-
PDF
DS1302.pdf
x 8 RAM for scratchpad data storage GND 4 5 RST Serial I/O for minimum pin count DS1302 8–PIN DIP (300 MIL) 2.5–5.5 volt full operation – Optional2.0–5.5voltfulloperationalsoavailable VCC2 1 8 VCC1 X1 2 7 SCLK Uses less than 300 nA at 2.5 volts X2 3 6 I/O GND 4 5 RST Single–byteormultiple–byte(burstmode
in „DS1302 zu langsam“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CD4528.PDF
10 9.95 − 9.95 10 − 9.95 − V in0 or VDD 15 14.95 − 14.95 15 − 14.95 − Input Voltage “0” Level V Vdc IL (VO= 4.5 or 0.5 Vdc) 5.0 − 1.5 − 2.25 1.5 − 1.5 (VO= 9.0 or 1.0 Vdc) 10 − 3.0 − 4.50 3.0 − 3.0 (VO= 13.5 or 1.5 Vdc) 15 − 4.0 − 6.75 4.0 − 4.0 “1” Level Vdc (V = 0.5 or 4.5 Vdc) V 5.0 3.5 − 3.5 2.75
in „Unterschied CD4528 zu CD4538 ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
mcp23009.pdf
MCP23S09) Packages - 10 MHz • Single hardware address pin: (MCP23009) 16-pin QFN (3x3 [mm]) 18-pin PDIP (300 mil) - Voltage input to allow up to eight devices on the bus 18-pin SOIC (300 mil) • Configurable interrupt output pins: 20-pin SSOP - Configurable as active-high, active-low or open-drain Block Diagram
in „Frage zu SPI und MCP23S09“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2243913.pdf
state (VDD > VBOR) Supply Current IDD — — 600 µA Serial Interface Active, (Note 10) HVC/A0 = V IH(or IL) (Note 11) Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 3.4 MHz — — 250 µA Serial Interface Active, HVC/A0 = V (or V ) (Note 11) IH IL Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 100 kHz
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
-
PDF
22107B-1180063.pdf
state (VDD > VBOR) Supply Current IDD — — 600 µA Serial Interface Active, (Note 10) HVC/A0 = V IH(or IL) (Note 11) Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 3.4 MHz — — 250 µA Serial Interface Active, HVC/A0 = V (or V ) (Note 11) IH IL Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 100 kHz
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
-
PDF
2243913.pdf
state (VDD > VBOR) Supply Current IDD — — 600 µA Serial Interface Active, (Note 10) HVC/A0 = V IH(or IL) (Note 11) Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 3.4 MHz — — 250 µA Serial Interface Active, HVC/A0 = V (or V ) (Note 11) IH IL Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 100 kHz
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
-
PDF
2243913.pdf
state (VDD > VBOR) Supply Current IDD — — 600 µA Serial Interface Active, (Note 10) HVC/A0 = V IH(or IL) (Note 11) Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 3.4 MHz — — 250 µA Serial Interface Active, HVC/A0 = V (or V ) (Note 11) IH IL Write all 0’s to Volatile Wiper 0 VDD = 5.5V, SCL = 100 kHz
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
-
PDF
Stollmann_Blue_RS_I_en.pdf
Variant U3 - Vcc = 3.3V,amb= 25°C Symbol Item Condition Limit Unit Min Max Low-Level Input Volt- V IL age - 0.8 V V IH High-Level Input 2.0 - V Voltage IOL= 0.1mA 0.2 Low-Level Output V OL Voltage IOL= 4mA - 0.45 V IOL= 24mA 0.55 High-Level Output IOH = 10µA /100k PU V OH - 2.3 V Voltage IOH = 100µA
in „Bluetooth RSSI auslesen > (grobe) Entfernungsmessung per B“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AOZ2368QI-11.pdf
VIN= 12V 200 ns TON MIN Minimum On Time 80 ns TON MAX Maximum On Time 2.6 µs T _ Minimum Off Time 300 ns OFF MIN Rev. 2.0 June 2019 www.aosmd.com Page 5 of 18 AOZ2368QI-11 Electrical Characteristics (Continued) TA= 25°C, VIN= 12V, CC = 5V, EN = 5V, unless otherwise specified. Specifications in BOLD
in „Stepdown Schwingt in kleinem Frequenzbereich“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ADXL345.pdf
Input/Output 1 Limit Parameter TestConditions Min Max Unit Digital Input Low Level InputVoltage (V )IL 0.3 ×V DD I/O V High Level InputVoltage (V )IH 0.7 ×V DD I/O V Low Level Input Current (I ) V =V 0.1 µA IL IN DD I/O High Level Input Current (IIH V IN0V −0.1 µA Digital Output Low Level OutputVoltage
in „ADXL345 und ESP8266: Echtzeitdatenergassung mit konstanter Abtastrate und Interrupts“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD-ADXL345.pdf
Input/Output 1 Limit Parameter TestConditions Min Max Unit Digital Input Low Level InputVoltage (V )IL 0.3 ×V DD I/O V High Level InputVoltage (V )IH 0.7 ×V DD I/O V Low Level Input Current (I ) V =V 0.1 μA IL IN DD I/O High Level Input Current (IIH VIN 0V −0.1 μA Digital Output Low Level OutputVoltage
in „MOSI-Pegel viel zu niedrig, aber warum?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Fragen_und_Antworten_zur_fachlichen_Pruefung_fuer_Funkamateure_BAPT_1988.pdf
s v e r z e i c h n i s Seite V__q~=_b±ge_rk_upg_____ ___=____ __ _ __ _ Fragen und Antwcrten T e il l B e trie b lic h e K e n n tn is s e .................................. 1 -3 1 (ohne McrsetelegrsfieKenntnisse) A n h a n g l Q - S c h lü s s e l ..................................... 3 2 - 3 3 Anhang
in „Neuer Fragenkatalog für die Amateurfunkprüfung“ · HF, Funk und Felder ·
-
PDF
AD8606.pdf
3V 20 65 μV AD8608 V S 3.5V,VCM = 2.7V 20 75 μV AD8605/AD8606/AD8608 V S 2.7V,VCM = 0V to 2.7V 80 300 μV −40°C <T A +125°C 750 μV Input Bias Current IB 0.2 1 pA AD8605/AD8606 −40°C <T A +85°C 50 pA AD8605/AD8606 −40°C <T A +125°C 250 pA AD8608 −40°C <T A +85°C 100 pA AD8608 −40°C <T A +125°C 300 pA
in „Aktives Filter (Differential), Uref“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sn74hc595.pdf
30 44 37 2 V 40 150 255 187 t OE Q – Q 50 pF 4.5 V 15 30 45 37 ns en A H 6 V 13 26 38 32 2 V 42 200 300 250 t OE Q – Q 50 pF 4.5 V 23 40 60 50 ns dis A H 6 V 20 34 51 43 2 V 28 60 90 75 Q – Q 50 pF 4.5 V 8 12 18 15 A H 6 V 6 10 15 13 t ns 2 V 28 75 110 95 QH′ 50 pF 4.5 V 8 15 22 19 6 V 6 13 19 16 2 V 60 200 300 250 pd RCLK QA– Q H 150 pf 4.5 V 22 40 60 50 ns 6 V 19 34 51 43 2 V 70 200 298 250 en OE QA– Q H 150 pf 4.5 V 23 40 60 50 ns 6 V 19 34 51 43 2 V 45 210 315 265 t QA– Q H 150 pf 4.5 V 17 42 63 53 ns
in „Interne Schaltung: TPIC6B595“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
hoka.pdf
values of M and L,/Rd can be decidedif the coil’s 100 output signal is proportional to the current Il or to the time derivativeof the current 11. 3 Above the comer frequency of the low-pass wcf = Rd/L, .c o the output voltage is proportional to the current and the TF -50 is (MRd)/Lc. Below wcf the output
in „100kHz Signal analog einlesen (16bit) und verarbeiten“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
PDF
U2008B.pdf
Voltage sync. Pin 7 " I 0.15 2 mA syncV Current sync. Pin 8 " IsyncI 3 30 mA Voltage limitation " IL= 2 mA Pin 7 " V syncV 8.0 8.5 9.0 V Reference ramp, see figure 5 Charge current Pin 7 I ϕ 1 100 mA Start voltage Pin 2 –Vmax 1.85 1.95 2.05 V Temperature coefficient of start voltage Pin 2 –TC R –0.003
in „230V Dimmer µC gesteuert“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
WS2801.pdf
150 Storage Temperature Range Tstg -55 to + 150 ℃ Lead Temperature (Soldering, 10 seconds) Tsolder 300 ESD susceptibility 4000 V Note: If the voltage on the pins exceeds the maximum ratings may cause permanent damage to the device. Electrical Characteristics (VCC=5V, TA= 25℃, unless otherwise specified
in „Sammelbestellung Adafruit - Digital Addressable RGB LED w/ PWM waterproof flexi strip (LPD8806)“ · Markt ·
-
PDF
MAX.pdf
..................................Lead Temperature (soldering, 10sec).............................+300°C Note 1: Device mounted with all leads soldered to PC board. Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and
in „Digitalpotentiometer in analogen Anwendungen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
WS2801.pdf
150 Storage Temperature Range Tstg -55 to + 150 ℃ Lead Temperature (Soldering, 10 seconds) Tsolder 300 ESD susceptibility 4000 V Note: If the voltage on the pins exceeds the maximum ratings may cause permanent damage to the device. Electrical Characteristics (VCC=5V, TA= 25℃, unless otherwise specified
in „WS2801 mehrere LEDs mit KSQ anschließen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
U2008B.PDF
G 0.280 0.320 0.370 mA/mV Offset current V 1 0,V 3 –8 V Pin 3 I0 0 3 6 mA Input voltage Pin 1 –V I 300 400 mV Input offset voltage Pin 1 " V0 6 mV 6 (10) TELEFUNKEN Semiconductors Rev.A1, 28-May-96 U2008B 1 250 Option Softstart 0 33 nF 6.8 nF 200 10 nF 4.7 nF3.3 nF 2.2 nF ) –1 ( ) a 150 V C5=1mF 10mF
in „Wie funktioniert die Drehzahlregelung beim Allstrommotor“ · Analoge Elektronik und Schaltungstechnik ·
-
Thread
Mit was in die Mikrokontrollerwelt einsteigen?
Abstimmung bei Beitrag "Wahl des Troll-Themas 2013" Stimmt! http://www.youtube.com/watch?v=tAg-Il-nnGY
wieder bei den Kosten für Messgeräte wären. Denn das geht ohne Oszi nun mal nicht, womit die mindestens 300 Euro extra schon fällig wären. :-) Aber noch mal zum HauDenLukas, er hat nicht geantwortet auf die Frage was er so zu Hause alles an Zeug hat und wo die Kosten lagen. Dave kam, ohne Bauteile und
Mikrocontroller und Digitale Elektronik ·Stefan T. · ·240 Antworten
-
PDF
PCA9622DR_118.pdf
ON-state resistance Vdrv(LED) 40 V; VDD = 2.3 V - 2 5 C output capacitance - 2.5 5 pF o OE input V IL LOW-level input voltage −0.5 - +0.3V DD V V IH HIGH-level input voltage 0.7V DD - 5.5 V I input leakage current −1 - +1 A LI C i input capacitance - 15 40 pF Address inputs V IL LOW-level input voltage
in „Kontrolle Eagle Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ON_NCP2820-D.pdf
OUTP RAMP GENERATOR Data CMOS Negative Processor Output = Differential Stage L Input R Ri INP Rf OUTM 300 k Shutdown Positive Control GND Differential Input SD Vih V il Figure 1. Typical Application PIN DESCRIPTION Pin No. CSP UDFN8 Symbol Type Description A1 3 INP I Positive Differential Input. A2 7 GND
in „Signalterminierung bei class-d Verstärkern?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ts3v340.pdf
when the switch is ON V Minimum input voltage for logic high for the control (EN, IN) inputs IH V IL Maximum input voltage for logic low for the control (EN, IN) inputs V IK I/O and control (EN, IN) inputs diode clamp voltage VI Voltage applied to the D or S pins when D or S is the switch input V Voltage
in „Analog Switch/Multiplexer für Digitale Signale“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
datasheet_HIP_4081A.pdf
N S E 3.0 0°C I R B 15.0 U -40°C Y C P L P P 2.0 S 10.0 U G S I C T 5.0 I 1.0 O L F 0.0 0 100 200 300 400 500 600 700 800 900 1000 0.0 0 100 200 300 400 500 600 700 800 900 1000 SWITCHING FREQUENCY (kHz) SWITCHING FREQUENCY (kHz) FIGURE 6. SIDE A, B FLOATING SUPPLY BIAS CURRENT vs FIGURE 7. ICCO, NO-LOAD
in „HIP 4081 Verständnisprobleme“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MC1377.pdf
T63 T64 T65 T45 T46 R60 R47 4.7k 4.7k T47 T59 T58 T48 T66 R38 R43 R44 R45 R49 R52 R58 R63 R58 10k 300 10k 10k 22k 300 10k R43A R44A 10k 300 10k 22k R–YClamp 12 ChromaIn 10 R132 R135 R154 1.85k R124 R136 R157 R147 12.5k 220 4.7k 22k 27k 100 T114 T127 T128 R153 CompositeVideoOut T125 9 R137 T120 T122
in „Phasenverschiebung -90 bis -180° erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
vcnl4040.pdf
260 μA PSSD Logic high VIH 1.55 V DD = 3.3 V V Logic low V IL 0.4 I2C signal input Logic high VIH 1.4 Logic low V DD = 2.6 V V 0.4 V IL Peak sensitivity wavelength of λ p 550 nm ALS Peak sensitivity wavelength of PS λpps 940 nm Full ALS counts 16-bit resolution
in „VNCL4040 Vorwiderstand?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MC1377.PDF
T63 T64 T65 T45 T46 R60 R47 4.7k 4.7k T47 T59 T58 T48 T66 R38 R43 R44 R45 R49 R52 R58 R63 R58 10k 300 10k 10k 22k 300 10k R43A R44A 10k 300 10k 22k R–YClamp 12 ChromaIn 10 R132 R135 R154 1.85k R124 R136 R157 R147 12.5k 220 4.7k 22k 27k 100 T114 T127 T128 R153 CompositeVideoOut T125 9 R137 T120 T122
in „Problem beim FBAS Signal am Amiga 500“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sp3222_3232e.pdf
0.008/0.014 (0.203/0.356) (0.203/0.356) D 0.780/0.800 0.880/0.920 (19.812/20.320) (22.352/23.368) E 0.300/0.325 0.300/0.325 (7.620/8.255) (7.620/8.255) E1 (6.096/7.112) (6.096/7.112) L 0.115/0.150 0.115/0.150 (2.921/3.810) (2.921/3.810) Ø 0°/ 15° 0°/ 15° (0°/15°) (0°/15°) Date: 08/22/05 SP3222E, SP3232E
in „Kein TX bei GSM Modul“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NUD4700-D.PDF
7.5 V (BR) (BR = 1 mA) Holding Current H − 6.0 12 mA (VAnode= 10 V, initial100 mA) Latching Current IL − 35 70 mA (VAnode= 10 V) On−State Voltage (T = 0.350 A) VT − 1.0 1.2 V (T = 0.750 A) − 1.0 − (T = 1.0 A) − 1.0 − DYNAMIC CHARACTERISTICS Critical Rate−of−Rise of Off State Voltage dV/dt 250 − − V/ms
in „28 LEDs ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheetTD310.pdf
Input Voltage 2 V VIL Low Input Voltage 0.8 V IIH High Input Current 10 pA I Low Input Current 10 pA IL Propagation Delay (10% input to10% output) ns tdH, eH Output Rise 200 400 dL, eL Output Fall 60 400 T min. Tamb Tmax. tii Input Inhibiting Time 100 ns dd Differential Delay Time Between Channels 20
in „Mosfet Treiber (low side) mit current sense Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheetTD310.pdf
Input Voltage 2 V VIL Low Input Voltage 0.8 V IIH High Input Current 10 pA I Low Input Current 10 pA IL Propagation Delay (10% input to10% output) ns tdH, eH Output Rise 200 400 dL, eL Output Fall 60 400 T min. Tamb Tmax. tii Input Inhibiting Time 100 ns dd Differential Delay Time Between Channels 20
in „Geteilte Spannungsversorgung von Arduino, IC und Power-LEDs blockiert Funktionsfaehigkeit“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NHD-C0220BiZ-FSRGB-FBW-3VM-28341.pdf
Mounting Holes RoHS Compliant Newhaven Display International, Inc. 2511 Technology Drive, Suite 101 Elgin IL, 60124 Ph: 847-844-8795 Fax: 847-844-8796 www.newhavendisplay.com nhtech@newhavendisplay.com nhsales@newhavendisplay.com Document Revision History Revision Date Description Changed by 0 7/8/09 Initial
in „Eigene Zeichen in 2x20 Display“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
f18-series-power-modules-1370740.pdf
55 A 90 A 105 A Maximum Voltage Drop @ Amps Peak V 1.55V @ 75 A 1.4V @ 120 A 1.40V @ 270 A 1.65V @ 300 A Operating Junction Temperature Range F 1.4V @ 165 A TJ -40 -125˚ C -40 - 125°C -40 - 125°C -40 - 125°C -40 - 125°C Critical Rate of Rise of On-State Current @ TJ=125°C [A/μs] di/dt 100 100 100 100
in „Schutzschaltung an Thyristor verstehen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMD18200.pdf
Current Sense Output IOUT = 1A 377 325/300 μA (min) 425/450 μA (max) Current Sense Linearity 1A ≤ IOUT ≤ 3A (4) ±6 ±9 % (1) All limits are 100% production tested at 25°C. Temperature extreme limits are ensured via correlation using accepted
in „Motortreiber LMD18200“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HT1621.pdf
Min. Typ. Max. Unit V DD Conditions V DD Operating Voltage ¾ ¾ 2.4 ¾ 5.2 V 3V No load/LCD ON ¾ 150 300 mA IDD1 Operating Current 5V On-chip RC oscillator ¾ 300 600 mA 3V No load/LCD ON ¾ 60 120 mA IDD2 Operating Current 5V Crystal oscillator ¾ 120 240 mA 3V ¾ 100 200 mA IDD3 Operating Current No load
in „Picomite und LCD Display PC-6749-UUW von Densitron“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Si4730-31-34-35-D60.pdf
RCLK inactive — 3 10 High Level Input Voltage V 0.7 x V — V + 0.3 V IH D D Low Level Input Voltage V IL –0.3 — 0.3 x D V High Level Input Current IH VIN= VD= 3.6 V –10 — 10 µA 3 Low Level Input Current IL VIN= 0 V, –10 — 10 µA V D 3.6 V 4 High Level Output Voltage VOH OUT = 500 µA 0.8 x D — — V 4 Low Level
in „LM2528-3.3 & SI4735 & Bluetooth anliegen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADS8345.pdf
0.001 3 ✻ ✻ µA DIGITAL INPUT/OUTPUT Logic Family CMOS ✻ Logic Levels V IH | IH| ≤ +5µA 3.0 5.5 ✻ ✻ V V IL | IL| ≤ +5µA –0.3 +0.8 ✻ ✻ V V OH OH = –250µA 3.5 ✻ V V I = 250µA 0.4 ✻ V OL OL Data Format Binary Two’s Complement ✻ POWER-SUPPLY REQUIREMENTS +VCC Specified Performance 4.75 5.25 ✻ ✻ V Quiescent Current
in „ext. AD Wandler ADS8345“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
73244.pdf
INPUT/OUTPUT Logic Family CMOS Logic Levels: V IH |IH| ≤ +5 A 3.0 V CC+0.3 V V |I | ≤ +5 A –0.3 0.8 V IL IL V OH OH = –500 A 3.5 V V OL OL = 500 A 0.4 V Data Format Straight Binary POWER SUPPLY REQUIREMENT +V Specified Performance 4.75 5.25 V CC Quiescent Current fSAMPLE= 500kHz 2.2 mA Power Down 0.5 mA
in „ADC Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CD00003634_HSS.pdf
dVout/dt(on) (V/ms) 10 1000 9.5 900 Iin=1mA Vcc=13V 9 800 Rl=6.5Ohm 8.5 700 8 600 7.5 500 7 400 6.5 300 6 200 5.5 100 5 0 -50 -25 0 25 50 75 100 125 150 175 -50 -25 0 25 50 75 100 125 150 175 Tc (°C) Tc (°C) Figure 11. Overvoltage shutdown Figure 12. Turn-off voltage slope Vov (V) dVout/dt(off) (V/ms)
in „POWER SSO 12 Kriechstrecken“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tps3847.pdf
25SC 800 85SC 105SC CIN 0.1 mF ) (700 n r600 VCC VCC C TPS3847 l500 Regulator u MR RESET EN OUT S400 300 GND 200 4 6 8 10 12 14 16 18 Supply Voltage (V) C007 1 An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications, intellectual
in „Spannungsüberwachung 12V ohne uC“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Ac04001d.pdf
pagina 102 Gebrauchsanweisung 4.4.4 Batterieanschluß Diese Anschlüsse sind für ein gutes )KIC=nC- )nIlKß>lo?F = Funktionieren und eine Ausgang lange Lebensdauer der (Lieferung von Geräte und Batterien 230 Volt) äußerst wichtig. Bei der -EnC=nC- Verbindung zwischen )nIlKß>lo?F = Eingang (Empfang Batterie
in „Kaltleiter für Akku“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
142c38eef4c5eb392531e1bacd4aee1b.pdf
L e 0 . . 5 ( P D ) 0 0 2 M R 0.18 t P M ( d O S D a n d p l E a t R l e e e C l a G A l l O u I e il B . . . t O 0 A 0 0 ) ) ) i N 1 6 1 e : 8 ) R H V S p e 5 I 0 S e 3.50±0.30 0 f o 2.80±0.15 ± n e 0.20±0.03 1.30±0.15 . r T 1.10±0.15 0 a 0.30±0.15 e 0 0 0 0 0 0 ± 0 ±0 0 7 7 1 3 c e 1 1 1 a t 1 0 (
in „Raspberry Pi Rev A TFT Display?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
PDF
2207251030_Mixic-MX1616H_C5119044-1.pdf
the circuit. By built-in dead time, common mode conduction can be avoided. The typical dead time is 300ns. 3. Overheat protection circuit When the junction temperature of the driver circuit exceeds the preset temperature, the TSD circuit starts to work. At this time, the control circuit forces all output
in „MX1616H Dual H-Bridge Motor Driver“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP1640.pdf
V OUT VIN C IN 976 K COUT +E 4.7µF V 10µF I EN FB A K 562 K A - GND L1 4.7µH VOUT V IN SW 5.0V @ 300 mA 3.0V to 4.2V V OUTS VIN V OUTP 976 K + CIN C OUT N 4.7µF EN VFB 10 µF O I 309 K L - P GND SGND Efficiency vs. I OUT for 3.3V OUT 100.0 VIN 2.5V ) % 80.0 y c e c VIN 0.8V VIN 1.2V f E 60.0 40.0
in „ESP32-C6 an 18650 Akku betreiben“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCA9626.pdf
SCL clock HIGH HIGH period of the 4.0 - 0.6 - 0.26 - s SCL clock f fall time of both SDA [3][4] - 300 20 + 0.1C b[5] 300 - 120 ns and SCL signals r rise time of both SDA - 1000 20 + 0.1C b[5] 300 - 120 ns and SCL signals SP pulse width of spikes [6] - 50 - 50 - 50 ns that must be suppressed by the input
in „Probleme mit PCA9626 und I2C“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
494703_DS.pdf
..................-65°C to +150°C Lead Temperature (soldering, 10sec).............................+300°C 4 Note 1: Signals on S, D, or IN exceeding V+ or V- are clamped by internal diodes. Limit forward current to maximum current ratings. G D Stresses beyond those listed under “Absolute Maximum Ratings
in „Maxim DG 419“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EUA2005.pdf
Output impedance in V(SHUTDOWN )=0.4V >1 kΩ SHUTDOWN f(sw) Switching frequency VDD 2.5V to 5.5V 200 250 300 kHz Resistance from shutdown toGND 300 kΩ DS2005 Ver 1.1 Nov. 2006 4 EUA2005 Electrical Characteristics T =A25°C ,Gain= 2V/V,R =8 L Ω (Unless otherwise noted) Symbol Parameter Conditions EUA2005 Unit
in „"Brainstorming" Verstärker für hochohmige Kopfhöhrer“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
datenblatt-pam8403.pdf
...℃.to 150℃ Maximum Junction Temperature..................150℃Soldering Temperature...............300℃,5sec Recommended Operating Conditions Supply voltage Range..........................2.5VJunction Temperature Range...........-40℃ to 125℃ Operation Temperature Range...........-40℃to 85℃ Thermal Information
in „PAM8403 Stereo (Kopfhörer) zu Mono (Lautsprecher) - wie?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
M48T58Y.pdf
Power CC Deselect V X X X High Z Standby IH Deselect 4.75 to 5.5 V X VIL X X High Z Standby WRITE or V IL VIH X VIL DIN Active READ 4.5 to 5.5 V V V V V D Active IL IH IL IH OUT READ V IL VIH V IH VIH High Z Active Deselect V SO to PFD X X X X High Z CMOS standby (min)1) (1) Deselect ≤ VSO X X X X High Z
in „[S] DALLAS DS1220Y-150 NVRAM (NOS)“ · Analoge Elektronik und Schaltungstechnik ·