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Darlington_BST5x.pdf
DESCRIPTION VERSION BST50 SC-62 plastic surface mounted package; collector pad for good hSOT89 BST51 transfer; 3 leads BST52 2004 Dec 09 2 Philips Semiconductors Product specification NPN Darlington transistors BST50; BST51; BST52 LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 60134
in „Transistor für hohe Frequenz und hohe Leistung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
4tb_smart.html
Firmware: CC52<br> Serial: Z300WJ6Z<br> BUS Type: S-ATA/600<br> ATA Standard: ATA8-ACS revision 4<br> Transfer Mode and Version: S-ATA 600 (S-ATA Rev 3.1)<br> Size: 4,0 TB (3,6 TiB) (48bit-LBA)<br> Buffer: <br> NV Cache: no NV Cache<br> Rotation Rate: 5900 rpm<br> Formfactor: 3.5 inch<br> Features: 48bit LBA / NCQ / HPA / DCO / GPL<br> Transfer Features: S-ATA III / II / I , UDMA 133 / 100 / 66 / 44 / 33 / 25 / 16 , PIO Mode 4 / 3<br> Security Features: supported / frozen / enhanced security erase / Master Password Capability: High<br> AAM
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ZXMHC6A07T8.pdf
Input Capacitance C iss 166 pF VDS=40V, VGS =0V, Output Capacitance C oss 19.5 pF f=1MHz Reverse Transfer Capacitance C 8.7 pF rss (2) (3) SWITCHING Turn-On Delay Time td(on) 1.8 ns Rise Time tr 1.4 ns VDD =30V, D =1.8A R ≅6.0Ω, V =10V Turn-Off Delay Time td(off) 4.9 ns G GS Fall Time t 2.0 ns f Gate
in „DCC Decoder“ · Projekte & Code ·
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PDF
ST10F27X_Flyer.pdf
robotized and electric-motor based gear boxes ■ ST10F2xx controlling torq ue distribution: Torque case transfer ■ ST10F2xx improving engine performance: e-Turbo and e-Boost ■ ST10F2xx managing 3ph motors in HEV (hybrid electrical vehicles): Starter-alternators, e-Pumps and e-Brakes Torque case transfer Starter
in „Programmer für C167“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RequiresAcrobat6.pdf
60 Input Capacitance Ciss VGS = 0V – 1240 – Output Capacitance Coss V DS= 10V – 200 – pF Reverse Transfer Capacitance Crss f = 1.0MZ – 120 – Source-Drain Diode Diode Forward Voltage) VSD IS= 1.7A, GS = 0V – 0.7 1.3 V Source-Drain Reverse Recovery Time rr IF= 1.7A, di/dt = 100A/µs – – 100 ns Notes: (1)
in „Ersatz-MosFet für GF9926“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST10F27X_Flyer.pdf
robotized and electric-motor based gear boxes ■ ST10F2xx controlling torq ue distribution: Torque case transfer ■ ST10F2xx improving engine performance: e-Turbo and e-Boost ■ ST10F2xx managing 3ph motors in HEV (hybrid electrical vehicles): Starter-alternators, e-Pumps and e-Brakes Torque case transfer Starter
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
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PDF
A100_ZXMHC6A07T8.pdf
Input Capacitance C iss 166 pF VDS=40V, VGS =0V, Output Capacitance C oss 19.5 pF f=1MHz Reverse Transfer Capacitance C 8.7 pF rss (2) (3) SWITCHING Turn-On Delay Time td(on) 1.8 ns Rise Time tr 1.4 ns VDD =30V, D =1.8A R ≅6.0Ω, V =10V Turn-Off Delay Time td(off) 4.9 ns G GS Fall Time t 2.0 ns f Gate
in „H-Brücke ohne Mosfet-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
set_rf_frequency.txt
short loc_42E5C7 AUTO:0042E5BB mov eax, [ebp+arg_0] AUTO:0042E5BE push eax AUTO:0042E5BF call W?transfer_channels_to_cor$_C331_C_CTRL$n__v ; C331_C_CTRL::transfer_channels_to_cor(void) AUTO:0042E5C4 add esp, 4 AUTO:0042E5C7 AUTO:0042E5C7 loc_42E5C7: ; CODE XREF: W?set_rf_frequency$_C331_C_CTRL$n_x$$TE
in „CMU200 Erfahrungen und Modifikationen“ · HF, Funk und Felder ·
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Datei
ethernetif.c
MAC address in ethernet MAC */ ETH_MACAddressConfig(ETH_MAC_Address0, netif->hwaddr); /* maximum transfer unit */ netif->mtu = 1500; /* device capabilities */ /* don't set NETIF_FLAG_ETHARP if this device is not an ethernet one */ netif->flags = NETIF_FLAG_BROADCAST | NETIF_FLAG_ETHARP | NETIF_FLAG_LINK_UP
in „stm32f4xx lan8720 uip“ · Mikrocontroller und Digitale Elektronik ·
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WS2812B_Datasheet_2017.pdf
current control part, effectively ensuring the pixel point light color height consistent. The data transfer protocol use single NZR communication mode. After the pixel power-on reset, the DIN port receive data from controller, the first pixel collect initial 24bit data then sent to the internal data latch
in „WS2812 Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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MA6116A_datasheet.pdf
2.0 UTMI transceiver and Serial Interface Engine (SIE) 9 Endpoint: ¾ Endpoint 0: 64 bytes control transfer. ¾ Endpoint 1/2: 512 bytes x 2 bulk transfer for IN /OUT transaction. z Integrated MCU compatible 8-bit micro-controller z Support IIC Bus EEPROM z SATAPM-Aware Function z SATAPHY LINK IDLE MODE z
in „MA6116A USB-SATA Bridge Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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VMO1200-01F.pdf
ns E on 8.5 mJ E off RG= R G ext Rout driver 58.9 mJ E rec 0.82 mJ R thJC 0.053 K/W R with heat transfer paste (IXYS test setup) 0.065 0.088 K/W thJH 20100614b © 2010 IXYS All rights reserved 1 - 6 VMO 1200-01F Source Drain Diode Symbol Conditions CharacteristicValues min. typ. max. VSD IF= 1000 A;V
in „Impulsströme“ · Analoge Elektronik und Schaltungstechnik ·
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VMO1200-01F.pdf
ns E on 8.5 mJ E off RG= R G ext Rout driver 58.9 mJ E rec 0.82 mJ R thJC 0.053 K/W R with heat transfer paste (IXYS test setup) 0.065 0.088 K/W thJH 20100614b © 2010 IXYS All rights reserved 1 - 6 VMO 1200-01F Source Drain Diode Symbol Conditions CharacteristicValues min. typ. max. VSD IF= 1000 A;V
in „Wie wähle ich Treiber für VMO1200-01F?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nFET_ZXM61N02FTA.pdf
Input Capacitance C iss 160 pF VDS=15 V, VGS=0V, Output Capacitance C oss 50 pF f=1MHz Reverse Transfer Capacitance C rss 30 pF SWITCHING(2) (3) Turn-On Delay Time td(on) 2.4 ns Rise Time tr 4.2 ns VDD =10V, D =0.93A R =6.2 , R =11 Turn-Off Delay Time td(off) 7.8 ns (refer to test Fall Time t 4.2 ns
in „5V Schalten mit GPIO 3,3V.“ · Analoge Elektronik und Schaltungstechnik ·
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HM2302A.PDF
Capacitance Clss - 300 - PF Output Capacitance C VDS10V,V =0GS - 120 - PF oss F=1.0MHz Reverse Transfer Capacitance C - 80 - PF rss Switching Characteristics (Note 4) Turn-on Delay Time td(on) - 10 15 nS Turn-on Rise Time r V DD0V,I =D.9A - 50 85 nS Turn-Off Delay Time td(off) V GS.5V,R GEN=6Ω - 17
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USB_geclont.pdf
(Endpoint Descriptor) bEndpointAddress : 0x81 (Direction=IN EndpointID=1) bmAttributes : 0x02 (TransferType=Bulk) wMaxPacketSize : 0x0040 (64 bytes) bInterval : 0x00 (ignored) Data (HexDump) : 07 05 81 02 40 00 00 ....@.. ----------------- Endpoint Descriptor ----------------- bLength : 0x07 (7 bytes
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_original.pdf
(Endpoint Descriptor) bEndpointAddress : 0x81 (Direction=IN EndpointID=1) bmAttributes : 0x02 (TransferType=Bulk) wMaxPacketSize : 0x0040 (64 bytes) bInterval : 0x00 (ignored) Data (HexDump) : 07 05 81 02 40 00 00 ....@.. ----------------- Endpoint Descriptor ----------------- bLength : 0x07 (7 bytes
in „FT232R USB Eeprom clonen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXM61N02F-56180.pdf
Input Capacitance C iss 160 pF VDS=15 V, VGS=0V, Output Capacitance C oss 50 pF f=1MHz Reverse Transfer Capacitance C rss 30 pF SWITCHING(2) (3) Turn-On Delay Time td(on) 2.4 ns Rise Time tr 4.2 ns VDD =10V, D =0.93A R =6.2 , R =11 Turn-Off Delay Time td(off) 7.8 ns (refer to test Fall Time t 4.2 ns
in „Check Transistorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZXM61N02F-56180.pdf
Input Capacitance C iss 160 pF VDS=15 V, VGS=0V, Output Capacitance C oss 50 pF f=1MHz Reverse Transfer Capacitance C rss 30 pF SWITCHING(2) (3) Turn-On Delay Time td(on) 2.4 ns Rise Time tr 4.2 ns VDD =10V, D =0.93A R =6.2 , R =11 Turn-Off Delay Time td(off) 7.8 ns (refer to test Fall Time t 4.2 ns
in „NPN zur Negierung von Reed (N/O) ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZXM61N02F-56180.pdf
Input Capacitance C iss 160 pF VDS=15 V, VGS=0V, Output Capacitance C oss 50 pF f=1MHz Reverse Transfer Capacitance C rss 30 pF SWITCHING(2) (3) Turn-On Delay Time td(on) 2.4 ns Rise Time tr 4.2 ns VDD =10V, D =0.93A R =6.2 , R =11 Turn-Off Delay Time td(off) 7.8 ns (refer to test Fall Time t 4.2 ns
in „Mosfet mit Arduino Nano ansteuern (3,3V)“ · Mikrocontroller und Digitale Elektronik ·
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SANMOTION_R_M0006890N.pdf
value 01:_Decimal ASCII in decimal code output Transmission method Asynchronous Baud rate 9600bps Transfer frame number 16 frame (10 bit/Frame) Transfer format Refer to page 9-13 Transmission error check (1 bit) Even number parity Transfer time 16.7ms(Typ.) Transfer period Approx.40ms Refer to page 9-15
in „Servoregler/Servoverstärker Verständnislücke“ · Mikrocontroller und Digitale Elektronik ·
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u-blox-ATCommands_Manual__UBX-13002752_.pdf
cell content may be available up to 32 times in idle-mode, up to 6 in dedicated-mode; in packet transfer mode (PDP context active) no reporting is possible on AT UART as it is used for data transfer (MUX can be used to create two virtual serial ports, one for data transfer, one for AT commands) LISA-U
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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MRF175GV.pdf
iss — 180 — pF Output Capacitance (V = 28 V, V = 0, f = 1.0 MHz) C — 200 — pF DS GS oss Reverse Transfer Capacitance DS = 28 V, GS = 0, f = 1.0 MHz) C rss — 20 — pF FUNCTIONAL CHARACTERISTICS — MRF175GV (2) (Figure 1) Common Source Power Gain G ps 12 14 — dB (VDD = 28 Vdc, out = 200 W, f = 225 MHzDQI
in „Dimensionierung eines Kühlkörpers für HF-Modul“ · HF, Funk und Felder ·
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tn1087.pdf
the I/O states remain under the control of boundary scan, JTAG commands are used to initiate the transfer of the new functionality from non-volatile memory to the SRAM configuration space. For device-specific implementation details, refer to the appendices at the end of this document. After the SRAM is
in „Erfahrung mit Siglent SDG 10xx Arbitrary Generatoren?“ · Markt ·
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TDS220_Display.pdf
TrRM=12. 5-14. 31US < s I second 240th first line’s line’s line’s Reduced data data data Jransfer transfer ~ transfer . > u , CP1 x 240 pulses . < VIH=O t8VDD VIL=O. 2V DD Fig. 3 Interface Timing Chart SPEC No, t4EL No, PAGE S H A R P L C 9 3 6 2 8 B L M 3 2 P 0 7 9 Table, 6 Interface timing ratings Item
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Sharp_LM32P07_Display.pdf
TrRM=12. 5-14. 31US < s I second 240th first line’s line’s line’s Reduced data data data Jransfer transfer ~ transfer . > u , CP1 x 240 pulses . < VIH=O t8VDD VIL=O. 2V DD Fig. 3 Interface Timing Chart SPEC No, t4EL No, PAGE S H A R P L C 9 3 6 2 8 B L M 3 2 P 0 7 9 Table, 6 Interface timing ratings Item
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PH7030L.pdf
= 1 MHz; - 1362 - pF T = 25 °C; see Figure 12 Coss output capacitance j - 544 - pF Crss reverse transfer - 260 - pF capacitance d(on) turn-on delay time VDS = 10 V; R L 1 Ω; V GS = 4.5 V; - 24 - ns RG(ext)= 4.7 Ω; Tj= 25 °C; D = 10 A r rise time - 38 - ns t turn-off delay time - 34 - ns d(off) f fall
in „Am3 Mainboard Vcore instabil wenn kalt“ · PC Hard- und Software ·
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PH2520U.pdf
= 1 MHz; - 5850 - pF C output capacitance Tj= 25 °C; see Figure 13 - 1190 - pF oss Crss reverse transfer - 831 - pF capacitance d(on) turn-on delay time V DS = 10 V; RL= 1 Ω; V GS = 4.5 V; - 34 - ns r rise time R G(ext) 4.7 Ω; Tj= 25 °C - 240 - ns d(off) turn-off delay time - 318 - ns f fall time - 234
in „FET Empfehlung“ · Mikrocontroller und Digitale Elektronik ·
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Grandstream_Device_Configuration1.pdf
No Yes Enable RTCP: No Yes Hold Target Before Refer: No Yes Refer-To Use Target No Yes Contact: Transfer on Conference No Yes Hangup: Remove OBP from Route No Yes Header: Support SIP Instance ID: No Yes Validate Incoming SIP Message: No Yes Check SIP User ID for No Yes (no direct IP calling if Yes) incoming
in „Grandstream Analog Telefon Adapter an Fritzbox zum Laufen bringen - Hilfe!?“ · Mikrocontroller und Digitale Elektronik ·
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USB-Power_Delivery_for_Rapid_Charging_by_Digi-Key.pdf
by the USB 2.0 specification). A DCP, as the name suggests, is incapable of supporting any data transfer, but can supply currents up to 1.5 amps for a power delivery of 7.5 watts. In this configuration, the D+ and D- lines are shorted. A CDP allows for both high-current charging and data transfer, being
in „USB C Power Delivery 9V "anfordern"“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt.pdf
, V = 0V - 2020 - pF ISS DS GS Output Capacitance C f = 1MHz - 600 - pF OSS (Figure 12) Reverse Transfer Capacitance C - 200 - pF RSS Thermal Resistance Junction to Case R θJC (Figure 3) - - 1.14 oC/W Thermal Resistance Junction to Ambient R θJA TO-220 - - 62 oC/W - - - - - Sour ce to Drain Diode Specifications
in „Motorensteuerung Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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ILQ621GB.pdf
. Typical values are for information only and are not part of the testing requirements. CURRENT TRANSFER RATIO PARAMETER TEST CONDITION PART SYMBOL MIN. TYP. MAX. UNIT Channel/channel I = 5.0 mA, V = 5.0 V CTRX/ 1 to 1 3 to 1 % CTR match F CE CTRY ILD621 CTR CEsat 60 % Current transfer ratio ILQ621 CTR
in „Konstantstrom über Optokoppler treiben“ · Analoge Elektronik und Schaltungstechnik ·
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OK.pdf
VCC = 15 V, All 0.01 1 A TA= 25°C F = 0 mA, VO= Open, VCC = 15 V HCPL0453/ 0500/1 2 HCPL0531/4 4 TRANSFER CHARACTERISTICS Symbol Parameter Test Conditions Device Min. Typ.* Max. Unit COUPLED CTR Current Transfer Ratio I = 16 mA, V = 0.4 V, HCPL0500 7 27 50 % F O (Note 2) VCC= 4.5 V, A = 25°C HCPL0453
in „Defekte Analoge Strom-Ausgangskarte 0/4-20 mA Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·
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LC16_Trend_ScreenKey_Datasheet.pdf
display of text or graphics. To control the display only a clock and data line (synchronous data transfer) as well as V ccand GND are required. Furthermore, background lighting is integrated in the display, which allows the display to be read in dark operating environments. An additional advantage of
in „SPI mit Start- und 2 Stoppbit zur ScreenKey Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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DAP8A.pdf
Typical Waveforms in Short Circuit Conditions Calculating the V CC Capacitor The theoretical power transfer is therefore: The V capacitor can be calculated knowing the IC CC 1 · Lp · Ip · Fsw ▯ 3.8 W consumption as soon as V CC reaches 12.8 V. Suppose that a 2 NCP1203P60 is used and drives a MOSFET with
in „Widerstand gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SP3232ECP-L.pdf
capcitors as close to ternal oscillator is disabled. Simultaneous the IC as possible. with the transfer of the voltage to C , 4he positive side of capacitor C is1switched The charge pump operates in a discontinu- to V and the negative side is con- ous mode using an internal oscillator. If the nected
in „MAX232 CPE PDIP Fake“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SP3232ECP-L.pdf
capcitors as close to ternal oscillator is disabled. Simultaneous the IC as possible. with the transfer of the voltage to C , 4he positive side of capacitor C is1switched The charge pump operates in a discontinu- to V and the negative side is con- ous mode using an internal oscillator. If the nected
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PDF
PCF8583.pdf
Initialization 8 CHARACTERISTICS OF THE I 2C-BUS 17 DEFINITIONS 18 LIFE SUPPORT APPLICATIONS 8.1 Bit transfer 8.2 Start and stop conditions 19 PURCHASE OF PHILIPS I C COMPONENTS 8.3 System configuration 8.4 Acknowledge 9 I C-BUS PROTOCOL 9.1 Addressing 9.2 Clock/calendar READ/WRITE cycles 1997 Jul 15 2 Philips
in „RTC PCF8583 einen Interrupt ausloesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8583_5_rtc_real_time_clock.pdf
Initialization 8 CHARACTERISTICS OF THE I 2C-BUS 17 DEFINITIONS 18 LIFE SUPPORT APPLICATIONS 8.1 Bit transfer 8.2 Start and stop conditions 19 PURCHASE OF PHILIPS I C COMPONENTS 8.3 System configuration 8.4 Acknowledge 9 I C-BUS PROTOCOL 9.1 Addressing 9.2 Clock/calendar READ/WRITE cycles 1997 Jul 15 2 Philips
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PDF
DM164.pdf
for grayscale PWM data and current 37 adjustment data. Synchronous clock input for serial data transfer. The input data of DIN can be transferred at either the rising DCK edges of DCK or the falling edges of DCK depending 47 on the signal DCKPH. Synchronous clock output for serial data transfer. DCKO
in „8 RGB Leds stufenlos ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM164.pdf
for grayscale PWM data and current 37 adjustment data. Synchronous clock input for serial data transfer. The input data of DIN can be transferred at either the rising DCK edges of DCK or the falling edges of DCK depending 47 on the signal DCKPH. Synchronous clock output for serial data transfer. DCKO
in „20mA Led Treiber mit möglichst vielen Kanälen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1270-MAX1271B.pdf
complement binary. For output binary codes, refer to SSTRB and DOUT will output a logic low. the Transfer Function section. The conversion must be completed in some minimum time, or droop on the sample-and-hold capacitors may How to Start a Conversion The MAX1270/MAX1271 use either an external serial
in „Max1270 Eingang auf mind. 0,8V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8583P.pdf
Initialization 8 CHARACTERISTICS OF THE I 2C-BUS 17 DEFINITIONS 18 LIFE SUPPORT APPLICATIONS 8.1 Bit transfer 8.2 Start and stop conditions 19 PURCHASE OF PHILIPS I C COMPONENTS 8.3 System configuration 8.4 Acknowledge 9 I C-BUS PROTOCOL 9.1 Addressing 9.2 Clock/calendar READ/WRITE cycles 1997 Jul 15 2 Philips
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PDF
PCF8583_5.pdf
Initialization 8 CHARACTERISTICS OF THE I 2C-BUS 17 DEFINITIONS 18 LIFE SUPPORT APPLICATIONS 8.1 Bit transfer 8.2 Start and stop conditions 19 PURCHASE OF PHILIPS I C COMPONENTS 8.3 System configuration 8.4 Acknowledge 9 I C-BUS PROTOCOL 9.1 Addressing 9.2 Clock/calendar READ/WRITE cycles 1997 Jul 15 2 Philips
in „PCF8583: Welche Genauigkeit kann ìch erwarten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD694AR.pdf
Span) 0.3/0.05 0.8/0.4 0.3/0.05 0.8/0.4 A/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 60.3 ±0.05 60.15 % of Span TMIN to TMAX ±0.002 ±0.005 ±0.001 60.0025 %
in „4-20mA für Durchlussregler erzeugen - AD694“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet__4_.pdf
Fig.12) 17 DEFINITIONS 2 18 LIFE SUPPORT APPLICATIONS 8 CHARACTERISTICS OF THE I C-BUS 8.1 Bit transfer 19 PURCHASE OF PHILIPS I 2C COMPONENTS 8.2 Start and stop conditions 8.3 System configuration 8.4 Acknowledge 2 9 I C-BUS PROTOCOL 9.1 Addressing 9.2 Clock/calendar READ/WRITE cycles 1997 Mar 25 2
in „Wie verbindet man pcf8593 und arduino (eigentlich irgend uC)“ · Mikrocontroller und Digitale Elektronik ·
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stm32l431_reference_manual.pdf
, DMA Transfer complete and DMA Transfer Error) logically ORed together in a single interrupt request for each channel • Memory-to-memory transfer • Peripheral-to-memory and memory-to-peripheral, and peripheral-to-peripheral
in „ADC differential mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stm32l431_reference_manual.pdf
, DMA Transfer complete and DMA Transfer Error) logically ORed together in a single interrupt request for each channel • Memory-to-memory transfer • Peripheral-to-memory and memory-to-peripheral, and peripheral-to-peripheral
in „Offset Data alignment“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stm32l431_reference_manual.pdf
, DMA Transfer complete and DMA Transfer Error) logically ORed together in a single interrupt request for each channel • Memory-to-memory transfer • Peripheral-to-memory and memory-to-peripheral, and peripheral-to-peripheral
in „DMA one shot mode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103x6.h
<< DMA_ISR_TCIF1_Pos) /*!< 0x00000002 */ #define DMA_ISR_TCIF1 DMA_ISR_TCIF1_Msk /*!< Channel 1 Transfer Complete flag */ #define DMA_ISR_HTIF1_Pos (2U) #define DMA_ISR_HTIF1_Msk (0x1UL << DMA_ISR_HTIF1_Pos) /*!< 0x00000004 */ #define DMA_ISR_HTIF1 DMA_ISR_HTIF1_Msk /*!< Channel 1 Half Transfer flag
in „System Workbench für STM32 Anfängerfragen“ · PC Hard- und Software ·