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KD035HVFMD057_SPEC_V1.2.pdf
TECHNOLOGY CO.,LTD 4. LCD Optical Characteristics 4.1 Optical specification Item Symbol Condition Min. Typ. Max. Unit. Note Contrast Ratio CR -- 500 -- NOTE2 Response Rising TR+ F -- 35 50 msec NOTE4 time Falling Uniformity S(%) -- 70 -- % NOTE1 W X 0.289 0.329 0.369 White W Θ=0 0.333 0.373 0.413 Y Normal viewing
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PDF
Weidezaun_S03_4093.pdf
LG3369-EH gruen 2,2V 2mA 67S4686 0,08€/100 1181007, LY3369-EH gelb 2,2V 2mA 67S5321 0,08€/100 LED t - max18V R6 GND 11,1V 3s 3,7V 2,5-4,2V 2600mAh SonyVTC5 230Vac 6Vac 2,5A EI57x25 87/60x27x50 2xBLD4x73mm 13,81€ u A war 10M R2 war 22k 3msR2 rd3mmR (11k)ZPD3v3 1000u 16V D8x16mm LowESR R3=220R@13,8V 6Vac
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
Siemens_NTC_Databook.pdf
spans and minimum distances have to be r observed: c Dip soldering Iron soldering i o Bath temperature max. 260 °C max. 360 °C s Soldering time max. 4 s max. 2 s Distance from thermistor min. 6 mm min. 6 mm Under more severe soldering conditions the resistance may change. 1.2 Leadless NTC thermistors In
in „Hellblauer Temperatursensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm324_DeepL_de.pdf
angegeben)1) LM324B, LM324BA, LM324xx, LM224xx, LM2902 LM2902B, LM2902BA LM2902xxx, LM124x UNIT MIN MAX MIN MAX MIN MAX Versorgungsspannung, V CC(2) 40 26 32 V Differenzeingangsspannung, VID3) ±40 ±26 ±32 V Eingangsspannung, VI(beide Eingänge) -0.3 40 -0.3 26 -0.3 32 V Dauer des Ausgangskurzschlusses
in „gutes Übersetzungsprogramm für Datenblätter gesucht“ · Offtopic ·
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PDF
TC4426.pdf
mil (CERDIP) E1 2 n 1 D E A2 A c L eB B1 A1 B p Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .100 2.54 Top to Seating Plane A .160 .180 .200 4.06 4.57 5.08 Standoff § A1 .020 .030 .040 0.51 0.77 1.02 Shoulder to Shoulder Width E .290 .305 .320 7.37 7.75
in „Mosfet Treiber TC4426 + IRF IRF3205S (Ersatz gesucht)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD620.pdf
Amp IA Designs RG 1 8 RG Available in 8-Lead DIP and SOIC Packaging –IN 2 7 +VS Low Power, 1.3 mA max Supply Current +IN 3 6 OUTPUT EXCELLENT DC PERFORMANCE (“B GRADE”) –VS 4 AD620 5 REF 50 mV max, Input Offset Voltage TOP VIEW 0.6 mV/8C max, Input Offset Drift 1.0 nA max, Input Bias Current 100 dB
in „Probleme mit Instrumentenverstärker AD620“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TM035PDW01_P_V1.0.pdf
5.1.4Interface Timing Parameters Normal Write Mode Signal Symbol Parameter Spec. Description Min. Max. Unit AST Address setup time 10 RS t Address hold time(Write/Read) 10 - ns - AHT tCS Chip select setup time (Write) 20 Chip select setup time (Read ) CS RCS Chip select wait 20 - ns - CSF time(Write
in „Tianma 3,5" TFT Display ansteuern mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
life.lst
00 00 [14] 111 ld ix,#0 0013 DD 39 [15] 112 add ix,sp 0015 F5 [11] 113 push af 114 ;life.c:63: k = MAX_ZELLEN; 0016 21 F4 01 [10] 115 ld hl,#0x01F4 0019 E3 [19] 116 ex (sp), hl 117 ;life.c:64: do { 001A 118 00101$: 119 ;life.c:65: x = prng(MAX_X); 001A 21 4F 00 [10] 120 ld hl,#0x004F 001D E5 [11] 121
in „Conways Game of Live zu langsam auf Z80“ · Softwareentwicklung ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „Polynom für PTC KTY84-110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEMP1996.PDF
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 227 Philips Semiconductors Temperature
in „Temperatur Sensor KTY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „Spezifikation Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „KTY81-110 ADC WERT -> Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KTY-Philips.pdf
0.2 0.05 3.7 0.1 1.65 0.1 0.6 0.1 0.6 0.1 1 0.04 0.3 O 4.5 0.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 2.5 max1) (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 2000 Sep 06 5 Philips Semiconductors Silicon
in „Zwischenwerte vom KTY82-210 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
3.70.1 0.05 1.65 0.1 0.6 0.1 0.6 0.1 1 0.4 0.3 0.04 O 4.50.1 2.54 2 0.61 1.8 0.1 MLC325 0.05 (1) 2.5 max (1) Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. Fig.6 Outline of the KTY81 (SOD70). 1996 Dec 05 5 Philips Semiconductors Temperature
in „Atmega168 ADC - Schwankungen/Beeinflussungen vom Nachbarpin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
reni_v0.67.c
short buff[BUFFLEN0x81]; } g_sInterrupt0x81[MAX_STREAM0x81]; int g_iInterrupt0x81_index_write; // active stream for writing int g_iInterrupt0x81_index_read; // active stream for reading int g_bInterrupt; // switch for interrupt #define MAX_STREAM0x82
in „Schreiben eines USB-Treibers mit libusb-win32“ · Softwareentwicklung ·
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PDF
lm324_Original.pdf
otherwise noted) LM324B, LM324BA, LM324xx, LM224xx, LM2902B, LM2902BA LM2902 LM2902xxx, LM124x UNIT MIN MAX MIN MAX MIN MAX Supply voltage,CC(2) 40 26 32 V (3) Differential input voltIDe, V ±40 ±26 ±32 V Input voltage, V (either input) –0.3 40 –0.3 26 –0.3 32 V I Duration of output short circuit (one amplifier
in „gutes Übersetzungsprogramm für Datenblätter gesucht“ · Offtopic ·
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PDF
MSi001_R3v2.0.pdf
= 2.RF= 100 MHz,IF = 450 kHBW= 300 kHz, unless otherwise stated Note Parameter Conditions Min Typ Max Unit RF Input Frequency 64 108 MHz Input resistance Max / Min Gain 90 Input return loss 50 source 12 dB SSB Noise figure Max Gain 7.2 dB FIF 1.62 MHz 8.6 dB 1 Max Gain 106 dB Max Voltage Gain FIF
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Datei
DDS.vhd
in integer:=0; DOUT : out std_logic_vector (31 downto 0); DIN_CNT_MAX: in integer:=0 ); end DDS; -------------------------------------------------- Architecture BEHAVIOUR of DDS is -------------------------------------------------- signal RESULT : signed (31 downto 0)
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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PDF
AN559-1.pdf
< I < 0.1 Ib 1 ±1.5% ±2.5% be adapted to suit specific regional requirements, e.g., in 0.1 Ib< I < MAX 1 ±1.0% ±2.0% theUnitedStatespowerisusuallydistributedtoresidential 0.1 Ib < I < 0.2 Ib 0.5 Lag ±1.5% ±2.5% customers as single-phase, three-wire. 0.8 Lead ±1.5% 0.2 Ib< I < MAX 0.5 Lag ±1.0% ±2.0%
in „Wirkleistungsmessung am Stromnetz“ · Mikrocontroller und Digitale Elektronik ·
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s-cu20049-uw2j_e03.pdf
D0~D7 Valid Data 10.2 CPU bus read timing (Parallel interface i80 type) RS Min. 5ns Min. 0ns Min. 333ns /RD Min. 130ns Min. 190ns Max. 160ns Min. 5ns D0~D7 Valid Data 17 CU20049-UW2J 10.3 CPU bus write timing (Parallel interface M68 type) RS Min. 20ns Min. 10ns Min. 500ns E Min. 230ns Min. 230ns R/W
in „[V] VFD, 4x20, CU20049-UW2J von Noritake itron“ · Markt ·
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PDF
FL5150-D.pdf
Figur0 1 to Figure 5. A =25°C,SHUNT5 mA, and phase=60 Hz. — Symbol Parameter Conditions Min. Typ. Max. Unit G FL5150/60 Electrical Parameters (T =25°C, I =5 mA, unless otherwise specified) B A shunt T Power Supply Shunt Regulator VS Voltage VS to GND 16 17 18 V n d VS to GND, Rising Enable 9.2 9.5 9.8
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LabVIEW_-_USB-6800_-_1.pdf
Geräte und Schnittstellen´, so erscheint eine Auflistung der an ihren Rechner angeschlossenen und vom MAX erkannten Geräte bzw. Komponenten, Abb.2.1.2: [ Von MAX erkann- te Geräte und Komponenten Abb.2.1.2: Die vom MAX erkannten Geräte und Komponenten Alle diese vom MAX erkannten Einheiten können Sie dann
in „LabVIEW - USB6008 - Ohmmeter, Thermometer (KTY81), Oszilloskop“ · Softwareentwicklung ·
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Datei
PCM_master.vhd
is generic (clock_frequency: integer:= 49152000; -- Hz : here enter main clock frequency LRCK_CNT_MAX: integer:= 64; -- LRCK_CNT_MAX represents the divider max value referring to LRCK_CNT for generation of LRCK as urgently needed by PCM5142 --spi_clock_frequency: integer:= 3125000; -- Hertz : here enter spi clock frequency length_bits : integer := 16; DIN_CNT_MAX: integer:= 64 -- for generation of -2^32-1 value (test purposes) ); port ( -- this device's ports CLK : in std_logic; -- main clock the same as SCK for PCM5142 BCK_OUT : out std_logic; LRCK_OUT : out
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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PDF
Datasheet_LT3433.pdf
converter output: OUT = Grounded switch drive currents I VOUT SW (in A/A) Bridged Operation: IOUT(MAX) = ISW • [1 – DC • (1 + BST+ OUT)] – BIAS VF1 Switch node catch diode forward voltage VF2 Pass diode forward voltage Buck Operation: OUT(MAX) = ISW • (1 – DC • BST) – I VIN = VINuiescent input current
in „Burst Mode Lt3433“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
24lc32a.pdf
supply with operation down to 2.5V PDIP - Maximum write current 3 mA at 6.0V - Standby current 1 A max at 2.5V 2 A0 1 8 Vcc • 2-wire serial interface bus,compatible 2 • 100 kHz (2.5V) and 400 kHz (5V) compatibility A1 2 L 7 WP • Self-timed ERASE and WRITE cycles 3 • Power on/off data protection circuitry
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4A-AT-Espressif_AT_Instruction_Set_020.pdf
AT+ CWSAP= Param description: <ssid>,<pwd>,<chl>, <ssid> string, ESP8266 softAP’ SSID <pwd> string, MAX: 64 bytes <chl> channel id <ecn> < ecn >0 OPEN 2 WPA_PSK 3 WPA2_PSK 4 WPA_WPA2_PSK 5.2.6AT+CWLIF – IP of stations AT+ CWLIF– ip of stations which are connected to ESP8266 softAP Type :execute Response
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dogs102doku.pdf
CD_INACTIVE() { PORTC_DIRSET=PIN0_bm; PORTC_OUTCLR=PIN0_bm; } 60 61 62 #define DELAY_STABILIZE 10 63 #define MAX_CONTRAST 63 64 #define ASCII_FONTARRAY_SPACE_OFFSET 32 65 //#define F_CPU 8000000 66 67 68 //***************************************************************************** 69 // global variables 70 /
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KEM_C1003_C0G_SMD.pdf
Dimensions Metric will govern Constant Dimensions — Millimeters (Inches) R Ref. Tape Size D E P P T Max G Min 0 1 0 2 1 Note 2 1.5 +0.10-0.0 1.75 ±0.10 4.0 ±0.10 2.0 ±0.05 0.10 0.75 25 8mm (0.059 +0.004, -0.0) (0.069 ±0.004) (0.157 ±0.004) (0.079 ±0.002) (.004) Max. (.030) (.984) Variable Dimensions — Millimeters (Inches) Tape Size Pitch E2 Min F P 1 T Max W Max A 0 0 2.0 ± 0.05 8.3 8mm Half (2mm) 6.25 3.5 ± 0.05 (0.079 ± 0.002) 1.1 (0.327) Note 5 (0.246) (0.138 ± 0.002) 4.0 ± 0.10 (0.098) 8.3 8mm Single (4mm) (0.157 ± 0.004) (0.327) 1. The cavity defined
in „Quarz Dimensionierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UV1316.pdf
mounting tags (ground) LIMITING VALUES Environmental conditions SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Non-operational conditions Tamb ambient temperature −25 − +85 °C RH relative humidity − − 100 % gB bump acceleration 25 g − − 245 m/s2 g shock acceleration 50 g − − 490 m/s2 S vibration amplitude
in „C-Box 2 Platine von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UV1316.pdf
mounting tags (ground) LIMITING VALUES Environmental conditions SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Non-operational conditions Tamb ambient temperature −25 − +85 °C RH relative humidity − − 100 % gB bump acceleration 25 g − − 245 m/s2 g shock acceleration 50 g − − 490 m/s2 S vibration amplitude
in „TV-PLL Tuner Philips FI1216 MK2/1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAN_Bit_Timing.pdf
cause the bit time to be lengthened or shortened. dominant edges. This implies that there can be a max- imum of ten bits between resynchronization due to bit Synchronization Rules: stuffing (Figure 6). 1. Only recessive-to-dominant edges will be used The oscillator tolerance between the slowest node
in „Infos zum CAN Bit-Timing gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tm035pdh03_v1.0.pdf
29 SHANGHAI TIANMA MICRO-ELECTRONICS TM035PDH03 V1.0 4.2 Backlight Unit Ta=25℃ Item Symbol MIN TYP MAX Unit Remark Forward Current F -- 20 -- mA Forward Voltage V F -- 3.2 -- V Backlight Power W BL -- 384 -- mW Consumption Table 4.2 backlight unit electrical characteristics Note 1: The figure below shows
in „Tianma 3,5" TFT Display ansteuern mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
must not exceed 3. Table 2 ELECTRICAL CHARACTERISTICS Parameter Symbol Values Units Notes Min. Typ. Max. MODULE: Power Supply Input Voltage VDD 3.0 3.3 3.6 Vdc Power Supply Input Current IDD 0.270 0.300 0.330 A 1 Ripple/Noise - - 50 - mV Logic Input Level, High V IH 2.0 - VDD +0.3 Vdc 2 Logic Input Level
in „HDMI/CV zu LVDS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZLDO1117.pdf
Electrical Characteristics (@T A +25°C, unless otherwise specified.) Parameter Conditions TA Min Typ Max Unit (VINVOUT) = 2V,OI = 10mA 25 1.238 1.250 1.263 Reference Voltage ZLDO1117-ADJ VOUT+1.4V < VIN 10V, V FT 1.225 1.275 10mA < IO< 1A O = 10mA, V IN3.2V 25 1.188 1.200 1.212 V ZLDO1117-1.2 10mA< IO<
in „Def. Mikrocontroller auf Geschirrspüler-Platine?“ · Haus & Smart Home ·
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PDF
Weidezaun_S03_4093.pdf
LY3369-EH gelb 2,2V 2mA 67S5321RV1.25-3 (Red Ring Insulated Wire Connector Crimp Terminal 1,71-/100 max18V R6 GND 11,1V 3s 3,7V 2,5-4,2V 2600mAh SonyVTC5 230Vac 6Vac 2,5A EI57x25 87/60x27x50 2xBLD4x73mm 13,81€ u A war 10M R2 war 22k 3msR2 rd3mm 0R (11k)ZPD3v3 1000u 16V D8x16mm LowESR R3=220R@13,8V 6Vac
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
MIC5158.pdf
Threshold High 2.4 1.3 V VIL Low 1.3 0.8 V EN IB Enable Input Bias Current V EN= 2.4V 20 25 µA VCP Max. Charge Pump Voltage V CP– VDD , DD > 10V 17.5 18.5 V fCP Charge Pump Frequency 160 kHz V Maximum Gate Drive Voltage V = 0V OUT MAX SOURCE (MIC5157/8) V DD= 3.5V 5 7.0 9 V V DD= 5V 9 11.3 15 V V DD=
in „Einstellbarer Linearregler - in etwa so?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
powerdissipationhasa fixedlimitvalue (P tot max K usuallypresentedformountingbasetemperaturesof25 ˚C. is the maximum d.c. power dissipation below T ). If the mb K At higher temperatures, operating conditions must be transistor is subjected to a mounting-base
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
powerdissipationhasa fixedlimitvalue (P tot max K usuallypresentedformountingbasetemperaturesof25 ˚C. is the maximum d.c. power dissipation below T ). If the mb K At higher temperatures, operating conditions must be transistor is subjected to a mounting-base
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
howto_-tasmota-sml.pdf
Zeichenfolge an den Stromzähler sendet. Dieser Antwortet daraufhin mit seinen aktuellen Daten. - IR333c Diode - Volkszähler Sende/Lesekopf Modbus RTU Um Energiezähler mit Modbus Schnittstelle auslesen zu können, ist ein Modbus2TTL Adapter nötig. - MAX485 RS485 zu TTL Adapter o. Ä. - Kompatibler Modbus
in „Wärmezähler über optische M-Bus-Schnittstelle auslesen“ · Haus & Smart Home ·
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PDF
Service_5962-8119.pdf
emitter 4V? Yes Check C331, C333, C339 and Q306 circuits Figure 3-1 Sheet 8. No Output Voltage (continued) 32 Troubleshooting - 3 Continued from sheet 7 CV_Prog @ R401 No Check W7, A2 -4.7V Interface Board ? Yes VMon, Check Voltage
in „Wachsende Unterstützung der Selbstreparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM202575x-xx_e-Spannungsregler.pdf
Figure 2 VOUT Output Voltage VIN = 12V, LOAD = 0.2A 3.3 V Circuit of Figure 2 3.267 3.234 V(Min) 3.333 3.366 V(Max) VOUT Output Voltage 4.75V ≤ VIN≤ 40V, 0.2A ≤ ILOAD ≤ 1A 3.3 V LM1575/LM2575 Circuit of Figure 2 3.200/3.168 3.168/3.135 V(Min) 3.400/3.432 3.432/3.465 V(Max) VOUT Output Voltage 4.75V ≤
in „12V auf 5V per PWM?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21425b.pdf
141°C IH = Quiescent Current with all outputs LOW TJ= Maximum allowable junction temperature (4 mA max.) I = Quiescent Current with all outputs HIGH (+150°C) L θJA = Junction-to-ambient thernal resistance (0.6 mA max.) (83.3°C/W) 14-pin plastic package D = Duty Cycle V = Supply Voltage S Note: Ambient
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
91055b.pdf
characteristics 0xA0 Bit 7: Always one Bit 6: Self-powered Bit 5: Remote Wake-up Bits 4..0: Zero 8 bMaxPower 1 Maximum power consumption expressed in 2 mA 0x32 units (in this case 50 = 100 ma) DS91055B-page 4 Preliminary 2002 Microchip Technology Inc. TB055 TABLE 5: INTERFACE DESCRIPTOR Offset Field
in „MC mit USB Interface“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR-Studio2.txt
C:\Dokumente und Einstellungen\Root\Desktop\test-akkuboost\akku-test\default/../akkuboost2charge.c:333: undefined reference to `delay' C:\Dokumente und Einstellungen\Root\Desktop\test-akkuboost\akku-test\default/../akkuboost2charge.c:334: undefined reference to `read_adc' C:\Dokumente und Einstellungen
in „Suche Hilfe beim Compilieren von fertigem C-Code“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Samsung_SDI.pdf
cut-off) 3.6 Charging current Standard charge: 750mA 3.7 Charging time Standard charge: 300min 3.8 Max. charge current 4A(ambient temperature 25 ℃ ) 3.9 Max. discharge current 18A(ambient temperature 25 ℃ ), 60% at 250cycle (continuous) 3.10 Discharge cut-off voltage 2.5V 3.11 Cell weight 48.0g max 3.12
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PDF
133821700AD736_d.pdf
AMPLIFIER 12 High Input Impedance of 10 V C F 3 BIAS rms CORE 6OUTPUT Low Input Bias Current: 25 pA Max SECTION AMPLIFIER High Accuracy: ⴞ0.3 mV ⴞ0.3% of Reading RMS Conversion with Signal Crest Factors Up to 5 –S 4 5C AV Wide Power Supply Range: +2.8 V, –3.2 V to ⴞ16.5 V Low Power: 200 mA Max Supply
in „AD736 an mC anschliessen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN1045-D.pdf
p ) T * T + (66.7 W) (30⋅CńW) + 2000⋅C Worst case becomes: CSS A and DRM (T1) = 0;DRM (T2) = Spec. max. value and L = Spec. Max. Value R(ton) + R (3 s) + (40⋅C measured rise)ń2000+0.02 Figure 6.7. Maximum Allowed Resistor for Static From equation (5.4) and (5.1): Voltage Sharing http://onsemi.com 6 AN1045
in „Zwei Triacs in Reihe - warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2572.pdf
T = 0 to 125 °C,OC = 10 µF, unless otherwise specified). Symbol Parameter Test condition Min. Typ. Max. Unit V Output voltage V = 5.3 V, I = 10 mA, T = 25°C 3.267 3.3 3.333 V O in O J V Output voltage I = 0 to 800 mA, V = 4.75 to 10 V 3.235 3.365 V O O in ΔV Line regulation V = 4.75 to 15 V, I = 0 mA
in „LD33V C durch Elko ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21483b.pdf
temperature range is specified (-40°C to +85°C for E device, 0°C to +70°C for C device). A Parameter Min Typ Max Min Typ Max Min Typ Max Units Test Conditions Voltage-to-Frequency Accuracy TC9400 TC9401 TC9402 Linearity 10kHz — 0.01 0.05 — 0.004 0.01 — 0.05 0.25 % Output Deviation from Full Scale Straight Line
in „Frequenzen vervielfachen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hardware_t.cpp
Trigger_Pos_CH4-GRID_HEIGHT/2)/ScaleFactor[Selected_Voltage_CH4][GainIdx])+ADC_ZERO; break; } Signal::CalcMinMax(start,stop,1,pSignal,&min,&max); if (((oldMin<tvalue) && (max>tvalue)) || ((oldMax>tvalue) && (min<tvalue)) || (min<tvalue && max>tvalue)) { //triggervalue crossed--> enable normal-mode ctrl_reg &=
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil3)“ · Mikrocontroller und Digitale Elektronik ·