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PDF
Silabs_Selector_Guide_0307.pdf
Y Y 2 - TQFP48 C8051F005DK C8051F002 20 32 kB 256 - 8 UART, 4 5 ±20% 12-bit, 4-ch., - 12-bit, Y Y 1 - LQFP32 C8051F005DK SMBus, SPI 100 ksps 2-ch. UART, 10-bit, 8-ch., 12-bit, C8051F010 20 32 kB 256 - 32 SMBus, SPI 4 5 ±20% 100 ksps -
in „Suche passenden Controller: 2K SRAM, 250KHz ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc5947.pdf
................................................ www.ti.com TYPICAL CHARACTERISTICS (continued) At V CC = 3.3 V and T =A+25°C, unless otherwise noted. INTERNAL OSCILLATOR FREQUENCY CONSTANT CURRENT OUTPUT vs AMBIENT TEMPERATURE VOLTAGE WAVEFORM 5.0 z CH1-OUT0 H 4.5 CH1 (2 V/div) (GSData = 001h) ( 4.0 VCC = +3.3 V y n 3.5 VCC = +5 V u IOLCMax= 30 mA e 3.0 CH2 (2 V/div) CH2-OUT0 T = +25°C F A o 2.5 (GSData = 002h) R L 150 W a C = 15 pF c 2.0 L s 1.5 VLED = 5.5 V l CH3 (2 V/div) r 1.0 t CH3-OUT23 I 0.5 (GSData =
in „SPI Timing ATmega8 und TLC5947“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc5947.pdf
................................................ www.ti.com TYPICAL CHARACTERISTICS (continued) At V CC = 3.3 V and T =A+25°C, unless otherwise noted. INTERNAL OSCILLATOR FREQUENCY CONSTANT CURRENT OUTPUT vs AMBIENT TEMPERATURE VOLTAGE WAVEFORM 5.0 z CH1-OUT0 H 4.5 CH1 (2 V/div) (GSData = 001h) ( 4.0 VCC = +3.3 V y n 3.5 VCC = +5 V u IOLCMax= 30 mA e 3.0 CH2 (2 V/div) CH2-OUT0 T = +25°C F A o 2.5 (GSData = 002h) R L 150 W a C = 15 pF c 2.0 L s 1.5 VLED = 5.5 V l CH3 (2 V/div) r 1.0 t CH3-OUT23 I 0.5 (GSData =
in „SPI Entstören“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2287522.pdf
3Ah PD GND V 30 1E 0011110 3Ch DD PD PD GND 31 1F 0011111 3Eh PD PD PD 32 20 0100000 40h PD PD FLT 33 21 0100001 42h PD PD PU 34 22 0100010 44h PD PD VDD 35 23 0100011 46h PD FLT GND 36 24 0100100 48h PD FLT PD 37
in „[V] 10St. NXP PCA9955 16-channel Fm+ I2C-bus 57 mA/20 V constant current LED driver SSOP28 (10€)“ · Markt ·
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PDF
2287522.pdf
3Ah PD GND V 30 1E 0011110 3Ch DD PD PD GND 31 1F 0011111 3Eh PD PD PD 32 20 0100000 40h PD PD FLT 33 21 0100001 42h PD PD PU 34 22 0100010 44h PD PD VDD 35 23 0100011 46h PD FLT GND 36 24 0100100 48h PD FLT PD 37
in „[V] 10St. NXP PCA9955 16-channel Fm+ I2C-bus 57 mA/20 V constant current LED driver SSOP28“ · Markt ·
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PDF
Firmware_buglist_2.06.3.pdf
DSO5xxxB, BV, BMV and DSO1xxxB) contains error in the definition of ALT trigger. The entries for ALT-O.T.CH1 and ALT.O.T.CH2 are missing : [TRIG-SWAP-CH1-VPOS] 2 [TRIG-SWAP-CH1-OVERTIME-NEG] 1 [TRIG-SWAP-CH1-OVERTIME-TIME] 8 [TRIG-SWAP-CH2-VPOS] 2 [TRIG-SWAP-CH2-OVERTIME-NEG] 1 [TRIG-SWAP-CH2-OVERTIME-TIME
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Firmware_buglist_2.06.3.pdf
DSO5xxxB, BV, BMV and DSO1xxxB) contains error in the definition of ALT trigger. The entries for ALT-O.T.CH1 and ALT.O.T.CH2 are missing : [TRIG-SWAP-CH1-VPOS] 2 [TRIG-SWAP-CH1-OVERTIME-NEG] 1 [TRIG-SWAP-CH1-OVERTIME-TIME] 8 [TRIG-SWAP-CH2-VPOS] 2 [TRIG-SWAP-CH2-OVERTIME-NEG] 1 [TRIG-SWAP-CH2-OVERTIME-TIME
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f5529.pdf
operand 1 – signed multiply high word MPYS32H 16h 32-bit operand 1 – multiply accumulate low word MAC32L 18h 32-bit operand 1 – multiply accumulate high word MAC32H 1Ah 32-bit operand 1 – signed multiply accumulate low word MACS32L 1Ch 32-bit operand
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usb_descriptors.c
Descriptors] The device descriptor is defined as a USB_DEVICE_DESCRIPTOR type. This type is defined in usb_ch9.h Each entry into this structure needs to be the correct length for the data type of the entry. [Configuration Descriptors] The configuration descriptor was changed in v2.x from a structure to a BYTE
in „usb_ch9.h ERROR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
, with 8ȍ loads at the output, make sure the output of the oscilloscope(vpp)Њ251V±5V , it has slight clipping; CH3 and CH4 bridge connected, and CH1 and CH2 is the same (Note: CH1 and CH2 should be bridged connection only, the same as CH3 and CH4). 12. Cut out the input signals of
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCA9622DR_118.pdf
mA 40 V LED driver 6. Pinning information 6.1 Pinning V 1 32 V SS DD A0 2 31 SDA A1 3 30 SCL terminal 1 2 1 0 S D D C 6 A A A V V S S A A2 4 29 A6 index area 2 1 0 9 8 7 6 5 5 28 3 3 3 2 2 2 2 2 A3 A5 A4 6 27
in „Kontrolle Eagle Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PWM_Controller_Manual.pdf
Addresse SRAM- Byte EEPROM- Label SRAM- Label SRAM Unterteilung EEPROM ── ── ── ── ── ── 1 $000 OCR_Ch_01_EEP OCR_Ch_01_SRAM $60 2 $001 OCR_Ch_02_EEP OCR_Ch_02_SRAM $61 3 $002 OCR_Ch_03_EEP OCR_Ch_03_SRAM $62 4 $003 OCR_Ch_04_EEP OCR_Ch_04_SRAM $63 5 $004 OCR_Ch_05_EEP OCR_Ch_05_SRAM $64 6 $005 OCR_Ch
in „PWM- Controller 18- Kanal TWI- Bus Proj.“ · Projekte & Code ·
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PDF
USR_Modem_Self-modeSDK13.pdf
String of eight ASCII coded 3-digit numbers separated by commas for the parameter 0: <+M Memory Size> 002 for 2 Mbytes of +M Memory. , Separator ASCII 02Ch. <% of used space> 000 to 100 for percentage of used +M Memory. , Separator ASCII 02Ch. <# of stored voice messages> 000 to 255. , Separator ASCII 02Ch
in „Voicempdem am AVR?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
170-04833-0-MB90549GPF.pdf
INT0 to INT7 8 ch. * : Only the MB90540 series has two channels 20 MB90540/540G/545/545G Series MEMORY SPACE The memory space of the MB90540/545 Series is shown below. MB90V540 MB90F543 MB90F549 MB90F548G (S) MB90V540G
in „16Bit PIC von Fujitsu .. hat jemand Informationen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Service_manual_casio_px-720_px-720c_piano.pdf
1 1 1 1 1 CX C N 31 10286857 SIDE UNIT/LEFT TK-RJM508098*002 1 1 1 1 1 CX C 32 10052232 KNOB/RTR M341402-1 1 1 1 1 1 AE C N 32 10281937 KNOB/RTR M341402-002V01 1 1 1 1 1 AA C N 33 10281490 SIDE BLOCK/LEFT RJM507971-001V01 1 1 1 1 1 AE X N 33 10281955 SIDE BLOCK
in „E-Piano Casio PX-720C rauscht und kratzt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
webasm27154_lst.txt
ENDT 201: 0151 75 22 00 MOV HOUR,#00H 202: 0154 D0 D0 ENDT:POP PSW 203: 0156 D0 E0 POP ACC 204: 0158 32 RETI 205: 206: ;*************************** 207: ;ÖжϳÌÐò1 208: ;*************************** 209: ;ŽòÄÖÒ»·ÖÖÓ¶šÊ± 210: ;(21H).1:Ò»·ÖʱŒäµœ±êÖŸ 211: ASEM-51 V1.4a2 Copyright (c) 2008 by W.W. Heinz PAGE
in „Uhrzenbausatz mit At89C2051 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Firmware_buglist_2.06.3.pdf
that as long other bugs would get fixed! 8. In single window, sample memory >=40k, both channels (ch1, ch2) enabled and time base from 400ns/div up to 2ns/div the position change (fine and coarse) control is not working. Only scale is moving, but not the waveform. See attached picture to understand
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PDF
Firmware_buglist_2.06.3.pdf
DSO5xxxB, BV, BMV and DSO1xxxB) contains error in the definition of ALT trigger. The entries for ALT-O.T.CH1 and ALT.O.T.CH2 are missing : [TRIG-SWAP-CH1-VPOS] 2 [TRIG-SWAP-CH1-OVERTIME-NEG] 1 [TRIG-SWAP-CH1-OVERTIME-TIME] 8 [TRIG-SWAP-CH2-VPOS] 2 [TRIG-SWAP-CH2-OVERTIME-NEG] 1 [TRIG-SWAP-CH2-OVERTIME-TIME
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Firmware_buglist_2.06.3.pdf
DSO5xxxB, BV, BMV and DSO1xxxB) contains error in the definition of ALT trigger. The entries for ALT-O.T.CH1 and ALT.O.T.CH2 are missing : [TRIG-SWAP-CH1-VPOS] 2 [TRIG-SWAP-CH1-OVERTIME-NEG] 1 [TRIG-SWAP-CH1-OVERTIME-TIME] 8 [TRIG-SWAP-CH2-VPOS] 2 [TRIG-SWAP-CH2-OVERTIME-NEG] 1 [TRIG-SWAP-CH2-OVERTIME-TIME
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top2008.pdf
, ATTINY12(Hi), ATTINY13(Serial), ATTINY15L(Hi), ATTINY25, ATTINY26, ATTINY26L, ATTINY28L, ATTINY28V, ATTINY2313(DIP20), ATTINY2313V(DIP20),ATTINY2313, ATMEGA8, ATMEGA8L, ATMEGA16, ATMEGA16L, ATMEGA8535, ATMEGA8535L, ATMEGA8515, ATMEGA8515L, ATMEGA32, ATMEGA32L, ATMEGA48*PDIP28, ATMEGA88*PDIP28, ATMEGA88P
in „[V] Top 853 Universal Programmer + 74er Tester“ · Markt ·
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PDF
PCA9685.pdf
limited to a maximum of 25 mA and the total package limited to 400 mA due to internal busing limits. 002aad877 002aad878 10 60 IDD (mA) OL 8 (mA) VDD = 4.5 V VDD = 5.5 V 40 6 3.0 V 4 2.3 V 3.3 V 20 2 2.3 V 0 0 −50 0 50 100 −50 0 50 100 Tamb(°C) Tamb (°C) Fig 28. I DD typical values with OSC on and Fig
in „LED-Streifen dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FR_Family_MB91F109.pdf
: Temporary register *3 * BLT32 label32, Ri ifs/V xor N = = 1 Ri: Temporary register * * BGE32 label32, Ri ifs/V xor N = = 0 Ri: Temporary register *3 * BLE32 label32, Ri ifs/(V xor N) or Z = = 1 Ri: Temporary register *3 * BGT32 label32
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PWM_Controller_Manual.pdf
Addresse SRAM- Byte EEPROM- Label SRAM- Label SRAM Unterteilung EEPROM ── ── ── ── ── ── 1 $000 OCR_Ch_01_EEP OCR_Ch_01_SRAM $60 2 $001 OCR_Ch_02_EEP OCR_Ch_02_SRAM $61 3 $002 OCR_Ch_03_EEP OCR_Ch_03_SRAM $62 4 $003 OCR_Ch_04_EEP OCR_Ch_04_SRAM $63 5 $004 OCR_Ch_05_EEP OCR_Ch_05_SRAM $64 6 $005 OCR_Ch
in „PWM- Controller 18- Kanal TWI- Bus Proj.“ · Projekte & Code ·
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PDF
PCA9626.pdf
4 33 LED17 LED3 5 32 LED16 V 6 31 V SS PCA9626B SS VSS 7 30 V SS LED4 8 29 LED15 LED5 9 28 LED14 LED6 10 27 LED13 LED7 11 26 LED12 VSS 12 25 VSS 3 4 5 6 7 8 9 0 1 2 3 4 1 1 1 1 1 1 1 2 2 2 2 2 002aad662 2 3 4 S 8 9 0 1 S
in „Probleme mit PCA9626 und I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
84123_usb_i2c_handbuch_v1_7.pdf
L03E8 WFF P Auf diese Weise kann beispielsweise auch ein LED-Lauflicht programmiert werden: s40 ff L002f wfe L002f wfc L002f wf8 L002f wf0 L002f we0 L002f wc0 L002f w80 L002f w00 L002f w80 L002f wc0 L002f we0 L002f wf0 L002f wf8 L002f wfc L002f wfe L002f wff l002f P Im Kapitel „Makrofunktion“ (Kapitel
in „Hygrosens I2C Tmp Modul antwortet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PEHandbuch.pdf
ein kleines L, kein großes i). Ermittelt durch "lsusb": tom@tom-TM6595T:~/LDaten/QtProgs$ lsusb Bus 002 Device 003: ID 1c7a:0603 LighTuning Technology Inc. -> Bus 002 Device 004: ID 16d0:0418 MCS Bus 002 Device 002: ID 8087:0024 Intel Corp. Integrated Rate Matching Hub Mein Programmiergerät (ID 16d0:0418 MCS) ist hier das zweite Gerät: Bus 002 Device 004. Nun die Rechte der Geräte prüfen. Hier prüfe ich die Geräte am Bus 002: ls -l /dev/bus/usb/002 tom@tom-TM6595T:~/LDaten$ ls -l /dev/bus/usb/002 crw-rw-r-- 1 root root 189, 128 Mai 11 09:
in „UART auf Linux“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PEHandbuch.pdf
ein kleines L, kein großes i). Ermittelt durch "lsusb": tom@tom-TM6595T:~/LDaten/QtProgs$ lsusb Bus 002 Device 003: ID 1c7a:0603 LighTuning Technology Inc. -> Bus 002 Device 004: ID 16d0:0418 MCS Bus 002 Device 002: ID 8087:0024 Intel Corp. Integrated Rate Matching Hub Mein Programmiergerät (ID 16d0:0418 MCS) ist hier das zweite Gerät: Bus 002 Device 004. Nun die Rechte der Geräte prüfen. Hier prüfe ich die Geräte am Bus 002: ls -l /dev/bus/usb/002 tom@tom-TM6595T:~/LDaten$ ls -l /dev/bus/usb/002 crw-rw-r-- 1 root root 189, 128 Mai 11 09:
in „MC68HC908AZ60A programmieren mit OpenSource“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PEHandbuch.pdf
ein kleines L, kein großes i). Ermittelt durch "lsusb": tom@tom-TM6595T:~/LDaten/QtProgs$ lsusb Bus 002 Device 003: ID 1c7a:0603 LighTuning Technology Inc. -> Bus 002 Device 004: ID 16d0:0418 MCS Bus 002 Device 002: ID 8087:0024 Intel Corp. Integrated Rate Matching Hub Mein Programmiergerät (ID 16d0:0418 MCS) ist hier das zweite Gerät: Bus 002 Device 004. Nun die Rechte der Geräte prüfen. Hier prüfe ich die Geräte am Bus 002: ls -l /dev/bus/usb/002 tom@tom-TM6595T:~/LDaten$ ls -l /dev/bus/usb/002 crw-rw-r-- 1 root root 189, 128 Mai 11 09:
in „Programm zum erstellen eines Handbuches“ · PC Hard- und Software ·
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PDF
MCF51QE128-1.pdf
2008 MCF51QE128 MCF51QE128 Series Covers: MCF51QE128, MCF51QE96, MCF51QE64, 80-LQFP 64-LQFP MCF51QE32 Case 917A Case 840F 14 mm 2 10 mm 2 • 32-Bit Version 1 ColdFire Central Processor Unit (CPU) • Development Support – Up to 50.33-MHz ColdFire V1 CPU above 2.4V, 40-MHz CPU above 2.1V, and 20-MHz CPU
in „Eingangsspannungsbereich ADC Coldfire“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Angaben.txt
written ;*** V 1.0.0.1 Implement connection to PCF8574 ;*** V 1.0.0.0 First construction based on Version 1.0 of ;*** A P P L I C A T I O N N O T E A V R 3 0 0 (2002.05.03) ;****************************************
in „Crashkurs in Sachen I²C-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Emerson_ave350b-48s28-6_v1_0_def2cb32b1.pdf
50% ~ 25%) and 0.1A/ s slew rate, (2ms/div), see (20ms/div), see Figure 10 for test configuration; CH1 output voltage (10V/div); CH2 intput voltage Figure 10 for test configuration; CH1 output voltage (200mV/div); CH2 output current (2.5A/div) (20V/div) AVE350B-48S28-6 DC-DC Converter 7/15 Figure 7 Output
in „FU-Zwischenkreis aus DC/DC Wandler speisen Solarpumpe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCA9306.pdf
V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
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PDF
PCA9306.pdf
V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
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PDF
PCA9306.pdf
V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3
in „V] ca. 170 St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
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PDF
TAS6424-q1.pdf
Q1 www.ti.com SLOS870A –SEPTEMBER 2016–REVISED OCTOBER 2016 7.7 Typical Characteristics T A 25 ºC, V VDD = 3.3 V, VBAT = PVDD = 14.4 V, R = 4 Ω, L = 1 kHz,IN = 48 kHz, fs SW = 2.11 MHz, AES17 filter, default I C 2 settings, see Figure 79 and Figure 82 (unless otherwise noted) 0 0 Ch 1 to Ch 2 PV = 14.4 V Ch 2 to Ch 1 PV DD = 24 V -20 DD -20 B -40 ) ( d -40 l ( s -60 R o S r P -60 C -80 -80 -100 -120 -100 20 100 1k 10k 20k 20 100 1k 10k 20k Frequency (Hz) Frequency D002 D022 P O 1 W P O 1 W Figure 1.
in „Eagle lib für TAS6424“ · Platinen ·
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PDF
xone92.pdf
1 2 XFADER XFADER L R OFF FILTER SELECT HPF HPF AUX1 BPF BPF PRE MIDI OUTPUT CONFIGURE LPF LPF ON CH16 AUX2 VCF PRE FREQ LINK 2-1 FREQ OFF CH15 F F R H C C D IC V V F I X M FILTER ON FILTER ON DISABLE DISABLE CUE 2=+ L CLEANFEED MIX LR+CF MUSIC+MIC MIX 1 MIC/RTN INPUTS -15dB DUCKING + BAL +4dBu MIX
in „Fehlersuche in DJ-Mixer (Allen & Heath Xone:92)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Airframe-Esp32.pdf
CC0402KRX7R9BB103 DTR 2 1 CP2102-GM D 2DOC 2 1 P0 P 2 GND GND GND 0Ohm 0402 PR GND CR40 GND GND IO21 PIR001 PIR002 PID20 PID201 GND VDD 3V3 R29 1 IP901 PIR292 ROC 013CIP 1R3 2 1 C3 C3C CIC2 PIR001 PIR302 P023CI PI3 PI32 2013CIP 2 2 2 2 2 1 1 17 C 23COC L4 +2.4V CIP P1043 2 PPPIIC P PP 2 PP TPS65261RHBR 023CIP 1PL1
in „CP2102 ESP32-S3 USB Verbindung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7735S.pdf
V28-(V28-V36)* (8/32) V28-(V28-V36)* (8/32) 31 V28-(V28-V36)* (12/32) V28-(V28-V36)* (12/32) 32 V28-(V28-V36)* (16/32) V28-(V28-V36)* (16/32) 33 V28-(V28-V36)* (20/32) V28-(V28-V36)* (20/32) 34 V28-(V28
in „[STM32/HAL] Treiber für ST7735 160 x 80 TFT“ · Projekte & Code ·
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PDF
MAX4617-MAX4619.pdf
C, E -10 10 X(ON), T A +25°C -1 0.002 1 X, Y, Z On-Leakage Y(ON), VCC = 5.5V; VX, Y , Z = 1V, 4.5V; nA Current (Note 5) I VX_, Y_, VZ_= 1V, 4.5V or floating Z(ON) C, E -10 10 DIGITAL I/O VAH , BH, Input Voltage High V CH, C, E 2.4 V VENABLEH
in „CMOS analog multiplexer MAX4619“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F5438IPZ.pdf
MACS 06h 16-bit operand 2 OP2 08h 16 × 16 result low word RESLO 0Ah 16 × 16 result high word RESHI 0Ch 16 × 16 sum extension register SUMEXT 0Eh 32-bit operand 1 – multiply low word MPY32L 10h 32-bit operand 1 – multiply high word MPY32H 12h 32-bit operand 1 – signed multiply low word MPYS32L 14h 32-bit operand 1 – signed multiply high word MPYS32H 16h 32-bit operand 1 – multiply accumulate low word MAC32L 18h 32-bit operand 1 – multiply accumulate high word MAC32H 1Ah 32-bit operand 1 – signed multiply accumulate low word MACS32L 1Ch 32-bit operand
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TIR-C.asm
ld ix,205dh 002a fd21b420 ld iy,20b4h 002e cd4010 call 1040h 0031 7c ld a,h 0032 cdb705 call 05b7h 0035 222b21 ld (212bh),hl 0038 cda005 call 05a0h 003b d8 ret c 003c 224321 ld (2143h),hl 003f c9 ret 0040 dd7e00 ld
in „Z80/UA880D mit 28C64 startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv130.pdf
HT1632C 32×8 & 24×16 LED Driver Features Applications • Operating voltage: 2.4V~5.5V • Industrial control indicator • Multiple LED display − 32 ROW /8 COM and • Digital clock, thermometer, counter, voltmeter 24
in „8x8 RGB Matrix Ansteuerungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AMN1_MP_Motion_Sensor.pdf
Analog output Items Symbol Specified value Measured conditions Reted operating voltage Minimum Vdd 4.5 V DC Maximum 5.5 V DC Typical 0.17 mA Reted consumption current Iw Iout = 0 Maximum 0.3 mA Output current Maximum Iout 50 µA Minimum 0 V Output voltage Typical Vout 2.5 V Maximum Vdd Minimum 2.3 V Steady-state
in „AMN1 Motion Sensor, woher kriegt man ihn?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AMN1_MP_Motion_Sensor.pdf
Analog output Items Symbol Specified value Measured conditions Reted operating voltage Minimum Vdd 4.5 V DC Maximum 5.5 V DC Typical 0.17 mA Reted consumption current Iw Iout = 0 Maximum 0.3 mA Output current Maximum Iout 50 µA Minimum 0 V Output voltage Typical Vout 2.5 V Maximum Vdd Minimum 2.3 V Steady-state
in „Motion Sensor Analog oder Digital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR_Sensor.pdf
Analog output Items Symbol Specified value Measured conditions Reted operating voltage Minimum Vdd 4.5 V DC Maximum 5.5 V DC Typical 0.17 mA Reted consumption current Iw Iout = 0 Maximum 0.3 mA Output current Maximum Iout 50 µA Minimum 0 V Output voltage Typical Vout 2.5 V Maximum Vdd Minimum 2.3 V Steady-state
in „Bewegungsmelder Plastikkappe direkt auf dem PIR-Sensor“ · Haus & Smart Home ·
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Oszilloskop_9254A.pdf
(offset accuracy)+(resolution/2)] V increments) RMS Noise Floor (V RMS AC 9064A 9104A 9254A 9404A Volts/div 10 mV 213 uV 240 uV 273 uV 402 uV 20 mV 470 uV 481 uV 445 uV 627 uV 50 mV 1.15 mV 1.24 mV 1.22 mV 1.67 mV 100 mV 2.37 mV 2.43 mV 2.54 mV 3.17 mV 200 mV 4.65 mV 4,85 mV 5.06 mV 6.18 mV 500 mV 11.8 mV 12.3 mV 12.2 mV 15.8 mV 1 V 23.9 mV 24.3 mV 25.2 mV 31.5 mV Vertical: digital channels On all MSO Models Input channels 16 digital channels
in „Genauigkeit eines Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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ne25139.pdf
0.9 18 1.9 0.9 1.2 16.0 0.82 28 1.2 V G2S Gate 2 to Source Voltage V -4.5 1.5 1.5 14.6 0.71 45 0.9 ID Drain Current mA IDSS 2.0 1.9 12.5 0.55 75 0.67 PT Total Power Dissipation mW 200 3.0 2.5 11.0 0.34 116 0.5 T CH Channel Temperature °C
in „GaAs NE25139 ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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DS_AT32F421_V2.01_EN.pdf
AT32F421K6U7-4, − Almost all 5 V-tolerant AT32F421G6U7, AT32F421F6P7 AT32F421C4T7, AT32F421K4T7, 16 Kbytes AT32F421K4U7, AT32F421K4U7-4, AT32F421G4U7, AT32F421F4P7 2022.6.6 1 Ver 2.01 AT32F421 Series Datasheet
in „Firmware entschlüsseln, Updateprogramm als Hilfe?“ · Softwareentwicklung ·