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slas272d.pdf
V 9 20 XTS=0, SELM=3 Low-power mode, (LPM0) F13x, V CC = 2.2 V 32 45 (LPM0) (see Note 1) F14x TA= –40°C to 85°C V = 3 V 55 70 µA CC Low-power mode, (LPM2), V CC = 2.2 V 11 14 I f(MCLK) = f (SMCLK) = 0 MHz, T = –40°C to 85°C µA (LPM2) f(ACLK) = 32.768 Hz, SCG0 = 0 A V = 3 V 17 22 CC TA= –40°C 0.8 1.5
in „MSP430 Interrupt Port1“ · Mikrocontroller und Digitale Elektronik ·
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Ferrite_als_magnetostriktive_Resonatoren_eth-32736-02.pdf
\ • m 20 40 60 80 100 20 4 0 60 80 100 20 40 60 8 0 100 2 0 4 0 0 2 0 \ TP ej «. io S 2 0 0 S. 10 o V " - — 2 0 4 0 6 0 S O 100 20 4 0 6 0 8 0 100 20 4 0 60 8 0 100 ° U Zfe,G, "/oZnO.fe^Oj Fig. 1. Magnetische Eigenschaften
in „Ferritkernsättigung von außen detektieren“ · Analoge Elektronik und Schaltungstechnik ·
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msp430g2553_controller.pdf
2.2 V L 0.75 Vcc = 2.2 V – 0.75 – M M 0.50 L 0.50 IL I Vcc = 1.8 V 0.25 0.25 Vcc = 1.8 V 0.00 0.00 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 TA– Temperature – °C TA– Temperature – °C Figure 4. LPM3 Current vs Temperature Figure 5. LPM4 Current vs Temperature Copyright © 2011–2013, Texas Instruments
in „MSP430g2553 externe Taktquelle“ · Mikrocontroller und Digitale Elektronik ·
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msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
2.2 V L 0.75 Vcc = 2.2 V – 0.75 – M M 0.50 L 0.50 IL I Vcc = 1.8 V 0.25 0.25 Vcc = 1.8 V 0.00 0.00 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 TA– Temperature – °C TA– Temperature – °C Figure 4. LPM3 Current vs Temperature Figure 5. LPM4 Current vs Temperature Copyright © 2011–2013, Texas Instruments
in „LiPo-Akku+LowPower: 5V Controller oder Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
2.2 V L 0.75 Vcc = 2.2 V – 0.75 – M M 0.50 L 0.50 IL I Vcc = 1.8 V 0.25 0.25 Vcc = 1.8 V 0.00 0.00 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 TA– Temperature – °C TA– Temperature – °C Figure 4. LPM3 Current vs Temperature Figure 5. LPM4 Current vs Temperature Copyright © 2011–2013, Texas Instruments
in „Signalverzögerung im Minutenbereich“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Pullups einschalten PORTA |= (1 << PORTA0) | (1 << PORTA1) | (1 << PORTA2) | (1 << PORTA3); #if USE_SHT PORTA |= (1 << PORTA4); #else PORTA |= (1 << PORTA4) | (1 << PORTA5) | (1 << PORTA6); #endif unsigned long a; usart_init(BAUDRATE); // setup the UART #if USE_ADC ADC_Init(); #endif usart_write("\n\rSystem
in „HTML-Header zerschossen?“ · Mikrocontroller und Digitale Elektronik ·
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MSP430F2274_Family_datasheet.pdf
) 25°C 1.8V - 3.6V 4 %/V voltage drift NOTES: 1. Calculated using the box method: I version: (MAX(-40...85_C) - MIN(-40...85_C))/MIN(-40...85_C)/(85_C - (-40_C)) T version: (MAX(-40...105_C) - MIN(-40...105_C))/MIN(-40...105_C)/(105_C - (-40_C)) 2. Calculated using the box method: (MAX(1.8...3.6 V) -
in „UART_Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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CD_DS_SCD4x_Datasheet_D1.pdf
signal compensation is realized with on the SCD4x can help maintain low CO co2centrations the built-in SHT4x humidity and temperature sensor. for a healthy, productive environment. Product Overview Functional Block Diagram Products Details SCD40-D-R2 Base accuracy, specified range 400 – 2’000 ppm SCD41-D-R2
in „Review: USB→LT1763-3.3 V + SCD41-D-R2 (I²C), Funduino (ATMEGA2560)“ · Mikrocontroller und Digitale Elektronik ·
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DOKUMENTATION_MSP430-F2013.pdf
) 25C 1.8V - 3.6V 4 %/V voltage drift NOTES: 1. Calculated using the box method: I Version: (MAX(-40...85_C) - MIN(-40...85_C))/MIN(-40...85_C)/(85_C - (-40_C)) T Version: (MAX(-40...105_C) - MIN(-40...105_C))/MIN(-40...105_C)/(105_C - (-40_C)) 2. Calculated using the box method: (MAX(1.8...3.6V) -
in „MSP430 2013 XOUT/XIN ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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SGP41.pdf
components as tape on reel 2’500 pcs 3.000.060 SEK-SVM4x Evaluation Kit 1 SVM41 PCB equipped with SGP41, an SHT40, and an 1 pc 3.000.630 MCU; 1 USB cable; 1 jumper wire cable; direct humidity compensated VOC and NO Index output via UART or I C 2 x interface www.sensirion.com/my-sgp-ek Table 20 SGP41 ordering
in „SGP41 I²C-Gassensor wieso nicht erreichbar?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WCU_Kilobot_Schematic.txt
500 0 -480 -60 -450 60 -390 -60 -330 60 -270 -60 -210 60 -150 0 -130 0 -100 T0 0 0 0 20 -80 0 0 -20 -40 0 9 PINVRTS P840 80 0 1 0 0 0 0 128 T0 -600 0 2 20 -80 0 0 -20 -40 0 9 PINVRTS P840 40 0 1 0 0 0 0 128 RESB-H 33200 33180 97 10 97 10 4 2 0 2 2 0 TIMESTAMP 1999.09.02.14.33.15 "Default Font" "Default
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MSP430F233TPM.pdf
frequencies - overall tolerance PARAMETER TEST CONDITIONS T V MIN TYP MAX UNIT A CC 1-MHz tolerance overall -40°C to 105°C 1.8 V to 3.6 V -5 ±2 +5 % 8-MHz tolerance overall -40°C to 105°C 1.8 V to 3.6 V -5 ±2 +5 % 12-MHz tolerance overall -40°C to 105°C 2.2 V to 3.6 V -5 ±2 +5 % 16-MHz tolerance overall -40°C
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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msp430g2452.pdf
− CC L o 0.6 − 0.3 L M VCC = 2.2 V −3 L M 0.4 I 0.2 IL V = 1.8 V 0.2 CC 0.1 0.0 V CC = 1.8 V 0.0 −40.0 −20.0 0.0 20.0 40.0 60.0 80.0 100.0 120.0 −40.0 −20.0 0.0 20.0 40.0 60.0 80.0 100.0 120.0 T − Temperature − C TA− Temperature − °C A Figure 4. LPM3 (VLO) Current vs Temperature Figure 5. LPM4 Current
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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msp430fr2532.pdf
3.6 V 1 %/V dVCC f REFO duty cycle Measured at MCLK 1.8 V to 3.6 V 40% 50% 60% DC START REFO start-up time 40% to 60% duty cycle 50 µs (1) Calculated using the box method: (MAX(–40°C to 85°C) – MIN(–40°C to 85°C)) / MIN(–40°C to 85°C) / (85°C – (–40°C)) (2) Calculated
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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MSP430F5438IPZ.pdf
supply voltage drift Measured at ACLK 1.8 V to 3.6 V 1.0 %/V Duty cycle Measured at ACLK 1.8 V to 3.6 V 40 50 60 % START REFO startup time 40%/60% duty cycle 1.8 V to 3.6 V 25 µs (1) Calculated using the box method: (MAX(-40 to 85°C) – MIN(-40 to 85°C)) / MIN(-40 to 85°C) / (85°C – (–40°C)) (2) Calculated
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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Schnellstart_OrCAD_PCB_Editor_16_6.pdf
U3A U3B U3B VCC Add inter-sheet Cross reference Edit part and net properties references report 5 HS/ SHT2 6 XREF 7 U1A e U2AU3A U1A d SEL/ SHT3 ABCDEh2i3 U3A U3B . 45689fghj9 U3B VCC GND 87665swert D “40”H = COMPGROUP = “1” A C Generate Backannotate from Netlist for w PCB design Bill of Materials PCB design
in „OrCAD Handbuch gesucht“ · Markt ·
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msp430fr5729.pdf
voltage drift Measured at ACLK 2 V to 3.6 V 4 %/V VLO,DC Duty cycle Measured at ACLK 2 V to 3.6 V 40% 50% 60% (1) Calculated using the box method: (MAX(–40°C to 85°C) – MIN(–40°C to 85°C)) / MIN(–40°C to 85°C) / (85°C – (–40°C)) (2) Calculated using the box method: (MAX(2.0 V to 3.6 V) – MIN(2.0 V to
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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msp430f5529.pdf
00h 00h 00h 00h 00h 00h 00h 44h 44h 44h 44h 44h 44h 44h 44h WDT_A 2 00h 00h 00h 00h 00h 00h 00h 00h 40h 40h 40h 40h 40h 40h 40h 40h UCS 2 01h 01h 01h 01h 01h 01h 01h 01h 48h 48h 48h 48h 48h 48h 48h 48h 02h 02h 02h 02h 02h 02h 02h 02h SYS 2 42h 42h 42h 42h 42h 42h 42h 42h 03h 03h 03h 03h 03h 03h 03h 03h
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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8019AS.pdf
byte 81H This example uses 16k-byte BROM. Length bits 7-0 09H Length bits 15-8 00H Memory information 40H Min. base bits 15-8 00H Min. base bits 23-16 0CH Max. base bits 15-8 C0H Max. base bits 23-16 0DH Base alignment bits 7-0 00H Base alignment bits 15-8 40H Range length bits 15-8 40H Range length bits
in „Webserver mit ISA Netzwerkkarte“ · Mikrocontroller und Digitale Elektronik ·
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msp430f5529.pdf
internal reference voltage is used and REFOUT = 1, then decoupling capacitors are required. See Section 5.40 and Section 5.41. (3) The internal reference supply current is not included in current consumption parameteADC12_A. (4) ADC12ON = 1, REFON = 0, SHT0 = 0, SHT1 = 0, ADC12DIV = 0 5.36 12-Bit ADC, Timing
in „Tastatur komplett selbst erstellen“ · PC Hard- und Software ·
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Lenovo_schematic.pdf
DDRB_DQ38 AR28 SB_DQ21 4 O F 19 SB_BA2 DDRB_DQ8 AP55 SA_DQ23 SA_MA0 AY37 DDRA_MA1 DDRB_DQ39 AP28 SB_DQ22 AP40 DDRB_MA0 DDRB_MA[0..15] {15} DDRB_DQ9 AR55 SA_DQ24 SA_MA1 AR38 DDRA_MA2 DDRB_DQ40 AN26 SB_DQ23 SB_MA0 AR40 DDRB_MA1 DDRB_DQ10 AM54 SA_DQ25 SA_MA2 AP36 DDRA_MA3 DDRB_DQ41 AR26 SB_DQ24 SB_MA1 AP42 DDRB_MA2
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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spec-8139d_130_.pdf
3Fh PXE_Para Reserved. Do not change this filed without Realtek approval. PXE ROM code parameter. 40h-7Fh VPD_Data VPD data filed. Offset 40h is the start address of the VPD data. Single-Chip Multifunction 10/100 Ethernet Controller w/Power Management 32 Track ID: JATR-1076-21 Rev. 1.3 RTL8139D(L) Datasheet
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Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
19 SB_BA2 DDRB_BS2# 15 DDRB_DQ8 AP55 SA_DQ24 SA_MA1 AY37 DDRA_MA1 DDRB_DQ39 AP28 SB_DQ23 SB_MA0 AP40 DDRB_MA0 DDRB_MA[0..15] 15 DDRB_DQ9 AR55 SA_DQ25 SA_MA2 AR38 DDRA_MA2 DDRB_DQ40 AN26 SB_DQ24 SB_MA1 AR40 DDRB_MA1 DDRB_DQ11 AAK54 SA_DQ26 SA_MA3 AU39 DDRA_MA4 DDRB_DQ42 AR25 SB_DQ25 SB_MA2 AR42 DDRB_MA3
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
0100 +++ board/friendlyarm/mini2440/linux-2.6.37.6-patches/linux-2.6.37.6-0005.patch 2011-05-25 21:40:17.000000000 +0200 @@ -0,0 +1,20 @@ +--- /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 20:35:36.635576001 +0200 ++++ /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 21:14:12.755576001 +0200 +@@
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
0100 +++ board/friendlyarm/mini2440/linux-2.6.37.6-patches/linux-2.6.37.6-0005.patch 2011-05-25 21:40:17.000000000 +0200 @@ -0,0 +1,20 @@ +--- /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 20:35:36.635576001 +0200 ++++ /arch/arm/mach-s3c2440/mach-mini2440.c 2011-05-25 21:14:12.755576001 +0200 +@@
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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pm2521ocr.pdf
22NF 80% 40V 4822 122 30103 c 1920 22NF 80% 40V 4822 122 30103 | ¢ 1921 1ONF 80% 40V 4822 122 36943 ¢ 1922 IONF 80% 40V 4822 122 30043 . C 1923 1ONF 80% 40V 4822 122 30043 C 1924 1ONF 80% GOV 4822 122 30043 ¢ 1925 LONF 80% 40V 4822 122 30043 C 1926 1ONF 80% 40V 4822 122 39043 ¢ 1927 IGNF 80% 40V 4822 122 30043 € 1928 1ONF 80% 40¥ 4822 122 30043 ¢ 1929 1ONF 80% 40V 4822 122 30043 C 1930 1ONF 80% 40V 4822 122 30043 ¢ 1931 LONF
in „Pjilips PM2519“ · Markt ·
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EWARM_DevelopmentGuide.ENU.pdf
ThecompilerplacessubroutinepointersforperformingC++dynamic initializationinto sections of the ELF section typesPREINIT_ARRAY and SHT_INIT_ARRAY . By default, the linker will place these into a linker-created block, ensuring that all sections of the section tSHT_PREINIT_ARRAY are placed before those of the type SHT_INIT_ARRAY .Ifanysuchsectionswereincluded
in „Viele Flags effizient speichern und schreiben/Byte in Bitfeld?“ · Mikrocontroller und Digitale Elektronik ·
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E3634ser.pdf
ArfcouAunlie3nHADt3lnA3e ACC A 4ttDt0l43cfAnlie3uk & grVDu3A3e A3f4tumcf2 fA3cAnc-Anlt AOcn34i Anl2l3A1*spA>40AmcfAtc2lt4nA**<A>40)A AsA>40AmcfAtc2lt4nA*ssA>40)AcfAws=A>40AmcfAtc2lt4nAwasA>407kAv 0cfrA3e AcD3oD3A 0Dff t3Af 4rltiACHArlOlrltiA3e AOcn34i Af 4rltiActA3e Arlil34nAOcn32 3 fACHA3e A f ulu34t0 AcmA3e
in „0-30V 25A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·