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PDF
msp430f413.pdf
after the brownout circuit releases the device reset. However, V CC may not have ramped to V CC(min) at that time. The user must insure the default FLL+ settings are not changed unCCl V reaches V . If desired, the SVS circuit can be used to determine when V reaches V . CC(min) CC CC(min) digital I/O There
in „MSP430F413 Analog eingänge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TI_ads808.pdf
CONVERTER FEATURES DESCRIPTION ● DYNAMIC RANGE: The ADS808 is a high-dynamic range, 12-bit, 70MHz, SNR: 64dB at 10MHz f pipelined Analog-to-Digital Converter (ADC). It includes a IN SFDR: 68dB at 10MHz f IN high-bandwidth linear track-and-hold that has a low jitter of only 0.25ps rms, leading to excellent
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TI_ads808.pdf
CONVERTER FEATURES DESCRIPTION ● DYNAMIC RANGE: The ADS808 is a high-dynamic range, 12-bit, 70MHz, SNR: 64dB at 10MHz f pipelined Analog-to-Digital Converter (ADC). It includes a IN SFDR: 68dB at 10MHz f IN high-bandwidth linear track-and-hold that has a low jitter of only 0.25ps rms, leading to excellent
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATSAMD20E18A-MU.pdf
number of clock domains; one for the CPU and AHB and one for each APBx. Any synchronous system clock can be changed at run-time during normal operation. The clock domains can run at different speeds, enabling the user to save power by running peripherals at a relatively low clock frequency, while maintaining
in „Exposed Pad anschließen? (ATSAMD20E18A-MU und ELMOS E981.03)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FT232R.pdf
6,7,8,9,10 11, 21, 22, 30,31,32). In USB bus powered designs connect this pin to 3V3OUT to drive out at +3.3V levels, or connect to VCC to drive out at +5V CMOS 1 VCCIO PWR level. This pin can also be supplied with an external +1.8V to +2.8V supply in order to drive out at lower levels. It should be noted
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FT232R.pdf
6,7,8,9,10 11, 21, 22, 30,31,32). In USB bus powered designs connect this pin to 3V3OUT to drive out at +3.3V levels, or connect to VCC to drive out at +5V CMOS 1 VCCIO PWR level. This pin can also be supplied with an external +1.8V to +2.8V supply in order to drive out at lower levels. It should be noted
in „Bite um Kontrolle meines Schaltplans und Layoutes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SDA5252-2_Siemens.pdf
Group 10 1998-10-08 SDA 525X-2 5 Pin Correspondence Table 1 Pin Correspondence P-SDIP-52-1, P-MQFP-64-1, P-MQFP-80-1, P-MQFP-80-1, P-LCC-84-2 Symbol Pin No. Pin No. Pin No. Pin No. Pin No. Changes compared P-SDIP-52-1 P-MQFP-64-1 P-MQFP-80-1 P-MQFP-80-1 P-LCC-84-2 to SDA 525x P0.0 9 34 56 58 48 P0.1
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3465.pdf
has ■ Automatic Soft-Start (LT3465) internal soft-start. ■ Open LED Protection The LT3465 switches at 1.2MHz, allowing the use of tiny ■ High Efficiency: 81%(LT3465) 79%(LT3465A) Typical external components. The faster LT3465A switches at 2.4MHz.Constantfrequencyswitchingresultsinlowinput ■ Requires
in „s65 display stromversorgung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EC20-9822_SK9822-2020__LED_Datasheet.pdf
baking at 70 C/48H or above can be used. After dehumidification, the oven can not be powered off. Take one roll and stick one roll in the process of using. The unused ones are kept in the oven at 70 C. Not all the materials can be taken out and put in the workshop. Absolutely not to dehumidify during the day, power off the oven at night, and then patch the next day (the maximum dehumidification time should not be greater than
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PDF
SSD1306B_1.1.pdf
64MUX). • FOSC is the oscillator frequency. It can be changed by command D5h A[7:4]. The higher the register setting results in higher frequency. Solomon Systech May 2014 P 20/61 Rev 1.1 SSD1306B 7.4 FR
in „OLED zeigt nur wirre Pixel am I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2304140030_QX-Micro-Devices-QX2304L30T_C219035.pdf
2.76 2.74 1.5V 1.5 2.72 tg ug l)a l) uv( 1 v( 2.7 2.8V 2.68 1V 0.5 2.66 VIN=1V, 1.5V, 2V, 2.8V 0 2.64 2V 1 10 100 5 50 500 Output current (mA) Output current (mA) Output current corresponding efficiency 100 98 96 94 92 ) ( c 90 i 2.8V i e 88 2V 86 84 1V 82 VIN=1V, 1.5V, 2V, 2.8V 1.5V 80 5 50 500 Output
in „IC (SOT23-3?) aus Christbaumkerze identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OPTREX_F-51320AE_TechSpec.pdf
Storage 70°C±2°C, 96hrs 3 4 Low Temperature Storage -20°C±2°C, 96hrs 2,3 5 Damp Proof Test 40°C±2°C, 90~95%RH, 96hrs 2,3 6 Temperature Cycle Test 5 Cycle 1 Cycle 2 70 C 25 C -20°C 30Min0Min30Min10Min The function test shall be conducted after 1 hours storage at the normal temperature and 7 Shock Test To
in „Pollin Grafik LCD-Modul OPTREX F-51320AE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
BC847BSMD 2 BC847B 2 BC817 2 BC558B 2 BC 557B 2 BC 547B 2 BA243A 2 B40S 2 AXBA 2 AVR-ISP-10 2 ATMEGA8 2 AT90S8535J-S 2 AT90S4433P 2 AT90CAN128 2 AT8C51SND1A-PLCC84 2 AREF 2 AGND 2 ADXL322JCP-HS 2 ADUM1301 2 AD820 2 AC 24V in 2 AA_BATTERIE+CLIPS 2 AA112 2 A 2 +9V 2 9077-2 2 8 MHz 2 8.8/0.4 2 82K 2 82 2 810
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
sn74cbtd16210.pdf
GND ±1 CC I CC VCC = 5.5 V, O = 0, VI= VCC or GND 1.5 mA ‡ ∆CC Control inputsVCC = 5.5 V, One input at 3.4 V, Other inputs aCCVor GND 2.5 mA Ci Control inputsVI= 3 V or 0 4.5 pF Cio(OFF) VO = 3 V or 0, OE = VCC 5.5 pF I = 64 mA 5 7 V = 0 I on§ VCC = 4.5 V I I = 30 mA 5 7 Ω VI= 2.4 V, I = 15 mA 35 50 †
in „Level Shifter TI SN74CBTD16210“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d80166w.pdf
function. A HOLD/HLDA protocol is available for bus arbitration. For applications which require less than 64 KBytes of external memory space, a non-segmented memory model can be selected. In this case all memory locations can be addressed by 16 bits and Port 4 is not required to output the additional segment
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PDF
AD1836_prc.pdf
via SPI ADC Control Register 3). The ADC section may also tion for details of the format. operate at a sample rate of 96 kHz, with only the two primary The voltage at the V REF pin, FILTR (~2.25 V) can be used to channels active. The ADCs include an on-board digital decima- bias external op amps used
in „Audio Codec mit Filter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD1836_prc.pdf
via SPI ADC Control Register 3). The ADC section may also tion for details of the format. operate at a sample rate of 96 kHz, with only the two primary The voltage at the V REF pin, FILTR (~2.25 V) can be used to channels active. The ADCs include an on-board digital decima- bias external op amps used
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CONOX.pdf
200 J - Continuous power dissipation up to 0.8 W - Response time ;;;;;5ns - Operating temperature at zero load -25 to +115°C - Operating temperature at full load -25 to + 70°C - Temperature coefficient at 1 mA between +25° and +85°C -0.05 %/K - Capacitance 80 to 3000 pF - Standard range 90 types E c
in „Bauteilidentifikation (siehe Bild)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vishay-TFPT.pdf
INFORMATION (6)Power levels are depending on way of mounting and substrates used. Higher power up to 200 mW at 25 °C (P ) can be tolerated on uniform layer TFPT0402 5R 25 APPLICATION INFORMATION When the resistor dissipates power, a temperature rise above the ambient temperature occurs, dependent on the thermal
in „SMD Temperaturfühler an Wetterstation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
efm8ub2-datasheet-1666225.pdf
loader then determines if the device should stay in bootload mode or jump to the reset vector located at 0x0000. When the bootloader is not present, the device will jump to the reset vector of 0x0000 after any reset. More information about the bootloader protocol and usage can be found in AN945: EFM8 Factory
in „[V] 10St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (10€)“ · Markt ·
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PDF
efm8ub2-datasheet-1666225.pdf
loader then determines if the device should stay in bootload mode or jump to the reset vector located at 0x0000. When the bootloader is not present, the device will jump to the reset vector of 0x0000 after any reset. More information about the bootloader protocol and usage can be found in AN945: EFM8 Factory
in „[V] nochmal 10St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (10€)“ · Markt ·
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PDF
efm8ub2-datasheet-1666225.pdf
loader then determines if the device should stay in bootload mode or jump to the reset vector located at 0x0000. When the bootloader is not present, the device will jump to the reset vector of 0x0000 after any reset. More information about the bootloader protocol and usage can be found in AN945: EFM8 Factory
in „[V] 20St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (15€)“ · Markt ·
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PDF
efm8ub2-datasheet-1666225.pdf
loader then determines if the device should stay in bootload mode or jump to the reset vector located at 0x0000. When the bootloader is not present, the device will jump to the reset vector of 0x0000 after any reset. More information about the bootloader protocol and usage can be found in AN945: EFM8 Factory
in „[V] 20St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (15€)“ · Markt ·
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PDF
Crumb128_051120.pdf
transceiver, connected to UART0 of the ATmega128. U2 can be enabled/disabled by jumper J2, which should be set to 1-2 (disabled) or 2-3 (enabled) position before operation. The RS232 signals are available at CON4, which can be connected 1:1 to a male Sub-D
in „Crumb128 Probleme bei der Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
illustrates, changing the TOP actively while the Timer/Counter is running in the phase correct mode can result in an unsymmetrical output. The reason for this can be found in the time of update of the OCR1x Register. Since the OCR1x update occurs at TOP, the PWM period starts and ends at TOP. This implies
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-0314EN.pdf
ACKNOWLEDGE Figure11.Registerbytereadprotocol 11 MechanicalDrawing 4.50 SENSOR A A PCB LIGHT SEPARATOR LED 3.90 1.80 SECTION A - A BOTTOM SIDE TOP SIDE (LED AREA) LED PAD (AT TOP SIDE) 12 12 11 10 1 9 1 2 2 8 0.80 3 3 4 5 6 7 4 ORIENTATION MARK FOOTPRINT AT BOTTOM SIDE Pin Name Description 1 LED -VE LED cathode
in „Avago ADJD s371 q999 Farbsensor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
30 19:51:33 peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing
in „[Atmega8]LCD-Display+UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_new.h
30 19:51:33 peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing
in „mal wieder ein LCD am Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
30 19:51:33 peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing
in „[AVR] Lcd Init funktioniert aber der Rest nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
30 19:51:33 peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing
in „Heizungssteuerung mit ATMEGA 32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
:51:33 peter Exp $ * Software: AVR-GCC 3.3 * Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ************************************************************************************************************* */ /* ******************************************************************
in „Displaytech 162 und 162A geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
12 21:05:59 peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega Enhancements: additional functions Thomas Radetzki 2005 4 lines/2 proc display Thomas Radetzki 2/2006 ***************************************************************************/ /**
in „HD44780 atmega168“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_new.h
30 19:51:33 peter Exp $ Software: AVR-GCC 3.3 Hardware: any AVR device, memory mapped mode only for AT90S4414/8515/Mega ***************************************************************************/ /** @defgroup pfleury_lcd LCD library @code #include <lcd.h> @endcode @brief Basic routines for interfacing
in „HD44780 on Atmega32 with Peter Fleurys library“ · µC & Digital Electronics ·
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PDF
SDS1000X-E_UserManual_UM0101E-E03B.pdf
Knob to set the desired baud rate. 98 WWW.SIGLENT.COM SDS1000X-E User Manual CAN Trigger This part will provide a brief introduction and description for the operation of the CAN trigger. Trigger Conditions Start— the oscilloscope will be triggered at the start bit of a frame.
in „Lieber SIGLENT SDS1104X-E als RIGOL DS1054Z“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDS1000X-E_UserManual_UM0101E-E03B.pdf
Knob to set the desired baud rate. 98 WWW.SIGLENT.COM SDS1000X-E User Manual CAN Trigger This part will provide a brief introduction and description for the operation of the CAN trigger. Trigger Conditions Start— the oscilloscope will be triggered at the start bit of a frame.
in „*DSO* : Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sp3222_3232e.pdf
results quire true RS-232 performance. The SP3222E/ of the loopback circuit with all drivers active at 3232E series have drivers that operate at a typi- 120Kbps with RS-232 loads in parallel with cal data rate of 235Kbps fully loaded. 1000pF capacitors. Figure 10 shows the test results where one driver
in „Kein TX bei GSM Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1963.pdf
output current. In dropout, the the IN pin at 20V, the OUT pin may not be pulled below 0V. The total output voltage will be equal tIN VVDROPOUT. measured voltage fromIN to OUT can not exceed ±20V. Note 8: GND pin current is tested with V = V + 1V
in „LT1963 puffern 2,5A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1963.pdf
output current. In dropout, the the IN pin at 20V, the OUT pin may not be pulled below 0V. The total output voltage will be equal tIN VVDROPOUT. measured voltage fromIN to OUT can not exceed ±20V. Note 8: GND pin current is tested with V = V + 1V
in „Widerstände für Spannungsregler ergeben nicht gewünschte Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt1963es8.pdf
output current. In dropout, the the IN pin at 20V, the OUT pin may not be pulled below 0V. The total output voltage will be equal tIN VVDROPOUT. measured voltage fromIN to OUT can not exceed ±20V. Note 8: GND pin current is tested with V = V + 1V
in „LT1963 SHDN (shutdown) Pin Potenzialfrei ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
supports wide band operation from 64MHz to 110MHz. The chip begins to directly TUNE to a channel when the register TUNE is set to 1. The channel frequency can be programmed and tuned by setting CHAN<9:0> which is defined as Freq(MHz) =
in „Stm32f4 I2C 16Bit auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E0124N10.pdf
. A total of four waits are input at T2, T3, T4, and T5. Although only bank A is accessed in Figure 3-7, bank B also can be accessed. Although this circuit uses precharge, auto precharge can also be used without affecting the operation.
in „VGA Grafikkarte mit AVR und 8MB SDRAM“ · Projekte & Code ·
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PDF
Arduino_Interrupts_by_Nick_Gammon.pdf
External Interrupt Request 0 (pin D2) would be serviced before External Interrupt Request 1 (pin D3). Can interrupts occur while interrupts are disabled? Interrupts events (that is, noticing the event) can occur at any time, and most are remembered by setting an "interrupt event" flag inside the processor
in „Verständnis AVR Interrupts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP4151.pdf
The SDO is an open drain output, which uses the internal “smart” pull-up. The SDI input data rate can be at the maximum SPI frequency. the SDO output data rate will be limited by the “speed” of the pull-up, customers can increase the rate with external pull-up resistors. 4: The DFN and QFN packages
in „Frage zum MCP4151 SPI Digital Poti?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM8_Programming_Manual.pdf
once to this bit but can read it at any time. Only a read/write once (rwo) reset can return this bit to its reset value. Software can read and clear this bit by writing 1. Writing ‘0’ has no effect on read/clear (rc_w1) the
in „STLINK V2 und China Boards“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn74hc595.pdf
Registers. They have a wide operating current of 2 V to 6 V, and the high-current 3-state outputs can drive up to 15 LSTTL Loads. The devices have a low power consumption of 80-μA (Maximum) ICC. Additionally, the devices have a low input current of 1 μA (Maximum) and a ±6-mA Output Drive at 5 V. 9.4
in „Interne Schaltung: TPIC6B595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
Maximum power dissipation is a functioJ of T (JA, and A . The maximum allowable power dissipation at any allowable ambient temperature iD P =J(T (max)A− JA. Operating at the absolute maximJm T of 150°C can affect reliability. 3. The package thermal impedance is calculated in accordance with JESD 51-
in „CES Hautwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PHI.pdf
3.28 25 77 0.79 1000 1025 1050 ±3.18 30 86 0.78 1038 1066 1093 ±3.33 40 104 0.75 1119 1150 1182 ±3.64 50 122 0.73 1203 1239 1275 ±3.97 60 140 0.71 1290 1331 1372 ±4.31 70 158 0.69 1381 1427 1473 ±4.67 80 176 0.67 1476 1527 1578 ±5.05 90 194 0.65 1573 1631 1688 ±5.43 100 212 0.63 1674 1738 1802 ±5.84
in „Genauere Messung der Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KTY81-2_PHI.pdf
3.28 25 77 0.79 2000 2050 2100 ±3.18 30 86 0.78 2077 2132 2187 ±3.33 40 104 0.75 2238 2301 2364 ±3.64 50 122 0.73 2406 2478 2549 ±3.97 60 140 0.71 2581 2662 2743 ±4.31 70 158 0.69 2763 2854 2946 ±4.67 80 176 0.67 2951 3054 3157 ±5.05 90 194 0.65 3147 3262 3376 ±5.43 100 212 0.63 3349 3477 3605 ±5.84
in „KTY 81 110 an Mega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PHI.pdf
3.28 25 77 0.79 2000 2050 2100 ±3.18 30 86 0.78 2077 2132 2187 ±3.33 40 104 0.75 2238 2301 2364 ±3.64 50 122 0.73 2406 2478 2549 ±3.97 60 140 0.71 2581 2662 2743 ±4.31 70 158 0.69 2763 2854 2946 ±4.67 80 176 0.67 2951 3054 3157 ±5.05 90 194 0.65 3147 3262 3376 ±5.43 100 212 0.63 3349 3477 3605 ±5.84
in „Kurze Frage zwecks Vorwiderstand für Sensor.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UPS051_20Application_20Note_20V3.5.pdf
memory, and each pixel contains 3 primary color dots’ data. On the other hand, when UPS051 is operated at 280×220 mode, only 280 dots at each LCD horizontal line can be displayed. So the abundant pixel data in VGA display memory should be extracted to a limited number, which is 280 dot for each horizontal