SINKING. Consult factory for Military grade parts. ELECTRICAL CHARACTERISTICS VCC = 16V, V BAT = 8V, V MAX (maximumoperating V ) = CCV, no load on any outputs, unless otherwise noted. (Notes 7, 8) PARAMETER CONDITIONS MIN TYP MAX UNITS Overall Supply Current VPROG = 2.7V, VCC ≤20V 2.90 4.3 mA V = 2.7V, 20V
Precision Specs It is no longer necessary to compromise specifications, n Guaranteed Offset Voltage: 150µV Max whilesavingboardspaceandcost,ascomparedtosingle n Guaranteed Low Drift: 2µV/°C Max operational amplifiers. n Guaranteed Offset Current: 0.8nA Max TheLT1014’slowoffsetvoltageof50µV,driftof0.3µV/°C, n
Understanding power MOSFET data sheet parameters 03aa32 03aa35 5 10−1 V GS(th) D (V) (A) −2 min typ max 4 max 10 −3 3 typ 10 −4 2 min 10 −5 1 10 −6 −60 0 60 120 180 10 0 2 4 6 T j°C) VGS (V) Gate-source threshold voltage as a function of junction Subthreshold drain current as a function of gate-source
Wechselrichters mit H-Brücke abgegriffen, bei dem die Leistungsregelung mittels Phase-Shift erfolgt. Max Amplithude 400V. Das andere Signal wird über einem Parallelschwingkreis abgegriffen und ist sinusförmig, allerdings ist die Amplitude variabel. Der Wechselrichter soll mit der Resonanzfrequenz des
Rehrmann-Oszillator nenne (http://www.joretronik.de/bilder_schaltungstechnik/Oszillatoren_html_m4cd394a1.gif) Aber auf Grund verschiedener Nachteile, die der Oszillator bauartbedingt mit sich bringt, wollte ich ihn in diesem speziellen Fall nicht verwenden. Außerdem muss man sich ja auch an was neuem
entspricht? Hier noch der Code falls es jemanden interessiert: http://codeviewer.org/view/code:394f
Max schrieb im Beitrag #3416838: > einzustellen mittels 2 16Bit Timer Wofür 2 Timer? Du stellst einen Timer auf einen Wert von 1ms, 10ms oder so etwas ein. Mit einer Zählevariablen in der ISR kannst
, P, E PARAMETER CONDITIONS MIN TYP MAX UNITS POWER SUPPLY REQUIREMENTS Power Supply Voltage 4.75 5.25 V Power Supply Current: Analog Current 2 mA Digital Current 3.5 mA Additional Analog Current with REF OUT Enabled 1.6 mA VBIASEnabled No
current Serial input and output via I2C-bus I 2C address selection by 3 hardware address pins 2 Max sampling rate given by I C-bus speed 4 analog inputs configurable as single ended or differential inputs Auto-incremented channel selection Analog voltage range from V SS to VDD On-chip track
PIC16F1503 Operating temperature -40°CTA +85°C for industrial -40°CTA +125°C for extended Param Max. Max. Conditions No. Device Characteristics Min. Typ† +85°C +125°C Units VDD Note (2) Power-down Base Current (PD) D022 — .02 1.0 2.4 A 1.8 WDT, BOR, FVR, and T1OSC — .03 1.1 3.0 A 3.0 disabled, all
chip is limited by its package and ambient temperature. The maximum allowable power dissipation P D(max)is determined by P D(max)(Tj(max)T a/R th(j-a)ere T j(max)maximum chip junction temperature, usually considered as 150℃, T : ambaent temperature, R th(j-a)hermal resistance of the package. The relationship
600-mil Width Dim. mm inches Min Typ Max Min Typ Max A 4.17 0.164 A1 0.76 0.030 B 0.36 0.46 0.56 0.014 0.018 0.022 B1 0.76 1.27 1.78 0.030 0.050 0.070 C 0.20 0.25 0.38 0.008 0.010 0.015 D 34.95 35.56 36.17 1.376 1.400 1.424 D1 33.02 1.300
sources as segment dri- Table 10. Display-Test Register Format vers. The example in Figure 2 uses the MAX7219/MAX7221’s (Address (Hex) = 0xXF) segment drivers, a MAX394 single-pole double-throw analog switch, and external transistors to drive 2.3” MODE REGISTER DATA D7 D6 D5 D4 D3 D2 D1 D0 AND2307SLC common-cathode
AMP by communication with H/U. DIAG function. (DC-offset detection) SPECIFICATIONS Distortion : 0.5% max at 0.5W Offset Voltage : 50mV max S/N : 55dB min at 0.5W Backup Current : 1mA max Channel Separation : 50dB min at 0.5W Dimensions : 265.8(W) x 220(D) x 54.8(H)mm Residual Output : 0.5mVrms max at Vol.min
V = 1V 1.80 2.30 V FB Voltage Lo Clamp, VFB 1.5V 0.25 0.38 0.52 V Reference Voltage Line 3V≤ V IN MAX 0.03 %/V Regulation V = 0.8V C AV Error Amplifier Voltage Gain 0.9V ≤V C 1.4V 500 800 V/V MinimumInput Voltage (Note 3) 2.6 3.0 V IQ Supply Current 3V≤ V IN MAX, VC= 0.6V 6 9 mA Control Pin Threshold
506 Input Message Definitions TIME_ACC_PRIORITY Description 0x00 No priority imposed 0x01 RESP_TIME_MAX has priority over HORI_ERROR_MAX/VERT_ERROR_MAX 0x02 HORI_ERROR_MAX/VERT_ERROR_MAX has priority over RESP_TIME_MAX O 0x03 SN4_GSD4t_4.0.2-B7 or later.ffective only in builds e 0x04 – 0xFF Reserved S
Max.switchingcurrent 2 A DC, AC Between contacts and coil 1,000 Vrms 1,500 Vrms Max.carrying current 3 A DC, AC FCC surge voltage between contacts 8 and coil 1,500 V (Expect DS1-S type) Expected Mechanical
important characteristics are the remanence B , the R coercive force H Cand the density product BH max The remanence B R[Tesla or Gauss] is a measure of how high the remaining magentic flux is after full magnetization in a closed circuit. The coercive force H is the field strength which must be applied
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)
Specified. S 1 open for triangle, closed for sine wave. XR-2206M/P XR-2206CP/D Parameters Min. Typ. Max. Min. Typ. Max. Units Conditions General Characteristics Single Supply Voltage 10 26 10 26 V Split-Supply Voltage +5 +13 +5 +13 V Supply Current 12 17 14 20 mA R1 ▯ 10k▯ Oscillator Section Max. Operating
Precision Specs It is no longer necessary to compromise specifications, Guaranteed Offset Voltage 150 V Max. whilesavingboardspaceandcost,ascomparedtosingle Guaranteed Low Drift 2 V/°C Max. operational amplifiers. Guaranteed Offset Current 0.8nA Max. Guaranteed High Gain TheLT1014’slowoffsetvoltageof50 V,
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
V S±15V, T = 2A°C, R = 1k, L CM = 0V, unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS V OS Input Offset Voltage VS= ±5V (Note 2) 0.5 3.0 mV 0°C to 70°C 4.0 mV V = ±15V (Note 2) 1.0 5.0 mV S 0°C to 70°C 6.0 mV Input VOS Drift 25 V/°C IOS Input Offset Current VS= ±5V and V =S15V
Auf http://www.titanmec.com/docc/product-detail-394.html lässt sich das Datenblatt auf chinesisch abrufen. Google-Übersetzer ist Dein Freund ;-) Das Datenformat lässt sich aber auch im Originaldokument anhand der Grafik gut verstehen... Carsten
etwas mit der Timing-Tabelle anfangen? Ist das so zu lesen? T0l (150ns min / 300ns norm / 450ns max) T0h (600ns min / 800ns norm / 1000ns max) T (1200ns min / - norm / - max) TReset (140us min / 500us norm / - max) Gruß Tom
sind alle 3 Sender Nordwestlich von mir. Nun habe ich 2 verschiedene Empfänger einen SABA RCR 394 und einen Siemens RK651 Weltempfänger. Mir dem Saba kann ich den Sender durch feinfühliges Drehen einstellen, Problem ist das er sich immer wieder verstellt, Temparatur-Drift? Auch die Position die
selected the P value is set to 1 internally. handbook, full pagewidth VLCD2 F VLCD2 F V2H G V2H G max max V1H VC VC VC VC V1L G G V2L max V2L max VSS F VSS F P = 4 P = 1 MGU941 Fig.32 Bias levels for a MRA system with P = 4 and P = 1. The bias voltage levels are a function of the row voltage The value
otherwise noted, the following specifications apply= +3.0V to +5.5V with T = T to T , C to CC AMB MIN MAX 1 C 40.1µF PARAMETER MIN. TYP. MAX. UNITS CONDITIONS DC CHARACTERISTICS Supply Current 0.3 1.0 mA no load, TAMB = +25°C, VCC = 3.3V, TxIN = V or GND CC Shutdown Supply Current 1.0 10 µA SHDN = GND,
+886-4-26393125 4 2DEVICE NO:HPR40E-19K100xWHAx 2ABSOLUTE MAXIMUM RATINGS TA=25°C PARAMETER SYMBOL MAX. RATING UNIT Continuous Forward Current IF 2.8 A Peak Forward Current *1 IFM 3 A Electrostatic Discharge (HBM) ESD 4000 V LED Junction Temperature Tj 135 °C Operating Temperature Topr -40 ~ +110 °C Storage Temperature Tstg -40 ~ +120 °C Manual Soldering Temperature 260 °C for 5 seconds max. *2 *1.Duty Ratio=0.1%,Pulse Width=10us. *2.Iron soldering high temperature will not cause damage to the dice. But be aware of the high temperature will not only make the epoxy soften but also cause
mA (max.) VF 3.5 V 3) page 22) Reverse Voltage Sperrspannung 3)Seite 23 I = 20 mA (max.) V 1.2 V R R Wärmewiderstand Thermal resistance Sperrschicht/Lötpad (typ.) Rth el JS 7 K/W Junction/solder point (max.
abhängig von 1), aber als Spannung sollte 5V rauskommen 4) was meinst Du mit "stärker"? Kapazität, max. Strom, ...?
index.html?;ACTION=3;LA=2;ARTICLE=67406;GROUPID=4058;artnr=PEAKTECH+2010;SID=10UJQOv38AAAIAABysUfAed01f394cbc03008882492d9eb335f94) holen und mein aktuelles auf ebay loswerden.
Example, Timer in Up Mode .........................................................................394....... 13-13. Output Example, Timer in Continuous Mode .................................................................395..... 13-14. Output Example, Timer in Up/Down Mode ........................
3.60V,Ta=-40℃~+85℃ 13.3.1. Clock Characteristics Table 13-3 Item Symbol Unit Timing Diagram Min. Typ. Max. Note IOVCC = VCC = 3.0V, RC Oscillation clock fosc kHz 25°C 384 427 470 NOTE︰Value of Typ.、Min. and Max. is decided by the setting of Initial Code at Page 61 80-System Bus Interface Timing Characteristics
CONPENSA 616 PC TTX Contrast offset 00 BLUE CONPENSA 616 -------------------------------------- NR SCALE MAX 64 WTE GAIN 58 R GAIN 127 127 NR SCALE MIN 18 RAST VSIZE 1023 G GAIN 127 127 DE GAIN COR 03 RAST HSIZE 895 B GAIN 127 127 DE GAIN CLIP (90/90/60) SHARP OFFSET 17 R,CR OFFSET 54 63 CE UPPER 240 CLK DLY
Value Parameter Symbol Conditions Unit min. Typ. max. Static Characteristic Collector-emitter breakdown voltageV (BR)CES V GE=0V, I C500µA 600 - - V Collector-emitter saturation voltage V = 15V, I =10A CE(sat) GE C T j25°C 1.7 2 2.4 T j150°C - 2.3 2.8