-
PDF
WS2812.pdf
current II VI=VDDV SS —— —— ±1 µA V IH DINSET 0.7VDD —— —— V Input voltage level V D ,SET —— —— 0.3 V V IL IN DD Hysteresis voltage V D ,SET —— 0.35 —— V H IN Switching characteristics(T =-20~+70℃,V =4.5~5.5V,V =0V,unless otherwise specified) A DD SS Prameter Symbol Condition Min Tpy Max Unit Operation frequency Fosc2 —— —— 800 —— KHz Transmission delay tPLZ CL=15pF,DIN→ —— —— 300 ns time DOUT,RL=10KΩ CL=300pF,OUTR/OU Fall time tTHZ —— —— 120 µs TG/OUTB Data transmission F Duty ratio50% 400 —— —— Kbps rate MAX Input capcity CI —— —— —— 15 pF http://www.world-semi.com WS2812 Intelligent
in „WS2812/2811 mit PIC asm.Verzweiflung!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
WS2812preliminary.pdf
current II VI=VDDV SS —— —— ±1 µA V IH DINSET 0.7VDD —— —— V Input voltage level V D ,SET —— —— 0.3 V V IL IN DD Hysteresis voltage V D ,SET —— 0.35 —— V H IN Switching characteristics(T =-20~+70℃,V =4.5~5.5V,V =0V,unless otherwise specified) A DD SS Prameter Symbol Condition Min Tpy Max Unit Operation frequency Fosc2 —— —— 800 —— KHz Transmission delay tPLZ CL=15pF,DIN→ —— —— 300 ns time DOUT,RL=10KΩ CL=300pF,OUTR/OU Fall time tTHZ —— —— 120 µs TG/OUTB Data transmission F Duty ratio50% 400 —— —— Kbps rate MAX Input capcity CI —— —— —— 15 pF http://www.world-semi.com WS2812 Intelligent
in „[Mitbestellung] SMD5050 RGB-LED mit integriertem 8-bit PWM Controller“ · Markt ·
-
PDF
WS2812.pdf
current II VI=VDDV SS —— —— ±1 µA V IH DINSET 0.7VDD —— —— V Input voltage level V D ,SET —— —— 0.3 V V IL IN DD Hysteresis voltage V D ,SET —— 0.35 —— V H IN Switching characteristics(T =-20~+70℃,V =4.5~5.5V,V =0V,unless otherwise specified) A DD SS Prameter Symbol Condition Min Tpy Max Unit Operation frequency Fosc2 —— —— 800 —— KHz Transmission delay tPLZ CL=15pF,DIN→ —— —— 300 ns time DOUT,RL=10KΩ CL=300pF,OUTR/OU Fall time tTHZ —— —— 120 µs TG/OUTB Data transmission F Duty ratio50% 400 —— —— Kbps rate MAX Input capcity CI —— —— —— 15 pF http://www.world-semi.com WS2812 Intelligent
in „Kabelquerschnitt für 5V?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
WS2812preliminary.pdf
current II VI=VDDV SS —— —— ±1 µA V IH DINSET 0.7VDD —— —— V Input voltage level V D ,SET —— —— 0.3 V V IL IN DD Hysteresis voltage V D ,SET —— 0.35 —— V H IN Switching characteristics(T =-20~+70℃,V =4.5~5.5V,V =0V,unless otherwise specified) A DD SS Prameter Symbol Condition Min Tpy Max Unit Operation frequency Fosc2 —— —— 800 —— KHz Transmission delay tPLZ CL=15pF,DIN→ —— —— 300 ns time DOUT,RL=10KΩ CL=300pF,OUTR/OU Fall time tTHZ —— —— 120 µs TG/OUTB Data transmission F Duty ratio50% 400 —— —— Kbps rate MAX Input capcity CI —— —— —— 15 pF http://www.world-semi.com WS2812 Intelligent
in „WS2812 Timing“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP2551.pdf
..................................................................................................+300°C ESD protection on CANH and CANL pins (Note 4) ...................................................................................................6 kV ESD protection on all other pins (Note 4) ....
in „MCP2551 Standby Mode wenn AVR im Power down Modus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
rt9198__rt9198a_richtek_DT_93R.pdf
≦ 0.4V,I = 0mA -- 90 130 μA EN OUT OUT = 200mA -- 170 200 Dropout Voltage (Note 5) VDROP mV OUT = 300mA -- 220 330 V = (V + 1V) to 5.5V, Line Regulation ΔVLINE IN OUT -- -- 0.3 % OUT = 1mA Load Regulation ΔV 1mA < I < 300mA -- -- 0.6 % LOAD OUT RT9198, V EN = GND, Shutdown Shutdown Current SHDN -- 0.01
-
PDF
rt9198__rt9198a_richtek_VR.pdf
≦ 0.4V,I = 0mA -- 90 130 μA EN OUT OUT = 200mA -- 170 200 Dropout Voltage (Note 5) VDROP mV OUT = 300mA -- 220 330 V = (V + 1V) to 5.5V, Line Regulation ΔVLINE IN OUT -- -- 0.3 % OUT = 1mA Load Regulation ΔV 1mA < I < 300mA -- -- 0.6 % LOAD OUT RT9198, V EN = GND, Shutdown Shutdown Current SHDN -- 0.01
-
PDF
PCF8591_ADC.pdf
supply current - 50 mA I ground supply current - 50 mA SS P tot totalpowerdissipation per package - 300 mW P/out power dissipation per - 100 mW output V ESD electrostatic HBM [1]- 3000 V discharge voltage [2] MM - 300 V Ilu latch-up current [3]- 200 mA T amb ambient temperature operating device 40
in „PCF8591 - I2C Protokoll“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TPS3824-33DBVR.pdf
TYP MAX UNIT at VDD VDD = VIT− 0.2 V, DD= VIT–– 0.2 V 6 μs tw Pulse width at MR VDD ≥ VIT− 0.2 V, IL= 0.3 ×DD, VIH= 0.7 × DD 1 μs at WDI VDD ≥ VIT− 0.2 V, IL= 0.3 ×DD, VIH= 0.7 × DD 100 ns 7.8 Switching Characteristics At R = 1 MΩ, C = 50 pF, and T = 25°C, unless otherwise noted. L L J Copyright © 2022
in „Watchdog Timer der beim Ansprechen Ausgangssignal nicht toggelt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
24C64.pdf
......SCL5°C toSerial Clock Soldering temperature of leads (10 seconds)...........................+300°C ESD protection on a............................4 kV.................................≥Input *Notice: Stresses above those listed under “Maximum Ratings” mVyCC +1.8 to 5.5V (24AA64) cause permanent
in „Merkwürdiger 24C64N“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CD4053.pdf
-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300 Wide C CD4053BCM M16A 16-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-012, 0.150 Narrowh n CD4053BCSJ M16D 16-Lead Small Outline Package (SOP), EIAJ TYPE II, 5.3mm Wide n CD4053BCN N16E 16-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300 Wide l Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code. A n l o g © 2000 Fairchild Semiconductor CorporatDS005662 www.fairchildsemi.com C B Connection
-
PDF
Berger-Lahr-D500.pdf
sein,Energievom Schrittmotoraufzunehmen.) Elektronikversorgung Spannung: + 24V (+ 15 %) Strom: max.300 mA Signaleingänge: Statische Kenndaten lnternePull-up-Widerstände,10 kO gegen + 12V \*r H-Pegel: 8 V min 30V max (oderoffen) L-Pegel: -0,5Vmin 2Vmax bei 1,5mA max Dynamische Kenndaten Schrittfrequenz
-
PDF
Berger-Lahr-D500.pdf
sein,Energievom Schrittmotoraufzunehmen.) Elektronikversorgung Spannung: + 24V (+ 15 %) Strom: max.300 mA Signaleingänge: Statische Kenndaten lnternePull-up-Widerstände,10 kO gegen + 12V \*r H-Pegel: 8 V min 30V max (oderoffen) L-Pegel: -0,5Vmin 2Vmax bei 1,5mA max Dynamische Kenndaten Schrittfrequenz
in „Alte Schrittmotorsteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
6N139.pdf
(50% duty cycle, 1 ms P.W.) Each Channel F (pk) 40 mA Peak Transient Input Current - (!"1 µs P.W., 300 pps) I (trans) 1.0 A F Reverse Input Voltage Each Channel V R 5 V Input Power Dissipation Each Channel P D 35 mW DETECTOR Average Output Current Each Channel IO(avg) 60 mA Emitter-Base Reverse Voltage
in „Wechselrichter mit MOSFET Endstufe“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
646978.pdf
Figure 15B. Low Level Output vs. Voltage www.irf.com 7 IR2213( S ) 500 500 ) ) (400 µ400 n n r r C C g300 e300 k k e e l l p200 p200 S S e e f f O100 O100 Max. Max. 0 0 -50 -25 0 25 50 75 100 125 0 200 400 600 800 1000 1200 Temperature (°C) VBBoost Voltage (V) Figure 16A. Offset Supply Current vs. Temperature Figure 16B. Offset Supply Current vs. Voltage 500 500 400 400 ) ) µ µ t t r 300 r300 u u l l p Max. p S 200 S200 B B Max. V Typ. V 100 100 Typ. 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature (°C) V BSFloating Supply Voltage (V) Figure 17A. V BS Supply Current vs.
in „Wer kann mir was zu diesem Bauteil sagen ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Under_the_Hood_of_Flyback_SMPS_Designes_slup261__TI.pdf
MOSFET. If precautions increases at a rate defined as arenottaken,theMOSFETswitchcanbedestroyed m = ∆IL = Vi , (1) by voltage breakdown. Fig. 3 shows a generic 1 D T L clamp circuit example. Later in SectionVI, several S clamp circuits are presented and explained. where V ii the input voltage, L is the
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
an27701.pdf
operate bipolar Hall switch in standard “U” over temperature is 300 G + 36 G = 336 G per south pole at +25°C. package: Follow the same procedure for the north pole requirements. If the maximum operate point +200 G from -20° to + 85°C, magnet will supply +300 G per south
in „TLE4935L oder TLE4905L Magnetschalter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
an27701.pdf
operate bipolar Hall switch in standard “U” over temperature is 300 G + 36 G = 336 G per south pole at +25°C. package: Follow the same procedure for the north pole requirements. If the maximum operate point +200 G from -20° to + 85°C, magnet will supply +300 G per south
in „Schall oder Viberationaufnehmer“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an27701.pdf
operate bipolar Hall switch in standard “U” over temperature is 300 G + 36 G = 336 G per south pole at +25°C. package: Follow the same procedure for the north pole requirements. If the maximum operate point +200 G from -20° to + 85°C, magnet will supply +300 G per south
in „Drehzahlmessung mit Atmega32 über Spannungsteiler an Lichtmaschine“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an27701.pdf
operate bipolar Hall switch in standard “U” over temperature is 300 G + 36 G = 336 G per south pole at +25°C. package: Follow the same procedure for the north pole requirements. If the maximum operate point +200 G from -20° to + 85°C, magnet will supply +300 G per south
in „Drehzahlmessung mit induktivem Näherungsschalter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an27701.pdf
operate bipolar Hall switch in standard “U” over temperature is 300 G + 36 G = 336 G per south pole at +25°C. package: Follow the same procedure for the north pole requirements. If the maximum operate point +200 G from -20° to + 85°C, magnet will supply +300 G per south
in „Hallsensor als Schalter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an27701.pdf
operate bipolar Hall switch in standard “U” over temperature is 300 G + 36 G = 336 G per south pole at +25°C. package: Follow the same procedure for the north pole requirements. If the maximum operate point +200 G from -20° to + 85°C, magnet will supply +300 G per south
in „Magnetfeld erfassen mit Hall Sensor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
an27701.pdf
operate bipolar Hall switch in standard “U” over temperature is 300 G + 36 G = 336 G per south pole at +25°C. package: Follow the same procedure for the north pole requirements. If the maximum operate point +200 G from -20° to + 85°C, magnet will supply +300 G per south
in „Brauche Geberrad für Drehwinkelüberwachung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCA8574-rev02.pdf
HIGH period of the SCL clock 0.6 - - s f fall time of both SDA and SCL signals [3][4]20 + 0.1C b[5] - 300 ns [5] r rise time of both SDA and SCL signals 20 + 0.1C b - 300 ns t pulse width of spikes that must be suppressed - - 50 ns SP [6] by the input filter Port timing; C L≤ 100 pF (see Figure 8 and Figure
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCF8591_6.pdf
MBL837 MBL838 500 500 D/A outputk, halfpage D/A outputk, halfpage impedance ( ) impedance ( ) 400 400 300 300 200 200 100 100 0 0 00 02 04 06 08 0A BO CO DO EO FO FF hex input code hex input code a. Output impedance near negative power rail; b. Output impedance near positive power rail; Tamb = +27 °C. Tamb
in „Welchen DAC empfehlt Ihr ? sollte bei Reichelt kaufbar sein“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RTC4553AP.pdf
Hz (backup — 1.0 3.0 operation) CS0 = H, CS1 = L VOH IH = −400 A VDD − — — Output voltage 0.4 V VOL IL = 1.6 mA — — 0.4 Output leak IZH VOUT = 5.5 V −2.0 — 2.0 current µA IZL V OUT= 0 V −2.0 — 2.0 Input voltage VIH — 4/5 VDD — — V VIL — — — 1/5 VDD IIH V IN= 5.5 V −2.0 — 2.0 Input current µA IL V I= 0
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RTC4553AP.pdf
Hz (backup — 1.0 3.0 operation) CS0 = H, CS1 = L VOH IH = −400 A VDD − — — Output voltage 0.4 V VOL IL = 1.6 mA — — 0.4 Output leak IZH VOUT = 5.5 V −2.0 — 2.0 current µA IZL V OUT= 0 V −2.0 — 2.0 Input voltage VIH — 4/5 VDD — — V VIL — — — 1/5 VDD IIH V IN= 5.5 V −2.0 — 2.0 Input current µA IL V I= 0
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RTC4553AP.pdf
Hz (backup — 1.0 3.0 operation) CS0 = H, CS1 = L VOH IH = −400 A VDD − — — Output voltage 0.4 V VOL IL = 1.6 mA — — 0.4 Output leak IZH VOUT = 5.5 V −2.0 — 2.0 current µA IZL V OUT= 0 V −2.0 — 2.0 Input voltage VIH — 4/5 VDD — — V VIL — — — 1/5 VDD IIH V IN= 5.5 V −2.0 — 2.0 Input current µA IL V I= 0
in „Eine RTC R4553A am Arduino“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CD4528.pdf
JEDEC MS-012, 0.150 Narrow CD4528BCN N16E 16-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300 Wide Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code. Connection Diagram Truth Table Inputs Outputs Clear A B Q Q L X X L H X H X L H X X L L
in „Einschaltverzögerung mit geringer Stromaufnahme“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
1N5283_1_1N5314_1-3442128.pdf
0.33 0.297 0.363 6.600 1.350 1.00 1N5288 0.39 0.351 0.429 4.100 1.000 1.05 1N5289 0.43 0.387 0.473 3.300 0.870 1.05 1N5290 0.47 0.423 0.517 2.700 0.750 1.05 1N5291 0.56 0.504 0.616 1.900 0.560 1.10 1N5292 0.62 0.558 0.682 1.550 0.470 1.13 1N5293 0.68 0.612 0.748 1.350 0.400 1.15 1N5294 0.75 0.675 0.825
-
PDF
lm3916.pdf
−3, −5 dB −0.5 +0.5 dB IN VIN = −7, −10, −20 dB −1 +1 dB VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤ 4 mA, + 1.2 1.28 1.34 V V = VLED = 5Vg Line Regulation 3V ≤ V ≤ 18V 0.01 0.03 %/V Load Regulation 0.1 mA ≤ IL(REF)≤ 4 mA, V+ = V = 5V 0.4 2 % LED Output Voltage Change with Temperature 0˚C ≤ TA
in „Eingangstufe LCD Stereo VU Meter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ILD6150.pdf
of I versus V and number of LEDs LED S LED S 5 0.730 4 3 0.720 ] 2 0.710 % ] [e 1 [ t E 0.700 r 0 IL D-1 0.690 IL -2 0.680 -3 -4 0.670 -5 0 5 10 15 20 25 30 35 40 45 50 55 60 0 5 10 15 20 25 30 35 40 45 50 55 60 VS[V] VS[V] 1 LED 4 LEDs 7 LEDs 10 LEDs 1 LED 4 LEDs 7 LEDs 10 LEDs 2 LEDs 5 LEDs 8 LEDs
in „Kondensatorgröße für 5V LED-Treiber“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
DeviceLink.txt
alternative operating controls. DeviceLink utilizes the UDP protocol to transfer the data. In this network, IL2 plays a part of the server. The external application sends a query packet, in reply, IL2 sends back one (or several) packets containing the query result. Proposing using the protocol within a single
in „Teileliste Cockpitbau“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ltn154x3-l06.pdf
Measuring equipment : TOPCON BM-5A and PR-650 * Ta = 25 ± 2 °C, VDD=3.3V, fv= 60Hz, fDCLK= 68.9MHz, IL= 6.0 mA Item Symbol Condition Min. Typ. Max Unit Note Contrast Ratio CR 300 400 - - (1), (2), (5) (5 Points) Response Time at Ta T RT - 25 35 msec (1), (3) ( Rising + Falling ) Average Luminance L=6.0mA
in „BeagleBoard LVDS Transmitter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CD4538.pdf
1.5 - - 1.5 - 1.5 - V Voltage 4.5 3.15 - - 3.15 - 3.15 - V 6 4.2 - - 4.2 - 4.2 - V Low Level Input V IL - - 2 - - 0.5 - 0.5 - 0.5 V Voltage 4.5 - - 1.35 - 1.35 - 1.35 V 6 - - 1.8 - 1.8 - 1.8 V High Level Output V V or V -0.02 2 1.9 - - 1.9 - 1.9 - V OH IH IL Voltage -0.02 4.5 4.4 - - 4.4 - 4.4 - V CMOS
in „Unterschied CD4528 zu CD4538 ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
22070a-53890.pdf
MCP1824/MCP1824S 300 mA, Low Voltage, Low Quiescent Current LDO Regulator Features Description • 300 mA Output Current Capability The MCP1824/MCP1824S is a 300 mA Low Dropout Input Operating Voltage Range: 2.1V to 6.0V
in „[V] 50St.LowNoise Microchip LDO MCP1824T 3,3V/300mA SOT223-5 mit Shutdown“ · Markt ·
-
PDF
155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
3/5.5 Vmin to Vmax IDD (AIDDPlus DIDD) Excluding Load Currents Normal Mode 12 12 mA max VIH= V DD, IL= DGND System Standby (SSTBY) Mode 250 250 A V = V , V = DGND IH DD IL Power-Down (PD) Mode @ +25°C 0.8 0.8 A max VIH= V DD, IL= DGND T –T 1.5 1.5 A max MIN MAX Power Dissipation Excluding Power Dissipated
in „DAC AD7808 wie register setzen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
3/5.5 Vmin to Vmax IDD (AIDDPlus DIDD) Excluding Load Currents Normal Mode 12 12 mA max VIH= V DD, IL= DGND System Standby (SSTBY) Mode 250 250 A V = V , V = DGND IH DD IL Power-Down (PD) Mode @ +25°C 0.8 0.8 A max VIH= V DD, IL= DGND T –T 1.5 1.5 A max MIN MAX Power Dissipation Excluding Power Dissipated
in „DAC AD7808 Datenübertragung mit ATMega16 klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Si_4322.pdf
threshold POR SR V slew rate for proper POR generation 0.1 V/ms Vdd dd V Digital input low level 0.3*V V il dd V Digital input high level 0.7*V V ih dd I Digital input current V = 0 V -1 1 µA il il ih Digital input current Vih V ddV dd3.8 V -1 1 µA Vol Digital output low level ol= 2 mA 0.4 V Voh Digital output
in „RFM01 NIRQ immer high“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CAN_BUS.pdf
-bit data channel is shown above. If data is transferred each rising clock edge, and clock rate is 300 MHz, then the data transfer rate (bandwidth) in bytes/sec is: 2 Bytes/clock period = 2 /(1/300e06)s = 2 * 300e06/s = 600e06/s Definition: Serial Data Transfer Serial IO – data sent one bit at a time
in „CAN mir das einer mal erklären?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ws2811.pdf
—— mA Input current II VI=VDDV SS —— —— ±1 µA V IH D INET 0.7VDD —— —— V Input voltage level —— V IL D INET —— 0.3 VDD V Hysteresis voltage V D ,SET —— 0.35 —— V H IN Switching characteristics(A =-20~+70℃,V =4DD~5.5V,V =0V,SSless otherwise specified) Prameter Symbol Condition Min Tpy Max Unit Operation Fosc1 —— —— 400 —— KHz frequency Fosc2 —— —— 800 —— KHz Transmission tPLZ CL=15pF,DIN→ —— —— 300 ns delay time DOUT,RL=10KΩ CL=300pF,OUTR/ Fall time tTHZ OUTG/OUTB —— —— 120 µs Data transmission rate F MAX Duty ratio50% 400 —— —— Kbps Input capcity CI —— —— —— 15 pF Low Speed mode time T0H 0 code
in „Touch bauen, suche günstigere alternativen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ws2811.pdf
—— mA Input current II VI=VDDV SS —— —— ±1 µA V IH D INET 0.7VDD —— —— V Input voltage level —— V IL D INET —— 0.3 VDD V Hysteresis voltage V D ,SET —— 0.35 —— V H IN Switching characteristics(A =-20~+70℃,V =4DD~5.5V,V =0V,SSless otherwise specified) Prameter Symbol Condition Min Tpy Max Unit Operation Fosc1 —— —— 400 —— KHz frequency Fosc2 —— —— 800 —— KHz Transmission tPLZ CL=15pF,DIN→ —— —— 300 ns delay time DOUT,RL=10KΩ CL=300pF,OUTR/ Fall time tTHZ OUTG/OUTB —— —— 120 µs Data transmission rate F MAX Duty ratio50% 400 —— —— Kbps Input capcity CI —— —— —— 15 pF Low Speed mode time T0H 0 code
in „WS2811 zu hoher Ruhestrom?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Panasonic_JD_700_800_Series_Service_Manual_1_.pdf
D51 TVSBB4A Diode R ectifier I L141 TLT047-999 Coil Peaking coil L403 TLH80716 Coil Horiz. width co il L404 TLH80608 Coil H oriz.lin. co il 1405 TLP408 Coil Choke co il IA06 Tlli80904 Coil Dramic focus coil L430 TLH80410 Trans Horiz. drive trans R445 TLP408 Coil Choke co il T40l TLF80838 Trans Fly back trans C143 ECKDIHlO2KB2 Ceramic 1,00OPF 50V I C145 ECEAlJSlOD Electorolytic 10ilF 63V C16l ECEAlCSlO0 Electorolytic 10ilF l6V C302 ECQM05l03JZ Polyester O.OlIlF 50V I C303 ECQM05472JZ Polyester 4,700PF 50V C304 ECSZ35EFR33V Tantal O.331lF 35V C305 ECSZ16EF4R7N Tantal 4.71lF l6V C3o
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
datasheetarchive--2.pdf
6 When LCM is operated at 5°C, the life time of CFL will be reduced. Need to make sure of value of IL and characteristics of inverter. Also the response time at 5°Cwill be slower. Displays, Sh. Hitachi, Ltd. Date June 29, '99 No. 3284PS 2704 - SX21V001-Z4 - 3 Page 4-1/1 5. ELECTRICAL CHARACTERISTICS
in „Hitachi SX21V001-Z4 mir Epson S1D13806“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
E44.pdf
Insertion tool Diode ~ ~ Diode mounting "']7 "l"- + "'~,",.216 Sheet metal Sealed body 1<:lF==f==f":Il (AI or Fe) (AI or Cu) 1 ~.4961+ .0020 - .0004 f.4961+ .0020 - .0004 Type Ordering Code Repetitive peak Surge peak reverse reversevoltageVRRM voltage VRRM SSIE4360 C66047·A1066·A4 1100V 1100V SSIE4383
in „Diodenidentifizierung, Pressfit ~1983 von Siemens“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
WS2812D-F8_datasheet.pdf
15 15.5 mA Input current II VI=VDDV SS —— —— ±1 µA V IH DIN,ET 0.7VDD —— —— V Input voltage level V IL DIN,ET —— —— 0.3 DD V Hysteresis voltage V D SET —— 0.35 —— V H IN, Switching Characteristics(T =-20~+70℃, V =4.5~5.5V, V =0V, unless otherwise specified) A DD SS Parameter Symbol Condition Min Tpy Max
in „WS2812 vs PL9823 vs APA106 und sonstige adressierbare RGB“ · Offtopic ·
-
PDF
Si4320.pdf
detect threshold Programmable in 0.1 V steps 2.25 5.35 V Vlba Low battery detection accuracy +/-3 % V il Digital input low level 0.3*Vdd V Vih Digital input high level 0.7*V dd V il Digital input current V il0 V -1 1 µA Iih Digital input current V ihV ,dd =dd.4 V -1 1 µA Vol Digital output low level Iol
in „RF01 und RF02 433 MHz Funkmodul“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L6203.pdf
ISD= 1.2A L6202 EN = L 0.9 (**) V ISD= 3A L6201PS/03 EN = 1.35(**) V L rr Reverse Recovery Time dif 300 ns = 25 A/ s dt IF= 1A L6201 IF= 1.2A L6202 I = 3A L6203 F fr Forward Recovery Time 200 ns LOGIC LEVELS V IN LVEN L Input Low Voltage – 0.3 0.8 V VIN H VEN H Input High Voltage 2 7 V IIN LIEN L Input
in „Schrittmotorsteuerung verbessern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
cd00000089-1795323.pdf
ISD= 1.2A L6202 EN = L 0.9 (**) V ISD= 3A L6201PS/03 EN = 1.35(**) V L rr Reverse Recovery Time dif 300 ns = 25 A/ s dt IF= 1A L6201 IF= 1.2A L6202 I = 3A L6203 F fr Forward Recovery Time 200 ns LOGIC LEVELS V IN LVEN L Input Low Voltage – 0.3 0.8 V VIN H VEN H Input High Voltage 2 7 V IIN LIEN L Input
in „[V] Motortreiber 2x L6203 Multivatt11 und 5x Siemens TLE4205“ · Markt ·
-
PDF
cd00000089-1795323.pdf
ISD= 1.2A L6202 EN = L 0.9 (**) V ISD= 3A L6201PS/03 EN = 1.35(**) V L rr Reverse Recovery Time dif 300 ns = 25 A/ s dt IF= 1A L6201 IF= 1.2A L6202 I = 3A L6203 F fr Forward Recovery Time 200 ns LOGIC LEVELS V IN LVEN L Input Low Voltage – 0.3 0.8 V VIN H VEN H Input High Voltage 2 7 V IIN LIEN L Input
in „[V] 2St. DMOS Full Bridge L6203 Multiwatt 11 Gehäuse“ · Markt ·