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Datei
fft232slow.asm
----------; ; Program code area .cseg rjmp reset ; RESET rjmp SyncIn ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp adcint ; TC0 OVF rjmp 0 ; SPI rjmp RXData ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC rjmp
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
ioat91sam7se512.h
< 16) // (TC) Clock Enabling #define AT91C_TC_MTIOA ((unsigned int) 0x1 << 17) // (TC) TIOA Mirror #define AT91C_TC_MTIOB ((unsigned int) 0x1 << 18) // (TC) TIOA Mirror // -------- TC_IER : (TC Offset: 0x24) TC Channel
in „AT91SAM7SE512 Einstieg“ · Mikrocontroller und Digitale Elektronik ·
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mirkonet_tmp.pdf
1,440 4,320 Farnell SOIC-8 N/A PFC CONTROLLER, MAX 100A N/A 0/+85 N/A N/A N/A N/A N/A N/A 104401 20 74LOGIC SN74LVC1T45DBVT TEXAS 74LVC1T45 BIT TRANSCEIVER YES YES 0,530 0,636 12,720 Farnell SOT-23 N/A 74LVC45 Level Shifter,45,Single Bit Transceiver, 1,65 up to 5,5V N/A-40/+85 N/A N/A 1,65 5,5 N/A N/A 1470916 10 74LOGIC SN74LVC4245APW TEXAS 74LVC4245 OCTAL TRANSCEIVER YES YES 0,613 0,736 7,356 Farnell TSSOP-24 N/A 4245 Octal Bus Transceiver, 3,3/5V N/A -40/+85 N/A N/A 4,5 5,5 N/A N/A 1236393 2 MCU MSP430F2002IN
in „Komplettverkauf Bauteile, was wert? - Tabelle“ · Markt ·
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sed1335f.pdf
Table 3. LCD parameters W/S = 0 W/S = 1 Parameter IV = 1 IV = 0 IV = 1 IV = 0 C/R C/R C/R C/R C/R TC/R TC/R TC/R (see note 1) TC/R TC/R L/F L/F L/F L/F L/F SL1 00H to L/F 00H to L/F + 1 (L/F) / 2 (L/F) / 2 (see note 2) SL2 00H to L/F 00H to L/F + 1 (L/F) / 2 (L/F) / 2 (see note 2) SAD1 First screen
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1330.pdf
Table 3. LCD parameters W/S = 0 W/S = 1 Parameter IV = 1 IV = 0 IV = 1 IV = 0 C/R C/R C/R C/R C/R TC/R TC/R TC/R (see note 1) TC/R TC/R L/F L/F L/F L/F L/F SL1 00H to L/F 00H to L/F + 1 (L/F) / 2 (L/F) / 2 (see note 2) SL2 00H to L/F 00H to L/F + 1 (L/F) / 2 (L/F) / 2 (see note 2) SAD1 First screen
in „Hilfe ! Problem mit Minigrafikdisplay und AT90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1335F.pdf
Table 3. LCD parameters W/S = 0 W/S = 1 Parameter IV = 1 IV = 0 IV = 1 IV = 0 C/R C/R C/R C/R C/R TC/R TC/R TC/R (see note 1) TC/R TC/R L/F L/F L/F L/F L/F SL1 00H to L/F 00H to L/F + 1 (L/F) / 2 (L/F) / 2 (see note 2) SL2 00H to L/F 00H to L/F + 1 (L/F) / 2 (L/F) / 2 (see note 2) SAD1 First screen
in „Hilfe beim Initialisieren des SED1335F gesucht“ · Mikrocontroller und Digitale Elektronik ·
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74HC299_74HCT299_PHI.pdf
INTEGRATED CIRCUITS DATA SHEET For a complete data sheet, please also download: • The IC06 74HC/HCT/HCU/HCMOS Logic Family Specifications • The IC06 74HC/HCT/HCU/HCMOS Logic Package Information • The IC06 74HC/HCT/HCU/HCMOS Logic Package Outlines 74HC/HCT299 8-bit universal shift register; 3-
in „74HC299 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
and C ), ten buffered outputs (O to O and O 11 to O13= LOW), independent of other input conditions. TC TC 3 9 O 11to O13 and an overriding asynchronous master reset Schmitt-trigger action in the clock input makes the circuit input (MR). The oscillator configuration allows design of highly tolerant to
in „Quarz schwing nicht“ · Mikrocontroller und Digitale Elektronik ·
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MBR735-MBR760.pdf
Metal to silicon rectifier, 0.360 (9.14)154 (3.91) 0.055 (1.39) majority carrier conduction 0.148 (3.74) 0.045 (1.14) ♦ Low power loss, high efficiency 0.103 (2.62) ♦ High current capability, low forward 0.135 (3.43) 0.560 (14.22)oltage drop 0.530 (13.46)igh surge capability 0.410 (100.635 (16.13) 0.350
in „TVS-Diode und Sicherung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MBR735-MBR760.pdf
Metal to silicon rectifier, 0.360 (9.14)154 (3.91) 0.055 (1.39) majority carrier conduction 0.148 (3.74) 0.045 (1.14) ♦ Low power loss, high efficiency 0.103 (2.62) ♦ High current capability, low forward 0.135 (3.43) 0.560 (14.22)oltage drop 0.530 (13.46)igh surge capability 0.410 (100.635 (16.13) 0.350
in „Gleichrichter an Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
FFT.asm
---------------; ; Program code area .cseg rjmp reset ; RESET rjmp 0 ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp 0 ; TC0 OVF rjmp 0 ; SPI rjmp 0 ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC ; rjmp isr_adc
in „FFT auf dem AVR“ · Projekte & Code ·
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Datei
FFT232b.asm
---------------; ; Program code area .cseg rjmp reset ; RESET rjmp 0 ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp 0 ; TC0 OVF rjmp 0 ; SPI rjmp 0 ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC ; rjmp isr_adc
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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LGT8FX8P_databook_v1.0.4.pdf
TC1 和 TC3 复用预分频器 CPS310 独立模式下 TC0 独用预分频器 CPS310,TC1 独用预分频器 CPS1,TC3 独用预分 频器 CPS3 支持软件复位 概述 复用模式下(PSS1=0 且 PSS3=0) ,TC0、TC1 和 TC3 共用一个 10 位的预分频器 CPS310, 但它们有不同的分频设置。 单用模式下(PSS1=1 且 PSS3=0) ,TC1 独立使用一个
in „Spot Welder Firmware Update fehlerhaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGT8FX8P_databook_v1.0.4.pdf
TC1 和 TC3 复用预分频器 CPS310 独立模式下 TC0 独用预分频器 CPS310,TC1 独用预分频器 CPS1,TC3 独用预分 频器 CPS3 支持软件复位 概述 复用模式下(PSS1=0 且 PSS3=0) ,TC0、TC1 和 TC3 共用一个 10 位的预分频器 CPS310, 但它们有不同的分频设置。 单用模式下(PSS1=1 且 PSS3=0) ,TC1 独立使用一个
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FAG_BBRTS_bk_rev_SCH.PDF
R R C C 1 +5V U5 5 C17 C 1 B2 C A 4 1 2 B1 V S 3 6 C-0402 2 2 0 D 0 N 4 - G 6- R R 2 7 1 + +5V U4p 74HC74 5 U6b PR Q TS922ID 4 5 +5V FSA3157 D 2 3 CLK L1 TC4423 1 CLR Q\ 6 lang K4 lang B 2 1 1 5 4 VDD GND K2 kurz 6 3 A 2 1 1 7 2 L2 kurz 8 1 R7 U3 1 2 R-0402 2 1 +5V 0 3 +5V +5V 0 R U4p 74HC74 - 2 U2 +
in „Ebike Drehmoment-Sensor auswerten“ · Fahrzeugelektronik ·
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CY7C68013.pdf
Master-Strobe Half-Period D7 D6 D5 D4 D3 D2 D1 D0 00000010 RW D OD E6C 1 GPIFTCB3[6] GPIF Transaction Count TC31 TC30 TC29 TC28 TC27 TC26 TC25 TC24 00000000 RW E Byte 3 [6] E6CF 1 GPIFTCB2 GPIF Transaction Count TC23 TC22 TC21 TC20 TC19 TC18 TC17 TC16 00000000 RW Byte 2 E6D0 1 GPIFTCB1[6] GPIF Transaction Count TC15 TC14 TC13 TC12 TC11 TC10 TC9 TC8 00000000 RW Byte 1 [6] E6D1 1 GPIFTCB0 GPIF Transaction Count TC7 TC6 TC5 TC4 TC3 TC2 TC1 TC0 00000001 RW Byte 0 2 reserved 00000000 RW reserved reserved E6D2 1 EP2GPIFFLGSEL
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CY7C68013.pdf
Master-Strobe Half-Period D7 D6 D5 D4 D3 D2 D1 D0 00000010 RW D OD E6C 1 GPIFTCB3[6] GPIF Transaction Count TC31 TC30 TC29 TC28 TC27 TC26 TC25 TC24 00000000 RW E Byte 3 [6] E6CF 1 GPIFTCB2 GPIF Transaction Count TC23 TC22 TC21 TC20 TC19 TC18 TC17 TC16 00000000 RW Byte 2 E6D0 1 GPIFTCB1[6] GPIF Transaction Count TC15 TC14 TC13 TC12 TC11 TC10 TC9 TC8 00000000 RW Byte 1 [6] E6D1 1 GPIFTCB0 GPIF Transaction Count TC7 TC6 TC5 TC4 TC3 TC2 TC1 TC0 00000001 RW Byte 0 2 reserved 00000000 RW reserved reserved E6D2 1 EP2GPIFFLGSEL
in „Stereokamera CY7C68013A + 2 mal MT9D131“ · Mikrocontroller und Digitale Elektronik ·
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MRF272L.pdf
0.441 50 0.043 71 0.968 175 380 0.949 174 0.428 49 0.044 72 0.937 175 390 0.949 174 0.417 49 0.045 74 0.907 176 400 0.949 174 0.409 47 0.044 77 0.912 177 410 0.950 173 0.390 46 0.046 74 0.962 175 420 0.950 173 0.377 45 0.047 71 0.971 174 430 0.950 173 0.369 45 0.050 72 0.948 176 MOTOROLA WIRELESS SEMICONDUCTOR
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KS0070B_V0.pdf
COM12 SEG8 27 76 COM11 SEG7 28 75 COM10 SEG6 29 74 COM9 SEG5 30 73 COM8 SEG4 31 72 COM7 SEG3 32 71 COM6 SEG2 33 70 COM5 SEG1 34 69 COM4 VSS 35 68 COM3 OSC2 36 67 COM2 OSC1 37 66 COM1 NC 38 NC 65 3 4 4 4 4 4 4 4 4 4 4 5 5 5 5 5 5 5 5 5 5 6 6 6 6 6 9 0
in „LCD Initialisierung schlägt fehl!“ · Mikrocontroller und Digitale Elektronik ·
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KS0070B_V0.pdf
COM12 SEG8 27 76 COM11 SEG7 28 75 COM10 SEG6 29 74 COM9 SEG5 30 73 COM8 SEG4 31 72 COM7 SEG3 32 71 COM6 SEG2 33 70 COM5 SEG1 34 69 COM4 VSS 35 68 COM3 OSC2 36 67 COM2 OSC1 37 66 COM1 NC 38 NC 65 3 4 4 4 4 4 4 4 4 4 4 5 5 5 5 5 5 5 5 5 5 6 6 6 6 6 9 0
in „EA DIP162-D / STK500 / ATmega8 initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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KS0093.pdf
CONTROLLER FOR STN LCD PAD CONFIGURATION 6 8 7 ............................ 167 86 Y . . . (0,0) X 179 74 ........................... 1 7 DUMMY PAD 3 PAD Figure 2. Pad Configuration Table 1. KS0093 Pad Dimensions Size Item Pad No. Unit X Y Chip size - 7020 1620 1 ~ 73 90 Pad pitch 74 ~ 179 80 1 ~ 73 60 100 μm 74 ~ 86 100 50 Bumped pad size 87 ~ 166 50 100 167 ~ 179 100 50 Bumped pad height All pad 17 COG Align Key Coordinate ILB Align Key Coordinate 30μm 30μm 30μm 30μm 30μm 30 μ 42μm 10μ m 10μ m 42μm 0 4 4 m
in „LCD seriell ansteuern ST7093/KS0093“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HLG-40H-SPEC.pdf
:mm ※Blank/D-Type 171 11.9 147.2 9.6 300±20 300±20 AC/L(Brown) 2 . . 73.6 +V(Red) AC/N(Blue) 3 4 6 tc -V(Black) FG (Green/Yellow) SJTW 18AWG×3C . SVT 18AWG×2C 3 ψ4.2×4PL ▯ tc : Max. Case Temperature 8 6 3 ※A-Type 171 11.9 147.2 9.6 300±20 300±20 AC/L(Brown) 2 6 1 tc 73.6 +V(Red) AC/N(Blue) 3 4 6 -V(Black) FG (Green/Yellow) SJTW 18AWG×3C . Io Vo SVT 18AWG×2C 3 ADJ ADJ ψ4.2×4PL ▯ tc : Max. Case Temperature 8 6 3 ※B-Type 171 11.9 147.2 9.6 300±20 300±20 SVT 18AWG×2C +V(Red) AC/L(Brown) 2 . . tc 73.6 -V(Black) AC/N(Blue) 3 4 6 UL2517 18AWG×2C FG (Green/Yellow) SJTW 18AWG×3C 7 DIM+
in „LED Raumbeleuchtung flimmerfrei dimmen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sed1335.pdf
Table 2. LCD parameters Parameter W/S = 0 W/S = 1 IV = 1 IV = 0 IV = 1 IV = 0 C/R C/R C/R C/R C/R TC/R TC/R TC/R (See note 1.) TC/R TC/R L/F L/F L/F L/F L/F 00H to L/F + 1 SL1 00H to L/F (See note 2.) (L/F) / 2 (L/F) / 2 00H to L/F + 1 SL2 00H to L/F (See note 2.) (L/F) / 2 (L/F) / 2 SAD1 First screen
in „Extrem schwere Frage“ · Mikrocontroller und Digitale Elektronik ·
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OLIMEX-stm32-p107-schematic.pdf
OTG_DM O H USB_VBUSON k 3 7 u 0 A 2C VSS PA11/USART1_CTS/CAN1_RX/TIM1_CH4/OTG_FS_DM EN1 OUT1 6 n _ O 74 VSS PA12/USART1_RTS/CAN1_TX/TIM1_ETR/OTG_FS_DP71 OTG_DP USB_HOST_D+ 4 EN2 OUT2 6 3 F M S 49 VSS PA13/JTMS/SWDIO 72 TMS TMS 3.3V USB_OTG_D+ USB_FAULT . 3 8 #OC1 IN 2 T U 1E PA14/JTCK/SWCLK 76 TCK TCK
in „Streuung der ADC-Werte beim STM32“ · Mikrocontroller und Digitale Elektronik ·
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S1D13305.pdf
Table 2. LCD parameters Parameter W/S = 0 W/S = 1 IV = 1 IV = 0 IV = 1 IV = 0 C/R C/R C/R C/R C/R TC/R TC/R TC/R (See note 1.) TC/R TC/R L/F L/F L/F L/F L/F 00H to L/F + 1 SL1 00H to L/F (See note 2.) (L/F) / 2 (L/F) / 2 00H to L/F + 1 SL2 00H to L/F (See note 2.) (L/F) / 2 (L/F) / 2 SAD1 First screen
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Epson_S1D13305.pdf
Table 2. LCD parameters Parameter W/S = 0 W/S = 1 IV = 1 IV = 0 IV = 1 IV = 0 C/R C/R C/R C/R C/R TC/R TC/R TC/R (See note 1.) TC/R TC/R L/F L/F L/F L/F L/F 00H to L/F + 1 SL1 00H to L/F (See note 2.) (L/F) / 2 (L/F) / 2 00H to L/F + 1 SL2 00H to L/F (See note 2.) (L/F) / 2 (L/F) / 2 SAD1 First screen
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P6201_x10_900MHz_FET_Probe.pdf
OHM,0.25%,0.125W,TC=T2 19701 5033RC11K00C R290 321-0381-03 RES,FXD:METAL FILM;90.5K OHM,0.25%,0.125W, 19701 5033RC90K90C TC=50 PPM R293 308-0714-00 RES,FXD,WW:46.4 OHM,1%,1W 91637 RS1A-B46R40F R295 325-0121-00 RES,FXD,FILM:90K OHM,0.5%,0.05W,TC=T0 64537 PME50 90 K OHM R298 308-0715-00 RES,FXD,WW:78 OHM,1% 91637 RS-1A-90 78R00F R300 321-0223-00 B010100 B046190 RES,FXD,FILM:2.05K OHM,1%,0.125W,TC=T0 91637 CMF55116G20500F R300 315-0182-00 B046191
in „Eigenbautastköpfe“ · Analoge Elektronik und Schaltungstechnik ·
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MSA0786.pdf
C, I = 22 dA) S 11 S 21 S12 S22 Freq. GHz Mag Ang dB Mag Ang dB Mag Ang Mag Ang 0.1 .05 175 13.5 4.74 174 –18.7 .116 1 .14 –12 0.2 .05 174 13.4 4.71 169 –18.7 .117 3 .14 –22 0.4 .04 167 13.3 4.64 158 –18.4 .120 4 .15 –44 0.6 .04 175 13.1 4.52 148 –18.3 .122 7 .16 –65 0.8 .05 –156 12.9 4.39 138 –18.0
in „Wie ist ein MMIC intern aufgebaut?“ · HF, Funk und Felder ·
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atmel_32uc.pdf
108 EBI - NWE0 USART2 - CTS 44 PX13 GPIO 107 EBI - NRD USART2 - RTS 46 PX14 GPIO 106 EBI - NCS[1] TC - A0 59 PX15 GPIO 89 EBI - ADDR[19] USART3 - RTS TC - B0 61 PX16 GPIO 88 EBI - ADDR[18] USART3 - CTS TC - A1 63 PX17 GPIO 87 EBI - ADDR[17] TC - B1 65 PX18 GPIO 86 EBI - ADDR[16] TC - A2 67 PX19 GPIO 85 EBI - ADDR[15] EIM - SCAN[0] TC - B2 87 PX20 GPIO 84 EBI - ADDR[14] EIM - SCAN[1] TC - CLK0 89 PX21 GPIO 83 EBI - ADDR[13] EIM - SCAN[2] TC - CLK1 91 PX22 GPIO 82 EBI - ADDR[12] EIM - SCAN[3] TC - CLK2 95 PX23 GPIO 81 EBI - ADDR[11
in „V: ATMEL 32UC3A0512-U“ · Markt ·
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162399-da-01-en-IRF_4905.pdf
dv/dt Rating DSS l 175°C Operating Temperature l Fast Switching R DS(on) = 0.02 G l P-Channel ID= -74A l Fully Avalanche Rated S Description FifthGenerationHEXFETsfromInternationalRectifier utilize advanced processing techniques to achieve extremely low on-resistance per silicon area. This benefit, combined
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF4905_TO220.pdf
dv/dt Rating DSS l 175°C Operating Temperature l Fast Switching R DS(on) = 0.02 G l P-Channel ID= -74A l Fully Avalanche Rated S Description FifthGenerationHEXFETsfromInternationalRectifier utilize advanced processing techniques to achieve extremely low on-resistance per silicon area. This benefit, combined
in „FET Frage (n oder p)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf840_und_irf840fi.pdf
8 A IRF840FI 500 V < 0.85 4.5 A IRF841 450 V < 0.85 8 A IRF841FI 450 V < 0.85 4.5 A TYPICAL R = 0.74 DS(on) AVALANCHE RUGGED TECHNOLOGY 100% AVALANCHE TESTED 3 3 o 1 2 1 2 REPETITIVE AVALANCHE DATA AT 100 C APPLICATIONS TO-220 ISOWATT220 HIGH CURRENT, HIGH SPEED SWITCHING SWITCH MODE POWERSUPPLIES (
in „Unterschied zw. IRF840 und IRF840FI“ · Mikrocontroller und Digitale Elektronik ·
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mikrobeginner_gesamt.pdf
A ; Zeit pro Takt 1 µs reti ; TIM0_COMPB TC0 Compare Match B ; Vorteiler TC1 8 .if VonHinten == 1 ; Von hinten einschieben ; Zeit pro Timer-Takt 8 µs rjmp Tc0Isr ; TC0_OVF, Display updaten ; TC-Stand bei 1 ms 125 .else ; reti ; TIM0_OVF Timer/
in „Attiny26 PortD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7S256.h
Mask Register } AT91S_TC, *AT91PS_TC; // -------- TC_CCR : (TC Offset: 0x0) TC Channel Control Register -------- #define AT91C_TC_CLKEN ((unsigned int) 0x1 << 0) // (TC) Counter Clock Enable Command #define AT91C_TC_CLKDIS (
in „C Datein werden in Eclipse nicht kompiliert“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7S256.h
Mask Register } AT91S_TC, *AT91PS_TC; // -------- TC_CCR : (TC Offset: 0x0) TC Channel Control Register -------- #define AT91C_TC_CLKEN ((unsigned int) 0x1 << 0) // (TC) Counter Clock Enable Command #define AT91C_TC_CLKDIS (
in „AT91SAM7S256 Timer Counter PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7.h
Mask Register } AT91S_TC, *AT91PS_TC; // -------- TC_CCR : (TC Offset: 0x0) TC Channel Control Register -------- #define AT91C_TC_CLKEN ((unsigned int) 0x1 << 0) // (TC) Counter Clock Enable Command #define AT91C_TC_CLKDIS (
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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Datei
AT91SAM7S64.h
Mask Register } AT91S_TC, *AT91PS_TC; // -------- TC_CCR : (TC Offset: 0x0) TC Channel Control Register -------- #define AT91C_TC_CLKEN ((unsigned int) 0x1 << 0) // (TC) Counter Clock Enable Command #define AT91C_TC_CLKDIS (
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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PDF
MTE011N10RFP-CystechElectonics.pdf
2016.04.27 Page No. : 1/ 8 N-Channel Enhancement Mode Power MOSFET MTE011N10RFP BV DSS 100V ID@V GS=10V, TC=25°C 34A Features ID@V GS=10V, TA=25°C 9A Low On Resistance R DS(ON@V GS=10V, ID=11A 11 mΩ(typ) Simple Drive Requirement Low Gate Charge Fast Switching Characteristic Insulating package, front
in „IC identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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VND830LSP.pdf
LR 0 Ω; bat 13.5 V;jstart150 °C; 52 mJ e P L= 14 A) e t Ptot Power dissipation (per islanlead 25 °C 74 W o l T j Junction operating temperature Internally limite°C b s Tc Case operating temperature - 40 to 150 O Tstg Storage temperature - 55 to 150 °C 6/27 Doc ID 9431 Rev 5 VND830LSP Electrical specifications
in „[V] Highside-Schalter“ · Markt ·
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Datei
AT91SAM7S64.h
#define AT91C_TC_CPAS (0x1 << 2) // (TC) RA Compare #define AT91C_TC_CPBS (0x1 << 3) // (TC) RB Compare #define AT91C_TC_CPCS (0x1 << 4) // (TC) RC Compare #define AT91C_TC_LDRAS (0x1 << 5) // (TC) RA Loading #define AT91C_TC_LDRBS (0x1 << 6) // (TC) RB Loading #define AT91C_TC_ETRGS (0x1 << 7) // (TC) External Trigger #define AT91C_TC_CLKSTA (0x1 << 16) // (TC) Clock Enabling #define AT91C_TC_MTIOA (0x1 << 17) // (TC) TIOA
in „AT91SAM7S64 Compiler Fehlermeldung“ · Mikrocontroller und Digitale Elektronik ·
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STM32F107-SK-SCH-revA.pdf
DTA114YKA +5V + C C , 99 VSS PA10/USART1_RX/TIM1_CH3/OTG_FS_I70 OTG_DM OTG_DM USB_D+ 3.3V U8 L2 SHIELD x 2 74 VSS PA11/USART1_CTS/CAN1_RX/TIM1_CH4/OTG_FS_D71 OTG_DP OTG_DP HN1x3 47k ST2052BD N n FB0805/600R/200mAUSB_A09-601) x 3.3VA_MCU_E 49 VSS PA12/USART1_RTS/CAN1_TX/TIM1_ETR/OTG_FS_72 TMS TMS R61 R62 R63
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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S-350-27_datasheet-1.pdf
HOLD UP TIME O/P:FULL LOAD A: 27.54mS P I/P:230VAC SPEC: A:73% A:75.13% O/P:FULL LOAD B:76% B:80.4% C:74.45% C:74% D:81.6% E:81.7% 11 EFFICIENCY D:79% F:84.367% P G:85.17% E:78% F:81% G:83% NO TEST ITEM TEST CONDITION / SPECIFICATION RESULT VERDICT A:121% B:125.1% OVER LOAD I/P:230VAC SPEC: 105%~135% C:
in „[V] 14 Netzteile 27V 13A“ · Markt ·
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C906560.pdf
Table 2. NTC THRMISTOR SPECIFICATION Parameter Symbol Condition Min. Typ. Max. Unit Resistance R 25 TC= 25°C 99 100 101 kW Resistance R100 TC= 100°C 5.18 5.41 5.60 kW Temperature Range −40 +125 °C ] [ e l V e n t s e r t i r h T Case Temperature [5C] Figure 8. NTC Thermistor Resistance versus Temperature www.onsemi.com 4 AND9390/D Table 3. NTC THERMISTOR RESISTANCE VALUES Tc Resistance Value [kW] Tc Resistance Value [kW] Tc Resistance Value [kW] [5C] Min Typ Max [5C] Min Typ Max [5C] Min Typ Max −40 4130.00 4251.00 4612.34 16 152.51 154.60 156.96 72 13.69 14.10 14.52 −39
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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TNC2C.pdf
Z80A CMOS CPU (Z84C00, µPD780, LH0080A, D70008) Z80A CMOS SIO-0 (Z84C40, LH0084A) 27C256 CMOS EPROM TC55257 CMOS 32K*8 RAM (µPD43256C, HM62256, SRM20256C12) MAX232 V24 TREIBER MAXIM TCM 3105 BELL202 MODEM TEXAS INSTRUMENTS 74HC14 HCMOS 74HC74 HCMOS 74HC86 HCMOS 74HC107 HCMOS 74HC132 HCMOS 74HC139 HCMOS 74HC393 HCMOS 74HC4060 HCMOS 7805 5 V Regler 2,4576 MHz Quarz 4,4336 MHz Quarz (PAL-Quarz) 3 V Lithium Batterie ER 1/2 AA CD Varta Gehäuse für eine EURO-Karte mit 20mm Höhe 25pol Sub-D-Winkelbuchsenleiste
in „Z80/UA880D mit 28C64 startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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TechnikFragenkatalogKlasseA.pdf
durch Licht. TC524 Die Hauptfunktion einer Fotodiode ist TC527 In der folgenden Schaltung werden 3 Silizi- A die Umwandlung von Licht in elektrischen Strom. umdioden zur Entkopplung dreier Stromver- B die Abgabe von
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NT7533Lcd.pdf
different temperature coefficients available in NT7533. The coefficients are selected by the two bits TC[1 : 0]. Table 11 shows the typical values of the different temperature coefficients. The coefficients are proportional to the programmed VLCD. Default is TC1 and TC0 = 0. This selects the default temperature coefficient for the internally generated VLCD. Table 6 TC1 TC0 Description 0 0 Temperature Coefficient 0 : -0.76E-3/℃ 0 1 1 0 Temperature Coefficient 1 : -1.05E-3/℃ 1 1 V LCD TREF temperature Figure 15 Segment output number There are two types of the segment
in „Seriell (4-Wire)-LCD-Ansteuerung mit NT7533“ · Mikrocontroller und Digitale Elektronik ·
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dokserv.pdf
zeitlichen Jitters Wert des zeitlichen Jitters nach der Takterhöhung vor der Takterhöhung r k ) V TC,V N r k) s1 TC N c k) B c k( ) T C Tdk )= TC B B 1 TC T ov c ToptTcor Tov t TC,V optimale korrigierte Flanke Flanke T C. Taktperiode T T C,V. virtuelle Taktperiode nach Erhöhung der Taktfrequenz TC,V
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mpsa42.pdf
Data, continued SOT-23 Embossed Carrier Tape Configuration: Figure 3.0 P0 P2 D0 D1 T E1 F W E2 B0 Wc Tc P1 A0 K0 User Direction of Feed Dimensions are in millimeter Pkg type A0 B0 W D0 D1 E1 E2 F P1 P0 K0 T Wc Tc SOT-23 3.15 2.77 8.0 1.55 1.125 1.75 6.25 3.50 4.0 4.0 1.30 0.228 5.2 0.06 (8mm) +/-0.10 +
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Infineon-TLE493D-W2B6-DataSheet-v01_20-EN-1366185.pdf
) Parameter Symbol min typ max Unit Note/Condition SensitivitydriftX, Y, Z SxD,Sy DSz D15 ±5 +15 % TC0 Offset drift X,Y B -0.45 – +0.45 mT @ 0mT, TC O_DXY 0 Offset drift Z B O_DZ -1.6 – +1.6 mT @ 0mT, TC 0 Offset drift Z B O_DZ -0.45 – +0.45 mT @ 0mT, TC 0Z Hallspintest 2) X toYmagnetic matching drift
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EM6126_DS.pdf
0 Description C D s s s n n n i D D D D D D D D t t t i i i Initialization 0 0 1 0 0 0 0 0 0 0 Mux TC TC Inv. MX Blank Checker Inv. Set functions s Mode [1] [0] Row Video o Set column adress for DDRAM write t Initialization 1 0 1 0 0 0 0 0 0 1 X[6] X[5] X[4] X[3] X[2] X[1] X[0] V access and vertical/
in „LCD mit SPI ansteuern“ · Mikrocontroller und Digitale Elektronik ·