-
PDF
max774-max776.pdf
transistor. PART TEMP RANGE PIN-PACKAGE A These inverters use external P-channel MOSFET switches, MAX774CPA 0°C to +70°C 8 Plastic DIP X allowing them to power loads up to 5W. If less power is MAX774CSA 0°C to +70°C 8 SO 7 required, use the MAX764/MAX765/MAX766 inverting MAX774C/D 0°C to +70°C Dice*
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
-
PDF
epcos-inrush-overcurrent.pdf
Overcurrent Inrush current limiters cycling protection Room temperature, Room temperature, V link,max 25% S,ma, V applied energy max Number of cycles: 100 < C ▯thT ▯ ref A Number of cycles: 100 000 Electrical endurance, IEC 60738-1 Storage at V maxand T op,max@ V max) < 25% constant Test duration: 1000
in „Schaltzyklen bei PTC-Sicherungen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
epcos-inrush-overcurrent.pdf
Overcurrent Inrush current limiters cycling protection Room temperature, Room temperature, V link,max 25% S,ma, V applied energy max Number of cycles: 100 < C ▯thT ▯ ref A Number of cycles: 100 000 Electrical endurance, IEC 60738-1 Storage at V maxand T op,max@ V max) < 25% constant Test duration: 1000
in „Einschaltstrombegrenzung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
epcos-B5975-B5977-overcurrent-2.pdf
Overcurrent protection Leaded disks, uncoated, 380 V to 1000 V B750 ... B774 Applications Dimensional drawing Overcurrent protection Short circuit protection Features Lead-free terminals Marking: Type, manufacturer's logo, reference temperature in °C and date code YYWW UL approval
in „Hat jemand Erfahrung mit der Zuverlässigkeit von PTC, rückstellenden Sicherungen (FRU110-30F)?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Input_and_Output_Capacitor_Selection.pdf
Ripple Voltage Plots Re-arranging Equation 2 to verify the scope plots: IOUT dc (1 * dc) 1000 V P(max)+ SW CMIN (3) A Note: when calculating using, use effective capacitance value at operating voltage, 18 μF, is MIN used as an effective internal capacitance. 10 0.3 (0.7) 1000 V P(max1) + + 350 mVpp
in „Spannungsregler 78L33 Kondensatorbeschaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TDP-Performance_-__by_Prof._Rudi_Ratlos_.pdf
VID_VDD Max 9 1.225 V 1.475 V 1.225 V 1.475 V IDD Max 3,10 32.9 A 89.7 A 31.4 A 92.8 A CPU COF 6 N/A 2200 MHz N/A 2400 MHz TDP 3,7 N/A 101.0 W N/A 98.5 W S0.C0.P1 VID_VDD Min 9 N/A 1.100 V N/A 1.100 V VID_VDD Max
-
Datei
test.cc
chrt ist recommended. // E.g. // // prompt> sudo taskset -c 3 chrt -f 99 ./test // time=7.69822s cnt=774 min=2 max=58 avg=10.584 #include <chrono> #include <cstring> // strerror #include <fcntl.h> // O_RDWR #include <iostream> #include <sstream> #include <stdexcept> #include <sys/mman.h> // PROT_READ #
-
PDF
MGA-62563__AV02-1237EN_.pdf
= 5OΩ,V = 3V (unldss otherwise specified) Symbol ParametersandTestConditions Freq Units Min. Typ. Max. StdDev Id [1,2] Device Current mA 47 62 77 2.09 NF test[1,2 Noise Figure in test circuit [1] f = 0.5 GHz dB 0.93 1.4 0.06 [1,2] [1] G test Associated Gain in test circuit f = 0.5 GHz dB 20.4 22 23.4
-
Datei
timing_report.txt
Flight Delays : No Ignore I/O Paths : No Timing Early Launch at Borrowing Latches : No Borrow Time for Max Delay Exceptions : Yes Corner Analyze Analyze Name Max Paths Min Paths ------ --------- --------- Slow Yes Yes Fast Yes Yes check_timing report Table of Contents ----------------- 1. checking no_clock
in „VHDL Timing Constraints nicht erfüllt“ · FPGA, VHDL & Co. ·
-
PDF
MCP1702.pdf
< 2.5V three to six primary cell battery-powered applications. High-Accuracy Output Voltage: ±2% (max.) The MCP1702 is capable of delivering 250 mA with an Low Temperature Drift: ±100 ppm/°C (typ.) input-to-output voltage differential (dropout voltage) of Excellent Line Regulation: 0.2%/V (typ.) 650
in „quick and dirty - NiMH stützen“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Schaltplanausschnitt mit Digitalpotentiometer und Referenzschaltung
D2 1 INC/ 2 U/D/ 7 CS/ 4 VSS X9312W 10k 3 VH 5 VW 6 VL R27 43k C64 0,1u N1 1 OUT 2 FB 3 SHDN 4 REF MAX774
in „ESP32 Digitalpoti AD8400 Störsignal“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
PDF
druseidt_0105deu.pdf
gewalzt. • Durschlagsfestigkeit 20 kV/mm Die technischen Eigenschaften der Isolation • Betriebsspannung max. 1 kV z. B. Betriebsspannung bis 1 kV sowie eine • Betriebstemperatur -20° C bis +105° C Temperaturbeständigkeit von bis zu +105° C ermöglichen in Verbindung mit einer guten Flexibilität umfangreiche
in „Pressverschweißen von Kabelenden“ · Mechanik, Gehäuse, Werkzeug ·
-
PDF
ROS-1700W.pdf
offset frequencies: @ 12 dBr (MHz/V) BANDWIDTH POWER Typ. (MHz) (MHz) Current 1 10 100 1 Vcc (mA) Min. Max. Typ. Min. Max. kHz kHz kHz MHz Typ. Typ. Typ. Typ. Max. Typ. (volts) Max. 770 1700 8.0 1.0 24 -73 -100 -121 -140 9.0 0.4 26-60 -25 -13 11.0 12 40 Pin Connections Maximum Ratings RF OUT 10 Operating Temperature -55°C to 85°C VCC 14 Storage Temperature -55°C to 100°C V-TUNE 2 Absolute Max. Supply Voltage (Vcc) +15V GROUND 1,3,4,5,6,7,8,9,11,12,13,15,16 Absolute Max.Tuning Voltage (Vtune) +30V all specifications: 50 ohm system Permanent damagemay occur if any of theselimits areexceeded
in „Frage zu VCO Daten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
158950-da-01-en-BS170.pdf
MINIMUM.LEADDIMENSIONISUNCONTROLLED INPANDBEYONDDIMENSIONKMINIMUM. L SEATING F PLANE K INCHES MILLIMETERS DIM MIN MAX MIN MAX A 0.175 0.205 4.45 5.20 B 0.170 0.210 4.32 5.33 C 0.125 0.165 3.18 4.19 D D 0.016 0.022 0.41 0.55 X X F 0.016 0.019 0.41 0.48 G H J G 0.045 0.055 1.15 1.39 H 0.095 0.105 2.42 2.66 V J 0.015
in „3V DC Motor (300mA) mit transistor schalten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MIC5233-3.3YS-microchip-20221000.pdf
MIC5233 comes with an active-high enable pin that allows the regulator to be disabled. Forcing the T JMAX– TA enable pin low disables the regulator and sends it into PDMAX = --------------------------- a “Zero” Off mode current state, consuming a typical JA 0.1 µA. Forcing the enable pin high enables
in „STM32F302C8T6 Schaltplanüberprüfung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RFM12BP.PDF
http://www.hoperf.com 3 of 8 RFM12BP Datasheet REV2.3 Recommended working range symbol parameter min max Unit VDD Positive power supply 2.2 3.8 V VCC-PA Positive power supply for power amplifier 11 13 V Top Working temperature -40 85 ℃ DC characteristic symbol parameter Remark min typ max Unit Idd_TX_PMA
in „Verkaufe Hoperf - 10 rfm12b und 2 rfm12bp 868 MHz“ · Markt ·
-
PDF
MIC5239_Data.pdf
its operating ratings. Note 1: The maximum allowable power dissipation of Any Tient temperature) iD(MAX)= (J(MAX)– TA) ÷ θ . Exceeding the maximum allowable power dissipation will result in excessive die temperature, and the JA regulator will go into thermal shutdown.JAof the MIC5239-x.xYMM (all versions
-
PDF
AN1152_Achieving_Higher_ADC_Resolution.pdf
0.707, then SNR Q is given by Equation 3. EQUATION 3: SNR = 6.02N + 4.77 – 3 = 6.02N + 1.77[dB] Q–MAX From Equation 3, it is clear that the improvement in the SNR of the ADC is 6.02 dB per bit. The higher the num- ber of bits associated with the ADC, the higher the SNR Q. For example, the SNR Q MAX
in „Berechnung zur Auflösung ADC - wie richtig?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Kupferlackdraehte-Allgemeine-Anforderungen-nach-DIN-EN-IEC-60317-0-1.pdf
Mindestzunahme Größter Außen- Zu- A-Ø A-Ø spannung bei RT widerstand bei 20° C elektrischen dehn. max. Grad zug Nenn- Tole- A (GR1) durch die Isolierung durchmesser nahme max. max. mind. V Ohm/m Fehlerzahl je 30 mmin. GR2+ max. GR1 Ø ranz mm² km GR1 GR2 GR3 GR1 GR2 GR3 min. GR1B GR2B GR1 GR2 GR3 min
in „Lackdicke der Isolierung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP1802.pdf
dissipation of the LDO. temperature EQUATION 6-1: P TOTAL = Maximum device power dissipation PLDO = V INMAX– OUTMIN OUTMAX R JA = Thermal resistance from Where: junction to ambient PLDO = LDO Pass device internal power dissipation EQUATION 6-5: V = Maximum input voltage IN(MAX) T = T + T VOUT(MIN
in „Spannungsregler LDO - Ausgangs-Spannung schaltet nicht 100% ab“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP1801.pdf
Package Type = SOT-23-5 T – T P = ------------------------ Input Voltage Range = 2.4V to 5.0V DMAX RJA VINmaximum = 5.0V Where: V OUT typical = 1.8V I = 50 mA maximum PD(MAX) = Maximum device power OUT dissipation T = Maximum continuous junction 6.2 Power Calculations J(MAX) temperature T = Maximum
in „USB-Spannungsversorgung lässt PIC24FJ128 abstürzen?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Lambdacontroller_ai_claude_2.ino
0.764, 0.764, 0.765, 0.766, 0.766, 0.767, 0.768, 0.769, 0.769, 0.770, 0.771, 0.772, 0.772, 0.773, 0.774, 0.774, 0.775, 0.776, 0.777, 0.777, 0.778, 0.779, 0.780, 0.780, 0.781, 0.782, 0.782, 0.783, 0.784, 0.785, 0.785, 0.786, 0.787, 0.787, 0.788, 0.789, 0.790, 0.790, 0.791, 0.792, 0.793, 0.793, 0.794, 0.795
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Lambdacontroller_ai_claude.txt
0.764, 0.764, 0.765, 0.766, 0.766, 0.767, 0.768, 0.769, 0.769, 0.770, 0.771, 0.772, 0.772, 0.773, 0.774, 0.774, 0.775, 0.776, 0.777, 0.777, 0.778, 0.779, 0.780, 0.780, 0.781, 0.782, 0.782, 0.783, 0.784, 0.785, 0.785, 0.786, 0.787, 0.787, 0.788, 0.789, 0.790, 0.790, 0.791, 0.792, 0.793, 0.793, 0.794, 0.795
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
A200_MCP1407-EP_MIC.pdf
H1 Q β e3 e1 E e EJECTOR PIN ØP α (5°) C1 A J1 F D Units INCHES* MILLIMETERS Dimension Limits MIN MAX MIN MAX Lead Pitch e .060 .072 1.52 1.83 Overall Lead Centers e1 .263 .273 6.68 6.93 Space Between Leads e3 .030 .040 0.76 1.02 Overall Height A .160 .190 4.06 4.83 Overall Width E .385 .415 9.78 10.54
in „Treiber für IRF1404 ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP2551.pdf
= 4.5V to 5.5V Extended (E):TMB = -40°C to +125°C VDD = 4.5V to 5.5V Param Sym Characteristic Min Max Units Conditions No. Supply D1 ID Supply Current — 75 mA Dominant; VTXD= 0.8V; DD D2 — 10 mA Recessive; TXD = +2V; RS = 47 kΩ D3 — 365 µA -40°C ≤ T ≤ +85°C, AMB Standby; (Note 2) — 465 µA -40°C ≤ T
in „CAN-BUS - Nur empfangen - Was mache ich mit dem TXD Pin am Tranceiver??“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP1703_MIC.pdf
minimum V INmust meet two conditions: VIN≥ 2.7V and VIN ≥ (VOUT(MAX) + VDROPOUT(MAX) ). 2: V Rs the nominal regulator output voltage. For example:RV = 1.2V, 1.5V, 1.8V, 2.5V, 2.8V, 3.0V, 3.3V, 4.0V, or 5.0V. The input voltage IN = VOUT(MAX) + VDROPOUT(MAX) or VIN =
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Microchip_AppNote_00994a.pdf
Current Power Factor Frequency Permission Error (cosφ) (Hz) Change (%) #1 0.05B 0.065 B 1.0 ±0.5 0.046 max 0.000 49 0.1B -0.016 I 0.5L ±0.7 -0.014 B max -0.034 0.05B 0.121 B 1.0 ±0.5 0.067 max 0.054 0.1I 51 0.056 b B 0.5L ±0.7 0.042 max 0.026 Note: Reference Voltage: 220V Current (B): 10A Reference Frequency
in „Strom 10A bis 300A messen mit Tiny26“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Low_Drop_Spannungsregler_MCP_1702-5002.pdf
1: The minimum V must meet two conditions: V ≥ 2.7V and V ≥ V + V . IN IN IN OUT(MAX) DROPOUT(MAX) 2: VR is the nominal regulator output voltage. For examRle: V = 1.2V, 1.5V, 1.8V, 2.5V, 2.8V, 3.0V, 3.3V, 4.0V, or 5.0V. The input voltageIN = VOUT(MAX)+ V DROPOUT(MAX) or VIN= 2.7V (whichever
-
PDF
TC2014.pdf
/packaging E E1 p B p1 D n 1 c A A2 A1 L Units INCHES * MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 5 5 p Pitch .038 0.95 Outside lead pitch (basic) p1 .075 1.90 Overall Height A .035 .046 .057 0.90 1.18 1.45 Molded Package Thickness A2 .035 .043 .051 0.90 1.10 1.30 Standoff
in „Mcp3551 PT1000 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
parts.txt
2SC536 150 2SC620 40 2SC668 4 2SC710 70 2SC711 2 2SC712 40 2SC730 50 2SC735 6 2SC756 1 2SC763 5 2SC774 100 2SC775 85 2SC777 5 2SC778 28 2SC780 1 2SC784 14 2SC799 36 2SC815 4 2SC828 6 2SC829 6 2SC839 80 2SC900 50 2SC922 40 2SC930 9 2SC945 150 2SC998 34 2SD201 1 2SD235 150 2SD235 40 2SD359 4 2SD359 4 2SD526
in „[V] Bauteilauflösung Transistoren/Audio+Video IC“ · Markt ·
-
PDF
FM1216.pdf
be guaranteed to function properly under the following conditions. SYMBOL PARAMETER PIN MIN. TYP. MAX. UNIT V supply voltage 4.75 5.00 5.25 V S VS(ripple) peak-to-peak ripple voltage susceptibility (at 5 V ±5%); note 1 12 20 Hz to 100 kHz − − 5 mV >100 kHz to 500 kHz − − 10 mV S(tuner) supply current
in „Radio mit TV/FM-Tuner von Philips“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FM1216.pdf
be guaranteed to function properly under the following conditions. SYMBOL PARAMETER PIN MIN. TYP. MAX. UNIT V supply voltage 4.75 5.00 5.25 V S VS(ripple) peak-to-peak ripple voltage susceptibility (at 5 V ±5%); note 1 12 20 Hz to 100 kHz − − 5 mV >100 kHz to 500 kHz − − 10 mV S(tuner) supply current
in „Autoradio selber bauen.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP1403.pdf
Specifications: Unless otherwise indicated, T = +25°C, with 4.5V≤ 18V. A DD Parameters Sym Min Typ Max Units Conditions Input Logic ‘1’, High Input Voltage VIH 2.4 1.5 — V Logic ‘0’, Low Input Voltage VIL — 1.3 0.8 V Input Current IIN –1 — 1 µA 0V ≤ VIN≤ VDD Input Voltage V -5 — V +0.3 V IN DD Output
in „MOSFET mit Treiber Verständnisproblem“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
1789204.pdf
Unless otherwise indicated, operating temperature range wit 18V. V DD Parameters Sym. Min. Typ. Max. Units Conditions Input Logic ‘1’, High Input VoltVge 2.4 — — V IH Logic ‘0’, Low Input VoltaVeIL — — 0.8 V Input Current IIN –10 — +10 µA 0V VIN VDD Input Voltage V -5 — V + 0.3 V IN DD Output High
in „Low Side MOSFET Treiber als Pegelwandler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP1700.pdf
of the LDO. R JA = Thermal resistance from junction to ambient EQUATION 6-1: P LDO = V INMAX– VOUTMIN OUTMAX EQUATION 6-4: TJRISE= PDMAX RJA PLDO = Internal power dissipation of the LDO Pass device TJ(RISE)= Rise in the device’s junction VIN(MAX) = Maximum input voltage temperature
in „ESP-01 mit LiPo betreiben“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
25040.pdf
packaging E E1 p D 2 B n 1 h α 45° c A A2 φ β L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „Eeprom Philip Pines Auslesen mit CH341“ · Fahrzeugelektronik ·
-
PDF
MRF150.pdf
to +150 ⋅C Operating Junction Temperature T 200 ⋅C J THERMAL CHARACTERISTICS Characteristic Symbol Max Unit Thermal Resistance, Junction to Case RθJC 0.6 ⋅C/W Handling and Packaging — MOS devices are susceptible to damage from electrostatic charge. Reasonable precautions in handling and packaging MOS
in „Wärmeleitpad gesucht für POWER FET MRF150“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Vishay-TFPT.pdf
voltage or P70 x R whichever is less (4)Zero power or zero dissipation is considered as measuring power max. 1 % of rated powe70P (5)Please refer to APPLICATION INFORMATION (6)Power levels are depending on way of mounting and substrates used. Higher power up to 200 mW at 25 °C (P ) can be tolerated on uniform
in „SMD Temperaturfühler an Wetterstation“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
93C86.pdf
packaging E E1 p D 2 B n 1 h 45 c A A2 L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX n Number of Pins 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Datenblatt.pdf
temperature range is specified (-40°C to +85°C for E device, 0°C to +70°C for C device). Parameter Min Typ Max Min Typ Max Min Typ Max Units Test Conditions Voltage-to-Frequency Accuracy TC9400 TC9401 TC9402 Linearity 10 kHz — 0.01 0.05 — 0.004 0.01 — 0.05 0.25 % Output Deviation from Full Scale Straight Line
in „Frequenz-Spannungswandler OP-Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MPX4100.PDF
PLANE U PORT #1 2. CONTROLLINGDIMENSION:INCH. POSITIVE L PRESSURE (P1) INCHES MILLIMETERS R DIM MIN MAX MIN MAX V A 1.145 1.175 29.08 29.85 –Q– B 0.685 0.715 17.40 18.16 N C 0.305 0.325 7.75 8.26 D 0.027 0.033 0.68 0.84 F 0.048 0.064 1.22 1.63 G 0.100BSC 2.54BSC J 0.014 0.016 0.36 0.41 K 0.695 0.725 17.65
in „Temperatur - Luftdruckmessung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MRF89XAM8A.pdf
characterization. TABLE 4-3: DIGITAL I/O PIN INPUT SPECIFICATIONS (1) Symbol Characteristic Min Typ Max Unit Condition VIL Input Low Voltage — — 0.2 * IN V — VIH Input High Voltage 0.8 * IN — — V — IL Input Low Leakage Current2) -0.5 — 0.5 µA V IL= 0V IH Input High Leakage Current -0.5 — 0.5 µA V IH=
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
-
PDF
25AA128.pdf
2.5-5.5V 64 Byte I,E P, SN, ST, MF 25AA128 1.8-5.5V 64 Byte I P, SN, ST, MF Features Description • Max. Clock 10 MHz The Microchip Technology Inc. 25AA128/25LC128 • Low-power CMOS Technology (25XX128 ) are 128k-bit Serial Electrically Erasable PROMs. The memory is accessed via a simple Serial - Max.
in „SPI EEPROM -> Kein Page read :- O“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
KONTAKT_LR_Sicherheitsdatenblatt.pdf
Kow) : Nicht anwendbar Dampfdruck : Nicht verfügbar Dampfdruck bei 50°C : Nicht verfügbar Dichte : 0,774 bei 20°C Relative Dichte : 0,774 bei 20°C Relative Dampfdichte bei 20°C : Nicht verfügbar Partikeleigenschaften : Nicht anwendbar 9.2. Sonstige Angaben 9.2.1. Angaben über physikalische Gefahrenklassen
in „Leiterplattenreinigung(Flussmittelreste entfernen)? Isoprop ist zu schwach, was kann man beimischen?“ · Platinen ·
-
PDF
EEPROM.pdf
(SOIC) E E1 p D 2 B n 1 h α 45° c A2 A φ β L A1 Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .050 1.27 Overall Height A .053 .061 .069 1.35 1.55 1.75 Molded Package Thickness A2 .052 .056 .061 1.32 1.42 1.55 Standoff § A1 .004 .007 .010 0.10 0.18 0.25
in „EEPROM auslesen (24xx256) mit Pic16f819, an PC über RS232“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
mc3362.pdf
DIMENSIONINGANDTOLERANCINGPERANSI Y14.5M,1982. 4. CONTROLLINGDIMENSION:INCH. L INCHES MILLIMETERS C DIM MIN MAX MIN MAX A 1.230 1.265 31.25 32.13 B 0.250 0.270 6.35 6.85 C 0.145 0.175 3.69 4.44 –T– K NOTE 1 D 0.015 0.020 0.38 0.51 SEATING E 0.050BSC 1.27BSC PLANE N M F 0.040 0.060 1.02 1.52 E G 0.100BSC 2.54BSC
-
PDF
2019-03-22__Battery-Box_HV_User_Manual_DE_V5.0_1_.pdf
Module 6 Module 7 Module 8 Module 9 Module 1 Nutzbare Energie (kWh) 5.12 6.4 7.68 8.96 10.24 11.52 Max Entladeleistung(kW) 5.12 6.4 7.68 8.96 10.24 11.52 Max Peak 10.24, 30s 12.8, 30s 15.36, 30s 17.92, 30s 20.48, 30s 23.04, 30s Entladeleistung(kW) Effizienz (Round-Trip) ≥95.3% (Unter Testbedingungen
-
PDF
MCP2021.pdf
; 500 TH REC(MAX) = 0.284 x BB, TH DOM(MAX ) = 0.422 x BB, VBB =7.6V - 18V; BIT= 50 µs. D2 = tUS _REC(MAX ) / 2 BIT) Duty Cycle 3 @10.4 kbit/sec .417 — — %t BIT CBUS ;RBUS conditions: 1 nF; 1 k | 6.8 nF; 660 | 10
in „MCP2021 -> Welcher ESD Level wird erreicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
22070a-53890.pdf
enough to be neglected. EQUATION 5-4: 5.3.1 POWER DISSIPATION EXAMPLE P = ------------------------ D(MAX) RθJA Package Package Type = SOT-223-5 PD(MAX) = Maximum device power dissipation Input Voltage T = maximum continuous junction J(MAX) V IN= 3.3V ± 5% temperature TA(MAX) = maximum ambient temperature
in „[V] 50St.LowNoise Microchip LDO MCP1824T 3,3V/300mA SOT223-5 mit Shutdown“ · Markt ·
-
PDF
ErklearungDriverSimulation.pdf
Transient, and Noise analyses. * Most specs, including: propgation delays, rise times, fall times, max sink/source current, * input thresholds, voltage ranges, supply current, ... , etc. * Temperature effects for Ibias, Iquiescent, output current, output * resistance,....,etc. * * © 2009 Microchip Technology
in „Spice Simulation von Treiber TC4229“ · Analoge Elektronik und Schaltungstechnik ·