-
PDF
Elektronische_Last_final.pdf
R130 6 R136 9 R142 13 R148 ACHTUNG STECKER GEDREHT! S TLC274P TLC274P TLC274P 10µ 74HC4053P C117 C128 TLC274P C129 C130 E500R GND GND D105 220p RS1 X108-1 2n2 RS2 X110-1 22n RS3 X112-1 100n RS4 X114-1 BAT42 I-FEEDBACK 1k43 3k3 X108-2 3k3 X110-2 3k3 X112-2
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Schaltung_LPC.pdf
100 GND GND GND GND GND GND XTAL1 20 18pF E R28 XTAL2 R10 24Mhz GND E 10K 1M R11 Q1 C1 LED1 LED2 LED3 LED4 LED5 LED6 0R 18pF GND GND GND +3V3 +3V3 +3V3 1 +3V3 +3V3 +3V3 1 G R $ G R $ TLC5940 mit LEDs WS2812b mit Pegelwandler 1 3 2 3 3 3 1 4 2 4 3 4 E E
in „LPC1756 - WS2812B und Schaltplankontrolle“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
c06172053.pdf
OPAL 2 solid sta√e drive√ √ √ with TLC 512-GB, 2280 M.2, PCIe-3×4, SS, NVMe solid-state drive with TLC √ 512-GB, 2280, PCIe-3×4, NVMe solid-state drive √ √ √ √ 360-GB, 2280 M.2, PCIe3×4, SS, NVMe solid-state
-
PDF
62575_EM1000GZGZS_kmGasz_hler.pdf
IC1 IC3 IN OUT IN OUT EM 1000-GZ 7810 BC848C HT-7130 GND R 0 C6 + C8 7 GND C10 C11 + 3 R 13V/DC 1 IC2 1 5 8 T1 IC2 R 1 C1 + C2 C3 + C4 100u 100n TLC271 SMDn 16V 3+ 16V SMD 4 D3 25Vu SMDn 16V SMDn + 6 Ein C5 + ¯ C7 + C9 3mm R 1 2 TLC271 T2 grün 10u 100u 100n 16V BC858C 16V SMD -UB +3V Mikrocontroller
in „Stromzähler digital erfassen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lmg5278xufc-00t.pdf
UD3 0.8VDD 0.8VDD LD0~LD3 0.2VDD 0.2VDD tLSU tLC 0.8VDD 0.8VDD 0.2VDD 0.2VDD LOAD tWC tf tr tsetup thold 0.8VDD 0.8VDD FRAME KAOHSIUNG HITACHI MAR.27.’98Sh. ELECTRONICS CO.,LTD. DATE No.7B64PS 2708-LMG5278XUFC-00T-2PAGE 8-2/3 8.3
in „TFT an M16C62“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Elektronische_Last_8.pdf
100n 100n 100n GND 7 HRES X102-1 1 R 1 NC X102-2 R109 2 R110 TLC272P GND 47k Frontplatte EXT D104 -5V 0-10V == 0-20A X103-1 BAT42 B 0-20A == 0-5VX103-2 I/U-OUT +5V B X103-3 k 2 +10V +5V 3 R GND -5V GND Netzteil +10V X104-1 AR113 IC106 -5V X104-2 S
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Controller-Controller.pdf
? TLC274 5 Z0 U? Z 4 E 4 7 CH6_I 12 1 3 V 0 U?A bn X3 TLC274 1 Z0 C 2 3 + SSOT23 C 1 wh 8 CH6_U 1 X4 100n 1 E 4053_2 47 + V R? VEE 5 E V 6 R? 1 10k B X5 V Inh VEE VDD 2 - 2 J111_6-? 2 X6 100k 11 A - V Q? E 3 SIL8 4 R? p DIRECT 10 7 TLC274 X7 ? 0 B VEE 1 C? C 1 9 C C? C? E 0 ? INH2 6 100n 100n 100n V 1 R Inh SEL0 11 A C? C? SEL1 10 7 B VEE SEL2 9 C 4n7 10p Sheet: /Controller/ 2 C? VEE File: Controller.sch ? Z D 8 M TBD Title: L Size
in „ELV ALC 2000 wer kann mir hier helfen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
rn_propellerclock_1.11.pdf
Dmatrix As Byte Dim It As Byte Dim Zz As Byte Dim Text As String * 100 Dim Temptext As String * 100 'TLC einschalten (Sleep out) I2cstart 'start condition I2cwbyte Tlc1 I2cwbyte 0 'Register I2cwbyte 0 I2cstop I2cstart 'start condition I2cwbyte Tlc2 I2cwbyte 0 'Register I2cwbyte 0 I2cstop I2cstart 'start condition I2cwbyte Tlc1 I2cwbyte Ledout0 'Register I2cwbyte &B01010101 I2cstart 'start condition I2cwbyte Tlc2 Seite 14 von 28 Tipps und Tricks zum Aufbau einer PropellerClock mit vorgefertigter Platine von www.robotikhardware.de
in „Programm für Propellerclock“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
thermistor.pdf
board is missing shows N, which is the result- or broken. The sample function calcu- All resistoI=0.1 mA ing ADC digital sample from lates thermistor resistance and tem- are 1% metal Film. the 12-bit ±5-V ADC. 5V R1 RT C1 0.1 F perature. REF02 50 k – V1R2 R4 Because the analog circuit OP27 1k 150k and
in „regelbare Konstantstromquelle“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Place_Route_Trace_Report.pdf
to R27C40B.F1 wb_tlc/intf/SLICE_4284 ROUTE 1 0.000 R27C40B.F1 to R27C40B.DI1 wb_tlc/intf/wb_adr_o_32[19] (to clk_125_c) -------- 7.506 (32.2% logic, 67.8% route), 17 logic levels. Clock Skew Details: Source
-
PDF
Heizung.pdf
0 6k8 11 6 (OC1) PB3 15 TxD 22p PD2 (INT0) R14 T4 BUZ11 2 C6 7 PD3 (INT1) PB2 14 47k BC860C 8 13 R19 PD4 (T0) (AIN1) PB1 12k 9 12 PD5 (T1) (AIN0) PB0 10 GND (ICP) PD6 11 BC850C T6 BUZ11 C8 C9 220n 220n AT90S231 3 R15 1M 1 R16 0 100n 2 R20 R30 R26 8 k C10 k 1 6 0 1 R22 R23 100k 470k R27 0 1 2 IC2 k 5 2P1 + 3 8 TLC272 7 + 3 IC2 1 - 6 5 - TLC272 R21 R29 2 4 8 k 8 6 N1 5 1 C11 100n 4 R24 R25 100k 470k This document was created with Win2PDF available at http://www.daneprairie.com. The unregistered
in „PWM-Ansteuerung Heizkabel“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Hantek_Tekway_DSO_v1.03.pdf
/500MSs Control Relay 2 F F F SoC SoC F F F TRG-CH1+ INDATA2 TRG-CH1- ADC ADC ADC REF OUTAD9288 (ch1) REF OUTAD9288 (ch1) CLK100M CLK100M REF OUTTRIGGER CPLD TRIGGER FPGA Cyclone III REF OUTAD9288 (ch2) REF OUTAD9288 (ch2)
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LS4000_Routing_Report.pdf
M_SET requirement (totaling 7.855ns) by 2.176ns Physical Path Details: Data path wb_tlc/intf/SLICE_5156 to uart4/regs/SLICE_5528: Name Fanout Delay (ns) Site Resource REG_DEL --- 0.275 R33C28B.CLK to R33C28B.Q1
-
PDF
LS4000_Routing_Report.pdf
M_SET requirement (totaling 7.855ns) by 2.176ns Physical Path Details: Data path wb_tlc/intf/SLICE_5156 to uart4/regs/SLICE_5528: Name Fanout Delay (ns) Site Resource REG_DEL --- 0.275 R33C28B.CLK to R33C28B.Q1
-
PDF
ELV_Leitungssucher_LS100.pdf
2 Bild 2: Schaltbild des Ein empfindlichen Empfän- S1 7 C11 C12 C13 R 7 R k gers LS-E 100 4 IC1 2 C 3 dient dabei zur gleich- ST1 TLC271 100n 100n 100u C4 4 ker ker 16V spannungsmäßigenEntkopp- 9V 4 7
-
PDF
datasheet.pdf
Semiconductor MSM81C55-5RS/GS/JS PIN CONFIGURATION (TOP VIEW) 40 pin Plastic DIP PC3 1 40 V CC PC 2 39 PC 4 2 TIMER IN 3 38 PC1 4 37 RESET PC0 PC5 5 36 PB7 35 TIMER OUT 6 PB6 IO/M 7 34 PB5 CE 8 33 PB4 RD 9 32 PB3 WR 10 31 PB 2 ALE 11 30 PB1 AD0 12 29 PB0 AD1 13 28 PA 7 AD2 14 27 PA6 AD 15 26 PA 44
in „OKI M81C55 benutzen.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ixTDM-Bauteile-v1.1.pdf
120 1 CSD 10‐080120 100 1 0,01 0,01 optional RS485 Buchsenleiste 10pol gewinkelt 1 CSD 014‐B110W 10 2,7 0,27 0,27 für Erweiterungen R 0603 0 2 CSD 10‐060000 100 1 0,01 0,02 wenn kein RS485 R 0603 100 1 CSD 10‐060100 100 1 0,01 0,01 R 0603 1M 2 CSD 10‐06M001 100 1 0,01 0,02 Audio In R 0603 1k 1 CSD 10
in „Sammelbestellung? Mini-Platine: 3 Kanal Power-PWM mit ATMega+IR+RS485“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Artikel_EN.pdf
/AN1 RC5 R21 +5V 2 RA0/AN0 TX/RC6 25 1 R26 OSC2 OSC1 0 12 14 13 31 T1 1 X1 C17 100n 1 BC557 3 2 C3 20MHz C4 P3 P4 P2 4 8 C x +5V 22p 27p S1 1k 200Ω 1M 2 R 4 TR 6 R18 R19 R17 IC5 14 C14 8 Ω 2 7 3 5 IC3 7 2 8 DIS OUT 1 TLC555
in „ESR Kondensatortester; nur welchen der beiden!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EW32F10FLW.pdf
mA FOR LCD DRIVE NOTE ( 2 ) = 2 3 . 0 V RECOMMENDED VDD − VO Ta =-20°C 25.4 26.4 27.4 V ∅ = 1°,θ= ** Ta = 25°C 22 23 24 V LCD DRIVING VOLTAGE DUTY =1/240 Ta = 70°C 19.7 20.7 21.7 V CLOCK OSCILLATION f
in „Controller EW32F10 (Emerging Display) GLCD (320x240)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EW32F10FLW.pdf
mA FOR LCD DRIVE NOTE ( 2 ) = 2 3 . 0 V RECOMMENDED VDD − VO Ta =-20°C 25.4 26.4 27.4 V ∅ = 1°,θ= ** Ta = 25°C 22 23 24 V LCD DRIVING VOLTAGE DUTY =1/240 Ta = 70°C 19.7 20.7 21.7 V CLOCK OSCILLATION f
-
PDF
AD_Frontend8.pdf
AD-FRONTEND DWG-NAME: C46 C43 C42 C41 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF FILENAME: 6 5 4 3 2 1 +12V I(12V) = 250mA +12VA 6 1 Zwischenstromkreis C13 1n2 5 R12 R 0 1 1 1M 1 R 9 Q5 2 TLC271 J2-1 R7 4N35 D 100k C14 10nF D - 2 C27 + 4 R13 6 U4 C11 470p 3 J3-1 +12VA 10k + 1 0 AGND 0,1uF C48 R 1 U3
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
prop-clock_260809_new_driver_5.bas
Dmatrix As Byte Dim It As Byte Dim Zz As Byte Dim Text As String * 100 Dim Temptext As String * 100 'TLC einschalten (Sleep out) !call I2C_3p_init !call I2C_3p_start ' start I2C !ldi r17, Tlc1 ' address TLC1 !ldi r18, Tlc2 ' address TLC2 !ldi r19, Tlc3 ' address TLC3 !call I2C_3p_write ' write to I2C !
in „Mega644 mit 32768 er Quarz an tosc1 u. tosc2“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TSL26xR.pdf
kΩ VDD = 5 V T = 25°C RL= 10 k V A T = 25°C − A g 4 A 1.4 t m o − t n u e u 3 u 1.2 O C m l u p i 2 u 1 a − M − D M ID O 1 0.8 V 0 0.6 2.5 3 3.5 4 4.5 5 5.5 0 1 2 3 4 VDD − Supply Voltage − V VO − Output Voltage − V Figure 5 Figure 6 The LUMENOLOGY r Company r
in „Suche Ersatz für TSL260R-LF Lichtsensor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
dmf50081.pdf
Level V IH V CC.0V ± 10% 0.8× VCC - V CC V Input Voltage Low Level V IL V CC.0V ± 10% 0 - 0.2× V CC V Input Voltage ICC V CC =SS0V - 4.6 15.0 mA Supply Current IEE V CC ADJ=23.3V - 4.2 10.0 mA DMF-50081ZNB-FW (AQ) No.2000-0130 OPTREXPTREX CORPORATION Page 3/18 2.3.AC Characteristics V CC=5.0V
in „LCD Driving Voltage“ · Offtopic ·
-
PDF
dmf50081n.pdf
Level V IH V CC.0V ± 10% 0.8× VCC - V CC V Input Voltage Low Level V IL V CC.0V ± 10% 0 - 0.2× V CC V Input Voltage ICC V CC =SS0V - 4.6 15.0 mA Supply Current IEE V CC ADJ=23.3V - 4.2 10.0 mA DMF-50081ZNB-FW (AQ) No.2000-0130 OPTREXPTREX CORPORATION Page 3/18 2.3.AC Characteristics V CC=5.0V
in „Controllerless LCD“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT91SAM7A3-EK.pdf
S C M M MC CCC 3 6 PA27 A28 PB27B28 GND_ADC C28 D _ P P P P I O S 0 1 2 3M M / 0 1 2 3 4 5 L L 7 8 PA28 A29 ADC1_AD6 PB28 B29 ADC1_AD6 C29 5 4 _ 1 _ _ _ _ _ _ 1 S S S SO S K K K K K 0 1 L L T C L L PA29 A30 ADC1_AD7 PB29 B30 ADC1_AD7 C30 ADC + 3.6V Primary 6 3 FORCEWUP 27 C D I I I I I I P P P P PI O P C C C C R R C C 0 01 1 C C PA30 A31 B31 C31 lithium-thionylRR2 WUP0 FWKUP D / S S S S P S / N N N N M M S0 1 2 3 4 5 6 7 X XX X / / PA31 3V3 DNP chloride 100K 7 2 WUP1
-
PDF
gbdso_uk.pdf
TLC27L2CD 100n 16 16 25 16 23 AUDIO _IN C22 C23 C25 C26 C27 C28 C29 C30 C31 RD A15 32 GND 4 IC5 IC6 10µ 8 100n 8 100n 10µ 6Vµ 100n 10µ 10µ 100n 6V 6V 6V 6V 5V 990082 - 12 Figure 2. Circuit diagram of the
in „Bameboy-LCD mit avr“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
gbdso_uk.pdf
TLC27L2CD 100n 16 16 25 16 23 AUDIO _IN C22 C23 C25 C26 C27 C28 C29 C30 C31 RD A15 32 GND 4 IC5 IC6 10µ 8 100n 8 100n 10µ 6Vµ 100n 10µ 10µ 100n 6V 6V 6V 6V 5V 990082 - 12 Figure 2. Circuit diagram of the
in „Alternative zu teurem Oszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
teileliste.txt
~0,8mm, fast unbenutzt Länge ~8m | 4 | | 24 | 2 | Lautsprecher 4Ohm / 5 Watt | 1,00 € | | 1 | | 25 | 3 | Lautsprecher 8Ohm/0,5Watt | 0,50 € | nur als Zugabe | 1 | | 26 | 6 | Maschinensteckdosen blau 230V | 1,00 € | | 1 | | 27 | 1 |
in „[V] Aufräumaktion“ · Markt ·
-
PDF
schaltplan.pdf
N.C/212 M LED6 1 C 2 X USB_TXD 6 2A 5Y 11 T E R E Y 7 3Y 5A 10 L S L 1 USB_RXD 8 3A 4Y 9 GPIO2 2 - GND 4A 7 C 1 F GND GND LED PWR MCU PWR J2 HDR-M-2.54_1x2 TOUCH0 1 TOUCH1 2 VDD3V3 B B R3 R5 R7 R9 R11 12K 12K
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Suche OVP Schaltung für ideale Diode“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Gleichrichteschaltung mittels op“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Leistungsaufnahme 220V erkennen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Strommessung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Synchrongleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „Betrag bilden mit OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
Active Filter, Peak Detector, Sample and Hold, pH d Meter, Current Source Y Improved Replacement for TLC272, TLC277 O u p 3V Single Supply Buffer Circuit u t Rail-To-Rail Input Rail-To-Rail Output O p e a t o n a A m TL/H/11713–1 TL/H/11713–2 TL/H/11713–3 p f Connection Diagram Ordering Information e r
in „LED-VU-Meter von ELV - komme beim Nachbar nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Espier_III.pdf
A B C D E +3.3V +3.3V 144 HSWAPEN 70 CCLK +2.5V IO_L1P_HSWAPEN_0 143 SDRAM_A4 2 IO_L1P_CCLK_2 69 M0 122 129 DSEN4 IO_L1N_VREF_0 142 SDRAM_A5 IO_L1N_M0_CMPMISO_2 67 DS_EN3 125 VCCO_0 VCCAUX 20 DSEN3 IO_L2P_0 141 SDRAM_A6 K IO_L2P_CMPCLK_2 66 DS_EN1
-
PDF
4_5stelliges_Digital-Multimeter_DMM_7001.pdf
0,0% v.Meßwert+ 2 Digit) 1200 V =/1200 V„- 1000 V 100 mV ± (0,0% v.Meßwert + 2 Digit) 1200 V =/1200 V„- 200 mV 10 µV ± (0,3% v.Meßwert + 0,3 mV) 300 V = / 750 V„- Wechselspannung 2 V 100 µV ± (0,3% v.Meßwert + 3 mV) 1200
in „DVM ELV 49377“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
schematic-T962.pdf
/AD1.0 30 B R28 10 11 B P0.26/AD0.5 P0.27/AD0.0/CAP0.1/MAT0.1 15 1k C15 P0.30/AD0.3/EINT3/CAP0.0 32 5.0V 62 P1.24/TRACECLK 28 2 7 1 7 U3 AT24C02C XTAL1 P1.25/EXTIN0 24 R 4 R 4 P1.26/RTCK 64 LCD GND Z1 11.0592MHz P1.27/TDO 5 SDA VCC 8 2.54-2x10P
-
Bild
Schaltplan eines EM6-Testgenerators
Einsatz: EM6-Testgenerator Link: Siehe Text! Ub 5V GND IC:A R1 47k R2 100k 3 2 A1 1 SCHMITT-TRIGGER 5V R4 100k 2V R5 68k1 C2 100n Ux 2V IC:C TLC27M2 C1 4n7 R3 390k 6 5 INTEGRATOR 7 2Vpp 270Hz Ua 7.1
in „Sinus PWM erzeugen“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
PDF
LMC6482.pdf
0.65 LMC6482I 0.3 0.5 0.65 LMC6482M 0.3 0.5 0.65 LMC6482AI 14.4 14.7 14.2 LMC6482I 14.4 14.7 14.2 V = 15 V LMC6482M 14.4 14.7 14.2 + V RL= 2k Ω to V /2 LMC6482AI 0.16 0.32 0.45 LMC6482I 0.16 0.32 0.45 LMC6482M 0.16 0.32 0.45 LMC6482AI
in „2s Akku Spannungen der Zellen auslesen mit Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
4_5_stelliges_LED_ELV_DMM7001.pdf
± (0,05% v. Meßwert+ 2 Digit) 1200 V =/1200 V„ - 1000 V 100 mV ± (0,05 % v. Meßwert + 2 Digit) 1200 V =/1200 V„ - 200 mV 10 µV ± (0,3% v. Meßwert+ 0,3 mV) 300 V = / 750 V„ - hselspannung 2 V 100 µV ± (0,3 % v. Meßwert+ 3 mV
in „Projekt DVM 4,5 Digit aus Standardbauteilen mit automatischer Bereichsumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
xone92.pdf
1 4 R52 GN 47/25 2 10K 1% 3 MIX_L G R49 27K Q3 C42 47/25 LD2 27K R51 27K R69 R79 74HCT4053 100P 9 1 SW3A 27K 22K 1% R71 10K 1% 2 R64 +VA J111N CLEANFEED_DC 3 C33 C39 R73 10K 1% 8K21% 4 22N 10K 1% c R VR6A 4 2N2 C46 1 6
in „Fehlersuche in DJ-Mixer (Allen & Heath Xone:92)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Schematic_062C.pdf
DNI USER ANALOG EXTEND 1 1 3 R36 R37 3 IN OUT +5V 0R 0R J4 2 1N4007G AV+ AV+ ISP_MOSI_M64 +C11 N C10 + OUT1 OUT2 1 2 +5V G SHORT THIS JUMPER C8 C9 AV+ 4 U2C 4 3 4 PERMANENTLY AFTER P.S. IN1B+ IN2B+ ISP_nRST_M64 5 6 J3 1 470uF/16V 2 100uF C R38 DNI 10 + R42 R39
in „Oszilloskop erweitern“ · Mikrocontroller und Digitale Elektronik ·