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Bild
dsPIC30F Motor Control Development Board
MC9DEVBR2.14 A7B6h L4 TP1 TP2 TP3 TP4 TP5 TP6 TP7 TP8 TP9 TP10 TP11 TP12 TP13 TP14 TP15 R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 R17 R18 R19 R20 R21 R22 R23 R24 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50
in „[V] ältere Demoboards PIC, NEC und Motor“ · Markt · · Platinenfotos
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PDF
USB_HFE_Messger_t.pdf
RA5/AN4 10 2 18 9 Q1 11 GND GND GND GND 17 DT/RX/RC7 OSC1/CLKIN 10 1 3 12 CK/TX/RC6 OSC2/CLKOUT 11 13 14 RC0/T1OSO/T1CKI 12 14 C1 VUSB RC1/T1OSI/CCP2 GND 16 D+ RC2/CCP1 13 2 15 15 D- 16 220nF VSS GND 3 R PIC18F2553 8 1 1 0 GND +5V/1 R 1 S D U D V GND D D V G GND USB GND N C CINT +5V/1 PWS1 V V+ D 2 E
in „Transistortester auf PIC Basis mit USB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
config-mod-LK511-mt7623n-BPiR2.txt
set # CONFIG_W1_SLAVE_DS2408 is not set # CONFIG_W1_SLAVE_DS2413 is not set # CONFIG_W1_SLAVE_DS2406 is not set # CONFIG_W1_SLAVE_DS2423 is not set # CONFIG_W1_SLAVE_DS2805 is not set # CONFIG_W1_SLAVE_DS2431 is not set # CONFIG_W1_SLAVE_DS2433 is not set # CONFIG_W1_SLAVE_DS2438 is not set # CONFIG_W1_SLAVE_DS2780 is not set # CONFIG_W1_SLAVE_DS2781 is not set # CONFIG_W1_SLAVE_DS28E04 is not set # CONFIG_W1_SLAVE_DS28E17 is not set CONFIG_POWER_AVS
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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PDF
PG24064LRU-ETA-H_OK_.pdf
output voltage VOL - 0 - 0.3 V Supply current IDD V DDV - 9.6 11.52 mA LCD driving voltage VOP VDDV O - 13.6 14.0 V POWERTIPTECHNOLOGY CORPORATION DISPLAY DEVICES FOR BETTER ELECTRONIC DESIGN NO.PG24064LRU -ETA-H 1.5 Optical Characteristics 1/64 duty, 1/9 bias,OPR=13.6V, Ta=25°C Item Symbol Conditions Min
in „Informationen gesucht: LCD-Display HG24501“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slyt309.pdf
the York: Springer Science+Business Media LLC, 2001). conductive losses (a function of the FET’s rDS[on] and the 3. John Betten and Robert Kollman. (Jan. 25, 2006). No switching losses (a function of the FET’s gate charge) as need to fear: SEPIC outperforms the flyback. Planet given in Equation 13:
in „Gleichspannungswandler in Reihe schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3_Axis_Magnetometer_MMC5603_4x4_Sensoren_Anordnung.pdf
x9 2,8k 2,8k 2,8k 2,8k MMC56x3 3-Axis Mag MMC56x3 3-Axis Mag MMC56x3 3-Axis Mag MMC56x3 3-Axis Mag x13 B1 A2 SCL_3V_1 x5 B1 VDD SCL A2 SCL_3V_9 A1 VDD SCL B2 SDA_3V_1 SDA_3V_5 B2 A1 A1 B2 SDA_3V_9 SDA_3V_13 B2 SDA VSA A1 VSA SDA SCL_3V_5 SDA VSA VSA SDA SCL_3V_13 A2 B1 A2 SCL VDD B1 SCL VDD E E +3.3V +3.3V +3.3V +3.3V +3.3V +3.3V GND GND GND GND +3.3V +3.3V R7 R8 R14 R13 R23 R24 R30 R29 x2 2,8k 2,8k 2,8k 2,8k x10 MMC56x3 3-Axis Mag 2,8k 2,8k 2,8k 2,8k MMC56x3 3-Axis Mag MMC56x3 3-Axis Mag MMC56x3 3-Axis Mag x6 x14 B1 A2 SCL_3V_2 B1 VDD SCL A2 SCL_3V_10 A1 VDD SCL B2
in „Sensor Array ansprechen mit I2C - Unterschiede zu Mega2560 und Seeed RP2040“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT8870d.pdf
10.16) 0.780 (19.81) 0.800 (20.32) 0.880 (22.35) 0.920 (23.37) 0.980 (24.89) 1.060 (26.9) D 0.005 (0.13) 0.005 (0.13) 0.005 (0.13) 0.005 (0.13) 1 E 0.300 (7.62) 0.325 (8.26) 0.300 (7.62) 0.325 (8.26) 0.300 (7.62) 0.325 (8.26) 0.300 (7.62) 0.325 (8.26) 0.240 (6.10) 0.280 (7.11) 0.240 (6.10) 0.280 (7.11)
in „MT8870 (DTMF Encoder) an eine Telefonleitung anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt8870.pdf
10.16) 0.780 (19.81) 0.800 (20.32) 0.880 (22.35) 0.920 (23.37) 0.980 (24.89) 1.060 (26.9) D 0.005 (0.13) 0.005 (0.13) 0.005 (0.13) 0.005 (0.13) 1 E 0.300 (7.62) 0.325 (8.26) 0.300 (7.62) 0.325 (8.26) 0.300 (7.62) 0.325 (8.26) 0.300 (7.62) 0.325 (8.26) 0.240 (6.10) 0.280 (7.11) 0.240 (6.10) 0.280 (7.11)
in „DTMF Tonwahlfrequenzen mit dem MT8870 wie funktioniert das ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BK2433Datasheetv1.0.pdf
60 13.1.3 Serial Clock(SCK).................................................................................. 60 13.1.4 Slave Select(NSS)....................................................................
in „Chinesische USB/nRF24L01 Adpapter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Torquemaster_Brush_servo_2100-1.pdf
AF BB MotorOnly MotorTach Inches(Metric) Inches(Metric) STD NEMA STD NEMA STD NEMA STD NEMA 2105 3.13(79.5) 4.60(116.8) .3750/.3745 .2500/.2495 1.00 0.77 1.000 1.500 0.10 0.06 2110 3.63(92.2) 5.10(129.5) .3750/.3745 .2500/.2495 1.00 0.77 1.000 1.500 0.10 0.06 2115 4.13(104.9) 5.60(142.2) .3750/.3745
in „CRS Robotics A255 Roboterarm“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
schematic-T962.pdf
F/CM12P KEYPAD - 3 7 1 7 7 7 7 k 2.54-6P 2 k 1 k 4 k 5 k 3 k 0 A R 4 R 4 R 4 R 4 R 4 1 A 6 R12 V1 C13 S 5 S8050 F4 4 390 C16 F3 3 F2 2 F1 1 1 3 3 S8550 GND U13 GND 7 5 4 2 GND 0.47uF k 0 A D 2 3 1 GND 3.3V 1 P0.21/PWM5/AD1.6/CAP1.3 D DV D D P1.31/~TRST 20 V V V P1.30/TMS 52 55 P0.20/MAT1.3/SSEL1/EINT3
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DLG7137.pdf
6.9 ... 8.5 D 5.56 ... 6.87 D 6.9 ... 8.4 D 8.6 ... 10.5 E 6.88 ... 8.50 E 8.5 ... 10.4 E 10.6 ... 13.0 F 8.51 ... 10.51 F 10.5 ... 12.9 F 13.1 ... 16.1 G 10.52 ... 13.00 G 13.0 ... 16.0 G 16.2 ... 20.0 H 13.01 ... 16.07 H 16.1 ... 18.4 H 20.1 ... 23.0 I 16.08 ... 19.87 J 19.88 ... 24.56 K 24.57 ...
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PDF
DLG7137.pdf
6.9 ... 8.5 D 5.56 ... 6.87 D 6.9 ... 8.4 D 8.6 ... 10.5 E 6.88 ... 8.50 E 8.5 ... 10.4 E 10.6 ... 13.0 F 8.51 ... 10.51 F 10.5 ... 12.9 F 13.1 ... 16.1 G 10.52 ... 13.00 G 13.0 ... 16.0 G 16.2 ... 20.0 H 13.01 ... 16.07 H 16.1 ... 18.4 H 20.1 ... 23.0 I 16.08 ... 19.87 J 19.88 ... 24.56 K 24.57 ...
in „[V] #VERKAUFT# Platine mit 8 Stück DLG7137, 5*7 Punktmatrix“ · Markt ·
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PDF
Arduino-Shield-BOM-V1R11.pdf
(1608 Metric) SMD C1, C2, C4, C5, C7, 0603-C 24 1276-1935-1-ND 0,0180 0,0084 0,2016 C8, C10, C11, C13, C14, C16, C17, C19, C20, C22, C23, C25, C26, C27, C28, C29, C30, C31, C32 3 PWR LED Uni-Color Green, 100 mW, 2-Pin DS1 LTST-C170GKT Lite-On LTST-C170GKT 1 Digikey 160-1179-1-ND 0,1480 0,0688 0,1480
in „Arduino Mega 2560, schaltschranktauglich“ · Projekte & Code ·
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Datei
rfm70.h
RFM70_REG_RX_PW_P1 0x12 // 'RX payload width, pipe1' register address #define RFM70_REG_RX_PW_P2 0x13 // 'RX payload width, pipe2' register address #define RFM70_REG_RX_PW_P3 0x14 // 'RX payload width, pipe3' register address #define RFM70_REG_RX_PW_P4 0x15 // 'RX payload width, pipe4' register address
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm70.h
RFM70_REG_RX_PW_P1 0x12 // 'RX payload width, pipe1' register address #define RFM70_REG_RX_PW_P2 0x13 // 'RX payload width, pipe2' register address #define RFM70_REG_RX_PW_P3 0x14 // 'RX payload width, pipe3' register address #define RFM70_REG_RX_PW_P4 0x15 // 'RX payload width, pipe4' register address
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
db214_224-2_1_.pdf
this input enables the device to work normally as shown in Table 2. Internal 1M▯ pull-up resistor. 17 13 13 13 VSS Negative supply (GND) 18 14 14 14 Internal connection This pin is internally connected. Leave open circuit. 19 15 15 15 Rx Output This is the processed received audio signal output. This pin
in „Scrambler für PMR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.asm
============================================= ; ATmega8 Maker-Clock-FM-Radio mit PLL & 7-Segment + DS1307 ; CPU: 4 MHz RC-Oszillator intern ; Ports: ; SDA = PC4, SCL = PC5 (I²C DS1307) ; PORTD: Display-ZIFA/B/C/D, LATCH, SEGI, LM_SIN, LM_SCK ; PORTB: Tasten, EEPROM-Adr ; =============================
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WLAN_Firmware_Spec_v5_1.pdf
Description Page Section 5.13.3 "Power Management Commands" 5.13.3.1 "CMD_802_11_PS_MODE" Sets/gets PS mode page 81 5.13.3.2 "CMD_802_11_SLEEP_PARAMS" Sets/gets sleep parameters page 83 5.13.3.3 "CMD_802_11_HOST_SLEEP_CFG" Used by
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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AN-1126.pdf
C5 D-PACK D1 C3 C6 5 FREQ PGND 6 C14 1µF C1 C21 C22 R7 16V C13 R6 1µF R2 R1 PGND AGND 16V PGND AGND ANALOG GROUND AND POWER AGND PGND GROUND CONNECTED AT 0 GROUNDED END OF R1. 3 1 Figure20.ADP16215×SEPICMultipliedBoost(TestedExample) Rev. 0 | Page 14 of 16 Application
in „180VDC-Netzteil Ausgangsstrom zu gering“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C65642-28LTXC__4x_HUB__Infineon.pdf
................................................................................................28 13Ordering information ..................................................................................................................29 13.1 Ordering code definitions................................
in „USB-Hub funktioniert nicht.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
DIGITS DIG 37 18 ISET MOSI 1 DIN MAX7219 DIG 78 17 SEG G MAX7221 μP I/O 12 GND 9 16 SEG B LOAD (CS) 13 SEG A–G, DIG 5 10 15 SEG F SCK CLK SEG DP 9 GND 8 SEGMENTS DIG 1 11 14 SEG A GND LOAD (CS) 12 13 CLK 4 Pin Configurations appear at end of data sheet. Functional Diagrams continued at end of data sheet
in „[V] 2x MAX7219CNG“ · Markt ·
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Datei
All.txt
BIPOLAR DARLINGTON TRANSISTOR 1 T5-6 IRF7103 IPS022G SO8-2 1 T5-1 IRF7103 IPS022G SO8-2 1 T4 TPSPAD1-13Y TPSPAD1-13Y P1-13Y TEST PIN 1 T4 TIC236M TIC225S TO220DS TRIAC 1 T4 PINHD-1X1 1X01 PIN HEADER 1 T4 BC847S BC847S SOT363 1 T4 BC847 BC847 SOT23 NPN TRANSISTOR 1 T4 BC808-16-PNP-SOT23-BEC SOT23-BEC PNP
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
life.lst
variables in this module 11 ;-------------------------------------------------------- 12 .globl _life 13 .globl _calc_nextgen 14 .globl _fill_feld_random 15 .globl _get_rreg 16 .globl _prng 17 .globl _sprng 18 .globl _delay 19 .globl _SetDigit 20 .globl _keypress 21 .globl _curs_set 22 .globl _clrtoeol
in „Conways Game of Live zu langsam auf Z80“ · Softwareentwicklung ·
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PDF
Wirbelstromverluste_J_Biela_2011.pdf
des. 1.3 Optimaler Leiterdurchmesser Abb. 1.13: Stromverteilung in zwei rechteckigen Leitern, welche Ströme in entgegengesetzte Richtung führen. In a) sind die beiden Stirnflächen In den beiden vorangegangen Abschnitten wurden die Wirbelströme, zueinander
in „Skineffekt 20A bei 5kHz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BSS89.pdf
Product specification 1998 Apr 24 Supersedes data of 1997 Jun 20 File under Discrete Semiconductors, SC13b Philips Semiconductors Product specification N-channel enhancement mode BSS89 vertical D-MOS transistor FEATURES PINNING - TO-92 variant • Direct interface to C-MOS, TTL, etc. PIN SYMBOL DESCRIPTION
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a6252.pdf
Power Dissipation, PD No V DSSDerating Required control (CC × CC(ON) . . . . . 0.15 W ■ Choice of rDS(on)2.8 Ω or 3.95 Ω maximum) MOSFET (V DSS× ID). . . . . . 1.35 W ■ Auto-Burst Mode for Stand-By Operation or Light Loads total. . . . . . . . . . . . . . . . . . . . LessTransformerAudibleNoise MOSFET
in „FSC Monitor 24" P24-1W schaltet sich immer AUS und AN“ · Analoge Elektronik und Schaltungstechnik ·
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SP8735.pdf
DOCUMENT IS FOR MAINTENANCE PURPOSES ONLY AND IS NOT RECOMMENDED FOR NEW DESIGNS ADVANCE INFORMATION DS3673-1·1 SP8735 600MHz4 8 (BINARY OUTPUTS) The SP8735 is a 48 ECL counter with binary outputs. In addition, carry outputs are provided in TTL and ECL. The AC coupledinput requiresa600mVp-psignal andtheoutputsare
in „Dezimale Vorteilerkorrektur für Frequenzzähler“ · HF, Funk und Felder ·
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PDF
CAN___C_Dez2010_Bestueckung.pdf
SW_A_C2 SW_A_P2 K1X01 K1X01 C22 100n R8 CanµC1 v1 1K R26 10K T2 NDS355N 10Dez2010 R9 10K F1 C13 10µ R1 C10 D3 0A25FF C14 1R 100n 10µ 3 R BAV70 C15 C4 I U R2 10µ T 1R C D2 D6 10µ 0 T1 NDS355N 1 X C3 J R18 A 10µ M IC4 R14 M S SS14 10K 1K D4 T4 NDS355N LED-SMD1206 C9 22p R31 10K LT1121[A](C/I)S8-5
in „Konzept zu einem Hausbus auf CAN-Bus Basis und die Enstehung des Konzeptes“ · Haus & Smart Home ·
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PDF
CAN_uc_Dez2010_Bestueckucg.pdf
SW_A_C2 SW_A_P2 K1X01 K1X01 C22 100n R8 CanµC1 v1 1K R26 10K T2 NDS355N 10Dez2010 R9 10K F1 C13 10µ R1 C10 D3 0A25FF C14 1R 100n 10µ 3 R BAV70 C15 C4 I U R2 10µ T 1R C D2 D6 10µ 0 T1 NDS355N 1 X C3 J R18 A 10µ M IC4 R14 M S SS14 10K 1K D4 T4 NDS355N LED-SMD1206 C9 22p R31 10K LT1121[A](C/I)S8-5
in „Anforderungssammlung CAN Hausbus mit PIC µC“ · Haus & Smart Home ·
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Datei
Z80int-jmp.asm
ret do_fetch_msp: movw x,z_spl mem_read_d opl adiw x,1 mem_read_d oph ret do_fetch_dir8: mem_read_ds opl, z_pc adiw z_pcl,1 ret do_fetch_dir8_2: movw xl,z_pcl adiw xl,1 mem_read_d opl ret do_fetch_dir16: mem_read_ds opl, z_pc adiw z_pcl,1 mem_read_ds oph, z_pc adiw z_pcl,1 ret do_fetch_rst: movw x,z_pcl
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMPA910_Rev.1.0_Schematic.pdf
LCD_D15 LCD_D16 2 1 PRG[2..0] 47R 22pF LCD_D14 17 G5 100nF L901 100nF G5 26 LCD_D14 G4 G4 RST RST LCD_D13 16 G3 EMI G3 27 LCD_D13 CN901 GND RP902A D15 LCD_D15 CP902A LCD_D12 15 G2 G2 28 LCD_D12 LCD_D15 16 15 RP902B D14 LCD_D14 CP902B LCD_D11 14 29 LCD_D11 LCD_D14 14 13 RP902C D13 LCD_D13 CP902C LCD_D10 13
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PDF
494703_DS.pdf
MAX UNITS (Note 2) SWITCH Analog Signal Range VS_ VD (Note 3) -15 15 V C, D 20 35 Drain-Source V+ = 13.5V, V- = -13.5TA= +25°C RDS(ON) VD = ±10V, A 20 30 Ω On-Resistance IS= -10mA TA= T MINto MAX 45 On-Resistance Match V+ = 15V, V- = -15V, TA= +25°C 3 Between Channels ∆RDS(ON) VD = ±10V, Ω (Note 4) I
in „Maxim DG 419“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10134fd.pdf
VO= ±10V, RL= 2k 1.5 8.0 1.2 7.0 V/µV VO = ±10V, L = 600Ω 0.8 2.5 0.5 2.0 V/µV Input Voltage Range 13.5 13.8 13.5 13.8 V –15.0 –15.3 –15.0 –15.3 V CMRR Common Mode Rejection Ratio V = 13.5V, –15.0V 100 117 97 114 dB CM PSRR Power Supply Rejection Ratio VS= ±2V to ±18V 103 120 100 117 dB Channel Separation
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hauptplatine.pdf
32kHz X2 SQW/OUT 0 P7OP7 12 10 PIU204 BT1T1 PIP701 GND C11 C12 GND Battery POT4 PIP702 1 10 Cap 10 Cap DS1307 T4 2 P2P 12.5pF 12.5pF 02 Taster P6OP6 PIP208010 9 PIP207 VCC PIP601 GND PIP206 8 7 PIP205 PIP602 1 VCC PIP204 6 5 PIP203 I0 GND POT3 2 PIP202 4 3 PIP201 U1U1 R2R2 VCC Taster 2 1 Res2 P9 P55 ISP
in „AVR Wecker mit Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IMAX_sch.pdf
200k . VT7 R11 C4 í MMBTA64 68k 0.1uF È VT6 R4 DTC114YKA R8 100k R5 10k 10k R27-R32 120 R12 100k R13 C2 ¹ 100k 0.1uF R7 X4 â R22 3k R23 200k VT3 100k 1S7B-XH-A è MMBTA64 2 ì VT2 3 ç DTC114YKA 4 Â R16-R21 120 5 6 7 ò ä . ä Ï Ëèò. Ìàññà Ìàñøòàá Èçì. Ëèñò ¹ äîêóì. Ïîäï. Äàòà Óñòðîéñòâî çàðÿäíîå Ò Ðàçðàá
in „Voltcraft B6AC - Chip aufgeraucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IMAX_sch.pdf
200k . VT7 R11 C4 í MMBTA64 68k 0.1uF È VT6 R4 DTC114YKA R8 100k R5 10k 10k R27-R32 120 R12 100k R13 C2 ¹ 100k 0.1uF R7 X4 â R22 3k R23 200k VT3 100k 1S7B-XH-A è MMBTA64 2 ì VT2 3 ç DTC114YKA 4 Â R16-R21 120 5 6 7 ò ä . ä Ï Ëèò. Ìàññà Ìàñøòàá Èçì. Ëèñò ¹ äîêóì. Ïîäï. Äàòà Óñòðîéñòâî çàðÿäíîå Ò Ðàçðàá
in „Lipo Akku Lade/Entladen mit dem CC/CV Ladeverfahren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
19230ds.pdf
with JEDEC SPEC J-STD-020 PHYSICAL CHARACTERISTICS Size: 64-pin Quad Flat Pack in(mm) 0.52 x 0.52 (13.2 x 13.2) WEIGHT oz(g) 0.018 ( 0.5 ) Notes: 1. 14 bit resolution: 15/16 disabled, 12 bit resolution: 13/14, 15/16 disabled, 10 bit resolution: 11/12, 13/14, 15/16 disabled 2. In LVDT mode, Bit 3 is the
in „Stimulierung des Resolvers RD-19230“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lnk302_304-306-179954-2.pdf
LNK304 J 24 27.6 I = 25 mA ON-State D TJ= 100 °C 38 44.2 RDS(ON) W Resistance LNK305 TJ= 25 °C 12 13.8 D = 35 mA TJ= 100 °C 19 22.1 T = 25 °C 7 8.1 LNK306 J I = 45 mA T = 100 °C D J 11 12.9 V = 6.2 V, V ≥2 V, LNK302/304 50 OFF-State Drain BP FB Leakage Current IDSS V DS= 560 V, LNK305 70 mA TJ= 25 °
in „AC/DC Wandler auf Zeitschaltuhr durchgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Klimasteuerung.pdf
VDD 9 FRM12 14 NSEL/ NINT 11 D 2 13 V NIRQ IC3 SCK 1 SDO NRES 6 1 SDA VDD 8 12 SDI RFM12 2 SCL 7 3 3 6 A0 TOUT FSK/DATA/NFFS e e A1 4 DCLK/CFIL/FFIT p p 5 A2 GND 4 1 KS 1 K S 2 5 D D 8 0 R 0 R DS1621 CLK N N ANT N 1 1 G G N r r E p p T
in „Wo werden 0,72 mA verbraucht??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
platine_unten.pdf
1 1 1 1 1 1 1 9 8 7 6 5 4 3 2 1 1 J 4 4 0 0 ATMEGA328-20P 0 0 k 5 4 8 4 2 0 rN r N R1 1 23 R 1 4 0 DS1 S 1 PC6(/RESET/PCI14) (PCI8/ADC0)PC0 R 1 k L1(230V) 15V1 24 6 0 1 1 1 1 1 d d 10k 22 (PCI9/ADC1)PC1 25 2 2 R 1 2 p p AGND (PCI10/ADC2)PC2 1 1 1 S S + C2 21 26 N N N F AREF (PCI11/ADC3)PC3 L1(230V)1 9V1 195V1 4 4 p 20 AVCC (PCI12/ADC4/SDA)PC4 27 O O O N 15V2 0 0 330uF 4 2 28 C C C 4 4 C 2 (PCI13/ADC5/SCL)PC5 A A A 1 1 1 1 1 6 7 R 1 2 R 1 2 R 1 2 D 1 D 1 z 1 1 9 k k k S S H Q PB6(XTAL1/TOSC1/PCI6) 0 1 0 2 0 3 N1 9V2 195V2 p M 3 0 S 5 0 S 7 0 S r r 5 2 6 10 R 1 3 4 R 1 3 4 R 1 3 4 S S C 2 1 2
in „Nixie Uhr Probleme :-(“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
schematic.pdf
GND/SN R 1BC557 1M A 0 R19 A 9V BATTERY + R 1 - B1 2 7 9VSNAP R 4 V MORETHANALL-PH-D-02-LF T1 9 BC547DS BLUE 5MM 100K R5 LD1 3V3(4V7 FOR RED LED) 9V 9V_FOR_CENTER 9V GND C2 C4 R7 C14 390E ZD1 220µf 104 10µf POWER / BATT. LEVEL D G FOOTSWITCH D D D SW2 G G G R DPDT-7MDLPBB13M2QESTO-CONNECTOR T E INPUT_TO_BUFFER
in „Optokoppler?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
A--DS10-gP16-LMK62-SD_b.h
,t07vk,t07nk,t08vk,t08nk,t09vk,t09nk,t10vk,t10nk,t11vk,t11nk,TempUB_M1; unsigned char t12vk,t12nk,t13vk,t13nk,t14vk,t14nk,t15vk,t15nk,t16vk,t16nk,TempUB_M1; void loeschenFKA(void) { P6OUT = 0x40; // RS+E =H H L L RS=L für Befehlsregister P1OUT = 1; //IO1....IO8 = 1 löscht Anzeige P6OUT = 0x00; // E =
in „Sende/Empfangsvorgang mittels nur 1St. µC“ · Mikrocontroller und Digitale Elektronik ·
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ltn154x3-l06.pdf
LCD panel Center of the screen [ Optical characteristics measurement setup ] Note 6) Definition of 13 points white vδrL), [n ( ~ 13 ] Maximum luminance of 13 points δL = Minimum luminance of 13 points 10mm 10mm 320 640 960 10mm 13 12 11 10 9 200 8 7 6 400 : test point 5 4 600 (lines) 3 2 1 10mm Samsung
in „BeagleBoard LVDS Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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FUTABA_LCD_Emulators.pdf
REV: LCD EMULATORS A1.7 FUTABA CORPORATION OF AMERICA DATE PRINTED: SHEET: SCHAUMBURG, IL. 05/31/00 13 OF 34 RS tAS tAH R/W tr tf PW EH E PW EL tDS tDH DB0-DB7 tCYCE Figure 3. Motorola M68-Type Parallel Interface Write Cycle Timing RS tAS tAH R/W tr tf PW EH E PW EL tDD tDHR DB0-DB7 tCYCE Figure 4. Motorola
in „AVR Futaba Parallel "I80-Type" adaptieren auf "M68-Type"“ · Mikrocontroller und Digitale Elektronik ·
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Futaba_LCD_Emulators.pdf
REV: LCD EMULATORS A1.7 FUTABA CORPORATION OF AMERICA DATE PRINTED: SHEET: SCHAUMBURG, IL. 05/31/00 13 OF 34 RS tAS tAH R/W tr tf PW EH E PW EL tDS tDH DB0-DB7 tCYCE Figure 3. Motorola M68-Type Parallel Interface Write Cycle Timing RS tAS tAH R/W tr tf PW EH E PW EL tDD tDHR DB0-DB7 tCYCE Figure 4. Motorola
in „Hat schon jemand was mit dem FUJITSU VF60 Display gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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858D_RevEng_Schematic.pdf
P2 PD6CPI60 PR022PI2 -14V 0V 470R B 25V 1N4007 B R13 R14 Reed Switch PR0 PI3 P11 PR0 5V0 1 680R 100R r XFMR P1 U4 P0C22 P C13 c PIU03 T431 ?µ 47u Niv 22 P0?V P2?V e Circuit Notes 0V Up Switch PIW0 PIW0 Front Panel - Between different manufacturers of the
in „Heißluftlötstation für Gelegenheitsgebrauch“ · Mechanik, Gehäuse, Werkzeug ·
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oliver_ds1820.c
sensor den bus wieder auf low zieht r = (bit_is_clear(T_PIN, T_DQ) ? 1 : 0); // bit clear also muss der DS18B20 den pin auf low gezogen haben T_OUTPUT; // als ausgang setzen _delay_us(410); #endif return r; } inline void owWriteBit(uint8_t bit_value) { cli(); T_OUTPUT; if (bit_value) // Write 1 { T_LOW; /
in „1Wire Problem - mal wieder - mit DS18B20 in C“ · Mikrocontroller und Digitale Elektronik ·
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VN02N.pdf
VN02N HIGH SIDE SMART POWER SOLID STATE RELAY TYPE VDSS R DS(on) OUT VCC VN02N 60 V 0.4 6 A 26 V OUTPUT CURRENT (CONTINUOUS): 6A @ Tc=25 C 5V LOGIC LEVEL COMPATIBLE INPUT THERMAL SHUT-DOWN UNDER VOLTAGE SHUT-DOWN OPEN DRAIN DIAGNOSTIC OUTPUT PENTAWATT PENTAWATT
in „Schottky-Diode gegen "reverse supply"“ · Mikrocontroller und Digitale Elektronik ·
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spansion_inc_am29f040b_eol_21445e8-3004346.pdf
.............. 12 Command Definitions............................................................. 13 PLCC Pin Capacitance . . . . . . . . . . . . . . . . . . . . . 30 Table 4. Am29F040B Command Definitions....................................13 Data Retention. . . . . . . . . . . . . . . . . . . . .