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VHF-COMM.1983.3.pdf
g l .oYG POS1OOl-:s70 jo·132-1LYSAKER Posr~W C>~(V:1 16 00 09 orders 01 Individual copies. our· Sou th Africa chas e of PC·boards and advertised SA.Publications . PO Bo.- 2232 JOHANNES· special components. aoveruse BURG 2000 . TE"h~DhO()('22-l4~6 Sp am t
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MGA52543.pdf
13.19 4.57 112.76 -25.29 0.054 -16.23 0.37 -54.81 1.36 2.2 0.61 -80.55 13.10 4.52 109.97 -25.48 0.053 -16.15 0.37 -56.73 1.39 2.3 0.61 -84.18 13.02 4.48 107.22 -25.69 0.052 -16.20 0.36 -58.62 1.42 2.4 0.61 -
in „Wie ist ein MMIC intern aufgebaut?“ · HF, Funk und Felder ·
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Cyclone_IV_OCT.pdf
— — — — v 3.0-V LVTTL 4,8,12,16 4,8,12,16 50,25 50,25 50,25 50,25 v 0,1,2 3.0-V LVCMOS 4,8,12,16 4,8,12,16 50,25 50,25 50,25 50,25 v 3.0-V PCI/PCI-X — — — — — — — v 3,4,5,6, 2.5-V 7,8,9 LVTTL/LVCMOS 4,8,12,16 4,8,12,16 50,25
in „On Chip Termination Cyclone IV FPGA“ · FPGA, VHDL & Co. ·
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PDF
CH572DS1_en.PDF
R8_UEP4_1_MOD 0x4000800c Endpoint 1/4 mode control register 0x00 R8_UEP2_3_MOD 0x4000800d Endpoint 2/3 mode control register 0x00 R8_UEP567_MOD 0x4000800e Endpoint 5/6/7 mode control register 0x00 R16_UEP0_DMA
in „Eagle 7.5 Bibliothek - bitte um Prüfung und Hinweise“ · Platinen ·
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PDF
REN_icl7106-07-07s_DST_20251218.pdf
- D2 9 32 COMMON TEST 3 31 C3 OSC 3 4 30 A3 C2 10 31 IN HI NC 5 29 G3 (10’s) B2 11 30 IN LO A2 12 29 A-Z OSC 2 6 28 BP/GND OSC 1 7 27 POL F2 13 28 BUFF V+ 8 26 AB4 E2 14 27 INT D3 15 26 V- D1 9 25 E3 10 24 B3 16 25 G2 (10’s) C1 F3 (100’s
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCA02010-TFN-LNN.pdf
11~16 11. Inspection Criterion 17~20 12. Precautions for Using LCD Modules 21~23 ACCEPTED BY: PROPOSED BY : 2 | P a g e RECORD OF REVISION DATE PAGE SUMMARY 09/30/09 3 Added version #A402 3 | P a g e LCD
in „Ansteuerung "SAMMELBESTELLUNG: 2"2 TFT Display"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMC5072_datasheet.pdf
this means: 𝑇𝑂𝐹𝐹 = (𝑡 𝑂𝐹𝐹 ∗ 𝐶𝐿𝐾 − 12)/32 With 12 MHz clock this gives a setting of TOFF=3.4, i.e. 3 or 4. With 16 MHz clock this gives a setting of TOFF=4.6, i.e. 4 or 5. The hysteresis start setting forces the driver to introduce a minimum amount of current ripple into the motor coils. The
in „TMC5072 SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
simulavr.pdf
are not really available in the AVR-core. These instructions are only supported for convenience (i.e. are pseudo-ops) not actual opcodes for the hardware. For example, CLR R16 is in the real world on the AVR-core EOR R16,R16 which means exclusive or with itself which results also in zero. ▯ operands
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compactflashOnPicArticle.pdf
sive in-circuit debugger is available for these flash memory parts. The basics of the PIC are the same as they are for any other part in the Figure 1—Here is the PIC-to-CompactFlash physical PIC16xxx family, includ- interface. There are eight data lines, three address lines, ing a RISC design with 35
in „COMPACT FLASH-Card“ · Mikrocontroller und Digitale Elektronik ·
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PDF
compactflashOnPicArticle.pdf
sive in-circuit debugger is available for these flash memory parts. The basics of the PIC are the same as they are for any other part in the Figure 1—Here is the PIC-to-CompactFlash physical PIC16xxx family, includ- interface. There are eight data lines, three address lines, ing a RISC design with 35
in „Indentify Drive bei CF-Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD-ADXL345.pdf
Figure4.X-AxisZero gOffsetat25°C,V S =2.5V Figure7.X-AxisZero gOffsetat25°C,V S=3.3V 20 20 18 18 )16 )16 ( ( N N I14 I14 T A L12 L12 U U O O P10 P10 F F O 8 O 8 T N E E C 6 C 6 E E P 4 P 4 2 2 0 5 0 0 –150 –
in „MOSI-Pegel viel zu niedrig, aber warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATmega2560.xml
the signal at the input capture pin -ICP - is detected, the current value of the Timer/Counter4 is transferred to the Input Capture Register - ICR4. At the same time, the input capture flag - ICF4 - is set (one). Since the Input Capture Register - ICR4 - is a 16-bit register, a temporary register
in „Eclipse AVR win32 komplett?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Engeler_DCF77.pdf
markers indicate the maximum noise level where time reception is still possible: Non-filled circle at E =N = 2:7bB fo0 the Goertzel or CIC detector with 1-hour ML-decoder. The filled circle at E =N = 7:4dB b 0 for the Demonstration Receiver. The square at E =N = 31:3dB for conventional low-cost receivers
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PDF
RF_Amplifier_Biasing_DSG_LAB_F06.pdf
2006 (1) Robert J. Weber Maximum Power Conversion Oscillator Design Using Loop Feedback Section 8.4.6 in the text.4 wThe part inside the oscillator will have a load on it that is the same as in the discussion above for the series feedback oscillator. A one-pole resonator will be inserted in the feedback
in „"Active biasing" bei HF-Transistoren“ · HF, Funk und Felder ·
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PDF
eu-ks0066.pdf
) VERSION PAGE E M E R G I N G D I S P L A Y MODEL NO. TECHNOLOGIES CORPORATION E U - K S 0 0 6 6 6 7 4. INTERFACING TO THE MPU The KS0066 can send data in either two 4-bit operations or one 8-bit operation, thus allowing
in „Probleme bei 16x2 LCD mit KS0066 (EW162B0YLY)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VND830SP.pdf
model of a double channel HSD in PowerSO-10 Tj_1 C1 C2 C3 C4 C5 C6 R1 R2 R3 R4 R5 R6 Pd1 C1 C2 Tj_2 R1 R2 Pd2 T_amb D oc ID 10879 Rev 3 22/28 VND830SP-E Package and PCB thermal data Table 16. Thermal parameters Area / island (cm ) Footprint 6 R1 (°C/W) 0.15 R2
in „[V] Highside-Schalter“ · Markt ·
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PDF
Vierzeiliges_Display_DEM20488.pdf
DIAGRAM SE0~40 Vss A COM1~16 LCD P ANE L Vdd VSS - 4Li neX20haract ers V0 VDD U RS V0 6 0 0 R/W RS 6 ~ ~ E R/ W 7 4 1 E T S S DB0…DB7 S DB0~DB7 ST7063 ST7063 A B/ L K Version:3 PAGE: 3 DEM 20488 SYH-PY Product Specification 5. PINASSIGNMENT
in „Probleme mit LCD-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DEM20488SYH-PY.PDF
DIAGRAM SE0~40 Vss A COM1~16 LCD P ANE L Vdd VSS - 4Li neX20haract ers V0 VDD U RS V0 6 0 0 R/W RS 6 ~ ~ E R/ W 7 4 1 E T S S DB0…DB7 S DB0~DB7 ST7063 ST7063 A B/ L K Version:3 PAGE: 3 DEM 20488 SYH-PY Product Specification 5. PINASSIGNMENT
in „LCD Problem im 4-Bit Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP79521.pdf
DS20002300E-page 41 MCP7951X/MCP7952X FIGURE 6-9: EEPROM BYTE WRITE SEQUENCE CS 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 Twc SCK Instruction Address Byte Data Byte SI 0 0 0 0 0 0 1 0 A 7 A6
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VN5160S-E.pdf
Tc (°C) Tc (°C) Figure 10. High level input current Figure 11. Input high level Iih (uA) Vih (V) 5 4 4.5 Vin=2.1V 3.5 4 3 3.5 2.5 3 2.5 2 2 1.5 1.5 1 1 0.5 0.5 0 0 -50 -25 0 25 50 75 100 125 150 175 -50 -25 0 25 50 75 100 125 150 175 Tc (°C) Tc (°C) 16/31 VN5160S-E Electrical specifications Figure 12
in „2 Spannungen mit Mosfets schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BM-ATOM1.0-V1.6.pdf
G 19 REM XI / P4.02 G G G G 19 REM 4 4 4 4 4 4 4 4 XO / P4.1 3 9 9 9 C 18 TVSS XO / P4.1 3 9 9 9 C 18 TVSS P0.0 4 5 5 5 5 17 P2.0/SCLK P0.0 4 5 5 5 5 17 P2.0/SCLK P0.1 5 0 0 1 1 16 P2.1/SDAT P0.1 5 0 0 1 1 16 P2.1/SDAT
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PDF
DS_AT32F421_V2.01_EN.pdf
Datasheet Table 2. AT32F421 features and peripheral counts AT32F421xxP7 AT32F421xxU7 AT32F421xxU7-4 AT32F421xxU7 AT32F421xxT7 AT32F421xxT7 Part number F4 F6 F8 G4 G6 G8 K4 K6 K8 K4 K6 K8 K4 K6 K8 C4 C6 C8 CPU frequency (MHz) 120 Flash (Kbytes) 16 32 64 16 32 64 16 32 64 16 32 64 16 32 64 16 32 64 SRAM
in „Firmware entschlüsseln, Updateprogramm als Hilfe?“ · Softwareentwicklung ·
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PDF
Sartorius_Waage_Manual_Anleitung_Handbuch_QC7DCE-S.pdf
codes 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 * * * E R R * X Y Z * * * * CR LF X = one-place error code: *, 0,1, 2 Y Z = two-place error index code * = space 4–5 Data Output with ID Code When data with an ID code
in „Frage zu einer Waage / Sartorius QC7DCE-S“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
AH31.pdf
enhanced resolution (1) ±0.1 % RH (2) Accuracy 10 .. 90 % RH ±2 % RH & Interchangeability <10, >90 % RH ±4 % RH Nonlinearity 10 .. 90 % RH uncompensated % RH ±3 0 .. 100 % RH compensated ±0.2 % RH Range 0 100 % RH Response time 1/ e (63 %) in slowly moving air 4 s Hysteresis ±1 % RH Long term stability Typical
in „Nachhilfe Taktfrequenzen / Feuchtigkeitssensor AH31 von Sensirion“ · Mikrocontroller und Digitale Elektronik ·
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at89c51ed2.pdf
/PROG P3.2/INT0 14 32 PSEN P3.3/INT1 15 31 P2.7/A15 P3.4/T0 16 30 P2.6/A14 P3.5/T1 17 29 P2.5/A13 18 19 20 21 22 23 24 25 26 27 28 R D 2 1 S * 8 9 0 2 / / A AL S I / A/ / A/A / . . T T V N 2 2 . 3.4 . P P X X P P 2 2 2 P P P / 1 0 X E E C 2 2 D D D D / C/E
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at89c51ed2.pdf
/PROG P3.2/INT0 14 32 PSEN P3.3/INT1 15 31 P2.7/A15 P3.4/T0 16 30 P2.6/A14 P3.5/T1 17 29 P2.5/A13 18 19 20 21 22 23 24 25 26 27 28 R D 2 1 S * 8 9 0 2 / / A AL S I / A/ / A/A / . . T T V N 2 2 . 3.4 . P P X X P P 2 2 2 P P P / 1 0 X E E C 2 2 D D D D / C/E
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
80C51.pdf
with Philips high-density CMOS technology with operation – 4k 8 ROM (80C51) from 2.7V to 5.5V. – 128 8 RAM The 8XC51/31 contains a 4k 8 ROM, a 128 8 RAM, 32 I/O lines, – Three 16-bit counter/timers three 16-bit counter/timers, a six-source, four-priority level
in „Prüfen von Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BME680.pdf
reduce the noise. The resolution of the temperature data depends on the IIR filter (see Section 5.3.2.4) and the oversampling setting: When the IIR filter is enabled, the temperature resolution is 20 bit When the IIR filter is disabled, the temperature resolution is 16 + (osrs_t – 1) bit, e.g. 18 bit
in „PIR-Sensor wird von BME680 gestört, warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BME680.pdf
reduce the noise. The resolution of the temperature data depends on the IIR filter (see Section 5.3.2.4) and the oversampling setting: When the IIR filter is enabled, the temperature resolution is 20 bit When the IIR filter is disabled, the temperature resolution is 16 + (osrs_t – 1) bit, e.g. 18 bit
in „BME680 Berechnung Temperatur Luftfeuchtigkeit Druck Gas Fragen Initialisierung Assembler ASM ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS301V402.pdf
value such as an 7 UNSIGNED8, Boolean, float, Integer16, visible string etc. ARRAY A multiple data field object where 8 each data field is a simple variable of the SAME basic data type e.g. array of UNSIGNED16 etc. Sub-index 0 is of UNSIGNED8 and therefore
in „CanOpen Protokoll (für Freescale Controller)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avrdude.pdf
x128a4 ATxmega128A4 x128d4 ATxmega128D4 x16a4 ATxmega16A4 x16d4 ATxmega16D4 x192a1 ATxmega192A1 x192a3 ATxmega192A3 x256a1 ATxmega256A1 x256a3 ATxmega256A3 x256a3b ATxmega256A3B x32a4 ATxmega32A4 x32d4 ATxmega32D4
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schieberegister_SN74HC595_Datenblatt.pdf
Range of 2 V to 6 V (TOP VIEW) D High-Current 3-State Outputs Can Drive Up Q V To 15 LSTTL Loads B 1 16 CC D Low Power Consumption, 80-µA Max I Q C 2 15 QA CC Q 3 14 SER D Typical tpd= 13 ns D Q E 4 13 OE D ±6-mA Output Drive at 5 V Q 5 12 RCLK D Low Input Current of 1 µA Max F QG 6 11 SRCLK D Shift Register
in „Auswahl Schalterarray“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds18b20_pre1.pdf
define THERM_CMD_CONVERTTEMP 0x44 #define THERM_CMD_RSCRATCHPAD 0xbe #define THERM_CMD_WSCRATCHPAD 0x4e #define THERM_CMD_CPYSCRATCHPAD 0x48 #define THERM_CMD_RECEEPROM 0xb8 #define THERM_CMD_RPWRSUPPLY 0xb4 #define THERM_CMD_SEARCHROM 0xf0 #define THERM_CMD_READROM 0x33 #define THERM_CMD_MATCHROM 0x55
in „Atmega 8 + dallas 18s20 + Neuling (never ending story)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12887.pdf
62.5 ms 16 Hz 1 1 0 1 125 ms 8 Hz 1 1 1 0 250 ms 4 Hz 1 1 1 1 500 ms 2 Hz AD0–AD7 (Multiplexed Bidirectional Address/Data Bus) – Multiplexed buses save pins because address information and data information time-share
in „Anschluss von AT89C55WD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vinculum_Firmware_User_Manual_V2.4_Rev_3.pdf
Filename·Invalid FN Firmware invalid or contains disallowed characters (46 4E 0D) No·Upgrade NU Firmware Upgrade file not found on disk (4E 55 0D) Table 5.3 Monitor Error Responses 5.6 Monitor Events The Monitor will send notification messages when a device has been inserted
in „USB-Stick-Interface STI 100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
class_E_amplifier_design_-_N_Sokal_QEX_Jan_2001.pdf
work 4 1 3 F F E E T F E 3 well with a particular transistor at fre- F F T 8 S S S F F E S c quencies up to about 17%/25% = 70% I I F R E E E E S M E e of the frequency at which that transis- r r S M sM s M M E 4 M f T i i O s A A A 1 M - P e tor works well in a Class-B amplifier. E c c V u G G a 3 G H 0 R (Unpublished higher-order Class-E s S e R 4 s d 5 T 5 G C 2 2 M e circuits can operate efficiently at
in „Class-E mit 1. oder 2. Oberwelle“ · HF, Funk und Felder ·
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
Average Average Volts Trigger Pulse (mm) (mm) (mm) (mm) K Const. K Power Power V min V max kV msec o 0.5 e0.5 Ohms-Amps Watts (sec) (watts) (amps) 2 15 65 4.76/6.5 9.6 7.38 x 10 189 125 360 1260 16 0.12 2 20 70 4.76/6.5 12.8 9.84 x 10 251 125 380 1330 16 0.16 2 25 75 4.76/6.5 16.0 1.23 x 10 314 125 400 1400
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
Average Average Volts Trigger Pulse (mm) (mm) (mm) (mm) K Const. K Power Power V min V max kV msec o 0.5 e0.5 Ohms-Amps Watts (sec) (watts) (amps) 2 15 65 4.76/6.5 9.6 7.38 x 10 189 125 360 1260 16 0.12 2 20 70 4.76/6.5 12.8 9.84 x 10 251 125 380 1330 16 0.16 2 25 75 4.76/6.5 16.0 1.23 x 10 314 125 400 1400
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2660_DC_Inverter.pdf
device and reduce the quiescent current g to 0.5 µA. The oscillator frequency for the LM2661 is 80 kHz. e C Basic Application Circuits o n e Voltage Inverter Positive Voltage Doubler r e r DS012911-3 DS012911-4 SplittingINin Half DS012911-26 © 2001 National Semiconductor CorDS012911 www.national.com 1 6
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
37A_60141_2_Low-cost_EMI_pre-compliance.pdf
to 1000 MHz 100 kHz to 500 kHz 120 kHz (Bands C and D) 1 GHz to 18 GHz 300 kHz to 2 MHz 1 MHz (Band E) Table 2. Measurement Bandwidth versus Frequency specified by CISPR 16-1-1. Frequency Range Bandwidth (6 dB) 10 Hz-20 kHz 10, 100, and 1000 Hz Figure 5. Most EMI standards specify 6 dB bandwidth. Using
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PDF
AVR128DA28_32_48_64.pdf
no separate power domains). © 2020 Microchip Technology Inc.Preliminary Datasheet DS40002183A-page 16 AVR128DA28/32/48/64 Pinout 2.4 64-Pin VQFN and TQFP ) L T C E X E ( I ( 2 1 0 7 6 5 4 D D 3 2 1 0 D 6 5 A A A G G G G N D G G G G P F F P P P P P P P G V P P P P U P P 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
0.0% 32 -1.4% 64 0.2% 57.6k 16 2.1% 34 -0.8% 19 0.0% 39 0.0% 21 -1.4% 42 0.9% 76.8k 12 0.2% 25 0.2% 14 0.0% 29 0.0% 15 1.7% 32 -1.4% 115.2k 8 -3.5% 16 2.1% 9 0.0% 19 0.0% 10 -1.4% 21 -1.4% 230.4k 3 8.5% 8 -3.5% 4
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
0.0% 32 -1.4% 64 0.2% 57.6k 16 2.1% 34 -0.8% 19 0.0% 39 0.0% 21 -1.4% 42 0.9% 76.8k 12 0.2% 25 0.2% 14 0.0% 29 0.0% 15 1.7% 32 -1.4% 115.2k 8 -3.5% 16 2.1% 9 0.0% 19 0.0% 10 -1.4% 21 -1.4% 230.4k 3 8.5% 8 -3.5% 4
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ890-Datenblatt.pdf
D A L N S S G - + - _ C C G A A H P P C D - D 0 K 0 0 G 8 A 1 1 1 R P D M 2 4 2 1 1 1 V R R 6 V 1 2F 2 0 9 . 1 + 0 R 1 1D 52 1 C 1 R V 3 8 6 1 6 3 1D 52 D T C F V 8 K G 7 O 0 1 V u R 1 R 1 / 2 D 1 0 M 4 4 S 16 2 17 2E 1 7 S 2 M 0 D L R 2 B R 1 1 0 1 0 3 G 1 2 2 N 14 2D K 2 0 H
in „Schaltung für aktiven 3s Balancer gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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XC95288_Auszug.pdf
Type TQ144 PQ208 BG256 FG256 CS280 I/O/GCK1 30 44 T2 M2 R3 I/O/GCK2 32 46 U2 M3 T1 I/O/GCK3 38 55 W4 P5 W2 I/O/GTS1 5 7 C1 D4 D3 I/O/GTS2 6 9 E1 E5 E2 I/O/GTS3 2 3 C2 D3 C2 I/O/GTS4 3 5 D3 E3 C1 I/O/GSR 143 206 A2 C4 C4 TCK 67 98 U16 P12 T15 TDI 63 94 W16 R11 U14 TDO 122 176 B12 A10 D13 TMS 65 96 W17 N12 U15 VCCINT.3V 8, 42, 84, 141 11, 59, 124, 153, F1, P2, W5, Y9, F4, F7, G6, H6, J6,1, F2, N3, U5, W9, 204 V10, U13, W18, K6, L7, F8, L8, F9,9, U12, V16, R17, T20,M19,F20,E17, L9, F10, L10, G11, M18, G18, D19, B17, B14, A10, C7, H11, J11, K11 C18, A15, A11, D8, B3, G4
in „miniLa Software“ · Projekte & Code ·
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PDF
MC9S08MM128RM.pdf
(A M) DIR B8 dd 3 rpp EOR opr16a EXT C8 hh ll 4 prpp EOR oprx16,X IX2 D8 ee ff 4 prpp EOR oprx8,X IX1 E8 ff 3 rpp 0 1 1 – – Þ Þ – EOR ,X IX F8 3 rfp EOR oprx16,SP SP2 9E D8 ee ff 5 pprpp EOR oprx8,SP SP1 9E E8 ff 4 prpp MC9S08MM128
in „Freescale s08mm128 und USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BJTBasics_Georgia_Inst..pdf
ac current gain given by α = β (20) 1 + β 4 Thus the current i can be written i0= αi 0 (21) c e The voltage v π can be related to i as follows: e ic αie 0 αrπ 0 rπ 0 vπ = ibrπ= rπ = rπ = ie = i e = i ere (22) β β β 1 + β It follows that the intrinsic emitter resistance r is given by e v π rπ V T VT re = 0 = = = (23) e 1 + β (1 + β)IB IE The T model of the BJT is shown in Fig. 4(b). The currents in both models are related by the equations i0 = g v = βi = αi 0 (24) c m π b e An Emitter
in „Anfänger frage: Wiederstand in Transitor schaltung warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RS0012.pdf
cycle: --Graphic mode--1/1.1/2.1/3.1/4.1/5.1/6.1/7.1/8 and 1/16 1/1 : all com output low in the same time 1/2 : COM1~8 switch together and COM9~16 switch together 1/3 : COM1~5, COM6~10 and COM11~16 1/4 : COM1~4, COM5~8, COM9~12 and COM13~16 1/5 : COM1~3, COM4~6, COM7~9, COM10~12 and COM13~16 1/6 : COM1~2, COM3~4, COM5~6, COM7~8, COM9~10, COM11~16 1/7 : COM1~2, COM3~4, COM5~6, COM7~8, COM9~10, COM11~12 and COM13~16 1/8 : COM1~2, COM3~4,
in „OLED RAYSTAR REX001602B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RS0012.pdf
cycle: --Graphic mode--1/1.1/2.1/3.1/4.1/5.1/6.1/7.1/8 and 1/16 1/1 : all com output low in the same time 1/2 : COM1~8 switch together and COM9~16 switch together 1/3 : COM1~5, COM6~10 and COM11~16 1/4 : COM1~4, COM5~8, COM9~12 and COM13~16 1/5 : COM1~3, COM4~6, COM7~9, COM10~12 and COM13~16 1/6 : COM1~2, COM3~4, COM5~6, COM7~8, COM9~10, COM11~16 1/7 : COM1~2, COM3~4, COM5~6, COM7~8, COM9~10, COM11~12 and COM13~16 1/8 : COM1~2, COM3~4,
in „Brauche Hilfe Oled Display 2x16 EA W162-X3LG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLIZ44N_IR.pdf
@T = 25°C Power Dissipation 45 W D C Linear Derating Factor 0.3 W/°C VGS Gate-to-Source Voltage ± 16 V E Single Pulse Avalanche Energy 210 mJ AS AR Avalanche Current 25 A EAR Repetitive Avalanche Energy 4.5 mJ dv/dt Peak Diode Recovery dv/dt 5.0 V/ns TJ Operating Junction and -55 to + 175 TSTG Storage
in „Toggle Schaltung mit NE555 schaltet ein, aber nicht aus“ · Analoge Elektronik und Schaltungstechnik ·