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PDF
HD44780.pdf
is performed, the DDRAM address shifts. See Figure 6. Display position 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 DDRAM 00 01 02 03 04 05 06 07 08 09 0A0B0C0D0E 0F address 40 41 42 43 44 45 46 47 48 49 4A4B4C4D4E 4F HD44780U display Extension driver display For 01 02 03 04 05 06 07 08 09 0A0B0C0D0E 0F10
in „Standart LCD per i2c expander betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u_Datenblatt.pdf
is performed, the DDRAM address shifts. See Figure 6. Display position 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 DDRAM 00 01 02 03 04 05 06 07 08 09 0A0B0C0D0E 0F address 40 41 42 43 44 45 46 47 48 49 4A4B4C4D4E 4F HD44780U display Extension driver display For 01 02 03 04 05 06 07 08 09 0A0B0C0D0E 0F10
in „hd44780 / LCD SC1602D / ATmega16 (STK500)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
is performed, the DDRAM address shifts. See Figure 6. Display position 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 DDRAM 00 01 02 03 04 05 06 07 08 09 0A0B0C0D0E 0F address 40 41 42 43 44 45 46 47 48 49 4A4B4C4D4E 4F HD44780U display Extension driver display For 01 02 03 04 05 06 07 08 09 0A0B0C0D0E 0F10
in „LCD Initialisierung Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RequiresAcrobat6.pdf
GF9926 Dual N-Channel Enhancement-Mode MOSFET Ratings and Characteristic Curves (TA= 25°C unless otherwise noted) Fig. 10 – BreakdownVoltage vs. JunctionTemperature Fig. 11 – Thermal Impedance 31 1 ID= 250µA D = 0.5 l m 0.2 e ) e r ( 30 h 0.1 o e T 0.1 P DM - a e e t l l c 0.05 i V a a r
in „Ersatz-MosFet für GF9926“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MPVD7N65.pdf
252 Absolute maximum ratings (TC=25C unless otherwise noted) Characteristic Symbol Rating Unit Drain-source voltage V 650 V Gate-source voltage V GSS 30 V Drain current (DC)* I Tc=25C 7.0 A D 5.48 A Tc=100C Drain current (Pulsed)* I
in „Unbekannte Bauelemente“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Kennlinienschreiber_02_05.pdf
von DL4ZAO)........................................................................................13 5.1 Übersicht über die einzelnen Funktionsgruppen...................................................................................13 5.2 Die Messverstärker..........................................
in „Kennlinienschreiber mit AVR-µC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STB10NK60Z.pdf
Voltage GS = 20kΩ) 600 V V GS Gate-Source Voltage ± 30 V 10 ID Drain Current (continuous) Ct T = 25°C 10 (Note 3) 10 A 5.7 ID Drain Current (continuous) Ct T = 100°C 5.7 5.7 A (Note 3) DM 36 Note 2 Drain Current (pulsed) 36 (Note 3) 36 A PTOT Total Dissipation Ct T = 25°C 115 35 156 W Derating Factor
in „Ersatz für STB10NK60Z“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt_0000012_1.pdf
8 DPSK - -10 - >-20 dBm C/I co-channel at 0.1% BER π/4 DQPSK - 10 - < +13 dB 8 DPSK - 19 - < +21 dB Adjacent channel selectivity C/I π/4 DQPSK - -10 - < 0 dB F=F 0+1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -11 - < 0 dB F=F 0-1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -40 - < -30 dB F=F 0+2 MHz 8 DPSK - -40 - <-25 dB Adjacent channel selectivity C/I π/4 DQPSK - -23 - < -20 dB F=F 0-2 MHz 8 DPSK - -20 - <-13 dB Adjacent channel selectivity C/I π/4 DQPSK
in „BTM222 USB-Anschlüsse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM222_DataSheet.pdf
8 DPSK - -10 - >-20 dBm C/I co-channel at 0.1% BER π/4 DQPSK - 10 - < +13 dB 8 DPSK - 19 - < +21 dB Adjacent channel selectivity C/I π/4 DQPSK - -10 - < 0 dB F=F 0+1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -11 - < 0 dB F=F 0-1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -40 - < -30 dB F=F 0+2 MHz 8 DPSK - -40 - <-25 dB Adjacent channel selectivity C/I π/4 DQPSK - -23 - < -20 dB F=F 0-2 MHz 8 DPSK - -20 - <-13 dB Adjacent channel selectivity C/I π/4 DQPSK
in „AVR & Bluetooth Wie schwer Wie teuer?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
btm222_datasheet.pdf
8 DPSK - -10 - >-20 dBm C/I co-channel at 0.1% BER π/4 DQPSK - 10 - < +13 dB 8 DPSK - 19 - < +21 dB Adjacent channel selectivity C/I π/4 DQPSK - -10 - < 0 dB F=F 0+1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -11 - < 0 dB F=F 0-1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -40 - < -30 dB F=F 0+2 MHz 8 DPSK - -40 - <-25 dB Adjacent channel selectivity C/I π/4 DQPSK - -23 - < -20 dB F=F 0-2 MHz 8 DPSK - -20 - <-13 dB Adjacent channel selectivity C/I π/4 DQPSK
in „Bluetoothmodul BTM-222“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM-222.pdf
8 DPSK - -10 - >-20 dBm C/I co-channel at 0.1% BER π/4 DQPSK - 10 - < +13 dB 8 DPSK - 19 - < +21 dB Adjacent channel selectivity C/I π/4 DQPSK - -10 - < 0 dB F=F 0+1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -11 - < 0 dB F=F 0-1 MHz 8 DPSK - -5 - < +5 dB Adjacent channel selectivity C/I π/4 DQPSK - -40 - < -30 dB F=F 0+2 MHz 8 DPSK - -40 - <-25 dB Adjacent channel selectivity C/I π/4 DQPSK - -23 - < -20 dB F=F 0-2 MHz 8 DPSK - -20 - <-13 dB Adjacent channel selectivity C/I π/4 DQPSK
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PDF
XMEGA-A3BU_XPLAINED_Design_Documentation_rev2.PDF
STATUS_LED LEDS LEDS SERIAL_FLASH SERIAL_FLASH BUTTON1 BUTTON1 BUTTON2 BUTTON2 BUTTON3 BUTTON3 USB_DM USB_N USB_DP USB_P USB_ID U_XMEGA-A3BU_XPLAINED_Display XMEGA-A3BU_XPLAINED_Display.SchDoc DISPLAY DISPLAY C C LABEL1 CLABEL1 Product number/revision Serial number Label PCBA PCPC1 A08-0913 ATMEL Norway
in „LED toggeln mit ATxmega256A3BU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
emw3165.pdf
S - - 11 - - - Not connected TIM2_CH4,TIM5_CH4,TIM9_CH2, 12 PA3 I/O FT I2S2_MCK,USART2_RX, ADC1_3 13 NRST I/O FT RESET 14 PA0 I TC Wi-Fi wake up MCU 15 - - - Not connected 16 PC13 I/O FT RTC_AMP1, RTC_OUT, RTC_TS TIM2_CH3,I2C2_SCL, 17 PB10 I/O FT SPI2_SCK/I2S2_CK,I2S3_MCK TIM4_CH4,TIM11_CH1,I2C1_SDA
in „EMW3165 - Der ESP8266 Killer ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Controller.pdf
C14 127 C13 128 161 DB1 C12 129 C11 130 C10 131 160 DB0 C9 132 C8 133 C7 134 159 RS C6 135 C4 137 C3 138 158 RW C2 139 C1 140 2 157 SDA R18 141 - 156 SDA R9 142 9 R10 143 1 R11 144 1 R12 145 2 155 PD R13
in „LCD mit 6 Pins wie anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EMS_Adapter.xml
vptreq00nLr8BThBK8uqgtHLKRnW7BrX9/Vrv8D4gKMvzx7f4IBcnHjbr/MARaOcKHqli8zhN5iBBJrfMJQkZWVXs3Nn6676zqp8rFZHDILMlHfC7bMeruEIQ5qnG2HRQW6I1LfTGnH1mKlJDgiGHXoMuRL1Q/C6lMJC7DsZIRDEzaZJ/T4cVTUU29kVYGZPu+rtICHilpGsb0AZoG5cQNzdCfvf11iW9WyYq+SabhZvneUa4BrGodL8hGLd19kbA3uThavUVHGHEC2ebXvQVYboHVKedydXrslqf/kzWIM537Dh29oDmNbMb6
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Datei
EMS_Adapter.xml
vptreq00nLr8BThBK8uqgtHLKRnW7BrX9/Vrv8D4gKMvzx7f4IBcnHjbr/MARaOcKHqli8zhN5iBBJrfMJQkZWVXs3Nn6676zqp8rFZHDILMlHfC7bMeruEIQ5qnG2HRQW6I1LfTGnH1mKlJDgiGHXoMuRL1Q/C6lMJC7DsZIRDEzaZJ/T4cVTUU29kVYGZPu+rtICHilpGsb0AZoG5cQNzdCfvf11iW9WyYq+SabhZvneUa4BrGodL8hGLd19kbA3uThavUVHGHEC2ebXvQVYboHVKedydXrslqf/kzWIM537Dh29oDmNbMb6
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PDF
Diagrams_TF-118_TF-100.pdf
EC5 CC1 C10 C11 C12 C13 C14 FB600 C15 C16 C17 C18 C19 C20 C21 C22 C23 OUT GND C24 C25 VCC3.3V VCC 10uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 100UF_10V 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF R8 0.1UF 0.1uF
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
VDDC N10 1uF C445 L407 10uF GND VDDC N11 1uF C440 SBY1005AVDD_MPLL VDDC P10 10uF TP54 P13 AVDD_33 GND GND GND AVDD_DM GND GND MSD237HENG 2 - 12 G Chassisplatte / Chassis Board – Scaler YTS190R-5 R U N E E 3 0 5 4 2
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
HAL_I2C_Init(&hi2c1); /**Configure Analogue filter */ HAL_I2CEx_AnalogFilter_Config(&hi2c1, I2C_ANALOGFILTER_ENABLE); } /* I2C3 init function */ void MX_I2C3_Init(void) { hi2c3.Instance = I2C3; hi2c3.Init.Timing
in „STM32F7 Disco und das Display-->hard fault error“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Forum.PDF
PU0w2 VCC VCC VCC R13_pw EN2 LX2 C 0ohm 100k 1% 1246 5 C PR P10p0 FB1 NC1 PU115 PI2p1 FB2 NC2 PUp01 p0 6+5 6 13 P 0 C7712 2 2 7 EP PU303 R7_ w 1 Cn V V PI1p0 VIN1 GND PU9w3 124K1206 CO0p V 0 2 2 PI2p0 VIN2 GND PU0w9 U3_ w 0 PR8_pw P1 F P C8_pwP C9_pw P P3p0 VIN VOUT PI3p0 P CC0p . . PAM2306AYPKE 102pw 34K 1% 1206 2 4 P 4 P P P2 P3p0 EN FBPI3p0 P 2 PR P P C1 _ w C12_pw C13_pw PR C14_pw Tantal 47uF 16V P 10uF50VP 1uF 50V P3p0 SS GND PI3p0
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EC20-9822_SK9822-2020__LED_Datasheet.pdf
Document No.: SPC / SK9822-EC20 Rev. No.: 05 www.normandled.com Shenzhen Normand Electronic Co.,Ltd 13. Standard LED Performance Graph: Thermal PadTemperaturevs.RelativeLightOutput 120% x BLUE/GREEN l s100% o i80% u L60% RED e l a40% o N20% 0.00 0 20 40 60 80 100 120 Thermal PadTemperature(T=25°C) WavelengthCharacteristics
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PDF
Tasterentprellen.pdf
beiden Schalt- zuständen. Der Inverter nach Bild 5-16 sollte daher ein möglichst großes R aufwei- C sen, damit bei U e high und geöffnetem Transistor I mögCichst klein wird. Ande- rerseits sollte C bei U e low möglichst klein gegenüber R werdLn, damit bei ge- sperrtem Transistor der Spannungsteiler
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PDF
hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
C1820 DDR12_A09 100R R927 C1791 DDR34_A09 100R R944 C1811 DDR56_A13 100RR960100n10V 1 S273 2 3V3_VCC 100R R92600n 10V 100R R94300n 10V C1817 DDR12_A13 C1788 DDR34_A13 C1814 100n 10V 1 S274 2 100n 10V 100n
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
schemath.txt
RC2-10 CW KEYER: HEATHKIT: HD1410 SA5010 VRZA MEMORY: P27+P27A DIV.KENWOOD: KENWOOD : PC1(A) VOX 3+4 DM81 TU4(A/B/C) TU79 DIV.PHILIPS: PZ5803 PZ5805 PZ5907 PZ5809 PZ2036 PZ2038 PZ2039 PZ2040 PZ2046 PZ2057 PZ2305 PZ2307 PZ2309 PZ2315 PZ2320 PZ2325 PZ2330 PZ2335 PZ2712 PZ2713 PZ2730 PZ2731 PZ2732 PZ2733
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Datei
smartctl-a-dev_sdc_output.txt
smartctl -a /dev/sdc smartctl 7.2 2020-12-30 r5155 [x86_64-linux-5.12.4-2-default] (SUSE RPM) Copyright (C) 2002-20, Bruce Allen, Christian Franke, www.smartmontools.org === START OF INFORMATION SECTION === Model Family: Seagate Desktop HDD.15 Device Model: ST4000DM000-1F2168 Serial Number: S30044YE LU WWN Device Id: 5 000c50 06cdf296d Firmware Version: CC52 User Capacity: 4,000,787,030,016 bytes [4.00 TB] Sector Sizes: 512 bytes logical, 4096 bytes physical Rotation Rate: 5900 rpm Form Factor: 3.5 inches Device is: In
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PDF
AAA.pdf
32 06/2030 18 Cent DM AAA Energizer Max 50 1102 0,9 1,53 1,21 27 12/2035 106 Cent AAA Duracell Plus 100 895 0,9 1,64 1,25 29 03/2035 AAA Varta Industrial Pro 100 1047 0,9 1,56 1,20 25 12/2035 AAA Wilhelm Universal 100 960
in „AAA Primärzellen verschiedener Hersteller ausgemessen“ · Offtopic ·
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PDF
AAA.pdf
32 06/2030 18 Cent DM AAA Energizer Max 50 1102 0,9 1,53 1,21 27 12/2035 106 Cent AAA Duracell Plus 100 895 0,9 1,64 1,25 29 03/2035 AAA Varta Industrial Pro 100 1047 0,9 1,56 1,20 25 12/2035 AAA Wilhelm Universal 100 960
in „AAA Primärzellen verschiedener Hersteller ausgemessen“ · Offtopic ·
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PDF
AmateurfunktagungMuenchen.pdf
00 Der Traum des DX‘er Honor Roll im DXCC - Was hängt damit zusammen? Michael Oerter DJ5AV 12:40 - 13:00 Grundlagen der IQ-Signalverarbeitung Gerrit Buhe DL9GFA 13:00 - 13:45 Erfahrungen mit dem Aufbau des SDR-Transceivers PIG A STAR Henning C. Weddig DK5LV 14:00 - 14:45 Amateurfunk mit GNU-Radio Gerrit
in „Design einer Hornantenne und Verbindung zum Waveguide“ · HF, Funk und Felder ·
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Datei
main.c
}, // GAM7 - default 0x52 { 0x82, 0x60 }, // GAM8 - default 0x60 { 0x83, 0x6c }, // GAM9 - default 0x6c { 0x84, 0x78 }, // GAM10 - default 0x78 { 0x85, 0x8c }, // GAM11 - default 0x8c { 0x86, 0x9e }, // GAM12 - default 0x9e { 0x87, 0xbb }, // GAM13 - default 0xbb { 0x88, 0xd2
in „Brauche Unterstützung beim OV7670 (bzw. SCCB)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
}, // GAM7 - default 0x52 { 0x82, 0x60 }, // GAM8 - default 0x60 { 0x83, 0x6c }, // GAM9 - default 0x6c { 0x84, 0x78 }, // GAM10 - default 0x78 { 0x85, 0x8c }, // GAM11 - default 0x8c { 0x86, 0x9e }, // GAM12 - default 0x9e { 0x87, 0xbb }, // GAM13 - default 0xbb { 0x88, 0xd2
in „Brauche Unterstützung beim OV7670 (bzw. SCCB)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teXet_TF-127_Service_manual.pdf
VCC1.2V USB5V V5V USB5V U311 3 VIN VOUT 1 VBUS1 FB20 FB 4 EN ɹ VOUT 5 1K D Core3.3V R370 N EC110 G C95 4.7k RT9701 10K 2 C 100uf/10V 0.1uF R368 C 1k 3 2.2K ID1 R373 1 Q34 AGND AGND ID1 MMBT3904 AGND 2 AGND FB19 FB120 VBUS1 VBUS1 R117 0 CON13 DM1 DM1 1 +5V D_ 2 D- B DP1 DP1 R106 0 D+ 3 D+ B ID1 4 ID1
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
<5> T4 FDI1_TX_1 L C PEG_RX_13 H6 =PEG_D2R_P<13> 9 PLACE_SIDE=TOP00.K43:50.8MM NC RSVD_12 DC_TEST_A61 CPU_DC_TEST_C61_A61 OUT AA3 B A F6 IN NCAY21 RSVD_13 DC_TEST_C61 C61 72 18OUT FDI_DATA_P<6> FDI1_TX_2 X R PEG_RX_14 =PEG_D2R_P
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dbpxa210.pdf
Silicon Platform B1 Stepping B2 Stepping BBPXA2xx Rev B 10,11, 12, 14,15 10,11, 12, 14,15 DCPXA250 D/C Rev C 3, 6, 7, 8, 9, 10, 13 3, 6, 7, 8, 9, 10, 13 DCPXA250 D/C Rev D 7, 9, 10, 13 7, 9, 10, 13 DCPXA250 D/C Rev E — — DCPXA250 D/C Rev F — — DCPXA210 D/C Rev A 1, 2, 3, 4, 5 1, 2, 3, 4, 5 NOTE: Intel
in „Suche Informationen zu Intel Entwicklungs Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlz24n.pdf
Voltage (V) Fig 13 Typical Output Characteristics Fig 73 Typical Output Characteristics 100 3.0 e ID = 18A T = 25°C c ) J t A i 2.5 t T J 175°C e e R r n u 10 O 2.0 C c d c u e u o l1.5 o - a - - r t i N n 1 r (1.0 a D
in „IR2127 Beschaltung als Low Side Schalter + Mosfet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FQB34P10.pdf
- Continuous CT= 25°C) -33.5 A - Continuous CT= 100°C) -23.5 A I DM Drain Current - Pulsed (Note 1) -134 A VGSS Gate-Source Voltage ± 25 V E Single Pulsed Avalanche Energy (Note 2) 2200 mJ AS AR Avalanche Current (Note 1)
in „DC/DC Wandler Vin 15-50V, Vout 12V 9A!“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Linuxcon_2017_NERF.pdf
[MATCH] BASEEXT 84074ba8ba4b6dca24e086be37d8c768468b63e18d1ac5909ba1f8e1d0544f9b [MATCH] SC 5b22b84a4ac67751a55c280ce6b69c2c9d6d649a9710031db43a14f39e4a337d [MATCH] NM ba2ff3a68035174080a50da2fffab21c6de16b84838c9f7159ce3ec99e0c5261 [MATCH] DM 91cbb5777bb5c5a3c2776edf15dc35b65b6ebda2ae83d0b7ea03cb080e95ea83
in „Schwere Sicherheitslücke in Intelprozessoren?“ · PC Hard- und Software ·
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Datei
DSM.txt
Transmitter capabilities : HP6DSM (DSM2): 0x01 : DX6i (DSMX): 0xA2 : DX8 (DSM2): 0x12 : DX8 (DSMX): 0xB2 : DM9 (DSM2): 0x02 # of packets (1 if num-channels < 8, 2 if num-channels >= 8) for DSM2 ii : Unknown (value = 0x00) jjjj : eeee + sum of bytes 8 through 13 The bind channel can be any odd channel between
in „DSM2 oder DSMX Protokoll Beschreibung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRLML6401.pdf
IRLML6401TRPbF Absolute Maximum Ratings Parameter Max. Units VDS Drain- Source Voltage -12 V D @ TA= 25°C Continuous Drain CurrentGS@ -4.5V -4.3 D @ TA= 70°C Continuous Drain CurrentGS@ -4.5V -3.4 A DM Pulsed Drain Current -34 P @T = 25°C Power Dissipation 1.3 D A W PD@T A 70°C Power Dissipation 0.8 Linear
in „3,3 V schalten mit möglichgst geringem Spannungsabfall“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF3205Z.pdf
Circuit g V i (BR)DSS S, 50 p S EA 0 25 50 75 100 125 150 175 StartingJT , Junction Temperature (°C) AS Fig 12c. Maximum Avalanche Energy Fig 12b. Unclamped Inductive Waveforms Vs. Drain Current Q G 10 V Q GS Q GD 4.0 ) ( VG e a l ID = 250µA V 3.0 Charge l h Fig 13a. Basic Gate Charge Waveform s h t t G 2.0 ) ( L S VG VCC DUT 0 1.0 1K -75 -50 -25 0 25 50 75 100 125 150 175 T , Temperature ( °C ) J Fig 13b. Gate Charge Test Circuit Fig 14. Threshold Voltage Vs. Temperature 6 www.irf.com IRF3205ZS/L 1000 Duty Cycle = Single Pulse Allowed avalanche Current vs ) 100 avalanche pulsewidth, tav (
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F107.pdf
line LQFP64 pinout 0 _ _ T 2 1 0 5 4 D S B B O B B B B B D C C C 1 1 V V P P B P P P P P P P P P P P A 64 63 62 61 60 59 58 57 56 55 54 53 52 51 50 49 VBAT 1 48 VDD_2 PC13-TAMPER-RTC 2 47 VSS_2 PC14-OSC32_IN 3 46 PA13 PC15-OSC32_OUT 4 45 PA12 PD0 OSC_IN 5 44 PA11
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC15-English.pdf
D 37 P2.5/A13/CCP0_3 D D D C C 2 C C C C C AD4/P0.4 5 P 36 P2.4/A12/ECI_3/SS_2 A A A A A x A A A A A U AD5/P0.5 6 4 35 P2.3/A11/MOSI_2 The speed of external P P T S S /O K/_ C AD6/P0.6 7 0 34 P2.2/A10/MISO_2 programmable
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ACT2803_Data_Sheet.pdf
C2 C5 R3 C4 BAT1 L1 R17 C20 C1 BAT2 C13 C12 C11 C10 D1 R12 C6 C7 C8 C14 Figure 7. ACT2803 typical application circuit (Input current limit 2.75A, fast charge current limit 1.0A, discharge output constant
in „ACT2803 dual cell lipo charger - Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sihfr014.pdf
current DM 31 Linear derating factor 0.20 W/°C Linear derating factor (PCB mount) 0.020 Single pulse avalanche energy E AS 27.4 mJ Maximum power dissipation T = 25 °C 25 C PD W Maximum power dissipation (PCB mount
in „Hilfe bei Bauteil identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JMTK4004A.pdf
on-Resistance V GS0V, I =D0A - 3.3 4.3 R DS(on) note3 mΩ V GS.5V, I D20A - 5.4 7.5 Dynamic Characteristics C iss Input Capacitance V =20V, V =0V, - 5595 - pF C oss Output Capacitance DS GS - 411 - pF f=1.0MHz C rss Reverse Transfer Capacitance - 340 - pF Q g Total Gate Charge V DS0V, I =D0A, - 65 - nC Q gs
in „Bauteil Identifikation SMD erwünscht => MosFet?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SMK0825F.pdf
SWITCHING REGULATOR APPLICATIONS Features PIN Connection • High Voltage : BV DSS=250V(Min.) D • Low C rss C rsspF(Typ.) • Low gate charge : Qg=14.5nC(Typ.) • Low R DS(on) RDS(on)0.43Ω(Max.) G Ordering Information G Type No. Marking Package Code D S S SMK0825F SMK0825 TO-220F-3L TO-220F-3L Marking Diagram
in „Mosfet defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
abc.pdf
05 1 06 1 07 1 0 dec dec add add add add add add 6 2 6 2 6 4 6 4 10 7 10 7 10 8 10 8 10 1 11 1 12 1 13 1 14 1 15 1 16 1 17 1 1 rlc rlc adc adc adc adc adc adc 6 2 8 2 6 4 6 4 10 7 10 7 10 8 10 8 1 2 1 1 27 1 20 2 21 2 22 3 24 1 25 1 26 2 inc in c sub sub sub sub sub sub 6 2 6 2 6 4 6 4 10 7 10 7 10 8
in „DDR-µC, maskenprogrammiert, "fremd verwendbar ?“ · Mikrocontroller und Digitale Elektronik ·
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LM400_Datasheet__2_.pdf
- dBm C/I co-channel at 0.1% BER π /4 DQ PSK - 10 - ≤ +13 dBm 8 DPSK - 19 - ≤ +21 dBm Adjacent channel selectivity C/I π /4 DQ PSK - -10 - ≤ 0 dB F = F0+ 1 MHz 8 DPSK - -5 - ≤ +5 dB Adjacent channel selectivity
in „Bluetooth LM400 Konfiguration“ · Mikrocontroller und Digitale Elektronik ·
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p75nf75.pdf
Drain-gate voltage GS = 20KΩ) 75 V V GS Gate-source voltage ± 20 V ID(1) Drain current (continuous) aC T = 25°C 80 80 A ID(1) Drain current (continuous) aC T =100°C 70 70 A I (2) Drain current (pulsed) 320 320 A DM P Total dissipation at T = 25°C 300 45 W TOT C Derating factor 2.0 0.3 W/°C dv/dt(3)Peak
in „Unbekanntes Bauteil im Akkuschrauber“ · Analoge Elektronik und Schaltungstechnik ·
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BB_Schem_75839_b.pdf
9 OE_TP_INT ID 18 0 4 ID USBG_TXDP 14 DAT_VP DP 16 R49 3 D+ NC3 9 USBG_TXDM 13 15 330 2 NC2 8 USBG_RXDP 11 SE0_VM DM 33 5 D- 7 10 VP 4 GND NC1 6 USBG_RXDM 12 VM RESET 8 RESET_OUT_B RCV SUSPEND USBG_ON_B MINI_AB RECEPTACLE 6 21 SPEED C1 C77 C75 100pF NOPOP GND 23 CGND C2 22 0.1uF
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
CLOCK OPERATING STANDBY Temperature PACKAGE Remark (MHz) CURRENTMAX. CURRENTMAX. (mA) (uA) MX25L1605DM2I-12G 86 25 20 -40°C~85°C 8-SOP Pb-free (200mil) MX25L1605DMI-12G 86 25 20 -40°C~85°C 16-SOP Pb-free MX25L1605DM1I-12G 86 25 20 -40°C~85°C 8-SOP Pb-free (150mil) MX25L1605DPI-12G 86 25 20 -40°C~85°C 8-PDIP Pb-free (300mil) MX25L1605DZNI-12G 86 25 20 -40°C~85°C 8-WSON Pb-free (6x5mm) MX25L1605DZUI-12G 86 25 20 -40°C~85°C 8-USON Pb-free (4x4mm) MX25L3205DZNI-12G 86 25 20 -40°C~85°C 8-WSON Pb-free (6x5mm) MX25L3205DM2I-12G 86 25 20 -40°C~85°C 8-SOP Pb-free
in „MX25L160(5AM2C) neu beschreiben? Gibt es eine DIY Lösung?“ · Mikrocontroller und Digitale Elektronik ·