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PDF
X1205.pdf
mA 2, 5, 7, 14 (nonvolatile) VCC = 5.0V 3.0 mA CC3 Main Timekeeping VCC = 2.7V 10 µA 3, 7, 8, 14, 15 Current V = 5.0V 20 µA CC IBACK Timekeeping Current VBACK = 1.8V 1.25 µA 3, 6, 9, 14, 15 V = 3.3V 1.5 µA “See Perfor- BACK mance Data” LI Input Leakage Current 10 µA 10 I Output Leakage Current 10 µA
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PDF
DM00031020.pdf
LED). When the backup domain is supplied by V BAT (analog switch connected to VBAT because V DD is not present), the following functions are available: ● PC14 and PC15 can be used as LSE pins only ● PC13 can be used as the RTC_AF1 pin (refer to Table
in „fsmc am stm32f4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
r_manuel.pdf
LED). When the backup domain is supplied by V BAT (analog switch connected to VBAT because V DD is not present), the following functions are available: ● PC14 and PC15 can be used as LSE pins only ● PC13 can be used as the RTC_AF1 pin (refer to Table
in „Hilfe bei Programmierung STM32F407VG bei TIM1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM00135183.pdf
by V BAT (analog switch connected to V BAT because VDD is not present), the following functions are available: • PC14 and PC15 can be used as LSE pins only • PC13 can be used as the RTC_AF1 pin (refer to Table
in „STM32F446 FMP I2C kein Open Drain möglich?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sanyo_CADNICA.pdf
35.0 9 N-50SB3 3.6 45 3.0 1.5 48 4.5 11.0 50.5 12 Tubular Coaxial-Lead N-SB1 1.2 90 1.0 3.3 48 1.5 15.5 21.5 9 Type Battery N-SB2 2.4 90 2.0 3.3 48 3.0 15.5 38.5 16 N-SB3 3.6 90 3.0 3.3 48 4.5 15.5 55.5 24 N-SB4 4.8 90 4.0 3.3 48 6.0 15.5 72.5 31 N-150NS 1.2 135 1.0 5 48 1.5 12.0 29.0 9 N N-50AAAS 1.2
in „Was für ein Bauteile ist das“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nkat20-21.pdf
-.15 -.0295 -.0199 -.0166 -.0100 10pF 0805 NP0 50V ±5% 8230/100 -.15 -.0255 -.0165 -.0136 -.0082 12pF 0805 NP0 50V ±5% 8230/120 -.15 -.0250 -.0162 -.0133 -.0080 15pF 0805 NP0 50V ±5% 8230/150 -.15 -.0339
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PDF
TIM-LF_Prod_Summary_GPS.G3-MS3-03003_.pdf
service Mechanical Data Electrical Data 25.4 ± 0.1 mm [1000 ± 4 mil] Power Supply 2.7 – 3.3 V 16 GND GND 15 17 RF_IN GND 14 Power typ. 153 mW @ 3.0 V 18 GND TIM-LF GND 13 Consumption typ. 138 mW @ 2.7 V Top View ] 19 V_ANT GND 12 1.9 ± 0.1 mm Sleep mode: typ. 100 µA m 20 VCC_RF GND 11 [75 ± 4 mil] ± 2.8 ± 0.1 mm Backup Power 1.95 V – 3.6 V 0 21 V_BAT VDD18_OUT 10 [110 ± 4 mil] [ 22 RESET_N 9 m P8 / STATUS Serial Ports 2 USARTs @ 3 V levels . 23 EXTINT0 / P9 SCK1 / P178 ± 24 PCS1_N / P27 RxD2 / P227 5V TTL compatible inputs . 25 PCS0_N / SS_N / P26
in „Projekt Navigationssystem ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC-Display-Bausatz_V2.pdf
33 kΩ 1 R10 47 Ω 2 C1, C2 4,7 µF / 16 V 5 C3 C7 0,47 µF / 16 V 1 C8 22 µF / 6,3 V 1 D1 ZPD 3,9 1 D2 BAT 85 1 J1 LC-Display ALPS LSU7S1011A 1 J2 25-pol. Sub-D-Buchsenleiste 1 J3 2-pol. Netzanschlussklemme LC-Display-Modul-Platinenlayout Stückliste / Bestückungsplan Seite 2 www.pollin.de Bevor Sie mit der
in „Anschlussplatine für LC-Display ALPS LSU7S1011A, mit Display funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
GPU(below 150mils) GPU_PEX_RST_HOLD# 2 1 1 OPT@ 2.49K_0402_1% 180ohms (ESR=0.2) Bead 1 PLT_RST_VGA# N15S-GT-S-A2_FCBGA595 +SP_PLLVDD 1 2 LV1 SYS_PEX_RST_MON# 3 N15SGT@ f +1.05VGS 150mA 7 1 7 1 6 1 6 1 PBY160808T-181Y-N_2P BAT54AWT1G_SOT323-3 1 CV15 1 CV16 . CV17 . CV18 OPT@ GC6@ 2 2 _ _ 0 2 0 2 4 2 8 2
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ABX00042-ABX00045-ABX00046-datasheet.pdf
USB-C® 12 3.2 High Density Connector 13 3.3 I2C Ports 14 3.4 Wake Up Signals/External Relay Commands 15 4 Application Examples 16 4.1 Accessories (Not Included) 16 5 Functional Overview 16 5.1 Board Topology 16 5.2 Power Tree 17 6 Mean Time Between Failure (MTBF) 18 7 Mechanical Information 18 7.1 Board
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FK743M5-XIH6.pdf
LED,白光 NPB 44PIMC10U15 PI MCU10N 2 NFM _SDCKE0 PH2DS0 PIMCU10K10 PIMCU10U1 CO9 2.2uF 3K PB 55 T15 PB14 PH2 P2 NFM _SDNE0 PH33 K11 VSS VCAP P WER1CRE B PIMC10T15 PB15 PH3 PI MCU10P 2 PIMCU10K11 VSS PI10 PC00 QSPI Flash W25Q64
in „STM32H743 mit 32MByte externem SDRAM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12.c
**************************************************************************** * Function Name : EXTI15_10_IRQHandler * Description : This function handles External lines 10-15 interrupt request. * Input : None * Output : None * Return : None * Attention : None *****************************************
in „RFM12 und STM32F1xx“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS4140N.pdf
- circuit current, see page 5)IL self limited A Maximum current through the input pin ( DC ) IIN ±15 mA Operating temperature T -40 ...+150 °C j Storage temperature Tstg -55 ... +150 Power dissipation1) Ptot 1.7 W TA= 25 °C 2) 1 J Inductive load switch-off energy dissipation EAS single pulse Tj= 150 °C, IL= 0.15 A Load dump protection 3)VLoadDump 4)= VA+ V S VLoaddump V R I2Ω, td=400ms, V =INow or high IL= 150 mA, V bb= 13,5 V 93.5 Vbb = 27 V 127 Electrostatic discharge voltage(Human Body Model) VESD kV according
in „+12V mit +3.3V schalten P-MOSFET?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSM486SE-DIGITAL-LOGIC.pdf
solderjumper) open Jumper 50 (solderjumper) open Bios: components -> PIRQ mapping -> PIRQ5 map to IRQ 5 3.15.1 DOS NOVELL 4.11 1) Copy the directory x:\products\msm\msm486se_\tools\network\novell_irq5\nov411 to your HDD (c:\....) 2) Copy the file x:\products\msm\msm486se_tools\network\novell_irq5\nov411.bat to your HDD 3) Start batchfile NOV411.BAT 86 DIGITAL-LOGIC AG MSM486SE/SEV Manual V1.2 4 D ESCRIPTION OF THE CONNECTORS Jumper Texture Pin Remarks J02 PC104 Bus 104 2.54mm J03 Keymatrix 2x15 2.54mm J04 Power 2x4 2.54mm J05 Keyb, Mouse 2x5 2.54mm
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PDF
ICL7665.pdf
= 2V, All grades: V+ = 5V 0.10 0.30 V Voltage OUT1 = 2mA ICL7665,ICL7665A:V+=15V 0.06 0.20 ICL7665B: V+ = 9V 0.06 0.25 All grades: V+ = 2V -0.15 -0.30 V HYST1 Saturation VSET1 = 2V, All grades: V+ = 5V -0.05 -0.15 V Voltage HYST1 = -0.5mA ICL7665, ICL665A: V+ = 15V -0.02 -0.10 ICL7665B: V+ = 9V -0.02 -0.15 All grades: V+ = 2V 0.20 0.50 V OUT2 Saturation VSET2 = 0V, All grades: V+ = 5V 0.15 0.30 Voltage OUT2 = 2mA ICL7665, ICL665A: V+ = 15V 0.11 0.25 V ICL7665B: V+ = 9V 0.11 0.30 VSET2 = 2V, All grades:
in „7665 über 20V geht das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hut1_12v2.pdf
Center Sel 15.15 1A7 AL Documents Sel 15.15 1A8 AL Thesaurus Sel 15.15 1A9 AL Dictionary Sel 15.15 1AA AL Desktop Sel 15.15 1AB AL Spell Check Sel 15.15 1AC AL Grammar Check Sel 15.15 1AD AL Wireless Status Sel 15.15 1AE AL Keyboard Layout Sel 15.15 1AF AL Virus Protection Sel 15.15 1B0 AL Encryption Sel 15.15 1B1 AL Screen Saver Sel 15.15 1B2 AL Alarms Sel 15.15 1B3 AL Clock Sel 15.15 1B4 AL File Browser Sel 15.15 1B5 AL Power Status Sel 15.15
in „USB HID Descriptor Spotify-Steuerung STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7665.pdf
= 2V, All grades: V+ = 5V 0.10 0.30 V Voltage OUT1 = 2mA ICL7665,ICL7665A:V+=15V 0.06 0.20 ICL7665B: V+ = 9V 0.06 0.25 All grades: V+ = 2V -0.15 -0.30 V HYST1 Saturation VSET1 = 2V, All grades: V+ = 5V -0.05 -0.15 V Voltage HYST1 = -0.5mA ICL7665, ICL665A: V+ = 15V -0.02 -0.10 ICL7665B: V+ = 9V -0.02 -0.15 All grades: V+ = 2V 0.20 0.50 V OUT2 Saturation VSET2 = 0V, All grades: V+ = 5V 0.15 0.30 Voltage OUT2 = 2mA ICL7665, ICL665A: V+ = 15V 0.11 0.25 V ICL7665B: V+ = 9V 0.11 0.30 VSET2 = 2V, All grades:
in „Idee Solarregler ATTiny13 mit Überlade- und Entladeschutz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_guide_-_Driver.pdf
choices: The processor core frequency must be specified with one of the following: EPI_SDRAM_CORE_FREQ_0_15 - core clock is 0 MHz < clk <= 15 MHz EPI_SDRAM_CORE_FREQ_15_30 - core clock is 15 MHz < clk <= 30 MHz EPI_SDRAM_CORE_FREQ_30_50 - core clock is 30 MHz < clk <= 50 MHz EPI_SDRAM_CORE_FREQ_50_100 - core
in „PCF8574 mit LM3S8938 per I2C auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Driver_Library_user_guide.pdf
low battery detection. 9.2.2.14 HibernateLowBatSet Configures the low battery detection. Prototype: void HibernateLowBatSet(unsigned long ulLowBatFlags) Parameters: ulLowBatFlags specifies behavior of low battery detection. 104 October 30, 2008 Stellaris
in „I2C Display Steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3999fa-1.pdf
with 12V to 12V, 10WLow Noise Isolated DC/DC Converter Duty Cycle Control VIN 16 12V 10µF 16V VIN 15.3µH VOUT 15 SYNC SWA 12V 255k UVLO 10µF 0.8A ( 14 16V G 13 IOUT= 400mA OVLO/DC T IOUT= 200mA 10k RDC V 12 15.8k LT3999 U IOUT= 800mA 3999 TA01a T 11 RT SWB O 10 ILIM/SS RBIAS 9 500kHz 0.1µF 49.9k GND
in „Halbbruecke Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GA-5486AL.pdf
SRAM. The TAG SRAM type used in this mainboard is 8Kx8, 16Kx8, 32Kx8 and the DATA SRAM type is 32Kx8-15ns 64Kx8-15ns or 128Kx8-15ns. The mainboard can be installed with 128, 256, 512 KB cache memory when using 32Kx8 or 64Kx8 or 128Kx8 type DATA SRAM respectively. • CACHE MEMORY SIZE SETTING 3-3 GA-5486AL
in „Sucher 486er bis DX4 100“ · Markt ·
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Datei
mach-mini2440.c
S3C2410_GPCCON_MASK(13) | S3C2410_GPCCON_MASK(14) | S3C2410_GPCCON_MASK(15)), .gpdup = (0x3f << 2) | (0x3f << 10), .gpdcon = (S3C2410_GPD2_VD10 | S3C2410_GPD3_VD11 | S3C2410_GPD4_VD12 | S3C2410_GPD5_VD13 | S3C2410_GPD6_VD14 | S3C2410_GPD7_VD15 | S3C2410_GPD10_VD18 | S3C2410_GPD11_VD19 | S3C2410_GPD12_VD20 | S3C2410_GPD13_VD21 | S3C2410_GPD14_VD22 | S3C2410_GPD15_VD23), .gpdcon_mask = (S3C2410_GPDCON_MASK(2) | S3C2410_GPDCON_MASK(3) | S3C2410_GPDCON_MASK(4) | S3C2410_GPDCON_MASK(5) | S3C2410_GPDCON_MASK(6) | S3C2410_GPDCON_MASK(7) | S3C2410_GPDCON_MASK(10) |
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LoRa_Sender.ino
BATT-Zeugs End Serial2.begin(9600, SERIAL_8N1, 22, -1); } int retryCounter = 0; void loop() { /**** BAT ZEUGS ****/ batt_voltage = Sample(); if (batt_voltage < MINBATT) { // Low Voltage cut off shut down to protect battery as long as possible Serial.printf(" !! Shutting down...low battery volotage: %dmV
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1811.pdf
100 100 50 4.10 0 50 V SELV= 0 -50 0 4.08 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 0 1 2 3 4 5 6 7 -40 -15 10 35 60 85 VBATT (V) VINV) TEMPERATURE ( C° CHARGE CURRENT CHARGE CURRENT vs. TEMPERATURE vs. TEMPERATURE WITH THERMAL REGULATION 600 7 8 V = V = V = 5.5V, V = 2.7V t 600 V = V = V = 6.5V, V = 2.7V
in „Stromversorgung Akku für µC - Welche Technologie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EB-85A_User_Manual.pdf
...................................................................................................15 GLL – Geographic Position – Latitude/Longitude.......................................................16 GSA – GNSS DOP and Active Satellites...........................................................
in „[V] EB85-A GPS-Empfaenger“ · Markt ·
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PDF
MAX1811.pdf
100 100 50 4.10 0 50 V SELV= 0 -50 0 4.08 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 0 1 2 3 4 5 6 7 -40 -15 10 35 60 85 VBATT (V) VINV) TEMPERATURE ( C° CHARGE CURRENT CHARGE CURRENT vs. TEMPERATURE vs. TEMPERATURE WITH THERMAL REGULATION 600 7 8 V = V = V = 5.5V, V = 2.7V t 600 V = V = V = 6.5V, V = 2.7V
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
El_2017_0506_118-125.pdf
S D L S / 0 1 2 3 4 5 6 7 E E V V V R R E D D D D D D D D L L +5V 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 +5V +5V C2 C1 K1 P1 1 MCLR copyright 100n 100n 10k 2 3 T1 4 PGD 5 PGC FQP27P06X 6 1 19 VDD 16 RA0 RC0 IC2 18 RA1 RC1 15 1 IN BAT 3 17 IC1 14 MIC79050 RA2 RC2 -4.2YS LED1 4 RA3/MCLR RC3 7 GND 3 6 RA4
in „Ladezustand von Li-Ion-Akku messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
csvview.pdf
enthalten. Datum;Zeit;Spalte1;Spalte2;Spalte3;Spalte4;Spalte5;Spalte6;Spalte7;Spalte8 01.01.2010;00:15;1,1;6,05;0,44;98,1;0;1;0;1,08 01.01.2010;00:30;1,2;6,1;0,53;98;0;1;0;1,24 Falls es der Datenquelle nicht möglich sein sollte, dieses Format zu erzeugen, kann es auch mit dem Konvertierungsprogramm angepasst
in „Konstanstromquelle mit JFET“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F429_Reference_Manual.pdf
• The LSE oscillator • The backup SRAM when the low-power backup regulator is enabled • PC13 to PC15 I/Os, plus PI8 I/O (when available) The switch to the BAT supply is controlled by the power-down reset embedded in the Reset block. Warning: During tRSTTEMPO (temporization at VDD startup) or after a
in „USB-C Dual-Role-Device DRD mit integriertem OTG FS PHY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_Reference_manual.pdf
• The LSE oscillator • The backup SRAM when the low-power backup regulator is enabled • PC13 to PC15 I/Os, plus PI8 I/O (when available) The switch to the BAT supply is controlled by the power-down reset embedded in the Reset block. Warning: During tRSTTEMPO (temporization at VDD startup) or after a
in „STM32F4 Timer Triggered DMA SPI – NSS Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
butterfly.pdf
Light Sensor The light sensor is located at the front of the AVR Butterfly, over the LCD. See Figure 3-15. Figure 3-15. Light Sensor An LDR (Light Dependent Resistor) is used to measure the light. An LDR is character- ised by the fact that when the light decreases the resistance goes up. Using a voltage
in „AVR Butterfly, was benötigt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407VGT6.pdf
ID 018909 Rev 6 117/1710 146 Power controller (PWR) RM0090 When the backup domain is supplied by V BAT (analog switch connected to V BAT because V is not present), the following functions are available: DD • PC14 and PC15 can be used as LSE pins only • PC13 can be used as the RTC_AF1 pin (refer to Table
in „ARM Controller "richtig" programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407VGT6.pdf
ID 018909 Rev 6 117/1710 146 Power controller (PWR) RM0090 When the backup domain is supplied by V BAT (analog switch connected to V BAT because V is not present), the following functions are available: DD • PC14 and PC15 can be used as LSE pins only • PC13 can be used as the RTC_AF1 pin (refer to Table
in „STM32F4 pointer Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SANMOTION_R_M0006890N.pdf
LSB) Frame 2 0 D5 D6 D7 D8 D9 1 0 0 0/1 1 Frame 3 0 D10 D11 D12 D13 D14 0 1 0 0/1 1 Frame 4 0 D15 D16 D17 D18 D19 1 1 0 0/1 1 Frame 5 0 D20 D21 D22 D23 BATE 0 0 1 0/1 1 (MSB) Frame 6 0 SOT 0 WAR 0 0 1 0 1 0/1 1 Frame 7 0 0 0 0 0 0 0 1 1 0/1 1 Frame 8 0 0 0 0 0 0 1 1 1 0/1 1 D0 to D10 ・・・Absolute
in „Servoregler/Servoverstärker Verständnislücke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F4-BASE.pdf
J J U1 LD3985M18R 8 VAKKU+ 1 VIN VOUT 5 V 3 D + 2,5 bis 6V INH N Y D1 G B 2 4 Verpolungsschutz mit BAT60JFILM Schottky C14 C16 C21 +++ C20 SOD323 1uF 100nF 10nF 1uF 6,3V TACL105M006R B B 5V zu 3,3V U2 LD3985M33R +3V3 1 VIN VOUT 5 D 3 INH N Y G B 2 4 C15 C17 C19 +++ C18 1uF 100nF 10nF 1uF 6,3V C TACL105M006R
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7673-3600-0015.pdf
-3602: The total rated current (Aux.+Main) is 30A HCS-3604: The total rated current (Aux.+Main) is 15A (7) Output Terminal (Rated 60A for HCS-3600/ Rated 30A for HCS-3602/ Rated 15A for HCS-3604) (8) Remote Sensing Terminal (for model HCS-3600 only) (Warning!: Shorting the remote sensing terminal or
in „Manson HCS-3602 HCS-3600 Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
harman_kardon_hkts200-230_hkts210-230_sub.pdf
±0.2 ANWAHKTS3- 4310 00 Sheet : 1/1 Size :A4 Part NO. Drawn By Checked By Approved By 8~25 ±0.08±0.15±0.15 ±0.3 Sample 25~80 ±0.12±0.2 ±0.25 ±0.4 HKTS3LZY0-0001 80~250 ±025 ±0.3 ±0.4 ±0.6Drawing NO. Tooling 250~800 ±0.5 ±0.6 ±0.8 ±1.0 HKTS3LZY0-0001 Third Angle Projection Official Issue 800~2500±1.0
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Lenovo_schematic.pdf
C _ _ C + SPKR_MUTE# 39 SPKR_MUTE# LEFT- 14 SPK_L- 0 0 DA2 4 4 2 JSENSE 38 JSENSE RIGHT+ 17 SPK_R+ BAT54A1T1G_SOT323-3 R L _ 1 2 _ 37 15 SPK_R- 1 1 B B 1 1 C RA15 GPIO1/PORTC_R_MIC RIGHT- _ _ . C 5.11K_0402_1% 36 35 RA42 RA41 N N 33_0402_5% 1 RA18 2 DMIC_CLK_R 40 MUSIC_REQ/GPIO0/PORTC_L_MIC MICBIASC
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C65_Diagram_Set.pdf
IR_AC_RX MICBIAS_F /sheet5 13 C RF_AFC /sheet5 2 E TBAT VCXOEN_UC /sheet6 12 D /sheet6 7 C /sheet8 15 F /sheet3 13 C /sheet6 10 E /sheet4 13 D /sheet5 14 E /sheet9 5 D /sheet7 3 F /sheet4 4 B /sheet1 15 C /sheet5 9 B /sheet5 1 E /sheet6 12 A /sheet7 8 B /sheet6 15 E /sheet4 10 D /sheet9 10 E /sheet8
in „Reengineering: Siemens S65 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MP2354DS.pdf
4.7nF None at the location of the ESR zero. min. Ceramic Determine the C6 value by the equation: 3.3V 15µH 22µF 7.5kΩ 3.3nF None min. Ceramic C2 × 5V 15µH 22µF 11kΩ 2.2nF None C6 = ESR min. Ceramic R3 12V 22µH 22µF 27kΩ 1nF None min. Ceramic 2.5V 10µH 560µF Al. 140kΩ 1nF 120pF min. 30mΩ ESR 3.3V 15µH 560µF Al 187kΩ 1nF 82pF min. 30mΩ ESR 5V 15µH 470µF Al. 237kΩ 1nF 56pF min. 30mΩ ESR 12V 22µH 220µF Al. 267kΩ 1nF 22pF min. 30mΩ ESR MP2354 Rev. 1.4 www.MonolithicPower.com 9 1/6/2006 MPS Proprietary Information. Unauthorized Photocopy and Duplication
in „[S] Step Down Converter MP2354DS (für Fritzbox 7170)“ · Markt ·
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PDF
65013-8_LP_Lernpaket_Experimente_mit_USB.pdf
dem Quellcode ...... 140 14.9 Software-Beispiel I C-Zweidrahtverbindung ....................... 142 15 IR-Fernbedienung testen, Fotodiode im Einsatz ............................ 145 15.1 Infrarot-Datenübertragung im RC5-Code ........................... 146 15.2 Beispielsoftware IR-Fernbedienungstest ........................... 147 15.3 Quellcode IR-Fernbedienungstest .................................... 150 15.4 Tochterblitz mit Fotodiode ............................................. 152 15.5 Auswertungen in einem Timing-Diagramm
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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PDF
csvview.pdf
enthalten. Datum;Zeit;Spalte1;Spalte2;Spalte3;Spalte4;Spalte5;Spalte6;Spalte7;Spalte8 01.01.2010;00:15;1,1;6,05;0,44;98,1;0;1;0;1,08 01.01.2010;00:30;1,2;6,1;0,53;98;0;1;0;1,24 Falls es der Datenquelle nicht möglich sein sollte, dieses Format zu erzeugen, kann es auch mit dem Konvertierungsprogramm angepasst
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PDF
csvview.pdf
enthalten. Datum;Zeit;Spalte1;Spalte2;Spalte3;Spalte4;Spalte5;Spalte6;Spalte7;Spalte8 01.01.2010;00:15;1,1;6,05;0,44;98,1;0;1;0;1,08 01.01.2010;00:30;1,2;6,1;0,53;98;0;1;0;1,24 Falls es der Datenquelle nicht möglich sein sollte, dieses Format zu erzeugen, kann es auch mit dem Konvertierungsprogramm angepasst
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PDF
csvview.pdf
enthalten. Datum;Zeit;Spalte1;Spalte2;Spalte3;Spalte4;Spalte5;Spalte6;Spalte7;Spalte8 01.01.2010;00:15;1,1;6,05;0,44;98,1;0;1;0;1,08 01.01.2010;00:30;1,2;6,1;0,53;98;0;1;0;1,24 Falls es der Datenquelle nicht möglich sein sollte, dieses Format zu erzeugen, kann es auch mit dem Konvertierungsprogramm angepasst
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PDF
MAX38640A-MAX38643B.pdf
Number Refer to Application Note 1891 Thermal Resistance, Four Layer Board: Junction-to-Ambient (JA) 95.15°C/W For the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages. Note that a “+”, “#”, or “-” in the package code indicates RoHS status only. Package
in „(Ultra) Low Power System mit 3.3V ?“ · Mikrocontroller und Digitale Elektronik ·
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Elektor.pdf
mm C5 (for LS 4Ω) = 1000pF 630V, polypropylene, dim. 5.5x15 mm C6,C12,C13 = 220nF 250V, lead pitch 15mm C7,C14 = 470nF 630V, lead pitch 27.5 mm C8 = 10µF 450V, axial, dim. 15x30 mm Figure 2. Copper layout and component layout of the printed circuit board for
in „Röhrenverstärkerstufe ECC XX welches System zuerst?“ · Analoge Elektronik und Schaltungstechnik ·
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MAX471_MAX472_MAX.pdf
1.0 T TA= +25°C P 45 T = +85°C N 0 A U A I S TA= -40°C S T = +85°C 40 0.5 -1 A M 35 0 -2 3 6 9 12 15 18 21 24 27 30 33 36 3 6 9 12 15 18 21 24 27 30 33 36 3 6 9 12 15 18 21 24 27 30 33 36 V (V) V (V) V (V) RS+ RS+ RS+ MAX471 MAX471 NO-LOAD OFFSET CURRENT vs. MAX471 POWER-SUPPLY REJECTION RATIO SUPPLY
in „Strommessung/OP“ · Analoge Elektronik und Schaltungstechnik ·
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MAX471-MAX472.pdf
I H TA= +25°C P 1.0 T A U 45 TA= +85°C I 0 S T = -40°C S A 0.5 TA= +85°C M 40 -1 35 0 -2 3 6 9 12 15 18 21 24 27 30 33 36 3 6 9 12 15 18 21 24 27 30 33 36 3 6 9 12 15 18 21 24 27 30 33 36 VRS+ (V) V RS+(V) V RS+(V) MAX471 MAX471 NO-LOAD OFFSET CURRENT vs. MAX471 POWER-SUPPLY REJECTION RATIO SUPPLY VOLTAGE
in „strommeßung“ · Analoge Elektronik und Schaltungstechnik ·
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MAX471-MAX472.pdf
I H TA= +25°C P 1.0 T A U 45 TA= +85°C I 0 S T = -40°C S A 0.5 TA= +85°C M 40 -1 35 0 -2 3 6 9 12 15 18 21 24 27 30 33 36 3 6 9 12 15 18 21 24 27 30 33 36 3 6 9 12 15 18 21 24 27 30 33 36 VRS+ (V) V RS+(V) V RS+(V) MAX471 MAX471 NO-LOAD OFFSET CURRENT vs. MAX471 POWER-SUPPLY REJECTION RATIO SUPPLY VOLTAGE
in „wie Stromrichtung erkennen“ · Mikrocontroller und Digitale Elektronik ·
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DEV-CD-1645C.pdf
P0TP1401 TP14 P C38 100k 2 2 100k V D P0U10N14 N14 UART_R N0UART0RX 8 3 3 5 8 7 V UART_RX P0TP1501 TP15 C 33p 0 0 P0U10R15 R15 VBAT P P P UART_RTS P0U10P15 P0ANT101 L1 P0U10L1 P15 RF_N Linear Enable Linear Switch mode UART_CTS P0J501 2 e 1 T regulator regulator regulator Linear l P0U10G15G15 PCM_IN N0PCM0IN 20J502 A b PCM_IN P Printed Antenna H1 P0U10H1 for audio for core (Input on regulator a P0U10F15 F15 PCM_OUT N0PCM0OUT 30J503 RX_P n PCM_OUT J1 P0U10J1 BAT_P) E P0U10F13 F13 PCM_ L N0PCM0CLK 40J504 RX_N PCM_CLK P0U10F14 N0PCM0SYNC F14 PCM_SYNC 50J505 H2 PCM_SYNC 60J506 P0AUX_DAC 1.5V regulators
in „Noise bei Audio processing mit IC von Cambridge Silicon Radio“ · Digitale Signalverarbeitung / DSP / Machine Learning ·