-
PDF
xc2200_um_v2.1_2008_08_vol2per.pdf
match. DataRegisters Control Registers Interrupt Control T7, T7REL E T78CON T7IC T8, T8REL E T8IC CC16-CC19 CC2_M4 CC16IC-CC19IC E CC20-CC23 CC2_M5 CC20IC-CC23IC E CC24-CC27 CC2_M6 CC24IC-CC27IC E CC28-CC31 CC2_M7 CC28IC-CC31IC E CC2_SEE CC2_OUT CC2_SEM CC2_DRM CC2_ID CC2_IOC KSCCFG CC2_SEE CAPCOM SingleEvent
in „Schlechte Datenblätter von Infineon (CAN)“ · Mikrocontroller und Digitale Elektronik ·
-
Thread
ISR Code schneller machen?
Datenblatt für einen Quarz > 8MHz sein müßte. Müsste ich nicht laut Datenblatt S.30 auf die Bitfolge 1101 (SUT 0) kommen? Das wäre dann die Auswahl über des blau markierten. Hab bammel ...
Einstellung 3-8 MHz oder 8-16MHz wählt. >Müsste ich nicht laut Datenblatt S.30 auf die Bitfolge 1101 (SUT 0) >kommen? Das wäre dann die Auswahl über des blau markierten. Hab bammel >... Wovor? Verfusen? Mein Gott, trag's wie ein Mann!
Mikrocontroller und Digitale Elektronik ·Veit D. · ·382 Antworten
-
PDF
TEA5880_2.pdf
GND 13 ground n.c. 14 not connected n.c. 15 not connected n.c. 16 not connected LR1 17 coil right V CC1 18 internal analog voltage V 19 internal analog voltage CC1 LL1 20 coil left reserved 21 reserved for testing use n.c. 22 not connected n.c. 23 not connected GND 24 ground 9397 750 13022 © Koninklijke
in „Einfaches Radio basteln“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
R-IN32M-CL_CC-Link_IE_Field_Intelligent_device_station.pdf
Electronics Engineers, Inc. ・EtherCAT is a registered trademark of Beckhoff Automation GmbH, Germany. ・CC-Link and CC-Link IE Field are a registered trademark of CC-Link Partner Association (CLPA). ・Additionally all product names and service names in this document are a trademark or a registered trademark
in „Wie funktioniert der Interrupt- bzw. Eventaufruf?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSD1327-datasheet.pdf
8-18 : The Power OFF sequence Send command AEh for display OFF OFF V CC OFF V CI DDIO V CC OFF OFF V CI OFF Note: (1Since an ESD protection circuit is connected between V CId V , CC CC becomes lower than V CIenever V is CI and V is OFF as shown in the dotted line of V in
in „OLED-Display SPI Psoc4“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSD1327-datasheet.pdf
8-18 : The Power OFF sequence Send command AEh for display OFF OFF V CC OFF V CI DDIO V CC OFF OFF V CI OFF Note: (1Since an ESD protection circuit is connected between V CId V , CC CC becomes lower than V CIenever V is CI and V is OFF as shown in the dotted line of V in
in „OLED Stromverbrauch“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
P89C51RC_IN.pdf
PARAMETER TEST UNIT CONDITIONS MIN TYP 1 MAX V Input low voltage 4.5 V < V < 5.5 V –0.5 0.2V –0.1 V IL CC CC V Input high voltage (ports 0, 1, 2, 3, EA) 0.2V +0.9 V +0.5 V IH CC CC V Input high voltage, XTAL1, RST 0.7V V +0.5 V IH1 CC CC V = 4.5 V VOL Output low voltage, ports 1, 2, 3 CC 2 0.4 V OL = 1.6
in „[V] 8St. 8051er Philips P89C51RC+IA PLCC44 (6€)“ · Markt ·
-
PDF
at98c51ed2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51rd2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
Input Low Voltage -0.5 0.2 V - 0.1 V IL CC V IH Input High Voltage except RST, XTAL1 0.2 VCC+ 0.9 V CC+ 0.5 V VIH1 Input High Voltage RST, XTAL1 0.7 CC V CC+ 0.5 V V = 4.5V to 5.5V CC (4) 0.3 V IOL= 100 µA 0.45 V I = 1.6 mA (4) (6) OL V OL Output
in „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSD1327_1.2.pdf
7-18 : The Power OFF sequence Send command AEh for display OFF OFF V CC OFF V CI DDIO V CC OFF OFF V CI OFF Note: (1Since an ESD protection circuit is connected between V CId V , CC CC becomes lower than V CIenever V is CI and V is OFF as shown in the dotted line of V in
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ISP.txt
C700n2800+C700n2000-C800n2800+C800n2000-C900n2800+C900n2000-CA00n2800+CA00n2000-CB00n2800+CB00n2000-CC00n2800+CC00n2000-CD00n2800+CD00n2000-CE00n2800+CE00n2000-CF00n2800+CF00n2000-D000n2800+D000n2000-D100n2800+D100n2000-D200n2800+D200n2000-D300n2800+D300n2000-D400n2800+D400n2000-D500n2800+D500n2000-D600n2800
in „Warum ließt AtmelStudio vor Programmieren?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
C-CERA C CC725CH1H-221J1 1 342102214R1 C4013 C-CERA C CC725CH1H-221J1 1 342102214R1 C4014 C-CERA C CC725CH1H-221J1 1 342102214R1 C4017 C-CERA C CC725CH1H-221J1 1 342102214R1 C4018 C-CERA C CC725CH1H-221J1 1 342102214R1
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AT89C51ED2.pdf
V = 5V ± 10% CC V CC- 0.3 V IOH= -10 µA V - 0.7 V I = -30 µA CC OH V Output High Voltage, ports 1, 2, 3, 4 V CC- 1.5 V IOH= -60 µA OH VCC = 2.7V to 5.5V 0.9 VCC V IOH= -10 µA 117 4235D–8051–12/03 TA= -40°C to +85°C;
in „Einstieg in die C-Programmerung für µC“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
DDS.vhd
", 581 => x"3426B335", 582 => x"343BEB25", 583 => x"345120CC", 584 => x"34665427", 585 => x"347B8537", 586 => x"3490B3FA", 587 => x"34A5E06F", 588 => x"34BB0A95", 589 => x"34D0326B", 590 => x"34E557F1", 591 => x"34FA7B26", 592 => x"350F9C08", 593 => x"3524BA96
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
-
Thread
UART Bootloader ATtiny13 - ATmega644
10003000D2E0DEBFCDBF10E0A0E6B0E0E0E3F2E04A[/pre] Die soll .hex Datei (compiliert): [pre]:1000000014C02EC02DC02CC05BC02AC029C028C07F :1000100027C026C025C05FC088C022C021C020C024 :100020001FC01EC01DC01CC01BC011241FBECFE5B9 :10003000D2E0DEBFCDBF10E0A0E6B0E0E0E3F2E04A[/pre] Erst ab der 4ten Zeile sind sie wieder
LEER S "1 0 1 1" "0 0 0 0" STOP [/code] S steht hier für START; 0x0D wäre "0000" "1101", aber RS-232 überträgt die Bits rückwärts. Tatsächlich muss mit "1*T" die Länge eines einzigen Bits vorgegeben werden. Gruß Michael
Projekte & Code ·Peter D. · ·865 Antworten
-
PDF
datasheet.pdf
Note 6) IOL= 4.0 mA, V CC = VCC min 0.45 V V I = –2.0 mA, V = V 0.85 V V OH1 OH CC CC min CC Output High Voltage VOH2 IOH = –100 µA, VCC = VCC min VCC–0.4 V V Low V Lock-Out Voltage (Note 7) 2.3 2.5 V LKO CC Notes: 1. On the WP#/ACC pin only, the maximum input load current when WP# = V ILis ± 5.0 µA. 2. The I CC current listed is typically less than 3.5 mA/MHz, with OE# at V .IH 3. Maximum I specifications are tested with V = V max. CC CC CC 4. I active while Embedded Erase or Embedded Program is in progress
in „S29GL064A Flash Speicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
gccout.txt
from main.c:16:0: dprintf.h:6:7: note: expected 'int8_t *' but argument is of type 'char *' main.c:1101:6: warning: pointer targets in passing argument 1 of 'DebugPrintf' differ in signedness [-Wpointer-sign] (int32_t)0,(int32_t)0); ^ In file included from main.c:16:0: dprintf.h:6:7: note: expected 'int8
in „ARM Cortex M4 hängt beim Sinus“ · Mikrocontroller und Digitale Elektronik ·
-
Thread
AM oder FM Fernbedinung Rohrmotor -> bild
GOTO LADR_0x00F7 GOTO LADR_0x00FA GOTO LADR_0x0073 LADR_0x009E NOP MOVLW 0xCC MOVWF LRAM_0x27 BCF PORTC,0 ; $ PORTC - TRISC CALL LADR_0x00FD CALL LADR_0x00FD LADR_0x00A4 BTFSS PORTA,0 ; !!Bank!! PORTA - TRISA GOTO LADR_0x00A4
0=0000|1=0001|2=0010|3=0011|4=0100|5=0101|6=0110|7=0111|8=1000|9=1001|10=1010|11=1011|12=1100|13=1101|14=1110|15=1111 Befehl ich denke das bit 33 - 40 wie folgt geschlüsselt ist 33+37 = lernen / sind im ersten Signalbereich gleich belegt entweder beide 0 oder 1 34/35/36 = hoch (001) /runter
Haus & Smart Home ·Sebastian Albrecht · ·165 Antworten
-
PDF
ST62T65_Datasheet.pdf
selection of clock sources is control- The clock frequency should not be modified while led by the CC0 and CC1 bits in the AR Status Con- the counter is counting, since the counter may be set to an unpredictable value. For instance, the trol Register, ARSC1. The prescaler division ratio is selected by
in „External RC Network / ST62T65“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ST6265C.pdf
selection of clock sources is control- The clock frequency should not be modified while led by the CC0 and CC1 bits in the AR Status Con- the counter is counting, since the counter may be set to an unpredictable value. For instance, the trol Register, ARSC1. The prescaler division ratio is selected by
in „Code Space Overlap Fehler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
xc164_um_v2.1_2004_03_per.pdf
Control Port Registers T0, T0REL T01CON T0IC T1, T1REL T1IC T7, T7REL E T78CON T7IC T8, T8REL E T8IC CC0-CC3 CC1_M0 CC0IC-CC3IC CC4-CC7 CC1_M1 CC4IC-CC7IC CC8-CC11 CC1_M2 CC8IC-CC11IC P9, DP9 CC12-CC15 CC1_M3 CC12IC-CC15IC ODP9 CC16-CC19 CC2_M4 CC16IC-CC19IC E ALTSEL0/1P9 E CC20-CC23 CC2_M5 CC20IC-CC23IC
in „Unterschied Compare match und Period Match“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
(7) 0.1 V/µs dV/dt Notes: 1. Operating I CC is measured with all output pins disconnected; XTAL1 driven with T CLCH , CHCL = 5 ns (see Figure 55), V IL VSS + 0.5V, VIH= V CC - 0.5V; XTAL2 N.C.; EA = RST = Port 0 = V CC . CC would be slightly higher
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
(7) 0.1 V/µs dV/dt Notes: 1. Operating I CC is measured with all output pins disconnected; XTAL1 driven with T CLCH , CHCL = 5 ns (see Figure 55), V IL VSS + 0.5V, VIH= V CC - 0.5V; XTAL2 N.C.; EA = RST = Port 0 = V CC . CC would be slightly higher
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
(7) 0.1 V/µs dV/dt Notes: 1. Operating I CC is measured with all output pins disconnected; XTAL1 driven with T CLCH , CHCL = 5 ns (see Figure 55), V IL VSS + 0.5V, VIH= V CC - 0.5V; XTAL2 N.C.; EA = RST = Port 0 = V CC . CC would be slightly higher
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
(7) 0.1 V/µs dV/dt Notes: 1. Operating I CC is measured with all output pins disconnected; XTAL1 driven with T CLCH , CHCL = 5 ns (see Figure 55), V IL VSS + 0.5V, VIH= V CC - 0.5V; XTAL2 N.C.; EA = RST = Port 0 = V CC . CC would be slightly higher
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
(7) 0.1 V/µs dV/dt Notes: 1. Operating I CC is measured with all output pins disconnected; XTAL1 driven with T CLCH , CHCL = 5 ns (see Figure 55), V IL VSS + 0.5V, VIH= V CC - 0.5V; XTAL2 N.C.; EA = RST = Port 0 = V CC . CC would be slightly higher
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
(7) 0.1 V/µs dV/dt Notes: 1. Operating I CC is measured with all output pins disconnected; XTAL1 driven with T CLCH , CHCL = 5 ns (see Figure 55), V IL VSS + 0.5V, VIH= V CC - 0.5V; XTAL2 N.C.; EA = RST = Port 0 = V CC . CC would be slightly higher
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
pcm1796.pdf
ABSOLUTE MAXIMUM RATINGS over operating free-air temperature range unless otherwise noted PCM1796 V CC 1, CC 2L, VCC 2R −0.3 V to 6.5 V Supply voltage V DD −0.3 V to 4 V Supply voltage differencesCCV1, CC 2L, VCC 2R ±0.1 V Ground voltage differences: AGND1, AGND2, AGND3L, AGND3R, DGND ±0.1 V LRCK, DATA
in „Audio Signal verdoppeln“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
BB_Schem_75839_b.pdf
Name6> SCH-75839 B Last Modified: July 25, 2006 Sheet 4 of 15 5 4 3 2 1 5 4 3 2 1 Board ID Address : 0xCC40 0000 (16 bit) U2 B_D0 2 47 CPU_BD_ID0 VCC 3 1Y1 1A1 46 B_D1 5 1Y2 1A2 44 CPU_BD_ID1 B_D2 6 1Y3 1A3 43 CPU_BD_ID2 1 B_D3 1Y4 1A4 CPU_BD_ID3 R8 10K B_D4 8 2Y1 2A1 41 CPU_BD_ID4 VCC B_D5 9 2Y2 2A2 40
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
89C51RD2.pdf
when a 100mV change from OH/OLolevel occuOH OL↓ 〉 20mA. SU00011 Figure 38. Float Waveform VCC V –0.5 CC 0.5V CC CHCX VCC tCHCL tCLCX tCLCH V CC VCC t 89C51RB2 CLCL RST P0 89C51RC2 SU01297 89C51RD2 EA (NC) XTAL2 Figure 41. Clock Signal Waveform for I CC Tests in Active and Idle Modes. CLOCK SIGNAL XTAL1 tCLCL = tCHCL = 10 ns VSS VCC SU01294 CC Figure 39. I Test Condition, Active Mode. CC VCC All other pins are disconnected RST VCC EA P0 89C51RB2 VCC 89C51RC2 89C51RD2 CC (NC) XTAL2 VCC XTAL1 RST VCC VSS EA 89C51RB2 P0 89C51RC2 89C51RD2 SU01296
in „P89C51RC2 12Clock mod“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
stm32f10x_rcc.lst
\AppData\Local\Temp\ccBSPTDa.s:323 .text.RCC_AdjustHSICalibrationValue:0000003c $d C:\Users\bartzick\AppData\Local\Temp\ccBSPTDa.s:328 .text.RCC_HSICmd:00000000 $t C:\Users\bartzick\AppData\Local\Temp\ccBSPTDa.s:333 .text.RCC_HSICmd
in „Seltsame Initialisierungen und Abstürze.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at89c51ed2.pdf
maximum Vcc drop to issure no internal POR/PFD reset. Figure 25-1. I CCTest Condition, Active Mode V CC I CC V CC V CC P0 VCC RST EA (NC) XTAL2 CLOCK XTAL1 SIGNAL VSS All other pins are disconnected. Figure 25-2. I Test Condition, Idle Mode CC VCC ICC VCC V CC P0 RST EA (NC) XTAL2 CLOCK XTAL1 SIGNAL VSS All other pins are disconnected. Figure 25-3. I CCTest Condition, Power-down Mode V CC I CC V CC VCC P0 RST EA (NC) XTAL2 XTAL1 VSS All other pins are disconnected. 116 AT89C51RD2/ED2 4235J–8051–01/08 AT89C51RD2/ED2 Figure 25-4. Clock Signal Waveform for I CC Tests in Active and Idle Modes
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at89c51ed2.pdf
maximum Vcc drop to issure no internal POR/PFD reset. Figure 25-1. I CCTest Condition, Active Mode V CC I CC V CC V CC P0 VCC RST EA (NC) XTAL2 CLOCK XTAL1 SIGNAL VSS All other pins are disconnected. Figure 25-2. I Test Condition, Idle Mode CC VCC ICC VCC V CC P0 RST EA (NC) XTAL2 CLOCK XTAL1 SIGNAL VSS All other pins are disconnected. Figure 25-3. I CCTest Condition, Power-down Mode V CC I CC V CC VCC P0 RST EA (NC) XTAL2 XTAL1 VSS All other pins are disconnected. 116 AT89C51RD2/ED2 4235J–8051–01/08 AT89C51RD2/ED2 Figure 25-4. Clock Signal Waveform for I CC Tests in Active and Idle Modes
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
-
Thread
Wittig(welec) DSO W20xxA Hardware (Teil 2)
bestellen. Ich meine es war dieser hier: http://www.reichelt.de/Drucktaster-Druckschalter/MAR-1682-1101/3//index.html?ACTION=3&GROUPID=3277&ARTICLE=108198&SHOW=1&START=0&OFFSET=500& (Bestellnummer "MAR 1682.1101", falls der Link nicht geht.) Ich hatte mal zwei bestellt, einen für mich (beim nächsten
cc schrieb im Beitrag #3787274: > kann man eines dieser DSOs noch irgendwo kaufen? Zwischenzeitlich tauchten diese DSOs immer wieder als Neugeräte bei Ebay auf. Die Firma Welec hat wohl immer noch
Mikrocontroller und Digitale Elektronik ·Bruno We · ·681 Antworten
-
PDF
MKS_GEN_V14.PDF
PIJ1302PIJ1202 PIJ1102PIJ1002PIJ902 PIJ802 B PID102 22n M IY O D121 P11k901 +5V D24 PIJ1301PIJ1201 PIJ1101PIJ1001PIJ901 PIJ801 B J? PIJ?02 VS40200ATD U1U C S STPS1L30U 1 9 9 9 9 9 9 9 9 9 9 8 8 8 8 8 8 8 8 8 8 7 7 7 7 BED-H PIJ?01 3 D8 (PWM) L5970D ED C D4 (PWM)1 U?0P80I69U43U21?990P7?65?430P10I97U76 ATmega2560
in „Hilfe zu Optokoppler (6N137)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Attiny2313_Remote_ServoD.asm
1.Byte ;.equ SenderAdr2 = 0b0101_0101 ; codierte Hardware Adresse 2.Byte .equ SenderAdr1 = 0b0100_1101 ; codierte Hardware Adresse 1.Byte .equ SenderAdr2 = 0b0100_0001 ; codierte Hardware Adresse 2.Byte .equ Amin = 580 ; Servo A .equ Amax = 2280 .equ Bmin = 580 ; Servo B .equ Bmax = 2280 .equ SetupSchrittFlag
in „Funkverbindung zwischen 2 AVR´s in Assembler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MB1136.pdf
BYP0SS 3 U5V T1 P2T102 R R11 100 USB_RENUMn N0USB0RENUMN 1uF_X0R_0603 2 0 0 2 C 1uF_X5R_0603 1 P0R1101 P0R1102 P 5 2 4 9 P 1 9013 0 P P 0 0 PR10 C5 C9 1 C12 CN1 1 +3V3_ST_LINK 0 0 2 P0CN101 R16 1K5 P 136K 0 100nF 0 10nF_X7R_0603 C 100nF VCC P0R1601 P0R1602 1 P P P P02N102 R18 0 USB_DMUSB0DM 0 0 0 0 0
in „Mikrocontroller Spannung/Strom“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Nucleo_Board_Schematics.pdf
BYP0SS 3 U5V T1 P2T102 R R11 100 USB_RENUMn N0USB0RENUMN 1uF_X0R_0603 2 0 0 2 C 1uF_X5R_0603 1 P0R1101 P0R1102 P 5 2 4 9 P 1 9013 0 P P 0 0 PR10 C5 C9 1 C12 CN1 1 +3V3_ST_LINK 0 0 2 P0CN101 R16 1K5 P 136K 0 100nF 0 10nF_X7R_0603 C 100nF VCC P0R1601 P0R1602 1 P P P P02N102 R18 0 USB_DMUSB0DM 0 0 0 0 0
in „Erbitte Hilfe bei Fehlersuche - STM32F446“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datasheet_Video_Decoder_TVP5150AM.pdf
FF FF A7 2E 20 A3 63 93 0D 0 7 0 10 0 NABTS, NTSC-J 0B0 AA AA FF FF A7 2E 20 A3 63 93 0D 0 7 0 10 0 CC, PAL/SECAM 0C0 AA 2A FF 3F 04 51 6E 02 A4 7B 09 0 0 0 27 0 CC, PAL/SECAM 0D0 AA 2A FF 3F 04 51 6E 02 A4 7B 09 0 0 0 27 0 CC, NTSC 0E0 AA 2A FF 3F 04 51 6E 02 63 8C 09 0 0 0 27 0 CC, NTSC 0F0 AA 2A FF
in „TVP5150AM - Datenblatt gibt keine Auskunft über Datenausgabe“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
atmega8China.pdf
) WDT 使能 , V CC= 3V 28 µA 掉电模式 (5) WDT 禁止 , V CC= 3V 3 µA 模拟比较器 VCC = 5V VACIO 输入偏置电压 Vin= CC/2 20 mV 模拟比较器 VCC = 5V IACLK 输入泄漏电流 V = V /2 -50 50 nA in CC 模拟比较器 V = 2.7V 750 tACID CC ns 传输延迟 VCC = 4.0V 500 Notes: 1.
in „Buch AVR von Günter Schmitt durcharbeiten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MB1137.pdf
P0U8C0106 106 C55 2.2uF_X7R VDD PC[0..1 ]009PCC10 P0U8C0VBAT VCAP2/PH2/VDDUSB P0C5501 P0C5502 PC[0..1 ]00P9CC10 SB156 0 P0U8C071 71 C56 2.2uF_X7R 100nF VDD P0SB15601 P0SB15602 5 VCAP1/VSS_1 P0C5601 P0C5602 Closed P 72 P0U8C072 SB12P0SB12901 P0SB12902 L476ZG/F303ZE:VSS 6 P0BOOT0 2 C57 VDD 108 VDD_1 P0U8C0143
in „Suche Mikrocontroller mit 16Bit ADCs und DACs“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN_EVAL_SEPIC_V10.pdf
many on-board power supplies, the output load is reasonably constant, then the CoolSET can where I cc and V cc are the supply current and be supplied via an inexpensive choke L3 in series operating voltage of the CoolSET, respectively, V o with L2, as shown in Figure 6. The inductance is the output voltage
in „Feedback ohne Optokoppler möglich?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HD66766-10.pdf
/ 30 November 2001 DC Characteristics (V = 2.2 to 3.6 V, VCH-VCL=8V to 44V, Ta = –40 to +85°C* ) 1 CC Item Symbol Unit Test Condition Min Typ Max Notes Input high voltage V IH V VCC = 2.2 to 3.6 V 0.7 VCC — V CC 2, 3 Input low voltage V V V = 2.2 to 3.6 V –0.3 — 0.15V 2, 3 IL CC CC Output high voltage
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
-
PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
Logic Input Level - 0.8 x VDD - - V VIL Low Logic Input Level - - - 0.2 x VDD V CC, SLEEP ICC,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V Display OFF, No panel attached - - 10 uA DD, SLEEP IDD,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V - - 10 uA Display OFF, No panel attached V CCSupply Current V = 2.8V, V = 12V, I = CC DD CC REF - 430 780 uA 12.5uA No loading, Display ON, All ON Contrast = FFh V DD Supply Current I V = 2.8V, V = 12V, I = DD DD CC REF - 50 150 uA 12.5uA No loading, Display ON, All ON Contrast=FFh -
in „Spannungsversorgung Arduino läuft nicht über Vin oder 5V-Pin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
Logic Input Level - 0.8 x VDD - - V VIL Low Logic Input Level - - - 0.2 x VDD V CC, SLEEP ICC,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V Display OFF, No panel attached - - 10 uA DD, SLEEP IDD,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V - - 10 uA Display OFF, No panel attached V CCSupply Current V = 2.8V, V = 12V, I = CC DD CC REF - 430 780 uA 12.5uA No loading, Display ON, All ON Contrast = FFh V DD Supply Current I V = 2.8V, V = 12V, I = DD DD CC REF - 50 150 uA 12.5uA No loading, Display ON, All ON Contrast=FFh -
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
-
PDF
SSD1306.pdf
Logic Input Level - 0.8 x VDD - - V VIL Low Logic Input Level - - - 0.2 x VDD V CC, SLEEP ICC,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V Display OFF, No panel attached - - 10 uA DD, SLEEP IDD,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V - - 10 uA Display OFF, No panel attached V CCSupply Current V = 2.8V, V = 12V, I = CC DD CC REF - 430 780 uA 12.5uA No loading, Display ON, All ON Contrast = FFh V DD Supply Current I V = 2.8V, V = 12V, I = DD DD CC REF - 50 150 uA 12.5uA No loading, Display ON, All ON Contrast=FFh -
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
Logic Input Level - 0.8 x VDD - - V VIL Low Logic Input Level - - - 0.2 x VDD V CC, SLEEP ICC,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V Display OFF, No panel attached - - 10 uA DD, SLEEP IDD,Sleep mode Current V DD= 1.65V~3.3V, V CC = 7V~15V - - 10 uA Display OFF, No panel attached V CCSupply Current V = 2.8V, V = 12V, I = CC DD CC REF - 430 780 uA 12.5uA No loading, Display ON, All ON Contrast = FFh V DD Supply Current I V = 2.8V, V = 12V, I = DD DD CC REF - 50 150 uA 12.5uA No loading, Display ON, All ON Contrast=FFh -
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·