-
PDF
PCF8583.pdf
TYPE PACKAGE NUMBER NAME DESCRIPTION VERSION PCF8583P DIP8 plastic dual in-line package; 8 leads (300 mil) SOT97-1 PCF8583T SO8 plastic small outline package; 8 leads; body width 7.5 mm SOT176-1 1997 Jul 15 3 Philips Semiconductors Product specification Clock/calendar with 240 × 8-bit RAM PCF8583 5 BLOCK
in „RTC PCF8583 einen Interrupt ausloesen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCF8583_5_rtc_real_time_clock.pdf
TYPE PACKAGE NUMBER NAME DESCRIPTION VERSION PCF8583P DIP8 plastic dual in-line package; 8 leads (300 mil) SOT97-1 PCF8583T SO8 plastic small outline package; 8 leads; body width 7.5 mm SOT176-1 1997 Jul 15 3 Philips Semiconductors Product specification Clock/calendar with 240 × 8-bit RAM PCF8583 5 BLOCK
-
PDF
PCF8583P.pdf
TYPE PACKAGE NUMBER NAME DESCRIPTION VERSION PCF8583P DIP8 plastic dual in-line package; 8 leads (300 mil) SOT97-1 PCF8583T SO8 plastic small outline package; 8 leads; body width 7.5 mm SOT176-1 1997 Jul 15 3 Philips Semiconductors Product specification Clock/calendar with 240 × 8-bit RAM PCF8583 5 BLOCK
-
PDF
PCF8583_5.pdf
TYPE PACKAGE NUMBER NAME DESCRIPTION VERSION PCF8583P DIP8 plastic dual in-line package; 8 leads (300 mil) SOT97-1 PCF8583T SO8 plastic small outline package; 8 leads; body width 7.5 mm SOT176-1 1997 Jul 15 3 Philips Semiconductors Product specification Clock/calendar with 240 × 8-bit RAM PCF8583 5 BLOCK
in „PCF8583: Welche Genauigkeit kann ìch erwarten?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CP2110.pdf
Equation 2. Clock Divider = - 24 MHz - Prescale = 4 if Requested Baud Rate 300 bps 2 Prescale Requested Baud Rate Prescale = 1 if Requested Baud Rate 300 bps Equation 1. Clock Divider Calculation 24 MHz Prescale = 4 if Requested Baud Rate 300 bps Actual Baud Rate = - - - 2 Prescale Clock Divider Prescale = 1 if Requested Baud Rate 300 bps Equation 2. Baud Rate Calculation Most baud rates can be generated with an error of less than 1.0%. A general rule of thumb for the majority of UART applications is to limit the baud rate error
in „[V] 10St. Silabs CP2110 Single-Chip HID USB to UART (10€)“ · Markt ·
-
PDF
CP2110.pdf
Equation 2. Clock Divider = - 24 MHz - Prescale = 4 if Requested Baud Rate 300 bps 2 Prescale Requested Baud Rate Prescale = 1 if Requested Baud Rate 300 bps Equation 1. Clock Divider Calculation 24 MHz Prescale = 4 if Requested Baud Rate 300 bps Actual Baud Rate = - - - 2 Prescale Clock Divider Prescale = 1 if Requested Baud Rate 300 bps Equation 2. Baud Rate Calculation Most baud rates can be generated with an error of less than 1.0%. A general rule of thumb for the majority of UART applications is to limit the baud rate error
in „[V] 10St. Silabs CP2110 Single-Chip HID USB to UART (10€)“ · Markt ·
-
PDF
pl2303.pdf
000012C0h 4800 00000E10h 3600 00000960h 2400 00000708h 1800 000004B0h 1200 00000258h 600 0000012Ch 300 00000096h 150 0000004Bh 75 External EEPROM and Device Configuration PL-2303 allows storing the configuration data in an external EEPROM. After reset, the first two bytes of EEPROM are checked. If the
in „USB - seriell Adapter für 1,- EUR!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EW50114NCW.pdf
NOTE ( 3 ) θ= ° Ta = 70°C 13.5 V CLOCK OSCILLATION FREQUENCY fOSC 6.0 MHZ VOLTAGE VCCFL 300 Vrms POWER FREQUENCY fCCFL 35K HZ SUPPLY FOR CURRENT IL 5 mA CCFL LIFE LIFE TIME 40K 50K Hrs NOTE ( 1 ) :APPLIED TO TERMINALS WR , RD , CS , C/D , RST , FS , DB0~DB7. NOTE ( 2 ) THE
in „Inverter für Displaybeleuchtung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM7001.pdf
V OUT OUT OUT DD Maximum output current IOUT max BO1 to BO3 0 to 3.0 mA Ta = 85°C: LM7001J (DIP16) 300 mW Allowable power dissipation Pd max Ta = 85°C: LM7001JM (MFP20) 180 mW Operating temperature Topr –40 to +85 °C Storage temperature Tstg –55 to +125 °C Allowable Operating Ranges at Ta = –40 to +85
in „PLL per Software“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
hlm6323.pdf
HLM6323-013211 REV.A PAGE 9 9. CFL UNIT 9-1 CCFL Lamp Item Symbol Value Unit Discharging Tube current (IL) 5 5mA Discharging Tube voltage (VL) 275 Vrms Starting Tube Voltage (VS) 1000 Vrms Brightness (Tube) (B) 23.300 Nit Tube diameter ∅ 3 mm Tube length l 86 mm Half Brightness Time min 10.000 h Half Brightness
in „Controller zu Hosiden HLM6323 gLCD gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM334.pdf
out by addingaFETasindicatedinthetypicalapplications. This particularityofthe LM134,LM234,LM334 is il- The valueof this capacitancecanbe reduced byat lustratedin theabovediagram.Lineabcrepresents thesensorcurrentbeforeadjustmentandline a’b’c’ least 3pF andregulation can be improved byan or- derofmagnitudewithoutanymodificationofthed.c
in „Konstantstromquelle nicht konstant“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SN74ALS843.pdf
Include Plastic 7D 8 17 7Q Small-Outline (DW) Packages and Standard 8D 9 16 8Q 9D 10 15 9Q Plastic (NT) 300-mil DIPs CLR 11 14 PRE GND 12 13 LE description This 9-bit bus-interface D-type latch features 3-state outputs designed specifically for driving highly capacitive or relatively low-impedance loads.
in „74HC 8Bit "Gate"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
H8_532-Programmierung.pdf
±0.5V, Vpp = Vcc NOGO Error All address read? GO END Figure 17-4 High-Speed Programming Flowchart 300 Table 17-5 DC Characteristics (When V CC = 6.0V ±0.25V, VPP = 12.5V ±0.3V, VSS= 0V, Ta = 25˚C ±5˚C) Sym- Measurement Item bol Min Typ Max Unit Conditions Input High voltage O to O , A4to A , OE, CE
in „Programmierung Hitachi“ · Markt ·
-
PDF
BE-412-B-MONITOR-HEIDENHAIN-MANUAL.pdf
Kondendianst 4, Logikeinheit LE 351/355 Logikeinheit ohne Logikplatine mit PLC-Leistungsplatine (PL 300) PLC-Leistungsplatine (PL 300) Typen- und Programm- schilder bei Uteren Logikeinheiten Typenschild STROMVERSORGUNG Typen- und Programm- Typenschild Typenschild schilder bei neueren REGELKREIS-Platine
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Vergleichsliste.pdf
ECG295 2SC1957 2SC2021 2SC495 2SC2028 ECG296 T B A ECG297 2SC1509 ECG298 2SA777 ECG299 2SC1018 ECG300 2SC1014 D40D11 ECG302 2SC1728 ECG306 2SC1760 ECG307 2SA624 D41011 ECG308P S3901M S3901MF S3901 ECG309K LM309K UA7805KC SG7805K LM340K-5 ECG310P S3900S S3900E S3900 ECG311 2N3866 BF154 ECG312 2N5484
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Product_preview_LPSF096064A01-T3__Rev_1_0_.pdf
Operating Voltage 14 17 17.5 V V DD Logic Supply Voltage 2.4 2.7 3.5 V V High Logic Output Level Iout =300uA, 3.3MHz 0.9V - V V OH DD DD V OL Low Logic Output Level Iout =300uA, 3.3MHz 0 - 0.1V DD V V IH High Logic Input Level Iout =300uA, 3.3MHz 0.8V DD - VDD V V IL Low Logic Input Level Iout =300uA, 3.3MHz
in „O-LED Display von SMI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
eeprom_24lc65_i2c.pdf
.........-65˚C to +125˚C SCL Serial Clock Soldering temperature of leads (10 seconds).............+300˚VCC +2.5V to 6.0V Power Supply ESD protection on all pins.................................................. 4 kV *Notice: Stresses above those listed under “Maximum Ratings” NC No Internal Connection
in „64K EEPROM 24LC65 Adressierung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
A200_MCP1407-EP_MIC.pdf
Microchip Technology Inc. DS22019A-page 1 MCP1406/07 Functional Block Diagram (1) VDD Inverting 130 µA 300 mV Output Output Input Non-inverting Effective Input C = 25 pF 4.7V MCP1406 Inverting MCP1407 Non-inverting GND Note 1: Unused inputs should be grounded. DS22019A-page 2 © 2006 Microchip Technology
in „Treiber für IRF1404 ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TEA5880_2.pdf
point at LNA input S −300 LOW side 300 kHz f = −300 kHz; RF= 76 MHz to 108 MHz - 40 - dB selectivity S +300 HIGH side 300 kHz f = 300 kHz; RF= 76 MHz to 108 MHz - 50 - dB selectivity S −200 LOW side 200 kHz f = −200 kHz; RF=
in „Einfaches Radio basteln“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lm2731.pdf
25°C 260 400 ISW = 100 mA Vin = 5 V −40°C ≤ TJ≤ 500 125°C RDSON) Switch ON-Resistance mΩ TJ= 25°C 300 450 ISW = 100 mA Vin = 3.3 V −40°C ≤ TJ≤ 550 125°C Device ON −40°C ≤ TJ≤ 1.5 125°C SHDN TH Shutdown Threshold V Device OFF −40°C ≤ TJ≤ 0.5 125°C V SHDN= 0 0 I Shutdown Pin Bias Current TJ= 25°C 0 µA
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (8€)“ · Markt ·
-
PDF
lm2731.pdf
25°C 260 400 ISW = 100 mA Vin = 5 V −40°C ≤ TJ≤ 500 125°C RDSON) Switch ON-Resistance mΩ TJ= 25°C 300 450 ISW = 100 mA Vin = 3.3 V −40°C ≤ TJ≤ 550 125°C Device ON −40°C ≤ TJ≤ 1.5 125°C SHDN TH Shutdown Threshold V Device OFF −40°C ≤ TJ≤ 0.5 125°C V SHDN= 0 0 I Shutdown Pin Bias Current TJ= 25°C 0 µA
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (15€)“ · Markt ·
-
PDF
S5K433CA.PDF
, VDDIO, S5K433CA 3.0 3.3 3.6 V VDDA S5K433LA 2.55 2.8 3.05 (1) Input voltage V IH - 0.8V DD - - V IL - 0 - 0.2VDD Input leakage IL V INV DD to VSS -10 - 10 μA current(2) Input leakage current IILD V INV DD 10 30 60 with pull-down(3) High Level Output VOH IOH = -1μA V DD-0.05 - - V voltage (4) IOH =
-
PDF
AD7741_7742.pdf
Bipolar) LOGIC INPUT ALL EXCEPT CLKIN Input High Voltage, IH 2.4 2.4 V Input Low Voltage, V 0.8 0.8 V IL Input Current 100 100 nA Pin Capacitance 6 10 6 10 pF CLKIN ONLY Input High Voltage, IH 3.5 3.5 V Input Low Voltage, IL 0.8 0.8 V Input Current 2 2 A Pin Capacitance 6 10 6 10 pF CLOCK FREQUENCY Input
in „max Inputfrequenz des VFC AD7741“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCA9532-1127723.pdf
VI= V SS - 4.4 5 pF I/Os V IL LOW-level input voltage 0.5 - +0.8 V V IH HIGH-level input voltage 2.0 - 5.5 V I LOW-level output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL
in „[V] 3St. 16 Bit I2C/SM Bus LED Treiber PCA9532BS (HVQFN24)“ · Markt ·
-
PDF
Panasonic_AG-7350-7150_Service_Manual.pdf
SIDE POWER CON C.B.A. c W1 L W2 P1102 W15 . _ , C3f>"'f1 - + V~Bih178 01S •..ct(-tt ~ C36 W1 0 -n- il : G B 8tCW3 0 2 0 W 4 + 81 § il P1 i I 0 LitO 1 W5 0 W6 0 l A W? SERVO & ~ ) POWER SUPPLY SCHEMATIC DIAGRAM SW POWER SUPPLY C.B.A. IC3 I I (MUL Transistor 01001 A-5 ® G 01002 I B·4 ® Integrated Circuit
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AS5311_DS000200_2-00.pdf
Parameter Conditions Min Typ Max Units VIH High level input voltage Normal operation 0.41 * VDD5V V V IL Low level input voltage 0.13 * VDD5V V V Ion VIoff Schmitt Trigger hysteresis 1 V CLK only -1 1 ILEAK Input leakage current µA iL Pull-up low level input current CSn only, VDD5V: 5.0V -30 -100 6.2.2
in „Allgoryhmus um Störungen an Inkrementalgeber zu eleminieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
196hvc_2.pdf
CURRENT VOLTAGE 4 2 mA to 8 mA 14 mA 25 mA n x 0.8 V 15 5 mA to 20 mA 50 mA 70 mA n x 0.8 V 45 30 mA to 300 mA 0.5 A 0.5 A n x 0.8 V 90 0.3 A to 1 A 1.5 A 3 A n x 0.8 V Note (1)n... number of cells, permanent operation below lowest discharge voltage is not permitted Revision: 20-Mar-18 8 Document Number:
in „Kapazitätsangaben in Datenblättern bei gestapelten Cs (Supercap-Zellen)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Micrel.pdf
package. For applications with input voltage 6V or below, see MIC37xxx LDOs. Package Types MIC29150/300/500 MIC29151/301/501/751 3-Lead TO-220 (T) 5-Lead TO-220 Fixed Voltage (T) (Top View) (Top View) 5 FLG 3 OUT 4 OUT A 2 GND B T T 3 GND 1 IN 2 IN 1 EN 2016-2019 Microchip Technology Inc. DS20005685B-page
-
PDF
doc4688.pdf
so that during modulation and gaps the ripple on the sup- ply voltage is in the range of 100 mV to 300 mV. During gaps and damping the capacitor is used to supply the device, which means the size of the capacitor depends on the length of the gaps and damping cycles. Table 4-1. Example for a 350 µA Supply
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AV02-0699EN.pdf
2.54 SYM. 1.27 (0.100) (0.050)YM. 2.54 ± 0.13TYP. (0.100 ± 0.005) 7.62 0.51 ± 0.13 (NON ACCUM.) (0.300) TYP. (0.020 ± 0.005) NOTES: 1. DIMENSIONS ARE IN mm (INCHES). 2. UNLESS OTHERWISE SPECIFIED, TOLERANCE ON DIMENSIONS IS ± 0.38 mm (0.015 INCH). 3. LEAD MATERIAL: SOLDER PLATED COPPER ALLOY. HCMS-291x
in „Micro LED Dot-Matrix gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MX25L6405D__3V__64Mb__v1.5.pdf
erase acceleration • HOLD# pin -pause the chip without diselecting the chip • PACKAGE - 16-pin SOP (300mil) - 8-land WSON (8x6mm or 6x5mm) - 8-pin SOP (200mil, 150mil) - 8-pin PDIP (300mil) - 8-land USON (4x4mm) - All Pb-free devices are RoHS Compliant ALTERNATIVE • Security Serial Flash (MX25L1615D/MX25L3215D
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
-
PDF
LTC1799f_oscillator_info.pdf
. –65°C to 150°C JMAX= 125°CJA= 256°C/W LTNE Lead Temperature (Soldering, 10 sec)..................300°C Consult LTC Marketingfor partsspecifiedwithwider operatingtemperature ranges. ELECTRICAL CHARACTERISTICS The denotes the specifications which apply over the full operating temperature range, otherwise
in „Ein Rechteckgenerator mit LTC1799 - Nachbrenner?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HCPL-0872.pdf
is available Temperature Range Interface IC, HCPL-0872 is to allow measurements with a available a 300-mil wide SO-16 second isolated modulator Applications surface-mount package. without additional hardware. • Motor Phase and Rail Current Sensing • Data Acquisition Systems VDD1 VDD2 1 CCLK VDD 16 •
in „HCPL-0872 digital Interface für ISO-Wandler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LUW_T6SG_-_TOPLED-473049.pdf
Junction temperature Durchlassstrom IF 50 mA Forward current (min.) I 5 mA F (TA=25°C) Stoßstrom I 300 mA FM Surge current t ≤10 s, D = 0.005,TA=25°C 3)Seite 17 Sperrspannung V R not designed for V Reverse voltage3) page 17 reverse operation (T =25°C) A Leistungsaufnahme P 185 mW tot Power consumption
in „Vorwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LB058WQ1-SD01.pdf
Supply Input Current I 195 225 600 mA 1 CC Power Consumption Pc - 0.75 1.98 Watt 1 LED : LED current IL 75.0 80.0 mA 2 LED voltage VL 17.3 25.0 V LED power PL 3.89 6.00 W LED chain 3 3 Life Time continuous 20,000 - - Hrs 4 Life Time intermittent 54,000 - - Cycles 5 Note) 1. The specified current and power
in „LCD Display Mercedes E-Klasse Pixelfehler“ · Fahrzeugelektronik ·
-
PDF
Phoenix_ELR.pdf
Trennung (EN 50178) bei Netznennspannung ≤ 500 V AC Sichere Trennung (IEC 60947-1) bei Netznennspannung ≤ 300 V AC Basisisolierung (IEC 60947-1) bei Netznennspannung 300...500 V AC Überspannungskategorie III Verschmutzungsgrad 2 105517_de_01 PHOENIX CONTACT 4 ELR H5-IES-PT- 24DC/500AC-... Konformität / Zulassungen
in „Günstiges Wendeschütz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
24LC256_32k_I2C-EEPROM.pdf
24FC256 500 — 2.5V ≤ CC ≤ 5.5V 24FC256 4 TR SDA and SCL rise time — 1000 ns 1.8V ≤ CC < 2.5V (Note 1) — 300 2.5V ≤ VC ≤ 5.5V — 300 1.8V ≤ CC ≤ 5.5V 24FC256 5 TF SDA and SCL fall time — 300 ns All except, 24FC256 (Note 1) — 100 1.8V ≤ VC ≤ 5.5V 24FC256 6 THD:STA Start condition hold time 4000 — ns 1.8V ≤ CC
in „immer noch EEprom“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tps2020_1_.pdf
°C IO(OUT) (1 A/div) IO(OUT)(2 A/div) V = 5 V I I I(IN) O(OUT) O(OUT) RL= 1.2 Ω TA= 25°C 0 100 200 300 400 500 600 700 800 900 1000 0 100 200 300 400 500 600 700 800 900 1000 t − Time − µs t − Time − µs Figure 18. 1.2-Ω Load Connected to an Enabled Figure 19. 1.2-Ω Load Connected to an Enabled TPS2022
in „DC/DC als Sicherung für AT90USB <-> PC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
24LC32A.pdf
low time 1300 — ns 2.5V ≤ VCC≤ 5.5V 4700 — 1.8V ≤ VCC< 2.5V (24AA32A) 4 T R SDA and SCL rise time — 300 ns 2.5V ≤ VCC≤ 5.5V (Note 1) — 1000 1.8V ≤ VCC< 2.5V (24AA32A) 5 T F SDA and SCL fall time — 300 ns (Note 1) 6 T HDSTA Start condition hold time 600 — ns 2.5V ≤ VCC≤ 5.5V 4000 — 1.8V ≤ VCC< 2.5V (24AA32A
in „I2C Eeprom: Buskollisionen nach einem schnellen Reset“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
bq24618.pdf
OCTOBER 2010–REVISED APRIL 2015 i / − 2 PH i / i − / 2 HIDRV − 5 d V 5 LODRV PH i d / V A 5 LODRV 2 IL i / 1IL t ! Time−=−100−ns/div t ! Time−=−100−ns/div Figure 5. Continuous Conduction Mode Switching Figure 6. Cycle-by-Cycle Synchronous to Nonsynchronous Waveform i / v A d 2 V 0 IIN 1 i PH / A i 2 ISYS / 5 LODRV i IL i / / A A IBAT 0 2 t ! Time−=−400−ns/div t ! Time−=−200 μs/div Figure 7. 100% Duty and Refresh Pulse Figure 8. Transient System Load (DPM) v i d / V − 0 1 1 PH PH i / v − d 5 LODRV V 5 d i A / 2 A IL
in „Li-Ion - Charger & Balancing“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
21709c_EEPROM.pdf
time 1300 — — ns 2.5V ≤ CC ≤ 5.5V 4700 — — 1.8V ≤ VC < 2.5V (24AA02) 4 TR SDA and SCL rise time — — 300 ns 2.5V ≤ CC ≤ 5.5V (Note 1) (Note 1) — — 1000 1.8V ≤ VC < 2.5V (24AA02) (Note 1) 5 TF SDA and SCL fall time — — 300 ns (Note 1) — 6 THD:STA Start condition hold time600 — — ns 2.5V ≤ CC ≤ 5.5V 4000
in „EEPROM mit Infineon XC2200 ueber IIC benutzten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L6206.pdf
drain diodes VSD Forward ON voltage ISD= 2.8 A, EN = low 1.15 1.3 V rr Reverse recovery time f = 2.8 A 300 ns fr Forward recovery time 200 ns Logic input V IL Low level logic input voltage -0.3 0.8 V VIH High level logic input voltage 2 7 V IIL Low level logic input current GND logic input voltage -10 µA
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX44009.pdf
VOL SINK = 6mA 0.06 0.4 V INT Leakage Current TA = +25NC 0.01 20 nA SCL, SDA, A0 Input Current IIH IL TA= +25NC 0.01 20 nA 0.3 x I C Input Low Voltage VIL_I2C SDA, SCL V V CC 0.7 x I C Input High Voltage VIH_I2C SDA, SCL V V CC Address Input Low Voltage VIL_A0 A0 0.3 V Address Input High Voltage VIH_A0
in „Helligkeitssensor Threshold festlegen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
21709c.pdf
time 1300 — — ns 2.5V ≤ CC ≤ 5.5V 4700 — — 1.8V ≤ VC < 2.5V (24AA02) 4 TR SDA and SCL rise time — — 300 ns 2.5V ≤ CC ≤ 5.5V (Note 1) (Note 1) — — 1000 1.8V ≤ VC < 2.5V (24AA02) (Note 1) 5 TF SDA and SCL fall time — — 300 ns (Note 1) — 6 THD:STA Start condition hold time600 — — ns 2.5V ≤ CC ≤ 5.5V 4000
in „24LC02B mit (scheinbar) seltsamer Adressierung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lnk302_304-306-179954-2.pdf
400 P (component fails safely open-circuit without emitting smoke, fire or incandescent material). 300 The power processing stage is formed by the LinkSwitch-TN, 200 freewheeling diode D1, output choke L1, and the output capacitor 100 C2. The LNK304 was selected such that the power supply operates in
in „AC/DC Wandler auf Zeitschaltuhr durchgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TSC2003.pdf
VILMAXlevels. PARAMETER SYMBOL CONDITIONS MIN MAX UNITS Fall Time of SCL Signal fCL Standard Mode 300 ns Fast Mode 20 + 0.1Cb 300 ns High-Speed Mode, C b 100pF max 10 40 ns High-Speed Mode, C b 400pF max 20 80 ns Rise Time of SDA Signal trDA Standard Mode 1000 ns Fast Mode 20 + 0.1Cb 300 ns High-Speed
in „Hilfe mit Touchscreen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX6956_i2c_28_LED.pdf
current Input High-Voltage SDA, SCL, 0.7✕ AD0, AD1 VIH V+ V Input Low-Voltage SDA, SCL, 0.3 ✕ AD0, AD1 V IL V+ V Input Leakage Current SDA, SCL IH IL -50 50 nA Input Capacitance (Note 2) 10 pF Output Low-Voltage SDA VOL SINK = 6mA 0.4 V TIMING CHARACTERISTICS (Figure 2) (V+ = 2.5V to 5.5V,AT = MIN to MAX ,
in „Suche IC für LED Bar-Anzeige“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
vl53l0x_VL53L0X.pdf
mm) vs. ActualTarget Distance(mm) Reflectance 1200 grey17 white88 1100 1000 900 800 700 600 500 400 300 200 100 0 0 100 200 300 400 500 600 700 800 900 1000 1100 1200 Actual Target Distance (mm) DocID029104 Rev 3 25/40 37 Performance VL53L0X Figure 21. Typical ranging - long range mode API_RangeValue(
in „Distanzmessung mit dem Pi auf 1mm genau“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ICL7660.pdf
(V+ -5.5V) to (V+ +0.3V) for V+ >Maximum Lead Temperature (Soldering, 10s). . . . . . . . . . . . .300°C Current into LV (Note 2). . . . . . . . . . . . . . . . . . . 20µA for V+ (SOIC - Lead Tips Only) Output Short Duration (SUPPLY ≤ 5.5V) . . . . . . . . . . . .Continuous *Pb-free PDIPs can be used
in „+5V zu -5V wie?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
7660CPA.pdf
(V+ -5.5V) to (V+ +0.3V) for V+ >Maximum Lead Temperature (Soldering, 10s). . . . . . . . . . . . .300°C Current into LV (Note 2). . . . . . . . . . . . . . . . . . . 20µA for V+ (SOIC - Lead Tips Only) Output Short Duration (SUPPLY ≤ 5.5V) . . . . . . . . . . . .Continuous *Pb-free PDIPs can be used
in „OPV mit +4,5/-4,5V von einer 9V Batterie betreiben“ · Analoge Elektronik und Schaltungstechnik ·