST7920 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7920.pdf
Normal mode (450uA Typ VDD=5V) l Support 8-bit, 4-bit and serial bus MPU interface Ø Standby mode (30uA Max VDD=5V) l 64 x 16-bit display RAM (DDRAM) l VLCD (V0 to VSS: max 7V Ø Supports 16 words x 4 lines (Max) l Graphic and character mixed display mode Ø LCD display range 16 words x 2 lines l Multiple instructions
in „Display mit ST7920 Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7920.pdf
Normal mode (450uA Typ VDD=5V) l Support 8-bit, 4-bit and serial bus MPU interface Ø Standby mode (30uA Max VDD=5V) l 64 x 16-bit display RAM (DDRAM) l VLCD (V0 to VSS: max 7V Ø Supports 16 words x 4 lines (Max) l Graphic and character mixed display mode Ø LCD display range 16 words x 2 lines l Multiple instructions
in „avr asm st7920“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sony_str-ks360_ks360s_ver-1.0_sm.pdf
) DCACON/OFF 22k (KS360/KS360S: US, CND) R1143 C1076 DCACON/OFF 1 47k (KS360S:AUS) 100 0.01 TC74VHC153B 2 ∗R1039 p p . . . TC74VHC153A TC74VHC153B 1k (KS360/KS360S: 2 0 2 3 3 3 TC74VHC153A 3 AEP (for HT-SS360), UK (for HT-SS360)) . . . . . . . . . . . . . . . . . . . . 2 1 2 BD3842CLK 47k (KS360S: US
in „Sony STR KS360S Verstärker geht auf Standby, LED blinkt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2595.pdf
Note 4) DEVICE PARAMETERS = Ib Feedback Bias Current Adjustable Version Only,FB 1.3V 10 nA 50/100 nA (max) fO Oscillator Frequency (Note 6) 150 kHz 127/110 kHz(min) 173/173 kHz(max) VSAT Saturation Voltage OUT = 1A (Notes 7, 8) 1 V 1.2/1.3 V(max) DC Max Duty Cycle (ON) (Note 8) 100 % Min Duty Cycle (OFF) (Note 9) 0 ICL Current Limit Peak Current (Notes 7, 8) 1.5 A 1.2/1.15 A(min) 2.4/2.6 A(max) IL Output Leakage Current Output = 0V (Notes 7, 9) and (Note 10) 50 µA(max) Output = −1V 2 mA 15 mA(max) IQ Quiescent Current (Note 9) 5 mA 10 mA(max) ISTBY Standby Quiescent ON/OFF pin = 5V (OFF)
in „Schaltregler LM2595“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
Note 4) DEVICE PARAMETERS b Feedback Bias Current Adjustable Version OnlFBVe 1.3V 10 nA 50/100 nA (max) f Oscillator Frequency (Note 6) 150 kHz O 127/110 kHz(min) 173/173 kHz(max) VSAT Saturation Voltage IOUT e 1A (Notes 7 and 8) 1 V 1.2/1.3 V(max) DC Max Duty Cycle (ON) (Note 8) 100 % Min Duty Cycle (OFF) (Note 9) 0 I Current Limit Peak Current (Notes 7 and 8) 1.5 A CL 1.2/1.15 A(min) 2.4/2.6 A(max) L Output Leakage Current (Notes 7, 9, and 10) Output e 0V 50 mA(max) Output e b 1V 2 mA 15 mA(max) Q Quiescent Current (Note 9) 5 mA 10 mA(max) STBY Standby Quiescent ON/OFF pin e 5V (OFF) (Note 10
in „Schaltregler 9-18V input 14-V output“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
Note 4) DEVICE PARAMETERS b Feedback Bias Current Adjustable Version OnlFBVe 1.3V 10 nA 50/100 nA (max) f Oscillator Frequency (Note 6) 150 kHz O 127/110 kHz(min) 173/173 kHz(max) VSAT Saturation Voltage IOUT e 1A (Notes 7 and 8) 1 V 1.2/1.3 V(max) DC Max Duty Cycle (ON) (Note 8) 100 % Min Duty Cycle (OFF) (Note 9) 0 I Current Limit Peak Current (Notes 7 and 8) 1.5 A CL 1.2/1.15 A(min) 2.4/2.6 A(max) L Output Leakage Current (Notes 7, 9, and 10) Output e 0V 50 mA(max) Output e b 1V 2 mA 15 mA(max) Q Quiescent Current (Note 9) 5 mA 10 mA(max) STBY Standby Quiescent ON/OFF pin e 5V (OFF) (Note 10
in „5 Volt 1A fürs auto passiv gekühlt gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Littelfuse_PTC_SMD_Catalog_Datasheet.pdf-1021736.pdf
G C D E F A D Table S4 — Dimensions in Millimeters (Inches) A B C D E F G H Part Figure Number Min Max Min Max Min Max Min Max Min Max Min Max Min Max Min femtoSMDC Series; Size 1608mm/0603mils femtoSMDC005F 1.40 1.80 0.45 0.85 0.60 1.00 0.10 0.50 0.075 — — — — — — S2 (0.055) (0.071) (0.017) (0.033)(
in „[V] 24 St. Selbstrückstellende Polyswitch SMD Littlefuse SMD200F-2 2A/15V“ · Markt ·
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PDF
CY8C4147AZI.pdf
SID274 GBW_LO power=lo – 1 – Input and output are 0.2 V toDDA -0.2 V I V = 2.7 V, 500 mV from rail OUT_MAX DDA power=hi 10 – – Output is 0.5 V DDAV SID275 IOUT_MAX_HI -0.5 V SID276 IOUT_MAX_MID power=mid 10 – – mA Output is 0.5 V DDAV -0.5 V Output is 0.5 V to V SID277 IOUT_MAX_LO power=lo – 5 – DDA -0.5
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Schwingkond-53278649.pdf
differential pair, the transducer's layout used a cross-quad geometry. Variations in process parameter A .v max(A),max(B) min(A),max(B) Variations 1/2 of device 1 1/2of device 2 in process . parameter B l _ II _ max(A),min(B) min(A),min(B) F 1/2 of device 2 1/2 of device 1 Figure 3.15: Cross-quad layout sketch
in „DC-Messverstärker (Chopper) mit Kapazitätsdioden (diskret)“ · Analoge Elektronik und Schaltungstechnik ·
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STM32F405-7x.pdf
X X X X X 5.25 10.5 (max. 84 MHz) APB1 USART2 X X X X X X 2.62 5.25 (max. 42 MHz) APB1 USART3 X X X X X X 2.62 5.25 (max. 42 MHz) APB1 UART4 X - X - X - 2.62 5.25 (max. 42 MHz) APB1 UART5 X - X - X - 2.62 5.25 (max. 42 MHz)
in „STM32 DCMI (Kamera) Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DAC904_14-Bit_165MSPS_Digital-to-Analog_Converters.pdf
Gage Plane 0.010 (0,25) 1 8 0 ñ8 0.050 (1,27) A 0.016 (0,40) Seating Plane 0.012 (0,30) 0.104 (2,65) MAX 0.004 (0,10) 0.004 (0,10) PINS ** DIM 16 18 20 24 28 A MAX 0.410 0.462 0.510 0.610 0.710 (10,41) (11,73) (12,95) (15,49) (18,03) 0.400 0.453 0.500 0.600 0.700 A MIN (10,16) (11,51) (12,70) (15,24) (
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PDF
catalog.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 2.46 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298 [Price
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PDF
catalog.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 2.46 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298 [Price
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PDF
catalog-3.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 3.3899 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298
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PDF
A300_PCA9538_NXP.pdf
Conditions Min Typ Max Unit Supplies V DD supply voltage 2.3 - 5.5 V IDD supply current operating mode; VDD = 5.5 V; - 104 175 A no load; SCL= 100 kHz IstbL LOW-level standby current Standby mode; V DD = 5.5 V; - 0.25 1 A
in „I²C-I/O-Expander mit TRI-state Output“ · Mikrocontroller und Digitale Elektronik ·
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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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S6D0154X_Data_Sheet_Rev1.00.pdf
range for VGL to AVSS Note. 1. AVDD Min: When VCI1 = 2.25V, AVDD Max: When VCI1=3.0V 2. |VGH| & |VGL| Min : When VCI1 = 2.25V, |VGL| Max : When VCI1=2.75V, |VGH - VGL| Max : 30.0V 3. |VGH| max. should be lower than or equal to 16.5V in normal operating condition, regardless
in „Nokia N95-Display“ · Mikrocontroller und Digitale Elektronik ·
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LQ088K9LA02-Sharp.pdf
Fig.8-1 Timing Diagram LCY-07071-16 (9) Optical characteristics o Table9-1 Ta=25 C Symbol MIN TYP MAX Parameter Condition Unit Remarks θ11,θ12 20degree 80 150 - [Note9-1,2] Viewing angle range θ21, θ22 60degree 15 25 - CR value CRmax Optimal 220 360 - [Note9-2] (Ta=25℃) - θ=0°,Ta=80℃ - -25 - % [Note9
in „HDMI -> LVDS Auflösung“ · Mikrocontroller und Digitale Elektronik ·
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KS0108.pdf
592.2 1849 26 S45 -1573.1 -1849 61 S10 1924 26.7 96 CLK1 -717.2 1849 27 S44 -1445.9 -1849 62 S9 1924 153.9 97 E -842.2 1849 28 S43 -1318.7 -1849 63 S8 1924 281.1 98 FRW -967.2 1849 29 S42 -1191.5 -1849 64 S7 1924 408.3 99 ADC -1177.8 1849 30 S41 -1064.3 -1849 65 S6 1924 535.5 100 M -1312.8 1849 31 S40
in „KS0108 library und Timing diagram“ · Mikrocontroller und Digitale Elektronik ·
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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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Datei
block-cordic.asm
brace source line : 175 ;* Known Minimum Trip Count : 19 ;* Known Maximum Trip Count : 19 ;* Known Max Trip Count Factor : 19 ;* Loop Carried Dependency Bound(^) : 7 ;* Unpartitioned Resource Bound : 12 ;* Partitioned Resource Bound(*) : 12 ;* Resource Partition: ;* A-side B-side ;* .L units 4 4 ;* .
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PCA8574-rev02.pdf
address pins n Readable device ID (manufacturer, device type, and revision) n Low standby current (10 A max.) n −40 °C to +85 °C operation n ESD protection exceeds 2000 V HBM per JESD22-A114, 200 V MM per JESD22-A115, and 1000 V CDM per JESD22-C101 n Latch-up testing is done to JEDEC standard JESD78 which
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
047304JES_2013.pdf
αa αa is used to provide constant temperature environment for all the tests. i0= k T c c (s,i e s,max− c s,i [9] Thermocouples are used to measure the cell surface temperature, Mapping between reaction current density on particle surface and located midway along the length of the 18650 cells. In order
in „Lithium Ionen Batterie auf 4,2V bei 0°C aufladen sicher?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SIM800_Hardware_Design_V1.09.pdf
Normal operation:-40°C ~ +85° C Storage temperature -45C ~ +90° C GPRS data downlink transfer: max. 85.6 kbps GPRS data uplink transfer: max. 85.6 kbps Coding scheme: CS-1, CS-2, CS-3 and CS-4 GPRS PAP protocol for PPP connect Integrate the TCP/IP protocol. Support Packet Broadcast Control
in „SIM800L Verbindung instabil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7709__3_.pdf
max V = 5 V T(+) T(–) DD V T(+) 0.95/2 V min/V max V DD = 3 V V T(–) 0.4/1.1 V min/V max V DD = 3 V V T(+) VT(–) 0.3/0.85 V min/V max V DD = 3 V XTAL1 Only 2 V INL Input Low Voltage 0.8 V max V DD = 5 V
in „AD7709, digitaler ground fürs Quarz?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16c554_Quad-UART_Datasheet.pdf
V V CC = 3.3 V V CC = 5.0 V Unit Min Max Min Max Min Max t , t clock pulse duration 10 - 6 - 6 - ns 1w 2w XTAL oscillator/clock frequency [1] [-] 48 - 80 80 MHz 6s address setup time 0 - 0 - 0 - ns 6h address hold time 0 - 0 - 0 - ns t IOR
in „Pegelwandlung RS232 2,7V <->3,3V“ · 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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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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PDF
AD5415.pdf
ADR425 5 0.04 3 3.4 µV p-p MSOP, SOIC Table 8. Precision ADI Op Amps for Use with AD54xx DACs PartNo. MaxSupplyVoltage(V) VOSmax)µV B (max)nA GBPMHz SlewRate(V/µs) OP97 ±20 25 0.1 0.9 0.2 OP1177 ±18 60 2 1.3 0.7 AD8551 ±6 5 0.05 1.5 0.4 Table 9. High Speed ADI Op Amps for Use with AD54xx DACs PartNo. MaxSupplyVoltage
in „D/A mit Stromausgang“ · 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
Atiny2313.pdf
Update of TOV Flag Mode WGM2 WGM1 WGM0 Operation TOP OCRx at Set on(1)(2) 0 0 0 0 Normal 0xFF Immediate MAX 1 0 0 1 PWM, Phase 0xFF TOP BOTTOM Correct 2 0 1 0 CTC OCR0A Immediate MAX 3 0 1 1 Fast PWM 0xFF TOP MAX 4 1 0 0 Reserved – – – 5 1 0 1 PWM, Phase OCR0A TOP BOTTOM Correct 6 1 1 0 Reserved – – – 7 1
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN721.pdf
conversion factor. A network fulfilling this requirement cannot be obtained For the band-pass filter, Q max or the maximum possible lN in practice as an infinite number of reactive elements would input Q of a device to be matched, has been increased by be necessary. the factor r (from Figure 25, Q′ IN max
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
TOFC100-xx.pdf
Main Specifications of the TODX283 Data rate: DC to 50 Mb/s (NRZ code) Transmission distance: 10 m (max) (via APF cable) 100 m (max) (via PCF cable) Pulse width distortion: less than ±7 ns Center wavelength: 650nm Operating temperature: –10°C to 70°C TTL interface TODX283 7 OpticalM odulesforHigh-SpeedDataT
in „TosLink als einfacher Datenlink“ · 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
pic16f88.pdf
Capture, Compare, PWM (CCP) module: 1,000,000 typical erase/write cycles EEPROM - Capture is 16-bit, max. resolution is 12.5 ns data memory typical - Compare is 16-bit, max. resolution is 200 ns EEPROM Data Retention: > 40 years - PWM max. resolution is 10-bit In-Circuit Serial Programming™ (ICSP™) 10-
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·
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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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ADF4002.pdf
referred to 50 Ω, T A T MAXto TMIN, unless otherwise noted. Table 1. BVersion 1 Parameter Min Typ Max Unit TestConditions/Comments RF CHARACTERISTICS See Figure 11 for input circuit RF Input Sensitivity −10 0 dBm RF Input Frequency (RF IN 5 400 MHz For RFIN 5 MHz, ensure slewrate (SR) > 4V/µs REFIN
in „Phasenfrequenz-Detektor unter 1 k Hz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3108fb.pdf
specifications are for T = 25°A (Note 2). VAUX = 5V, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS MinimumStart-Up Voltage Using 1:100 Transformer Turns Ratio, VAUX = 0V 20 50 mV No-Load Input Current Using 1:100 Transformer Turns Ratio; IN = 20mV, 3 mA V OUT2_EN = 0V; All Outputs Charged and
in „Blink LED mit Ladungspumpe für sehr niedrige Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Petra-M10_Einblick_offen.html
font-size:16px}a.irc_pt{color:rgba(255, 255, 255, .87);display:block;font-size:20px;line-height:30px;max-height:60px;overflow:hidden;text-decoration:none;text-overflow:ellipsis;white-space:normal;word-wrap:break-word}a.irc_pt:hover{text-decoration:underline}.irc_hol{box-sizing:border-box;display:block;
in „Lampentaster gesucht“ · Markt ·
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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
MMA7260QT_three_axis_low-g_micromachined_accelerometer.pdf
<A105°C, 2.2 V < V DD < 3.6 V, Acceleration = 0g, Loaded output (1) Characteristic Symbol Min Typ Max Unit Operating Range(2) Supply Voltage3) V 2.2 3.3 3.6 V Supply Current IDD — 500 800 μA (4) DD Supply Current at Sleep Mode DD — 3.0 10 μA Operating Temperature Range TA –40 — +105 °C Acceleration
in „Neigung messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2011-01_digitale_Senderliste_mit_Frequenzen_1_.pdf
Motors TV Deutschland (WT) deutsch 754 256 K56 wt Pay-TV 152 Motorvision TV deutsch 434 64 S37 SKY 153 MTV Dance (WT) englisch 770 256 K58 wt Pay-TV 154 MTV Entertainment (WT) englisch 682 256 K47 wt Pay-TV 155 MTV Germany (WT) deutsch 770 256 K58 wt Pay-TV 156 MTV Hits (WT) englisch 778 256 K59 wt Pay-TV
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RESR_angular_encoder_system_data_sheet.pdf
optical centreline Ring centreline and Nominal ring readhead optical centreline 11.6 diameter +21.5 max 7.55 A-9559-0650 4.1 14 4.6 A-9531-0250 9.75 1 9 Nominal ring 7.5 1 0 diameter -18 min 0.65 7 . 10.5 7 15 M3 x 0.5 x 10 long into Use A-9531-0342 11.75 any existing tapped hole adhesive to affix reference
in „Schrittmotor mit Motortreiber und Encoder in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Teileliste-04-18-2233.pdf
P6SMB 15A SMD 4 0,15 EUR 0,05 EUR 152 LED grün, 8 mcd, 120° 1608 SMD-LED 0603 GN 20 0,10 EUR 0,04 EUR 153 LED gelb, 8 mcd, 120° 1608 SMD-LED 0603 GE 20 0,10 EUR 0,04 EUR 154 LED rot, 12 mcd, 120° 1608 SMD-LED 0603 RT 20 0,10 EUR 0,04 EUR 155 Bipolartransistor NPN, 45V, 0,1A, 25W SOT-23 BC 847A SMD 100 0,03
in „Bauelemente abzugeben“ · Markt ·
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PDF
Teileliste-04-19-1539.pdf
P6SMB 15A SMD 0 0,15 EUR 0,05 EUR 152 LED grün, 8 mcd, 120° 1608 SMD-LED 0603 GN 20 0,10 EUR 0,04 EUR 153 LED gelb, 8 mcd, 120° 1608 SMD-LED 0603 GE 20 0,10 EUR 0,04 EUR 154 LED rot, 12 mcd, 120° 1608 SMD-LED 0603 RT 20 0,10 EUR 0,04 EUR 155 Bipolartransistor NPN, 45V, 0,1A, 25W SOT-23 BC 847A SMD 100 0,03
in „Bauelemente abzugeben“ · Markt ·