-
PDF
BF998.pdf
25 fF F noise figure f = 200 MHz; G = 2 mS; B = B 0.6 dB S S Sopt f = 800 MHz; S = 3.3 mS; BS= BSopt 1.0 dB 1996 Aug 01 4 NXP Semiconductors Product specification Silicon N-channel dual-gate MOS-FETs BF998; BF998R MGE813 MGE815 handbook, halfpage handIook, halfpage ID V = D 3 V (mA) G1-S
in „Schaltung mit BF998“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ATM16_doc2466.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Ateme16.pdf
Bits on page 266 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0” and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1” and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. 270 2466T–AVR–07/10 ATmega16(L) Figure 132. Mapping between BS1, BS2 and the Fuse
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Ateme16.pdf
Bits on page 266 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0” and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1” and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. 270 2466T–AVR–07/10 ATmega16(L) Figure 132. Mapping between BS1, BS2 and the Fuse
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Mega32.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Lenovo_schematic.pdf
AM33 DDRB_WE# {15} AK57 SA_DQ18 AU35 AL28 SB_DQ17 SB_CAS DDRB_CAS# {15} DDRB_DQ3 SA_DQ19 SA_BA0 DDRA_BS0# {14} DDRB_DQ34 SB_DQ18 DDRB_DQ4 AL58 SA_DQ20 SA_BA1 AV35 DDRA_BS1# {14} DDRB_DQ35 AK28 SB_DQ19 SB_BA0 AL35 DDRB_BS0# {15} DDRB_DQ5 AK58 SA_DQ21 SA_BA2 AY41 DDRA_BS2# {14} DDRB_DQ36 AR29 SB_DQ20 SB_BA1
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FSP_SHB_D.pdf
kHz 10 kHz 9,7 ________ 10,3 kHz 30 kHz 29,1 ________ 30,9 kHz 100 kHz 90 ________ 110 kHz 300 kHz 270 ________ 330 kHz 1 MHz 900 ________ 1100 kHz 3 MHz 2,7 ________ 3,3 MHz 10 MHz 7 ________ 11 MHz 1164.4556.81 1.38 D-1 FSP Performance Test Protokoll Eigenschaft enthalten in Min.-Wert Ist-Wert Max.
-
PDF
Roland_G-70_Service_Notes_.pdf
100k + 3.3k C44 100p IC5B ADO_R A UPC4570G 1 2 6 - DOR R61 680 R62 330 L8 JK4 A 7 1 2 R59 5 + EXCML16A270U HLJ052001110 100k IC6B C46 R60 DOL 2 M5218AFP 47u/16 100k 3 3 A A 1 L C48 0.1 A 1 Q6 L9 2 2SC3326A EXCML16A270U R64 10k R65 A 0 A A A HARMSW MUXVDD R66 CN5 NIU XMUTE R63 3k3 C47 Zout: 1k Ohm DIRECT
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Roland-G-70-Service-Manual.pdf
R94 R87 R88 +12V -VCC VCC R89 680 R90 330 L12 A 3 1 2 C57 100p NIU 0 470 -12V +12V R91 100 EXCML16A270U 2 L13 C59 HOL L EXCML16A270U 4.7u/25 R93 1k 2 - AUXSNDL 4 3 1 3 5 1 2 3 + A C61 1 JK6A IC9A 2 MUXVDD 1 330p YKC21_3503 R92 C62 R96 R97 UPC4570G C58 NIU 1 2 1 Q8 L14 12 330 68k 68k 2 - D1 R95 100 2
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
A300_ATMEGA8xxx.pdf
at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0”, and BS1 to “1”. The status of the Lock Bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 108. Mapping Between BS1, BS2 and the Fuse- and Lock Bits During Read Fuse
in „atMega8-16 Au beschreiben“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATMEGA8_DATENBLATT.pdf
Bits on page 229 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0”, and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1”, and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0”, and BS1 to “1”. The status of the Lock Bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 108. Mapping Between BS1, BS2 and the Fuse- and Lock Bits During Read Fuse
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATmega8.pdf
Bits on page 222 for details on Command loading): 1. A: Load Command “0000 0100” 2. Set OE to “0”, BS2 to “0”, and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed) 3. Set OE to “0”, BS2 to “1”, and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed) 4. Set OE to “0”, BS2 to “0”, and BS1 to “1”. The status of the Lock Bits can now be read at DATA (“0” means programmed) 5. Set OE to “1” Figure 108. Mapping Between BS1, BS2 and the Fuse- and Lock Bits During Read Fuse
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
db_atmega8.pdf
Flash” on page 229 for details on Command loading): 1. A: Load Command “0000 0100”. 2. Set OE to “0”, BS2 to “0”, and BS1 to “0”. The status of the Fuse Low bits can now be read at DATA (“0” means programmed). 3. Set OE to “0”, BS2 to “1”, and BS1 to “1”. The status of the Fuse High bits can now be read at DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0”, and BS1 to “1”. The status of the Lock Bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 108. Mapping Between BS1, BS2 and the Fuse- and Lock Bits During Read Fuse
in „ADC-Input und Auswahlverfahren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Transistortester092k.pdf
1,6% 100kΩ 0,1% 99,0kΩ 2,0% 98,9kΩ 1,1% 98,9kΩ 1,1% 2,6% 1,2% 0,7% 200kΩ 0,1% 196,8kΩ 197,7kΩ 198,6kΩ 270kΩ 0,1% 266,3kΩ 1,4% 267,5kΩ 0,9% 268,6kΩ 0,5% 470kΩ 0,1% 77,46µF ? 467,1kΩ 0,6% 469,0kΩ 0,2% 2,2% 0,5% 0% 940kΩ 0,1% 919,6kΩ 935,7kΩ 940,0kΩ 1,00MΩ 0,1% 973.8kΩ 2,6% 990,8kΩ 0,9% 996,2kΩ 0,4% 2,00MΩ
-
PDF
Chip_222_-_alternative_555.pdf
signal with a frequency The oscillator of swinging frequency (Fig.11) of 500 Hz and an amplitude of 270 mV, THD less includes two generators on the DA1 and DA2 222 chips. The first of the generators generates than 4%, is removed from output 2. Rectangular signals can be simultaneously received from pin
in „Chip 222 - alternative 555“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Sony_M610__MBX-176_.pdf
Sheet 9 of 77 5 4 3 2 1 5 4 3 2 1 D D 14 M_A_DQ[63..0] U4D 15 M_B_DQ[63..0] M_A_DQ0 AR43 SA_DQ0 SA_BS0 BB19 M_A_BS0 14,16 U4E M_A_DQ1 AW44 SA_DQ1 SA_BS1 BK19 M_A_BS1 14,16 M_B_DQ0 AP49 SB_DQ0 SB_BS0 AY17 M_B_BS0 15,16 M_A_DQ2 BA45 SA_DQ2 SA_BS2 BF29 M_A_BS2 14,16 M_B_DQ1 AR51 SB_DQ1 SB_BS1 BG18 M_B_BS1 15,16 M_A_DQ3 AY46 SA_DQ3 M_B_DQ2 AW50 SB_DQ2 SB_BS2 BG36 M_B_BS2 15,16 M_A_DQ4 AR41 SA_DQ4 SA_CAS# BL17 M_A_CAS# 14,16 M_B_DQ3 AW51 SB_DQ3 M_A_DQ5 AR45 SA_DQ5 M_A_DM[7..0] 14 M_B_DQ4 AN51 SB_DQ4 SB_CAS# BE17 M_B_CAS# 15,16 M_A_DQ6 AT42 SA_DQ6 SA_DM0
in „Blitzschaden an Sony Vaio Notebook“ · PC Hard- und Software ·
-
PDF
_ATmega32.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATMega16.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the Lock bits can now be read at DATA (“0” means programmed). 5. Set OE to “1”. Figure 132. Mapping between BS1, BS2 and the Fuse- and Lock Bits during Read Fuse
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at91rm9200-ek.pdf
BGRESG 47 R207 10K R213 10K 10K C226 100NF 30 DVDD R226 6K8 OP0 DS1 C229 100NF 23 1% RECEIVE STATUS 270R 3V3 R237 DVDD 48 SUPER YELLOW 15 BGRES DNP R214 NOT INSTALLED 33 DGND 11 44 DGND FDX/COLLED/OP0 12 OP1 DISPLAY SPEED STATUS 270R R234 DGND SPEEDLED/OP1 GREEN = 100 Mb R9 0R LINK/ACTLED/OP2 13 DS3 DNP R211 NOT INSTALLED 10 PWRDWN CABLESTS/LINKSTS 14 OP2 NRST 40 RESET SD 45 ACT LED 270R R232 GREEN B 3V3 DS5 DNP R208 NOT INSTALLED B R3 DNP DNP DNP 47K R242 10K 3V3 L202 VCCA C230 VCCA VCCA 742792093 100NF OP2 OP1 OP0 1 2 0 0 0 Dual speed 100/10 HDX C215 R209 R215 0 0 1 Reserved 10VuF
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Panasonic_AG-7350-7150_Service_Manual.pdf
ECUM1H1032FN C.CAPACITOR CH 50V 0.01U 1 C3140 ECUM1H103ZFN C.CAPACITOR CH 50V 0.01U 1 C3022 ECUM1H270JCN C.CAPACITOR CH 50V 27P 1 C3141 ECCF1H270JC C. CAPACITOR 50V 27P 1 C3023 ECEA1CU220 E. CAPAC!TOR 16V 22U 1 C3024 ECUM1E104ZFN C.CAPACITOR CH 25V 0.1U 1 C3027 ECEA1CU220 E. CAPACITOR 16V 22U 1 C302B
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Gath_-_Triacs_und_Diacs_in_Theorie_und_Praxis.pdf
IV) Di. Diac A 9903 o.ä. (Tabelle V) 0 - R, Hochlastwiderstand 5.6 kQ/6 W/5% I La] R2 Potentiometer 270 kQ lin/1 W // Ra Kohleschichtwiderstand 1kQ/1 W/5% // R< Drahtwiderstand 3 Q/3 W/5% / Rs Kohleschichtwiderstand 470 Q/’AW/5% / Re Fotowiderstand LDR 07 Valvo o.ä. (z.B. LDR 03. J LDR 05, ORP 12, RPY
in „hysteresefreie Phasenanschnittsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
oki-ml380_000.pdf
7-22 Kapitel 7: IBM-Emulation - Standardfunktionen Funktion Dez. Hex. ASCII Rückwärtsschritt 8 08 BS Rückwärtsschritt DurchdiesenBefehlwirddieDruckpositionaufdaszuletztempfan- genedruckbareZeichengesetzt.DerRückwärtsschrittwirdnuraus- geführt, wenn anschließend ein druckbares Zeichen oder ein Druck-
in „USB zu RS232“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SIM908-C.pdf
Feature Implementation Power supply 3.2V ~ 4.8V Typical power consumption in sleep mode is 1.0mA ( BS-PA-MFRMS=9, GPS Power saving engine is powered down ) Charging Supports charging control for Li-Ion battery z SIM908-C Quad-band: GSM 850, EGSM 900, DCS 1800, PCS 1900. Frequency bands SIM908-C can search
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
-
PDF
1999-07-15_Normstahl_Tandem_1-4_EinbauBedienungsAnleitung_D_.pdf
Befestigungswrohrpaares(3)anschrauben. (23 und 24).)verschrauben • Lochbänder(2)kürzen und am befestigen(23 und 24).bs(1) 14 T o r a n t r i e b - B e f e s t i g u n gan N a r m s t a h l Decke,Sturzoder Seiten Tore•Türen• Antriebe w a n d • Antrieb zur Decke hochhe ben. A V O R S I C H T Antriebmitgeeigneten gegen
in „Elektronik 2500“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
DATA (“0” means programmed). 4. Set OE to “0”, BS2 to “1”, and BS1 to “0”. The status of the extended fuse bits can now be read at DATA (“0” means programmed). 5. Set OE to “0”, BS2 to “0” and BS1 to “1”. The status of the lock bits can now be read
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Arcam-FMJ-P7.pdf
R303 1A322 Resistor 1206 Surface Mount 0.25W 1% 22K R304 1A127 Resistor 1206 Surface Mount 0.25W 1% 270R R305 1A310 Resistor 1206 Surface Mount 0.25W 1% 10K R306 1A310 Resistor 1206 Surface Mount 0.25W 1% 10K R307 1A339 Resistor 1206 Surface Mount 0.25W 1% 39K R310 1A110 Resistor 1206 Surface Mount 0.25W
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
038-05058-01-X-MLCC_REVB03_SKIT.pdf
HDMI_DDC_SCL_LS [12] K12 D14 HDMI_DDC_SDA_LS [12] HDMI_RX0_DDC_SDA HDMI_TX0_DDC_SDA STDP4320_SPI_CLK BS_2 SOM_DP_HPD_LS F4 E4 RX0_HPD TX0_HPD HDMI_HPD_IN_LS [12] STDP4320_SPDIF_OUT0 BS_4 E2 STDP4320_SPDIF_OUT0 SPDIF_OUT0 STDP4320_SPDIF_OUT1 BS_6 AVDD12 STDP4320_HOST_IRQ_OUT [11] BS_7 5 5 5 R1 R1 R1 1 1
-
PDF
Arcam-FMJ-P7.pdf
R303 1A322 Resistor 1206 Surface Mount 0.25W 1% 22K R304 1A127 Resistor 1206 Surface Mount 0.25W 1% 270R R305 1A310 Resistor 1206 Surface Mount 0.25W 1% 10K R306 1A310 Resistor 1206 Surface Mount 0.25W 1% 10K R307 1A339 Resistor 1206 Surface Mount 0.25W 1% 39K R310 1A110 Resistor 1206 Surface Mount 0.25W
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HBIS51V120.pdf
deklarieren */ ucVar = 0xC9; /* Ausgabewert festlegen */ _OPLA1(ucVar); /* Wert ausgeben */ Name: _OPLA1BS (Out Platine 1 Bit setzen ) Ein oder mehrere Bit am Ausgabeport der Ein/Ausgabe-Platine E/A-1 setzen. Aufrufparameter ist die Bitmaske (Kap. 3.9.1(2) S.45) der zu ändernden Bit. Definition: void _OPLA1BS(unsigned char) Beispiel: unsigned char ucVar; ucVar = 0x08; /* Bitmaske Bit 3 */ _OPLA1BS(ucVar); /* Bit setzen */ Name: _OPLA1BR (Out Platine 1 Bit rücksetzen ) Ein oder mehrere Bit am Ausgabeport der Ein/Ausgabe-Platine E/A-1 rücksetzen. Aufrufparameter ist die Bitmaske (Kap. 3.9.1(2) S
in „8051 - Programm und Daten in einem 128kB Chip ohne Overlap“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ADSP-2181_Datenblatt.pdf
Min Max Unit Bus Request/Grant Timing Requirements: 1 tBH BR Hold after CLKOUT High 0.25CK + 2 ns tBS BR Setup before CLKOUT Low 1 0.25CK + 17 ns Switching Characteristics: tSD CLKOUT High to xMS, 0.25tCK + 10 ns RD, WR Disable t xMS, RD, WR SDB Disable to BG Low 0 ns tSE BG High to xMS, RD, WR Enable
-
PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
SA_CAS DDRA_CAS# 14 DDRB_DQ33 AK29 SB_DQ16 SB_WE AM33 DDRB_WE# 15 DDRB_DQ3 AK57 SA_DQ18 AU35 DDRA_BS0# 14 DDRB_DQ34 AL28 SB_DQ17 SB_CAS DDRB_CAS# 15 DDRB_DQ4 AL58 SA_DQ20 SA_BA1 AV35 DDRA_BS1# 14 DDRB_DQ35 AK28 SB_DQ19 SB_BA0 AL35 DDRB_BS0# 15 DDRB_DQ6 AR57 SA_DQ21 SA_BA2 AY41 DDRA_BS2# 14 DDRB_DQ37
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
UBX-TN-12040 LISA-U260 LISA-U260-01S-00 22.61 UBX-TN-12061 LISA-U260-02S-00 22.90 UBX-13003492 LISA-U270 LISA-U270-01S-00 22.61 UBX-TN-12061 LISA-U270-02S-00 22.90 UBX-13003492 LISA-U270-62S-00 22.90 UBX-13003492 SARA-G300 SARA-G300-00S-00 08.58 GSM.G2-TN-13007 SARA-G310 SARA-G310-00S-00 08.58 GSM.G2-TN
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
-
PDF
S1D13513.pdf
External External External CSn# Connected to Connected to Decode Decode Decode Decode Decode VDD VDD BS# Connected to BS# Connected to AS# AS# TS# Connected to Connected to VDD VDD VDD VDD RD/WR# RD1# RD/WR# Connected to R/W# R/W# RD/WR# /CARDxCSL CARDxCSL* VDD Connected to RD# RD0# RD# MEMR# VDD SIZ1
in „S1D113513 + AT91RM9200“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ml280epson_tcm3-37706.pdf
- viert die horizontale Dehnschrift für eine Zeile. Funktion Dez. Hex. ASCII Rückwärtsschritt 8 08 BS Rückwärtsschritt Durch diesen Befehl wird die Druckposition auf das zuletzt emp- fangene druckbare Zeichen gesetzt. Dieser Befehl wird nur ausge- führt, wenn anschließend ein druckbares Zeichen oder
-
PDF
philips_chassis_qfu2.1e_la.pdf
K C 0 4 IUCH 10R IUCK 3 C 4 C 4 C 4 C 4 U 2 U 2 U 2 U 8 U 0 1 7UC6-1 3 3 3 3 3 3 3 2 3 6 2 1 BC847BS(COL) 1 2 3 4 GND-1V2 7UC6-2 6 BC847BS(COL) 3 2 IUCF GND-1V2 GND-1V2 GND-1V2 GND-1V2 3UCT-4 IUCD ENABLE+1V5+1V1 4 5 5 1 2UC3 100K E IUCL 4 R 0 330p T 1 C 1 3UD1 2UC4 2 GND-1V2 4K7 1 K IUCJ 1n0 4 3 R +
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
pm2521ocr.pdf
O-—o™B VOLTAGE INPOT ATTENUATOR CONVERTOR ; 811127 is S365 Fg.9.Blockdiagram-frequencymeasurements bs 13 1.3.3.2. Time measurements Time measurements of signals are determined in conjunction with the trigger level function in a similar way to frequency measurements. . ; The input signal isapplied via
in „Pjilips PM2519“ · Markt ·
-
PDF
document_1_.pdf
the BoB . . . . . . . . . . 11 2.5 Use case recording both unprocessed and processed data with two BoBs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 2.6 Main loop of the NightVision system . . . . . . . . . . . . . . . . . 14 3.1 The four complementing views of the architecture
in „BMW Nightvision (FLIR PathfindIR) "Wärmebildkamera"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MSP-EXP430G2_LaunchPad.pdf
X R 3 G D D DD 1 4 R N II 0 k 3 D R R R R e 7 6 5 4 M m S v P d 0 0 0 0 E U R R R R X : P S 4 7 B BS S 3 5 Z RT B B G 4 _ D D WW 2 P 1N B B Z1 C DCT W 2D WW V 1 B C O K B E r T TC W 1 W M m I KC & 2 4 6 8 0 & U S O U J U L B R 3 R T W T T O o 6 5 4 3 2 1 / 1 3 5 7 9 / R n S J t t C e L 4 o A Z L 1 i
in „gutes Übersetzungsprogramm für Datenblätter gesucht“ · Offtopic ·
-
PDF
ISP1301.pdf
_ D T S D G 2 1 B B V C C C V V 24 23 22 21 20 19 ADR/PSW 1 18 ID SDA 2 17 AGND SCL 3 16 DP ISP1301BS DM RESET_N 4 15 INT_N 5 14 DAT/VP SPEED 6 13 SE0/VM 7 8 9 10 11 12 004aaa542 3 D N M P V 3 E T V V R ( P / E U N R S E V O Fig 2. Pin configuration HVQFN24 (top view). ) N V D T ( E I G P N E U E M P
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
iPhone_4_schem.pdf
R R 1 _ 1 1 PP7 C175 C59_RF C F F F F Q2 C187 P U _ C C P C J DZ2 DZ1 M M P R19_RF R _ C225 C523 2 BS2 FL7_RF F C _ _ _ 0 U P C F 8 2 0 TP74_RF C51_RF _ L2_RF 5 R R R 1 C192 FL20 C72 C73 _ M _ 1 C 5 5 BS3 C20_RF 5 R F F C R113 R115 3 U P L 0 2 PP18 TP28_RFTP30_RF W F 4 5 5 C194 FL18 XW3 U 7 6 C 2 R30 C PP16 C J7_RF C12_RF X R R R R37 6XW1 L U4 R 2 1 1 2 FL6_RF FL8_RF S1 C D BS1 U 6 0 C200 8 8 SH3 FL5_RF C53_RF R21_RF 1 U5 C269_PMU C178_PMU 6 6 C253 R308 C524 PP17 R16 FD5 BS4 TP1_RF TP6_RF TP5_RF TP2_RF TP68_RF TP4_RF R45 R13 SL10 C252 SH4 FL4_RF C16_RF R C108_RF 8 C 1 C27_
in „iphone 4 smd abgebrochen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STM32F746G_Discovery.pdf
4 4 4 4 4 4 4 3 3 3 Not Fitted, must be on a border or the PCB. 1 2 3 4 STM32F103CBT6 _ S B BT B B BS D D L CN111 99C9 01010 D V P PO P P PT / 5 W V B 4 P A / Not Fitted, must be on a border or the PCB. 3V3_ST_LINK1X4X2 02pF PIU2501VBAT P P T VDD_2 PI355036 3V3_ST_LINK P I XP I X 4 0 2 PIU1503PC14 2
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PSpice_LibraryguideOrCAD.pdf
Bipolar TransistIXGM40N60A IXGM40N60A IGBT.OLB IXYS Corporation Insulated Gate Bipolar TransistMG100H1BS1 MG100H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG15H1BS1 MG15H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG15N1BS1 MG15N1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG25H1BS1 MG25H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG25N1BS1 MG25N1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG50H1BS1 MG50H1BS1 IGBT.OLB Toshiba Insulated Gate Bipolar TransistMG50N1BS1 MG50N1BS1
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Transistor_Database.pdf
36W 850MHz BLY89C SI-N 18V 6A 73W 800MHz BLY93C SI-N 65V 2A 25W 175MHz BLY94 SI-N 65V 6A 50W 175MHz BS107 N-FET 200V 0.13A 0.8W 26R BS108 N-FET 200V 0.23A 0.8W 8E BS170 N-FET 60V 0.3A 0.8W 5R BS208 P-FET 200V 0.2A 0.8W BS250 P-FET 45V 0.18A 0.83W BSN254A N-FET 250V 0.3A 1W <7E BSN274 N-FET 270V 0.25A
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Transistor_Database.pdf
36W 850MHz BLY89C SI-N 18V 6A 73W 800MHz BLY93C SI-N 65V 2A 25W 175MHz BLY94 SI-N 65V 6A 50W 175MHz BS107 N-FET 200V 0.13A 0.8W 26R BS108 N-FET 200V 0.23A 0.8W 8E BS170 N-FET 60V 0.3A 0.8W 5R BS208 P-FET 200V 0.2A 0.8W BS250 P-FET 45V 0.18A 0.83W BSN254A N-FET 250V 0.3A 1W <7E BSN274 N-FET 270V 0.25A
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Transistortester097k.pdf
L 100n 100n 10n 1 10 D3 11 D4 12 D5 13 1 ISP 2 VCC VCC 14 D6 MISO VCC 15 D7 3 SCK MOSI 4 16 5 6 33−270 Reset RESET GND Abbildung 2.1: Neue TransistorTester-Schaltung 2.2 Hinweise fur den Aufbau des Tr nsistorTesters Jede LCD-Anzeige-Einheit mit 2x16 Zeichen und einem HD44780 kompatiblen Kontroller kann
-
PDF
Switch.pdf
Anschlüsse Farbe Ausgangscode-Nummer e LAGER-NR. Teile-Nr. 1 25 50 100 r Einfacher Schalter a 653-A7BS-206-1 A7BS-206-1 D Schraube (vorne) Lötanschluss Schwarz 06 (binär codierte Dezimale) d 653-A7BS-207-1 A7BS-207-1 D Schraube (vorne) Lötanschlusss Schwarz 07 (binär cod. Dezimale, mit Diode) s 653-A7BS
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Akkulader_Beschreibung.pdf
erzeugt eine Rechteckspannung von 31,25 kHz (8 MHz/256), die mit ihrer Pulsweite die Spannung am Elko 270µF bestimmt. Dieser treibt über einen Widerstand von 470 Ohm den oberen Darlington BC879. Dieser lädt über einen Emitterwiderstand von 3,3 Ohm denAkku mit dem voreingestellten Strom. Der Strom wird überwacht
in „2A 1s Li-ion Lader + Protection“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AVX_Ta-Caps_11903.pdf
capacitance tolerance, rated voltage, polarity indication and date of manufacture. 5. Approved to BS CECC 30 201-001 and IECQ QC300 201 GB0002 supplied conforming to the limits of MIL-C- 39003 style CSR, CTS 13 and CTS 32. Case Dimensions: millimeters (inches) Case L1 L2 D Lead Length d Weight L2 Polarity
in „Widerstände und Tantal-Elkos“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Computer_Kontakt_1986-08_09_-_21.pdf
00 00 30 a8 a8 88 00 7c £4£10 c5 d5 e5 cd 43 Fc 06 06 c5 06 36 £5200 00 70 46 48 48 00 00 30 48 48 bS 64£20 bF 11 00 40 c3 6b 7a 3c 67 e6 aF £5210 30 00 00 70 48 48 70 40 00 38 42 65220 48 48 38 08 00 70 4B 40 40 00 rr 64 £30 07 20 0b 01 Z0 F8 09 b3 20 04 a3 £4640 7c c£ 07 67 e5 01 20 00 ed b0 d3 65230
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
R6581.txt
267,"Internal Reference3 error" +268,"Internal Reference3 error" +269,"Internal Reference3 error" +270,"Internal Reference3 error" +271,"Internal Reference3 error" +272,"Internal Reference3 error" +273,"Internal Reference3 error" +274,"Internal Reference3 error" +275,"Internal Reference3 error" +276,
in „Hilfe bei Disassembler 68000 Binary“ · Mikrocontroller und Digitale Elektronik ·