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PDF
Kemet_Tantalum_Chip_Capacitors__F3102TA_.pdf
KEMET DCLeakage DF Ω @+25ºC tance Size PartNumber µA@25ºC %@+25ºC 100kHz tance µA@25ºC %@+25ºC µF Max 120HzMax µF Size PartNumber Max 120HzMax 100kHz Max Max 10VoltRatingat+85ºC(7VoltRatingat+125ºC) 20VoltRatingat+85ºC(13VoltRatingat+125ºC) 33.0 D T491D336(1)010AS 3.3 6. 0.8 33.0 V T491V336(1)010AS
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PDF
LTC224210fc.pdf
temperature range, otherwise specifications are at T =A25°C. (Note 4) PARAMETER CONDITIONS MIN TYP MAX UNITS Offset Drift ±10 μV/C Full-Scale Drift Internal Reference ±60 ppm/C External Reference ±45 ppm/C Transition Noise SENSE = 1V 0.18 LSBRMS ANALOG INPUT The ● denotes the specifications which apply
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MN-RBXEB-01.pdf
Selection Watchdog JP6 JP6 JP6 Timeout 1-2 2-3 3-4 150 ms Closed Open Open 600 ms Open Closed Open 1200 ms* Open Open Closed * Manufacturer's Settings. 6 Chapter 1: Pre-Configuration Table 1-7 Watchdog Address Selection Watchdog JP4 JP4 Address 1-2 2-3 110h* Closed Open 310h Open Closed * Manufacturer's
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PDF
bq2060a.pdf
learning cycle is limited, the bq2060A sets MaxError() to 8% unless MaxError() was already below 8%. In this case MaxError() does not change. The bq2060A increments MaxError() by 1% after four increments of CycleCount() without a learning cycle.
in „Verstehe dieses Datenblatt nicht (BQ2060A)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Heiz702.pdf
s. 8.10) mit der Ausnahme von MI_per und MI_max. Die aktuellen VTR1-Daten werden im Menü 1 angezeigt. Die aktuellen VTR2-Daten werden im Menü 15 angezeigt. - 12 - 3. Kesseltemperaturregelung (KTR) --------------------------------- Die gewollte Kesseltemperatur
in „Heizungssteuerung elektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl431book.pdf
case, the maximum current authorized by the 476- resistor would be: Vout −V −f TL431,min 5−1−2.5 ILED,max = = = 3.15mA (23) R 476 LED This current reflected to the optocoupler collector via its CTR turns into the following value: IC,max = ILED,max CTR min = 3.15×0.3= 945 µA (24) Given the 20-k pull-up resistor
in „Sperrwandler Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
eeprom_24lc65_i2c.pdf
+6.0V Commercial (C): Tamb = 0°C to +70°C Industrial (I): Tamb = -40 °C to +85°C Parameter Sym Min Max Units Conditions A0, A1, A2, SCL and SDA pins: High level input voltage VIH .7 Vcc — V Low level input voltage VIL — .3 VCC V Hysteresis of Schmitt Trigger inpuVHYS .05 VCC — V (Note 1) Low level output
in „64K EEPROM 24LC65 Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-libc-user-manual.pdf
shows the preprocessor symbol declared by the -mmcu option. Architecture MCU name Macro avr1 at90s1200 AVR AT90S1200 avr1 attiny11 AVR ATtiny11 avr1 attiny12 AVR ATtiny12 avr1 attiny15 AVR ATtiny15 avr1 attiny28 AVR ATtiny28 avr2 at90s2313 AVR AT90S2313 avr2 at90s2323 AVR AT90S2323 avr2 at90s2333 AVR
in „C Tutorial gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
672.075 252 SEG85 -1148.400 672.075 73 CS# 1024.125 -672.075 163 COM3 3703.800 672.075 253 SEG86 -1200.600 672.075 74 RES# 1100.325 -672.075 164 COM2 3652.000 672.075 254 SEG87 -1252.800 672.075 75 D/C# 1176.525 -672.075 165 COM1 3600.200 672.075 255 SEG88 -1305.000 672.075 76 VSS 1252.725 -672.075 166
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
672.075 252 SEG85 -1148.400 672.075 73 CS# 1024.125 -672.075 163 COM3 3703.800 672.075 253 SEG86 -1200.600 672.075 74 RES# 1100.325 -672.075 164 COM2 3652.000 672.075 254 SEG87 -1252.800 672.075 75 D/C# 1176.525 -672.075 165 COM1 3600.200 672.075 255 SEG88 -1305.000 672.075 76 VSS 1252.725 -672.075 166
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8020_8021_Users_Manual.pdf
Symmetrical Pulse, Positive Pulse, Negative Pulse and Complement Pulse Width Range: 25.0 nS to 9.99 S Max Duty Cycle: 90 % (limited by 25 nS dead time) Ramp Modes: Positive Going Ramp, Negative Going Ramp Ramp Width Range: 5.00 uS to 9.99 S Max Frequency: 150 KHz Max Duty Cycle: 90 % (limited by 1 uS dead
in „Handbuch für Funktionsgenerator Kontron 8021 gesucht“ · Offtopic ·
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PDF
Tiny12.pdf
VIH1 VIL1 External Clock Drive ATtiny11 V = 2.7V to 4.0V V = 4.0V to 5.5V CC CC Symbol Parameter Min Max Min Max Units 1/CLCL Oscillator Frequency 0 2 0 6 MHz CLCL Clock Period 500 167 ns tCHCX High Time 200 67 ns CLCX Low Time 200 67 ns CLCH Rise Time 1.6 0.5 µs t Fall Time 1.6 0.5 µs CHCL External Clock Drive ATtiny12 VCC = 1.8V to V CC= 2.7V to VCC = 4.0V to 2.7V 4.0V 5.5V Symbol Parameter Min Max Min Max Min Max Units Oscillator 1/t Frequency 0 1.2 0 4 0 8 MHz CLCL tCLCL Clock Period 833 250 125 ns tCHCX High Time 333 100 50 ns tCLCX Low Time 333 100 50 ns tCLCH Rise Time 1.6 1.6 0.5 µs tCHCL
in „ATTiny12 uns SPI?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATTINY11_ATTINY12_ATM.pdf
VIH1 VIL1 External Clock Drive ATtiny11 V = 2.7V to 4.0V V = 4.0V to 5.5V CC CC Symbol Parameter Min Max Min Max Units 1/CLCL Oscillator Frequency 0 2 0 6 MHz CLCL Clock Period 500 167 ns tCHCX High Time 200 67 ns CLCX Low Time 200 67 ns CLCH Rise Time 1.6 0.5 µs t Fall Time 1.6 0.5 µs CHCL External Clock Drive ATtiny12 VCC = 1.8V to V CC= 2.7V to VCC = 4.0V to 2.7V 4.0V 5.5V Symbol Parameter Min Max Min Max Min Max Units Oscillator 1/t Frequency 0 1.2 0 4 0 8 MHz CLCL tCLCL Clock Period 833 250 125 ns tCHCX High Time 333 100 50 ns tCLCX Low Time 333 100 50 ns tCLCH Rise Time 1.6 1.6 0.5 µs tCHCL
in „Attiny12 Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
MOV PSW,A MOV PCON,A MOV IE,A CLR RAMAVAIL MOV SP,#stack ; stack above register sets MOV A,#h'6 ; 1200 Baud LCALL baud1 ; set the baudrate MOV R0,#H'10 CLR A CLRLP: MOV @R0,A ; FIRST TIME LETS CLR ALL LOW MEMORY INC R0 CJNE R0,#0,CLRLP ACALL install ; modifiable code resides in upper RAM mon1: LCALL
in „80C535 Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
MOV PSW,A MOV PCON,A MOV IE,A CLR RAMAVAIL MOV SP,#stack ; stack above register sets MOV A,#h'6 ; 1200 Baud LCALL baud1 ; set the baudrate MOV R0,#H'10 CLR A CLRLP: MOV @R0,A ; FIRST TIME LETS CLR ALL LOW MEMORY INC R0 CJNE R0,#0,CLRLP ACALL install ; modifiable code resides in upper RAM mon1: LCALL
in „ARM: kompliziert?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM69registers.h
RF_DATAMODUL_MODULATIONSHAPING_11 0x03 // RegBitRate (bits/sec) example bit rates #define RF_BITRATEMSB_1200 0x68 #define RF_BITRATELSB_1200 0x2B #define RF_BITRATEMSB_2400 0x34 #define RF_BITRATELSB_2400 0x15 #define RF_BITRATEMSB_4800 0x1A // Default #define RF_BITRATELSB_4800 0x0B // Default #define RF_BITRATEMSB
in „RFM69HW-Arduino Nano "Funkklingel"“ · HF, Funk und Felder ·
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Datei
rfm69registers.h
RF_DATAMODUL_MODULATIONSHAPING_11 0x03 // RegBitRate (bits/sec) example bit rates #define RF_BITRATEMSB_1200 0x68 #define RF_BITRATELSB_1200 0x2B #define RF_BITRATEMSB_2400 0x34 #define RF_BITRATELSB_2400 0x15 #define RF_BITRATEMSB_4800 0x1A // Default #define RF_BITRATELSB_4800 0x0B // Default #define RF_BITRATEMSB
in „PIC16f15244 RFM69 sendet nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
MOV PSW,A MOV PCON,A MOV IE,A CLR RAMAVAIL MOV SP,#stack ; stack above register sets MOV A,#h'6 ; 1200 Baud LCALL baud1 ; set the baudrate MOV R0,#H'10 CLR A CLRLP: MOV @R0,A ; FIRST TIME LETS CLR ALL LOW MEMORY INC R0 CJNE R0,#0,CLRLP ACALL install ; modifiable code resides in upper RAM mon1: LCALL
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm69register.h
RF_DATAMODUL_MODULATIONSHAPING_11 0x03 // RegBitRate (bits/sec) example bit rates #define RF_BITRATEMSB_1200 0x68 #define RF_BITRATELSB_1200 0x2B #define RF_BITRATEMSB_2400 0x34 #define RF_BITRATELSB_2400 0x15 #define RF_BITRATEMSB_4800 0x1A // Default #define RF_BITRATELSB_4800 0x0B // Default #define RF_BITRATEMSB
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PDF
Servicemanual_Hameg_HM_305-2.pdf
: 1000 Bit/DIV TRGLEV<x>? TRGLEV<x>:(w) Delivers TRIGGER-LEVEL A/B setting (10 bits) w = 3FF hex.: max. positive (right limit) w = 000 hex.: max. negative (left limit) TRGLEV<x>=(w) (R CR LF) Sets TRIGGER-LEVEL A/B setting (10 bits) 72 Änderungen vorbehalten / Subject to change without notice VERMODE
in „Oszilloskop - Bildröhre läuft unzuverlässig“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
file.pdf
control nor variable charging currents. Capacity utilization and cycle life depend on V floatnd t pause,max Setting Vfloatlose to the maximum voltage specification (V max) of the lithium-ion cell and increasing tpause,maxaximizes capacity utilization. However, this can deteriorate cycle life, as the charging
in „Pedelec: Akku und Controller verklebt - ist das rechtens ?“ · Fahrzeugelektronik ·
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PDF
LM3410.pdf
VIN 5V, unless otherwise indicated under the Conditions column. Symbol Parameter Conditions Min Typ Max Units V Feedback Voltage 178 190 202 mV FB ΔV FB IN Feedback Voltage Line Regulation VIN 2.7V to 5.5V - 0.06 - %/V FB Feedback Input Bias Current - 0.1 1 µA F Switching Frequency LM3410-X 1200 1600
in „Feedback Spannung vom LM3410“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73811_2.pdf
= -40°C to +85°C. Typical values are at +25°DD = [REG (typical) + 1.0V] Parameters Sym. Min. Typ. Max. Units Conditions Supply Input Supply Voltage VDD 3.75 — 6 V Supply Current I — 510 1500 µA Charging SS — 53 200 µA Charge Complete, No Battery — 25 50 µA PROG Floating — 1 5 µA VDD < (BAT - 50 mV)
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP_73831.pdf
= -40°C to +85°C. Typical values are at +25°DD = [REG (typical) + 1.0V] Parameters Sym. Min. Typ. Max. Units Conditions Supply Input Supply Voltage VDD 3.75 — 6 V Supply Current I — 510 1500 µA Charging SS — 53 200 µA Charge Complete, No Battery — 25 50 µA PROG Floating — 1 5 µA VDD < (BAT - 50 mV)
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSP430F5438IPZ.pdf
f DCO = MCLK = SMCLK ) PARAMETER Execution V CC PMMCOREVx 1 MHz 4 MHz 8 MHz 16 MHz UNIT Memory TYP MAX TYP MAX TYP MAX TYP MAX AM, Flash Flash 3.0 V 2 0.37 0.45 1.27 1.47 2.50 2.84 5.00 5.56 mA I RAM 3.0 V 2 0.20 0.29 0.60 0.72 1.12 1.27 2.20 2.60 mA AM, RAM (1) All inputs are tied to 0 V or CC. Outputs
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau049f.pdf
Used Baud Rates, Baud Rate Data, and Errors Divide by A: BRCLK = 32,768 Hz B: BRCLK = 1,048,576 Hz Max. Max. Synchr. Max. Max. Baud TX RX RX TX RX Rate A: B: UxBR1 UxBR0 UxMCTL Error % Error % Error % UxBR1 UxBR0 UxMCTL Error % Error % 1200 27.31 873.81 0 1B 03 −4/3 −4/3 ±2 03 69 FF 0/0.3 ±2 2400 13.65
in „MSP430: UART Verständnis/Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MGA-62563__AV02-1237EN_.pdf
100 2400 4500 2200 2000 4000 Y 80 ) N m 1800 m 3500 U -3 std +3 std ( 1600 o 3000 E 60 s 1400 s F b 1200 b 2500 R R 40 1000 2000 800 1500 600 20 1000 400 200 500 0 0 0 47 52 57 62 67 72 77 0 10 20 30 40 50 60 70 80 90 0 10 20 30 40 50 60 70 80 90 Id (mA) d (mA) Id(mA) Figure 5. Id @ 3V. Figure 6. Rbias
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PDF
HM-10_DataSheet_V550_2017-07.pdf
scan and connected all the time will be long. This command is added since V517 version. V522 allow max value F. 4. Query/Set Advertising Type Send Receive Parameter AT+ADTY? OK+ Get:[P1] None AT+ADTY[P1] OK+ Set:[P1] P1: 0 ~ 3 0:Advertising ScanResponse, Connectable 1: Only allow last device connect
in „Hilfe bei BTLE iBeacon bzw. CENTRAL-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40171a.pdf
program goes to normal operation at max */ /* dim. The test mode brightens to full bright, dims to */ /* full dim, flashes full bright twice, and repeats. */ /******************************************************** */ void Buttoncheck()
in „Dimm-IC (230V) für Arduino gesucht“ · Haus & Smart Home ·
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PDF
LISN1600_Instruction_Manual.pdf
Circuit Specification Connector: 50Ω BNC, on front panel. Through Path Circuits: 2 wire plus Earth. Max. applied voltage: 7 V dc+rms. Power Input 3 Core 1·5mm cable: 2 metres. Attenuation: -0·5 dB nominal calibration factor. -5 dB at 9 kHz (to CISPR specification). Power Output 3 pole socket to national
in „[S] Bedienungsanleitung Netznachbildung Rolf Heine NNB-2/16Z LISN“ · Markt ·
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PDF
70622B.pdf
bits These bits indicate payload packet length. If Pkt_format = 0, payload length. If Pkt_format = 1, max length in RX, not used in TX. PLDPLEN<6:0> = 000000 (default) 2.20.2 NODE ADDRESS SET REGISTER DETAILS REGISTER 2-30: NADDSREG: NODE ADDRESS SET REGISTER (ADDRESS:0x1D) (POR:0x00) R/W-0 R/W-0 R/W-0
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PDF
70622B.pdf
bits These bits indicate payload packet length. If Pkt_format = 0, payload length. If Pkt_format = 1, max length in RX, not used in TX. PLDPLEN<6:0> = 000000 (default) 2.20.2 NODE ADDRESS SET REGISTER DETAILS REGISTER 2-30: NADDSREG: NODE ADDRESS SET REGISTER (ADDRESS:0x1D) (POR:0x00) R/W-0 R/W-0 R/W-0
in „Wie genau funktioniert die drahtlose Kommunikation?“ · HF, Funk und Felder ·
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Datei
PPS5330_V15a.c
- uint8_t enc_value = 0; int8_t enc_delta = 0; // -128 ... 127 int8_t last; volatile uint8_t timer_max = 0; volatile uint8_t counter_h = 0; volatile uint8_t ADW_flag = 0; uint8_t Mess_phase = 0; uint8_t Mess_type = 0; volatile uint8_t Timer2_run_flag = 0; uint8_t Standby_flag = 0; uint8_t buttonState
in „PPS5330 Labor-Netzteil hack“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ethernet_Hub_LXT914PE.pdf
Specifications Table 23: AUI Electrical Characteristics (over recommended range) Parameter Symbol Min 1 Max Units Test Conditions Typ Input Low current IL – – -700 A Input High current IIH – – 500 A Differential output voltage VOD ±550 – ±1200 mV Receive input impedance ZIN – 20 – k Between CIP/CIN & DIP/
in „Ethernet Transceiver und Hub auf einer Platine verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DRV8711.pdf
over operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT PROTECTION CIRCUITS OCPTH = 00 160 250 320 Overcurrent protection trip level OCPTH = 01 380 500 580 VOCP (Voltage drop across external FET) OCPTH = 10 620 750 850 mV OCPTH = 11 840 1000 1200 (1
in „DRV8711 Schrittmotortreiber Fehler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_DRV8711.pdf
over operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT PROTECTION CIRCUITS OCPTH = 00 160 250 320 Overcurrent protection trip level OCPTH = 01 380 500 580 VOCP (Voltage drop across external FET) OCPTH = 10 620 750 850 mV OCPTH = 11 840 1000 1200 (1
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TMS279X_DataSheet.pdf
(WD279X) FLOPPY DISK FORMATTER / CONTROLLER FAMILY WRITE ENABLE TIMING PARAMETER TEST ALT. MIN TYP MAX UNIT CONDITIONS SYMBOL† su(A-WE) A0, A1 to WE# setup time TSET 50 ns su(CS-WE) CS# to VVE# setup time TSET 50 ns t A0, A1 from WE# hold time T 10 ns h(A-WE) HLD h(CS-WE) CS# from WE# hold time T HLD
in „Floppy FDD Diskette an AVR Mikrocontroller ATmega Beispiele Assembler“ · Projekte & Code ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „SPI, ISP, USI, TWI, I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „Reset auf I2C-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips_Semiconductors_-_I2C_Bus_Specification_v2.1.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „GND-Fäche sinnvoll???“ · Platinen ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „i2c und Takt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I2C Speicher HotSwap?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I²C Bus Schnittstelle extern ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_BUS_SPECIFICATION_3.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „Unterschied Defintion I²C und SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
i2c_bus_specification_3.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „IIC-Bus Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I2C abstrakt“ · Mikrocontroller und Digitale Elektronik ·