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Siemens_CrossRef_1998.pdf
2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904 PN 2N3906 SMBT3906 SMBT3906 S SXT3906 PZT3906 2N4032 BC856 BC856W BC856S BCP52M BCX52 BCP52 2N4036 BCP53M BCX53 BCP53 2N4037 BCP51M BCX51 BCP51 2N4123 BSS81B
in „1N4001und BC574C ==> SMD?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904 PN 2N3906 SMBT3906 SMBT3906 S SXT3906 PZT3906 2N4032 BC856 BC856W BC856S BCP52M BCX52 BCP52 2N4036 BCP53M BCX53 BCP53 2N4037 BCP51M BCX51 BCP51 2N4123 BSS81B
in „Suche NPN Transistor Low Noise SMD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_CrossRef_1998.pdf
2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904 PN 2N3906 SMBT3906 SMBT3906 S SXT3906 PZT3906 2N4032 BC856 BC856W BC856S BCP52M BCX52 BCP52 2N4036 BCP53M BCX53 BCP53 2N4037 BCP51M BCX51 BCP51 2N4123 BSS81B
in „SMD - Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904 PN 2N3906 SMBT3906 SMBT3906 S SXT3906 PZT3906 2N4032 BC856 BC856W BC856S BCP52M BCX52 BCP52 2N4036 BCP53M BCX53 BCP53 2N4037 BCP51M BCX51 BCP51 2N4123 BSS81B
in „BC337-40 in Pspice“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_CrossRef_1998.pdf
2N3904 SMBT3904 SMBT3904S/ SXT3904 PZT3904 PN 2N3906 SMBT3906 SMBT3906 S SXT3906 PZT3906 2N4032 BC856 BC856W BC856S BCP52M BCX52 BCP52 2N4036 BCP53M BCX53 BCP53 2N4037 BCP51M BCX51 BCP51 2N4123 BSS81B
in „SMD-Vergleichstypen von Transistoren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
5EINSEN.LST
val 6748+1+1 $rs 01EE 03C2 6749+1 dw val 6762+1+1 $rs 01F0 03C4 6763+1 dw val 6790+1+1 $rs 01F2 03C8 6791+1 dw val 6846+1+1 $rs 01F4 03D0 6847+1 dw val 6958+1+1 $rs 01F6 03E0 6959+1 dw val 7181 +1 $rs 7182 7183 end A51 MACRO ASSEMBLER 5EINSEN DATE 17/08/05 PAGE 2 SYMBOL TABLE LISTING ------ ----- ------- N A M E T Y P E V A L U E ATTRIBUTES IDX. . . . N NUMB 00FCH A VAL. . . . N NUMB 0400H A REGISTER BANK(S) USED: 0 ASSEMBLY COMPLETE, NO ERRORS FOUND
in „Zähler“ · FPGA, VHDL & Co. ·
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PDF
CLC_Configurable_Logic_Cell_Tips__n_Tricks.pdf
pin must be does not look very good. This tip presents a simple one of the CLC output pins. TABLE 2: EXAMPLE ALLOCATION TABLE P O S / N I F c s p p S Q D e G O C e M u - s I I i A e W C C i W e u a D - e C N T P I P B P 2 R i - 2 RA0 19 16 AN0 — — — — — — IOC Y ICSPDAT RA1 18 15 AN1 VREF+ — — — — —
in „Funktionsgenerator, NCO, PIC“ · Mikrocontroller und Digitale Elektronik ·
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MCP_2210.pdf
O G M . 1 x z 3 D T 1 1 M D i X 1 2 N V 1 G 2 1 2 3 4 5 6 7 e J R a V e 5 D x H u 0 V 1 i C 2 1 D n e d M S D R t U i ed D O D h N V e 2 c e D P P P P I H R G x n - r n N G G G G M D 3 1 c 1 e i G D 2 J M l e t D V 1 R a w u DV 1 H e e o V e T D b t 5 a N . H B 3 I S OM 6 T e U KCS 5 E y V OSI M V a D 4 J x A D 3 1 a G 2 M e u 0 4PG 1 D S C 0 06 D H i D V C N P G V 3 . T - U 0 1 2 3 4 SI K 5 VDNG D G G G G G O C R e 2 2 2 D M S V a U 1 G x H P I 1 e C
in „USB - SPI Adapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
panasonic_tx-p50u20b_e_tx-pr50u20_chassis_gpf13de_sm.pdf
D D D D D L D P P L - O - - C D D D D D 13 N P N P N P N P N P N P N P N P N P N P N P N P N P N P N P N P N P N P N P N P N P 2 2 1 1 1 1 2 2 1 1 2 2 1 1 2 2 2 2 1 1 2 2 1 1 3 3 2 2 1 1 2 2 1 1 4 4 2 2 1 1 5 5 1 1 1 1 L L 2 2 2 2 3 3 3 3 L L 4
in „Panasonic TX-P50U20E“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1789204.pdf
Load (pF) Capacitve Load (pF) FIGURE 2-2: Rise Time vs. Capacitive FIGURE 2-5: Fall Time vs. Capacitive Load. Load. 34 C = 470 pF 44 LOAD ) 43 VDD 12V 30 VDD= 12V tRISE n t y 42 D1 )26 l ( FALL D 41 e22 n 40 i t T18 a 39 tD2 a o 38 14 P 37
in „Low Side MOSFET Treiber als Pegelwandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
oncilla_schaltplaene.pdf
1N4007 NB 1N4007 NB 1N4007 1N4007 NB 2 R4122 R4123 1M 1M +28V +220V 5 V4102B E92CC D4117 D4118 D4119 D4120 D4121 D4122 D4123 D4124 NB 1N4007 NB 1N4007 1N4007 NB NB 1N4007 3 7 2 R4125 R4126 1M 1M D4125 D4126
in „Unbekannter Geräteeinschub (Impulszähler)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD_Catalog.pdf
C SOT23 0.3W zener 75V ±2% ZA BZX284-C7V5 Phi I SOD110 0.4W zener 7.5V ±5% ZA PDZ6.2B Phi I SOD323 6.2V 0.4W zener ZB FMMT4123 Zet N SOT23 2N4123 PDZ6.8B Phi I SOD323 6.8V 0.4W zener ZB ZB BZX284-C8V2 Phi I SOD110 0.4W zener
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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AN1325_Metall_Over_Cap.pdf
Seoul Netherlands - Drunen China - Chongqing Tel: 31-416-690399 Chicago Tel: 86-23-8980-9588 Tel: 82-2-554-7200 Fax: 31-416-690340 Itasca, IL Fax: 82-2-558-5932 or Tel: 630-285-0071 Fax: 86-23-8980-9500 82-2-558-5934 Spain - Madrid Fax: 630-285-0075 China - Hong Kong SAR Tel: 34-91-708-08-90 Tel: 852-
in „Tastenverriegelung (Tastensperre)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20002019c.pdf
4 5 GND 5-Pin TO-220 MCP1406 MCP1407 Tab is common to V DD 1 2 3 4 5 1 2 3 4 5 T D D D T T D D D T U N D N U U 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
in „Pulsschweisgerät mit Auto Batt Schaltungs Verbesserung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP9501-2-3-4.pdf
\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 2-8: Temperature Accuracy FIGURE 2-11: Temperature
in „Thermal Shutdown“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP2551.pdf
2010 Microchip Technology Inc. DS21667F-page 15 MCP2551 /HDG3OVWL3F'X,VQ±3LVP%HDX%GVRW\V>V@11V6XLV2UOZV&WQPW▯ ▯U'G▯ 3H70NQ\08H&N0S(77\,N0OWS4W6\0<7W/K,6&10O'\W&\0&\\0NQ\0RKS7HSQKO0ZWS4W6K,60YO\SK)KSWNKH,0'HSWN\<0WN0 QNNO255///D8KS7HSQKODSH85OWS4W6K,6 N NOTE 1 E1 3 1 2 D E A2 A A1 L c e b1 eB b 6,KN
in „MCP2551 Standby Mode wenn AVR im Power down Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fronius_tp1500_inventor_sm.pdf
housing stiffening element housing (21) (37) (21) (continued) - Remove the board insulator (37) Fig.2 Removing the - Unplug the mains leads for the LCA15 (38) (39) LCA15 board board from the mains switch - L (white) from 1A (38) - N (blue) from 2A (39) Fig.3 (5) (40) (41) (42) - Disconnect the ribbon
in „SMD Zenerdiode, welcher wert? (SMPS)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
eGC.pdf
A401 P A42 O50 PAIC40PAIC4123PAIC40B2PAICPAC8701AIC20N2PAIC20N3PAIC20PAICO3PAC4901P1C4902PAIC10Y16PAIC10W16 PAIC10V16 PAIC10U16 PAIC10T16 PAIC10R16 PAIC10P16 PAIC10N16PAIC10M16PAIC10L16PAIC10K16PAIC10J16PAIC10H16PAIC10G16PAIC10F16PAIC10E16
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
93C86.pdf
please see the Microchip Packaging Specification located at http://www.microchip.com/packaging E1 D 2 n 1 E A A2 L c A1 B1 p eB B Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .100 2.54 Top to Seating Plane A .140 .155 .170 3.56 3.94 4.32 Molded Package
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_NVSRAM_23LCV1024.pdf
1 0 CS SCK SI Page X, Word 31 Page X+1, Word 0 Page X+1, Word 1 7 6 5 4 3 2 1 0 7 6 5 4 3 2 1 0 7 6 5 4 3 2 1 0 SO CS SCK SI Page X+1, Word 31 Page X+n, Word 1 Page X+n, Word 31 SO 7 6 5 4 3 2 1 0 7 6 5 4 3 2 1 0 7 6 5 4 3 2 1 0 DS25156A-page 8 Preliminary 2012 Microchip Technology
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1802.pdf
25°C 0°C 24.00 20 4 5 6 7 8 9 10 0 25 50 75 100 125 150 Input Voltage (V) Load Current (mA) FIGURE 2-2: Quiescent Current vs. Input FIGURE 2-5: Ground Current vs Load Voltage. Current. 31.00 30.00 ) VOUT= 6.0V ) VOUT= 6.0V IOUT 0mA A 30.00 OUT= 0 µA A VIN= 7.0V ( +25°C +90°C t 28.00 n 29.00 n r r 26.00 u u t 28.00 t VOUT 0.9V n n 24.00 VOUT= 3.3V VIN 2.0V c 27.00 0°C c VIN 4.3V e -45°C i u 26.00 u 22.00 Q Q 25.00 20.00 7 7.5 8 8.5 9 9.5 10 -45 -22.5 0 22.5 45 67.5 90 Input Voltage (V) Junction Temperature (°C) FIGURE 2-3: Quiescent
in „Spannungsregler LDO - Ausgangs-Spannung schaltet nicht 100% ab“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TC2014.pdf
Output Voltage vs. Junction Temperature. Temperature. 0.5 2.705 ) TA= -45°C 2.7 TA= +25°C ( 0.3 V n TA= +25°C ( 2.695 i g 2.69 l 0.1 l TA= -45°C u o 2.685 e t R -0.1 u 2.68 a V = 2.7V TA= +125°C t V = 2.7V o -0.3 R O 2.675 R L COUT= 3.3 µF 2.67 COUT= 3.3 µF TA
in „Mcp3551 PT1000 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
25AA640A_25LC640A-MIC.pdf
Technology Inc. 25AA640A/25LC640A 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 7 11 Mode 1,1 8 3 SCK Mode 0,0 5 6 SI MSB in LSB in High-Impedance SO FIGURE 1-3: SERIAL OUTPUT
in „Atmega 328p uint16_t auf EEPROM per SPI geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF89XAM8A.pdf
during startup sequences. © 2010 Microchip Technology Inc. Preliminary DS70651A-page 9 D M 7 FIGURE 2-2: MRF89XAM8A SCHEMATIC 6 R A p F e 8 0 9 X A M 8 A P e m n a y Note: Designators not used: C6, L5 © 0 0 c c p e h l y n . MRF89XAM8A TABLE 2-1: MRF89XAM8A BILL OF MATERIALS Designator Value Description
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
MCP1801.pdf
the Ambient temperature is not significant. 27.00 80 VOUT= 0.9V VOUT= 0.9V A 26.00 OUT= 0 µA 70 VIN 2.0V ( +25°C )60 n 25.00 +90°C ( e t 50 u 24.00 e C r40 n 23.00 C30 c D e 22.00 N 20 u 0°C -45°C G Q 21.00 10 20.00 0 2 4 6 8 10 0 30 60 90 120 150 Input Voltage (V) Load Current (mA) FIGURE 2-1: Quiescent Current vs. Input FIGURE 2-4: Ground Current vs. Load Voltage. Current. 30.00 80 ) VOUT= 3.3V A 29.00 IOUT= 0 µA 70 t A n 28.00 +90°C (60 VOUT 6.0V r n VIN 7.0V u e50 t 27.00 u40 e C VOUT= 3.3V c 26.00 D30 V = 4.3V i -45°C N IN
in „USB-Spannungsversorgung lässt PIC24FJ128 abstürzen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
70687A-1.pdf
1 OF 3 8 W A a ™ e 0 D e m o K t U s e r s G u d e 2 1 M o h T h o g n . 2 FIGURE A-2: MiWi™ DEMO BOARD SCHEMATICS 2 OF 3 1 M c c p T c o o y c . A p D p 7 e 6 n 7 d p i g x e A 1 MiWi™ Demo Kit User’s Guide FIGURE A-3: MiWi™ DEMO BOARD SCHEMATICS 3
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
MCP1640.pdf
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 2 2.5 3 3.5
in „ESP32-C6 an 18650 Akku betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny416_50002683A.pdf
contains a serial number string. The serial number string has the following format: "nnnnrrssssssssss" n = product identifier r = revision s = serial number The product identifier for ATtiny416 Xplained Nano is A09-2795. 6.2 Revision 4 Revision 4 is the initially released revision. © 2017 Microchip Technology
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73811_2.pdf
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 Current
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP_73831.pdf
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 Current
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
20002234D.pdf
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 PFM OUT V IN. Mode Waveforms. 5 s OU= 1 mA m VOUT h 4 AC mV/DIV ( P - Channel Coupled c n 3 VSW 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 ·
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PDF
MCP738312.pdf
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 Current
in „MCP73832 Beschaltung für die Auswertung mit µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OPAmp_Layout.pdf
I I I 1 P 2 K D T / / / 4 K A T V K B B N C N S / / C C 4 R 0 7 6 5 / / 8 0 1 R R R R 1 B B B B N N N N 7 4 R R R R / / / / C 8 P 3 B B B R 2 T R R R R I O C u S 0 A 3 – H 1 S P 5 L u T T 1 5 1 T O U 2 O V V 2 8
in „Transimpedanzwandler für Photodiode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
50002370A.pdf
NC PMULDO_O TXD RX RXD TX P12/SCL NC LED1 P13/SDA NC N P36 NC 2 2 A P P E Note: 1. Ensure VDD_IO and MCU VDD voltages are compatible. System Configuration 2. Control and indication ports are configurable. FIGURE 1-5: RN4677 TO MCU INTERFACE EXAMPLE - BATTERY Li-ion Battery (3.7V) (3.3V) LDO RN4677 Module MCU BAT_IN P15/STATUS_IND_1 I/O VDD 10uF (3.2 – 4.3V) P04/STATUS_IND_2 I/O Note 1 SW_BTN I/O LDO33_O WAKEUP I/O RST_N I/O 10uF P37 I/O VDD_IO (Note 1) P34 I/O (2.8 – 3.63V) P33 I/O P32 I/O NC LDO18_O Note 2 P31 I/O P05 I/O CTS P00/RTS P17/CTS RTS
in „[V] 2St. Microchip Bluetooth4.0 Module RN4677“ · Markt ·
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PDF
MCP2021.pdf
conditions: 1 nF; 1 k | 6.8 nF; 660 | 10 nF; 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
in „MCP2021 -> Welcher ESD Level wird erreicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_MIC2875.pdf
5.05 C OUT= 22μF T ( E 3.00 E R A R T C 2.50 O 5.00 N V W T O 2.00 U D T TA= 125℃ U U 4.95 H 1.50 ADJUSTABLE O TA = 25℃ S R2 = 910kΩ T A -40℃ R3 = 200kΩ 1.00 -50 -25 0 25 50 75 100 125 150 4.90 0.0 0.5 1.0 1.5 2.0 TEMPERATURE (℃) LOAD CURRENT
in „MI2875 PG-PIN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
12f1840_programming_41439A.pdf
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 ·
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PDF
MCP1700.pdf
the rise in Junction temperature over the Ambient temperature is not significant. 3.0 1.208 VR= 1.2V 1.206 V R 1.2V A 2.8 OUT = 0 µA TJ= +125°C ) TJ= +125°C IOUT= 0.1 mA ( 2.6 ( 1.204 t e e 2.4 a 1.202 r 2.2 TJ= - 40°C l C V 1.200 n 2.0 t 1.198 TJ= +25°C e 1.8 T = +25°C t s J u 1.196 i1.6 O Q 1.4 1.194
in „ESP-01 mit LiPo betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP6V11U_OpAmp.pdf
Part n DD µ e (4 u20% g c l2 -40°C O V +25°C o15% t0 +85°C e s +125°C a -2 n10% t c p4 e 5% I P -6 0% -8 -8 -7 -6 -5 -4 -3 -2 -1 0 1 2 3 4 5 6 7 8 . . . . . . . . . . . . . . 0 0 1 1 2 2 3 3 4 4 5 5 6 6 Input
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PIC18FXX80_to_PIC18FXXK80_Migration_Guide.pdf
> RXBnCON RXBnCON Transmit Buffer Data Register n = <0-2>, m = <0-7> TXBnDm TXBnDm Transmit Buffer Data Length Code Register n = <0-2> TXBnDLC TXBnDLC Transmit Buffer Extended Identifier Low n = <0-2> TXBnEIDL TXBnEIDL Transmit Buffer Extended Identifier High n = <0-2> TXBnEIDH TXBnEIDH Transmit Buffer Standard Identifier Low n = <0-2> TXBnSIDL TXBnSIDL Substitute Remote Request Bit N/A SRR (RXBnSIDL<4>) Transmit Buffer Standard Identifier High n = <0-2> TXBnSIDH
in „Umstieg von PIC18F4620 auf PIC18F46K20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD2119.pdf
136 VCI -2670 -286 37 C2N -8610 -286 87 AVSS -5610 -286 137 VCI -2610 -286 38 C2N -8550 -286 88 AVSS -5550 -286 138 VCI -2550 -286 39 C2N -8490 -286 89 VCIM -5490 -286 139 VCI -2490 -286 40 90 140 C2N -8430 -286 VCIM -5430 -
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP23017-Datasheet.pdf
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 R * Includes Exposed Thermal Pad; see Table 2-1. R 2005-2016 Microchip Technology Inc. DS20001952C-page 1 MCP23017/MCP23S17 Functional Block Diagram
in „kennt jemand sich aus mit MC23017 IO-Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGDP4524.pdf
[2:0] Variable resistor VR2P(N) PFP3[2:0] PFN3[2:0] Variable resistor VR3P(N) PMP[2:0] PMN[2:0] Variable resistor VRMP(N) Amplitude VRP0[3:0] VRN0[3:0] Variable resistor VRP(N)0 adjustment VRP1[4:0] VRN1
in „LCD farben invertiert normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD2119_Specification.pdf
136 VCI -2670 -286 37 C2N -8610 -286 87 AVSS -5610 -286 137 VCI -2610 -286 38 C2N -8550 -286 88 AVSS -5550 -286 138 VCI -2550 -286 39 C2N -8490 -286 89 VCIM -5490 -286 139 VCI -2490 -286 40 90 140 C2N -8430 -286 VCIM -5430 -
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B400_NTC-02_Serie.pdf
6682 3682 2682 blue grey red 10000 3977 K ±0.75% 4103 6103 3103 2103 brown black orange 12000 3740 K ±2% 4123 6123 3123 2123 brown red orange 15000 3740 K ±2% 4153 6153 3153 2153 brown green orange 22000 3740 K ±2% 4223 6223 3223 2223 red red orange 33000 4090 K ±1.5% 4333 6333 3333 2333 orange orange
in „Temperatur Messung mit Mega8 und NTC-Widerstand 4,7k“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
B400_NTC-02_Serie.pdf
6682 3682 2682 blue grey red 10000 3977 K ±0.75% 4103 6103 3103 2103 brown black orange 12000 3740 K ±2% 4123 6123 3123 2123 brown red orange 15000 3740 K ±2% 4153 6153 3153 2153 brown green orange 22000 3740 K ±2% 4223 6223 3223 2223 red red orange 33000 4090 K ±1.5% 4333 6333 3333 2333 orange orange
in „NTC Berechnung nach Steinhart and Hart, 2. Gleichung geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Techniques_for_Robust_Touch_Sensing_Design_AN1334.pdf
high-permittivity cover compared to the low-permittivity air. FIGURE 14: OVERLAY EFFECT ON SENSITIVITY → t i i n S 1 2 3 4 5 6 Overlay Thickness (mm) C0 =5pF CADC= 10pF Plastic Glass Wood FIGURE 15: THICK OVERLAY OPTIONS air separating the cover and PCB, your effective permittivity, R , will be significantly decreased
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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40146F.pdf
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 ·
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PIC24FJ256DA210_Development_Board_User_s_Guide__.pdf
only (1) access modes Word Word Word Parallel Flash/ 512 Kbytes/ 512 Kbytes/ 512 Kbytes/ 256 Kbytes/N.A. SPI Flash Memory 2 Mbit 2 Mbit 2 Mbit SRAM 512 Kbytes 512 Kbytes 512 Kbytes 256 Kbytes Resistive Touchscreen Y Y Y Y OR Touch SPI channel Potentiometer Y N N Y (2) Touch pads (CTMU) N Y N N (2) User-defined
in „VGA Display am PIC24FJ256DA210 läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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51292S.pdf
this will have the effect of selecting the device. Header Jumper J1 Function Device Selected AC162052 2-3 A/D Disabled PIC16F630 1-2 A/D Enabled PIC16F676 AC162055 Don’t care N/A PIC16F684 AC162056 Don’t care N/A PIC16F688 AC162057 2-3 PORTC, Comparator 2 Disabled PIC12F635 1-2 PORTC, Comparator 2 Enabled
in „PIC18F877 ICD2 bzw Brenner gesucht :-(“ · Mikrocontroller und Digitale Elektronik ·