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SSD1325_Salomon.pdf
the output pin for the voltage output low level for COM signals. This pin should be connected to V SS. VSL O This is the output pin for the voltage output low level for SEG signals. This pin can be kept NC or connected with a capacitor to V SS for stability. Refer to command BFh for VSL pin connection
in „OLED VGY12864Z-S005 über LPT Port ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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S6D0154X_Data_Sheet_Rev1.00.pdf
0) (0) (0) (0) (0) (0) SST7-0 : Scroll Start and Step R34h W 1 0 0 0 0 0 0 0 SE18 SE17 SE16 SE15 SE14 SE13 SE12 SE11 SE10 Partial screen driving position (1) (0) (0) (1) (1) (1) (1) (1) (1) (R34H,R35H)/ SS17-10: screen start position R35h W 1 0 0 0 0 0 0 0 SS18 SS17 SS16 SS15 SS14 SS13 SS12 SS11 SS10
in „Nokia N95-Display“ · Mikrocontroller und Digitale Elektronik ·
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an-978_Bootstrap.pdf
10 7 HO HO 7 10 .47 IN LIN µF 5 5 µF LIN 12 VS VS 12 SD 3 VCC L2 L2 VCC 3 SD V 11 2.2µF 2.2 F 11 V SS 13 1 1 13 SS 2 LO LO 2 CURRENT SENSING COM COM Figure 29. Typical implementation of all H-Bridge with cycle-by-cycle current mode control 18 www.irf.com AN978a to generate the desired output voltage,
in „IR2184 half bridgde driver / Ist PWM-Signal begrenzt?“ · Mikrocontroller und Digitale Elektronik ·
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LT3756.pdf
.......................12V MaximumJunction Temperature...........................125°C VC, V REF , SS, FB........................................................Storage Temperature Range...................–65°C to 125°C PIN CONFIGURATION TOP VIEW L C V I I TOP VIEW 16 15 14 13 PWMOUT 1 16 GATE V REF 1 12 FB FB 2 15 SENSE PWM 2 11 PWMOUT ISN 3 14 VIN 17 ISP4 13 INTVCC SYNC OR OPENLED 3 10 GATE VC 5 12 SHDN/UVLO SS 4 9 SENSE CTRL 6 11 RT VREF7 10 SS 5 6 7 8 PWM 8 9 SYNC OR OPENLED R L C VI MSE PACKAGE U T 16-LEAD PLASTIC MSOP N I T = 125°C, θ
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Soldering_Iron_schematics.pdf
▯1 ▯2 ▯3 ▯4 ▯5 ▯6 20V-5V Step-down 20V 5V U1 D1 1 2 L1 ▯A 3 VIN OUTPUT 4 ▯A 6 GND FB 33uH SS32 C1 C2 5 GND D2 C4 C5 470uF 10uF C3 ON_OFF SS32 470uF 10uF C6 100nF 100nF LM2596S-5.0 GND USBC-Data USBC-PD Trigger logic 5V-3.3V Voltage Regulator DATA1 VBUS A4 B6 DP 20V A9 VBUS D+ A6 DP POWER1 ▯B
in „ESP gesteuerter JBC T245 Lötkolben mit USB-C PD - Schematic review“ · Mikrocontroller und Digitale Elektronik ·
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STK200SCHEMATIC.PDF
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „DS1820 Code + Atmel90S8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEM.PDF
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „Schaltplan für STK 200“ · Mikrocontroller und Digitale Elektronik ·
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Stk200_schematic.pdf
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „AVR_90S8535“ · Mikrocontroller und Digitale Elektronik ·
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STK200S.pdf
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „SRam am Atmega162 ohne zusätzliche Bauteile betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „Schaltplan STK200 und STK500 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_schematic.pdf
40PI N DIGITAL 11 PD5 (T1) (MISO) PB4 18 12 17 PD6(AIN0) (MOSI) PB3 T O PORT D 8515 13 16 PD7 (AIN1) (SS) PB2 VCC 14 PB0 (ICP) (0C1) PB1 15 TO PORT B 8515 10K AT90S4433 Resnet Lights and Switches PD0 PD0 1 2 PD1 PD2 3 4 PD3 5 6 PD1 PD4 7 8 PB0 +5V +5V 9 10 PD5 11 12 PD2 HEADER 8X2 PD6 13 14 PB1 RESET 1
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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Last_board_mixed.pdf
FEIN-IRER812 49,9Ohm AN3/C2INA/RPB3/RB3 ETXERR/AETXEN/RPD2/SDA3/RD2 SPI1_SDI_ADC 0 k OC1_PWM_2_GROB-IREG 14 AN2/C2INB/RPB2/RB2 EMDIO/AEMDIO/RPD1/SCK1/RD1 49 49,9Ohm R827 SPI1_CLK_ADC 8 , CPU_PROG_PGC 15 PGEC1/VREF-/CVREF-/AN1/RPB1/RB1 SOSCO/RPC14/T1CK/RC14 48 49,9Ohm R828 IO_PIC_ALARM R 3 10nF CPU_PROG_PGD
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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LTC3824fg.pdf
Soft-Start current.REshouldbeplacedveryclosetothepowerswitch S During soft-start, the voltage on the SS pinSSV is the withveryshorttraces.Goodkelvinsensingisrequiredfor referencevoltagethatcontrolstheoutputvoltageandthe accurate current limit. outputrampsupfollowingV .TheeffectiverangeofV SS SS isfrom0Vto0.8V.Thetypicaltimefortheoutputtoreach the programmed level is: t = C SS •0.8V SS 5μA 3824fg 8 LTC3824 applications information Inductor Selection The power dissipated by the MOSFET when the LTC3824 is in continuous mode is given by : The maximuminductor current is determined
in „DC/DC Wandler Vin 15-50V, Vout 12V 9A!“ · Analoge Elektronik und Schaltungstechnik ·
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11000.pdf
5 4 E D S S S E P A A A A P V O O V R V P P P P 44 43 42 41 40 39 38 37 36 35 34 RDI / PE1 1 33 V SS_1 PB0 2 32 V DD_1 PB1 3 ei0 31 PA3 (HS) PB2 4 ei2 30 PC7 / SS / AIN15 PB3 5 29 PC6 / SCK / ICCCLK (HS) PB4 6 ei3 28 PC5 / MOSI / AIN14 AIN0 / PD0 7 27 PC4 / MISO / ICCDATA AIN1 / PD1 8 26 PC3 (HS) /
in „Programmierung von ST72F321Bj9“ · Mikrocontroller und Digitale Elektronik ·
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EEPROM_s_93Cxx.pdf
= 1 MHz 1.5 mA ICC Supply Current (CMOS Inputs) V CC= 1.8V, S = IH, f = 1 MHz 1 mA V CC= 1.8V, S = SS, C = SS, CC1 Supply Current (Standby) ORG = V or V 5 A SS CC VIL Input Low Voltage (D, C, S) –0.3 0.2 VCC V VIH Input High Voltage (D, C, S) 0.8 VCC VCC + 1 V VOL Output Low Voltage (Q) VCC = 1.8V,OL
in „EEPROM 93C86 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_PHT_2021-05-05.pdf
1X12 PINHD-1X12 GND GND 3 1 5V USB 1 VCCIO 3 D 2 VCCIN 2 VOUT3V3 D N 3 GND 3 GND N G TU15 I G UU2 4 SS1O 4 IO3 V OAP7318-18SAG-7 V OAP7333-33SAG-7 5 SS2O 5 IO2 1 2 B 6 SS3O 6 GND 1 2 B 7 GPIO3 7 MOSI 1.8V 3.3V 8 GND 8 MISO C11 C1 + 9 SS0O 9 SCK 1u 5 C10 C9 1u V C2 C5 10 BCD_DET 10 GND V 1u 10u 1u 10u 11 SS 11 RESET# 12 GND 12 GND D N SS2O CS3.3 N G SS1O PD G SCK SCLK3.3 MISO MISO3.3 MOSI MOSI3.3 5V USB +5V C C GND U11 SC18IS600IPW,112 16 1 U3 15 IO5 GPIO0 2 PD TCA9406DCTR 14 WAKEIO4 CS 3 SDA 1 8 CU3_1
in „Rauschen durch GND Trennung reduzieren“ · Analoge Elektronik und Schaltungstechnik ·
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SPI-Level-Shift-MCP.pdf
1785-1-ND ( 6V3) 3 C3 1nF C0603 4 C4 100nF C0603 5 C5 100nF C0603 6 C6 100nF C0603 7 IC1 MCP23S17-E/SS SOP65P784X200-28N-MCP 1268578 MCP23S17-E/SS-ND 8 IC2 SN74AHCT1G125 SOT95P280X145-5N 1105927 296-4708-1-ND 9 IC3 TPS76428DBV SOT95P280X145-5N 296-2710-1-ND 10 IC4 74LVC07APW-T TSOP65P640X110-14N 1236302 568-2286-1-ND 11 JP1 PINHD-1X14 1X14 12 JP2 PINHD-1X14 1X14 13 R1 4k7 R0603 14 R2 4k7 R0603 15 R3 4k7 R0603 16 R4 4k7 R0603 17 R5 4k7 R0603 18 R6 4k7 R0603 19 R7 4k7 R0603
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wt8871.pdf
control 12h 1 R/W 2 ss_testb For testing control. Keep “1” of normal use. 1 R/W 1 ss_bypass 1 =power down (PLL off) and force output to ground 0 = Enable SS PLL 1 R/W 0 ss_onss Spread enable 7:4 Reserved 0h R/W 3:0 ss_delta
in „LCD Display HT070I36-E00“ · Mikrocontroller und Digitale Elektronik ·
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atxmega128_board-sch1.pdf
L 8 94 ADC6_AC6_TCK_PB6 12 9 10 9 10 AVCC_A ADC7_AC7_AC0OUT_TDO_PB7 4 AVCC_B OC0A_/OC0A_SDA_PC0 15 14 VCC OC0B_OC0A_XCK0_SCL_PC1 16 24 VCC OC0C_/OC0B_RXD0_PC2 17 34 VCC 18 GND 44 OC0D_OC0B_TXD0_PC3 19 PORTE PORTF 54 VCC /OC0C_OC1A_/SS_PC4 20 3V3 1 2 1 2 64 VCC OC0C_OC1B_XCK1_MOSI_PC5 21 3 4 3 4 74 VCC
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atxmega128_board-sch1.pdf
L 8 94 ADC6_AC6_TCK_PB6 12 9 10 9 10 4 AVCC_A ADC7_AC7_AC0OUT_TDO_PB7 AVCC_B OC0A_/OC0A_SDA_PC0 15 14 VCC OC0B_OC0A_XCK0_SCL_PC1 16 24 VCC OC0C_/OC0B_RXD0_PC2 17 34 VCC OC0D_OC0B_TXD0_PC3 18 GND 44 VCC /OC0C_OC1A_/SS_PC4 19 PORTE PORTF 54 VCC 20 3V3 1 2 1 2 64 OC0C_OC1B_XCK1_MOSI_PC5 21 3 4 3 4 3 74
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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Datei
vs1011_1.c
send the sequence 0x45 0x78 0x69 0x74 0 0 0 0. Zum read test: SCI STATUS (RW) Name Bits Description SS VER 6..4 Version SS APDOWN2 3 Analog driver powerdown SS APDOWN1 2 Analog internal powerdown SS AVOL 1..0 Analog volume control SS VER is 0 for VS1001, 1 for VS1011, 2 for VS1002 and 3 for vs1003. */
in „Sinustest des vs1011“ · Mikrocontroller und Digitale Elektronik ·
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Datei
vs1011_1.c
send the sequence 0x45 0x78 0x69 0x74 0 0 0 0. Zum read test: SCI STATUS (RW) Name Bits Description SS VER 6..4 Version SS APDOWN2 3 Analog driver powerdown SS APDOWN1 2 Analog internal powerdown SS AVOL 1..0 Analog volume control SS VER is 0 for VS1001, 1 for VS1011, 2 for VS1002 and 3 for vs1003. */
in „Sinustest des vs1011“ · Mikrocontroller und Digitale Elektronik ·
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gdm12864a.pdf
- 150 R F © 1998 Intech LCD Group Ltd. 64CH Common Driver For Dot Matrix LCD 10 Slave mode (MS=V ) SS CL2 WLC1 (PLK2=V )SS F R 0.7VDD t WHC1 0.3V DD t t SU WLC2 WLC CL2 (PLK2=V )DD R tF t t D HCL DIO1(SHL=V ) DD 0.7V DD 0.3V DD DIO2(SHL=V ) SS Input Data tH DIO1(SHL=V ) DD 0.7V DD DIO2(SHL=V ) 0.3V DD SS Output Data Characteristics Symbol Min Typ Max Unit Note CL2 Low Level Width WLC1 450 - - PCLK2=V SS CL2 High Level Width WHC1 150 - - PCLK2=V SS CL2 Low Level Width WLC2 150 - - PCLK2=V DD CL2 High
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doc8377.pdf
footprints. Atmel AT45DB Atmel AT25DF AT45DB64D2-CNU AT25DF641A-SH AT45DB321D-MWU AT25DF321A-SH AT45DB161D-SS AT25DF161-SH AT45DB081D-SS AT25DF081-SSH AT45DB041D-SS AT25DF021-SSH AT45DB021D-SS AT45DB011D-SS 9 8377B-AVR-11/11 6 Miscellaneous I/O 6.1 Mechanical buttons The board is equipped with three mechanical
in „[V] MEGA-1284P-XPLAINED“ · Markt ·
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MCP4261-DigitalPot-2Fach-50kDATASHEET.pdf
Resistor Network Terminal Disconnect Feature D O D via: S D D H C V S S - Shutdown pin (SHDN) CS 1 14 VDD 16 15 14 13 - Terminal Control (TCON) Register 13 SDO SCK 1 12WP • Write Protect Feature: SSDI 2 - Hardware Write Protect (WPControl pin V 3 12 SHDN SDI 2 EP 11NC SS 4 11 WP 17 P0B - Software Write
in „Step Down Regler zu heiss & Fragen zur Umsetzbarkeit einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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TRC103_Transceiver_RFM_121129.pdf
CONNECTION (OSCILLATOR INPUT) 12 - GND CONNECT TO GND 13 - NC NO CONNECT - FLOAT IN NORMAL OPERATION 14 I nSS_CONFIG SLAVE SELECT FOR SPI CONFIGURATION DATA 15 I nSS_DATA SLAVE SELECT FOR SPI TX/RX DATA 16 O SDO SERIAL DATA OUT 17 I SDI SERIAL DATA IN 18 I SCK SERIAL SPI CLOCK IN 19 O CLKOUT BUFFERED CLOCK
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UMS-21100.pdf
BIT 5 — Output data to LCO r 0 p 1 13 LD16_R4 LCD DATA 16 / RED BIT 4 — Output data to LCD e 2 a e 14 LD15_R3 LCD DATA 15 / RED BIT 3 — Output data to LCD c b p t 15 LD14_R2 LCD DATA 14 / RED BIT 2 — Output data to LCD A p G S 16 LD13_R1 LCD DATA 13 / RED BIT 1 — Output data to LCD , t o r i r 17 LD12
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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NCP1271-D.PDF
Reset LevelCC(latch) CC(reset)1.0 V) (Note 7) VCC(reset) − 4.0 − V V CCSupply Current 6 Operating (CC= 14 V, 1.0 nF LoadFB= 2.0 V, 65 kHz Version) ICC1 − 2.3 3.0 mA Operating (CC= 14 V, 1.0 nF LoadFB= 2.0 V, 100 kHz Version) ICC1 − 3.1 3.5 mA Output Stays Low (V = 14 V, V = 0 V) I − 1.3 2.0 mA CC FB CC2
in „Behringer B112D Funktionsweise Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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006ANE.pdf
tested. 7.44 8 8.56 Built-in capacitance G pF C Design value.A monitor pattern on a wafer is tested. 14.88 16 17.12 D SEIKO NPC CORPORATION —7 SM5006 series 5V operation: V DD = 4.5 to 5.5V, V SS = 0V, Ta = −40 to 85°C unless otherwise noted. Rating Parameter Symbol Condition min typ max Unit HIGH-level
in „Wie Quarz auf die 5.te Oberwelle zwingen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MB91F465DA-FujitsuMediaDevices.pdf
P17_5/PPG5 P07_7/A7 25 132 P17_4/PPG4 VDD35 26 131 VSS5 VSS5 27 QFP-208 130 VDD5 P06_0/A8 28 129 P14_7/ICU7/TIN7/TTG7/1 P06_1/A9 29 128 P14_6/ICU6/TIN6/TTG6/14 P06_2/A10 30 127 P14_5/ICU5/TIN5/TTG5/13 P06_3/A11 31 126 P14_4/ICU4/TIN4/TTG4/12 P06_4/A12 32 125 P14_3/ICU3/TIN3/TTG11 P06_5/A13 33 124 P14
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
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nucleo_F103RB_pinout_sheet.pdf
NC PA14 15 16 3,3V 3,3V SPI1_MOSI 7 D11 PA7 15 16 PB12 D38 SPI2_SS NC PA15 17 18 5V 5V I2C1_SCL T4 D10 PB6 17 18 PB11 D39 T2 I2C2_SDA GND 19 20 GND GND D9 PC7 19 20 GND I2C1_SDA T4 D24 PB7 21 22 GND GND TX0
in „Nucleo STM32-F103RB nun wirklich "Arduino kompatibel"“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Datenblattabschnitt LTC3630 mit Absolutwerten und Pinbelegung
Supply Voltage... -0.3V to 70V SW Voltage (DC)... -0.3V to (VIN + 0.3V) RUN Voltage... -0.3V to 6V SS, FBO, ISET Voltages... -0.3V to 6V VFB, VPRG1, VPRG2 Voltages... -0.3V to 6V Operating Junction Temperature Range (Notes 2, 3, 4) LTC3630E, LTC3630I... -40°C to 125°C LTC3630H... -40°C to 150°C LTC3630MP
in „INA229 Miniaturisierungswahnsinn“ · Platinen · · Screenshots
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pic16f88.pdf
AN3/C1OUT 2 17 RA0/AN0 RA4/T0CKI/C2OUT 3 7 16 RA7/OSC1/CLKI RA5/MCLR /VPP 4 8 15 RA6/OSC2/CLKO 6 V SS 5 1 14 VDD RB0/INT/CCP1 (1) I RB7/PGD/T1OSI 6 P 13 RB1/SDI/SDA 7 12 RB6/PGC/T1OSO/T1CKI RB2/SDO/RX/DT 8 11 RB5/SS/TX/CK RB3/PGM/CCP1 (1) 9 10 RB4/SCK/SCL 20-Pin SSOP RA2/AN2/CVREF 1 20 RA1/AN1 RA3/AN3
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·
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CAMXTOOL_V3_5_Sch_rev0_.pdf
5 10k GND K 5 3 4 GND NC NC ???(8PIN_PART) C38 D? GND NUP2202W1 GND 100n K J3 B (voltagesupressor) SS54 +24 B GND GND C? D? 1 A 100n 2 U? R? SS54 1 GND VCC 16 5V 5V R? SPINDLE CH340XI C? GND RXD R? 510 2 TxD R232 15 LED? 1k 510 Q? A 22p TXD R? 510 3 RxD RTS# 14 C? C? TxD 4 13 DTR 100n 1u X2 GND C? D+
in „Endstop CNC 3018 CAM TOOL v 3.5“ · Mikrocontroller und Digitale Elektronik ·
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ZSSC3122_cLite_Data_Sheet_rev_1_30.pdf
both alarms are configured as active high and full push-pull drivers for digital communication. C0 SS Alarm_High The AFE configuration registers select 14-bit resolution CC Alarm_Low for capacitance with a capacitance range from 2.9pF to 7.2pF. The internal temperature is set to 14-bit resolution. Figure
in „Hygrosens HYT221 an Atmega8 macht nichts“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
6 6 6 6 6 P5.5 10 60 P5.0 P0.3/AD3 11 59 P2.4/A12 P0.2/AD2 12 58 P2.3/A11 P5.6 13 57 P4.7 P0.1/AD1 14 56 P2.2/A10 P0.0/AD0 15 55 P2.1/A9 P5.7 16 54 P2.0/A8 VCC 17 AT89C51ED2 53 P4.6 PLCC68 52 NIC NIC 18 P1.0/T2 19 51 VSS P4.0 20 50 P4.5 P1.1/T2EX/SS 21 49 XTAL1 P1.2/ECI 22 48 XTAL2 P1.3/CEX0 23 47 P3.7
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
6 6 6 6 6 P5.5 10 60 P5.0 P0.3/AD3 11 59 P2.4/A12 P0.2/AD2 12 58 P2.3/A11 P5.6 13 57 P4.7 P0.1/AD1 14 56 P2.2/A10 P0.0/AD0 15 55 P2.1/A9 P5.7 16 54 P2.0/A8 VCC 17 AT89C51ED2 53 P4.6 PLCC68 52 NIC NIC 18 P1.0/T2 19 51 VSS P4.0 20 50 P4.5 P1.1/T2EX/SS 21 49 XTAL1 P1.2/ECI 22 48 XTAL2 P1.3/CEX0 23 47 P3.7
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
6 6 6 6 6 P5.5 10 60 P5.0 P0.3/AD3 11 59 P2.4/A12 P0.2/AD2 12 58 P2.3/A11 P5.6 13 57 P4.7 P0.1/AD1 14 56 P2.2/A10 P0.0/AD0 15 55 P2.1/A9 P5.7 16 54 P2.0/A8 VCC 17 AT89C51ED2 53 P4.6 PLCC68 52 NIC NIC 18 P1.0/T2 19 51 VSS P4.0 20 50 P4.5 P1.1/T2EX/SS 21 49 XTAL1 P1.2/ECI 22 48 XTAL2 P1.3/CEX0 23 47 P3.7
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
6 6 6 6 6 P5.5 10 60 P5.0 P0.3/AD3 11 59 P2.4/A12 P0.2/AD2 12 58 P2.3/A11 P5.6 13 57 P4.7 P0.1/AD1 14 56 P2.2/A10 P0.0/AD0 15 55 P2.1/A9 P5.7 16 54 P2.0/A8 VCC 17 AT89C51ED2 53 P4.6 PLCC68 52 NIC NIC 18 P1.0/T2 19 51 VSS P4.0 20 50 P4.5 P1.1/T2EX/SS 21 49 XTAL1 P1.2/ECI 22 48 XTAL2 P1.3/CEX0 23 47 P3.7
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
6 6 6 6 6 P5.5 10 60 P5.0 P0.3/AD3 11 59 P2.4/A12 P0.2/AD2 12 58 P2.3/A11 P5.6 13 57 P4.7 P0.1/AD1 14 56 P2.2/A10 P0.0/AD0 15 55 P2.1/A9 P5.7 16 54 P2.0/A8 VCC 17 AT89C51ED2 53 P4.6 PLCC68 52 NIC NIC 18 P1.0/T2 19 51 VSS P4.0 20 50 P4.5 P1.1/T2EX/SS 21 49 XTAL1 P1.2/ECI 22 48 XTAL2 P1.3/CEX0 23 47 P3.7
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
6 6 6 6 6 P5.5 10 60 P5.0 P0.3/AD3 11 59 P2.4/A12 P0.2/AD2 12 58 P2.3/A11 P5.6 13 57 P4.7 P0.1/AD1 14 56 P2.2/A10 P0.0/AD0 15 55 P2.1/A9 P5.7 16 54 P2.0/A8 VCC 17 AT89C51ED2 53 P4.6 PLCC68 52 NIC NIC 18 P1.0/T2 19 51 VSS P4.0 20 50 P4.5 P1.1/T2EX/SS 21 49 XTAL1 P1.2/ECI 22 48 XTAL2 P1.3/CEX0 23 47 P3.7
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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KS0108B.pdf
V0R 7 74 V0L VEE2 8 73 VEE1 S64 9 72 S1 S63 10 71 S2 S62 11 70 S3 S61 12 69 S4 K S60 13 68 S S5 S59 14 K0 67 S6 15 S S58 01 66 S7 0 S57 16 80 65 S8 B S56 17 8 64 S9 S55 18 B 63 S10 S54 19 62 S11 S53 20 61 S12 S52 21 60 S13 S51 22 59 S14 S50 23 58 S15 S49 24 S16 57 S48 25 56 S17 S47 26 55 S18 S46 27 54
in „GraphikLCD zeigt mir nichts“ · Mikrocontroller und Digitale Elektronik ·
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AVR32-64SD20-28-32-48-ProductBrief-DS40002417.pdf
WO 1, IN0 0, SCK3) 1, MISO 11 7 3 7 12 PC1 AIN29 1, RxD 0, MISO(3) 0, WO1 (3) 3, 1, IN1 0, TxD3) 0, SS(3) WO (3) 0, MOSI(3) 1, SCK 0, SDA(C) 12 8 4 8 13 PC2 TWI Fm+ AIN30 0, AINN3 3, ZCIN 1, XC(3) 0, SCK3) 0, SDA(HC) 0, WO2 (3) EVOUTC 1, IN2 1, AINN3 0, RxD 0, MISO(3) (3) 1, SS 13 9 5 9 14 PC3 TWI Fm+ AIN31 0, AINP4 1, X(3) 0, SS(3) 0, SCL(C(3)0, WO3 (3) 1, OUT 1, AINP4 0, XCK 0, SCK3) 0, SCL(HC) 14 10 6 10 15 VDDIO2 15 - - - - GND 16 - - - - PC4 1, TxD3) 1, MOSI(3) 0, WO4 (3) (3) (3) (3) 17 - - - - PC5 1, RxD 1, MISO 0, WO5
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MCP73871-Data-Sheet-20002090E__2_.pdf
exists between the code indicates the LBO threshold: A = disable, ExposedThermal Pad (EP) and the V SS pin.They must B = 3.0V, C = 3.1V and D = 3.2V. be connected to the same potential on the Printed Circuit Board (PCB). 3.14 Timer Enable (TE) The Timer Enable (TE) feature is used to enable or disable
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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LC4104C.pdf
characteristics apply when sealed in a Sanyo standard PGA-208 package. Absolute Maximum Ratings at V = 0 V SS Parameter Symbol Conditions min typ max Unit Maximum supply voltage VDDmax –0.3 7 V Maximum supply voltage VDDH max –0.3 40 V Maximum supply voltage V max –0.3 +0.3 V SS D0 to D7, LOAD, CP, R/L, TEST
in „Display von Pollin - Datenblatt - Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_bq27441.pdf
0.47 μF should be connected between the V pin and V . The capacitor should be placed close to the DD SS gauge IC and have short traces to both the V DD pin and V SS 10.2.2.3 Sense Resistor Selection Any variation encountered in the resistance present between the SRP and SRN pins of the fuel gauge will
in „Zustandsdaten Lithium Batterie“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
educ8sDELS2.txt
BLACK); display.drawRect(27, 4, 4, 4, BLACK); // Draw Fan Icon display.fillTriangle(2, 13, 4, 11, 5, 14, BLACK); display.fillTriangle(5, 14, 6, 11, 8, 13, BLACK); display.fillTriangle(2, 15, 5, 14, 4, 17, BLACK); display.fillTriangle(5, 14, 8, 15, 6, 17, BLACK); // Draw Fan-Speed Bargraph int f; f = analogRead
in „Verzweifelt wegen Drehencoder und Interrupt :/“ · Mikrocontroller und Digitale Elektronik ·