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TR03109-1.pdf
des SMGW aus bisherigem Abschnitt 3.2.4 verscho ben Literaturver - Referenzen aktualisiert zeichnis DS Kapitel 2 - Detaillierung des bisherigen Anhang A (Wake-Up-Datenstruktur) DS Kapitel 3 - Detaillierung des bisherigen Anhang B (LMN-Zertifikate) DS Kapitel 4 - Detaillierung des bisherigen Anhang C (HAN-Zertifikate) DS Kapitel 5 - Verweis auf Anlage I CMS, die künftig in dieses Kapitel integriert wird DS Kapitel 6 - RESTful Webservice Protokoll (ersetzt bisherige Anlage II) DS Kapitel 7 - Protokoll zur (HAN-)Authentifizierung
in „Meinungen zu Stromanbietern wie Tibber?“ · Haus & Smart Home ·
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PDF
NEC-capacitors.pdf
PSLJ0J225M 10 4 500 141 4 6 ±20% ±20% 3.3 J PSLJ0J335M 10 4 500 141 4 6 ±20% ±20% 3.3 P PSLP0J335M 3 6 300 289 6 9 ±20% ±20% 4.7 J PSLJ0J475M 10 4 500 141 4 6 ±20% ±20% 4.7 P PSLP0J475M 3 6 300 289 6 9 ±20% ±20% 6.8 J PSLJ0J685M 10 6 500 141 6 6 ±20% ±20% 6.8 P PSLP0J685M 4.2 6 300 289 6 9 ±20% ±20% 6.8
in „Kondensator SMD-Code gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX186-MAX188.pdf
...........................25mA 1 Lead Temperature (soldering, 10sec).............................+300°C Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional X operation of the device at these or any other
in „Allgemeine Frage zu ADC Spezifikationen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX146-MAX147.pdf
............. -60°C to +150°C 4 Lead Temperature (soldering, 10s)................................ +300°C Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional 1 operation of the device at these or any other
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX146-MAX147.pdf
............. -60°C to +150°C 4 Lead Temperature (soldering, 10s)................................ +300°C Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional 1 operation of the device at these or any other
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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STM32F746G_Discovery.pdf
2 2 2 2 1uF 1 10nF01 1uF92 STLINK_RXR U3 4 P6 7 8 92 23 04 0R13434 D5D5 PVCP_TXX PISB121SB1202 C D DS S 3V3_ST_LINK 1K_1%_0402 5V_USB_ST_LINK PID501STPS1L30A _ _ _ _ _ 0 T T T T T 01LD6D 1.2Ilim = 612mA < Isc < 1.5Ilim = 765mA 5 Volts Output LED, red P2 U8U8 COSB1 5V U7OU7 LD39050PU33R 3V3_ST_LINK 02
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
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MAX7313-92585.pdf
Clock High Period HIGH 0.7 µs 20 + Rise Time of Both SDA and SCL Signals, Receiving tR (Notes 3, 4) 300 ns 0.1C b 20 + Fall Time of Both SDA and SCL Signals, Receiving F (Notes 3, 4) 300 ns 0.1C b 20 + Fall Time of SDA Transmitting tF.TX (Notes 2, 3, 5) 250 ns 0.1C b Pulse Width of Spike Suppressed tSP
in „MAX7313 an Arduino Nano - Pins nicht "schaltbar"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2403051032_Wuxi-I-core-Elec-Aip650EO_C5139014.pdf
Number: AiP650E-AX-XS-B037EN 6.2、SOP16 θ e Symbol Min. Dimensions (mm)r Max. Ab 0.33 0.51 E 5.80 o 6.300 Eθ c 00°5 1.27 08°9 - i http://www.i-core. cnO.777,JianzhuP.C.:214072 District,Wuxi City,Jiangsu Province VER:2024-01-B1 15 Tab: 835-12-B4ORE Electronics Co., Ltd. Number: AiP650E-AX-XS-B037EN 6.3、SSOP16
in „Zeigt her eure Kunstwerke (ab 2023)“ · Projekte & Code ·
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PDF
29F400.pdf
Hold Time Min 45 45 45 45 45 50 50 ns ELAX AH t t Data Setup Time Min 25 25 25 30 45 50 50 ns DVEH DS EHDX tDH Data Hold Time Min 0 ns OES Output Enable Setup Time Min 0 ns t t Read Recovery Time Before Write Min 0 ns GHEL GHEL (OE# High to WE# Low) WLEL tWS WE# Setup Time Min 0 ns EHWH tWH WE# Hold
in „AT91 & OpenOCD Externes Flash Problem“ · Mikrocontroller und Digitale Elektronik ·
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S8254A_E.pdf
detection voltage 2 0.5 V Accuracy ±100 mV • Overcurrent detection voltage 3 V VC1− 1.2 V Accuracy ±300 mV (3) Delay times for overcharge detection, overdischarge detection and overcurrent detection 1 can be set by external capacitors (delay times for overcurrent detection 2 and 3 are fixed internally
in „18650 protection charger board Frage“ · Analoge Elektronik und Schaltungstechnik ·
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GL9540_ServiceManual.pdf
1.2 s. An octaì latch (U13) is used in the drive circuit of the front paneì pushbutton indicator LtDS. 3-9 3.3.7 Bus Interface The interface tothe instrunBntation bus'is carrjed out by a Motorola Mc6B488 GeneraìPurpose Interface Bus (GPIB) chip (u3). Intandem with the bus transce'ivers(U4, U5), the GPIB
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doc7627.pdf
83 9,793 -6 523,757 24 104,919 54 28,229 84 9,471 -5 493,555 25 100,000 55 27,133 85 9,161 -4 465,300 26 95,342 56 26,085 86 8,863 -3 438,854 27 90,930 57 25,084 87 8,576 -2 414,089 28 86,750 58 24,126 88 8,300 -1 390,890 29 82,787 59 23,211 89 8,035 0 369,145 30 79,030 60 22,336 90 7,779 1 348,757
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PWM-Controller_ICE2QS01.pdf
till 1 RM After MOSFET is turned on, there will be some Once higher than V Set up/down oscillation on DS, which will also appear on the voltage RM counter to 1 on ZC pin. To avoid the MOSFET is turned on mistriggerred by such oscillation, a ringing suppression timer is implemented. The time is dependent
in „Ausfall Netzteil HAMEG HMO3524“ · Analoge Elektronik und Schaltungstechnik ·
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msp430f5529.pdf
Characteristics – Outputs, Reduced Drive 6.9 Peripherals .......................................57. Strength (PxDS.y = 0) .............................28 6.10 Input/Output Diagrams ............................82 5.14 Typical Characteristics – Outputs, Full Drive Strength (PxDS.y = 1) .............................29
in „Tastatur komplett selbst erstellen“ · PC Hard- und Software ·
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VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
Approved By> Date: Monday, June 15, 2015 Sheet 2 of 8 5 4 3 2 1 5 4 3 2 1 03. DART-MX6 J14 DF40C-50DS-0.4V(51) J16 DF40C-80DS-0.4V(51) 2 1 2 1 4 GND DART-MX6 HPLOUT 3 HPLOUT 5 7 RGMII2_RCLK 4 RGMII2_RCLK(GPIO6[30]) DART-MX6 (GPIO6[19])RGMII2_TCLK 3 RGMII2_TCLK 7 5 LINEIN1_RP 6 LINEIN1_RP HPROUT 5 HPROUT
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Book_of_Knowledge_german.pdf
VOU VIN S awtoot G enertor R1 Frver R2 D P WM OverTem p. ecton VREF P rt Enabl GND Rsd Csd Rs Cs D Ds N-FET DC/DC BOOK OF KNOWLEDGE Praktische Tipps für Anwender von Steve Roberts M.Sc. B.Sc. Technischer Direktor, RECOM DC/DC BOOK OF KNOWLEDGE Praktische Tips für Anwender Von Steve Roberts, M.Sc. B.SC
in „Eingangsfilter DC-DC-Wandler - mal wieder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RECOM_de_Buch.pdf
VOU VIN S awtoot G enertor R1 Frver R2 D P WM OverTem p. ecton VREF P rt Enabl GND Rsd Csd Rs Cs D Ds N-FET DC/DC BOOK OF KNOWLEDGE Praktische Tipps für Anwender von Steve Roberts M.Sc. B.Sc. Technischer Direktor, RECOM DC/DC BOOK OF KNOWLEDGE Praktische Tips für Anwender Von Steve Roberts, M.Sc. B.SC
in „Schaltnetzteil Grundlage“ · Analoge Elektronik und Schaltungstechnik ·
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FUTABA_LCD_Emulators.pdf
NA202MD15AA/BA-### - 310 440 Supply NA202SD16AA/BA-### I - 140 190 mA current CC NA204SD02AA/BA-### - 300 400 NA242SD04AA/BA-### - 155 215 NA402SD10AA/BA-### - 220 300 High-level input voltage (see Note) (E,R/W,RD/,SCK,RST/) V IH1 0.8*VCC - V CC V Low-level input voltage (see Note) V IL1 0.0 - 0.2*V CC
in „AVR Futaba Parallel "I80-Type" adaptieren auf "M68-Type"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Futaba_LCD_Emulators.pdf
NA202MD15AA/BA-### - 310 440 Supply NA202SD16AA/BA-### I - 140 190 mA current CC NA204SD02AA/BA-### - 300 400 NA242SD04AA/BA-### - 155 215 NA402SD10AA/BA-### - 220 300 High-level input voltage (see Note) (E,R/W,RD/,SCK,RST/) V IH1 0.8*VCC - V CC V Low-level input voltage (see Note) V IL1 0.0 - 0.2*V CC
in „Hat schon jemand was mit dem FUJITSU VF60 Display gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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HM17CM4096.pdf
0 0 0 1 0 1 1 ACL DCON: boosting circuit ON, ACL: ON T N reset LCD duty set 0 1 1 0 0 0 0 1 1 0 0 DS3 DS2 DS1 DS0 LCD driver duty ratio set boosting coefficient set 0 1 1 0 0 0 0 1 1 0 1 * VU2 VU1 VU0 Boosting times set bias ratio set 0 1 1 0 0 0 0 1 1 1 0 * B2 B1 B0 LCD drive bias set RE register set
in „LCD Graphik Display mit µController ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg.txt
Mo USB Tablet] on usb-0000:02 :00.0-1/inputO [ 1.336596] ata5 : SATA link down (SStatus 0 SContro1 300) [ 1.338896] atal : SATA link down (SStatus 0 SContro1 300) [ 1.341114] ata4 : SATA link down (SStatus 0 SContro1 300) [ 1.343287] ata2 : SATA link down (SStatus 0 SContro1 300) [ 1.345467] ata6 : SATA link down (SStatus 0 SContro1 300) [ 1.347596] ata3 : SATA link down (SStatus 0 SContro1 300) [ Z.0365411 Generic Explorer Mouse as /devices/platform/i804 input: ImExPS/2 2/ser iо1/input/input3 [ 103.0309201 random: nonblocking pool
in „qemu/kvm: unter Mint 19 läuft die VM, unter Mint 21 nicht“ · PC Hard- und Software ·
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MC39I_AT_COMMANDS.pdf
......299 9.1.15 Siemens release cause for Call related Supplementary Services (CRSS) (AT+CEER)....300 9.1.16 Siemens cause for Supplementary Services Entity..............................................................300 9.1.17 Siemens cause for Supplementary Services Manager.......................
in „DTMF mit GSM Modem auswerten“ · Mikrocontroller und Digitale Elektronik ·
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LP3947.pdf
Application Circuit can be found in the Application Note section. © 2004 National Semiconductor CorporatDS201110 www.national.com 7 9 3 Connection Diagrams and Package Mark Information L 20111002 (Top View) See NS Package Number SDA14B Pin Description Pin # Name Description 1 EN Charger Enable Input. Internally
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Siemens_1976_nurText.pdf
und achtstufigem Prioritätsvektor, Echtzeit- Stanzer Taktgeber, ein 256-Byte-Urladeprogramm, SME-2DS Floppy-Disk-System mit zwei Laufwerken 2 KByte ROM-Speicher und 16 KByte (Kapazitätje 1/4 MillionByte),aufDiskette RAM-Speicher. Der Anschluß verschiedenster gespeicherter Systemsoftware (DOS-16 oder
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7219.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
in „max. 50 LEDs ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
in „8 stellige 7 Segment anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
in „7-Segment ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICM7219.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
in „LED Dot-Matrix an AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Max7219.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
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PDF
ICM7219.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
in „8bit binär nach 7-Segment-Anzeige???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
in „selbstgebasteltes Display ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX_7219-7221.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
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PDF
ICM7219.pdf
........-65°C to +160°C X Current Lead Temperature (soldering, 10sec).............................+300°C DIG0–DIG7 Sink Current................................................500mA A SEGA–G, DP Source Current.........................................100mA Continuous Power Dissipation (A= +85°C) / Narrow
in „LED 5x7 Dot Matrix“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.4.pdf
Address setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH 200 - 120 - ns Enable
in „EA DOG-M Display (ST7046) und customchars. ARGH!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD-Controller_ST7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „DOG-M mit ATmega8 in Assembler ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „Initialisierungsfolge fuer EA DOGM 163 SPI 3.3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „DOG-M Display über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „LCD " ° " Zeichen aus Zeichensatz anzeigen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „Controller ST7036“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „Newbie Probleme bei LCD DOGM Initialisierung in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
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PDF
st7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
setup time RS tAW6 20 - 20 - System cycle time RS tCYC6 — 400 - 280 - ns Data setup time D0 to D7 DS6 100 - 80 - — ns Data hold time D0 to D7 DH6 40 - 20 - Access time D0 to D7 tACC6 - 500 - 400 CL = 100 pF ns Output disable time D0 to D7 OH6 300 - 150 - Enable H pulse time E tEWH — 200 - 120 - ns Enable
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
048_Relaisschaltungen_fuer_Bastler.pdf
VEB Werk für Bauelemente der Nachrichtentechnik Großbreitenbach hergestellten Klein· relais GBR 100, 300, 400 und 700. Gerade die RH-Relais, vom Herstellerwerk, dem VEB Elektro Apparate-Werke BerIin·Treptow, als "Zwischenrelais" bezeich net, verdienen Beachtung in bezug auf ihre technischen Daten. 15 ~
in „Bistabilen Zustand mit einem Taster (12v dc)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
spansion_inc_am29f040b_eol_21445e8-3004346.pdf
70 90 ns tAVWL tAS Address Setup Time Min 0 ns tWLAX tAH Address Hold Time Min 40 45 45 ns tDVWH tDS Data Setup Time Min 25 30 45 ns tWHDX tDH Data Hold Time Min 0 ns OES Output Enable Setup Time Min 0 ns Read Recover Time Before Write tGHWL GHWL (OE# high to WE# low) Min 0 ns tELWL tCS CE# Setup Time
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PDF
datasheet_SC16IS750.pdf
16× clock between desired and actual 50 2304 0 75 1536 0 110 1047 0.026 134.5 857 0.058 150 768 0 300 384 0 600 192 0 1200 96 0 1800 64 0 2000 58 0.69 2400 48 0 3600 32 0 4800 24 0 7200 16 0 9600 12 0 19200 6 0 38400 3 0 56000 2 2.86 9397 750 14832 © Koninklijke Philips Electronics N.V. 2006. All rights
in „UART_Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A3S56D3040ETP_I_ver_v.2.0_Zentel.pdf
A3S56D30ETP A3S56D40ETP Zentel Electronics Corp. 6F-1, No. 1-1, R&D Rd. II, Hsin Chu Science Park, 300 Taiwan, R.O.C. TEL:886-3-579-9599 FAX:886-3-579-9299 I Revision 2.0 Mar., 2009 A3S56D30ETP A3S56D40ETP 256M Double Data Rate Synchronous DRAM DESCRIPTION A3S56D30ETP is a 4-bank x 8,388,608-word x 8bit
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
253499-da-01-en-AKKU_BLEI_12V_12_AH.pdf
within 30 (33Ah to 65Ah) ) 20 three cycles of charge/discharge, not the minimum values. t n M ( 10 5 3 300 500 1 3 5 10 30 50 100 300 500 1000 30 <Temperature 20°C> (mA) (A) 20 Discharge current 15 10 30 <Temperature 20˚C> e r LC-XC1228AP 20 r o h ( 5 15 i f 4 LC-XC1238AP VRLA battery 10 o r i 3 u r for
in „[v] Zyklenfeste 12v 144Wh Akkus Panasonic 12 V 12 Ah LC-RA1212PG1 Blei-Vlies (AGM)“ · Markt ·