-
PDF
Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
C U 2 U 2 F 1 F 0 G G N N D 2 1 D 2 R1 k 1 k 6 N N D D 2 R D 2 R k 1 k 2 3 6 1 I N P 6 G 6 D U N C T 6 6 5 4 3 2 1 1 P ( 1 / 1 ) A B C D - 5 - A B C D I 1 4 M C 8 P + P + P P 5 O 1 O 1 O 1 O 1 8 T V T V T V T V C D C D C D C D T 1 T 1 T C T C 4 3 2 1 4 C 1 R 1 R 1 R 1 R U 5 k - R k - R k - R k 1 R 1
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
1n4001.pdf
FSM 50/55 A Stoßstrom für eine 50/60 Hz Sinus-Halbwelle 2 2 Rating for fusing – Grenzlastintegral, t < 10 ms TA= 25°C i t 12.5 A s Junction temperature – Sperrschichttemperatur Tj -50...+175°C Storage temperature – Lagerungstemperatur TS -50...+175°C 1 Valid, if leads are kept at ambient temperature
in „Diode 1N4008“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
SEMIKRON_DataSheet_SKR_96_02643980.pdf
, SKR 96 VRSM VRRM IFRMS= 150 A (maximum value for continuous operation) V V IFAV= 95 A (sin. 18c; T = 142 ºC) 200 200 SKN 96/02 SKR 96/02 400 400 SKN 96/04 SKR 96/04 800 600 SKN 96/08 SKR 96/08 1200 1200 SKN 96/12 SKR 96/12 Symbol Condition Values Units FAV sin. 180 ; C = 142 ºC 95 A Stud Diode ; T
in „Dioden identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Firmware_buglist_2.06.3.pdf
DSO5xxxB, BV, BMV and DSO1xxxB) contains error in the definition of ALT trigger. The entries for ALT-O.T.CH1 and ALT.O.T.CH2 are missing : [TRIG-SWAP-CH1-VPOS] 2 [TRIG-SWAP-CH1-OVERTIME-NEG] 1 [TRIG-SWAP-CH1-OVERTIME-TIME] 8 [TRIG-SWAP-CH2-VPOS] 2 [TRIG-SWAP-CH2-OVERTIME-NEG] 1 [TRIG-SWAP-CH2-OVERTIME-TIME
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
dual_fading.c
311, 346, 386, 430, 479, 534, 595, 663, 739, 824, 918, 1023}; // long delays void my_delay(uint16_t milliseconds) { for(; milliseconds>0; milliseconds--) _delay_ms(1); } // 10-Bit PWM with 64 different settings void pwm_10_64_A(uint16_t delay){ int16_t tmp; #if STK500 TCCR1A = 0xC3; // inverted PWM
in „PWM Led fading problem mit Soft-PWM Artikel“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Ferroxcube_4B1.pdf
MBW290 handbook, halfpage 4B1 SYMBOL CONDITIONS VALUE UNIT µs µi 25 °C; ≤10 kHz; 250 ±20% µs ,s' 0.25 mT 2 B 25 °C; 10 kHz; ≈ 360 mT 10 3000 A/m 100 °C; 10 kHz; ≈ 310 3000 A/m µ'' s tanδ/µ i 25 °C; 1 MHz; ≤ 90 × 10 −6 10 0.25 mT 25 °C; 3 MHz; ≤ 300 × 10 −6 0.25 mT 5 ρ DC; 25 °C ≈ 10 Ωm 1 TC ≥ 250 °C 2 3
in „Ringmischer selber wickeln, welches Kernmaterial“ · HF, Funk und Felder ·
-
PDF
ETQ570G2DH6.pdf
02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE TECHNOLOGIES CORPORATION E T Q 5 7 0 G 2 D H 6 3 0-2 T A B L E O F C O N T E N T S NO. I T E M PAGE =============================================================== 1. GENERAL SPECIFICATIONS --------------------------------------
-
PDF
2N5087-D.PDF
(mA) Figure 6. DC Current Gain ) T 1.0 100 L TA= 25°C TA= 25°C IB= 400 mA ( ) PULSE WIDTH = 300 ms E A 350 mA A 0.8 ( 80 DUTY CYCLE ≤ 2.0% L N V I = 1.0 mA 10 mA 50 mA 100 mA E 300 mA 250 mA R0.6 C R 60 E C 200 mA I R E T 150 mA R 0.4
in „rauscharmer NPN min 200v gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Understanding-Diode-Reverse-Recovery-and-Its-Effect-on-Switching-Losses.pdf
t B is defined as the time switching losses and their impact are significant. between the peak of the reverse current and the time For a normal diode, tB is much smaller than tA. where the current falls to zero (or a pre-defined low For a soft recovery diode, tis larger than t . For a B A level). The sum of t And t iB called the reverse given reverse recovery time, t RR (= tA+ t )B the recovery time, RR. equation above shows that the semiconductor The switching power dissipation
in „Warum sind Brushlessmotoren so klein??“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TimerPumpe_S01_CMOS4060.pdf
34k parallel 330k-1,5V R6=2k49, 1,2-25Vo R1=Adj=50k R2=2k49, 1Ao Rcs=0,12R/0,036R@120mV 3Ao E d use T1b or T1r closT1bther 2 B1 R9 Reset IC1 2mA R1 4k7 Solar 18V Adj16,9Vmpp Adj13,8Vout 51uA 1A/3Ao CN3795 PCB4520_15 SD30CRMA Step Down Buck 3,30€ 1 t PDTA143ZT,215 1 GND 1k Taster GND e e 12V 360R 33mA
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
-
PDF
STM8S105.pdf
Conditions Typ Max (1) Unit I Supply current in reset V = 5 V 500 DD(R) (2) DD state μA V DD = 3.3 V 400 tRESETBL Reset pin release to 150 μs vector fetch (1) Data guaranteed by design, not tested in production. (2) Characterized with all I/Os tied tSSV . 10.3.2.7 Current consumption of on-chip peripherals
in „Handbuch STM8S Discovery“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SPLC780D001BC.pdf
oscillation frequency is 250KHz, 1 clock cycle time = 4.0s)frequency. 6.15.2.1. 1/8 Duty, TYPE-B wave400 clocks VPP 1 2 7 8 1 2 7 8 1 2 7 8 1 2 7 8 COM1 V2(V3) VSS 1 Frame 1 Frame ia l l y 1 frame = 4(s) x 400 x 8 = 12800(s) = 12.8ms n t n Frame frequenc12.8(ms) 78.1(Hz) d e O 6.15.2.2. 1/11 Duty, TYPE-B
in „LCD Display initialisieren oder geht das automatisch?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
splc780D.pdf
oscillation frequency is 250KHz, 1 clock cycle time = 4.0s)frequency. 6.15.2.1. 1/8 Duty, TYPE-B wave400 clocks VPP 1 2 7 8 1 2 7 8 1 2 7 8 1 2 7 8 COM1 V2(V3) VSS 1 Frame 1 Frame ia l l y 1 frame = 4(s) x 400 x 8 = 12800(s) = 12.8ms n t n Frame frequenc12.8(ms) 78.1(Hz) d e O 6.15.2.2. 1/11 Duty, TYPE-B
in „2x16 LCD Batron Tabelle?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SPLC780D.pdf
oscillation frequency is 250KHz, 1 clock cycle time = 4.0s)frequency. 6.15.2.1. 1/8 Duty, TYPE-B wave400 clocks VPP 1 2 7 8 1 2 7 8 1 2 7 8 1 2 7 8 COM1 V2(V3) VSS 1 Frame 1 Frame ia l l y 1 frame = 4(s) x 400 x 8 = 12800(s) = 12.8ms n t n Frame frequenc12.8(ms) 78.1(Hz) d e O 6.15.2.2. 1/11 Duty, TYPE-B
in „LCD (HD44780) timing extrem träge“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SPLC780D001BC.pdf
oscillation frequency is 250KHz, 1 clock cycle time = 4.0s)frequency. 6.15.2.1. 1/8 Duty, TYPE-B wave400 clocks VPP 1 2 7 8 1 2 7 8 1 2 7 8 1 2 7 8 COM1 V2(V3) VSS 1 Frame 1 Frame ia l l y 1 frame = 4(s) x 400 x 8 = 12800(s) = 12.8ms n t n Frame frequenc12.8(ms) 78.1(Hz) d e O 6.15.2.2. 1/11 Duty, TYPE-B
in „Bibliothek fuer SPLC780D“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SPLC780D.pdf
oscillation frequency is 250KHz, 1 clock cycle time = 4.0s)frequency. 6.15.2.1. 1/8 Duty, TYPE-B wave400 clocks VPP 1 2 7 8 1 2 7 8 1 2 7 8 1 2 7 8 COM1 V2(V3) VSS 1 Frame 1 Frame ia l l y 1 frame = 4(s) x 400 x 8 = 12800(s) = 12.8ms n t n Frame frequenc12.8(ms) 78.1(Hz) d e O 6.15.2.2. 1/11 Duty, TYPE-B
in „Datenblatt zu HD44780 1602 LCD Modul Display Anzeigen 2X16 Zeichen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
adum1200_1201.pdf
mA, V = Ix IxH Logic Low Output Voltages VOAL, VOBL 0.0 0.1 V IOx 20 μA, V =Ix IxL 0.04 0.1 V IOx 400 μA, V =Ix IxL 0.2 0.4 V IOx 4 mA, V =Ix IxL SWITCHING SPECIFICATIONS ADuM120xAR C L15pF,CMOSsignallevels 2 Minimum Pulse Width PW 1000 ns Maximum Data Rate 3 1 Mbps 4 Propagation Delay tPHL PLH 50 150
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Oszi_Preise__eBay.txt
,7D15 30001445277014.08.06 21:00:00 TEK R7844 400 4 322.97 OK, 7A18,7A18,7B80,7B85 28001832242322.08.06 20:33:00 TEK R7844 400 4 350.00 OK, 7A19,7A24,7A26,7A18,7B53A,7B92A 19002264164422.08.06 21:06:42 TEK 7854 400 4 1062.88 OK, 7A22 7T11 7A13 7B87
in „Oszi Preise bei eBay“ · Offtopic ·
-
PDF
VOSSAmp.pdf
2 7 R89 e h 8 10K 8 10K B X3 R58 0 - R57 470k h 16k 4 O Vorst. Nor 4 l BC107A C33 8 e e C31 k h k T10 5/35 6 0 R67 16 Ohm B e X4 5/35 R70 R 4 W 0,1/630 m ! E 33k 16k 9 1 , O s g R60 R59 k C39 6 L C30 364V uX6 470pF/400V 8 2 0 7 R80 8 32µF-550/600 n 33k 1k5 BC107A 1 R 220k/1,5W h 6 W a o R k S T12 C35
in „Tremolo Effekt durch RC-Schaltung/Oszillatorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
4735676982003210112259.pdf
t 2 6 10 t CKV CKV CPH Clean enable time tDIS2 - 4 - tCPH Horizontal display start tSH - 4 - tCPH/3 Horizontal display DH - 280 - tCPH/3 timing range STV setup time tSUV 400 - - ns STVL,STVR STV hold time t 400 - - ns STVL,STVR HDV STV pulse width tSTV - - 1 tH STVL,STVR Horizontal lines per field tV 256 262 268 tH Vertical display start tSV 10 - tH Vertical display timing range tDV 220 - tH VCOM rising
-
PDF
TFT_Color_Modul.pdf
t 2 6 10 t CKV CKV CPH Clean enable time tDIS2 - 4 - tCPH Horizontal display start tSH - 4 - tCPH/3 Horizontal display DH - 280 - tCPH/3 timing range STV setup time tSUV 400 - - ns STVL,STVR STV hold time t 400 - - ns STVL,STVR HDV STV pulse width tSTV - - 1 tH STVL,STVR Horizontal lines per field tV 256 262 268 tH Vertical display start tSV 10 - tH Vertical display timing range tDV 220 - tH VCOM rising
in „Farb TFT Modul UP018D01 (280 x 220 ) zu verkaufen“ · Markt ·
-
PDF
UP018D01.pdf
t 2 6 10 t CKV CKV CPH Clean enable time tDIS2 - 4 - tCPH Horizontal display start tSH - 4 - tCPH/3 Horizontal display DH - 280 - tCPH/3 timing range STV setup time tSUV 400 - - ns STVL,STVR STV hold time t 400 - - ns STVL,STVR HDV STV pulse width tSTV - - 1 tH STVL,STVR Horizontal lines per field tV 256 262 268 tH Vertical display start tSV 10 - tH Vertical display timing range tDV 220 - tH VCOM rising
-
PDF
Asus_p4p800-e_deluxe.pdf
N/A • • • 256MB ATP AG32L64T8SQC4S SAMSUNG SS K4H560838D-TCC4 • 256MB CENTURY DXV6S8SSCCD3K27C SAMSUNG SS K4H560838D-TCCC • • • 512MB CENTURY DXV2S8SSCCD3K27C SAMSUNG DS K4H560838D-TCCC • • 256MB Kingston KVR400X64C3A/256 hynix
in „passende 2018er PC-Hardware unter Windows XP“ · PC Hard- und Software ·
-
PDF
BAT13003_-_ST13003D-K.pdf
Parameter Value Unit V CES Collector-emitter volBE= 0)V 700 V V CEO Collector-emitter voBtage (I = 0) 400 V V EBO Emitter-base voltCge (IB= 0, I =P0.75 A, t < 10 µsV(BR)EBO V C Collector current 1.5 A IIM Base currentak curPent (t < 5 ms) 0.75 s A IBM Base peak currenP (t < 5 ms) 1.5 c t ( A PTOT Total
in „USB SmartPhone Ladestecker - Reparaturversuch“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Bootloader230.a51
Wizard in Context Menu >>> ; <h> Configuration for CH559 V2.31 Bootloader ; <o> StartAddress <0-0xF400:0x400> ; <i> Startaddress for bootloader originally at 0xF400 StartAddress EQU 0xF400 ; <o> CHANGE_BCD_VER <0=> off ; <1=> on ; <i> use USB BcdVer field for reporting the bootloader version CHANGE_BCD_VER
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PR4403.pdf
.60°C 0.21 0.23 V Quiescent supply current VLS > Voff * Vcc > 850mV 100 µA Vcc = 600mV 50 µA Vcc = 400mV < 10 µA VLS < Von * Vcc > 850mV 8 mA Vcc = 600mV 100 µA Vcc = 400mV < 10 µA Input resistance of LS input series resistor R1 30 kΩ resistor to Gnd R2 400 kΩ Internal reference (bandgapVref 200 mV Efficiency
in „3V Relai Timer“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TIC263_BOU.pdf
case temperature (unless otherwise noted) RATING SYMBOL VALUE UNIT TIC263D 400 TIC263M 600 Repetitive peak off-state voltage (see Note 1) TIC263S VDRM 700 V TIC263N 800 Full-cycle RMS on-state current at (or below) 60°C case temperature (see Note 2) I 25 A T(RMS) Peak on-state
in „Mit welchen Bauteil 230V / 16A über µC regeln?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TIC263_BOU.pdf
case temperature (unless otherwise noted) RATING SYMBOL VALUE UNIT TIC263D 400 TIC263M 600 Repetitive peak off-state voltage (see Note 1) TIC263S VDRM 700 V TIC263N 800 Full-cycle RMS on-state current at (or below) 60°C case temperature (see Note 2) I 25 A T(RMS) Peak on-state
in „Hilfe zum Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
htr_50_to_500-sb_e.pdf
50-SB 50 ± 100 HTR 100-SB 100 ± 200 mounting. ●● Isolated plastic case recognized HTR 200-SB 200 ± 400 according to UL 94-V0. HTR 300-SB 300 ± 600 HTR 400-SB 400 ± 800 Advantages HTR 500-SB 500 ± 1000 V OUT Output voltage (Analog) ± 4 V ●● Low power consumption R Load resistance > 10 kW ●● Split core
in „650A Strom Messen bei Elektroboot“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
dcf-clock.c
; uint8_t stop_second_b = 0; //date uint8_t week_day; uint8_t day; uint8_t month; uint16_t year; //time uint16_t millisecond; uint8_t second; uint8_t minute; uint8_t hour; uint8_t timezone; //Speicherbereich für DCF-Pegel uint8_t dataPC; //Pegel-Auswertung uint16_t counter_low; uint16_t counter_high; uint8_t bit_number; //dcf_date uint8_t dcf_week_day; uint8_t dcf_day; uint8_t dcf_month; uint8_t dcf_year; uint8_t dcf_date_parity
in „Terrariensteuerung: DCF & 1-Wire zugleich?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HX5116_4.3inch.pdf
160CH Single Chip Driver for LTPSAMOLED DATA SHEET Preliminary V03 7.3.10 Serial RGB interface (240RGBx400 resolution) PARAMETER Symbol Min. Typ. Max. Unit DCLK frequency FCPH 28 - - MHz DCLK period TCPH - - 35.6 ns DCLK pulse duty TCWH 40 50 60 % HSYNC period TH - 918 - T CPH HSYNC pulse width TWH 5 90
in „OLED CMEL SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
andilcd_conoled_sheet_de_hx5116.pdf
160CH Single Chip Driver for LTPSAMOLED DATA SHEET Preliminary V03 7.3.10 Serial RGB interface (240RGBx400 resolution) PARAMETER Symbol Min. Typ. Max. Unit DCLK frequency FCPH 28 - - MHz DCLK period TCPH - - 35.6 ns DCLK pulse duty TCWH 40 50 60 % HSYNC period TH - 918 - T CPH HSYNC pulse width TWH 5 90
in „HX 5116 Anschlussbelegung an einem Atmega 644“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TAS5611.pdf
REVISED APRIL 2010 www.ti.com ELECTRICAL CHARACTERISTICS PVDD_X = 32.5V, GVDD_X = 12 V, VDD = 12 V, T (Case Cemperature) = 75°C, f = 400 kHS, unless otherwise specified. PARAMETER TEST CONDITIONS MIN TYP MAX UNIT INTERNAL VOLTAGE REGULATOR AND CURRENT CONSUMPTION VREG Voltage regulator, only used as
in „TAS5611 Layout erfahrung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
circuit-20211212-2041.circuitjs.txt
368 336 432 0 10000 c 208 144 208 208 0 0.00009999999999999999 0 0.001 g 208 208 208 224 0 0 g 192 400 192 416 0 0 t 336 336 368 336 0 1 0 0 100 default t 336 432 368 432 0 -1 0 0 100 default f 544 368 592 368 32 1.5 0.02 z 192 336 192 368 2 default-zener z 192 400 192 368 2 default-zener c 272 368 272 432 0 1e-8 0 0.001 r 432 384 432 448 0 1000 g 432 448 432 464 0 0 g 592 384 592 400 0 0 z 656 384 656 352 2 default-zener z 656 320 656 352 2 default-zener v 752 320 704 320 0 0 40 5 0 0 0.5 r 816 352 816 416 0 0.001 g 816 416 816 432 0 0 w 240 336 336 336 0 w 272 368 272 336 0 w 272
in „Pulsschweisgerät mit Auto Batt Schaltungs Verbesserung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
rim.pdf
Widerstände 1/2 watt 'lM0hm Kondensatoren 1 Kondensator keramlsch 50 pf 250 v 1|lrt MKHKH 0r01 nF 400 Y 2ilI I\{KH O uF 400 Y 1rtll IüKH 0,122 ui' 400 v Elkos 1 EIko Nie<iervolt 50 uF 1Y Röhren 1 Röhre ECC 808 Röhrensockel 1 Novalsockel für gedruckte Schaltung o0 200k ZJ\ CL22n r -'12 .i--f/ ino 100k I uirn Re R12 1L R7 1M 10k 10k =17t, \-)/^, )n o(llltfo-_--- 7_A gJ=QH) r#-E (1 § r Die Leiterplatte 1st mlt d en're- stückungsplan bed.ruckt Stromlauf und Montagebild RIM-Klangregelbausteln KR 100 Nachdruck verboten!
in „Netzteil für Röhrenverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
B1011-20.pdf
t"0,0093 t"0,0093 t"0,0093 2) Relative Umkehrspanne (d hy % t"0,0500 t"0,0170 t"0,0066 t"0,0130 t"0,0080 Linearitätsabweichung (dlin2) % t"0,0500 t"0,0180 t"0,0180 t"0,0150 t" 0,0110 Belastungskriechen
in „Spannungsbereich Wägezelle Z6FD1“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
FM2112.pdf
FM2112全系列IC具备如下特点: (1)高精度电压检测电路 过充电检测电压V CU(n=1,2) 3.600V~4.000V精度 ±25mV 3 过充电释放电压V CR(n=1,2) 3.400V~4.000V精度 ±50mV 过放电检测电压V DL(n=1,2) 1.800V~2.200V精度 ±50mV 过放电释放电压V DR(n=1,2) 1.80V~2.40V 精度 ±50mV 放电过流检测电压 (可选择) 精度 ±15mV D 充电过流检测电压 (可选择) 负载短路检测电压 0.85V (固定) 精度±300mV (2)各延迟时间由内部电路设置(不需外接电容
in „LiFepo4 balancer - China ICs“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
tl074.pdf
signal differential voltage temperature amplification versus free air temperature 100 1000 V = 15V 400 ) CC n 10 E ) 200 T A / 100 N L ( R V N 40 U 1 L T C I A 20 A N F 10 V CC = 15V B 0.1 R L V = 10V T E M 4 O P I A 2 R L=2k Ω I D 0.01 1 -50 -25 0 25 50 75 100 125 -75 -50 -25 0 25 50 75 100 125 TEMPERATURE
in „Nichtinvertierter Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
PTC_ICL_in_housing.pdf
in housing Electrical specifications and ordering codes Type V max Vlink,maxR RR T ref C th τth Circuit Ordering code (typ.) (typical) (typical) diagram V AC V DC % °C J/K s PBT plastic case, preferred types for new designs J213 280 400 33 25 130 1.1 140 2 B59213J0130A020 J215 280
in „Einschaltproblem bei Trafos 50VA <“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Firmware_buglist_2.06.3.pdf
DSO5xxxB, BV, BMV and DSO1xxxB) contains error in the definition of ALT trigger. The entries for ALT-O.T.CH1 and ALT.O.T.CH2 are missing : [TRIG-SWAP-CH1-VPOS] 2 [TRIG-SWAP-CH1-OVERTIME-NEG] 1 [TRIG-SWAP-CH1-OVERTIME-TIME] 8 [TRIG-SWAP-CH2-VPOS] 2 [TRIG-SWAP-CH2-OVERTIME-NEG] 1 [TRIG-SWAP-CH2-OVERTIME-TIME
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Firmware_buglist_2.06.3.pdf
DSO5xxxB, BV, BMV and DSO1xxxB) contains error in the definition of ALT trigger. The entries for ALT-O.T.CH1 and ALT.O.T.CH2 are missing : [TRIG-SWAP-CH1-VPOS] 2 [TRIG-SWAP-CH1-OVERTIME-NEG] 1 [TRIG-SWAP-CH1-OVERTIME-TIME] 8 [TRIG-SWAP-CH2-VPOS] 2 [TRIG-SWAP-CH2-OVERTIME-NEG] 1 [TRIG-SWAP-CH2-OVERTIME-TIME
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
opa381.pdf
AUGUST 2004 − REVISED NOVEMBER 2004 120 500 C = 10pF See Figure 6a C DIODE= 10pF DIODE s )100 m d V 400 n 80 −3dB at 200kHz ( 310 Vrms a s G See Figure 6c o 300 c 60 t See Figure 6a a p e 40 u p O 200 s e See Figure 6b 68 Vrms a 20 r 25 Vrms T e 100 0 n See Figure 6c I See Figure 6b −20 0 100 1k 10k 100k
in „Transimpedanzverstärker - Widerstand & Latenz?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
FXOS8700CQ.pdf
0.96 °C/LSB ODR = 800 Hz, OSR = 2 1.5 ODR = 400 Hz, OSR = 4 1.2 ODR = 200 Hz, OSR = 8 0.85 ODR = 100 Hz, OSR = 16 0.6 Magnetometer output noise NoiseMAG μT-rms ODR = 50 Hz, OSR = 32 0.5 ODR = 12.5 Hz, OSR = 128 0.35 ODR = 6.25 Hz, OSR = 256 0.3 ODR
in „Beschleunigungssensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an3017.pdf
and lumped components such as ( VCE=5V resistors, capacitors and inductors. Its measurement param- T500 n=2P C eters include voltage and current. However, when it comes t400 to model opto electronics components, the SPICE program R f does not possess the capability to evaluate or simulate opto n300
in „LTspice - unterschiedliche Simulationsmodelle“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
cp2108-datasheet-1509353.pdf
(bps) 387,200 (bps) 694,200 (bps) 760,000 (bps) 2 UARTs in operation: Throughput 200,400 (bps) 381,600 (bps) 463,700 (bps) 537,400 (bps) 3 UARTs in operation: Throughput 200,300 (bps) 259,800 (bps) 314,800 (bps) 388,000 (bps) 4 UARTs in operation: Throughput 180,300 (bps) 208,900 (bps)
in „[V] 4St. Silabs 4-fach UART Bridge CP2108-GM (QFN64) (12€)“ · Markt ·
-
PDF
cp2108-datasheet-1509353.pdf
(bps) 387,200 (bps) 694,200 (bps) 760,000 (bps) 2 UARTs in operation: Throughput 200,400 (bps) 381,600 (bps) 463,700 (bps) 537,400 (bps) 3 UARTs in operation: Throughput 200,300 (bps) 259,800 (bps) 314,800 (bps) 388,000 (bps) 4 UARTs in operation: Throughput 180,300 (bps) 208,900 (bps)
in „[V] 3St. Silabs 4-fach UART Bridge CP2108-GM (QFN64)“ · Markt ·
-
PDF
VOSSAmp.pdf
2 7 R89 e h 8 10K 8 10K B X3 R58 0 - R57 470k h 16k 4 O Vorst. Nor 4 l BC107A C33 8 e e C31 k h k T10 5/35 6 0 R67 16 Ohm B e X4 5/35 R70 R 4 W 0,1/630 m ! E 33k 16k 9 1 , O s g R60 R59 k C39 6 L C30 364V uX6 470pF/400V 8 2 0 7 R80 8 32µF-550/600 n 33k 1k5 BC107A 1 R 220k/1,5W h 6 W a o R k S T12 C35
in „Tremolo Effekt durch RC-Schaltung/Oszillatorschaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
KM416C1204C.pdf
VCC 21 22 VSS VCC 22 23 V SS *A10 and A11 are N.C for KM416C/V1204C(5V/3.3V, 1K Ref. product) J : 400mil 42 SOJ T : 400mil 50(44) TSOP II Pin Name Pin Function A0 - A11 Address Inputs (4K Product) A0 - A9 Address Inputs (1K Product) DQ0 - 15 Data In/Out VSS Ground RAS Row Address Strobe UCAS Upper Column
in „Suche DRAM Chips“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SMD_Catalog.pdf
-T Max L SC70-3 Shunt Voltage Ref. (output 2.0480 V / 0.2%) AFB MAX6409BS34-T Max UC4 UCSP-4 Volt. Detect. (3.400 V / Push-Pull, Active-Low) AFC MAX6138CEXR21-T Max L SC70-3 Shunt Voltage Ref. (output 2.0480
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
-
PDF
HCPL7800.pdf
Offset Voltage Test Circuit. Figure 2. Input-Referred Offset Drift vs. Temperature. 1-224 V µ 600 µ 400 – MEAN – MEAN I ± 2 SIGMA F R 400 R ± 2 SIGMA D D 300 E T S S F 200 F 200 O O D D R R R 0 R 100 F F R E T -200 - 0 U U N P – -400 I -100 S – V O d -600 V 4.4 4.6 4.8 5.0 5.2 5.4 5.6 d -2004.4 4.6 4.8
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·