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PDF
PCF8563.pdf
CLock line (SCL). Both lines must be connected to a positive supply via a pull-up resistor. Data transfer may be initiated only when the bus is not busy. 9.1 Bit transfer One data bit is transferred during each clock pulse. The data on the SDA line must remain stable during the HIGH period of the clock
in „LilyGo T-Watch 2020 v1 Micropython“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ITPModul.vhd
an CPU oAXdif :out std_logic_vector(95 downto 0):= (OTHERS => '0');--Sollwertdiff(16Bit) von inv.Transfer und Lin oImpLk :out std_logic:='1';--impulse von xyz itp enditp :out std_logic:='0';-- ende von Kontur:=0 (enditp-) itprun :out std_logic:='0';-- =1:interpolator läuft,aktuelle Sollwerte in oAXinkr
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Datei
ITPModul.vhd
an CPU oAXdif :out std_logic_vector(95 downto 0):= (OTHERS => '0');--Sollwertdiff(16Bit) von inv.Transfer und Lin oImpLk :out std_logic:='1';--impulse von xyz itp enditp :out std_logic:='0';-- ende von Kontur:=0 (enditp-) itprun :out std_logic:='0';-- =1:interpolator läuft,aktuelle Sollwerte in oAXinkr
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Datei
ITPModul.vhd
an CPU oAXdif :out std_logic_vector(95 downto 0):= (OTHERS => '0');--Sollwertdiff(16Bit) von inv.Transfer und Lin oImpLk :out std_logic:='1';--impulse von xyz itp enditp :out std_logic:='0';-- ende von Kontur:=0 (enditp-) itprun :out std_logic:='0';-- =1:interpolator läuft,aktuelle Sollwerte in oAXinkr
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Datei
ITPModul.vhd
an CPU oAXdif :out std_logic_vector(95 downto 0):= (OTHERS => '0');--Sollwertdiff(16Bit) von inv.Transfer und Lin oImpLk :out std_logic:='1';--impulse von xyz itp enditp :out std_logic:='0';-- ende von Kontur:=0 (enditp-) itprun :out std_logic:='0';-- =1:interpolator läuft,aktuelle Sollwerte in oAXinkr
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Datei
ITPModul.vhd
an CPU oAXdif :out std_logic_vector(95 downto 0):= (OTHERS => '0');--Sollwertdiff(16Bit) von inv.Transfer und Lin oImpLk :out std_logic:='1';--impulse von xyz itp enditp :out std_logic:='0';-- ende von Kontur:=0 (enditp-) itprun :out std_logic:='0';-- =1:interpolator läuft,aktuelle Sollwerte in oAXinkr
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PDF
AN1040.pdf
T (1) normally at conditions where current density is fairly uniform. ‰ where q = rate of heat transfer or power In some applications such as in RF power amplifiers and dissipation (D ) short-pulse applications, current density is not uniform and • h = heat transfer coefficient, … A = area involved in heat transfer, localized heating in the semiconductor chip will be the s T = temperature difference between regions of controlling factor in determining power handling ability. @ heat transfer. … Œ However, electrical
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN1040_Freescale.pdf
T (1) normally at conditions where current density is fairly uniform. ‰ where q = rate of heat transfer or power In some applications such as in RF power amplifiers and dissipation (D ) short-pulse applications, current density is not uniform and • h = heat transfer coefficient, … A = area involved in heat transfer, localized heating in the semiconductor chip will be the s T = temperature difference between regions of controlling factor in determining power handling ability. @ heat transfer. … Œ However, electrical
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
z16c30um.pdf
Address Register (CCAR) ............................. 5-41 Chapter 6 Figure 6-1. Flowthrough DMA Transfer Memory to Peripheral Device ..................... 6-2 Figure 6-2. Flowthrough DMA Transfer, Peripheral Device to Memory .................... 6-3 Figure 6-3. Flyby DMA Transfer, Memory to Peripheral
in „unbekanntes Bus (Frame) entziffern, brauche Hilfe.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
91055b.pdf
received from the PS/2 mouse. These two inter- rupts essentially handle everything, except for transfer- ring the translated PS/2 data to the PC via USB. DS91055B-page 2 Preliminary 2002 Microchip Technology Inc. TB055 TABLE 1: PS/2 MOUSE REPORT TABLE 2: USB MOUSE REPORT Byte Bit Description Byte
in „MC mit USB Interface“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IPCONFIG.txt
#define STACK_USE_DHCP_SERVER // Single host DHCP server //#define STACK_USE_FTP_SERVER // File Transfer Protocol (old) #define STACK_USE_SMTP_CLIENT // Simple Mail Transfer Protocol for sending email #define STACK_USE_SNMP_SERVER // Simple Network Management Protocol v2C Community Agent //#define STACK_USE_TFTP_CLIENT // Trivial File Transfer Protocol client //#define STACK_USE_GENERIC_TCP_CLIENT_EXAMPLE // HTTP Client example in GenericTCPClient.c #define STACK_USE_GENERIC_TCP_SERVER_EXAMPLE // ToUpper server example in GenericTCPServer.c
in „TCP/IP Stack Konfiguration des GenericTCPServers“ · Mikrocontroller und Digitale Elektronik ·
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Datei
20110326_log.txt
... 0 0 0 0 0 0 0 0 0 0 0 0 0 0 a5 d4 ................ rotational speed tolerance is > 0,5 disk transfer rate > 10Mbs fixed drive head switch time > 15us not MFM encoded hard sectored number of cylinders : 16383 number of heads : 16 unformatted bytes per track : 0 unformatted bytes per sector : 0 sectors
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEKTDS1000B_2000B.PDF
color digital storage oscilloscope offers as much bandwidth and sample rate for the Flexible Data Transfer price. The TDS1000B and TDS2000B With USB host and device ports which Series oscilloscopes provide accurate enable removable data storage, seamless real-time acquisition up to their full band- PC
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PDF
ds18b20_pre1.pdf
digital temperature sensor: it only had 3 pads and 2 of them had to be Ground and Vcc. How could one transfer digital data through only one wire? I had been always using two wires or more, one of them working as a clock source. However, it is possible to transfer data through only one wire making it controlled
in „Atmega 8 + dallas 18s20 + Neuling (never ending story)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EDN-_May-30-2002.pdf
g3neratestheproductofout- the load power is 10W. To change the is 0V. putvoltageandcurrent.Anoptionaluni- transfer-function gain, change the sense ● Scale factor (gain): Connect both X ty-gain inverter, IC 4, inverts the inverted resistor as follows: Gain⫽10R SENSE. For and Y inputs to 10V dc. Adjust multiplier
in „Einstellbare Konstantstromquelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FQPF9N25C-1120274.pdf
25 V, GS = 0 V, -- 545 710 pF E Coss Output Capacitance f = 1.0 MHz -- 115 150 pF T Crss Reverse Transfer Capacitance -- 45.5 60 pF Switching Characteristics d(on) Turn-On Delay Time -- 15 40 ns VDD = 125 V,DI = 8.8 A, r Turn-On Rise Time VGS = 10 V,RG= 25 Ω -- 85 180 ns d(off) Turn-Off Delay Time --
in „Mosfet defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK962R5-60E_NMOS.pdf
MHz; - 13070 17450 pF C oss output capacitance T j 25 °C; Fig. 15 - 1051 1260 pF C rss reverse transfer - 558 770 pF capacitance td(on) turn-on delay time V DS = 25 V; R L 1.8 Ω; V GS = 5 V; - 71 - ns tr rise time R G(ext) 5 Ω - 119 - ns t turn-off delay time - 224 - ns d(off) tf fall time - 128 - ns
in „Kann der NMOS so kaputt gehen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
si3459bdv.pdf
Capacitance C iss 350 Output Capacitance C oss VDS = - 30 V, GS = 0 V, f = 1 MHz 40 pF C Reverse Transfer Capacitance rss 30 V = - 30 V, V = - 10 V, I = - 2.2 A 7.7 12 Total Gate Charge Qg DS GS D 4.4 6.6 nC Gate-Source Charge Q gs VDS = - 30 V, GS = - 4.5 VD I = - 2.2 A 1.3 Gate-Drain Charge Q 2.5 gd
in „SMD Bauteil identifizieren "*"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PMV48XPA.pdf
V; f = 1 MHz; GS = 0 V; - 1000 - pF T j 25 °C C oss output capacitance - 130 - pF C rss reverse transfer - 90 - pF capacitance t turn-on delay time V = -10 V; I = -1 A; V = -4.5 V; - 11 - ns d(on) DS D GS R G(ext) 6 Ω; Tj= 25 °C tr rise time - 13 - ns td(off) turn-off delay time - 61 - ns tf fall time
in „Bauteil gesucht: Markierung: WDZ - SOT23-3“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PMV15UNEA.pdf
V; f = 1 MHz; GS = 0 V; - 1220 - pF T = 25 °C Coss output capacitance j - 124 - pF Crss reverse transfer - 102 - pF capacitance d(on) turn-on delay time V DS = 10 V; D = 6 A; VGS= 4.5 V; - 10 - ns R G(ext) 6 Ω; Tj= 25 °C r rise time - 24 - ns t turn-off delay time - 32 - ns d(off) f fall time - 34 -
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ds17287.pdf
Update-in-Progress. The UIP bit is a status flag that can be monitored. When the UIP bit is a 1, the update transfer occurs soon. When UIP is a 0, the update transfer does not occur for at least 244µs. The time, calendar, and alarm information in RAM is fully available for access when the UIP bit is 0. The UIP bit
in „RTC-Baustein DS17287-5 von Dallas an ATMega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1_TEA5768HL_Datasheet.pdf
decoder is adjustment-free. The stereo decoder can be switched to mono via the I C-bus. 8.1.1 DATA TRANSFER 7.13 Signal dependent mono to stereo blend Datasequence:address,byte 1,byte 2,byte 3,byte 4and byte 5 (the data transfer has to be in this order). The With a decreasing RF input level the MPX decoder
in „FM Stereo Radio mit TEA5768 von Philips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
19230ds.pdf
DEMOD VCO UP/DOWN (θ) - 1 ±1.25 V COUNTER CS S THRESHOLD 11 mV/LSB DIGITAL H = 1 OU(φ)T FIGURE 2.TRANSFER FUNCTION BLOCK DIAGRAM #1 VELOCITY OUT ERROR PROCESSOR VCO CT A1 S + 1 A DIGITAL RESOLVER + e B 2 POSITION I(θ)T S S + 1 S - 10B OUT (φ) H = 1 FIGURE 3.TRANSFER FUNCTION BLOCK DIAGRAM #2 Data Device
in „Stimulierung des Resolvers RD-19230“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEA5768HL_2.pdf
can be switched off via the IC-bus. operating at a higher clock rate. 7.12 MPX decoder 8.1.1 DATA TRANSFER The PLL stereo decoder is adjustment-free. The stereo Datasequence:address,byte 1,byte 2,byte 3,byte 4and decoder can be switched to mono via the I C-bus. byte 5 (the data transfer has to be in this
in „Einfaches Radio basteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM6206_Datasheet_v2.1_en.pdf
START, MCU should send 7-bit slave address (7‟b0111000) first, and then the 8 bit denotes a read transfer when it‟s high; or a write transfer when it‟s low. MCU write: S 8‟h70 0 8‟h01 0 Byte[1] 0 Byte[2] 1 P MCU read: S 8‟h70 0 8‟h00 1 S 8‟h71 0 Byte[0] 0 Byte[1] 0 Byte[2] 0 Byte[3] 1 P From CM6206 to
in „soundchip mit mehr als stereo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8591_ADC.pdf
last bit of the address byte is the read/write-bit which sets the direction of the following data transfer (see Table 5 on page 13, Figure 15 on page 13 and Figure 16 on page 13). 8.2 Control byte The second byte sent to a PCF8591 device is stored in its control register and is required to control the
in „PCF8591 - I2C Protokoll“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5940.pdf
Input current VI= GND; VPRG –1 1 VI= V CC; VPRG 50 V = 22 V; VPRG; DCPRG = V 4 10 mA I CC No data transfer, all output OFF, V = 1 V, R = 10 kΩ 0.9 6 O (IREF) No data transfer, all output OFF, VO= 1 V, R (IREF) 1.3 kΩ 5.2 12 CC Supply current mA Data transfer 30MHz, all output ON, VO= 1 V, R (IREF) 1.3 kΩ 16 25 Data transfer 30MHz, all output ON, VO= 1 V, R (IREF) 640 Ω 30 60 Constant sink current (see O(LC) Figure 10) All output ON, O = 1 V, R(IREF) 640 Ω 54 61 69 mA I Leakage output current All output OFF, O = 15 V,
in „Vorschläge für Led-Treiber?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA8574-rev02.pdf
a positive supply via a pull-up resistor when connected to the output stages of a device. Data transfer may be initiated only when the bus is not busy. 9.1 Bit transfer One data bit is transferred during each clock pulse. The data on the SDA line must remain stable during the HIGH period of the clock
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
START, MCU should send 7-bit slave address (7’b0111000) first, and then the 8 bit denotes a read transfer when it’s high; or a write transfer when it’s low. MCU write: S 8’h70 0 8’h01 0 Byte[1] 0 Byte[2] 1 P MCU read: S 8’h70 0 8’h00 1 S 8’h71 0 Byte[0] 0 Byte[1] 0 Byte[2] 0 Byte[3] 1 P From CM6206 to
in „USB Stereo Eingang Mikro oder line-in“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
START, MCU should send 7-bit slave address (7’b0111000) first, and then the 8 bit denotes a read transfer when it’s high; or a write transfer when it’s low. MCU write: S 8’h70 0 8’h01 0 Byte[1] 0 Byte[2] 1 P MCU read: S 8’h70 0 8’h00 1 S 8’h71 0 Byte[0] 0 Byte[1] 0 Byte[2] 0 Byte[3] 1 P From CM6206 to
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
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PDF
pcm2912a.pdf
Typical (VBUS) – Partially Programmable Descriptors • Package: 32-Pin TQFP – Adaptive Isochronous Transfer for Playback – Asynchronous-Isochronous Transfer for 2 Applications • USB Headset Record – Bus Powered • USB Headphone • USB Speaker • 16-Bit Delta-Sigma ADC and DAC • Sampling Rate: • USB Featured
in „Impedanzanpassung MAX9814 <-> PCM2912A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CM6206_Datasheet__v2.3_1_.pdf
START, MCU should send 7-bit slave address (7’b0111000) first, and then the 8 bit denotes a read transfer when it’s high; or a write transfer when it’s low. MCU write: S 8’h70 0 8’h01 0 Byte[1] 0 Byte[2] 1 P MCU read: S 8’h70 0 8’h00 1 S 8’h71 0 Byte[0] 0 Byte[1] 0 Byte[2] 0 Byte[3] 1 P From CM6206 to
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5940.pdf
Input current VI= GND; VPRG –1 1 VI= V CC; VPRG 50 V = 22 V; VPRG; DCPRG = V 4 10 mA I CC No data transfer, all output OFF, V = 1 V, R = 10 kΩ 0.9 6 O (IREF) No data transfer, all output OFF, VO= 1 V, R (IREF) 1.3 kΩ 5.2 12 CC Supply current mA Data transfer 30MHz, all output ON, VO= 1 V, R (IREF) 1.3 kΩ 16 25 Data transfer 30MHz, all output ON, VO= 1 V, R (IREF) 640 Ω 30 60 Constant sink current (see O(LC) Figure 10) All output ON, O = 1 V, R(IREF) 640 Ω 54 61 69 mA I Leakage output current All output OFF, O = 15 V,
in „Parallel Nutzung von Stromsenken“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
6ff78f.pdf
writing are authorized to perform service and repairs covered by an Alesis warranty (if any), and transfer of the Manual to you does not authorize you to be an authorized Service Center. Therefore, if you perform, or if the Manual is used to perform, any service or repairs on any Alesis product or part
in „Mischpult "Alesis Multimix 8" (Knallen auf allen Ausgängen)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT90CAN128.pdf
Transfer • Master or Slave Operation • LSB First or MSB First Data Transfer • Seven Programmable Bit Rates • End of Transmission Interrupt Flag • Write Collision Flag Protection • Wake-up from Idle Mode •
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qt102_2r3.04.pdf
plus programmable auto-off delay and external cancel Technology: Patented spread-spectrum charge-transfer (direct mode) Key outline sizes: 6mm x 6mm or larger (panel thickness dependent); widely different sizes and shapes possible Electrode design: Solid or ring electrode shapes PCB Layers required: One
in „Stromversorgung Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD694.pdf
Span) 0.3/0.05 0.8/0.4 0.3/0.05 0.8/0.4 µA/V Trim Range, 4 mA Zero 2.0 4.8 2.0 4.8 mA Span Nominal Transfer Function Input FS = 2 V 8.0 8.0 mA/V Input FS = 10 V 1.6 1.6 mA/V Transfer Function Error from Nom, Input FS = 2 V, 10 V ±0.1 ⴞ0.3 ±0.05 ⴞ0.15 % of Span TMIN to TMAX ±0.002 ±0.005 ±0.001 ⴞ0.0025 %
in „Wie funktionieren Sensoren mit einem Sromausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
K7S41-K7S41GX.pdf
block mode to [On] will enhance hard disk performance by reading or writing more data during each transfer. Fast Programmed I/O Modes This allows user to set the PIO mode to enhance hard disk performance by optimizing the hard disk timing. 32 Bit Transfer Mode It allows user to enable 32-bit access to maximize the IDE hard disk data transfer rate. Ultra DMA Mode Ultra DMA capability allows improved transfer speeds and data integrity for compatible IDE devices. Set to [Disabled] to suppress Ultra DMA capability. 3.3 Advanced, Security,
in „Asrock Board K7S41 mit SATA 1 Terabyte Festplatte“ · PC Hard- und Software ·
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PDF
Ethernet-DK.pdf
only. It cannot act as an FTP client. HTTP (HyperText Transfer Protocol)—HTTP sends and requests files (typically HTML files) across a network. It is commonly used to transfer files across the World Wide Web. HTTP requires the TCP transport layer. The HTTP module
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PDF
doc4287-1066046.pdf
SubClasses are implemented by software at a data level. Figure 5. USB Bus Topography Downstream Transfer: OUT Upstream Transfer: IN Device driver/API PC Driver Firmware PC Application USB Line Application (Device) PC (Host) The USB is used to transmit information that has the following configuration:
in „89C5131 : Bootloaderaktivierung bei S028 Variante“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
see Figure 4-1). The output frequency (F OUT ) is related to the analog input voltage (IN) by the transfer equation: 500 VDD = +5V EQUATION 4-1: VSS = -5V V 400 RIN = 1MW Frequency Out = ----•---------------------------------- p T = +25°C R IN (VREF)(C REF) 1 A ) 300 10 kHz p (F200 4.2 External Component
in „Frequenz-Spannungswandler OP-Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VK16K33Datasheet.pdf
COM2 04H 05H COM3 06H 07H COM4 08H 09H COM5 0AH 0BH COM6 0CH 0DH COM7 0EH 0FH 2C bus display data transfer format z I Data byte of I C D7 D6 D5 D4 D3 D2 D1 D0 7 6 5 4 3 2 1 0 ROW 15 14 13 12 11 10 9 8 LED drive mode waveforms and scanning is as follows: z The VK16K33 allows use of 1/9 duty mode and the
in „VK16K33 vs HT16K33“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_SHT3x_DIS.pdf
switching the supported. level on the ADDR pin. The only constraint is that the The SDA pin is used to transfer data to and from the level has to stay constant starting from the I2C start sensor. Communication with frequencies up to 400 kHz conditionuntil thecommunicationis finished. Thisallows must meet the
in „[V] 2x I2C Temperatur/Feuchte Sensor FS400-SHT35“ · Markt ·
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Datei
user_logic.vhd
to IP write chip enable -- IP2Bus_Data -- IP to Bus data bus -- IP2Bus_RdAck -- IP to Bus read transfer acknowledgement -- IP2Bus_WrAck -- IP to Bus write transfer acknowledgement -- IP2Bus_Error -- IP to Bus error response ----------------------------------------------------------------------------
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Datei
rf12.c
unsigned char size) { tx_status=0; // zu sendender Status tx_packet(data,size,0); // erstmaliger Transfer while (flags&WAITFORACK) // warten bis letzter Transfer beendet { if (rf12_data()) rx_packet(); if (delaycnt==0) // Timeout: Daten nochmal senden { LED_RETRANS=1; if (retrans_cnt) { retrans_cnt--;
in „Bausatz Add-on für AVR-NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rf12.c
unsigned char size) { tx_status=0; // zu sendender Status tx_packet(data,size,0); // erstmaliger Transfer while (flags&WAITFORACK) // warten bis letzter Transfer beendet { if (rf12_data()) rx_packet(); if (delaycnt==0) // Timeout: Daten nochmal senden { LED_RETRANS=1; if (retrans_cnt) { retrans_cnt--;
in „Bausatz Add-on für AVR-NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
(DMA1_Channel5, ENABLE); for(;;) { while(!DMA_GetFlagStatus(DMA1_FLAG_HT5)); //Warte bis HALBER Transfer abgeschlossen resultat = pf_read(buff1, (sizeof(buff1)/2), &br); //untere 512bytes auffüllen DMA_ClearFlag(DMA1_FLAG_HT5); while(!DMA_GetFlagStatus(DMA1_FLAG_TC5)); //Warte bis gesamter Transfer abgeschlossen
in „helix MP3 Decoder, gibt keinen error aber auch keine Daten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GWS6967.pdf
InputCapacitance C - 450 - iss OutputCapacitance C oss VDS =10V,V =GSV,f= 1 MH Z - 165 - Reverse Transfer Capacitance C rss - 125 - 1 Source DrainDiode Diode Forward Voltage VSD S =1.5A,V GS0V - 0.71 1.2 V Note:1.Pulsetest;pulsewidth<300us,dutycycle<2%. SP-6967-100-5 20 June 2007 2 GWS6967 SP-6967-100-5 20 June 2007 3 GWS6967 OutputCharacteristics TransferCharacteristics 30 30 VGS=4.5thru3.0V 2.5 VDS=10V 25 25 ) A ) (20 (20 n t e e r r u u C15 C15 n 2.0 n i a r r - D 10 -10 I I o 25 C 5 5 o o 1.5 TJ125 C -55 C 0 0 0 1 2 3 4 5 0.0 0.5 1.0 1.5 2.0 2.5
in „Bauteilsuche Hexfet? Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSP149_Rev1.1.pdf
capacitance C iss - 326 430 pF V =-3 V, V =25 V, Output capacitance C oss GS DS - 41 55 f=1 MHz C Reverse transfer capacitance rss - 17 25 Turn-on delay time td(on) - 5.1 7.7 ns Rise time tr V DD=100 V, - 3.4 5.1 V GS=-2…7 V, t Turn-off delay time d(off) ID=0.50 A, R G6 Ω - 45 68 Fall time tf - 21 31 Gate Charge
in „BF246B probleme“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
usbd_cdc_vcp.c
USART_InitTypeDef USART_InitStructure; /* These are external variables imported from CDC core to be used for IN transfer management. */ extern uint8_t APP_Rx_Buffer []; /* Write CDC received data in this buffer. These data will be sent over USB IN endpoint in the CDC core functions. */ extern uint32_t APP_Rx_ptr_in;
in „STM32F2xx - USB_OTG_FS“ · Mikrocontroller und Digitale Elektronik ·