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PDF
pcm1803.pdf
as possible to the REF 1 pin to reduce dynamic errors on the ADC reference. VREF2 Pin The differential voltage between V REF2 and AGND sets the analog input full-scale range. A 0.1- F ceramic capacitor and 10- F electrolytic capacitor are recommended between V REF2 and AGND. These capacitors should be located as close as possible to the V 2 pin to reduce dynamic errors on the ADC reference. REF DOUT Pin The DOUT pin has enough load drive capability, but if the
in „ADC (PCM1803) rauscht bei hoher Abtastrate“ · Mikrocontroller und Digitale Elektronik ·
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PCF8593.pdf
ambient temperature operating device −40 +85 °C [1] Pass level; Human Body Model (HBM), according to Ref. 5 “JESD22-A114”. [2] Pass level; Machine Model (MM), according to Ref. 6 “-A115”. [3] Pass level; latch-up testing according to Ref. 7 “t maximum ambient temperature (amb(max) [4] According to the NXP store and transport requirements (see Ref. 9 “”) the devices have to be stored at a temperature of +8 °C to +45 °C and a humidity of 25 % to 75 %. For long term storage products deviant conditions are described in that document. PCF8593 All
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s1d13700.pdf
Layers S1D13700F01 Hardware Functional Specification X42A-A-002-04 Issue Date: 2005/01/26 Revision 4.02 Epson Research and Development Page 109 Vancouver Design Center Register Setup Procedure SYSTEM SET TC/R calculation C = 40h P1 = 30h fOSC = 6 MHz (refer to Section 15.1.1, “SYSTEM SET Command and Parameters
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PDF
s1d13700.pdf
Layers S1D13700F01 Hardware Functional Specification X42A-A-002-04 Issue Date: 2005/01/26 Revision 4.02 Epson Research and Development Page 109 Vancouver Design Center Register Setup Procedure SYSTEM SET TC/R calculation C = 40h P1 = 30h fOSC = 6 MHz (refer to Section 15.1.1, “SYSTEM SET Command and Parameters
in „[V] 8 LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700.pdf
Layers S1D13700F01 Hardware Functional Specification X42A-A-002-04 Issue Date: 2005/01/26 Revision 4.02 Epson Research and Development Page 109 Vancouver Design Center Register Setup Procedure SYSTEM SET TC/R calculation C = 40h P1 = 30h fOSC = 6 MHz (refer to Section 15.1.1, “SYSTEM SET Command and Parameters
in „Erste GLCD (Touch) -Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
Layers S1D13700F01 Hardware Functional Specification X42A-A-002-04 Issue Date: 2005/01/26 Revision 4.02 Epson Research and Development Page 109 Vancouver Design Center Register Setup Procedure SYSTEM SET TC/R calculation C = 40h P1 = 30h fOSC = 6 MHz (refer to Section 15.1.1, “SYSTEM SET Command and Parameters
in „[v] LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700_320-240_display.pdf
Layers S1D13700F01 Hardware Functional Specification X42A-A-002-04 Issue Date: 2005/01/26 Revision 4.02 Epson Research and Development Page 109 Vancouver Design Center Register Setup Procedure SYSTEM SET TC/R calculation C = 40h P1 = 30h fOSC = 6 MHz (refer to Section 15.1.1, “SYSTEM SET Command and Parameters
in „Anstuerung eines Grafik LCDs. Fragen zu Display und Controller“ · Mikrocontroller und Digitale Elektronik ·
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doc7707.pdf
the Timer/Counter0 Overflow interrupt is executed. The setting of this flag is dependent of the WGM02:0 bit setting. Refer to Table 14-8, “Waveform Generation Mode Bit Description” on page 103. 106 AT90USB82/162 7707F–AVR–11/10 AT90USB82/162 15. 16-bit Timer/Counter 1 with PWM The 16-bit Timer/Counter
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIODES_INC_BCR420UW6_ENG_TDS.pdf
25°C A ( (0.04 25°C 0.10 85°C T 85°C U O IO I VEN3.3V 0.08 0.03 Rext20 Ohms 0.06 0 2 4 6 8 10 12 0.02 V (V) 0 2 4 6 8 10 12 OUT V OUT (V) V OUT vs I OUT V vs I OUT OUT 0.02 0.15 V =2V R =6 Ohms VEN3.3V OUT ext R extOhms R extpen -40°C 0.10 R ext Ohms ) A A ( R ext0 Ohms (0.01 T U O R = open IO I0.05
in „BCR420W67 zu wenig strom“ · Analoge Elektronik und Schaltungstechnik ·
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MC1408.pdf
Current Slew Rate SRIREF Figure 8 8.0 mA/▯s Output Current Power Supply Sensitivity PSRR(−) REF = 1.0 mA 0.5 2.7 ▯A/V Power Supply Current mA Positive CC All bits low, Figure 7 +2.5 +22 Negative EE −6.5 −13 Power Supply Voltage Range Tamb = +25⋅C, Figure 7 VDC Positive V +4.5 +5.0 +5.5 CCR Negative
in „Positive Spannungen mit einem Strom aus Dac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mega644.pdf
the Timer/Counter0 Overflow interrupt is executed. The setting of this flag is dependent of the WGM02:0 bit setting. Refer to Table 12-8, ”Waveform Generation Mode Bit Description” on page 106. 110 8011O–AVR–07/10 ATmega164P/324P/644P 13. 16-bit Timer/Counter1 with PWM 13.1 Features True 16-bit Design
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM8S105.pdf
module user manual (UM0470).e) refer to the STM8 • (PM0044).mation on the STM8 core, please refer to the STM8 CPU programming manual 8/127 DocID14771 Rev 10 STM8S105xx Description 2 Description The STM8S105xx access line 8-bit microcontrollers
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Datei
stm32u5xx_hal.c
SYSCFG_OTGHSPHYCR_PDCTRL, PowerDownConfig); } /** * @brief Set the OTG PHY reference clock selection. * @param RefClkSelection Defines the OTG PHY reference clock selection. This parameter can be one of the @ref SYSCFG_OTG_PHY_RefenceClockSelection * @retval None */ void HAL_SYSCFG_SetOTGPHYReferenceClockSelection(uint32_t RefClkSelection) { /* Check the parameter */ assert_param(IS_SYSCFG_OTGPHY_REFERENCE_CLOCK(RefClkSelection)); MODIFY_REG(SYSCFG->OTGHSPHYCR, SYSCFG_OTGHSPHYCR_CLKSEL, RefClkSelection); } /** * @brief Set
in „STM32U599 reagiert nicht: Keine Funktion auf dem Custom Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Resources_STM32WL_UFQFPN48_REF_BOARD_Low_Power_High_Band_868-915MHz.pdf
POPB2B 2 J1 J2 CON1 CN22 P PA3A 3 IP00 PA3 PB3 PI41 POPB3B 3 PO 0 CT RL1 PIN101 PICN01 P PA4A 4 1IP02 PA4 PB4 PI42 POPB4B 4 P1 HEADER_1X2_L PJ HEADER_1X2_L FE_CTRL1 PIN102 1 PICN02 1 P PA5A 5 1IP03 PA5 PB5 PI43 POPB5B 5 P OUART_TX0T X 1 POUART_RX0 RX 1 PB0 2 2 P OP A 6 1IP04 PI44 PO P B 6 PB2 PIN103
in „STM32WLE5CCU6 LoRa-Antennenendesign review“ · HF, Funk und Felder ·
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PDF
tlc4545.pdf
5.5 V 24 ps Aperature jitter VDD = 2.7 V to 5.5 V 100 ps External reference voltage input, V 4 V V REF DD VDD = 5 V, CS = 1, SCLK = 0 100 MΩ VREF input impedance V = 5 V, CS = 0, SCLK = 15 MHz 20 25 kΩ DD External reference input current VDD = VREF = 4.5 V, CS=0, SCLK = 15 MHz 0.02 1 mA AIN, AIN(+) 0
in „Warum funktioniert das nicht? Mittelwert, AD_wandler“ · Mikrocontroller und Digitale Elektronik ·
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0900766b8164cbe1.pdf
ColorBinSelections 0 : Full color distribution K : Color Bin 2 & 4 L : Color Bin 4 & 6 MaximumIntensityBin Refer to Device Selection Guide MinimumIntensityBin Refer to Device Selection Guide ViewingAngleandLeadStandoffs 1A: 15° without lead standoff 1B: 15° with lead standoff 2A: 23° without lead standoff 2B: 23°
in „Wer kennt sich mit UV aus? (LED Panel zur Photosynthese)“ · Analoge Elektronik und Schaltungstechnik ·
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0900766b80c827e9.pdf
FIGURE 1. Basic Connections. +5V V+ VIN+ 7 Shutdown Bridge 3 Sensor 8 REF (1) 5 INA332 6 V OUT VIN– 1 2 4 V– NOTE: (1) REF should be adjusted for the desired output level, RG keeping in mind that the value of REF affects the common-mode input range. See Typical Characteristics
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP41010.pdf
DD Code = 80h 35 10 kΩ Potentiometer Code = 80h, -6 CL= 27 pF, -12 Code = 40h 30 VA= 4V Code = 20h Refer to Figure 2-28 ) -18 B25 d Code = 10h ( n -24 Code = 08h R20 50 kΩ Potentiometer a -30 R G Code = 04h S15 -36 Code = 02h P -42 Code = 01h 10 100 kΩ Potentiometer -48 -54 CL= 30pF, Refer to Figure 2
in „Widerstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11195c.pdf
DD Code = 80h 35 10 kΩ Potentiometer Code = 80h, -6 CL= 27 pF, -12 Code = 40h 30 VA= 4V Code = 20h Refer to Figure 2-28 ) -18 B25 d Code = 10h ( n -24 Code = 08h R20 50 kΩ Potentiometer a -30 R G Code = 04h S15 -36 Code = 02h P -42 Code = 01h 10 100 kΩ Potentiometer -48 -54 CL= 30pF, Refer to Figure 2
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
DD Code = 80h 35 10 kΩ Potentiometer Code = 80h, -6 CL= 27 pF, -12 Code = 40h 30 VA= 4V Code = 20h Refer to Figure 2-28 ) -18 B25 d Code = 10h ( n -24 Code = 08h R20 50 kΩ Potentiometer a -30 R G Code = 04h S15 -36 Code = 02h P -42 Code = 01h 10 100 kΩ Potentiometer -48 -54 CL= 30pF, Refer to Figure 2
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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M390.pdf
635/ISO P35 80 – 60 Bohren mit Hartmetall Bohrerdurchmesser mm 3 – 8 8 – 20 20 – 40 Vorschub mm/U 0,02 – 0,05 0,05 – 0,12 0,12 – 0,18 BOEHLERIT/ISO-Hartmetallsorte HB10 / K10 Schnittgeschwindigkeit v (mcmin) 50 – 35 50 – 35 50 – 35 Spitzenwinkel 115° – 120° 115° – 120° 115° – 120° Freiwinkel 5° 5° 5°
in „Flachschleifen, Material “Böhler M390“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
LuminOx_Evaluation_Board.pdf
e | 6 3.1.2.1 Poll Mode (M1) Each request is built using a combination of the description blocks, refer to Table 1 on page 6. A typical arrangement will be one of the following formats: <Command><Terminator> <Command>< Separator><Argument><Terminator> Each response will reply in the following format
in „3.3V TTL level UART in 0-5V Analog“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Dr.Arbeit_H-Bruecken.1455549.pdf
P 0 100 vH-bridge 50 e r - 0 vH -50 -100 0 0.002 0.004 0.006 0.008 0.01 0.012 0.014 0.016 0.018 0.02 Time in s Figure 3.2 – H-bridge inverter bipolar PWM function principle using ideal sinusoidal signal with fundamental frequency f ref= 50Hz and carrier-signal with switching frequency of f sw = 1kHz
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
to read or write, the key A itself is not readable; key B is data only). For further information refer to Frequently asked questions or Mifare card manual. Remarks Enabled keys are always read as 00 00 00 00 00 00 Using key B as data area will cause a security gap, due to the fact that it is necessary
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
to read or write, the key A itself is not readable; key B is data only). For further information refer to Frequently asked questions or Mifare card manual. Remarks Enabled keys are always read as 00 00 00 00 00 00 Using key B as data area will cause a security gap, due to the fact that it is necessary
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (17€)“ · Markt ·
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PDF
HF_Mifare_Easy_V1_0_User_Manual_03.pdf
to read or write, the key A itself is not readable; key B is data only). For further information refer to Frequently asked questions or Mifare card manual. Remarks Enabled keys are always read as 00 00 00 00 00 00 Using key B as data area will cause a security gap, due to the fact that it is necessary
in „[V] RFID ISO 14443 Modul ACG/HID Omnikey 25x30mm (13€)“ · Markt ·
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PDF
0900766b80db11a6.pdf
ref 1 ref 5 ref 2 ref 6 ref 3 ref 7 ref 8 ref 4 ref 9 AM01774v1 3.4 “Register Setup” tab The register setup tab shown in Figure 11 allows read/write access to the content of the registers embedded in the
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PDF
schema_stm32_primer2_1_2.PDF
560K C20 4 1Y 4 6 VCC L6928D PGOOD 8 2 2 2 2 1Y 1 RUN P VFB 3 2 10µF 2 M D VCCS 2 1B 1B C G 3 74V1G02STR 3 74V1G02STR 2 4 C22 1 1 1 1 1 R20 220pF 1 C21 2 R61 10µF R43 R19 100K 2 470K 2 470K 2 2 1 150K R21 2 10K 2 VCCS VCCIN U10 2 SHUTDOWN 4 6 1 EXACT OUTPUT VOLTAGE VALUE : 2V84 C23 3 2 10µF VE STT5PF20V
in „STM32 USB Virtual COM Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
066ff5d0ae41979babdbb2a054919e6488ccea2c9c04b742d1ae37c877e7b651.pdf
19 PIO 07 16.75 1.00 17.76 19.68 PIO 00 7 18 PIO 10 0.524 RXD 8 17 PIO 03 26.92 1.00 CTS 9 16 PIO 02 RTS 10 15 PIO 11 1.80 USB DP 11 14 AIO 0 USB DM 12 13 AIO 1 8.51 16.79 mm 8mm Minimum No Ground Zone Pio Assignments Only for this KC‐21 v6 module, our previous kcSerial v2.4 firmware edition provided
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USB_Programmer_V3.pdf
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-0/Logic-1. 3. Voltmeter: The voltage Range is 0V~16V. 4. Signal Generator: The output frequency
in „USB Programmer für unter 15€“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRnDxBoard.pdf
VCC PA6 4 PA6 PG5 59 PG5 100 100 7 1 5 58 8 2 PA7 PA7 PG4 PG4 PG3 55 PG3 R5 9 8 54 SW1 10 R9 Conn_01x02 PB0 PB0 PG2 PG2 330 SW3 4K7 PB1 9 PB1 PG1 53 PG1 R11 10 52 R2 D1 3 BAV74 Reset PB2 PB2 PG0 PG0 33K PB3 11 PB3 2 1 USER 2 1K 12 50 C10 PB4 PB4 ~{RESET}/PF6 DTROUT PB5 13 PB5 PF5 49 PF5 100n 14 48 PB6
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PDF
Thomson-Tantal.pdf
35 50 R C RµF) (B) (C) (D) (E) (F) (G) (H) 0.10 – – – – – 01 01 0.15 – – – – – 01 01 0.22 – – – – – 02 02 0.33 – – – – – 02 02 0.47 – – – – – 02 03 0.68 – – – – – 02 03 1.00 – – – 02 02 03 04 1.50 – – 02 02 02 04 05 2.20 – 02 02 03 03 05 07 3.30 02 02 03 04 04 07 09 4.70 02 03 04 05 05 08 11 6.80 03 04
in „Defekte Diode Werte?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
#endif #include <avr/io.h> int main(void) { DDRB = 0x03; // Set PB0 and PB1 as output ADMUX = (1<<REFS0); // Set Reference to AVCC and input to ADC0 ADCSRA = (1<<ADFR)|(1<<ADEN) // Free Running Modus, Enable ADC, |(1<<ADPS1)|(1<<ADPS2); // set prescaler to 64 // F...Frequenz - F_ADC=F_CPU/prescaler=4193700
in „Anfänger - wie Pin ADC4 ansprechen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LPC_2119_2129_Datenblatt.pdf
OUTLINE EUROPEAN ISSUE DATE VERSION IEC JEDEC JEITA PROJECTION SOT314-2 136E10 MS-026 00-01-19 03-02-25 Fig 6. 9397 750 12806 © Koninklijke Philips Electronics N.V. 2004. All rights reserved. Preliminary data Rev. 02 Ñ 02 February 2004 30 of 36 Philips Semiconductors LPC2119/LPC2129 Single-chip 16/32
in „LPC 2129 Versorgungsspannung via PIN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
scc1300_d02_datasheet-extensive-v1.0.4.pdf
identification number, each ASIC version has - different REVID-number. 01(01) CTRL 8 R/W - Please refer to chapter 4.5.2 for CONTROL register details. 02(02) STATUS [7:3] 5 R - Reserved 02(02) STATUS [2] 1 R Analog test mode status (ATEST) 1 – Test mode is active 0 – Test mode is not active 02(02) STATUS
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PDF
EVK2160A_UserGuide.pdf
example, the QT2160 is configured with 8 individual keys plus 8 keys configured as a slider. Please refer to the QT2160 datasheet available at www.atmel.com for full details. • Ensure the EVK2160A Evaluation Board is securely located in the clear molded case. • Insert the CR2032 3V battery provided into
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ADS1211.pdf
DV DD 15 MODE SCLK Control Input (Master = 1, Slave = 0). 16 AV DD Analog Supply, +5V nominal. 17 REF OUT Reference Output, +2.5V nominal. 18 REF Reference Input. IN ADS1210, ADS1211 4 www.ti.com SBAS034B ADS1211 SIMPLIFIED BLOCK DIAGRAM AGND AV DD REF OUT REF IN VBIAS XIN X OUT 6 19 20 21 7 10 11 +
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MAX856-Stepup.pdf
Configuration OUT TOP VIEW OUTPUT 5VAT100mA SHDN 1 8 LX 47 H OR 3.3VAT125mA 3/52 7 GND ON/OFF SHDN LX REF 3 MAX858 6 OUT 1N5817 4 68 F LBO 5 LBI MAX856 3V/5V SELECT 3/5 OUT SO/ MAX LOW-BATTERY DETECTOR LBI SHDN 1 8 LX INPUT FB 2 7 GND REF LBO LOW-BATTERY 3 MAX857 GND DETECTOROUTPUT REF MAX859 6 OUT LBO
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PDF
MAX856-Stepup.pdf
Configuration OUT TOP VIEW OUTPUT 5VAT100mA SHDN 1 8 LX 47 H OR 3.3VAT125mA 3/52 7 GND ON/OFF SHDN LX REF 3 MAX858 6 OUT 1N5817 4 68 F LBO 5 LBI MAX856 3V/5V SELECT 3/5 OUT SO/ MAX LOW-BATTERY DETECTOR LBI SHDN 1 8 LX INPUT FB 2 7 GND REF LBO LOW-BATTERY 3 MAX857 GND DETECTOROUTPUT REF MAX859 6 OUT LBO
in „Verständnisfrage zu Shutdown Feature von Schaltregler MAX856“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Sinussweep_ueberarbeitet.txt
******************************************************************** ADC12CTL0 = SHT1_1 + SHT0_1 + REF2_5V + REFON + ADC12ON ; //2,5V Reference on, ADC12 ON ADC12CTL1 = CSTARTADD_0 + SHS_0 + ADC12DIV_1 + ADC12SSEL_2 + SHP; ADC12MCTL0 = EOS + SREF_0 + INCH_0; ADC12IE = 0x0001; } //********************
in „Sinuserzeugung mit DAC: Probleme Interrupterzeugung für DAC durch TimerB Compareregister“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ADC.ASM
low active .equ _01 = ~( _0B+_0C ) .equ _02 = ~( _0A+_0B+ _0D+_0E+ _0G ) .equ _03 = ~( _0A+_0B+_0C+_0D+ _0G ) .equ _04 = ~( _0B+_0C+ _0F+_0G ) .equ _05 = ~( _0A+ _0C+_0D+ _0F+_0G ) .equ _06 = ~( _0A+ _0C+_0D+_0E+_0F+_0G ) .equ _07 = ~( _0A+_0B
in „LED Multiplex ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KWH040GM05-F02_TP.pdf
................................. 24 ver B -3- Issue date: 2008/2/25 FORMIKE MODEL NO :KWH040GM05-F02 1. GENERAL DESCRIPTION KWH040GM05-F02 is a Transmissive type color active matrix liquid crystal display (LCD), which uses amorphous thin film transistor (TFT) as switching devices. This product is composed
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KWH040GM05-F02_TP.pdf
................................. 24 ver B -3- Issue date: 2008/2/25 FORMIKE MODEL NO :KWH040GM05-F02 1. GENERAL DESCRIPTION KWH040GM05-F02 is a Transmissive type color active matrix liquid crystal display (LCD), which uses amorphous thin film transistor (TFT) as switching devices. This product is composed
in „SAMMELBESTELLUNG: 4" TFT Display mit 24bit digital interface“ · Markt ·
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PDF
TFT_Display.pdf
................................. 24 ver B -3- Issue date: 2008/2/25 FORMIKE MODEL NO :KWH040GM05-F02 1. GENERAL DESCRIPTION KWH040GM05-F02 is a Transmissive type color active matrix liquid crystal display (LCD), which uses amorphous thin film transistor (TFT) as switching devices. This product is composed
in „Cortex M3 + TFT Controller + 24bit TFT“ · Mikrocontroller und Digitale Elektronik ·
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korg_sp-250.pdf
B4HF0F0B1616028Y 530000000327 SP250 AMP.BOARD ASSY AMP BOARD 1 B11SP250AB1Y Assembled 500404000200 BL02RN2R1P1A AMP BOARD L1 1 3FB000BL02RN20Y 530000000328 DC JACK DS-210 3PIN DIP AMP BOARD DJ1 1 3JDD0300DS2100Y 530000000329 STEREO JACK ST-015 4PIN DIP AMP BOARD CN4,CN5 2 3JDE0400ST0150Y 530000000330 CORE
in „Korg SP-250 lässt sich nicht mehr anschalten / Elko ausgelaufen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
korg_sp-250_ServiceManual.pdf
B4HF0F0B1616028Y 530000000327 SP250 AMP.BOARD ASSY AMP BOARD 1 B11SP250AB1Y Assembled 500404000200 BL02RN2R1P1A AMP BOARD L1 1 3FB000BL02RN20Y 530000000328 DC JACK DS-210 3PIN DIP AMP BOARD DJ1 1 3JDD0300DS2100Y 530000000329 STEREO JACK ST-015 4PIN DIP AMP BOARD CN4,CN5 2 3JDE0400ST0150Y 530000000330 CORE
in „Korg SP-250 e-Piano hängt sich auf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
korg_sp-250.pdf
B4HF0F0B1616028Y 530000000327 SP250 AMP.BOARD ASSY AMP BOARD 1 B11SP250AB1Y Assembled 500404000200 BL02RN2R1P1A AMP BOARD L1 1 3FB000BL02RN20Y 530000000328 DC JACK DS-210 3PIN DIP AMP BOARD DJ1 1 3JDD0300DS2100Y 530000000329 STEREO JACK ST-015 4PIN DIP AMP BOARD CN4,CN5 2 3JDE0400ST0150Y 530000000330 CORE
in „E-Piano Korg SP-250 rechter Lautsprecher rauscht und kratzt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
korg_sp-250.pdf
B4HF0F0B1616028Y 530000000327 SP250 AMP.BOARD ASSY AMP BOARD 1 B11SP250AB1Y Assembled 500404000200 BL02RN2R1P1A AMP BOARD L1 1 3FB000BL02RN20Y 530000000328 DC JACK DS-210 3PIN DIP AMP BOARD DJ1 1 3JDD0300DS2100Y 530000000329 STEREO JACK ST-015 4PIN DIP AMP BOARD CN4,CN5 2 3JDE0400ST0150Y 530000000330 CORE
in „Korg SP-250 schaltet Register um“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3642fc.pdf
08-1662 Rev I) BOTTOM VIEW OF EXPOSED PAD OPTION 1.88 1 (.074) 0.29 1.88 ± 0.102 0.889 ± 0.127 1.68 REF (.074 ± .004) (.035 ± .005) (.066) 0.05 REF 5.23 DETAIL “B” (.206) 1.68 ± 0.102 3.20 – 3.45 CORNER TAIL IS PART OF MIN (.066 ± .004) (.126 – .136) DETAIL “B” THE LEADFRAME FEATURE. 8 FOR REFERENCE ONLY
in „Bauteil LDYM N188 817“ · Analoge Elektronik und Schaltungstechnik ·
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ucc3806.pdf
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT REFERENCE UCC1806 V Supply, UVLO,turrnn-oonn UCC2806 5.02 5.10 5.17 V REF UCC3806 5.00 5.10 5.20 Load regulation 0.2 mA ≤OUT ≤ 5 mA 3 25 Total output variation2) Line, load, temperature -150 150 mV Output noise voltage) 10 Hz ≤OSC ≤ 10 kHz, TJ= 25°C 70 μV (
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