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88E1111_DS.pdf
N TBI 1111 r U N111 HWCFG_MODE[3:0] E RGMII HWCFG_MODEHWCFG_MODHWCFG_MODEHWCFG_MODE[3:0]N 101*M I 1011 1011 0011 * I RTBI ge NT 1001G_MODE[3:0] c. I N SGMII10000 or 010000 or 00000 or 0100:0] ,In3 t I Serial6Interface HWCFG_MODE[3:0]tr 30 u N 1. -4 ON 1000 or 1100 uc 21 o C uegotiation on. are available
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Mikrocontroller-PIC18F2420.pdf
FFh 8FFh = 1001 00h Unused 900h Bank 9 Read 00h FFh 9FFh = 1010 00h A00h Bank 10 FFh AFFh B00h = 1011 Bank 11 00h FFh BFFh C00h = 1100 Bank 12 00h FFh CFFh = 1101 00h D00h Bank 13 FFh DFFh = 1110 00h E00h Bank 14 FFh EFFh F00h = 1111 00h Unused F7Fh Bank 15 F80h FFh SFR FFFh DS39631E-page 60 © 2008
in „Spannungseinbruch beim Sampeln des Signals“ · Mikrocontroller und Digitale Elektronik ·
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83c185.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25 4.7.4 Half vs. Full Duplex . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25 4.8 PHY Management Control . . . . . . . . . . . . . . . . . . . . . . . . .
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83c185.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25 4.7.4 Half vs. Full Duplex . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25 4.8 PHY Management Control . . . . . . . . . . . . . . . . . . . . . . . . .
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SST89x516.pdf
P2.6 (A14) (T1) P3.5 11 23 P2.5 (A13) 12 13 14 15 16 17 18 19 20 21 22 . . L L S . . . . . . P P A A VS P P P P P P # # X X 8 9 0 1 2 1273 44-tqfp TQJ P3.0 R D ( ( 1 1 1 ( ( ( ( ( Figure 4: Pin Assignments for 44-lead TQFP ©2013 Silicon Storage Technology, Inc. DS25093B 02/13 6 FlashFlex MCU SST89E516RD2
in „Einstieg in 8051 - Atmels AT89S52 oder?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
harware_config_default.txt
SPICON2 (SSP1CON2) #define SPIRAM2_SPISTAT (SSP1STAT) #define SPIRAM2_SPISTATbits (SSP1STATbits) // VLSI VS1011/VS1053 audio encoder/decoder and DAC #define MP3_DREQ_TRIS (TRISBbits.TRISB0) // Data Request #define MP3_DREQ_IO (PORTBbits.RB0) #define MP3_XRESET_TRIS (TRISDbits.TRISD0) // Reset, active low #
in „I/O Pins konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
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ST7735_128x160_SPI_Display.pdf
100110 10 1001 R105 R104 R103 R102 R101 R100 101010 11 1010 R115 R114 R113 R112 R111 R110 101110 12 1011 R125 R124 R123 R122 R121 R120 110011 13 1100 R135 R134 R133 R132 R131 R130 110111 14 1101 R145 R144 R143 R142 R141 R140 111011 15 1110 R155 R154 R153 R152 R151 R150 111111 16 1111 R165 R164 R163 R162
in „ST7735 an MCU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LSM303C_datasheet.pdf
sensitivity Magnetic FS = ±16 gauss 0.58 LSB LA_TCSo Linear acceleration sensitivity 0.01 %/°C change vs. temperature LA_TyOff Typical zero-g level offset ±40 mg accuracy (3),(4) M_TyOff Typical zero-gauss level offset ±1 gauss accuracy LA_TCOff Zero-g level change vs. temp. Max. delta from 25 °C ±0.5 mg
in „STM32F05 SPI 3 Wire Verbindung mit Accelerometer“ · Mikrocontroller und Digitale Elektronik ·
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MMA7455L_AppNote.pdf
somewhat dependant on the circumstances of the application and the tradeoff between the reaction time vs. the consumed current. Motion Detection using the MMA745xL Logic Interrupts The Level Detection mode can be used to detect motion with an interrupt. The threshold level can be set and the interrupt will
in „Dezimal zu 2er Komplement“ · Mikrocontroller und Digitale Elektronik ·
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RV-3032-C7_App-Manual-rev1.3.pdf
Hexadecimal Decimal (Signed decimal) TREF in °C(*) 0001'0001'1100'0000 11C0 4544 4544 35 0001'0001'1011'1111 11BF 4543 4543 34.9921875 : : : : : 0000'1100'1100'0001 0CC1 3265 3265 25.0078125 0000'1100'1100'0000 0CC0 3264 3264 25 0000'1100'1011'1111 0CBF 3263 3263 24.9921875 : : : : : 0000'0111'1100'0001
in „ATtiny85 + Uhrenquarz mit 10 pF CL: Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·
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HX8352-A.pdf
1189 S263 -1759 393 1010 S412 1115 393 1070 DUMMY 191 393 1130 S322 -933 271 1190 S262 -1773 271 1011 S411 1101 271 1071 DUMMY 163 393 1131 S321 -947 393 1191 S261 -1787 393 1012 S410 1087 393 1072 DUMMY 135 393 1132 S320 -961 271 1192 S260 -1801 271 1013 S409 1073 271 1073 DUMMY 107 393 1133 S319 -
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4620.pdf
FFh GPR FFh 8FFh = 1001 00h 900h Bank 9 GPR FFh 9FFh = 1010 00h A00h Bank 10 GPR FFh AFFh B00h = 1011 Bank 11 00h GPR FFh BFFh C00h = 1100 Bank 12 00h GPR FFh CFFh = 1101 00h D00h Bank 13 GPR FFh DFFh = 1110 00h E00h Bank 14 GPR FFh EFFh F00h = 1111 00h GPR F7Fh Bank 15 F80h FFh SFR FFFh DS39626B-page
in „SPI master/slave - schreib/lese befehle ?“ · Mikrocontroller und Digitale Elektronik ·
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stm32l431_reference_manual.pdf
Reserved, must be kept at reset value. Bit 7 PVME4: Peripheral voltage monitoring 4 enable: V DDA vs. 2.2V 0: PVM4 ( V monitoring vs. 2.2V threshold) disable. DDA 1: PVM4 ( V DDA monitoring vs. 2.2V threshold) enable. Bit 6 PVME3: Peripheral voltage monitoring 3 enable: V DDA vs. 1.62V 0: PVM3 ( V monitoring
in „ADC differential mode“ · Mikrocontroller und Digitale Elektronik ·
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stm32l431_reference_manual.pdf
Reserved, must be kept at reset value. Bit 7 PVME4: Peripheral voltage monitoring 4 enable: V DDA vs. 2.2V 0: PVM4 ( V monitoring vs. 2.2V threshold) disable. DDA 1: PVM4 ( V DDA monitoring vs. 2.2V threshold) enable. Bit 6 PVME3: Peripheral voltage monitoring 3 enable: V DDA vs. 1.62V 0: PVM3 ( V monitoring
in „Offset Data alignment“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stm32l431_reference_manual.pdf
Reserved, must be kept at reset value. Bit 7 PVME4: Peripheral voltage monitoring 4 enable: V DDA vs. 2.2V 0: PVM4 ( V monitoring vs. 2.2V threshold) disable. DDA 1: PVM4 ( V DDA monitoring vs. 2.2V threshold) enable. Bit 6 PVME3: Peripheral voltage monitoring 3 enable: V DDA vs. 1.62V 0: PVM3 ( V monitoring
in „DMA one shot mode“ · Mikrocontroller und Digitale Elektronik ·
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40001722A.pdf
circuit is correctly biased. EQUATION 15-1: V OUT RANGES Table 15-1 shows the recommended minimum V DD vs. range setting. High Range: VOUT = VDD - 4VT TABLE 15-1: RECOMMENDED V DD VS. Low Range: VOUT = V DD - 2T RANGE Min. VDD , TSRNG = 1 Min. VDD, TSRNG = 0 The temperature sense circuit is integrated with
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
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PIC16F8X_JP.pdf
Power-on Reset RA3:RA0 Timing Watchdog RB7:RB1 Generation Timer W reg RB0/INT OSC2/CLKOUT MCLR V DD, VS OSC1/CLKIN DS30430C-J2-page 8 1998 Microchip Technology Inc. ͜ͷຊޠσʔλγʔτࢀߟïįĻĻķ:ööľľľõĴİĪĹĶĪįİķõĪĶĴ ͔ΒೖखͰ͖·͢ ð͍ɻ PIC16F8X දçúôøççėĐĊøýčÿğçϐϯΞτͷઆ໌ç çççç ççç ϐϯͷ໊শ ċĐė ĚĖĐĊ ĐöĖöė ĉļĭĭĬĹ આ໌ ĕĶõ ĕĶõ
in „Denglisch sprechender Kollege“ · Ausbildung, Studium & Beruf ·
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Epcos_NTCs.pdf
1695 1538 1852 9.3 2.6 3.6 65.0 1420 1281 1559 9.8 2.8 3.5 70.0 1195 1072 1318 10.3 3.0 3.4 75.0 1011 901.5 1120 10.8 3.3 3.3 80.0 858.2 761.4 955.1 11.3 3.5 3.2 85.0 731.9 645.9 818.0 11.8 3.7 3.1 90.0 626.7 550.1 703.2 12.2 4.0 3.1 95.0 538.7 470.5 607.0 12.7 4.2 3.0 100.0 464.8 403.9 525.7 13.1 4.5
in „Kennlinie VDO Öltemperaturgeber“ · Mikrocontroller und Digitale Elektronik ·
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Epcos_NTCs.pdf
1695 1538 1852 9.3 2.6 3.6 65.0 1420 1281 1559 9.8 2.8 3.5 70.0 1195 1072 1318 10.3 3.0 3.4 75.0 1011 901.5 1120 10.8 3.3 3.3 80.0 858.2 761.4 955.1 11.3 3.5 3.2 85.0 731.9 645.9 818.0 11.8 3.7 3.1 90.0 626.7 550.1 703.2 12.2 4.0 3.1 95.0 538.7 470.5 607.0 12.7 4.2 3.0 100.0 464.8 403.9 525.7 13.1 4.5
in „Temperatursensor Identifikation“ · Mikrocontroller und Digitale Elektronik ·
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slau049f.pdf
consumption is shown in Figure 2−9. Figure 2−9.Typical Current Consumption of 13x and 14x Devices vs Operating Modes 340 z 315 M 1 270 @ 225 225 A VCC = 3 V / 180 V = 2.2 V C 135 CC I 90 70 65 45 17 0 11 2 1 0.1 0.1 AM LPM0 LPM2 LPM3 LPM4 Operating Modes The low-power modes 0−4 are configured with the
in „Umrechnung: C-Code->Assembler-Code->Cycles“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BST-BMA220-DS000-05.pdf
................................................................................... 16 5.1 LATCHED VS .NON -LATCHED MODES ..................................................................................................... 16 5.2 S UPPORTED TYPES OF INTERRUPTS .......................................
in „Beschleunigungsensor Bosch BMA220“ · Mikrocontroller und Digitale Elektronik ·
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cc1100.pdf
-20 -10 0 Input Power [dBm] 1.2 kBuad 38.4 kBaud 250 kBaud 500 kBaud Figure 13: Typical RSSI Value vs. Input Power Level for Different Data Rates at 433 MHz 0 -10 -20 -30 ] -40 B [ -50 u o a -60 R I -70 S R -80 -90 -100 -110 -120 -120 -110 -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 Input Power [dBm] 1.2 kBaud 38.4 kBuad 250 kBaud 500 kBaud Figure 14: Typical RSSI Value vs. Input Power Level for Different Data Rates at 868 MHz SWRS038C Page 38 of 96 CC1100 17.4 Carrier Sense (CS) Studio to generate the correct MAGN_TARGET setting. Carrier Sense (CS) is used as a sync word
in „Scrambler für Funkstrecke“ · Mikrocontroller und Digitale Elektronik ·
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Exp_Meth_In_RF_Des--Wes_Hayward.pdf
increases is that p decreases over the dc and audio val Lies. This is shown Fig 2.27—Current gain vs Frequency for Fig 2.28—The hybrid-pi transistor in the curve of Fig 2.27 of |3 vs frequency. a BJT. model. The low frequency (3 is shown as p . 0he frequency where |3drops to a value of unity is called
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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PDF
252039.pdf
MINT automatically supports both NTSC and PAL. However, to detect error codes, set NTSC/PAL in the VS bit of VCM. If NTSC is not set, reference the number of data in the capture data count register (CDCN). If PAL is not set, reference the number of data in the capture data counter register (CDCP). If
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hufftabs_3_Ebenen.c
real.com) * June 2003 * * 06.01.2014 - Recalculated Huff-Tables for Big-Value codes / M.Schmidt * 2108 vs. 4242 words for Huffman table (but slower) * * hufftabs.c - compressed Huffman code tables **************************************************************************************/ #include "coder.h" /
in „Helix MP3 Dekoder mit kleineren Huffman-Tabellen“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
RXV667.pdf
section AD_Pr VIDEO Dec. HRX_VSEL AIN3 ] AD_Pb and LLC :DV HLK 36 AIN2 I/P HS [XX XXC HTX_D [0:35] VS XHH HH HTX_DE AIN1 ADV7800 SFL H HTX_VS AD_Y HTX_HS SOY HTX_CLK ANALOG VIDEO section VID_SEL1 VID_SEL2 IC64 VID_SEL3 FPGA VID_BYPS IC308 VIDEO PROCESSOR 4 CPNT_SEL CPNT_BYPS LC709004A VID_N_MMT SCRESET
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
M SC1U6D3V2KX-GP CH751H-40PT-GP DY2 2 V9 DCPRTC 2 C27131 +VCC_VRM d 1 SCD1U10V2KX-4GP n +5VS_PCH_VCC5REF L2703 a <1mA V5REF K49 1 2 1 2 +1.05VS_VCCA_B_DPL 2 AU24 VCCVRM C R2702 IND-10UH-218-GP k P J38 +3.3V_RUN 1 100R2J-2-GP 1 1 C2714 BB51 c L VCC3_3 C2715 C2735 SC1U6D3V2KX-GP 68mA +1.05VS_VCCA_A_DPL
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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PDF
PIC16F18344.pdf
circuit is correctly biased. EQUATION 16-1: V OUT RANGES Table 16-1 shows the recommended minimum V DD vs. range setting. High Range: VOUT = VDD - 4VT TABLE 16-1: RECOMMENDED V DD VS. Low Range: VOUT = V DD - 2T RANGE Min. VDD , TSRNG = 1 Min. VDD, TSRNG = 0 The temperature sense circuit is integrated with
in „EEPROM Verständnisproblem beim PIC 16F18344“ · Mikrocontroller und Digitale Elektronik ·
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BBK-29LEM-5093T2C_MSD308C-1.pdf
MIPS without scramble R111 2 A MIPS_WS 4'b1010 Secure MIPS with scramble 10K 1 Q100 FLASH SBUS 4'b1011 3906 SB3.3V 3 SYSTEM RST U103 0 8 1 SPI_CSN / VDD CE# SPI_SDO R178 4.7K AUBCK_OUT F R113 C199 7 HOLD# SO 2 #F_WP FLASH_WP 2. R116 1K 22nF SPI_SCK 6 SCK WP# 3 R108 1K R183 4.7K AUMCK_OUT 12 SPI_SDI 5
in „Datenblatt zu MSH9010-lf gesucht“ · Mikrocontroller und Digitale Elektronik ·
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6291174.pdf
BALAST_AC1 15.5V L691 R6611 D6611 6V 8 6V 5V 3 LAMP_ERR L691 6 R6607 D6606 6VD 5VD R6601 L693 4 K10U K31,2 6VS 6VS 5VS 5VS 5VS L694 2 POWER BOARD -5VS -5VS 5-8 6V AUDIO 6V AUDIO K6S 9,10 K8S 11-12 1 5V PC 5V PC W S P-FAIL T IC1881 VGA 15-18 S 9V 9V _ BUFFER P IC1871 M LAMP_SW 8 12 LAMP_SW1 L BUFFER BALAST_AC 11 9 BALAST_AC1 AV BOARD LAMP_BST_SW 2 18 3.3V REG. POWER 17 3 5V_SW IC6651 3.3VS FAN DRIVE 15 5 FAN DRIVE1 K68A K8A 2.5V REG. D1889 3.3VS 1 3.3VS IC6671 2.5VS D1891 3.3V REG. D6631 5VS 2 6VS IC3361 3.3VAS 3 39 1 41 K3W K10W IC7061 3.3V REG. 3.3V REG. D6641 82 33-36 3.3V IC6641 9V
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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SSD2119.pdf
) on page 66 05-Mar-08 Table 15-1 is updated to 1000 18-bit 6800 1001 9-bit 6800 1010 18-bit 8080 1011 9-bit 8080 “CONFIDENTIAL” water mark being removed. Pin name updated for pin 308 to 327 Operating Temperature update to -40 to +85 oC for Section 11(page 66) and Section 12(page 66). Approvers: Q&M
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Reference_Manual.pdf
Reserved, must be kept at reset value. Bit 7 PVMEN2: Peripheral voltage monitoring 4 enable: V DDA vs. DAC 1MSPS /DAC 15MSPS min voltage. 0: PVM2 ( VDDA monitoring vs. 1.8 V threshold) disable. 1: PVM2 ( VDDA monitoring vs. 1.8 V threshold) enable. Bit 6 PVMEN1: Peripheral voltage monitoring 3 enable: V vs. ADC/COMP min voltage 1.62V DDA 0: PVM1 ( VDDA monitoring vs. 1.62V threshold) disable. 1: PVM1 ( V monitoring vs. 1.62V threshold) enable. DDA Bits 5:4 Reserved, must be kept at reset value. Bits 3:
in „STM32G474RE UART“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau144j.pdf
..................................36........... 2-8. Typical Current Consumption of 'F21x1 Devices vs Operating Modes .........................................38.. 2-9. Operating Modes For Basic Clock System ....................................................................39....... 3-1. CPU Block
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
family_guide.pdf
..................................36........... 2-8. Typical Current Consumption of 'F21x1 Devices vs Operating Modes .........................................38.. 2-9. Operating Modes For Basic Clock System ....................................................................39....... 3-1. CPU Block
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
(DuringEmbeddedAlgorithms).. 74 Erase And Programming Performance . . . . . . . . 80 Figure 21. DQ2vs. DQ6...................................................... 74 Temporary Sector Unprotect .........................................................................75itance . . . . . 81 Figure 22. Temporary
in „S29GL064A Flash Speicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rm0444-stm32g0x1-advanced-armbased-32bit-mcus-stmicroelectronics.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 370 Table 76. Maximum output results vs N and M. Grayed values indicates truncation . . . . . . . . . . . . 374 Table 77. ADC interrupts . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „Problem mit Clock Configuration beim STM32G031“ · Mikrocontroller und Digitale Elektronik ·
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grundig32zollLedTV.pdf
0 P 0 1 S 1 4 D 2 9 S S S A H 1 0021R 2021R 7021R2021C E M H 3021R 8 3 1021C 2 I 1021D 9 F 8021R 1011S 1 7211R 10 204L 318R 418R 3 4011R 1 5148C 1 048C 2 H 0 3 5 R 0011L 1 8 8 I M 1 0 0 0 1 2 R R F 0 R C R 1 4 1 804R 2 1 804C 704C 8 005S 1 1 C 1011C 0 1 I 1 904R D 1 0 1 0 2 2 0 0 107CI 0 1 C 1 1 507C
in „Reparaturbericht LED-TV Grundig 32 VLE 5620 BN Ton gut, aber kein Bild“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
slau144i.pdf
..................................39........... 2-8. Typical Current Consumption of 'F21x1 Devices vs Operating Modes .........................................41.. 2-9. Operating Modes For Basic Clock System ....................................................................42....... 3-1. CPU Block
in „Anfängerprogramm TimerA MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F1503.pdf
circuit is cor- rectly biased. EQUATION 14-1: V OUT RANGES Table 14-1 shows the recommended minimum V DD vs. range setting. High Range: V OUT = VDD - 4VT TABLE 14-1: RECOMMENDED V DD VS. Low Range: V OUT = V DD - 2VT RANGE Min. VDD , TSRNG = 1 Min. VDD, TSRNG = 0 The temperature sense circuit is integrated
in „Versorgungsspannung vom PIC mit PIC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1D13513.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .434 20.1.2 Chip Select (1 CS# vs. 2 CS#) . . . . . . . . . . . . . . . . . . . . . . . . . . . .434 20.1.3 Endian Mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .435 20.1.4 CNF[4:0]- Host Bus Interface
in „S1D113513 + AT91RM9200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC18F46J11_39932D.pdf
onCAPe/VDDCORE pin to stabilize the voltage regulator output voltage. The V FIGURE 2-3: FREQUENCY vs. ESR VDDCORE pin must not be connected toDD and must use a capacitor of 10 µF connected to ground. The type PERFORMANCE FOR SUGGESTED V CAP can be ceramic or tantalum. Suitable examples of capacitors
in „PIC18F46J11 und RTC. Quarz nötig? Anfängerfrage Übersicht verloren ;-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UM_10120_LPC213x_User_Manual.pdf
T T M M C T M 7 L L 8 3 E 9 0 9 8 0 . E A A . S . S . . . . . D S A P VR X X P V P R P1 P P P P V VS VB 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 P0.21/PWM5/CAP1.3 1 48 P1.20/TRACESYNC P0.22/CAP0.0/MAT0.0 2 47 P0.17/CAP1.2/SCK1/MAT1.2 RTXC1 3 46 P0.16/EINT0/MAT0.2/CAP0.2 P1.19/TRACEPKT3 4 45 P0.15/EINT2 RTXC2
in „Zeichen im Interrupt empfangen“ · Mikrocontroller und Digitale Elektronik ·
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UM10120_1.pdf
T T M M C T M 7 L L 8 3 E 9 0 9 8 0 . E A A . S . S . . . . . D S A P VR X X P V P R P1 P P P P V VS VB 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 P0.21/PWM5/CAP1.3 1 48 P1.20/TRACESYNC P0.22/CAP0.0/MAT0.0 2 47 P0.17/CAP1.2/SCK1/MAT1.2 RTXC1 3 46 P0.16/EINT0/MAT0.2/CAP0.2 P1.19/TRACEPKT3 4 45 P0.15/EINT2 RTXC2
in „Baudrate Abtastfrequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCU_-_HR8P506_Datasheet_e.pdf
23 22 21 20 19 18 17 16 Reserved 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 LVDO Reserved IFS<2:0> IE IF VS<3:0> Reserved FLTEN EN — bit31-16 — — LVD output status bit LVDO bit15 R 0: The detected voltage > voltage threshold 1: The detected voltage < voltage threshold — bit14-13 — — These bits select the way
in „Re - Programmierung eines Cortex M0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407VGT6.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 69 Table 3. Memory mapping vs. Boot mode/physical remap in STM32F405xx/07xx and STM32F415xx/17xx . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 71 Table 4. Memory mapping vs. Boot mode/physical remap in STM32F42xxx
in „ARM Controller "richtig" programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407VGT6.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 69 Table 3. Memory mapping vs. Boot mode/physical remap in STM32F405xx/07xx and STM32F415xx/17xx . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 71 Table 4. Memory mapping vs. Boot mode/physical remap in STM32F42xxx
in „STM32F4 pointer Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau056e.pdf
current consumption is shown in Figure 2−8. Figure 2−8.Typical Current Consumption of 41x Devices vs Operating Modes 315 300 z M 270 1 225 @ 200 V CC= 3 V A 180 / 135 V CC= 2.2 V C I 90 55 45 32 17 11 0.90.7 0.1 0.1 0 AM LPM0 LPM2 LPM3 LPM4 Operating Modes The low-power modes 0−4 are configured with
in „MSP430 LCD Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau056e.pdf
current consumption is shown in Figure 2−8. Figure 2−8.Typical Current Consumption of 41x Devices vs Operating Modes 315 300 z M 270 1 225 @ 200 V CC= 3 V A 180 / 135 V CC= 2.2 V C I 90 55 45 32 17 11 0.90.7 0.1 0.1 0 AM LPM0 LPM2 LPM3 LPM4 Operating Modes The low-power modes 0−4 are configured with
in „MSP430FG439 mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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asus-p701-unlocked.pdf
Pull +3VA_EC 11 GND GND P 19 GPIO0D DISTP_SW# I Touch Pad Disabled,* 79 SCL2 SMB1_CLK I/OD 10K Pull +3VS 12 PCICLK CLK_PCI_EC I 20 SCI# KBC_SCI# O KBC_SCI#, 10K Pull +3VSUS 80 SDA2 SMB1_DAT I/OD 10K Pull +3VS 22 VCC +3VA_EC P 21 PWM1 BL_PWM_DA O LCD Light Switch 81 KSO16 N.C O Reserved 24 GND GND P 23 PWM2
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GD32F3x0_RM_v1.0.pdf
.......................................................187 CONV Table 11-6. Maximum output results vs N and M (Grayed values indicates truncation)....188 Table 12-1. DAC pins............................................................................................................................204
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