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IR2110-DataSheet.pdf
I Quiescent V supply current 19 — 15 30 V = 0V or V QDD DD IN DD IN+ Logic “1” input bias current 20 — 20 40 VIN= VDD IIN- Logic “0” input bias current 21 — — 1.0 VIN= 0V V V supply undervoltage positive going 22 7.5 8.6 9.7 BSUV+ BS threshold V BSUV- V BSsupply undervoltage negative going 23 7.0 8.2
in „Inverter DC/AC mit EGS002 China DEV-Board“ · Analoge Elektronik und Schaltungstechnik ·
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MW-BIC-2200.pdf
Flicker BS EN/EN61000-3-3 ----- SAFETY & BS EN/ EN55035, B S EN/EN61000-6-2 EM C Param eter Standard Test Level / Note (Note 4) ESD BS EN/EN61000-4-2 Level 3, 8KV air ; Level 2, 4KV contact Radiated BS EN/EN61000-4-3 Level 3 EM C IM M UNITY EFT / Burst BS EN/EN61000-4-4 Level 3 Surge BS EN/EN61000-6-2 2KV/Line-Line 4KV/Line-Earth Conducted BS EN/EN61000-4-6 Level 3 M agnetic Field BS EN/EN61000-4-8 Level 4 Voltage Dips and Interruptions BS EN/EN61000-
in „LifePo4 mit Labornetz laden und gleichzeit entladen“ · Analoge Elektronik und Schaltungstechnik ·
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Product_preview_LPSF096064A01-T3__Rev_1_0_.pdf
appropriate logic setting, which is described in the following table: 6800-parallel 8080-parallel 19,20 BS2, BS1 interface interface (8 bit) (8 bit) BS1 0 1 BS2 1 1 LPSF096064A01-T3 Page 3 Rev: 1.0 Sep 2005 Pin no. Symbol Function Power Supply pin for logic operation of the driver. It must be connected
in „O-LED Display von SMI“ · Mikrocontroller und Digitale Elektronik ·
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0.96-inch_OLED_screen_12864_specifications.pdf
2 C2P S C2 3 C2N D G Q1 4 G Q2 D C1 5 C1P S 6 C1N GPIO R3 C6 7 VBAT 8 N.C. U VDD VSS C5 9 VDD T 10 BS0 11 BS1 - 12 BS2 0 CS# 13 CS# RES# 14 RES# 2 D/C# 15 D/C# 0 R/W# 16 R/W# E 17 E/RD# 6 D[7:0] 18 D0 - 19 P 20 D1 21 D2 0 22 D3 23 D4 5 24 D5 D6 25 D7 R1 26 IREF C4 27 VCOMH C3 28 VCC 29 VLSS 30 N.C. (
in „Display von I-Radio wurde langsam immer dunkler.“ · Mikrocontroller und Digitale Elektronik ·
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0.96-inch_OLED_screen_12864_specifications.pdf
2 C2P S C2 3 C2N D G Q1 4 G Q2 D C1 5 C1P S 6 C1N GPIO R3 C6 7 VBAT 8 N.C. U VDD VSS C5 9 VDD T 10 BS0 11 BS1 - 12 BS2 0 CS# 13 CS# RES# 14 RES# 2 D/C# 15 D/C# 0 R/W# 16 R/W# E 17 E/RD# 6 D[7:0] 18 D0 - 19 P 20 D1 21 D2 0 22 D3 23 D4 5 24 D5 D6 25 D7 R1 26 IREF C4 27 VCOMH C3 28 VCC 29 VLSS 30 N.C. (
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
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0.96-inch_OLED_screen_12864_specifications.pdf
2 C2P S C2 3 C2N D G Q1 4 G Q2 D C1 5 C1P S 6 C1N GPIO R3 C6 7 VBAT 8 N.C. U VDD VSS C5 9 VDD T 10 BS0 11 BS1 - 12 BS2 0 CS# 13 CS# RES# 14 RES# 2 D/C# 15 D/C# 0 R/W# 16 R/W# E 17 E/RD# 6 D[7:0] 18 D0 - 19 P 20 D1 21 D2 0 22 D3 23 D4 5 24 D5 D6 25 D7 R1 26 IREF C4 27 VCOMH C3 28 VCC 29 VLSS 30 N.C. (
in „Kleine Frage zu TWI bzw. I²C Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Allvision_0_96_inch_OLED_128x64_SSD1306.pdf
2 C2P S C2 3 C2N D G Q1 4 G Q2 D C1 5 C1P S 6 C1N GPIO R3 C6 7 VBAT 8 N.C. U VDD VSS C5 9 VDD T 10 BS0 11 BS1 - 12 BS2 0 CS# 13 CS# RES# 14 RES# 2 D/C# 15 D/C# 0 R/W# 16 R/W# E 17 E/RD# 6 D[7:0] 18 D0 - 19 P 20 D1 21 D2 0 22 D3 23 D4 5 24 D5 D6 25 D7 R1 26 IREF C4 27 VCOMH C3 28 VCC 29 VLSS 30 N.C. (
in „Display"fehler" bei OLED Module IIC I2C 128x64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Allvision_0_96_inch_OLED_128x64_SSD1306.pdf
2 C2P S C2 3 C2N D G Q1 4 G Q2 D C1 5 C1P S 6 C1N GPIO R3 C6 7 VBAT 8 N.C. U VDD VSS C5 9 VDD T 10 BS0 11 BS1 - 12 BS2 0 CS# 13 CS# RES# 14 RES# 2 D/C# 15 D/C# 0 R/W# 16 R/W# E 17 E/RD# 6 D[7:0] 18 D0 - 19 P 20 D1 21 D2 0 22 D3 23 D4 5 24 D5 D6 25 D7 R1 26 IREF C4 27 VCOMH C3 28 VCC 29 VLSS 30 N.C. (
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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TRW-24G.pdf
================ ;======================================== MAIN_LOOP: BS P5,2 ;PW BC P5,0 ;R_LED BC P5,1 ;T_LED BC P6,3 ;CE CALL DELAY1MS MOV A,P6 AND A,@0X07 MOV KEY_REG,A JBC P5,3 ;CRYSTALL SELECT<0-16M 1-20M> BS KEY_REG,3 MOV A,KEY_REG AND A,@0X03 XOR A,@0X0 JBC 0X3,2
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_Elmos__981_03.pdf
8) CREC ADC/DAC (28) SCS / GPI (11) RTXH UART host (26) RXD KInterface interface (25) TXD RTX (21) BS1 (10) RTXL (20) BS0 (32) SAVE RTXL Internal (2) RESET Logic Monitoring (1) OTEMP (9) BUSN Unit (4) AOUT Q (23) EXTAL (22) INT clock Mode (7) WK / GPI (24) XTAL system Control - (16) i.c. + (27) GND 20V
in „Exposed Pad anschließen? (ATSAMD20E18A-MU und ELMOS E981.03)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRrescue.c
uint8_t inpData; sendcmd (0b00000100); switch (fnum) { // the 2113 and Tiny26 sockets only have a XA1/BS2 combi pin; we have to set XA1 and BS2 case 0: PORTC &= ~(_B1(BS1)); PORTC &= ~(_B1(XA1)); PORTB &= ~(_B1(BS2)); break; case 1: PORTC |= (_B1(BS1)); PORTC |= (_B1(XA1)); PORTB |= (_B1(BS2)); break; case
in „AVR-Rescue: standalone Parallel HV-Programmer“ · Projekte & Code ·
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Datei
fat16.c
ATTR_SYSTEM 0x04 #define ATTR_VOLUME_ID 0x08 #define ATTR_DIRECTORY 0x10 #define ATTR_ARCHIVE 0x20 //! Usage requires little endian compiler! struct BootSec_st { u08 BS_jmpBoot[3]; u08 BS_OEMName[8]; u16 BPB_BytesPerSec; //2 bytes u08 BPB_SecPerClus; u16 BPB_RsvdSecCnt; //2 bytes u08 BPB_NumFATs;
in „[atmega8] UART-Daten auf SD-Karte schreiben“ · Mikrocontroller und Digitale Elektronik ·
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NT56V661_2_0C0T-X8X16-891026.pdf
15 40 NC NC WE WE 16 39 DQM UDQM CAS CAS 17 38 CLK CLK RAS RAS 18 37 CKE CKE CS CS 19 36 NC NC A13/BS0 A13/BS0 20 35 A11 A11 A12/BS1 A12/BS1 21 34 A9 A9 A10/AP A10/AP 22 33 A8 A8 A0 A0 23 32 A7 A7 A1 A1 24 31 A6 A6 A2 A2 25 30 A5 A5 A3 A3 26 29 A4 A4 VDD VDD 27 28 VSS VSS 54-pin Plastic TSOP-II 400 mil
in „Verständnisfrage SD-RAM“ · Mikrocontroller und Digitale Elektronik ·
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TN2404K.pdf
3 D D S Ringer Circuits 3 3 S 2 Power Supply, Converters Top View Top View Motor Control TN2404KL BS107KL Top View BENEFITS TN2404K Device Marking Device Marking Front View Front View Low Offset Voltage Marking Code: K1ywl “S” TN “S” BS y = Year Codeber Code for TN2404K 2404KL “S” = Siliconix Logo 107KL
in „MOSFET gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
S6B33B2.h
define DOMS_DLN_144 DB4 #define DOMS_DLN_162 DB5 #define DOMS_DLN_92 (DB4 | DB5) #define DC_DC_SELECT 0x20 #define DDS_DC1_X15 DB0 #define DDS_DC1_X20 DB1 #define DDS_DC1_X20a (DB0 | DB1) #define DDS_DC2_X15 DB2 #define DDS_DC2_X20 DB3 #define DDS_DC2_X20a (DB2 | DB3) #define BIAS_SET 0x22 #define BS_BIAS1_15 DB0 #define BS_BIAS1_16 DB1 #define BS_BIAS1_17 (DB0| DB1) #define BS_BIAS2_15 DB4 #define BS_BIAS2_16 DB5 #define BS_BIAS2_17 (DB4| DB5) #define DCDC_CLOCK_DIVISION_SET 0x24 #define DCDS_DIV1_8 DB0 #define DCDS_DIV1
in „LCD-Modul SAMSUNG UG12D228AA von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
S6B33B2.h
define DOMS_DLN_144 DB4 #define DOMS_DLN_162 DB5 #define DOMS_DLN_92 (DB4 | DB5) #define DC_DC_SELECT 0x20 #define DDS_DC1_X15 DB0 #define DDS_DC1_X20 DB1 #define DDS_DC1_X20a (DB0 | DB1) #define DDS_DC2_X15 DB2 #define DDS_DC2_X20 DB3 #define DDS_DC2_X20a (DB2 | DB3) #define BIAS_SET 0x22 #define BS_BIAS1_15 DB0 #define BS_BIAS1_16 DB1 #define BS_BIAS1_17 (DB0| DB1) #define BS_BIAS2_15 DB4 #define BS_BIAS2_16 DB5 #define BS_BIAS2_17 (DB4| DB5) #define DCDC_CLOCK_DIVISION_SET 0x24 #define DCDS_DIV1_8 DB0 #define DCDS_DIV1
in „LCD-Modul SAMSUNG UG12D228AA von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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158950-da-01-en-BS170.pdf
MOTOROLA Order this document SEMICONDUCTOR TECHNICAL DATA by BS170/D TMOS FET Switching N–Channel — Enhancement BS170 1DRAIN 2 GATE 3SOURCE MAXIMUM RATINGS 1 Rating Symbol Value Unit 2 3 Drain–Source Voltage VDS 60 Vdc CASE 29–04, STYLE 30 Gate–Source Voltage —
in „3V DC Motor (300mA) mit transistor schalten“ · Mikrocontroller und Digitale Elektronik ·
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SMD_Catalog.pdf
t1B PMBT2222 Phi N SOT23 2N2222 t1B PMST2222 Phi N SOT233 2N2222 -1B PMST2222 Phi N SOT323 2N2222 1Bs BC817UPN Sie N SC74 - 1Cp BAP50-05 Phi B SOT23 dual cc GP RF pin diode 1C FMMT-A20 Zet N SOT23 MPSA20 1C MMBTA20L Mot N SOT23 MPS3904 1C IRLML6302 IR F SOT23 p-ch mosfet 20V 0.6A 1Cs BC847S Sie - SOT363
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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Datei
spi2.c
bcm2835_spi *bs, unsigned reg) { return readl(bs->regs + reg); } static inline void bcm2835_wr(struct bcm2835_spi *bs, unsigned reg, u32 val) { writel(val, bs->regs + reg); } ////////////////////////////////////////
in „[F] SPI-Interrupt auf Raspberry Pi löst nicht aus -> warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
meataxe.h
T_BITS */ char dummy[sizeof(long)-sizeof(Ushort)]; unsigned char buf[1]; } bitstring_t; extern size_t bs_size; void bs_print(bitstring_t *b); char *bs_desc(bitstring_t *b); void bs_setlen(int l); void bs_reset(bitstring_t *x); bitstring_t *bs_alloc(void); bitstring_t *bs_dup(bitstring_t *s); void bs_free(bitstring_t *b); void bs_set(bitstring_t *b, int i); void bs_clear(bitstring_t *b, int i); int bs_test(bitstring_t *b, int i); bitstring_t *bs_read(FILE *f); int bs_write(FILE *f, bitstring_t *b); void bs_and(bitstring_t *dest
in „warning: function declaration isn't a prototype“ · Mikrocontroller und Digitale Elektronik ·
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Datei
S6B33B2.h
define DOMS_DLN_144 DB4 #define DOMS_DLN_162 DB5 #define DOMS_DLN_92 (DB4 | DB5) #define DC_DC_SELECT 0x20 #define DDS_DC1_X15 DB0 #define DDS_DC1_X20 DB1 #define DDS_DC1_X20a (DB0 | DB1) #define DDS_DC2_X15 DB2 #define DDS_DC2_X20 DB3 #define DDS_DC2_X20a (DB2 | DB3) #define BIAS_SET 0x22 #define BS_BIAS1_15 DB0 #define BS_BIAS1_16 DB1 #define BS_BIAS1_17 (DB0| DB1) #define BS_BIAS2_15 DB4 #define BS_BIAS2_16 DB5 #define BS_BIAS2_17 (DB4| DB5) #define DCDC_CLOCK_DIVISION_SET 0x24 #define DCDS_DIV1_8 DB0 #define DCDS_DIV1
in „LCD-Modul SAMSUNG UG12D228AA von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_ThinkPad_T14s_Gen_1_Intel_NM-C891_Schematic_Diagram_p35.pdf
M2 BG0 VSS_N1 N1 M2 BG0 VSS_N1 N1 M2 BG0 VSS_N1 N1 VSS_T1 T1 VSS_T1 T1 VSS_T1 T1 VSS_T1 T1 5,36 M_B_BS1 M_B_BS1 N8 BA1 M_B_BS1 N8 BA1 M_B_BS1 N8 BA1 M_B_BS1 N8 BA1 5,36 M_B_BS0 M_B_BS0 N2 BA0 NC T7 M_B_BS0 N2 BA0 NC T7 M_B_BS0 N2 BA0 NC T7 M_B_BS0 N2 BA0 NC T7 M_B_A16 L8 M_B_A16 L8 M_B_A16 L8 M_B_A16
in „Wie lokalisiere ich ein defektes DRAM Modul?“ · PC Hard- und Software ·
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PDF
Novatek_NT96650.pdf
] / mvI/O I p/d0x6: NAND with Hamming ECC BS2 0x7: BMC (SPI) A LCD3 / LCD Signal Bus / BS3 : Reserved for FIW(MPLL control V10 L_GPIO[3] / mvI/O I p/dBS6..3 is for IC debugging setting. Please keep low at BS3 reset signal rising edge. U10 L_GPIO[4] / mvI/O I p/dBoot card select BS4 : BOOT_CTRD BS4 1: SDIO2 (SDIO2_2) LCD5 / LCD Signal Bus / BS5 : EJTAG_SEL T10 L_GPIO[5] / mvI/O I p/d0: GPIO (TRST, TMS, TCK, TDI, TDO are GPIO) BS5 LCD Signal Bus / BS6 : MPLL_CLK_SEL W9 L_GPIO[6]
in „Unbekannte Firmware disassemblieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803_2_0.pdf
shift, S/C = "0": cursor shift, R/L = "1": shift to right, Cursor or R/L = "0": shift to left. display BS1:BS0 = “00”: 1/4 bias (POR at display line=1) shift / 0 0 0 0 0 0 1 S/C R/L BS1 BS0 BS1:BS0 = “01”: 1/5 bias 39us Bias ratio BS1:BS0 = “10”: 1/6 bias (POR select at display line=2 or 4) BS1:BS0 = “11
in „DIP203 LCD mit TMS320F28335 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SmartHome_0916.pdf
) 22 Handsender HSD 2A BS Alu-Look, 2 Tastenfunktionen, auch als Schlüsselanhänger verwendbar Handsender HSD 2C BS Hochglanz verchromt, 2 Tastenfunktionen, auch als Schlüsselanhänger verwendbar Handsender HSP 4 BS 4 Tastenfunktionen
in „Einfahrtstor und Garagentor mit Smartphone öffnen“ · Haus & Smart Home ·
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PDF
SSD1332.pdf
375 RES 16 COM39 47 SC90 88 SC58 184 SC26 280 COM18 376 CS# 17 COM37 48 SB90 89 SB58 185 SB26 281 COM20 377 IREF 18 COM35 49 90 186 282 COM22 378 SA90 SA58 SA26 BS2 19 COM33 50 SC89 91 SC57 187 SC25 283 COM24 379 BS1 20 COM31 51 SB89 92 SB57 188 SB25 284 COM26 380 VDD 21 COM29 52 93 189 285 COM28 381 SA89
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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PDF
communication_protocol.pdf
impedance Description of EPP registers • Control Register 7 6 5 4 3 2 1 0 RUN CLR PCLK AINC STOP - BS1 BS0 BS1:BS0 Byte selector, defines byte order when reading data from data register. After every read from data register the byte selector is automatically incremented. Bytesel BS1:BS0 Data at data register
in „MiniLA Version MockUp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
communication_protocol_fw_1.7.pdf
impedance Description of EPP registers • Control Register 7 6 5 4 3 2 1 0 RUN CLR PCLK AINC STOP - BS1 BS0 BS1:BS0 Byte selector, defines byte order when reading data from data register. After every read from data register the byte selector is automatically incremented. Bytesel BS1:BS0 Data at data register
in „sigrok - Cross-Platform Open-Source Logic Analyzer Software“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX8352-A.pdf
VSSA NO.38 VSSA VSSD NO.51 VSSD NO.60 IOVCC IOVCC DMY_IOVCC EXTC DMY_GND TEST1 DMY_IOVBS0 DMY_GND BS1 DMY_IOVCC BS2 DMY_GND P68 DMY_IOVCC Chip Size: 18680 um x 1020 um TEST2 NRESET NO.82 (Including Seal-ring 20 um *2 NRESET DUMMY DMY_IOVCC Scribe line 40 um *2) VSYNC DMY_GND HSYNC DMY_IOVCC DOTCLK DMY_GND
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PDF
irs2453d.pdf
Micropower startup V BSsupply current --- 3 10 VCC ≤ VCCUV-, IQBS2UV V CC = VBS µA IQBS1, IQBS2 Quiescent V BS supply current --- 30 100 VBS1UV+, VBS supply undervoltage positive going 8.0 9.0 10.0 V BS2UV+ threshold V V BS1UV-, VBS supply undervoltage negative going 7.0 8.0 9.0 V BS2UV-, threshold V = V = 600 ILK1, ILK2 Offset supply leakage current --- --- 50 μA B S V Oscillator I/O Characteristics 19.6 20.2 20.8 R = 36.5 kΩ OSC Oscillator frequency kHz T 88 94 100 RT = 7.15 kΩ d R Tin duty cycle 48 50 52 % o < 100 kHz ICT C Tin current --- 0.05 1.0 μA ICTUV UV-mode C pTn pulldown current 1 5 --- mA V
in „oscillator, 555, gate driver“ · Mikrocontroller und Digitale Elektronik ·
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A200_IR2117_IR2117S.pdf
400 p 400 u M ax. u S 200 S M ax. V 200 Typ. V Typ. 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature () VBSSupply Voltage (V) Figure 13A. V Supply Current Figure 13B. V Supply Current BS BS vs. Temperature vs. Supply Voltage www.irf.com 11 IR2117(S)/IR2118(S)&(PbF) 1000 1000 A ) ( 800 (
in „Mosfet treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Glyn_2_83_C0280QGMA-T_Tentative_Spec_V0_1_-_GLYN.pdf
DPI Interface Characteristics Parameter Symbol Condition MIN TYP MAX Unit Vsync Setup Time VSST - 20 - - ns Vsync Hold Time VSHT - 20 - - ns Hsync Setup Time HSST - 20 - - ns Hsync Hold Time HSHT - 20 - - ns Pixel Clock Duty Cycle - 33 67 - % Pixel Clock Low Duration PCLKLT PCLKCYC 20 - - ns Pixel Clock
in „[V] AM OLED 2,8inch Display C0280QGMA-T von CMEL“ · Markt ·
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PDF
BC847BS_2xnpn.pdf
DISCRETE SEMICONDUCTORS DATA SHEET andbook, halfpage MBD128 BC847BS NPN general purpose double transistor Product specification 1999 Apr 28 Supersedes the data of 1997 Jul 14 Philips Semiconductors Product specification NPN general purpose double transistor BC847BS FEATURES
in „BC547 matched“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LC4104C.pdf
voltage V max –0.3 +0.3 V SS D0 to D7, LOAD, CP, R/L, TEST, DISP, M, EIO1, EIO2, Input voltage VIN BS –0.3 VDD + 0.3 V Input voltage V0, V2 V0, V2 V DDH– 7 V DDH+ 0.3 V Input voltage V3 V3 –0.3 VSS+ 7 V Input voltage V5 V5 –0.3 +0.3 V Operating temperature Topr –20 +75 °C Storage temperature Tstg –55
in „Display von Pollin - Datenblatt - Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BS108_GS.pdf
VD I = 100 mA 1) Thermal Resistance Junction to Ambient Air RthJA – – 150 K/W Capacitance at DS = 20 V,GS = 0, f = 1 MHz Input Capacitance C iSS – 80 – pF Output Capacitance C – 20 – pF OSS Feedback Capacitance C rSS – 5 – pF Switching Times at GS = 10 V,DS = 10 V,DR = 100 Turn-On Time ton – 5 – ns
in „Wär ganz toll wenn sich einer von euch mal meinen Schaltplan ansehen würde“ · Mikrocontroller und Digitale Elektronik ·
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d_4490B_4490BS_MIN.pdf
40B Steuerungen: BLD 5018, BLD 7010 Motion Controllers: Hersteller Anfragen Serie 4490 ...B, 4490 ...BS 4490 H 024 B 036 B 048 B 024 BS 036 BS 048 BS Wicklungsbeschaltung ∆ Dreieckschaltung Sternschaltung 1 Nennspannung U N 24 36 48 24 36 48 Volt 2 Anschlusswiderstand, Phase-Phase R 0,237 0,445 0,720 0,690
in „Wärmeentwicklung Brushless-Motor“ · Mikrocontroller und Digitale Elektronik ·
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IR2130.pdf
ESIGNERS M ANUAL B-147 IR2130 100 100 80 80 ) ) µ µ t t e 60 e 60 u u y y l l u 40 u 40 S SS V VB Max. 20 20 Max. Typ. Typ. 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) V BSFloating Supply Voltage (V) Figure 27A.V BS Supply Current vs.Temperature Figure 27B.V BS Supply Current vs.Voltage
in „Wie gross muss C für Ladungspumpe IR2130 sein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1303.pdf
SEG128 136 SEG68 196 SEG8 17 CS# 77 SEG127 137 SEG67 197 SEG7 18 NC 78 SEG126 138 SEG66 198 SEG6 19 BS2 79 SEG125 139 SEG65 199 SEG5 20 BS1 80 SEG124 140 SEG64 200 SEG4 21 VDD 81 SEG123 141 SEG63 201 SEG3 22 NC 82 SEG122 142 SEG62 202 SEG2 23 NC 83 SEG121 143 SEG61 203 SEG1 24 NC 84 SEG120 144 SEG60 204
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Nano_Universal2_sch.pdf
1K 1K 1K Q L D 0 2 K3 I W D K1 K2 RT314A12 K4 R33 R38 3 B ADC0 1 N R8 D RT314A12 RT314A12 RT314A12 20K G N 620R 2K G R10 A2 A1 1K A2 A1 A2 A1 1 A2 A1 D 1 C 1 1 1 L D C 2 Q3 GND 2 Q1 2 Q2 BS170 12 2 Q4 BS170 12 BS170 12 BS170 12 R34 2 l R12 3 11 R17 3 11 R21 3 11 R24 3 11 1K 1 i 20K 14 2 +12V i 20K 14 20K 14 20K 14 4 1 D 1 8 Z 2 6 GND Q L D 0 GND GND GND R39 3 I Z R35 B 20K 620R E 2 L D GND 1 2 3 1 2 3 1 2 3 1 2 3 12V0 Digital2 Digital4 Digital7 Digital8 +12V + - F2 U1 +5V F1 1 2 1A L7805 4A 1 IN OUT
in „Arduino Nano Störungen und Durchbrennen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BS170_2N7000.pdf
) (TO-18 Lead Form) D S 1 Device Marking D 1 Device Marking Front View Front View 100 W “S” 2N “S” BS G G 2 7000KL G 2 170KL xxyy xxyy “S” = Siliconix Logo “S” = Siliconix Logo D 3 xxyy = Date Code S 3 xxyy = Date Code Top View Top View S Ordering Information: 2N7000KL-TR1 Ordering Information: BS170KL-TR1
in „(Mosfet-) Alternative zu ULN2003“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MP2363_r1.3.pdf
.......–0.3V to +28V Switch Voltage V SW................. –1VINo V + 0.3V TOP VIEW Boost Voltage V BS........SWV– 0.3V to V SW + 6V BS 1 8 SS All Other Pins.................................–0.3V to +6V IN 2 7 EN Junction Temperature...............................150°C SW 3 6 COMP Lead Temperature....
in „Schaltregler gesucht“ · Mikrocontroller und Digitale Elektronik ·
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NHD-0420CW-AY3-587980.pdf
data bus lines. 15 /CS MPU Active LOW Chip Select signal 16 /RES MPU Active LOW Reset signal 17-19 BS0 – BS2 MPU MPU interface select signal 20 V SS Power Supply Ground Serial Interface: Pin No. Symbol External Connection Function Description 1 V SS Power Supply Ground Supply Voltage for OLED and Logic
in „NHD-0420CW-AY3 4x20 Zeilen OLED in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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schaltplan-final.pdf
QD 3 ENA_KLAPPLED 10 13 G QE 4 R19 74HC14 QF 5 ENA_MAUS VCC 6k2 U1 PC0 DQG 6 ENA_ERW1 MaussensorTR1 BS250 K C KLAPPE R4 N 7 ENA_ERW2 4k7 G QH VCC POT1 LCD VCC VCC VCC 74HC595 67W-5k TR2 BS250 KLAPPLED A E 8 ST4 R18 IC3D CNY70 R3 4k7 ENA_ABSTAND 39k 1 9 8 RADR PC2 2 IC4 1 3 ST8 ENA_RADLED VCC R20 R6 74HC14
in „LCD DEM20485 in gerade Zeile springen (c't-Bot)“ · Mikrocontroller und Digitale Elektronik ·
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IR21844.pdf
or 5V QBS BS IN QCC Quiescent CC supply current 0.4 1.0 1.6 mA VIN= 0V or 5V IIN+ Logic “1” input bias current — 5 20 IN = 5V, SD = 0V I Logic “0” input bias current — 1 2 µA IN = 0V, SD = 5V IN- V CCUV+ VCC and
in „Simulation IR2183 Halbbrückentreiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Roland_FR4x_file_beschreibung_bitte_lesen.txt
that in the data portion. Data offset is at 2102 (0x836). I extracted that like this: $ dd skip=2102 bs=1 if=SET_ALL.FR4 of=SET_ALL_DATA.ST4 To extract the individual sections from the "ALL SET" data dump (keeping VTW together, inside of it is an upper and lower section though). $ dd skip=0 count=64 bs=1 if=SET_ALL_DATA.ST4 of=SET_ALL_VR.DATA $ dd skip=64 count=3572 bs=1 if=SET_ALL_DATA.ST4 of=SET_ALL_NEGP.DATA $ dd skip=3636 count=282 bs=1 if=SET_ALL_DATA.ST4 of=SET_ALL_EGP.DATA $ dd skip=3918 count=4064 bs=1 if=SET_ALL_DATA.ST4 of=SET_ALL_VTW.DATA $ dd skip=8302
in „BASH -Code auf Linux Mint ausführen, brauche bitte Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RGB.c
false, gs2 = false, gs3 = false, gs4 = false, gs5 = false, gs6 = false, gs7 = false, gs8 = false, bs1 = false, bs2 = false, bs3 = false, bs4 = false, bs5 = false, bs6 = false, bs7 = false, bs8 = false; char rot, gruen, blau, zeile_tmp; zeile_tmp = zeile; //Spalte 1 switch(s1) { case r: rs1 = true; break
in „RGB - LED Matrix mit Schieberegistern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cmu_qemu_steps.txt
cmudisk.raw 1060 2017-08-08 16:10:02 fdisk --compatibility=dos ./cmudisk.raw 1061 2017-08-08 16:12:20 dd if=/dev/null of=cmudisk.raw bs=1M count=2048 1062 2017-08-08 16:12:24 ls -l 1063 2017-08-08 16:12:41 dd if=/dev/zero of=./cmudisk.raw bs=1M count=2048 1064 2017-08-08 16:13:00 ls -ltr 1065 2017-08
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PDF
TPN15.1E_LA.pdf
/TEST_MODE_0(BS_9) NAND_D3/SD_DAT3/STBC_GPF28 Y9 ONENAND_D4 +5V_STB NAND_D4/STBC_GPF29 W9 ONENAND_D5 +5V_STB 4,6 BS11 W22 NAND_D5/STBC_GPF30 V10 ONENAND_D6 +5V_SW BS12 W20 STBC_GPG_9(BS11) NAND_D6/STBC_GPF31 W10 ONENAND_D7 DV33SB_NAND DV33 +5V_SW 4,9,11,13,16,17,18 BS13 V20 STBC_GPG_10(BS12) NAND_D7/STBC_GPG0 DV33 4,5,7,11,12,13,14,17,18 BS14 V19 STBC_GPG_11(BS13) U405 STBC_GPG_12(BS14) MX30LF1G08AA-T1 1Gb 48-TSOP DV15 DV15 4,12 W12 NAND_RE# 1 48 DV11 DV11 4,12 AB18
in „Philips 6300 TV Bildfehler "fading"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Filter.pdf
Bandstop-Transformation A()/dB Tiefpass A()/dB Bandsperre AH AH Ar Ar 0 TP 0 0 C TP H TP 0 1 0 2 BS a b 1 w sTP TP 0 1 2 w 2 1 1 c BS 0 0 ksBS TP sBS 0 BS Tiefpass Bandstop Rkg k R0 R kg kR 0 L L C 1 1 w R g Lk gkR 0 Ck Lk 0 k TP c BS w0R 0gk BS 0 TP C L C 1 w g R C k g k CkBS k LBS 0 TP R0c 0R0 w 0gk TP Berechnung von n: HTP w w TP b 0 a 0 0 b 0 a Berechnung von A: w TP BS 0 cTP 0 BS F. Dellsperger 51 BFH
in „Bessel Filter, Butterworth Filter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AND9674-D.PDF
below the supply voltage (V ) of the gate driver. The bootstrap • T ON = 25 μs (Duty = 50% at f s 20 KHz) DD • ILKDIODE = 10 μA capacitor is discharged only when the high−side switch is turned on. This bootstrap capacitor is the supply voltage (V BS) for the high circuit section. The first parameter
in „Bootstrap Kondensator richtig wählen“ · Analoge Elektronik und Schaltungstechnik ·