-
Datei
DTZ_Logger_OPEN.ino
<ESP8266WebServer.h> //Local WebServer #include "configDTZ.h" #include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Mean_Well_EPS-25_Serie.pdf
25-24 EPS-25-27 EPS-25-36 EPS-25-48 DC VOLTAGE 3.3V 5V 7.5V 12V 15V 24V 27V 36V 48V RATED CURRENT 5A 5A 3.4A 2.1A 1.7A 1.05A 0.95A 0.7A 0.53A CURRENT RANGE 0 ~ 5.5A 0 ~ 5.5A 0 ~ 3.74A 0 ~ 2.34A 0 ~ 1.87A 0 ~ 1.17A 0 ~ 1.05A 0 ~ 0.78A 0 ~ 0.59A RATED POWER 16.5W 25W 25.5W 25.2W 25.5W 25.2W 25.65W 25.2W
in „Schaltnetzteil zum Laden von 3S / 1100mAh A123 LiFePO4 Akkus“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
DTZ_Logger_OPEN.ino
<ESP8266WebServer.h> //Local WebServer #include "configDTZ.h" #include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(
in „DTZ541 mMe Datenlogger mit ESP (WEB-Sicht)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
DTZ_Logger_OPEN.ino
<ESP8266WebServer.h> //Local WebServer #include "configDTZ.h" #include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(
in „DTZ541 mMe Datenlogger mit ESP (WEB-Sicht)“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Fehlermeldung eines DOS-Programms mit Speicherabbild
exception 06h (invalid opcode) at 200:D000160 TSF32: prev_tsf32 90C8 208 DS 208 ES 0 GS 20 SS EAX 33A0F8 EBX 3 ECX 0 EDX 32D66C ESI 33A0F8 EDI 43D6A4 ESP 32D668 CS: IP 200:D000160 ID 06 COD 33A0F8 FLG 10202 CS= 200, USE32, page granular, limit FFFFFFFF, base 0, acc CF9B SS= 208, USE32, page granular,
in „Wie Festplatte wieder in Neuzustand versetzen“ · PC Hard- und Software · · Screenshots
-
PDF
MTE011N10RFP-CystechElectonics.pdf
otherwise specified) Symbol Min. Typ. Max. Unit Test Conditions Static BV DSS 100 - - V V GSV, I =D50μA ∆BV DSS/∆Tj - 74 - mV/C Reference to 25C, ID=250μA V GS(th) 2.0 - 4.0 V V DS = V GSI D250μA *G FS - 14.5 - S V DS =10V, ID=10A IGSS - - ±100 nA V GS20V IDSS - - 1 μA V DS =80V, V GS =0V - - 5 V DS
in „IC identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
MT174_Logger_OPEN.ino
<ESP8266WebServer.h> //Local WebServer #include "configDTZ.h" #include "strings.h" #include <LittleFS.h> // LittleFS is declared #include <NTPClient.h> #include <base64.h> #include <WiFiManager.h> // https://github.com/tzapu/WiFiManager #include <ESP8266HTTPClient.h> #include <WiFiClient.h> ADC_MODE(
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
C300_DS_HFD2NEU.pdf
C=Wechsler) 2C Kontaktmaterial Ag-AuAg8, AgPd60 Übergangswiderstand (bei Nennlast) 50m Ω Nennlast 2A / 30VDC 3A / 30VDC 1A / 125VAC max. Schaltspannung 220VDC / 250VAC max. Schaltstrom 3A max. Schaltleistung 90W / 125VA min. Schaltspannung (Referenzwert) 10mV min. Schaltstrom (Referenzwert) 10µA elektr. Lebensdauer (bei 1A/30VDC) 5x10 Schaltzyklen (bei 2A/30VDC) 1x10 Schaltzyklen (bei 3A/30VDC) 5x10 Schaltzyklen 8 mechanische Lebensdauer 1x10 Schaltzyklen Relais • Schalter • Steckverbinder • Gehäuse • Trafos maluska Ihr
in „Bistabiles Relais schalten“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
sd_spi_stm32.c
to provide a disk_ioctrl function even if not needed by the FatFs */ #define STM32_SD_DISK_IOCTRL_FORCE 0 #define CARD_SUPPLY_SWITCHABLE 0 //#define SOCKET_WP_CONNECTED 1 /* write-protect socket-switch */ //#define
in „STM32 - SPI Schnittstelle empfängt mal korrekt und dann wieder nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CEPT-Laenderliste_2014.pdf
Frequenzbereiche außer 135 kHz 47–47,2; 76–81,5; 122,25–123; 134–141; 241–250 GHz – FG/FJ/FM/FO/FP/FS/ Leistung: 1000 W (135 kHz, 7,1–7,2, 50, 1,24 MHz: 100 W; 1,9–2 MHz: 10 W; FY: 135,7–137,8 kHz; 1,8–2; 3,5–4; 7–7,3; 10,1–10,15; 14–14,35; 18,068–18,168; 144, 430 MHz: 500 W); CEPT-Novice-Klasse: 100
-
Datei
EPaper_1_54_Test.ino
//U8G2_HD44102_100X64_1 u8g2(U8G2_R0, 4, 5, 6, 7, 8, 9, 10, 11, /*enable=*/ 2, /*dc=*/ 3, /*cs0=*/ A0, /*cs1=*/ A1, /*cs2=*/ A2, /* reset=*/ U8X8_PIN_NONE); // Set R/W to low! //U8G2_T7932_150X32_1 u8g2(U8G2_R0, 4, 5, 6, 7, 8, 9, 10, 11, /*enable=*/ 2, /*dc=*/ 3, /*cs0=*/ A0, /*cs1=*/ A1, /*cs2=*/ A2
in „Fragen zu Waveshare e-paper 1.54"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Article_Linear_Power_MOSFETs.pdf
V,DI = 0.6 A SOT-227B operating area rating that is obtained IXTK22N100L 1000 22 0.18 240 atV = 800 V, I = 0.3 A TO-264 under a strict dc operation condition DS D IXTN30N100L 1000 30 0.156 300 at V DS= 600 V,DI =
in „Stromsenke / el. Last“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
cdj350.pdf
) L 2 0 8C T F 1 5 4 5 A _S 1 C V 0 .0 2 2 u 2 3 27. R F R P I 5 3 A _S 1 2 2 D T C P 1 51. R F Z I R F R P 5 A _D (FS) L 2 0 9C T F 1 5 4 5 -A _D C 2 0 7 2 4 O 3 L I L T 3 3 5 2 9 A _D 2 3 (FS) 0 .0 2 2 u P V S S 3 Q D I I
in „Diode (1SS352) in CD-Player ersetzen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD7606_7606-6_7606-4.pdf
RANGE 10V 2.5V 14 VIN REF ±5V CODE = 5V × 32,768 2.5V 12 011...111 ±10V RANGE 011...110 s 10 ( 8 E A O000...001 LSB = +FS – (–FS) L 6 C 000...000 216 D C 111...111 E 4 A S 2 H 100...010 P 0 100...001 –2 100...000 –FS + 1/2LSB 0V – 1/2LSB +FS – 3/2LSB –4 AV CC, DRIVE = 5V ANALOG INPUT –6 F SAMPLE= 200kSPS T A 25°C +FS MIDSCALE –FS LSB –8 6 ±10V RANGE +10V 0V –10V 305µV 0 10 1k 10k 100k 9 7 INPUT FREQUENCY (Hz) 8 ±5V RANGE +5V 0V –5V 152µV 0 0 Figure38.AnalogAntialiasFilterPhaseResponse Figure39.AD7606/AD7606
in „STM32 Parallel Bus ADC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
413-11717-0-FSS237.pdf
Diode Forward Voltage, V SD – V Ciss,Coss,Crss - V V - Qg 100000 DS GS f=1MHz 10 V =10V 7 DS 5 9 ID=14A 3 V – 8 2 S F G 7 p10000 , – 7 e s 5 Ciss t 6 r o , 3 V 5 o 2 e , Co u 4 s 1000 ss o C - 3 7 Crss - 5 t 2 3 a G 2 1 1000 2 4 6 8 10 12 14 16 18 20 00 20 40 60 80 100 120 140 160 Drain-to-Source Voltage, V DS – V Total Gate Charge, Qg – nC SW Time - ID A S O 10000 100 7 V DD =10V 7 I =52A <10µs 1 5 DP m s 5 V GS =4V 3 10 n 3 2 m s ID=14A – 2 10 100 e A 7 m s i1000 td(off) – 5 DC T 7 D 3 op W 5 ,t 2 era , t n tio e 3 f r 170 n i 2 tr u 5 T C Operation
in „Quelle oder Alternative FSS237“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
8810-TuofengSemiconductor_002.pdf
drain current V =4.5V, V =5V 30 A D(ON) GS DS VGS =4.5V, D =6A 20 22 mΩ R DS(ON) Static Drain-Source On-Resistance V GS.5V, I D5.5A 28 30 mΩ g FS Forward Transconductance VDS =5V, D =6A 29 S V Diode Forward Voltage I =1.5A,V =0V 1.2
in „LiPo Tiefentladeschutz 1S/Einzel-Zellen "Mini/Nano"“ · Platinen ·
-
Datei
ssi_cgi_handle.c
the "License"); * You may not use this file except in compliance with the License. * You may obtain a copy of the License at: * * http://www.st.com/software_license_agreement_liberty_v2 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed
in „LWIP Webserver“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
httpd_cgi_ssi.c
CUSTOMERS * WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE * TIME. AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY * DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING * FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS
in „LWIP Webserver“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
httpd_cgi_ssi.c
CUSTOMERS * WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE * TIME. AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY * DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING * FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS
in „LWIP Webserver“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
pm2519ocr.pdf
1000 v } 1000 | 1 0 0 0 m v NOTE: Input sensitivityA D C 900 mV. Measurement zera isthe low socket, 4 6 4.2.5. Adc part test S I T E I N S T a U M E N T Y o s T i oa s T E R Y S o m A T h e o g o o c e r
in „Pjilips PM2519“ · Markt ·
-
PDF
MPU-6050A-Register.pdf
to a single sampling instant by checking the Data Ready interrupt. Each 16-bit accelerometer measurement has a full scale defined in ACCEL_FS (Register 28). For each full scale setting, the accelerometers
in „MPU6050 Z-Achse Keine Werte“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
S_110_MOC3063_SERIES-596570.pdf
rate of Rise of Off-State dv/dt 1000 — — V/s Voltage *3Led Trigger Current, Current Required to Main Terminal Latch Output, EitherOC3063 IFT — — 5 mA Voltage = 3V COUPLED Direction Holding Current, Either Direction H — 400 — A IF=Rated
in „Ansteuerung von ElTako (Stromstoßschalter)“ · Haus & Smart Home ·
-
Datei
log.txt
Temp\arduino\sketches\1C11064D691FC2C2BC70229604B6955B\sketch\Rtos5.ino.cpp -o nul Alternatives for FS.h: [FS@3.0.5] ResolveLibrary(FS.h) -> candidates: [FS@3.0.5] C:\Users\User\AppData\Local\Arduino15\packages\esp32\tools\esp-x32\2302/bin/xtensa-esp32-elf-g++ -c @C:\Users\User\AppData\Local\Arduino15
in „ESP32 LittleFS Arduino“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RTL8111B_8168B_Registers_DataSheet_1.0.pdf
SLAVE 10 Port Type RW 0 1: Prefer multi-port device (MASTER) 0: Prefer single port device (SLAVE) 9 1000Base-T Full RW 0 1: Advertise Duplex 0: Not advertised 8 1000Base-T Half RW 0 1: Advertise Duplex 0: Not advertised 7:0 Resv RW 0 Reserved 3.2.11. GBSR (Address 0x0A) Table 33. GBSR (Address 0x0A) Bit
-
PDF
egs_datasheet_r06en.pdf
[EGS75W-18V] Loadcurrent 10A Rated power 75 W [EGS75W-36V] Loadcurrent 5A 4.16A Rated power 75 W [EGS75W-60V] Loadcurrent 2.08A 2A Rated power 75 W 1.25A 0V 0.7V 7.5V 18V Loadvoltage 0▯7 0.3V 15V 36V Loadvoltage 0V 0.3V 37.5V 60V
-
Datei
device_table.txt
# When building a target filesystem, it is desirable to not have to # become root and then run 'mknod' a thousand times. Using a device # table you can create device nodes and directories "on the fly". # # This is a sample device table file for use with genext2fs. You can # do all sorts of interesting things with a device table file. For # example, if you want to adjust the permissions on a particular file # you can just add an entry like: # /sbin/foobar f 2755
in „RTC @ Debian: /dev/rtc feht. :-(“ · PC Hard- und Software ·
-
PDF
BST-BMA220-DS000-05.pdf
to change without notice. BMA220 Bosch Sensortec Data sheet O UTPUT SIGNAL Device resolution Dres gFS2g 62.5 mg S2g gFS2g TA=25°C 16 LSB/g S g ,T =25°C 8 LSB/g Sensitivity 4g FS4g A S g , T =25°C 4 LSB/g 8g FS8g A S g , T =25°C 2 LSB/g 16g FS16g A Sensitivity TCS -40°C T +85°C ±0.03 %/K A Temperature Drift Zero-g Offset Off T =25°C, V =1.8V, ±100 mg A DDA gFS2g Zero-g Offset TCO -40°C TA +85°C, ±2 mg/K Temperature Drift gFS2g st Bandwidth bw 1 order filter, 32/64/ Hz switchable 125/250/ 500/1000 Nonlinearity NL best fit straight line ±2 %FS TSTx
in „Beschleunigungsensor Bosch BMA220“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
100-33-410-012-EH-0611.pdf
Hints for Writing Firmware Suggested Algorithm using Interrupts: Connect the output of the sensor to a pin of a microcontroller capable of causing an interrupt on a falling edge. When the falling edge is detected this causes a branch into an ISR which is a counting loop incrementing until a rising edge
in „PWM Drucksensor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SPP80N06S2L-07.pdf
Unit min. typ. max. Dynamic Characteristics Transconductance gfs VDS≥2*D R DS(on)max 52 104 - S D =80A Input capacitance Ciss VGS=0V, VDS=25V, - 3160 4000 pF Output capacitance C =1MHz - 780 1000 oss Reverse transfer capacitance C - 215 290 rss Turn-on delay time td(on) VDD=30V, VGS=4.5V, - 18 27 ns Rise
in „Transistor (Mosfet) Temperatur“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
FDC6327C.pdf
C P-Ch 0.203 0.27 VGS = -2.5 V,DI = -1.3 A P-Ch 0.205 0.25 ID(on) On-State Drain Current VGS = 4.5 V, VDS= 5 V N-Ch 8 A VGS = -4.5 V, DS = -5 V P-Ch -8 gFS Forward Transconductance VDS = 5 V, D = 2.7 A N-Ch 7.7 S V = -5 V, I = -1.9 A P-Ch 4.5
in „Port-Stromverstärkung,Push-Pull-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CS5560_PP2.pdf
attenuation. The filter attenuation is 1.040 dB at 25 kHz when sampling at 50 kSps. 0.0 -0.0414 dB fs = 50 kSps -0.2 -0.166 dB ) (-0.4 -0.3725 dB n t-0.6 u -0.664 dB e A-0.8 -1.0 -1.040 dB -1.2 0 5k 10k 15k 20k 25k Frequency (Hz) Figure 19. CS5560 Digital Filter Response (DC to fs/2) -0.001646 dB fs
in „Bipolare Eingänge ADC“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sct2080ke.pdf
DS[V] Fig.17 Switching Characteristics Fig.18 Dynamic Input Characteristics 10000 20 Ta= 25ºC f T a 25ºC ] VDD= 400V V DD= 400V V I= 10A 1000 V GS= 18V S 15 Pulsed s R G= 0Ω G [ Pulsed : : e e td(off) a i 100 o 10 T V g r e h r i o w 10 S 5 S td(on) e a G 1 0 0.01 0.1 1 10 100 0 20 40 60 80 100 120
in „Verarmungs- oder Anreicherungstyp“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
fs20-protokoll.txt
0: 400µs High, 400µs Low 600-1000µs Periodendauer 1: 600µs High, 600µs Low 1000-1450µs Periodendauer Synchronisation: 0000000000001 (12* 0 , 1* 1 ) Jede Übertragung zu Empfängern wird mit dieser Synchronisationssequenz eingeleitet.
in „FS20 Sender mir ATmega8“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
K30H603.pdf
S 75 E R S V R0.50 E V 50 E t r Q0.25 25 0 0.00 800 1000 1200 1400 1600 800 1000 1200 1400 1600 diF/dt, DIODE CURRENT SLOPE [A/µs] diF/dt, DIODE CURRENT SLOPE [A/µs] Figure 23. Typical reverse recovery time as a function Figure 24. Typical reverse recovery
in „Inverter Schweißgerät, Alternative IGBTs kompatibel? (Datenblätter inside)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
IGBT_Datenblatt.pdf
r 100 0.25 t r Q 50 0.00 600 800 1000 1200 1400 1600 800 900 1000 1100 1200 1300 1400 1500 1600 di /dt, DIODE CURRENT SLOPE [A/µs] di /dt, DIODE CURRENT SLOPE [A/µs] F F Figure 23. Typical reverse recovery time as a function Figure 24.
in „Verluste eines IGBTs mit integrierter, antiparalleler Diode“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
CanKnoten.txt
Schreibe ins Setup Reg. // Gain = 1 für Potigeber write_to_ad(0X64); // config Setup-Reg: // MD1 MD0 CLK FS1 FS0 _B/U BUF FSYNC // 0 1 1 0 0 1 0 0 // Self Calibration Mode, Takt = 2,5 MHz, // Output Update Rate = 50Hz ==> t=20ms while (_DRDY) { // warten bis A/D-Wandler fertig; _delay_ms(200); // Calibration
in „WINAVR produziert falschen Code“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CFAG12864BTFHV_v3.0.pdf
F 2 . - - e 05. 2 2 4 4 o 8 8 H 1 1 i G G n a a 05. 2 F F C l o r r C C P z M g A 4 2 : 5 B t i i 6 A ( 0 0 e i c x i li o 0 . n V A 2 P t r . 7 il 0 . 1 e e . P 7 A 0 5 S D 2 e B 6 8 i P H d = c 0 T a ) l p c 0 0 8 0 a s n 7 1 1 ( e s I 1 - - x
in „avr asm LCD Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NVMFS4C03N.pdf
V D = 30 A 1.4 1.7 mW VGS = 4.5 V D = 30 A 2.0 2.4 Forward Transconductance gFS VDS = 3 V,DI = 30 A 136 S Gate Resistance R G TA= 25 °C 1.0 W CHARGES AND CAPACITANCES Input Capacitance CISS 3071 Output Capacitance
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ds-mb86r01-jade-rev1-4.pdf
pin Analog Status of pin Pin name I/O Polarity /Digital Type after reset Description USB_FSDP IO - A - - D+ for FS USB_FSDM IO - A - - D- for FS USB_HSDP IO - A - - D+ for HS USB_HSDM IO - A - - D- for HS USB_CRYCK48 I - D CLK - Clock used for USB communication USB_PRTPWR O - D - L USB port power control
in „Bild im Bild in der Instumententafel Range Rover“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
dmesgbeautified.txt
00081 (v01 A_M_I_ AMI_OEM 04000807 MSFT 00000097) [ Sun Feb 27 12:16:13 2011 ] ACPI: HPET 000000007ff8a4a0 00038 (v01 A_M_I_ OEMHPET 04000807 MSFT 00000097) [ Sun Feb 27 12:16:13 2011 ] ACPI: OSFR 000000007ff8a4e0
in „Sporadische Gnome-Abbrüche auf Ubuntu 10.04“ · PC Hard- und Software ·
-
PDF
DRV8711.pdf
Calculate Current Regulation In a stepper motor, the set full-scale current FS ) is the maximum current driven through either winding. For the DRV8711, this quantity will depend on the analog voltage, the programmed torque and gain values
in „DRV8711 Schrittmotortreiber Fehler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Datasheet_DRV8711.pdf
Calculate Current Regulation In a stepper motor, the set full-scale current FS ) is the maximum current driven through either winding. For the DRV8711, this quantity will depend on the analog voltage, the programmed torque and gain values
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
mpsa42.pdf
T10 I C A L P 5 L C C 2 Ccb O C I 125 50 75 100 125 150 1 1 10 100 1000 TA- AMBIENT TEMPERATURE (°C) REVERSE BIAS VOLTAGE (V) Power Dissipation vs Ambient Temperature 1 ) ( N0.75 SOT-223 T TO-92 P S I 0.5 R SOT
-
PDF
AO3404A.pdf
state drain current V =4.5V, V =5V 64 A D(ON) GS DS V GS=10V, ID=5.8A 18.4 25 m R DS(ON) Static Drain-Source On-Resistance T J125°C 26.2 36 V =4.5V, I =4.8A 24.5 35 m GS D gFS Forward Transconductance V DSV, I =D.8A 22 S V SD Diode Forward
in „unbekante SMD code (Fujitsu Esprimo X913T Motherboard D3204)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lsm6dsl.pdf
a full-scale acceleration range of ±125/±250/±500/±1000/±2000 dps full scale ±2/±4/±8/±16 g and an angular rate range of Analog supply voltage: 1.71 V to 3.6 V ±125/±250/±500/±1000/±2000 dps. Independent
in „LSM6DSL Gyro+Accelerometer, Gyro gibt keine Werte aus.“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
enet_io.c
******************************************************** #define SYSTICKHZ 100 #define SYSTICKMS (1000 / SYSTICKHZ) //***************************************************************************** // // A set of flags. The flag bits are defined as follows: // // 0 -> An indicator that the animation timer
in „I2C Problem bei DK LM3S9b96 TI Cortex M3“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
CrystalDiskInfo S.M.A.R.T. Werte einer Hitachi Festplatte
CrystalDiskInfo 9.4.4 x64 Hitachi HDT721010SLA360 : 1000,2 GB Gesamtzustand Vorsicht 40 °C 24 °C Disk 1 Firmware ST60A31B Seriennummer ST60FS109XJK Schnittstelle USB (Serial ATA) Drehzahl 7200 RPM Übertragungsmodus ---- | SATA/300 Eingeschaltet 774 mal Betriebsstunden 1522 Std. Laufwerksbuchstaben Standard ATA8-ACS | ATA8-ACS version 4 Eigenschaften S.M.A.R.T., APM, NCQ, Streaming, GPL ID Parameter aktuelle schlechte grenzwert 01 Lesefehler 100 100 16 000000000000 04 Start/Stop-Zyklen 100 100 54 000000000000 05 Wiederzugewiesene Sektoren 100 100 5 000000000001
in „[V] 3,5" SATA HDD's - 4x 1TB, 3TB, 80GB, 160GB und USB3.0-Adapter“ · Markt · · Screenshots
-
PDF
loadcell_PSD-S1.pdf
Shield Transparent Cable screen is not connected to the load cell body. Cap (kg) 50, 100 250, 500 1000 2500 5000 7500 10000 Cap (lbs) 50, 100, 200, 300 500–1.5k 2k, 2.5k 3k*, 5k 10k 15000 20000 A 50.8 50.8 50.8 76.2 74.7 87.4 112.8 B 61.0 61.0 61.0 99.1 99.1 139.7 177.8 C 11.7 18.0 24.4 24.4 30.7 37.1
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AN_106f.pdf
A = 10 RELAYS = COTO-COIL 800-05-001 HI LO 100 0.01V TRIM A = 100 10µF, 1µF = WIMA MKS-2 HI HI 1000 0.001V NO TRIM = 1N4148 20k 1M *SET ZERO ADJUSTMENT FOR A2 OUTPUT = 0 VDC WITH INPUT GROUNDED 20k 1M
in „Netzspannung messen.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
stm32g030c6.pdf
Schreiben Löschen Lesen Schreiben Löschen Benutzer 1 Ja Ja Ja NEIN NEIN NEIN Erinnerung 2 Ja Ja Ja N / A N / A N / A 1 Ja NEIN NEIN Ja NEIN NEIN Systemspeicher 2 Ja NEIN NEIN N / A N / A N / A 1 Ja Ja Ja Ja Ja Ja Optionsbytes 2 Ja NEIN NEIN N / A N / A N / A 1 Ja Ja Nicht zutreffendNEIN NEIN Nicht zutreffend
in „Muß der STM32G programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·