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PDF
SSD1332_R1.61.pdf
chip is executed. D/C This pin is Data/Command control pin. When the pin is pulled high, the data at D -D 7s 0reated as display data. When the pin is pulled low, the data at D 7-D 0ill be transferred to the command register. For detail relationship to MCU interface signals, please refer to the Timing
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR910JS_2313_v3_3.asm
.db 0x44,'P' ;ATmega64 .db 0x45,'P' ;* v1.40 ;ATmega64 BOOT .db 0x46,'P' ;* v1.40 0x47 unused yet ;AT90S2323 .db 0x48,0 ;From 0x49-0x4b unused yet ;AT90S2343 .db 0x4C,0 ;From 0x4d-0x4f unused yet ;0x50,0x51 used. From 0x52-0x54 unused yet ; ;ATtiny12 .db 0x55,0 ;ATtiny15 .db 0x56,0 ;0x57 unused yet ;
in „AVR - suche Datei avr910.asm von Atmel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_Programmer_V3.pdf
USB port. The product needs assembled and welded by yourself. Features Summary: 1. IC Programmer: AT89S51, AT89S52. ATmega8(L),ATmega16(L),ATmega32(L),ATmega64(L) . ATmega88, ATmega168. 24C01, 24C02, 24C04, 24C08, 24C16, 24C32, 24C64, 24C128, 24C256, 24C512. 2. Logic Test: Eight Channels, measure Logic
in „USB Programmer für unter 15€“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bauteile_verkauf_1120.pdf
(Tray) 5,- LPC3130FET180 NXP (ARM9) BGA 1 4,- LPC3250FET296 NXP (ARM9) BGA 1 4,- Mikrocontroller: AT91SAM7S32AU (ARM7) QFP48 2 3,- AT91SAM7S256AU (ARM7) QFP64 18 (Box) 4,- AT91SAM7S256AU (ARM7) QFP64 20 (Tray) nur alle zusam.50,- für 20 Stk. AT91SAM7X128AU (ARM7) QFP100 1 5,- AT91SAM7XC128AU (ARM7)
in „[V] ICs, Mikrocontroller etc. aus Lagerräumung“ · Markt ·
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PDF
PSE1800_a-_Schaltplaene.pdf
OE 3 : sabenUd ey) ssig 1e5% Lg oe fl a. MOS on (w) i yla 4 eeeS s be = 4 Idjlaj4 elf) lait - 44-523— oe ot | oA ea lee | — oe | | | | i i, Fe 52° 1) -— iees. x 52.1719.(05)00 Bestuckungsplan PSE1800 SchnittstellenkartAnlage803 ae mM pe = el a NILO ~~. P ttt et a
in „AEG - Telefunken E1800 mit PIO 1200 Schnittstelle.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ECG003.pdf
150.44 4500 -9.20 147.71 16.71 0.41 -18.62 -41.28 -4.19 128.81 5000 -7.76 120.30 15.97 -19.87 -18.16 -52.98 -3.10 107.78 5500 -6.63 92.76 14.85 -40.81 -18.05 -66.03 -2.28 87.09 6000 -5.54 70.28 13.49 -59.45 -18.34 -79.15 -1.78 67.70 Device S-parameters are available for download off of the website at: http
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PDF
ECG003.pdf
3000 500 1000 1500 2000 500 1000 1500 2000 2500 3000 Frequency(MHz) Frequency(MHz) Frequency(MHz) S-Parameters (Vdevice+7.2 V, ICC= 110 mA, T = 25 °, calibrated to device leads) Freq (MHz) S11 (dB) S11 (ang) S21 (dB) S21 (ang) S12 (dB) S12 (ang) S22 (dB) S22 (ang) 50 -20.36 -0.18 20.46 177.69 -23.19
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PDF
Crystal_Motional_Parameters.pdf
capacitance is in farads (1pF Farads), f and Δf are in Hz, Lm is in Henries. Sample calculation with S&A calibrated crystal: Measured Parameters Switch closed: 20016843 Hz Switch open: 20023109 Hz Δf = 6266 Hz C0 = 5.52 pF = 5.52*101F (measured with Boonton model 250A RX meter at 1 MHz) Cs = 34.1 pF =
in „40 kHz Oscillatorschaltung schwingt nicht an“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Crystal_Motional_Parameters.pdf
capacitance is in farads (1pF Farads), f and Δf are in Hz, Lm is in Henries. Sample calculation with S&A calibrated crystal: Measured Parameters Switch closed: 20016843 Hz Switch open: 20023109 Hz Δf = 6266 Hz C0 = 5.52 pF = 5.52*101F (measured with Boonton model 250A RX meter at 1 MHz) Cs = 34.1 pF =
in „Messen von Quarz-Parametern - Probleme“ · HF, Funk und Felder ·
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PDF
MRF89XAM8A.pdf
Figure 2-2 illustrates the MRF89XAM8A schematics. Table 2-1 details the Bill of Materials (BOM). The MRF89XAM8A module interfaces to Microchip’s PIC16, PIC18, PIC24, dsPIC33 and PIC32 microcontrollers with a minimum of external components
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
STC89C51RC-en.pdf
memory for program and data storage in the STC89xx series MCU. The lower 4K for the STC89C51RC(8K for the STC89C52RC,16K for STC89C54RC, etc.) may reside on chip. The design allows users to configure it as like there are three individual partition
in „stc89c52rc programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Startbildschirm der Software AVR Studio 4
Value Welcome to AVR Studio 4 Select debug platform and device Debug platform: Device: AVR Dragon AT86RF401 AVR ONE! AT89S51 AVR Simulator AT89S52 AVR Simulator 2 AT90CAN128 ICE200 AT90CAN32 ICE40 AT90CAN64 ICE50 JTAG ICE AT90PWM1 JTAGICE mkII AT90PWM216 AT90PWM28 AT90PWM3 Port: Auto Open platform options
in „AT89S52 mit AVRisp MKII auslesen / flashen“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
VSS AT2 BA18 VSS VSS F32 AL38 VSS VSS AT20 BA2 VSS VSS F33 AL4 AT23 BA23 F35 AL45 VSS VSS AT28 BA28 VSS VSS F37 AL48 VSS VSS AT35 BA32 VSS VSS F38 AL52 VSS VSS AT4 BA36 VSS VSS F4 AL55 VSS VSS AT42 F68 VSS
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
70622B.pdf
two implications: • If the Bit Rates of Transmitter and Receiver are known to be the same, the MRF89XA will be able to receive an infinite unbalanced sequence (all ‘0’s or all ‘1’s) with no restriction. • If there is a difference in Bit Rate between TX and RX, the amount of adjacent bits at the same
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PDF
70622B.pdf
two implications: • If the Bit Rates of Transmitter and Receiver are known to be the same, the MRF89XA will be able to receive an infinite unbalanced sequence (all ‘0’s or all ‘1’s) with no restriction. • If there is a difference in Bit Rate between TX and RX, the amount of adjacent bits at the same
in „Wie genau funktioniert die drahtlose Kommunikation?“ · HF, Funk und Felder ·
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Datei
LCD_2X16.C
* // Für 8051-Microcontroller, z.B. AT89C51ED2 oder AT89S8253 // Frequenz: 11.0592 MHz // Code-Speicherbedarf: ca. xxkByte, keine XRAM-Verwendung // Das Programm verwendet nur 8051/52 Standard-SFRs und wurde // mit dem AT89C51ED2 getestet
in „44780 initialisierung klappt nicht (8051, Keil)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8052AH-BASIC_Users_Manual.pdf
routines calculate the address of the source and 290 REM eprom location that failed to program 300 S1=DBY(25)+256*DBY(27) : S1=S1-1 : D1=DBY(24)+256*DBY(26) 310 PH0. "THE VALUE ",XBY(S1), : PH1. " WAS READ AT LOCATION ",S1 : PRINT 320 PH0. "THE EPROM READ ",XBY(D1), : PH1. " AT LOCATION ",D1 : END 330
in „Was ist das für eine Platine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fronius_tp1500_inventor_sm.pdf
service manual. Any malfunctions which might impair machine safety must be eliminated immediately. It’s your safety that’s at stake! 7 Utilisation for The power source may only be used for jobs as defined by the “Intended intended purpose purpose” (see the section of the Operating Instructions headed “
in „SMD Zenerdiode, welcher wert? (SMPS)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
AVR910JS_2313_v3_3_STK500.asm
P' ; ;ATmega64 ; .db 0x45,'P' ;* v1.40 ; ;ATmega64 BOOT ; .db 0x46,'P' ;* v1.40 0x47 unused yet ; ;AT90S2323 ; .db 0x48,0 ;From 0x49-0x4b unused yet ; ;AT90S2343 ; .db 0x4C,0 ;From 0x4d-0x4f unused yet ; ;0x50,0x51 used. From 0x52-0x54 unused yet ; ; ; ;ATtiny12 ; .db 0x55,0 ; ;ATtiny15 ; .db 0x56,0
in „STK500 spinnt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRISPmkII_UG.pdf
user to upgrade AVRISP mkII The following devices are supported: Tiny Mega Other ATtiny12 ATmega48 AT86RF401 ATtiny13 ATmega8 AT89S51 ATtiny15 ATmega88 AT89S52 ATtiny22 ATmega8515 AT90PWM2 ATiny2313 ATmega8535 AT90PWM3 ATtiny24 ATmega16 AT90CAN32 ATtiny26 ATmega162 AT90CAN128 ATtiny45 ATmega165 ATtiny861
in „AVRISP mkII - 10-polig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRISPmkII_UG.pdf
user to upgrade AVRISP mkII The following devices are supported: Tiny Mega Other ATtiny12 ATmega48 AT86RF401 ATtiny13 ATmega8 AT89S51 ATtiny15 ATmega88 AT89S52 ATtiny22 ATmega8515 AT90PWM2 ATiny2313 ATmega8535 AT90PWM3 ATtiny24 ATmega16 AT90CAN32 ATtiny26 ATmega162 AT90CAN128 ATtiny45 ATmega165 ATtiny861
in „ISP Leiterbahnen an ATMega328 funktionieren nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
via_datasheet.pdf
system. (2) If the temperature goes below the high limit (ex: 58°C), but above the low limit (ex: 52°C), the fan speed will be fixed at the current speed because the temperature is in the target area(ex: 52 °C ~ 58°C). (3) If the temperature goes below the low limit (ex: 52°C), Fan output will decrease
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PDF
SSD1327-datasheet.pdf
example: Scroll RIGHT by 1 column G G G G G G … … … 2 2 2 2 2 2 Original SettingE E E E E E G G G G G G S S S S S S E E E E E E S S S S S S 7 1 3 4 5 6 After one scroll1 0 1 2 3 4 1 1 1 1 1 1 step G G G G G G G G G G G G S S S S S S … … … S S S S S S Figure 10-17 : Horizontal scroll example: Scroll LEFT by 1 column 0 1 2 3 4 5 3 4 5 6 7 Original E E E E E E … … … 1 1 1 1 1 1 S S S S S S E E E E E E Setting S S S S S S 1 2 3 4 5 6 3 4 5 6 7 0 G G G G G G … … … 1 1 1 1 1 G After one S S S S S S G G G G G S scroll step S S S S S Figure 10-18 : Horizontal scrolling setup example
in „OLED-Display SPI Psoc4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1327-datasheet.pdf
example: Scroll RIGHT by 1 column G G G G G G … … … 2 2 2 2 2 2 Original SettingE E E E E E G G G G G G S S S S S S E E E E E E S S S S S S 7 1 3 4 5 6 After one scroll1 0 1 2 3 4 1 1 1 1 1 1 step G G G G G G G G G G G G S S S S S S … … … S S S S S S Figure 10-17 : Horizontal scroll example: Scroll LEFT by 1 column 0 1 2 3 4 5 3 4 5 6 7 Original E E E E E E … … … 1 1 1 1 1 1 S S S S S S E E E E E E Setting S S S S S S 1 2 3 4 5 6 3 4 5 6 7 0 G G G G G G … … … 1 1 1 1 1 G After one S S S S S S G G G G G S scroll step S S S S S Figure 10-18 : Horizontal scrolling setup example
in „OLED Stromverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
block-cordic.asm
, DW_AT_name("A23") .dwattr $C$DW$50, DW_AT_location[DW_OP_regx 0x2c] $C$DW$51 .dwtag DW_TAG_TI_assign_register, DW_AT_name("A24") .dwattr $C$DW$51, DW_AT_location[DW_OP_regx 0x2d] $C$DW$52 .dwtag DW_TAG_TI_assign_register
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
gamer.txt
; ; DDS generator ; ; SINE and TRIANGLE based on ... ; -------------------------- ; Jesper Hansen's <jesperh@telia.com>.miniDDS ( 2000 ) ; and a thread at http://www.mikrocontroller.net/topic/244609#new ; many thanks to guest Ulrich ; ; SLOW version * ; ...four times better resolution on phase ; ..
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
map44_46xya_pinout.pdf
. MAP 440yA Pin Descriptions I2C_DA – I C Data Input/Output (Fig. 4–14) At this pin the I C bus data is written to or read from NC – Pin not connected. the MAP. I2C_CL – I C Clock Input/Output (Fig. 4–14) I2S_CL – I S Clock Input/Output (Fig. 4–15) 2 2 At this pin I C bus clock
in „suche Datenblatt/Pinbelegung für Micronas MAP5401“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dw_programming_dragon.txt
0x90 0xcf 0x 91 0xdf 0x91 0x08 0x95 0xdf 0x93 0xcf 0x93 0x00 0xd0 0xcd 0xb7 0xde 0xb7 0x9a 0x 83 0x89 0x83 0x0a 0xc0 0xe9 0x81 0xfa 0x81 0x20 0x81 0x89 0x81 0x9a 0x81 0x01 0x 96 0x9a 0x83 Reading | ########################################## | 83% 1.52savrdude: jtagmkII_paged_load(.., flash, 64, 64) avrdude
in „avrdude fuses aus debugwire schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asl_unterstuetzte_prozessoren.txt
8096 80196 80196N 80296 8080 8085 8085UNDOC 8086 80186 V30 V35 80960 8X300 8X305 2650 XAG1 XAG2 XAG3 AT90S1200 AT90S2313 AT90S2323 AT90S2333 AT90S2343 AT90S4414 AT90S4433 AT90S4434 AT90S8515 AT90C8534 AT90S8535 AT90USB646 AT90USB647 AT90USB1286 AT90USB1287 AT43USB355 ATTINY4 ATTINY5 ATTINY9 ATTINY10 ATTINY11
in „gas as a68 m68k - was nimmt man ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP785-D.pdf
and ultra−low AYW quiescent current. The NCP785 family is optimized for high−voltage SOT−223 XXXXXG S SUFFIX line and load transients, making them ideal for harsh environment CASE 318E G applications. 1 2 3 The NCP785 is offered in fixed output voltage options 3.3 V and 5.0 V. Tab SOT−223 and SOT−89
in „Linearregler >= 40V Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
pduconv.c
uppercase O */ 80, /* 80 P uppercase P */ 81, /* 81 Q uppercase Q */ 82, /* 82 R uppercase R */ 83, /* 83 S uppercase S */ 84, /* 84 T uppercase T */ 85, /* 85 U uppercase U */ 86, /* 86 V uppercase V */ 87, /* 87 W uppercase W */ 88, /* 88 X uppercase X */ 89, /* 89 Y uppercase Y */ 90, /* 90 Z uppercase
in „HD44780, Mega88@8MHz - komische Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
88DDS.txt
; ; DDS generator ; ; SINE and TRIANGLE based on ... ; -------------------------- ; Jesper Hansen's <jesperh@telia.com>.miniDDS ( 2000 ) ; and a thread at http://www.mikrocontroller.net/topic/244609#new ; many thanks to guest Ulrich ; Resolution on phase, frequency and voltage is improved. ; True 8
in „DDS Sinus erzeugung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Roland-G-70-Service-Manual.pdf
S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S SER 52P M M M M M M M M D A 0 J 5 5 V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland_G-70_Service_Notes_.pdf
7 8 8 9 0 1 2 3 4 0 32FA 22DD 5AD 41FA 1 1 1 1 1 0 32EA 32DD 6AD 41EA 0 32DA 42DD 7AD 51EA - 42FA 52DD 8AD 51DA D G 42EA 62DD 9AD 61FA L 52FA 72DD 01AD 61EA X B 52EA 82DD 0ABD 71FA W T 92DD 1ABD 2 52DA 03DD 11AD 71EA U V V 62EA 13DD C C C C C C C C C C C C C C C C C C C C C S S S S S S S S S S S S S
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZFDC-20-5.pdf
2000.00 1.91 19.34 18.40 18.91 17.73 10.05 ZFDC-20-5 ZFDC-20-5 MAINLINE LOSS COUPLING & DIRECTIVITY at RF level of -10 dBm 2.0 60 at RF level of -10 dBm ) T COUPLING DIRECTIVITY d1.6 I 50 S C S1.2 R 40 L D B N0.8 & (0 L I 20 A P M0.4 U 10 C 0.0 0 0 400 800 1200 1600 2000 0 400 800 1200 1600 2000 FREQUENCY (MHz) FREQUENCY (MHz) ZFDC-20-5 RETURN LOSS electrical schematic at RF level of -10 dBm 40 ) IN OUT CPL d32 S S24 L R16 U E R 8 0 0 400 800 1200 1600 2000 FREQUENCY (MHz) ® INTERNET http://www.minicircuits.com REV. OR M93827 Mini-Circuits P.O. Box 350166, Brooklyn, New
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PDF
ZFDC-20-5.pdf
2000.00 1.91 19.34 18.40 18.91 17.73 10.05 ZFDC-20-5 ZFDC-20-5 MAINLINE LOSS COUPLING & DIRECTIVITY at RF level of -10 dBm 2.0 60 at RF level of -10 dBm ) T COUPLING DIRECTIVITY d1.6 I 50 S C S1.2 R 40 L D B N0.8 & (0 L I 20 A P M0.4 U 10 C 0.0 0 0 400 800 1200 1600 2000 0 400 800 1200 1600 2000 FREQUENCY (MHz) FREQUENCY (MHz) ZFDC-20-5 RETURN LOSS electrical schematic at RF level of -10 dBm 40 ) IN OUT CPL d32 S S24 L R16 U E R 8 0 0 400 800 1200 1600 2000 FREQUENCY (MHz) ® INTERNET http://www.minicircuits.com REV. OR M93827 Mini-Circuits P.O. Box 350166, Brooklyn, New
in „China 1-700MHz / 35dB Power-Amp“ · HF, Funk und Felder ·
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PDF
DD077-A705_D.pdf
range 2.7V ~ 12V. APPLICATIONS 2KV HBM ESD protection. Power LED Driver Advanced Bi-CMOS process. SOT-89 and TO-252 package available. LED Miner’s Lamp Compatible withAMC7135. TYPICAL APPLICATION CIRCUIT PACKAGE PIN OUT V IN VDD V VDD DD GND GND C IN OUT 1uF A705 OUT OUT GND CO 1uF SOT-89 TO-252 GND (Top
in „Ikea Sunnan Schematic?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TRW-24G.pdf
0X3F,A MOV A,@0X10 MOV 0X4,A CLEAR_REG: CLR0X0 INC 0X4 DJZ 0X3F JMP CLEAR_REG MOV A,@0X3 MOV 0X10,A S_LED_TEST: MOV A,@0X0FF MOV 0X11,A S_LED_TEST1: CALL DELAY1MS CALL DELAY1MS WDTC JBS 0X11,7 JMP S_LED_OFF BS P5,0 ;LED BS P5,1 ;LED JMP S_SKIP S_LED_OFF: BC P5,0 ;LED BC P5,1 ;LED S_SKIP: DJZ 0X11 JMP
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PDF
littelfuse-PTC-Rline-Catalog.pdf
5s at 260°C ±5°C All Other Sizes : per IEC-STD 68-2-20,TestTb, Method 1a, Condition b; RKEF Can Withstand 10s at 260°C ±5°C Insulating Material Cured, Flame-retardant Epoxy Polymer; Meets UL 94V-0 OperationTemperature
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
910.asm
0x58 ;tn19 ;new ; .dw 0x5C ;tn28 Only supported in parallel Programming Mode! .dw 0x68 ;S8535 .dw 0x6C ;S4434 ;new ; .dw 0x70 ;S8534 unknown Hardware, untested! ; .dw 0x71 ;S8544 unknown Hardware, untested! ; .dw 0x80 ;AT89C1051 unknown Hardware, untested! ; .dw 0x81 ;AT89C2051 unknown Hardware, untested! .dw 0x86 ;AT89S8252 unknown Hardware, untested! .dw 0x87 ;AT89S53 unknown Hardware, untested! .dw 0x00 ;End of table Dev_M: ; page write .dw 0x3A ;m8515 ;new ; .dw 0x3B ;m8515boot Bootloader Mode untested! .dw 0x41
in „avr910 programmer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP1700.pdf
PD(MAX) = (125°C - 40°C) / 230°C/W Input Voltage PD(MAX) = 369.6 milli-Watts V IN= 2.3V to 3.2V SOT-89 (52°C/Watt = R )JA LDO Output Voltages and Currents PD(MAX) = (125°C - 40°C) / 52°C/W V = 1.8V P = 1.635 Watts OUT D(MAX) IOUT = 150 mA TO-92 (131.9°C/Watt = R )JA Maximum Ambient Temperature PD(MAX
in „ESP-01 mit LiPo betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1332.pdf
SA59 183 SA27 279 COM16 375 RES 16 COM39 47 SC90 88 SC58 184 SC26 280 COM18 376 CS# 17 COM37 48 SB90 89 SB58 185 SB26 281 COM20 377 IREF 18 COM35 49 90 186 282 COM22 378 SA90 SA58 SA26 BS2 19 COM33 50 SC89 91 SC57 187 SC25 283 COM24 379 BS1 20 COM31 51 SB89 92 SB57 188 SB25 284 COM26 380 VDD 21 COM29 52
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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PDF
DC02EN.pdf
IA210x www.electrocraft.com Build Your Own ElectroCraft Motor To Fit Your Exact Application B u il d r s For the past 60 years, the global team at ElectroCraft has y o u Easily build your own motor at o w ! www.configureamotor.com helped engineers like you translate innovative ideas into n reality. To build
in „[V] 2 Elektromotoren“ · Markt ·
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PDF
Low_Drop_Spannungsregler_MCP_1702-5002.pdf
V OUT = 1.8V SOT-89 (52°C/Watt = Rθ ) IOUT = 150 mA JA PD(MAX) = (+125°C - 40°C) / 52°C/W Maximum Ambient Temperature T = +40°C PD(MAX) = 1.635 Watts A(MAX) TO92 (131.9°C/Watt = Rθ JA Internal Power Dissipation PD(MAX)
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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
Min COM pad pitch 40um Bump height Nominal 12um Bump size Pad 1, 106, 124, 256 80um x 50um Pad 2-18, 89-105, 107-123, 257-273 25um x 80um S Pad 19-88 40um x 89um Pad 125-255 31um x 59um S Pad 274-281 (TR pads) 30um x 50um D marknment Position Size + shape (-2973, 0) 75um x 75um 1 + shape (2973, 0) 75um
in „Spannungsversorgung Arduino läuft nicht über Vin oder 5V-Pin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_Display_driver_chip_SSD1306_DataSheet.pdf
Min COM pad pitch 40um Bump height Nominal 12um Bump size Pad 1, 106, 124, 256 80um x 50um Pad 2-18, 89-105, 107-123, 257-273 25um x 80um S Pad 19-88 40um x 89um Pad 125-255 31um x 59um S Pad 274-281 (TR pads) 30um x 50um D marknment Position Size + shape (-2973, 0) 75um x 75um 1 + shape (2973, 0) 75um
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
SSD1306.pdf
Min COM pad pitch 40um Bump height Nominal 12um Bump size Pad 1, 106, 124, 256 80um x 50um Pad 2-18, 89-105, 107-123, 257-273 25um x 80um S Pad 19-88 40um x 89um Pad 125-255 31um x 59um S Pad 274-281 (TR pads) 30um x 50um D marknment Position Size + shape (-2973, 0) 75um x 75um 1 + shape (2973, 0) 75um
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
Min COM pad pitch 40um Bump height Nominal 12um Bump size Pad 1, 106, 124, 256 80um x 50um Pad 2-18, 89-105, 107-123, 257-273 25um x 80um S Pad 19-88 40um x 89um Pad 125-255 31um x 59um S Pad 274-281 (TR pads) 30um x 50um D marknment Position Size + shape (-2973, 0) 75um x 75um 1 + shape (2973, 0) 75um
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Solomon_Systech_LED_Display_driver_chip_SSD1306.pdf
Min COM pad pitch 40um Bump height Nominal 12um Bump size Pad 1, 106, 124, 256 80um x 50um Pad 2-18, 89-105, 107-123, 257-273 25um x 80um S Pad 19-88 40um x 89um Pad 125-255 31um x 59um S Pad 274-281 (TR pads) 30um x 50um D marknment Position Size + shape (-2973, 0) 75um x 75um 1 + shape (2973, 0) 75um
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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PDF
BZX399.pdf
DIODE CAP. NON-REPETITIVE PEAK VOLTAGE CHANGE SZ (mV/K) Cd (pF) REVERSE CURRENT V (V) V (V) I = 50 A at f = 1 MHz; I (A) at t = 100 s; BZX399-C Z Z Z ZSM p XXX Z = 50 A (note 1) (see Figs 2, 3 and 4) VR = 0 V Tamb = 25 °C Tol. ±5% MIN. MAX. MAX. TYP. MAX. MAX. 1V8 1.71 1.89 0.65 −0.85 425 6.0 2V0 1.90
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·