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PDF
88E1111_DS.pdf
Ultra.Gigabit Ethernet Transceiver Ic r 30 4.7 AC Timing Reference Values cto 13 Symbol Parameter Pins dMin02 Typ Max Units VIH_GMIIMII input higTXD[7:0], ref- V 0 (Min.) erence TX_ERio DA 2 GTXeCLKN # (Max.)Ivoltage refereTS_EE,R], 0.7 V D eGTN_CLK, N VOH_GMIIMII output hiRXD[7:0],e.9 V E (Min.) referenceM
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ENG_SS_114-2025_G3.pdf
Seam Closed Insulation Barrel Wire Barrel Seam Closed with NoWire Insulation in Seam Crimp Width (Ref) with No Loose Strands (“F” Crimp Shown, Refer toTable) Section X-X Wire Barrel Wire Barrel CrimpHeight 0.00-0.38 [.000-.015] 0.38-0.76 [.015-.030] CrimpWidth (Ref) Front Bellmouth Rear Bellmouth DetailA (Ref) X 0.13 [.005] Max Burr X See Detail A Effective Crimp Length 0.25 [.010] Max (Ref) 0.00-0.38 [.000-.015] Wire Barrel Flash Cutoff Tab Rev G2 4 of 11 114-2025 INSULATION BARREL CRIMP QUALITY TYPE CORRECT
in „Welcher Stecker ist das (Schaltbildinterpretation)“ · Fahrzeugelektronik ·
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PDF
ads5240.pdf
the internal reference mode, a resistor of 2 should be added between the reference pins IN Sample (REF and REF ) and the decoupling capacitor, as 1.5pF SP T B shown in Figure 16. INCM ADS5240 Figure 15. Input Circuitry SET REF V REF 56.2k T CM B INPUT OVER-VOLTAGE RECOVERY 2Ω 2Ω The differential full-scale
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
math.txt
in UAHelper, line 15 +++GET 16109+++ GET /stylesheets/screen.css?1264604402 HTTP/1.1 Accept: */* Referer: http://www.mikrocontroller.net/topic/164714 Accept-Language: de Accept-Encoding: gzip, deflate User-Agent: Mozilla/4.0 (compatible; MSIE 6.0; Windows 98; Win 9x 4.90; .NET CLR 2.0.50727; .NET CLR
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PDF
22SM-29S_Interface_Protocol1.pdf
29S 1110 2) Send interval Code Send interval 0000 0.05 0001 0.1 0010 0.2 0011 0.5 0100 00:01 0101 00:02 0110 00:05 0111 00:10 1000 00:20 1001 00:30 1010 01:00 1011 02:00 1100 05:00 1101 10:00 1110 ---- 0111 data 3) Current type and measured variable 1, 2 a) menu item AdAPt isSI-232 StorE function variable
in „Checksumme beim MetraHit-Protokoll bilden, wie?“ · Softwareentwicklung ·
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PDF
bq2040.pdf
6.5V SB Battery sense input VCC 1 16 VOUT ESCL EEPROM clock PSTAT Protector status input ESCL 2 15 REF ESDA EEPROM data SMBD SMBus data input/output ESDA 3 14 SMBC LED 1-4 LED segment 1-4 SMBC SMBus clock LED 1 4 13 SMBD V SS System ground REF Voltage reference output LED 5 12 PSTAT SR Sense resistor
in „Das ewige Thema - Akkucontroller BQ2040 zurück setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BQ2040.PDF
6.5V SB Battery sense input VCC 1 16 VOUT ESCL EEPROM clock PSTAT Protector status input ESCL 2 15 REF ESDA EEPROM data SMBD SMBus data input/output ESDA 3 14 SMBC LED 1-4 LED segment 1-4 SMBC SMBus clock LED 1 4 13 SMBD V SS System ground REF Voltage reference output LED 5 12 PSTAT SR Sense resistor
in „Win98 Diagnose Notebook Akku immer 50%“ · PC Hard- und Software ·
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PDF
Support-Schematic.PDF
PIP305 3 4 PIP306 PR02 PR11 41 IN OUT 3.3VV P I I C 2 0 2 GND PIIC2019 5VV 5 6 10 2.2M P0 D C+ C55 0 I0 I2 VCCA VCCB 12 Header 3X2 P0 C66 N C0 47u 0 C77 I0 C88 I0 C100 TXB0108PWR 10 C11 01 VR1R R0 100n G 100n 10n C A TL431
in „Zufällige Ausgangsspannungen bei TXB0108PWR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
linkswitch-hp_family_datasheet-844868.pdf
LinkSwitch-HP eSIP-7C (E Package) 2 C A 0.403 (10.24) 0.081 (2.06) 0.264 (6.70) 0.397 (10.08) 0.077 (1.96) Ref. B Detail A 2 0.325 (8.25) 0.290 (7.37) 0.320 (8.13) Ref. 0.198 (5.04) Ref. 0.519 (13.18) Ref. Pin #1 0.207 (5.26) I.D. 0.140 (3.56) 0.016 (0.41) 0.187 (4.75) 0.120 (3.05) Ref. 0.070 (1.78) Ref. 0.047
in „Fujitsu B27T-7 TFT Monitor Netzteil defekt Bauteil 715G6503-P01-001-0010“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4N35-1.pdf
dielectric breakdown rating. 1. For this test, Pins 1 and 2 are common, and Pins 4, 5 and 6 are common. 2. Refer to Quality and Reliability Section in Opto Data Book for information on test conditions. Preferred devices are Motorola recommended choices for future use and best overall value. GlobalOptoisolator
in „Vorwiderstand für eine Led eines Optokopplers“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA8_DATENBLATT.pdf
2486X–AVR–06/10 Reading the Signature The algorithm for reading the Signature bytes is as follows (refer to “Programming the Flash” on Bytes page 229 for details on Command and Address loading): 1. A: Load Command “0000 1000”. 2. B: Load Address Low byte (0x00 - 0x02). 3. Set OE to “0”, and BS1 to “0”
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD811.pdf
0.07 0.14 G N D A ( G 0.06 0.12 S L A T 0.05 0.10 P N L E 0.04 PHASE 0.08 I E T F E D 0.03 0.06 R F 0.02 0.04 I GAIN D 0.01 0.02 0 0 0 5 6 7 8 9 10 11 12 13 14 15 - 8 SUPPLY VOLTAGE (±V) 0 Figure5.DifferentialGainandPhase Rev. E | Page 3 of 20 AD811 SPECIFICATIONS @ T A +25°C,V =S±15V dc,R LOAD= 150 Ω,unless
in „2 Spannungen in einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
18000-1.pdf
Declared patents ISO/IEC 18000 Assignee Patent Number Part Part 4, Mode 2 Siemens DE 10137247.7 PCT/DE02/02769 Part 3, Mode 1 TagSys EP 0578701B1 AU 664544 AU PCT AU/00/01493 WO 01/41043 AU PCT AU98/00017 WO 98/32092 US 5523749 AU PCT AU01/01676 WO02/054365 FR FR00/01704 WO 01/01326 Part 6, Type A TagSys
in „RFID Controller programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps62933-1.pdf
80 c c e e i i E 70 E 70 Vin=6V 60 Vin=12V 60 Vin=19V Vin=19V Vin=24V Vin=24V 50 50 0.001 0.005 0.02 0.05 0.1 0.2 0.5 1 2 3 0.001 0.005 0.02 0.05 0.1 0.2 0.5 1 2 3 I-Load (A) I-Load (A) Figure 6-17. Efficiency, V OUT = 3.3 V, fSW = 1200 Figure 6-18. Efficiency, V OUT = 12 V , fSW = 500 kHz, kHz, L =
in „TI Buck TPS62933.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MPR121.pdf
state into a touch released state is easily done by setting the baseline value above the signal data. Refer to the Electrode Configuration Register (ECR, 0x5E) on how to control the on/off operation of baseline tracking and further details on how the initial baseline data is loaded into Run Mode. Refer to
in „Probleme bei I2C-Verbindung mit MPR121 unter BASCOM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
panasonic_tx-w32d5dpf.pdf
MA4051 DIODE D401 MA165TA5 DIODE D1103 MA4051 DIODE D402 MA165TA5 DIODE D1104 MA165TA5 DIODE D404 EU02AV1 DIODE D1105 MA165TA5 DIODE D405 MA165TA5 DIODE D1107 MA165TA5 DIODE D408 MA165TA5 DIODE D1109 MA165TA5 DIODE D502 1SS254T-77 DIODE D1110 MA165TA5 DIODE D503 EU02 DIODE D1112 MA165TA5 DIODE D504 EU02
in „Panasonic TX-W32D5DPF“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
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Datei
m8def.inc
ACSR =$08 .equ ADMUX =$07 .equ ADCSR =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „Illegal device name“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „Fehlermeldung beim Assemblieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ACSR =$08 .equ ADMUX =$07 .equ ADCSR =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „Include Datei für Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ACSR =$08 .equ ADMUX =$07 .equ ADCSR =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „m8def.inc runterladen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „m8def.inc runterladen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „Peter Danneggers Bootloader (fastboot) für AVR-GCC-Toolchain“ · Projekte & Code ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „Ich bräuchte mal Starthilfe.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „AVR ASM Timer-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „def. inc Datei“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ADMUX =$07 .equ ADCSR =$06 .equ ADCSRA =$06 .equ ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select
in „Anfänger Frage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
msp430x20x2.h
define ADC10ON (0x010) /* ADC10 On/Enable */ #define REFON (0x020) /* ADC10 Reference on */ #define REF2_5V (0x040) /* ADC10 Ref 0:1.5V / 1:2.5V */ #define MSC (0x080) /* ADC10 Multiple SampleConversion */ #define REFBURST (0x100) /* ADC10 Reference Burst Mode */ #define REFOUT (0x200) /* ADC10 Enalbe output of Ref. */ #define ADC10SR (0x400) /* ADC10 Sampling Rate 0:200ksps / 1:50ksps */ #define ADC10SHT0 (0x800) /* ADC10 Sample Hold Select 0 */ #define ADC10SHT1 (0x1000) /* ADC10 Sample Hold Select 1 */ #define
in „msp430x20x2.h gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317L.pdf
range (unless otherwise noted) PARAMETER TEST CONDITIONS (1) MIN TYP MAX UNIT (2) TJ= 25°C 0.01 0.02 Input voltage regulation VI– V O 5 V to 35 V %V IO= 2.5 mA to 100 mA 0.02 0.05 V = 10 V, f = 120 Hz 65 O Ripple regulation VO= 10 V, dB 10-μF capacitor between ADJUSTMENT and ground 66 80 V = 5 V to
in „0-10V in Stufen mit Auf-/Ab-Kontakt durchschalten“ · Haus & Smart Home ·
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PDF
MRF89XAM8A.pdf
web site Integrated Sub-GHz Transceiver” (DS70622) Data http://www.microchip.com/wireless. Sheet. Refer to the “MRF89XA Data Sheet” for specific The MRF89XAM8A module has been tested and serial interface protocol and general register conforms to EN 300 220-2 V2.3.1 (2001–02) and EN definitions. Also,
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
MC34063A-D.pdf
Up and 8 Voltage−Inverting applications with a minimum number of external SOIC−8 3x063 components. Refer to Application Notes AN920A/D and AN954/D 8 D SUFFIX ALYGA for additional design information. 1 CASE 751 1 Features • Operation from 3.0 V to 40 V Input 8 • Low Standby Current • Current Limiting 3x063AP1
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063A-D.pdf
Up and 8 Voltage−Inverting applications with a minimum number of external SOIC−8 3x063 components. Refer to Application Notes AN920A/D and AN954/D 8 D SUFFIX ALYGA for additional design information. 1 CASE 751 1 Features • Operation from 3.0 V to 40 V Input 8 • Low Standby Current • Current Limiting 3x063AP1
in „5 Volt aus 3,6 Volt mit 34063“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063A-D.pdf
−Up and 8 CASE 626 Voltage−Inverting applications with a minimum number of external 1 components. Refer to Application Notes AN920A/D and AN954/D for additional design information. Operation from 3.0 V to 40 V Input SO−8 8 D SUFFIX Low Standby Current 1 CASE 751 Current Limiting Output Switch Current
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34063A-D.pdf
Up and 8 Voltage−Inverting applications with a minimum number of external SOIC−8 3x063 components. Refer to Application Notes AN920A/D and AN954/D 8 D SUFFIX ALYGA for additional design information. 1 CASE 751 1 Features • Operation from 3.0 V to 40 V Input 8 • Low Standby Current • Current Limiting 3x063AP1
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bd.pdf
SerialClk RGB to DVI Video Encoder (Source) (Pre-Production) Constant axi_dynclk_0 s00_axi PXL_CLK_O REF_CLK_I PXL_CLK_5X_O axi_interconnect_0 s00_axi_aclk LOCKED_O s00_axi_aresetn S00_AXI Dynamic Clock Generator (Pre-Production) ACLK ARESETN S00_ACLK M00_AXI S00_ARESETN M00_ACLK M00_ARESETN processing_system7
in „Zynq - AXI Lite Slaves melden sich nicht - Linux stürtzt ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T.E._GPS_Receiver_A1029_V4.0.pdf
Rev. Date Description 1.0 11-10-03 Initial Draft. 1.1 11-24-03 Second draft – not released. 1.2 12-02-03 Preliminary version. 1.3 12-22-03 Minor format changes. 1.4 01-09-04 Gain select clarified, LOCK pin described, Overview Mechanics included. 1.5 01-15-04 Picture, description ENABLE pin. 1.6 02-16
in „Dead Reckoning GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-IRLML2502-DataSheet-v01_01-EN.pdf
R e 0.04 n 0.20 r O o c - u t S i Id = 4.0A o r 0.03 n D a 0.10 ,) D VGS = 4.5V n , ( n D o R S 0.02 D 0.00 R 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 6.5 7.0 0 10 20 30 40 V Gate -to -Source Voltage ( V ) GS, iD , Drain Current ( A ) Fig 11. On-Resistance Vs. Gate Voltage Fig 12. On-Resistance Vs. Drain
in „Hilfe bei Bauteilidentifizierung erbeten (MOSFET, SOT23)“ · Offtopic ·
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PDF
IRLML6401.pdf
o c - 0.06 u 0.10 t o i o r 0.05 Id = -4.3A - D a , 0.04 D VGS = -4.5V n , 0.05 ( ) D 0.03 o R ( 0.02 D R 0.00 1.0 2.0 3.0 4.0 5.0 6.0 7.0 0 10 20 30 40 -VGS, Gate -to -Source Voltage ( V ) -D , Drain Current ( A ) Fig 12. Typical On-Resistance Vs. Fig 13. Typical On-Resistance Vs. Gate Voltage Drain
in „3,3 V schalten mit möglichgst geringem Spannungsabfall“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLML2502.pdf
R e 0.04 n 0.20 r O o c - u t S i Id = 4.0A o r 0.03 n D a 0.10 ,) D VGS = 4.5V n , ( n D o R S 0.02 D 0.00 R 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 6.5 7.0 0 10 20 30 40 V Gate -to -Source Voltage ( V ) GS, iD , Drain Current ( A ) Fig 11. On-Resistance Vs. Gate Voltage Fig 12. On-Resistance Vs. Drain
in „Umsetzung eines 5V Output mit ESP32 und AQY Halbleiterrelais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GU112x16G-7806-07.pdf
writes are required to send one data (40µs) byte. The most significant nibble should be sent first. Refer to the ‘Parallel Communications’ section for more information. The lum value sets the displays brightness, and must be sent with the RS line high: - 00H = full brightness, 01H = 75%, 02H = 50% & 03H
in „Noritake VFD im 10x14-Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PG240128LRU-ATA-H-P2.pdf
PG240128LRU-ATA-H-P2-SA Mass Production Code : Edition : A Customer Sign Sales Sign Approved By Prepared By Eingang 02.12.02 PT-R-003-3 NO.PG240128LRU-ATA-H-P2 Rev:A CONTENTS 1.SPECIFICATIONS 1.1 Features 1.2 Mechanical Specifications 1.3 Absolute Maximum Ratings 1.4 DC Electrical Characteristics 1.5 Optical Characteristics
in „Probleme mit GLCD von Powertip (T6963C)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1799f_oscillator_info.pdf
10OPEN ÷1 1799 TA01 5 0 SOT-23 Actual Size –1.25–0.75 –0.25 0 0.25 0.75 1.25 FREQUENCY ERROR (%) 1799 TA02 1 LTC1799 W W W U U W U ABSOLUTE AXI U RATI GS PACKAGE/ORDER I FOR ATIO (Note 1) + ORDER PART NUMBER Supply Voltage (V ) to GND ........................–0.3V to 6V TOP VIEW DIV to GND................
in „Ein Rechteckgenerator mit LTC1799 - Nachbrenner?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STR-W6253D_PWMswitschRegulator.pdf
Controller (MIC) Power Dissipation PD2 5-3 For Vcc×Icc 0.8 W Operating Internal Frame Temperature TF – Refer to TOP –20 to 115 °C Operating Ambient Temperature T – –20 to 115 °C op Storage Temperature Tstg – –40 to 125 °C Channel Junction Temperature TJ – 150 °C 1Refer to figure 1 2IDMAX is the drain current
in „suche Diode aus Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STR-W6253D_PWMswitschRegulator.pdf
Controller (MIC) Power Dissipation PD2 5-3 For Vcc×Icc 0.8 W Operating Internal Frame Temperature TF – Refer to TOP –20 to 115 °C Operating Ambient Temperature T – –20 to 115 °C op Storage Temperature Tstg – –40 to 125 °C Channel Junction Temperature TJ – 150 °C 1Refer to figure 1 2IDMAX is the drain current
in „Reparatur Audio-Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vinculum_Firmware_User_Manual_V2.4_Rev_3.pdf
ASCII mode and the data stage output is represented in hexadecimal values. SSU·$2109000201000800 01 02 03 04 05 06 07 08 <prompt> In SCS mode and IPH mode: 9A 20 21 09 00 02 01 00 08 00 0D 01 02 03 04 05 06 07 08 <prompt> This is a further example where the data stage is requesting a number of input bytes
in „USB-Stick-Interface STI 100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC57T01G.pdf
-0.02=86.38( LCD A.A ) ± 1.0 0.2 90.0 0.2( LCD V.A ) 8.5 0.3 92.0 0.3( BEZEL ) 4.0 0.3 2-101.0 0.3 109.0 0.5 Module No. : MC57T01G Date: 2002.10.30 Ver.: 1 Page: 4 Display Corporation This specification is
in „Grasshopper und TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
data.pdf
Step–Down and Step–Up and Voltage–Inverting applications with a minimum number of external components. Refer to Application Notes AN920A/D and AN954/D for additional design information. Operation from 3.0 V to 40 V Input 8 Low Standby Current 1 Current Limiting Output Switch Current to 1.5 A P, P1 SUFFIX
in „Funktionert dieser Schaltregler so?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
data.pdf
Step–Down and Step–Up and Voltage–Inverting applications with a minimum number of external components. Refer to Application Notes AN920A/D and AN954/D for additional design information. Operation from 3.0 V to 40 V Input 8 Low Standby Current 1 Current Limiting Output Switch Current to 1.5 A P, P1 SUFFIX
in „Hilfe bei Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·