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can_g1251_v02.eagle7_Falk.sch.pdf
N$6 A4_SDA 2 C2 100n 100n GND (MOSI1/T3/ADC7)PE3 A5_SCL D VSS D10n D D D G N N N N ATMEGA328PB-AU SHT21 220k 4k7 G G G G RXD A3_VSENS TXD D3_RG+ A6_G1188 +9VBUF +5IOO D23_TRIG +9V D2 D22_ECHO I MBRS130LT3 Q3 3 V +5V IRLML6244 3 + +9V IO+ IO D5 IC2 I JP1 PMEG2005EG D9-EXTOFF D6_AI1 16 AIN1 NSLEEP 1 5
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
telos-revb-2004-09-27.pdf
PWR_CONN D C 4 VCC SCLK 3 HUM_SCL D V A 1 GND SDA 2 HUM_SDA C5 4 3 2 1 0 9 8 7 6 5 4 3 2 1 0 9 0.1u SHT11 L2 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 OPTIONAL VCCin 1 2 DVCC DVCC c s s 2 1 0 I I I T T F Bead 240-1035-1 DVCC c s s / / / M C M T T 2 U U L L A D A . . . / T T / T O O A C ADC4 ADC5 C1 C2 C3 P P P
in „Mic Amp an 2.4GHz Sender - Störung“ · HF, Funk und Felder ·
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PDF
howto_-tasmota-sml.pdf
Schaltbilder 34 IR-Fototransistor 34 IR-Transmitter mit n-Mosfet 34 Induktiver Sensor für die Wasseruhr 35 1 Gaszähler 36 Linksammlung 37 Changelog: 39 2 Vorwort / Hinweise Diese Beschreibung soll dazu dienen Einsteigern die Konfiguration des SML Tasmota Treibers zu erleichtern. Der Treiber wurde von Gemu2015
in „Wärmezähler über optische M-Bus-Schnittstelle auslesen“ · Haus & Smart Home ·
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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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PDF
vestel_17ips11-r2.pdf
C150 LED1 LED1_S V_LED+ 1 E 1u L112 150u F106 F100 1m 10u 10u 10u 1n LED1_S 50V 50V 0 1u 25V 50R F105 35V 50V 50V 1 R154 S133 S153 2 C152 25V 1u 50R 50R LED2 LED2_S 470n n 5 C138 25V R OVP_LED LED2_S 3 25V 5 0 1 1 COMP VCC 16 C139 R000 FDC642P BL_ON-OFF 2 4 C GATE_LED PIN_6 1 Q109 S128 LED3_S S154 4 S120
in „LCD-Fernseher Hintergrundbeleuchtung defekt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rudi_____RX-V4A_TSR-400.pdf
C125 15 94 13 0.1/10 P1RX2M 16 93 TX2P Noreplacement HBCK/DSDCK P1RX2P 17 92 TX2M to 002.sht HMCK 2 IC1 part available. DGND AUP_SEL DGND +3.3H1 A1 VSS 18 91 AVDD09TX +3.3H1 (CPU) MUX to 004.sht VDD09 TX1P SELECT VCC 19 MN864798YA 90 1 1 (DIR) P0RX3M TX1M サービス部品供給なし to DIGITAL 2/5 HRX_MCLK
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
modules_install_file_list_LK5.2-RC2.txt
.ko INSTALL drivers/hwmon/sch5636.ko INSTALL drivers/hwmon/sch56xx-common.ko INSTALL drivers/hwmon/sht15.ko INSTALL drivers/hwmon/sht21.ko INSTALL drivers/hwmon/sht3x.ko INSTALL drivers/hwmon/shtc1.ko INSTALL drivers/hwmon/sis5595.ko INSTALL drivers/hwmon/smsc47b397.ko INSTALL drivers/hwmon/smm665.ko
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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PDF
DiscoveryF3_adap.pdf
PIU804 100nF GND PC14 PIJ425 36 PIJ4036PB2_I2C1_XCLR PIU80PAD VSS PIU802 C0 S3B-ZR PC5_UART1_RX PIJ426 35 PIJ4035PF4 Label: SAT PC4_ADC2_IN5 PIJ427 34 PIJ4034PC1_I2C2_EOC SHT21 GND PC2_SD_SW PIJ428 33 PIJ4033PC3_ADC12_IN GND VCC3V SD Card VCC5V PIJ429 32 PIJ4032 VCC3V PIJ430 31 PIJ4031 Power C2 P02 P02 P8P
in „[V] STM32F3 Discovery + Adapterboard für ein FlyingF3 (FlightControl) mit der Taulabssoftware“ · Markt ·
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PDF
GA-5486AL.pdf
DATA SRAM respectively. • CACHE MEMORY SIZE SETTING 3-3 GA-5486AL Size 128K 256K 512K JP4 2-4 OPN SHT SHT JP4 1-3 OPN OPN SHT DATA SRAM 32K8 4 pcs 64K8 4 pcs 128K8 4 pcs TAG SRAM 8K8 16K8 32K8 JP4 JP4 JP4 4 2 4 2 4 2 3 1 3 1 3 1 128KB 256KB 512KB 3.5 CPU INSTALLATION AND JUMPERS SETUP The CPU is a sensitive
in „Sucher 486er bis DX4 100“ · Markt ·
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PDF
msp430g2553_controller.pdf
367.0 38.0 MSP430G2353IRHB32R VQFN RHB 32 3000 367.0 367.0 35.0 MSP430G2353IRHB32T VQFN RHB 32 250 210.0 185.0 35.0 MSP430G2413IPW20R TSSOP PW 20 2000 367.0 367.0 38.0 MSP430G2413IPW20R TSSOP PW 20 2000 367.0 367.0 38.0 MSP430G2413IPW28R TSSOP PW 28 2000 367.0
in „MSP430g2553 externe Taktquelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430fr5729.pdf
35.0 MSP430FR5722IRGET VQFN RGE 24 250 210.0 185.0 35.0 MSP430FR5723IRHAR VQFN RHA 40 2500 367.0 367.0 38.0 MSP430FR5723IRHAT VQFN RHA 40 250 210.0 185.0 35.0 MSP430FR5724IPWR TSSOP PW 28 2000 367.0 367.0
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
MSP430G2153IPW28R TSSOP PW 28 2000 367.0 367.0 38.0 MSP430G2153IRHB32R VQFN RHB 32 3000 367.0 367.0 35.0 MSP430G2153IRHB32T VQFN RHB 32 250 210.0 185.0 35.0 MSP430G2213IPW20R TSSOP PW 20 2000 367.0 367.0 38.0 MSP430G2213IRHB32R VQFN RHB 32 3000 367.0 367.0 35.0 MSP430G2213IRHB32T VQFN RHB 32 250 210.0
in „LiPo-Akku+LowPower: 5V Controller oder Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
MSP430G2153IPW28R TSSOP PW 28 2000 367.0 367.0 38.0 MSP430G2153IRHB32R VQFN RHB 32 3000 367.0 367.0 35.0 MSP430G2153IRHB32T VQFN RHB 32 250 210.0 185.0 35.0 MSP430G2213IPW20R TSSOP PW 20 2000 367.0 367.0 38.0 MSP430G2213IRHB32R VQFN RHB 32 3000 367.0 367.0 35.0 MSP430G2213IRHB32T VQFN RHB 32 250 210.0
in „Signalverzögerung im Minutenbereich“ · Mikrocontroller und Digitale Elektronik ·
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Datei
out.txt
a=..E7.. 0x8005118: 11 37 00 08 d1 36 00 08 49 31 00 08 51 31 00 08 .7...6..I1..Q1.. 0x8005128: f9 35 00 08 91 37 00 08 00 00 00 00 00 00 00 00 .5...7.......... 0x8005138: ad 32 00 08 00 00 00 00 00 00 00 00 81 3c 00 08 .2...........<.. 0x8005148: 35 3c 00 08 00 00 00 00 00 00 00 00 7d 3a 00 08 5<...
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slas272d.pdf
Typical e 550 e 550 n c r e f f e e – 500 – 500 T ) V V E E ( ( 450 V 450 V 400 400 –45 –25 –5 15 35 55 75 95 –45 –25 –5 15 35 55 75 95 TA– Free-Air Temperature – °C TA– Free-Air Temperature – °C Figure 6. V (RefVT) vs Temperature, V CC = 3 V Figure 7. V (RefVT) vs Temperature, V CC = 2.2 V 0 V V CC
in „MSP430 Interrupt Port1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2452.pdf
OSCILLATING FREQUENCY vs vs LOAD CAPACITANCE LOAD CAPACITANCE 1.50 1.50 z VCC = 2.2 V z VCC = 3.0 V H 1.35 H 1.35 M M − 1.20 − 1.20 c c e 1.05 e 1.05 q q r P1.y r P1.y F 0.90 F 0.90 o P2.0 ... P2.5 o P2.0 ... P2.5 a 0.75 a 0.75 i P2.6, P2.7 i P2.6, P2.7 s 0.60 s 0.60 l l c 0.45 c 0.45 p p T T − 0.30 − 0.30
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_schematic.pdf
# {15} AK57 SA_DQ18 AU35 AL28 SB_DQ17 SB_CAS DDRB_CAS# {15} DDRB_DQ3 SA_DQ19 SA_BA0 DDRA_BS0# {14} DDRB_DQ34 SB_DQ18 DDRB_DQ4 AL58 SA_DQ20 SA_BA1 AV35 DDRA_BS1# {14} DDRB_DQ35 AK28 SB_DQ19 SB_BA0 AL35 DDRB_BS0# {15} DDRB_DQ5
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
SA_BA1 AV35 DDRA_BS1# 14 DDRB_DQ35 AK28 SB_DQ19 SB_BA0 AL35 DDRB_BS0# 15 DDRB_DQ6 AR57 SA_DQ21 SA_BA2 AY41 DDRA_BS2# 14 DDRB_DQ37 AN29 SB_DQ20 SB_BA1 AU49 DDRB_BS1# 15 DDRB_DQ7 AN57 SA_DQ22 AU36 DDRA_MA0 DDRA_MA
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f1232.pdf
= 0, TA= 25°C 2.2 V/3 V DCO40 DCO40 DCO40 MHz x1.7 x2.1 x2.5 S(Rsel) S R f Rsel+1 Rsel 2.2 V/3 V 1.35 1.65 2 ratio S(DCO) S DCO = DCO+1 DCO 2.2 V/3 V 1.07 1.12 1.16 2.2 V −0.31 −0.36 −0.4 D Temperature drift, R = 4, DCO = 3, MOD = 0 (see Note 1) %/°C t sel 3 V −0.33 −0.38 −0.43 Drift withCC variation
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F233TPM.pdf
Typical V V c 550 e 550 n n e r e f R R -)500 - 500 T T F F E E (450 ( 450 V V 400 400 -45 -25 -5 15 35 55 75 95 -45 -25 -5 15 35 55 75 95 TA- Free-Air Temperature - °C TA- Free-Air Temperature - °C Figure 35. V (RefVT)vs Temperature, V CC = 3 V Figure 36. V (RefVT) vs Temperature, V CC = 2.2 V 100.00
in „MSP430 SPI A25L080 Flash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferrite_als_magnetostriktive_Resonatoren_eth-32736-02.pdf
/ lern'/ 1 100 0 8,00 0,30 160 34,5 1/ 80 295 1400 23,5 65 4,83 1,47 5 5 0 0 2 80 20 7,87 0,31 160 35,1 1/ 90 305 1000 27,5 55 4,95 1,51 55C0 3 60 40 7,74 0,30 120 35,3 1/135 405 1200 55,0 75 4,67 1,39 5450 eine z u die der Antriebsspule werden eindeutige Abhängigkeit erhalten, entmagne¬ Windungszahl
in „Ferritkernsättigung von außen detektieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
msp430fr2532.pdf
current into DVCC ADCCLK = 5 MHz, ADCON = 1, 2 V 185 I terminal, reference current not REFON = 0, SHT0 = 0, SHT1 = 0, µA ADC included, repeat-single-channel 3 V 207 mode ADCDIV = 0, ADCCONSEQx = 10b Only one terminal Ax can be selected at one CI Input capacitance time, from the pad to the ADC capacitor
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F2274_Family_datasheet.pdf
: IN= VSS; 20 35 50 kΩ Pull For pulldown: IN = VCC C I Input capacitance VIN = VSS or CC 5 pF inputs - Ports P1 and P2 PARAMETER TEST CONDITIONS VCC MIN TYP MAX UNIT Port P1, P2: P1.x to P2.x, External t(int) External
in „UART_Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F5438IPZ.pdf
supply current into fADC12CLK = 5.0 MHz, ADC12ON = 1, 2.2 V 125 155 ADC12_A AV terminal(3) REFON = 0, SHT0 = 0, SHT1 = 0, µA CC ADC12DIV = 0 3 V 150 220 ADC12ON = 0, 3 V 150 190 Operating supply current into REFON = 1, REF2_5V = 1 REF+ AV terminal(4) µA CC ADC12ON = 0, 2.2 V/3 V 150 180 REFON = 1, REF2_
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8019AS.pdf
6.2.2. Isolation Protocol 30 6.2.3. Plug and Play Isolation Sequence 34 6.2.4. Reading Resource Data 35 6.2.5. PnP auto detect mode 36 6.3. 9346 Contents 37 6.4. Boot ROM 38 6.5. LED Behaviors 40 6.6. Loopback Diagnostic Operation 42 6.6.1. Loopback Operation 42 6.6.2. To implement Loopback Test 43 7.
in „Webserver mit ISA Netzwerkkarte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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Datei
config-mod-LK511-mt7623n-BPiR2.txt
not set CONFIG_SENSORS_PCF8591=m # CONFIG_PMBUS is not set CONFIG_SENSORS_PWM_FAN=m CONFIG_SENSORS_SHT15=m CONFIG_SENSORS_SHT21=m CONFIG_SENSORS_SHT3x=m CONFIG_SENSORS_SHTC1=m CONFIG_SENSORS_SIS5595=m CONFIG_SENSORS_DME1737=m CONFIG_SENSORS_EMC1403=m CONFIG_SENSORS_EMC2103=m CONFIG_SENSORS_EMC6W201=m
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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Datei
WCU_Kilobot_Schematic.txt
Bottom COMPONENT Y ROUTABLE Y VISIBLE Y SELECTABLE Y ENABLED Y LAYER_THICKNESS 0 COPPER_THICKNESS 1.35 DIELECTRIC 3.300000 COST 0 } LAYER 3 { LAYER_NAME Layer_3 LAYER_TYPE UNASSIGNED PLANE NONE ROUTING_DIRECTION NO_PREFERENCE VISIBLE Y SELECTABLE Y ENABLED Y LAYER_THICKNESS 0 COPPER_THICKNESS 0 DIELECTRIC
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PDF
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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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
set +# CONFIG_RTC_DRV_STK17TA8 is not set +# CONFIG_RTC_DRV_M48T86 is not set +# CONFIG_RTC_DRV_M48T35 is not set +# CONFIG_RTC_DRV_M48T59 is not set +# CONFIG_RTC_DRV_MSM6242 is not set +# CONFIG_RTC_DRV_BQ4802 is not set +# CONFIG_RTC_DRV_RP5C01 is not set +# CONFIG_RTC_DRV_V3020 is not set + +# +#
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
set +# CONFIG_RTC_DRV_STK17TA8 is not set +# CONFIG_RTC_DRV_M48T86 is not set +# CONFIG_RTC_DRV_M48T35 is not set +# CONFIG_RTC_DRV_M48T59 is not set +# CONFIG_RTC_DRV_MSM6242 is not set +# CONFIG_RTC_DRV_BQ4802 is not set +# CONFIG_RTC_DRV_RP5C01 is not set +# CONFIG_RTC_DRV_V3020 is not set + +# +#
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DOKUMENTATION_MSP430-F2013.pdf
Typical V V e 550 e 550 n n r r f f R R - 500 - 500 T T V V E E ( (450 V 450 V 400 400 -45 -25 -5 15 35 55 75 95 115 -45 -25 -5 15 35 55 75 95 115 TA- Free-Air Temperature - C TA- Free-Air Temperature - C Figure 19. V (RefVT)vs Temperature, V CC = 3 V Figure 20. V (RefVT) vs Temperature, V CC = 2.2 V
in „MSP430 2013 XOUT/XIN ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f5529.pdf
UCA0RXD/UCA0SOMI P5.4/XIN 12 37 P3.3/UCA0TXD/UCA0SIMO P5.5/XOUT 13 36 P3.2/UCB0CLK/UCA0STE AVSS1 14 35 P3.1/UCB0SOMI/UCB0SCL DVCC1 15 34 P3.0/UCB0SIMO/UCB0SDA DVSS1 16 33 P2.7/UCB0STE/UCA0CLK 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 E K 0 . 2 3 4 T 0 1 2 0 1 2 0 R L 0 0 0 0 0 U 1 1 1 L 2 2 2 E
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
spec-8139d_130_.pdf
AD28 RTL8139D QFP 40 NC 92 AD27 39 VDD 93 AD26 38 AD4 94 AD25 37 AD5 95 AD24 36 AD6 LLLLLLL 96 VDD25 35 ROMCS/OEB 97 VDD TXXXX TAIWAN 34 VDD 98 CBE3B 33 AD7 99 IDSEL 32 CBE0B 100 AD23 31 GND 30 AD8 1 AD22 2 GND 29 AD9 3 AD21 28 AD10 4 AD20 27 AD11 5 AD19 26 AD12 6 VDD 25 AD13 7 NC 24 AD14 8 AD18 23 AD15
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PDF
msp430f5529.pdf
Applications........................................1.. 5.23 PMM, SVM High Side .............................35 1.3 Description.........................................2.. 5.24 PMM, SVS Low Side ..............................35 1.4 Functional Block Diagrams .........................3. 5.25 PMM, SVM Low Side ..
in „Tastatur komplett selbst erstellen“ · PC Hard- und Software ·
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PDF
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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PDF
pm2521ocr.pdf
eio1 Z) ; | | 15 i [ a Te C E P TL24 a D AT; CO:T i a CET sz Z : D1 01Kz 7BI BIs Z o e s | 3 03e ]83 35 Z i ; PE AcVCC GND VSS GND : 74LSI6I«18 20 ©TALS2hh1 ST387 ‘ Fg.35.Counter -5V-10V 1 y e ov “814130 e 1.4.5.3. Analogcontrol e e Control inputs : The ten function switches when selected, provide a —10V
in „Pjilips PM2519“ · Markt ·
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PDF
E3634ser.pdf
+ 5 mA respecttoactualoutput@25°C ± 5 °C), ±(% of output + offset) Ripple and Noise Normal mode <0.35 mV rms and <0.5 mV rms and (with outputs ungrounded, or voltage 3 mV p-p 3 mV p-p with either output terminal Normal mode <2 mA rms grounded, 20 Hz to 20 MHz) current Common mode <1.5 uA rms current
in „0-30V 25A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·