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AND9674-D.PDF
as shown in Figure 2. This is requirements of the power MOSFET and IGBT in various DD provided byV BS whenV isSpulled to a higher voltage by the switching−mode power−conversion applications. Where high-side switch, the V BS supply floats and the bootstrap input voltage levels prohibit the use of direct
in „Bootstrap Kondensator richtig wählen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vishay_0_96_inch_OLED_128x64_SSD1306.pdf
for logic circuit. 9 V DD This is a voltage supply pin. It must be connected to external source. 10 BS0 Communicating protocol select These pins are MCU interface selection input. See the following table: 2 11 BS1 I C 3-wire SPI 4-wire SPI 8-bit 68XX parallel 8-bit 80XX parallel BS0 0 1 0 0 0 BS1 1 0
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rxv396.pdf
VU273300 CN.BS.PIN 33P PJ351 VT003300 JACK.PIN 6P CB502 Vi878800 CN.BS.PIN 10P PJ352 VY667700 JACK.PIN 1P CB504 Vi878200 CN.BS.PIN 4P Q101 iC287820 TR 2SC2878A,B CB505 Vi878200 CN.BS.PIN 4P Q102 iC287820 TR 2SC2878A
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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dds_ds558.pdf
Supports Spurious Free Dynamic many digital communication systems. Quadrature syn- Range (SFDR) from 18 dBs to 150 dBs thesizers are used for constructing digital down and up • Support for 1 to 16 independent time-multiplexed converters, demodulators, and implementing various channels types of modulation
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SSD1327_1.2.pdf
r . COM63 RES# i . COM62 r . CS# e D . | D/C# o o . E(RD#) e m . | R/W# (WR#) M D o . A l C . COM1 BS0 c D c . COM0 BS1 C r D y . BS2 M t G r I G D7 D6 . D5 e . D4 i . SEG0 D3 D . SEG1 D2 t D1 e . D0 m . | e . | S . V . SEG126 CC . SEG127 V SS . V LSS GPIO VSL i r . r i v . COM64 t a g t D k r . d l
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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SSD1306-Revision_1.1__Charge_Pump__1_.pdf
NC 14 R/W# 94 SEG77 174 NC 15 D/C# 95 SEG76 175 NC 16 RES# 96 SEG75 176 NC 17 CS# 97 SEG74 177 NC 18 NC 98 SEG73 178 NC 19 BS2 99 SEG72 179 NC 20 BS1 100 SEG71 180 NC 21 VDD 101 SEG70 181 NC 22 NC 102 SEG69 182 COM0 23 NC 103 SEG68 183 COM2 24 NC 104 SEG67 184 COM4 25 NC 105 SEG66 185 COM6 26 NC 106
in „5V an den Datenleitungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1306.pdf
NC 14 R/W# 94 SEG77 174 NC 15 D/C# 95 SEG76 175 NC 16 RES# 96 SEG75 176 NC 17 CS# 97 SEG74 177 NC 18 NC 98 SEG73 178 NC 19 BS2 99 SEG72 179 NC 20 BS1 100 SEG71 180 NC 21 VDD 101 SEG70 181 NC 22 NC 102 SEG69 182 COM0 23 NC 103 SEG68 183 COM2 24 NC 104 SEG67 184 COM4 25 NC 105 SEG66 185 COM6 26 NC 106
in „OLED Grafik Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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NFAQ1560R43T-D.PDF
38 32 26 20 VBS=15V 34 32 A B 32 26 20 17 18 19 28 C 3 4 5 6 7 8 VBS=15V 26 V IC VBS=15V 22 VCE(sat) 20 VDD=15V 2,9,11,12 5V C B 1,10,17,18,19 Figure 17. Test Circuit for CE(SAT) • VF (Test by pulse) U+ V+ W+ U− V− W− A 38 38 38 32 26 20 A B 32 26 20 17 18 19 V VF B Figure 18. Test Circuit for V F www.onsemi.com 12 NFAQ1560R43T • RB (Test by pulse) U+ V+ W+ A A 2 2 2 B 34 28 22 V IB C 6 7 8 VB VDD=15V 2,9,11,12 (RB) 5V C B 1,10,17,18,19 Figure 19. Test
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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ArmAssemblerTutorial.pdf
function Blink: push { r4-r9, lr } ldr r4, =GPIOA_BSRR @ Load address of GPIOA_BSRR ldr r5, =GPIOx_BSRR_BS8 @ Register value to set pin to high ldr r6, =GPIOx_BSRR_BR8 @ Register value to set pin to low ldr r7, =BlinkTable @ Move address of "BlinkTable" into r7 ldr r8, =0 ldr r9, =18 BlinkLoop: str r5, [r4
in „ARM-Assembler-Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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2009101102_Senba-Sensing-Tech-BS612_C389589.pdf
数字智能热释电红外传感器 BS612 产品概述 BS612是将数字智能控制电路与人体探测敏感元都集成在电磁屏蔽罩内的热释电红 外传感器。人体探测敏感元将感应到的人体移动信号通过甚高阻抗差分输入电路耦合到 数字智能集成电路芯片上,数字智能集成电路将信号转化成ADC数字 信号,当PIR信号超过选定的数字阀值时就会有定时的REL电平输出。 OEN使能端可使REL输出或通过光照传感器自动控灵敏度和时间参 数通过分压电阻设置。所有的信号处理都在芯片上完成
in „PIR-Sensor wird von BME680 gestört, warum?“ · Mikrocontroller und Digitale Elektronik ·
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WEO012864GWPP3N00F00.pdf
Direction 3 10 3 3 O 2 2 O D1 P P 11 D0 12 E/RD# 13 SILICON R/W# 14 D/C# TAPE 15 RES# 16 CS# 5 0 17 BS2 5 18 BS1 9 19 VDD 6 . 1 ± 20 NC 5 21 VLSS 9 8 22 VSS 1 22 0.3±0.1 5 . P0.5*21=10.5 24.5±0.5 11.5±0.1 5 14.5 0 Common 63 Common 31 0.5±0.5 (Row 63) (Row 62) Common 32 0.43 0.4 (Row 1) Common 0 (Row 0
in „Oled ansteuern SSD1309“ · Mikrocontroller und Digitale Elektronik ·
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KWB_RS485_Protokoll.pdf
in +1 Inkrementen 6 7 8 Extern 9 Klixon Raumaustragung Füllstandssensor Klixon Stoker Endschalter BS Klappe Türkonta2t Extern 1 Byte 10 Sicherheitsthermostat RFK Taste TÜB Stoker 11 12 HK1 Vorlauf Temperatur 13 Rücklauf Temperatur 14 15 Boiler 0 Temperatur 16 17 18 KesselTemperatur 19 Puffer 2 (unten
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Treiber_IC-SSD0323_OLED_128x64_GELB.pdf
Systech BLOCK DIAGRAM . RES# r . COM39 CS# v . COM38 D/C# r . E (RD#) r n . d o . | R/W#(WR#) o m BS2 e o . BS1 M D C . COM1 BS0 A l . COM0 c D c . C r D S . M t G r D7 I G D6 D5 D4 D3 . D2 r . v . D1 r . SEG0 D0 t | e . SEG127 m . e . S . . . VDD . V SS . e o o . d o y t a n n s . COM40 a e a l i r
in „[Q]Erfahrungen mit (Reichelt) Pictiva OLED Displays“ · Mikrocontroller und Digitale Elektronik ·
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ATtiny26.pdf
Bits on page 113 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0”, and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1”, and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0”, and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. 117 1477K–AVR–08/10 Figure 63. Mapping Between BS1, BS2 and the Fuse- and Lock-bits
in „ATtiny26(L) Analog-Digital-Wandler ( ADC ) Datenblattübersetzung“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-schematics-2.1.pdf
DB6 6 3.3u PR1 ATXMEGA32A4U PE3 CTS R16 DB5 D +3.3V C18 C19 C21 PE2 32 1 GND 820k DB4 7 0.1u 0.1u 0.1u 9 VCC PE1 29 J8 DB3 8 1 19 VCC PE0 28 DB2 9 2 31 VCC CON6 10 8 1 8 GND PB3 7 SDIN / DB1 11 2 18 GND PB1 5 SCLK / DB0 12 x 3 30 GND PB0 4 E/RD 13 4 4 WIRE
in „Stromversorgung mit LM7805 (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-schematics-2.1.pdf
DB6 6 3.3u PR1 ATXMEGA32A4U PE3 CTS R16 DB5 D +3.3V C18 C19 C21 PE2 32 1 GND 820k DB4 7 0.1u 0.1u 0.1u 9 VCC PE1 29 J8 DB3 8 1 19 VCC PE0 28 DB2 9 2 31 VCC CON6 10 8 1 8 GND PB3 7 SDIN / DB1 11 2 18 GND PB1 5 SCLK / DB0 12 x 3 30 GND PB0 4 E/RD 13 4 4 WIRE
in „Auswerten symmetrischer potentialfreier Leitungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-schematics-2.1.pdf
DB6 6 3.3u PR1 ATXMEGA32A4U PE3 CTS R16 DB5 D +3.3V C18 C19 C21 PE2 32 1 GND 820k DB4 7 0.1u 0.1u 0.1u 9 VCC PE1 29 J8 DB3 8 1 19 VCC PE0 28 DB2 9 2 31 VCC CON6 10 8 1 8 GND PB3 7 SDIN / DB1 11 2 18 GND PB1 5 SCLK / DB0 12 x 3 30 GND PB0 4 E/RD 13 4 4 WIRE
in „ATXmega - Pin Eingang oder Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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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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Datei
graka.asm
;VGA Generator .include "M8515def.inc" ;@18,432MHz .def _NOP =r0 .def _Read =r1 .def _Write =r2 .def _Precharge =r3 .def _Activate =r4 .def RegSave =r5 .def Reload =r6 .def Color =r7 .def Byte =r8 .def R =r10 .def G =r11 .def B =r12 .def temp
in „VGA Grafikkarte mit AVR und 8MB SDRAM“ · Projekte & Code ·
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rts18160128fhc04-P16885-X01.pdf
CIE1931 CIEx (Green) 0.26 0.30 0.34 CIE1931 CIEy (Green) 0.59 0.63 0.67 CIE1931 CIEx (Blue) 0.10 0.14 0.18 CIE1931 CIEy (Blue) 0.14 0.18 0.22 CIE1931 Dark Room Contrast 2000:1 Viewing Angle 160 degree ResponseTime 10 μs Normal mode condition : - Driving Voltage : 17V - Contrast setting : 0x0f - Frame rate
in „RitDisplay RTS18160128FHC04 P16885 1,8" OLED Touch STM8“ · Mikrocontroller und Digitale Elektronik ·
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NT56V661_2_0C0T-X8X16-891026.pdf
NC DQ8 VDD VDD 14 41 VSS VSS LDQM NC 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
in „Verständnisfrage SD-RAM“ · Mikrocontroller und Digitale Elektronik ·
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fsp_technology_fsp202-4fs01_runtkb074wjqz_psu.pdf
ZD102 30 T101:6 S3 0 680 102 c E V 16B R126 470uF,25V U203 R239 K K K G R127 C114 3 V R 16 R125 36K 18V C222 2 IN BS 1 3 35 6 7 3 FB VGH 10 + 9 10K 5 5 5 R622 47K U101 " 4 2 0 R233 MP1583DP 104C230 L203 C R R R 12V/1.8A 3.9K " 4 R129 13 NC VS 15 1 C 81 7 EN SW 3 4 12V C111 SSC9502 10P C106 4148 T101:3
in „Welche Diode ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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ATtiny261A_Complete.pdf
). Figure 18-6. Programming the EEPROM Waveforms K A G B C E B C E L DATA 0x11 ADDR. HIADDR. LODATA XX ADDR. LOWDATA XX XA1/BS2 XA0 PAGEL/BS1 XTAL1 WR RDY/BSY RESET +12V OE 18.7.7 Reading the Flash The algorithm
in „USI Interface als SPI Schnittstelle beim ATtiny261A“ · Mikrocontroller und Digitale Elektronik ·
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134811331301357583812.pdf
Input VIH IO3.3MHz0μA, 0.8×VDD - VDD V Communicating Protocol Select Low Level Input IOUT= 100μA, W 17 BS2 These pins are MCU interface selection input. See the VIL 3.3MHz 0 - 0.2×VDD V following table: HiOutputel VOH IOU3.3MHzμA, 0.9×VDD - VDD V 68XX-parallel 80XX-parallel Serial Low Level IOUT= 100μA, 18 BS1 BS1 0 1 0 lutput VOL 3.3MHz 0 - 0.1×VDD V BS2 1 1 0 Current for VDD IDD Note5 - 250 400 μA 19 VDD Power supply for logic circuit. Operating ICC Note4 - 31 39 mA Current for VCC Note5 - 53 66 mA 20
in „Motorradtacho etc. Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MONIT.ASM
Matze Enterprise (C)91",h'0 kovw: call pstr .db cr,lf,'>',0 ld hl,buff ld b,h'0 ko03: call conin cp bs jr z,ko01 cp del jr z,ko01 cp ht jr z,ko02 ld (hl),a cp cr jr z,ko00 ko02: inc hl inc b ko12: call conout ld a,d'40 cp b jr z,ko00 jr ko03 ko01: ld a,b or a jr z,ko03 dec hl dec b ld a,bs jr ko12 ko00
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103xb.h
GPIO_BSRR_BS2 GPIO_BSRR_BS2_Msk /*!< Port x Set bit 2 */ #define GPIO_BSRR_BS3_Pos (3U) #define GPIO_BSRR_BS3_Msk (0x1UL << GPIO_BSRR_BS3_Pos) /*!< 0x00000008 */ #define GPIO_BSRR_BS3 GPIO_BSRR_BS3_Msk /*!< Port
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·
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Datei
stm32f103x6.h
GPIO_BSRR_BS2 GPIO_BSRR_BS2_Msk /*!< Port x Set bit 2 */ #define GPIO_BSRR_BS3_Pos (3U) #define GPIO_BSRR_BS3_Msk (0x1UL << GPIO_BSRR_BS3_Pos) /*!< 0x00000008 */ #define GPIO_BSRR_BS3 GPIO_BSRR_BS3_Msk /*!< Port
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·
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PDF
KWB_RS485_Protokoll.pdf
in +1 Inkrementen 6 7 8 Extern 9 Klixon Raumaustragung Füllstandssensor Klixon Stoker Endschalter BS Klappe Türkonta2t Extern 1 10 Sicherheitsthermostat RFK Taste TÜB Stoker 11 12 HK1 Vorlauf Temperatur Byte 13 Rücklauf Temperatur 14 15 Boiler 0 Temperatur 16 17 18 KesselTemperatur 19 Puffer 2 (unten
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PDF
Software_Guide_1.3_125kHz_OEM.pdf
for HITAG2 (26h / 27h)..............................................................................18 3.15 EM 4x02 Settings 2 (36h).....................................................................................................................18 3.16 HITAG1 Settings 2 (38h)......................
in „[V] USB LF-125KHz RFID Leser Kronegger on Bord Antenne (70x45mm) + SW Tool (13€)“ · Markt ·
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PDF
atmega8China.pdf
锁定位只能通过芯片擦除命令来清除。 读取熔丝位和锁定位 读取熔丝位及锁定位的步骤如下 ( 命令加载细节见 P 214“ 对 Flash 进行编程 ” ): 1. A:加载命令 “0000 0100”。 2. 将 OE、BS2 和 BS1 置 "0”,然后从 DATA 读取熔丝低位的状态 ("0” 表示已编程 )。 3. 将OE置"0”,BS2和BS1置“1”,然后从DATA读取熔丝高位的状态("0”表示已编程 )。 4. 将OE 置 "0”,BS2 置"0”,BS1置 “1”,然后从 DATA 读取锁定位的状态 ("0”表示已 编程 )。 5. 将 OE 置 “1”。 Figure 108. 读操作过程中 BS1、 BS2 与熔丝位及锁定位的对应关系 Fuse low byte 0 DATA Lock bits 0 1 Fuse high byte 1 BS1 BS2 219 2486N–AVR–07/04 读取标识字节 读取标识字节的算法如下 ( 命令与地址加载参考 P 214“ 对 Flash 进行编程 ” ): 1. A:加载命令 “0000 1000”。 2. B:加载地址低字节 0x00 - 0x02。
in „Buch AVR von Günter Schmitt durcharbeiten“ · Mikrocontroller und Digitale Elektronik ·
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LNG_BG_v2.11.a.pdf
DC 2 x 12V~ Reihensch. JP1=1 JP2=0 ohne K1 X3-1X3-2 2 x 12V~ Relaisumschaltung JP1=JP2=0 1J1 2 2 x 18V~ Parallel JP1=JP2=1 J5MM 1 + + V V X4-4 8 GND X4-3 1 U 1 4 5 AC In O K B+ B W 2 W 2 12V~ P AC1 K AC2 2 R 2 R 5 5 - R 1 2 M S 0 0 M J J 1 V V Q2 OUT+ 1 R18 3 R16 + + 2SD882 1 56k LM336LP-5V 1k X4-2 VR51
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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SSD1331_v1.2.pdf
255 SA35 335 SB8 16 RES# 96 SA88 176 SB61 256 SC34 336 SA8 17 CS# 97 SC87 177 SA61 257 SB34 337 SC7 18 IREF 98 SB87 178 SC60 258 SA34 338 SB7 19 BS2 99 SA87 179 SB60 259 SC33 339 SA7 20 BS1 100 SC86 180 SA60 260 SB33 340 SC6 21 VDD 101 SB86 181 SC59 261 SA33 341 SB6 22 NC 102 SA86 182 SB59 262 SC32 342
in „Spannungsreglerproblem durch Frequenzen bei Arduino Adafruit“ · Mikrocontroller und Digitale Elektronik ·
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SSD1305.pdf
SEG110 174 SEG30 15 D/C# 95 SEG109 175 SEG29 16 RES# 96 SEG108 176 SEG28 17 CS# 97 SEG107 177 SEG27 18 FR 98 SEG106 178 SEG26 19 BS2 99 SEG105 179 SEG25 20 BS1 100 SEG104 180 SEG24 21 VDDIO 101 SEG103 181 SEG23 22 VDD 102 SEG102 182 SEG22 23 VCIR 103 SEG101 183 SEG21 24 BGGND 104 SEG100 184 SEG20 25 VBREF
in „i2c lese problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSASW00146882.pdf
SEG110 174 SEG30 15 D/C# 95 SEG109 175 SEG29 16 RES# 96 SEG108 176 SEG28 17 CS# 97 SEG107 177 SEG27 18 FR 98 SEG106 178 SEG26 19 BS2 99 SEG105 179 SEG25 20 BS1 100 SEG104 180 SEG24 21 VDDIO 101 SEG103 181 SEG23 22 VDD 102 SEG102 182 SEG22 23 VCIR 103 SEG101 183 SEG21 24 BGGND 104 SEG100 184 SEG20 25 VBREF
in „OLED Display mit ssd1305 Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EA_W128128-XR.pdf
36.98¡ Ó 0.2 2.05¡ Ó 0.2 1 VSS 35.98(PLZ) 0.70 30.00 AA 1.10 2 VCC 3 VCOMH 4 VCI 5 VDD Cover Glass 6 BS1 BS2 7 s R 6 8 VSS l G ) r Z A 9 IREF 2 e P A . v ( 10 CS# 0 o 3 0 . 3 C . . 9 2 3 5 0 11 RES# . . 3 3 4 6 12 D/C 3 Pull tape 13 W/R# g 14 RD# i d e 15 D0 b n 16 D1 U IC 0 R . 17 D2 6 1 5 0 0.235 3 1
in „OLED-Display SPI Psoc4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD-Controller_ST7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „DOG-M mit ATmega8 in Assembler ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „Initialisierungsfolge fuer EA DOGM 163 SPI 3.3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „DOG-M Display über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „LCD " ° " Zeichen aus Zeichensatz anzeigen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „Controller ST7036“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
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PDF
st7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
and display shift Display Shift 0 0 0 0 0 1 S/C R/L X X control bit, and the direction, withoutµs 18.5 µs 14.3 µs changing DDRAM data. Set CGRAM address in address Set CGRAM 0 0 0 1 AC5 AC4 AC3 AC2 AC1 AC0 26.3 µs 18.5 µs 14.3 µs counter Instruction table 1(IS[2:1]=[0,1]) BS=1:1/4 bias BS=0:1/5 bias Bias Set 0 0 0 0 0 1 BS 1 0 FX FX: fixed on high in 3-line 26.3 µs 18.5 µs 14.3 µs application and fixed on low in other applications. Set ICON 0 0 0 1 0 0 AC3 AC2 AC1 AC0 Set ICON address in address 26.3 µs 18.5 µs 14.3 µs
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
valvo.txt
Transistor;https://www.web-bcs.com/ B2;;BSV52;Valvo;SOT23;Transistor;https://www.web-bcs.com/transistor/tc/bs/BSV52.php?lan=de B5;;BSR12;Valvo;SOT23;Transistor;https://www.web-bcs.com/transistor/tc/bs/BSR12.php?lan=de C71;;BCW61A;Valvo;SOT23;Transistor;https://www.web-bcs.com/ C72;;BCW61B;Valvo;SOT23;Transistor
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic.pdf
MICRO_USB_SMT GND SUSPEND_LOW CJ2301/NC 1 V BAT VCC D15 1N4148 8 1 CHRG 5 VBUS SOD323 VBUS RI 24 1 D5 BS5819 SL C21 PROG PH-2-WO D DM 4 DCD 23 DTR VBUS SOD-123 N D D- DTR 100nF G DSR 22 C0402 DP 3 D+ TXD 21 R0402 470R R9 U0RXD TP40542 20 R0402 470R R10 U0TXD C13 10 D RXD 19 RTS R18 10uF 16 NC N RTS 18 5V
in „Stromverbrauch ESP32 Devboard TTGO T8 minimieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronikladen07.pdf
Hintergrundtask, Sigma- Delta A/D-Wandlung, Breakpoints und integriertes Source Level Debugging. DIE PREISE: BS1 BASIC Stamp 1 Modul (SIP14) 24,95 EUR BS2 BASIC Stamp 2 Modul (DIP24) 39,95 EUR BS2E BASIC Stamp 2E Modul (DIP24) 45,50 EUR BS2SX BASIC Stamp 2SX Modul (DIP24) 49,95 EUR BS2P24 BASIC Stamp 2P24 Modul (DIP24) 66,50 EUR BS2P40 BASIC Stamp 2P40 Modul (DIP40) 74,90 EUR BS2PE BASIC Stamp 2PE Modul (DIP24) 62,90 EUR BS2PX24 BASIC Stamp 2PX24 Modul (DIP24) 66,50 EUR JS1 Javelin Stamp Modul (DIP24) 74,90 EUR Parallax bietet
in „MC68000 von Motorolla“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a.pdf
DB6 DB5 DB4 DB3 DB2 DB1 DB0 Description UD2~1: Assign different doubt height format (POR=11) Double BS1:BS0 = “00”: 1/5 bias (POR) height(4- BS1:BS0 = “01”: 1/4 bias line)/ Bias/ 0 1 0 0 0 0 0 1 UD2 UD1 BS1 DH’ BS1:BS0 = “10”: 1/7 bias Display-dot BS1:BS0 = “11”: 1/6 bias shift DH’ = "1": display shift
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
DB6 DB5 DB4 DB3 DB2 DB1 DB0 Description UD2~1: Assign different doubt height format (POR=11) Double BS1:BS0 = “00”: 1/5 bias (POR) height(4- BS1:BS0 = “01”: 1/4 bias line)/ Bias/ 0 1 0 0 0 0 0 1 UD2 UD1 BS1 DH’ BS1:BS0 = “10”: 1/7 bias Display-dot BS1:BS0 = “11”: 1/6 bias shift DH’ = "1": display shift
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Attiny.txt
avrdude: Recv: . [14] avrdude: Recv: . [10] AVR Part : ATtiny85 Chip Erase delay : 400000 us PAGEL : P00 BS2 : P00 RESET disposition : possible i/o RETRY pulse : SCK serial program mode : yes parallel program mode : yes Timeout : 200 StabDelay : 100 CmdexeDelay : 25 SyncLoops : 32 ByteDelay : 0 PollIndex :
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·