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Datei
modules_install_file_list_LK5.2-RC2.txt
hwmon/asc7621.ko INSTALL drivers/hwmon/atxp1.ko INSTALL drivers/hwmon/dme1737.ko INSTALL drivers/hwmon/ds1621.ko INSTALL drivers/hwmon/ds620.ko INSTALL drivers/hwmon/emc1403.ko INSTALL drivers/hwmon/emc2103.ko INSTALL drivers/hwmon/emc6w201.ko INSTALL drivers/hwmon/f71805f.ko INSTALL drivers/hwmon/f71882fg.ko
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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PDF
7.5inch-e-paper-specification.pdf
UD SHL SHD_N RST_N RES[1:0]: Display resolution setting (source×gate) 00b: 640×480 (default) 01b: 600×450 10b: 640×448 11b: 600×448 LUT_EN: LUT selection 0: Using LUT from external Flash. 1: Using LUT from register. UD: Gate Scan Direction 0: Scan down First line to last: Gn→……→G1 1: Scan up. (default
in „7.5" Waveshare E-Parper ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
038-05058-01-X-MLCC_REVB03_SKIT.pdf
Upper Boundary (Twdu min) = 1360 ms [6] PWRGD_FPD_M2C 1 Reset Delay time (Trst min) = 635 ms R158 DS2 261 2 3 1 2 C 1 2 C Q7 DMN26D0UFB4-7 [4,8] CC_PS_PGOOD 1 R159 DS3 261 2 3 1 2 1 2 Q8 DMN26D0UFB4-7 [6] PWRGD_PL_M2C 1 R160 DS4 261 EEPROM 2 3 1 2 1 2 R255 Q9 0 EEPROM_WC_B_R EEPROM_WC_B [9] DMN26D0UFB4
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PDF
ssd1803a.pdf
BS0 F2 F1 F0 F2~0: adjust internal OSC frequency for FE frequency (POR: 011) (when DH’ = "1") POR DS4~1=1111 Determine the line for display shift. DS1 = "1/0": 1st line display shift enable/disable Shift DS2 = "1/0": 2nd line display shift enable 1 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 enable/disable DS3 =
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
BS0 F2 F1 F0 F2~0: adjust internal OSC frequency for FE frequency (POR: 011) (when DH’ = "1") POR DS4~1=1111 Determine the line for display shift. DS1 = "1/0": 1st line display shift enable/disable Shift DS2 = "1/0": 2nd line display shift enable 1 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 enable/disable DS3 =
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0710.pdf
GND ACS710x-25C ACS710x-25C V = 5 V V = 3.3 V CC CC 1000 900 900 800 ) ) μ 800 μ 700 ( ( i i N 700 N 600 S S M 600 M 500 R R 500 400 400 300 0 10 20 30 40 50 0 10 20 30 40 50 Capacitance (nF) Capacitance (nF) ACS710x-12C ACS710x-12C = 5 V V = 3.3 V VCC 1600 CC 1600 1400 1400 ) 1200 )1200 ( ( e 1000 e1000 o o 800 N 800 N S 600 S 600 R R 400 400 200 200 0 0 0 10 20 30 40 50 0 10 20 30 40 50 Capacitance (nF) Capacitance (nF) Allegro MicroSystems, Inc. 8 115 Northeast Cutoff Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000
in „Stromsensor ACS710“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT28BV16.pdf
tAH Address Hold Time 100 ns tWP Write Pulse Width (WE or CE) 150 1000 ns t Data Set-up Time 100 ns DS t , t Data, OE Hold Time 10 ns DH OEH tCS CH CE to WE and WE to CE Set-up and Hold Time 0 ns tWC Write Cycle Time 3.0 ms tDB Time to Device Busy 50 ns AC Write Waveforms WE Controlled CE Controlled 6
in „Benötige Hilfe beim Auslesen eines NVRAM DS1742w-120 (Batronix BX48 Batego II)“ · Mikrocontroller und Digitale Elektronik ·
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Weller.pdf
5 4 3 2 1 HAP200 WMRP DS21 (M)LR20 DIN7 DIN7 DIN6 DIN5 Heat 1 Heat 1 Heat 1 Heat 1 Heater Heat 2 1 1 Heater Heat 2 1 Heater Heat 2 1 Heat 1 2 2 PT20 1 2 PT20 1 2 3 KTY82/110 Thermo 3 PT20 PT20 2 3 PT20 PT20 2 3 Earth 4 Earth
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SeikoLCD.pdf
40) - - deg. 2 - 1 V opr= (15.2)V (80) - - on = 0° - 200 400 ø = 270° 25°C off Vopr = (15.2)V - 300 600 Response time ms on = 0° - 2000 3000 ø = 270° -10°C off Vopr = (16.5)V - 3300 5000 Measurement equipment: CANON illominomer 2-5-2 Recommend operating voltage (Vopr=VLCD-GND) Temp. (°C) -10 25 60 V opr
in „Game Boy Classic Display mit 8051 oder Z80 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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viper100-e.pdf
C Output Capacitance V = 25V 150 pF oss DS (1) On Inductive Load, Clamped. Table 3. Supply Section Symbol Parameter Test Conditions Min Typ Max Unit IDDch Start-Up Charging Current V DD= 5V; VDS = 35V -2 mA (see Figure 6)(see Figure 11) I Operating
in „Hochvoltspannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX196-MAX198.pdf
to 5V range 360 MAX198 0.1 10 Input Current IIN ±10V range -1200 720 µA MAX196 Bipolar ±5V range -600 360 ±VREF range -1200 10 MAX198 ±V /2 range -600 10 REF ∆V IN Unipolar 21 Input Resistance ∆IIN Bipolar 16 kΩ Input Capacitance (Note 5) 40 pF INTERNAL REFERENCE REF Output Voltage VREF T A +25°C 4.076
in „12 bit AD- und DA-Wandler (parallel) gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VIPer100.pdf
C Output Capacitance V = 25V 150 pF oss DS (1) On Inductive Load, Clamped. Table 3. Supply Section Symbol Parameter Test Conditions Min Typ Max Unit IDDch Start-Up Charging Current V DD= 5V; VDS = 35V -2 mA (see Figure 6)(see Figure 11) I Operating
in „VIPer50 Flyback Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HF500-30.pdf
Breakdown voltage VBR TJ= 25°C 700 V Internal MOSFET (DRAIN) VCC = 10.5V, ID= 0.1A, On-state resistance R DS_ON TJ= 25°C 1.4 1.6 Ω Supply Voltage Management (VCC) VCC level (increasing) where the VCC OFF 11 12 13 V internal regulator stops VCC level (decreasing) where the IC shuts down and the VCC UVLO 6 7
in „Marking Code Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M27C256B_10f1.pdf
Max Unit AVEL AS Address Valid to Chip Enable Low 2 s t t Input Valid to Chip Enable Low 2 s QVEL DS tVPHEL tVPS VPP High to Chip Enable Low 2 s tVCHEL tVCS VCC High to Chip Enable Low 2 s tELEH tPW Chip Enable Program Pulse Width 95 105 s t t Chip Enable High to Input Transition 2 s EHQX DH tQXGL tOES
in „M27C256B zu verkaufen“ · Markt ·
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Datei
Devices.txt
LM358N 6 LM317TL 6 L-EU0207/12 6 L298 6 KLEMM2 6 IRFR5305 6 IRF512 6 HD-F103 6 HD-A101 6 FS6 6 F09DS 6 ENC28J60-DIL 6 DIODE-D-2.5 6 DIODE-10 6 CRYSTALHC49U-V 6 CQ1-12V 6 CPOL-EUE5-13 6 CPOL-EUCT6032 6 CON10 6 CNY17 6 C5 6 C-2.5-5/4 6 BC856BSMD 6 BC639 6 BC550B-NPN-TO92-EBC 6 BAT85 6 BAT81 6 BAS70-05
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Ultraschallotrungssystem_Lego_Mindstorms.pdf
if (raw>=DS_SERIAL_THRESHOLD) ds_serial_bitcount[channel] = 8; else ds_serial_sequence[channel]=0; } else { ds_serial_data[channel] = (ds_serial_data[channel]<<1) | (raw>=DS_SERIAL_THRESHOLD?1:0); ds_serial_bitcount[channel]--; if (ds_serial_bitcount[channel]==0) { if (ds_serial_handler[channel]!=DS_SERIAL_NOHANDLER) ds_serial_handler[channel](((unsigned char)(2-channel))&3, ds_serial_data[channel], ds_serial_sequence[channel]); ds_serial_sequence
in „Ortung mittels Ultraschall - Projektvorstellung / Hilfegesuch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mindstorms.pdf
if (raw>=DS_SERIAL_THRESHOLD) ds_serial_bitcount[channel] = 8; else ds_serial_sequence[channel]=0; } else { ds_serial_data[channel] = (ds_serial_data[channel]<<1) | (raw>=DS_SERIAL_THRESHOLD?1:0); ds_serial_bitcount[channel]--; if (ds_serial_bitcount[channel]==0) { if (ds_serial_handler[channel]!=DS_SERIAL_NOHANDLER) ds_serial_handler[channel](((unsigned char)(2-channel))&3, ds_serial_data[channel], ds_serial_sequence[channel]); ds_serial_sequence
in „Suche Transreceiver Ultraschallkapseln mit 80° Detektionswinkel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Private_Entruempelung_des_Bastel-Lagers.pdf
Zusammen 20€ #50 – Relaiskarten • 2x 8er • 3x 4er • Zusammen 15€ #51 – Keypad 4x4 • Zusammen 9€ #52 – DS3231 RTC • 3x RTC • 2x SD-Adapter Breakout • Zusammen 10€ #53 – TFT Displays • 5x vorhanden • 1.8“ TFT 128x160 Pixel • SPI Interface • Zusammen 15€ #54 – uBlox NEO-7M GPS Modul • 4x vorhanden • Inkl.
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PDF
Private_Entruempelung_des_Bastel-Lagers_V2.pdf
Zusammen 20€ #50 – Relaiskarten • 2x 8er • 3x 4er • Zusammen 15€ #51 – Keypad 4x4 • Zusammen 9€ #52 – DS3231 RTC • 3x RTC • 2x SD-Adapter Breakout • Zusammen 10€ #53 – TFT Displays • 5x vorhanden • 1.8“ TFT 128x160 Pixel • SPI Interface • Zusammen 15€ #54 – uBlox NEO-7M GPS Modul • 4x vorhanden • Inkl.
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PDF
Private_Entruempelung_des_Bastel-Lagers_V3.pdf
Zusammen 20€ #50 – Relaiskarten • 2x 8er • 3x 4er • Zusammen 15€ #51 – Keypad 4x4 • Zusammen 9€ #52 – DS3231 RTC • 3x RTC • 2x SD-Adapter Breakout • Zusammen 10€ #53 – TFT Displays • 5x vorhanden • 1.8“ TFT 128x160 Pixel • SPI Interface • Zusammen 15€ #54 – uBlox NEO-7M GPS Modul • 4x vorhanden • Inkl.
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PDF
Private_Entruempelung_des_Bastel-Lagers_V4.pdf
Zusammen 20€ #50 – Relaiskarten • 2x 8er • 3x 4er • Zusammen 15€ #51 – Keypad 4x4 • Zusammen 9€ #52 – DS3231 RTC • 3x RTC • 2x SD-Adapter Breakout • Zusammen 10€ #53 – TFT Displays • 5x vorhanden • 1.8“ TFT 128x160 Pixel • SPI Interface • Zusammen 15€ #54 – uBlox NEO-7M GPS Modul • 4x vorhanden • Inkl.
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PDF
2009101102_Senba-Sensing-Tech-BS612_C389589.pdf
64VDD 1M 422K 11 180 10/32VDD~11/32VDD 21/64VDD 1M 487K 12 300 11/32VDD~12/32VDD 23/64VDD 1M 560K 13 600 12/32VDD~13/32VDD 25/64VDD 1M 634K 14 900 13/32VDD~14/32VDD 27/64VDD 1M 732K 15 1800 14/32VDD~16/32VDD 29/64VDD 1M 825K 16 3600 15/32VDD~16/32VDD 31/64VDD 1M 953K V 1.0 5 www.nysenba.com 5. 灵敏度设置 SENS
in „PIR-Sensor wird von BME680 gestört, warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
858D_RevEng_Schematic.pdf
R25 U2 51R 4 1 P P2 PI20 PIU01 PI20 PIU02 P818 PR0 Q1 Heater Driver PQ0 PI20 PIU03 270R 5V0 BTA08-600C1 P PR 3041 P P1 Chassis C15 R24 C10 C2 Mains L (Red1 1 Mains_L 10n 330R 47u 100n Temperature P0 Trafo L (R )2 2 P2 PR P 50V P Sensor R1 Heater (Red)3 3 Heater_Driv Front Panel 6M8 4 4 NLais0 P1 P1
in „Heißluftlötstation für Gelegenheitsgebrauch“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Vollbr_cke_VNH3SP30.pdf
® VNH3SP30 FULLY INTEGRATED H-BRIDGE MOTOR DRIVER TYPE R DS(on)(*) OUT VCCmax VNH3SP30 34m 30 A 40 V (*) Typical per leg at 25°C ■ OUTPUT CURRENT:30 A ■ 5V LOGIC LEVEL COMPATIBLE INPUTS ■ UNDERVOLTAGE AND OVERVOLTAGE SHUT-DOWN MultiPowerSO-30 ■ OVERVOLTAGE CLAMP
in „VNH3SP30 auch als Halbbrücke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gu128x64-800b_e03-f3.pdf
2002/95/EC Vacuum Fluorescent Display Module Specification Model: GU128X64-800B Specification No: DS-1239-0000-03 Date of Issue: May 19, 2005 Revision: May 1, 2006 December 20, 2007 January 23, 2008 : : NORITAKE ITRON CORP. / JAPAN This specification is subject to change without prior notice. This product
in „Grafik VFD GU128x64 an Mega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
CONFIG_RTC_INTF_DEV_UIE_EMUL=y +# CONFIG_RTC_DRV_TEST is not set + +# +# I2C RTC drivers +# +# CONFIG_RTC_DRV_DS1307 is not set +# CONFIG_RTC_DRV_DS1374 is not set +# CONFIG_RTC_DRV_DS1672 is not set +# CONFIG_RTC_DRV_DS3232 is not set +# CONFIG_RTC_DRV_MAX6900 is not set +# CONFIG_RTC_DRV_RS5C372 is not set +#
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
CONFIG_RTC_INTF_DEV_UIE_EMUL=y +# CONFIG_RTC_DRV_TEST is not set + +# +# I2C RTC drivers +# +# CONFIG_RTC_DRV_DS1307 is not set +# CONFIG_RTC_DRV_DS1374 is not set +# CONFIG_RTC_DRV_DS1672 is not set +# CONFIG_RTC_DRV_DS3232 is not set +# CONFIG_RTC_DRV_MAX6900 is not set +# CONFIG_RTC_DRV_RS5C372 is not set +#
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f5529.pdf
02h Port P3 direction P3DIR 04h Port P3 pullup/pulldown enable P3REN 06h Port P3 drive strength P3DS 08h Port P3 selection P3SEL 0Ah Port P4 input P4IN 01h Port P4 output P4OUT 03h Port P4 direction P4DIR 05h Port P4 pullup/pulldown enable P4REN 07h Port P4 drive strength P4DS 09h Port P4 selection
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dac8512.pdf
in Figure 38 illustrates how the DAC8512 can be used to control an ultralow noise VCA, using the AD600/ +60 AD602. The AD600/AD602 is a dual, low noise, wideband, +50 variable gain amplifier based on the X-AMP topology.* Both 4095 B+40 channels of the AD600 are wired in parallel to achieve a – 3072 I
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm5642.pdf
(V DS sensing), R DS-ON will show more variation than a current-sense resistor, largely due to temperature variation. R will increase proportional to temperature according to a specific DS-ON temperature coefficient. Refer to the FET manufacturer's datasheet to determine the range of R DS-ON values over operating temperature or see the Component Selection section (Equation 27) for a calculation of maximum R DS- ON. This will prevent R DS-ON variations from prematurely tripping the current
in „Komisches Verhalten von LM5642MTCX“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
str-x6759f_ds_en.pdf
threshold voltage 6−3 V 1.32 1.45 1.58 V FB(OFF) FB pin sink current (Normal operation) 6−3 IFB(ON) 600 1000 1400 µA Stand-by Operation Stand-by operation start voltage 4−3 V CC(S) 10.3 11.2 12.1 V Stand-by operation start voltage 4−3 VCC(SK) 1.10 1.35 1.65 V interval Stand-by non-operation circuit current
in „Reparatur Netzteil PHILIPS HTS 8140/12“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JFET-based_300-mV_supply.pdf
all of whic300-mV input, the circuit starts up at 100 Data-acquisition system cap- deliver less than 600 mV and some- loadcurrentsof300 A.Aloadcurrent using the USBvoltage measurements times as little as 300 mV. Figure 1 of 2 mA requires an input of 475 mV. What are your design problems tics of an N-channel
in „Boost Converter / Step Up mit 150mV eingang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM230WF5-TLD1-LG.pdf
2 ) 65MHz>Fclk 25MHz : -600~ + 600 ˻ Description Symbol Min Max Unit Notes SKEW - 350 + 350 ps 85MHz > Fclk ˻ 65MHz LVDS Clock to Data Skew Margin SKEW - 600 + 600 ps 65MHz > Fclk ˻ 25MHz LVDS Clock to Clock Skew Margin (Even
in „Pollin LVDS Interface im Einsatz -> Falschfarben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
K U3 3.3V C L1 L2 4 VCCA 5 ETH_RMII_TXD0 BUZ _ 13 VCCA TXD0 6 ETH_RMII_TXD1 U15 USB_HOST E FB0805/600R/200mA(20120FB0805/600R/200mA(201209-601) 22 TXD1 7 ETH_RMII_REF_CLK OTG_FS_DM R70 15R 6 1 +5V_HOST_PWR +5V_HOST_PWR 1 AN_TR R5 TRIM TRIMMER R 1 2 3 4 5 24 VCCA TXD2/SCLK 8 R13 1.5k 5 2 USB_HOST_D-
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
K U3 3.3V C L1 L2 4 VCCA 5 ETH_RMII_TXD0 BUZ _ 13 VCCA TXD0 6 ETH_RMII_TXD1 U15 USB_HOST E FB0805/600R/200mA(20120FB0805/600R/200mA(201209-601) 22 TXD1 7 ETH_RMII_REF_CLK OTG_FS_DM R70 15R 6 1 +5V_HOST_PWR +5V_HOST_PWR 1 AN_TR R5 TRIM TRIMMER R 1 2 3 4 5 24 VCCA TXD2/SCLK 8 R13 1.5k 5 2 USB_HOST_D-
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FSP_SHB_D.pdf
Netzkabel. Tabelle 5-1 Lieferbare Netzkabel Sachnummer Schutzkontaktstecker nach Vorzugsweise verwendet in DS 0006.7013 BS1363: 1967' entsprechend Großbritannien IEC 83: 1975 Standard B2 DS 0006.7020 Typ 12 nach SEV-Vorschrift 1011.1059,Schweiz Normblatt S 24 507 DS 0006.7036 Typ 498/13 nach US-Vorschrift UL 498,USA/Kanada bzw. IEC 83 DS 0006.7107 Typ SAA3 10 A, 250 V, Australien nach AS C112-1964 Ap. DS 0025.2365 DIN 49 441, 10 A, 250 V, abgewinkelt Europa (ohne Schweiz) DS 0099.1456 DIN 49 441, 10 A, 250 V, gerade 1164.4556.81 5.3
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PDF
S-1000C21-M5T1.pdf
− 0.95 − 5.5 V 1 Output transistor, Output current IOUT Nch, V = 0.5 V, V = 1.2 V 1.36 2.55 − mA 3 DS DD Output transistor, Leakage current ILEAK Nch, V = 5.5 V, V = 5.5 V − − 100 nA 3 DS DD Response time tPLH − − − 60 µs 1 Detection voltage ∆−VDET ppm / temperature coefficient ∆Ta•−V Ta = −40 to+85
in „Wer kennt dieses SMD Bauteil: "PKG4" im SOT-23-5 Gehäuse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMUcam2_manual.pdf
single or multiple channels) • Up to 160 x 255 Resolution** • Supports Multiple Baudrates: 115,200 57,600 38,400 19,200 9,600 4,800 2,400 1,200 • Control 5 servo outputs • Slave parallel image processing mode off of a single camera bus • Automatically use servos to do two axis color tracking • B/WAnalog
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PDF
ADA2200-EVALZ_UG-702.pdf
depends on 1. PowertheboardbypluggingitintoaPCorpoweredUSB the specific source used. hub. The green LED (DS1) turns on when power is 5. Connect the signal generator to the IN+ terminal through available. the P2 pins and enable the output. 2. Verifythat thejumperconfigurationmatchesthesettings 6. To observe
in „Lock In Verstärker; Vibrometer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
slaa148.pdf
protection diodes ±2 mA of any MSP430 terminal (V I< – 0.3 V or VI> VCC 0.3 V) Note: The output impedance r DS(on)f an MSP430x4xx output is not taken into account, due to the choice of high resistor values with the design equations. The output impedance r (max. DS(on) 167 Ω) is very small compared to the resistors
in „MSP430 5V in I/O?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8811.pdf
REVISED JANUARY 2015 Thermal Information (continued) θJA Ω - O D R Temperature - °C Figure 17. TypicalDS(ON) vs Figure 18. Thermal Resistance Temperature vs Copper Area 11.4 Power Dissipation Power dissipation in the DRV8811 is dominated by the power dissipated in the output FET resistance, or R DS(ON).
in „UV-Laserdrucker II“ · Platinen ·
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PDF
LMV7235_39.PDF
Typical Application l a e , a l t - a l n p u C o m p r 10135902 t r w t h © 2002 National SemiconduDS101359poration www.national.com 3 7 Connection Diagram V M SC70-5/SOT23-5 / 3 2 V M L 10135903 Top View Ordering Information Package Part Number Marking Supplied as NSC Drawing LMV7235M7 C21 1k Units
in „Welche SMD-ICs sind dies?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
84123_usb_i2c_km-2.pdf
weitereAnwendungsbeispiele,diedieVerwendungderUSB- I2C-Befehle mit I²C-Komponenten wie Echtzeituhr (DS1307), EEPROM (24C02), 8-Bit-I/O-Interface (PCF8574), Thermo- Bild12:Blockschaltbild des USB-I2C-Interfaces meter (DS75, LM75, TMP101) demonstrieren. Tabelle2:KommentarbefehlefürdieBefehls-undRückgabewerte
in „Hygrosens I2C Tmp Modul antwortet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SG3525ANG.pdf
Collector Leakage, V C +35 V (Note 6) C(leak) − − 200 ▯A Rise Time (C L 1.0 nF, T =J25⋅C) tr − 100 600 ns Fall Time (C L 1.0 nF, T J 25⋅C) f − 50 300 ns Shutdown Delay (V DS = +3.0 V, CS= 0, T J +25⋅C) ds − 0.2 0.5 ▯s Supply Current (V CC = +35 V) ICC − 14 20 mA 6. Applies to SG3525A only, due to polarity
in „Gegentaktwandler Überschwingen im Leerlauf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT8609_StepDown.pdf
Frequency Dropout Voltage vs Load Current vs Temperatureuency Vs Temperature 800 2.005 700 2.000 ) H V 600 ( ( C1.995 G 500 E T Q O 400 R1.990 T F U I P 300 C1.985 R I D 200 W S1.980 100 R = 18.2kΩ 0 1.975 T 0 0.5 1 1.5 2 2.5 3 –50 –30 –10 10 30 50 70 90 110 130 150 LOAD CURRENT (A) 8609 G20 TEMPERATURE
in „LT8609 MSOP Platine. Ich bekomms einfach nicht hin.“ · Platinen ·
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PDF
acpl-064.pdf
failure Case Temperature T 150 175 °C b S Input Current IS, INPUT 150 230 mA b Output Power PS, OUTPUT 600 600 mW Insulation Resistance at T S, VIO= 500V R S >10 9 >10 9 Ω a. Refer to the optocoupler section of the Isolation and Control Components Designer’s Catalog, under Product Safety Regulations section
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
acpl-064.pdf
failure Case Temperature T 150 175 °C b S Input Current IS, INPUT 150 230 mA b Output Power PS, OUTPUT 600 600 mW Insulation Resistance at T S, VIO= 500V R S >10 9 >10 9 Ω a. Refer to the optocoupler section of the Isolation and Control Components Designer’s Catalog, under Product Safety Regulations section
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps65131.pdf
0.024 V FBN lation voltage IN Total Output DC accuracy +3% V = 3.6 V 440 620 R Inverter switch IN m DS(ONN) on-resistance V IN= 5.0 V 330 530 I TPS65130 Inverter switch 2.7 V < V < 5.5 V 700 800 900 mA LIMN current limit IN I TPS65131 Inverter switch V = 3.6 V 1800 1950 2200 mA LIM current limit IN Boost
in „OLED Sammelbestellung“ · Markt ·
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PDF
DCDC-Konverter.pdf
0.024 V FBN lation voltage IN Total Output DC accuracy +3% V = 3.6 V 440 620 R Inverter switch IN m DS(ONN) on-resistance V IN= 5.0 V 330 530 I TPS65130 Inverter switch 2.7 V < V < 5.5 V 700 800 900 mA LIMN current limit IN I TPS65131 Inverter switch V = 3.6 V 1800 1950 2200 mA LIM current limit IN Boost
in „DC-DC-Konverter Tps65131 Funktionalität“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nokia_6085_rm-198_service_schematics_v2.pdf
charge gnd 2 2u2 BGF100 VOUT ACI 3 Vcc Z2001 Z2000 VOUT 4 Retu XAUDIO(7:0) 0 HOOKDET GND 1k0 Meas 600R/100MHz Vbus 5 1n0 1 MICB2 600R/100MHz D+ 6 2 MIC2P L2001 D- 7 3 MIC2N 2k2 1n0 1n0 MCZ1210AD102T data gnd 8 4 XEARL C2003 4 1 Xmicn 9 5 50R 10 XEARLC 33n to UEME to Mic Xmicp 6 XEARR C2004 50R 3 2 Xear_l_n
in „H179IT01 1,7" TFT aus Nokia Handy - Daten?“ · Mikrocontroller und Digitale Elektronik ·