-
Thread
Controller PLL TBB146
Diodenmatrix (Bezeichnung weiß ich leider nicht mehr) las. Die man sehr gut durch einen Sockel DIP-28 mit 1N4148 ersetzen konnte. Bevor jemand fragt: Ich habe alles, inkl. Doku, schon vor 25 Jahren weiter gegeben und habe nichts mehr dazu. Sorry!
(Latches) weiter. Latches (0 bis 1, 5 bis 7, 2 bis 4): Zwischenspeicher für die programmierbaren Teilerfaktoren. Frequenzteiler (Mitte und unten): Teiler N (12 bit) (Mitte): Teilt das Signal des Referenzoszillators (
Markt ·Pietro Paolo M. · ·26 Antworten
-
PDF
ErklearungDriverSimulation.pdf
D 1uH IC=10 R_RL1 3 N25602 10m V_VDD 3 0 12 R_R1 0 OUT 10 R_RS 1 IN 50 C_C1 OUT 0 1u IC=24 R_RG 2 G 1 X_U1_U1 1 2 3 0 TC1410N_RevA V_VIN IN 0 +PULSE 0 5 50n 10p 10p 500n 1u .END **** FROM LIBRARY diode.lib
in „Spice Simulation von Treiber TC4229“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Micrel.pdf
Min. Typ. Max. Units Conditions e , Output Noise Voltage — 400 — C = 10 µF n L (10 Hz to 100 kHz) — 260 — µVRMS C = 33 µF L = 100 mA L Ground Current in — 2 10 MIC29150/1/2/3 only µA Shutdown — — 30 VEN = 0.4V Reference - MIC29xx2/MIC29xx3 1.228 1.240 1.252 V Reference Voltage — 1.215 — 1.265 V MAX Reference Voltage 1.203 — 1.277 V Note 8 — 40 80 Adjust Pin Bias Current — — 120 nA — Reference Voltage Temperature Coefficient — 20 — ppm/°C Note 9 Adjust Pin Bias Current — 0.1 —
-
PDF
25040.pdf
www.microchip.com. © 2006 Microchip Technology Inc. DS21204E-page 3 25AA040/25LC040/25C040 FIGURE 1-1: HOLD TIMING CS 17 17 16 16 SCK 18 19 High-impedance SO n + 2 n + 1 n n n - 1 Don’t Care 5 SI n + 2 n + 1 n n n - 1 HOLD FIGURE 1-2: SERIAL INPUT TIMING 4 CS 12 2 11 Mode 1,1 7 8 3 SCK Mode 0,0 5 6
in „Eeprom Philip Pines Auslesen mit CH341“ · Fahrzeugelektronik ·
-
PDF
40146F.pdf
down after the current trans- mission is finished, if the user has already released the EQUATION 5-1: CRC Calculation CRC[1] n + 1 CRC[0] ∧nDi n button. If the button is held down beyond the time for two transmissions, then multiple transmissions will and result. The HCS361 transmits at least two transmis- sions before powering down. If another button is acti- CRC[0] n + 1= (CRC[0] n Di )n∧ CRC[1] n vated during a transmission, the active transmission with will be aborted and the new code will be generated CRC[1, 0] 0 0 using the new button information. and 5.2 Blank
in „Fehlersuche Funksender Zentralverriegelung Toyota Yaris“ · Fahrzeugelektronik ·
-
PDF
MCP1640.pdf
0.8 1.1 1.4 1.7 2 2.3 2.6 2.9 3.2 3.5 VINV) FIGURE 2-13: Input No Load Current vs. FIGURE 2-16: MCP1640 3.3V V OUT PFM V . Mode Waveforms. IN )5 s h4 O e P - Channel c3 a i s2 R h i 1 w S N - Channel 0 1 1.5
in „ESP32-C6 an 18650 Akku betreiben“ · Mikrocontroller und Digitale Elektronik ·
-
Thread
Können moderne Fahrzeugsteuerungen gefährlich beschleunigen? Gesperrt
https://www.google.com/maps/@49.4841137,10.9553591,3a,75y,354.9h,89.81t/data=!3m7!1e1!3m5!1sajTBVLQCF02R2P1HlkEJ-w!2e0!6shttps:%2F%2Fstreetviewpixels-pa.googleapis.com%2Fv1%2Fthumbnail%3Fcb_client%3Dmaps_sv.tactile%26w%3D900%26h%3D600%26pitch%3D0.18636659079268725%26panoid%3DajTBVLQCF02R2P1HlkEJ-w
Was für Dich gefühlt 1m ist für den anderen gefühlt 50m.
Fahrzeugelektronik ·Dieter D. · ·433 Antworten
-
Bild
Schaltplan eines XL1509 Step-Down Wandlers
Typical Application Circuit XL1509-5.0 VIN 1 3 5~8 FB 2 SW 2 EN 4 GND 4 OFF ON +12V CIN 470uF 35V C1 105 L1 68uH/2A D1 1N5820 COUT 180uF 35V 5V/2A LOAD Figure4. XL1509 Typical Application Circuit 12V-5V/2A Rev 2.6 www.xlsemi.com
in „Benötige Hilfe bei meinem Schaltplan“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
-
PDF
24fc256.pdf
Control Address Address T Control Data S Host A Byte High Byte Low Byte A Byte Byte T T T P SDA Line S 1 0 1 0A A A 0 x S 1 0 1 0 A A A1 P 2 1 0 2 1 0 A A A A N Bus Activity C C C C O K K K K A x = “don’t care” bit C K 1998-2022MicrochipTechnologyInc.anditssubsidiaries DS20001203Y-page 13 24AA256/24LC256
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
-
Thread
Transistor Emitterschaltung mit Spannungsteiler
dann nicht erreicht. Mit Umformen der Gleichung aus dem Artikel berechnet man R2_min so: R2_min = (R1*U_BE)/(Ue-U_BE) = 5820 Ohm Man könnte R1 erhöhen auf 220 kOhm, dann muss R2_min aber 12804 Ohm bzw. 22 kOhm betragen. Dann liegt das Verhältnis Iq/Ib aber wieder bei 1,36. Egal wie ich rechne ich
, leitet 8uA ab die eingeschaltet zusätzlich über R1 fliessen müssen, also 68uA bei 4.2V macht 61k. Die 8uA Leckstrom sind geraten. Der Leckstrom von C an 12V und B offen ist viel kleiner, das Datenblatt sagt 15nA. Aber wer weiss von woher Strom in
Analoge Elektronik und Schaltungstechnik ·Sebastian · ·14 Antworten
-
PDF
2243913.pdf
B VA= 5.5V, RAB(MIN) 80000 Leakage current I — 100 — nA MCP4XX1 PxA = PxW = PxB = V WL SS into A, W or B — 100 — nA MCP4XX2 PxB = PxW = V SS — 100 — nA Terminals Disconnected (R1HW = R0HW = 0) Note 1: Resistance is defined as the resistance between terminal
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
-
PDF
AVR32-64SD20-28-32-48-ProductBrief-DS40002417.pdf
PE2 PB2 6 31 PE1 PB3 7 30 PE0 PB4 8 29 GND PB5 9 28 AVDD PC0 10 27 PD7 PC1 11 26 PD6 PC2 12 25 PD5 3 4 5 6 7 8 9 0 1 2 3 4 1 1 1 1 1 1 1 2 2 2 2 2 C O N C C C C D D D D D P D G P P P P P P P P P D V Note: For the AVR
-
PDF
AN332.pdf
INVERTED DCLK (IFALL = 0) DCLK DFS LEFT CHANNEL RIGHT CHANNEL Left-Justified (IMODE = 0110) DIN/DOUT 1 2 3 n-2 n-1 n 1 2 3 n-2 n-1 n MSB LSB MSB LSB Figure 21. Left-Justified Digital Audio Format (IFALL = 0) DCLK DFS LEFT CHANNEL RIGHT CHANNEL (IMODE = 1100) stDIN/DOUT 1 2 3 n-2 n-1 n 1 2 3 n-2 n-1 n (MSB at 1 rising edge) MSB LSB MSB LSB 1 DCLK LEFT CHANNEL RIGHT CHANNEL DIN/DOUT (IMODE = 1000) (MSB at 2 rising edge) 1 2 3 n-2 n-1 n 1 2 3 n-2 n-1 n MSB LSB MSB LSB Figure 22. DSP Digital Audio Format There
in „Radioempfang: Mono statt Stereo erzwingen, UKW“ · HF, Funk und Felder ·
-
Bild
Schaltplan eines LM2595 Spannungsreglers
Figure 20 and Figure 21. +V 0 OFF ON SHUTDOWN INPUT R4 6.2k VIN LM2595 5.0 2 5 ON/OFF 3 GND D1 1N5820 CIN 220 uF Q1 2N3906 R1 10k -5V OUTPUT
in „Atmega328p Stromversorgung“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
PDF
MCP79521.pdf
Units Test Conditions No. D13 V TRIP Power-Fail Switchover 1.3 1.5 1.7 V Voltage D14 VBAT Backup Supply Voltage 1.3 — 3.6 V Range VBAT= 1.3V, CC = VSS — — 850 nA (Note 2) Timekeeping Backup VBAT= 3.0V, CC = VSS D15 IBATT Current — 1000 1200 nA (Note 2) VBAT= 3.6V
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
KSZ8851SNL.pdf
5 MM X 5 MM QFN ASSIGNMENT, (TOP VIEW) I I 1 D N L N D_ E I D G C O S D L S V D S S C V 32 31 30 29 28 27 26 LED0 1 24 DGND PME 2 23 VDD_D1.8 INTRN 3 22 DGND DGND 4 Paddle Ground on 21 X2 VDD_CO1.8 5 Bottom of Chip 20 X1 EDD_IO 6 19 RSTN EESK 7
in „KSZ8851 Ethernet komplizierte Frage.“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
set-and-map.c
count_to_lbsize(size_t n){ n += n / SET_OVERSIZE_INVERSE_FACTOR; return dpa_u_log2(n|(MIN_SIZE-1))+1; } dpa__u_api long dpa_u_total_resize_time; #define EXPECTED_BITMAP_SIZE(T) ((1ull<<(sizeof(T)*CHAR_BIT)) / CHAR_BIT) #define
in „Diverse fragen zu Hash Maps in C“ · Softwareentwicklung ·
-
Datei
set-and-map.c
count_to_lbsize(size_t n){ n += n / SET_OVERSIZE_INVERSE_FACTOR; return dpa_u_log2(n|(MIN_SIZE-1))+1; } dpa__u_api long dpa_u_total_resize_time; #define EXPECTED_BITMAP_SIZE(T) ((1ull<<(sizeof(T)*CHAR_BIT)) / CHAR_BIT) #define
in „Diverse fragen zu Hash Maps in C“ · Softwareentwicklung ·
-
PDF
RXV667.pdf
P11 1r 1r 1r S4 1-3 P12 1p 1p 1p 1g 2-3 P13 1n 1n 1n 2g 3-3 P14 1d 1d 1d 1f 4-3 P15 2a 2a 2a 2f 5-3 P16 2h 2h 2h 1b 1-4 P17 2j 2j 2j 2b 2-4 P18 2k 2k 2k 1a 3-4 P19 2b 2b 2b 2a 4-4 P20 2f 2f 2f 5-4 P21 2m 2m
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
PSpice_LibraryguideOrCAD.pdf
1N5819 D1N5819 DIODE.OLB Diodes and Rectifiers 1N5820 D1N5820 DIODE.OLB Diodes and Rectifiers 1N5821 D1N5821 DIODE.OLB Diodes and Rectifiers 1N5822 D1N5822 DIODE.OLB Diodes and Rectifiers 1N5823 D1N5823
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP23017-Datasheet.pdf
GPB7 4 29 * 18 GPA1 GPB7 4 29 * 18 GPA1 VDD 5 17 GPA0 V DD 5 17 GPA0 V SS 6 16 INTA VSS 6 16 INTA NC 7 15 INTB CS 7 15 INTB 8 9 1011121314 8 9 1011121314 K A C 0 1 2 T K I O 0 1 2 T C D N A A A E C S S A A A E S S E S E
in „kennt jemand sich aus mit MC23017 IO-Board“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC_Memory_Programming_Specification.pdf
0 Increment Address x x 0 1 1 0 Begin Programming x x 1 0 0 0 Externally Timed End Programming x x 1 1 1 0 Bulk Erase Program Memory x x 1 0 0 1 Internally Timed 2004 Microchip Technology Inc. Preliminary DS41227D-page 3 PIC12F508
in „Programm aus PIC12F508 laden und verstehen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC12F508_Datasheet.pdf
4 33 ) 22 ( n i 1 a 1 b l C 00 o f -1-1 e n h C -2-2 -33 -44 -5 -5 2 2.5 3 3.55 4 44.5 55 5.5 V DD (V) FIGURE 11-15: TYPICAL INTOSC FREQUENCY CHANGE vs V DD (-40°C) 5 4 4 33 ) 22 ( n i 11 a i a C 00 m r f -1-1 g n
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
-
PDF
12f1840_programming_41439A.pdf
The pin diagrams for the PIC16F/LF1847 and PIC12F/ PIC16LF1847 LF1840 family are shown in Figure 2-1 through Figure 2-5. The pins that are required for programming QFN are listed in Table 1-1 and shown in bold lettering in the pin diagrams. A A A A A R R R R R N N FIGURE 2-1: 18-PIN DIAGRAM FOR PIC16F1847
in „PIC16LF1847 flashen mit ATmega / USBasp / Arduino Nano / ponyser?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XLSEMI-XL1509.pdf
Current Surface Through VR (The same as system maximum input voltage) Mount Hole 20V 30V 40V 50V 60V 1A √ 1N5817 1N5818 1N5819 √ 1N5820 1N5821 1N5822 √ MBR320 MBR330 MBR340 MBR350 MBR360 √ SK32 SK33 SK34 SK35 SK36 3A √ 30WQ03 30WQ04 30WQ05 √ 31DQ03 31DQ04 31DQ05 √ SR302 SR303 SR304 SR305 SR306 Rev 2.0
in „Schaltregler Design Aufschwinger?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lm2596.pdf
ULTRA FAST ULTRA FAST SCHOTTKY RECOVERY SCHOTTKY RECOVERY SCHOTTKY RECOVERY SCHOTTKY RECOVERY All of 1N5820 All of All of SR502 All of these these these these 20 V SK32 SR302 1N5823 diodes diodes diodes diodes are MBR320 are are SB520 are 30WQ03 rated to 1N5821 rated to rated to rated to at least at least
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 12€)“ · Markt ·
-
PDF
lm2596.pdf
ULTRA FAST ULTRA FAST SCHOTTKY RECOVERY SCHOTTKY RECOVERY SCHOTTKY RECOVERY SCHOTTKY RECOVERY All of 1N5820 All of All of SR502 All of these these these these 20 V SK32 SR302 1N5823 diodes diodes diodes diodes are MBR320 are are SB520 are 30WQ03 rated to 1N5821 rated to rated to rated to at least at least
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 18€)“ · Markt ·
-
PDF
MIC5233-3.3YS-microchip-20221000.pdf
packaged product only. Parameter Symbol Min. Typ. Max. Units Conditions Enable Input Current IEN –1.0 0.01 1.0 V EN = 0.6V; regulator off — 0.1 1.0 µA V EN = 2.0V; regulator on — 0.5 2.5 V EN = 36V; regulator on Start-up Time START — 1.7 7 ms V INapplied before EN signal Note 1: The maximum allowable
in „STM32F302C8T6 Schaltplanüberprüfung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
22107B-1180063.pdf
B VA= 5.5V, RAB(MIN) 80000 Leakage current I — 100 — nA MCP4XX1 PxA = PxW = PxB = V WL SS into A, W or B — 100 — nA MCP4XX2 PxB = PxW = V SS — 100 — nA Terminals Disconnected (R1HW = R0HW = 0) Note 1: Resistance is defined as the resistance between terminal
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
-
PDF
MCP9501-2-3-4.pdf
Temperature Accuracy Distribution at -15°C. Distribution at 105°C. 60% 60% TA= °\C TA= 115\C 50% VDD= 4.1V 50% VDD= 4.1V 480 Units 480 Units s e40% c40% n n e30% r30% u u c c O20% O20% 10% 10% 0% 0% 0 0 . . 0 .0 . 0 . . 4 - 0 2 4 -4 - 0 2 4 - TemperatAre Accuracy (°C) - Temperature Accuracy (°C) A FIGURE
in „Thermal Shutdown“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
2243913.pdf
B VA= 5.5V, RAB(MIN) 80000 Leakage current I — 100 — nA MCP4XX1 PxA = PxW = PxB = V WL SS into A, W or B — 100 — nA MCP4XX2 PxB = PxW = V SS — 100 — nA Terminals Disconnected (R1HW = R0HW = 0) Note 1: Resistance is defined as the resistance between terminal
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
-
PDF
MCP794xx.pdf
R BYTE BYTE O T T P SDA LINE S 1 1 0 1 1 1 1 0 S 1 1 0 1 1 1 1 1 P A A A N BUS ACTIVITY C C C O K K K A K FIGURE 6-5: SRAM/RTCC SEQUENTIAL READ CONTROL S BUS ACTIVITY BYTE DATA n DATA n + 1 DATA n + 2 DATA n + X T MASTER O P P SDA LINE
in „MCP794xx EUI-64 Node Adresse“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP3221.pdf
Temperature (°C) FIGURE 2-7: INL vs. Temperature. FIGURE 2-10: INL vs. Temperature (V = 2.7V). DD 1 1 0.8 0.8 0.6 0.6 ) 0.4 Positive DNL 0.4 B 0.2 B Positive DNL ( L 0.2 L 0 ( 0 N -0.2 N -0.2 D -0.4 D -0.4 Negative DNL Negative DNL -0.6 -0.6 -0.8 -0.8 -1 -1 0 100 200 300 400 0 100 200 300 400 2 2 I
in „Suche Bauteilbezeichnung 5-Pin SOT-23 mit "S1SD" Marking“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LG4573A_DS_V1.1.5__1_.pdf
resistors incorporated therein. Increment Amplitude Adjustment Fine Adjustment(6 X 3 bits) Adjustment PRP/N0 PRP/N1 PFP/N0 PFP/N1 PMP/N0 PFP/N2 PFP/N3 PKP/N0 PKP/N1 PKP/N2 PKP/N3 PKP/N4 PKP/N5 VRP/N0 VRP/N1 VREG1OUT, 3 3 3 3 3 3 3 3 3 3 3 3 3 5 5 VREG2OUT VINP0 V0 /VINN0 V1 V2 /VINN1 Selector VINP2 8 to 1
-
PDF
2243913.pdf
B VA= 5.5V, RAB(MIN) 80000 Leakage current I — 100 — nA MCP4XX1 PxA = PxW = PxB = V WL SS into A, W or B — 100 — nA MCP4XX2 PxB = PxW = V SS — 100 — nA Terminals Disconnected (R1HW = R0HW = 0) Note 1: Resistance is defined as the resistance between terminal
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
-
PDF
22070a-53890.pdf
1 — nA V = V = 6.0V WRGD LK PWRGD IN PWRGD Time Delay T — 110 — µs Rising Edge PG RPULLUP = 10 kΩ Note 1: The minimum V must meet two conditions: V ≥ 2.1V and V ≥ V + V IN IN IN OUT(MAX) DROPOUT(MAX).
in „[V] 50St.LowNoise Microchip LDO MCP1824T 3,3V/300mA SOT223-5 mit Shutdown“ · Markt ·
-
PDF
SAMA5D2_PTC_Firmware_UG.pdf
If a gain is applied on the node, the threshold is automatically adapted to the gained range. 4.8.1.2 Hysteresis The PTC employs programmable hysteresis levels of n%, n=50, 25, 12.5, 6.25. The detect hysteresis is a percentage of the distance from the threshold level back towards the reference, and
in „Was ist bzw. war Atmel QTouch?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MJE13009-D.PDF
2N2222 RB C clamp R SCOPE R 1 B C DUTY CYCLE ≤ 10% 68 k *SELECTED FOR ≥ 1 kV T r ft ≤ 10 ns 1 I 5.1 k S +5 V B V D1 T k CE 51 1N4933 1 k D.U.T. 2N2905 -4.0 270 MJE200 V 0.02 mF 47 100 NOTE PW and V CC Adjusted for DesirCd I 1/2 W R Bdjusted for DesiredB1 -VBE(off) I S Coil Data: V CC= 125 V U U GAP for 200 mH/20 A VCC = 20 V R C 15 W R L Ferroxcube Core #6656 L = 200 mH V = 300 Vdc D1 = 1N5820 or Equiv. C V Full Bobbin (~
in „Elektronischen Halogen-Trafo auf LED-Betrieb umrüsten“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lm2676_2_.pdf
Diode Selection Table REVERSE SURFACE MOUNT THROUGH HOLE VOLTAGE (V) 3 A 5 A OR MORE 3 A 5 A OR MORE 1N5820 20 SK32 — — SR302 SK33 1N5821 30 MBRD835L — 30WQ03F 31DQ03 SK34 MBRB1545CT 1N5822 — 30BQ040 MBR340 MBR745 40 30WQ04F 31DQ04 80SQ045 MBRS340 6TQ045S SR403 6TQ045 MBRD340 SK35 MBR350 50 or more —
in „[V] 45St. Schaltregler LM2676SX-3.3/NOPB TO263-7 SIMPLE SWITCHER® High Efficiency 3-A Step-Down“ · Markt ·
-
PDF
lm2676.pdf
Diode Selection Table REVERSE SURFACE MOUNT THROUGH HOLE VOLTAGE (V) 3 A 5 A OR MORE 3 A 5 A OR MORE 1N5820 20 SK32 — — SR302 SK33 1N5821 30 MBRD835L — 30WQ03F 31DQ03 SK34 MBRB1545CT 1N5822 — 30BQ040 MBR340 MBR745 40 30WQ04F 31DQ04 80SQ045 MBRS340 6TQ045S SR403 6TQ045 MBRD340 SK35 MBR350 50 or more —
in „[V] 45St. Schaltregler LM2676SX-3.3/NOPB TO263-7 SIMPLE SWITCHER® High Efficiency 3-A Step-Down“ · Markt ·
-
PDF
mcp41xxx.pdf
Inc. MCP41XXX/42XXX 8-Lead Plastic Small Outline (SN) – Narrow, 150 mil (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
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
20002019c.pdf
N D N U N G V G O N G V G O I I Note 1: Duplicate pins must both be connected for proper operation. 2: Exposed pad of the DFN package is electrically isolated; see Table 3-1. DS20002019C-page 2 2006-
in „Pulsschweisgerät mit Auto Batt Schaltungs Verbesserung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP6V11U_OpAmp.pdf
d1.E1 k l ) p n 100 I n I t1.E+03 h T MCP6V12 p ) 1k - , 80 MCP6V14 u ( - o O e t 60 o1.E1 0 n a o a p 40 d C S e1.E+10 G = 1 V/V l G = 11 V/V 20 C G = 101 V/V 1.E+01 0 100 1k 10k 100k 1M 1.E+03 1.E+04
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Migration_PIC16F84_to_PIC16F84A.pdf
VDD = 5.5V) (OSC = 10 MHz) PIC16F84A — 10 20 mA (FOSC = 20 MHz) D021 ID Power-down cur- Commercial — 1.0 14 A D021A rent (DD= 4.0V, Industrial — 1.0 16 — 1.0 3.0 A WDT disabled) D022 IWDT Module Differential Commercial N/A N/A N/A — 6.0 20 A Current Watchdog Extended N/A N/A N/A — — 25 A Timer VIH Input
-
PDF
20002234D.pdf
s 2V/DIV s e 2 h t w 1 S I N - Channel 0.05 mA/DIV 0 1 1.5 2 2.5 3 3.5 4 4.5 5 1 µs/DIV > VINr VOUT FIGURE 2-14: N-Channel and P-Channel FIGURE 2-17: MCP1640B 3.3V V OUT R DSON vs. > of V IN or V OUT . PWM Mode Waveforms.
in „NRF24L01+ durch MCP1640 gestört?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP_73831.pdf
Rejection (PSRR). 120 RPROG= 10 kΩ 0 VAC 100 mVp-p )105 OUT= 100 mA A -10 COUT 4.7 µF, X7R Ceramic ( 90 B n 75 ( -20 e n u 60 t -30 C u g 45 n -40 a 30 t h A C 15 -50 0 5 5 5 5 5 5 5 5 5 5 5 5 5 5 -60 2 3 4 5 6 7 8 9 1 1 1 1 1 1 0.01 0.1 1 10 100 1000 Junction Temperature (°C) Frequency (kHz) FIGURE 2-9: Charge
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MCP73831-2_ENG_TDS.pdf
Rejection (PSRR). 120 RPROG= 10 kΩ 0 VAC 100 mVp-p )105 OUT= 100 mA A -10 COUT 4.7 µF, X7R Ceramic ( 90 B n 75 ( -20 e n u 60 t -30 C u g 45 n -40 a 30 t h A C 15 -50 0 5 5 5 5 5 5 5 5 5 5 5 5 5 5 -60 2 3 4 5 6 7 8 9 1 1 1 1 1 1 0.01 0.1 1 10 100 1000 Junction Temperature (°C) Frequency (kHz) FIGURE 2-9: Charge
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
50002370A.pdf
1-4 shows an example power scheme using a 1.8 RESET (RST_N) 3.3V Low Dropout (LDO) regulator supplying 3.3 V to both the RN4677 (BAT_IN and VDD_IO) and MCU The Reset (RST_N) input pin resets the RN4677
in „[V] 2St. Microchip Bluetooth4.0 Module RN4677“ · Markt ·
-
PDF
Class_2_Bluetooth_Module_with_EDR_Support_DS500023-2256355.pdf
1-3: RN42N MODULE FIGURE 1-5: RN42N PIN DIAGRAM DIMENSIONS TopView SideView A N F N 5 G R G . . 0 7 8 1 27 26 25 20.5 19.7 20.5 GND 1 24 SPI_MISO SPI_MOSI 2 RN42N 23 SPI_CSB Top View 16.0 GPIO6 3 22 GPIO4
in „[V] Microchip Bluetooth Module RN41-I/RM und RN42-I/RM“ · Markt ·
-
PDF
Class_1_Bluetooth_Module_with_EDR_Support_DS500022-2257897.pdf
TC1185 PCM_OUT UART_RTS 3.3V VBUS 11 14 TXD 5 1 3.3V VDD UART_TX VOUT VI N 12 GND UART_RX 13 RXD C2 4 D 3 SHDN R1 C1 D 1uF BYP G SHDN 1uF E 1 1 1 9 8 0 2 3k3 H I N I I I I N I S A G P P P P G A 0 3 2 3 3 3 3 2 3 C6 1 1 1 9 8 0 I I I I I I A P P P P A VBUS 100nF C4 C5 100nF 100nF HEADER 1 HEADER 2 PIO6 PIO4 9 6 1 1 1 1 1T 2 PIO7 PIO3 2 C I U U3 3 RESET_N PIO2 3 RXD R12 3k3 30TXD V C 3 FT232RQ 4 CT S 4 TXD R13 3k3 2RXD V V 5 RT S 5 CTS R11 3k3 32RTS 3 VBUS J4
in „[V] Microchip Bluetooth Module RN41-I/RM und RN42-I/RM“ · Markt ·