draw a maximum of 10 mA, even at the highest frequency and other half through the negative part. The max current on each side would be = 20 mA/ F. voltage of operation, therefore low current availability is not an issue. AC line voltage isolation can be FIGURE 2: addressed by using MOVs or transient suppressors
bypassing, filtering and timing, high frequency W coupling and decoupling of fast digital circuits. Max. Max. Marking Interference suppression in low voltage applications. High pulse load. High temperature operations. MARKING: Manufacturer's logo/type/C-value/rated voltage/tolerance/ H date of manufacture Max. 0.±0.1 DIELECTRIC: Polyester film ELECTRODES: Vacuum deposited aluminum 6.01 ± 0.4 COATING: Ø 0.5 Flame retardant plastic case (UL-class 94 V-0), green, 5.±0.4 epoxy resin sealed CONSTRUCTION: TIME
temperature range Temperature range -55 ~ +105 C -40 ~ +105 C -25 ~ +105 C WV 100 WV >100 Leakage current max. I = 0.01CV or 3 A whichever is greater (after 2 min) I = 0.02CV+15 A (after 5 min) I = 0.03CV or 4 A whichever is greater (after 1 min) Capacitance tolerance 20% at 120Hz, 20 C Capacitance > 1000 F : tan increases by 0.02 for each 1000 F from below value. Dissipation factor max. (at 120Hz, 20C) WV 6.3 10 16 25 35 50 63 100 160~250 350~500 tan 0.28 0.24 0.20 0.16 0.14 0.12 0.10 0.08 0.15 0.20 WV 6.3 10 16 25 35 50~100 160 200~350 400~450 500 Low temperature characteristics
at 20°C Tangent of loss angle (tan δ) Rated voltage(V) 16 25 35 50 63 80 100 160 to 420 450 tan δ (MAX.) 0.20 0.15 0.50 0.40 0.35 0.30 0.25 0.20 Measurement frequency : 120Hz Stability at Low Temperature Rated voltage (V) 16 to 100 160 to 250 315 to 450 Impedance ratio Z – 25°C/Z+20°C 4 3 8 ZT/Z20 (MAX
www.fastrongroup.com HBCC Similar to moulded CCSH SRF DCR Rated DC Part No Inductance fL Tol Q fQ min max Current A L (µH) (MHz) ± (%) min (MHz) (MHz) (Ω) (A) L (µH) (max) X Typical L vs Frequency (ƒ) HBCC-1R0X-YY 1.0 1 5,10 40 7.96 200 0.08 2.20 1.0 - 18 14.5 63 10000 HBCC-1R2X-YY 1.2 1 5,10 40 7.96 185
▯FASTRONGROUP▯COM HBCC Similar to moulded CCSH SRF DCR Rated DC Part No Inductance fL Tol Q fQ min max Current A L (µH) (MHz) ± (%) min (MHz) (MHz) (Ω) (A) L (µH)(max) X Typical L vs Frequency (ƒ) HBCC-1R0X-YY 1.0 1 5,10 40 7.96 200 0.08 2.20 1.0 - 18.5 63 10000 HBCC-1R2X-YY 1.2 1 5,10 40 7.96 185
Description Mode in use Pin 4 (SHSW) With S/H GND Without S/H V DD Recommended Supply voltage Item Min. Typ. Max. Unit V DD 4.5 5.0 5.5 V Input Clock voltage Condition Item Min. Typ. Max. Unit V IH 4.5 5.0 V DD V V IL 0 — 0.5 V ∗1 This is applied to the all pulses applied externally. (φCLK, φROG) Clock Characteristics
Description Mode in use Pin 4 (SHSW) With S/H GND Without S/H V DD Recommended Supply voltage Item Min. Typ. Max. Unit V DD 4.5 5.0 5.5 V Input Clock voltage Condition Item Min. Typ. Max. Unit V IH 4.5 5.0 V DD V V IL 0 — 0.5 V ∗1 This is applied to the all pulses applied externally. (φCLK, φROG) Clock Characteristics
operating free-air temperature range (unless otherwise noted) TA= 25°C SN54HC595 SN74HC595 VCC MIN MAX MIN MAX MIN MAX UNIT 2 V 6 4.2 5 clock Clock frequency 4.5 V 31 21 25 MHz 6 V 36 25 29 2 V 80 120 100 SRCLK or RCLK high or low 4.5 V 16 24 20 6 V 14 20 17 w Pulse duration ns 2 V 80 120 100 SRCLR low
110b (1.5kHz), we have 2*bandwidth=3ksamples/s which leads to reaction for interrupt activation of 3*333µs = 1ms and a minimum any motion interrupt duration of 3*333us = 1ms (see lower graph). If lower bandwidth is selected i) the digitally filtered values (lower noise) are taken for the verification of
Characteristics TSR-3296 TSR-3266 TSR-3296W 額定功率 Power Rating 0.5W@70℃, 0W@125℃ 0.25W@70℃, 0W@125℃ (315volts max) TSR-3296Z 溫度範圍 Temperature Range -55℃ ~ +125℃ -55℃ ~ +125℃ 溫度系數 General offer ±250 ppm/℃ General offer ±250 ppm/℃ Temperature (±100ppm/℃ is available if (±100ppm/℃ is available if Coefficiet request
110b (1.5kHz), we have 2*bandwidth=3ksamples/s which leads to reaction for interrupt activation of 3*333µs = 1ms and a minimum any motion interrupt duration of 3*333us = 1ms (see lower graph). If lower bandwidth is selected i) the digitally filtered values (lower noise) are taken for the verification of
power can be dissipated if the maximum ambient temperature of the application is lower. T ▯ T P ▯ J(MAX) A ▯ 125°C ▯ 85°C ▯ 1096 mW D(MAX) R 36.5°C▯W ▯JA 17 PACKAGE OPTION ADDENDUM www.ti.com 5-Feb-2007 PACKAGING INFORMATION (1) (2) (3) Orderable Device Status Package Package Pins Package Eco Plan Lead
der Fläche A = Tsum * Ks • Experimentell: Tsum, wenn A1=A2 • Tabelle, z.B. PID: KR = 0,5 * Ks TN = 0,333 * Tsum TV = 0,167 * Tsum Seite 5 Optimierung von Regelkreisen Sorn Stoll, Jun-03 Frequenzbereich Regler: =K (1Ts1)(1+T 2) s Wahl Reglernullstellen: Häufig zur Kompensation dominanter (langsamer) Strecken-Zeitkonstanten
= 0 Then 'positive Result If Del > 4 Then Decr Del If Del = 4 Then 'Relay "OFF" after Delay (296s max) Portb.0 = 0 Portd.7 = 1 End If End If Else 'negative Result Incr Del Portd.7 = 0 If Del > 256 Then Del = 300 Portb.0 = 1 'Relay "ON" after Delay (252s max) End If End If Print '--------------------
hier ein Prospekt vom Anfang der 80er. "Stricharbeiten unter 0,4mm" sind angegeben, mit Sieben von max. 140 Fäden pro cm. Ich habe damals immer mit dem Dunkelkammer-Gerät als Reprokamera und Orthochromatischem Lithfilm O 811 p und Lithentwickler gearbeitet. Aus einer Folie 13*18 cm konnte man sechs
nicht. Falls es geht, und ich mich eingearbeitet habe, dann auch direkt die nächstkleinere Stufe (3,333mil/85µm) angehen. Möchte ja nicht, daß mich dann alsbald jemand einholt...;-) Peter W. schrieb im Beitrag #3947400: > Gaffel Wo gibt's das zu kaufen, nie gehört? Muss ja wenigstens die Möglichkeit
Note 4) DEVICE PARAMETERS b Feedback Bias Current Adjustable Version OnlFBVe 1.3V 10 nA 50/100 nA (max) f Oscillator Frequency (Note 6) 150 kHz O 127/110 kHz(min) 173/173 kHz(max) VSAT Saturation Voltage IOUT e 1A (Notes 7 and 8) 1 V 1.2/1.3 V(max) DC Max Duty Cycle (ON) (Note 8) 100 % Min Duty Cycle (OFF) (Note 9) 0 I Current Limit Peak Current (Notes 7 and 8) 1.5 A CL 1.2/1.15 A(min) 2.4/2.6 A(max) L Output Leakage Current (Notes 7, 9, and 10) Output e 0V 50 mA(max) Output e b 1V 2 mA 15 mA(max) Q Quiescent Current (Note 9) 5 mA 10 mA(max) STBY Standby Quiescent ON/OFF pin e 5V (OFF) (Note 10
Note 4) DEVICE PARAMETERS b Feedback Bias Current Adjustable Version OnlFBVe 1.3V 10 nA 50/100 nA (max) f Oscillator Frequency (Note 6) 150 kHz O 127/110 kHz(min) 173/173 kHz(max) VSAT Saturation Voltage IOUT e 1A (Notes 7 and 8) 1 V 1.2/1.3 V(max) DC Max Duty Cycle (ON) (Note 8) 100 % Min Duty Cycle (OFF) (Note 9) 0 I Current Limit Peak Current (Notes 7 and 8) 1.5 A CL 1.2/1.15 A(min) 2.4/2.6 A(max) L Output Leakage Current (Notes 7, 9, and 10) Output e 0V 50 mA(max) Output e b 1V 2 mA 15 mA(max) Q Quiescent Current (Note 9) 5 mA 10 mA(max) STBY Standby Quiescent ON/OFF pin e 5V (OFF) (Note 10
outi PORTD, 0b00000100 ;Port D outi DDRD, 0b00001000 ;Port D ; Start TC1 with 444kHz on OC1B pin (for MAX293 clock) ;ldiw A, 36-1 ;TOP value ;outw ICR1, A ;/ ;ldiw A, 36/2 ;half value ;outw OCR1B, A ;/ ;outi TCCR1A, 0b00100010 ;COM1B[1:0]=10, WGM1[1:0]=10 ;outi TCCR1B, 0b00011001 ;WGM1[3:2]=11, CS1[2:0]
Sketch B (Top View) SOT-23 Reel Configuration: Figure 4.0 Component Rotation W1 Measured at Hub Dim A Max Dim A See detail AA max Dim N 7" Diameter Option B Min Dim C See detail AA Dim D W3 min 13" Diameter Option W2 max Measured at Hub DETAIL AA Dimensions are in inches and millimeters Reel Tape Size Option
fehlenden SRAM können die nur 40ksamples abspeichern. An sonsten tut sich nix, sample rate bleibt max 1GSa/s, die bandbreite ist genau so hackbar. Hier ein paar bilder wie die so aussehen http://www.eevblog.com/forum/testgear/hantek-tekway-dso-hack-get-200mhz-bw-for-free/msg282883/#msg282883
letzten 3.xx DSO firmware kann man die bis 220MHz benutzen, die MSO firmware erlabt aber nur 98MHz max (und das sowohl bei der 2.xx version im anhang als auch 3.xx version). Die daten des LA als kann man jetzt nicht nur als REF sondern auch als CSV exportieren/importieren. Den rest habe noch
Argumenten egal welcher Art gar nicht bei. Das ist wie mit einem Pudding argumentieren. Da gilt einzig Max Planck.
Timm T. schrieb im Beitrag #4933382: > Da gilt einzig Max Planck. Dann hast du dir die falsche Zielgruppe ausgesucht. ;) Es bringt wenig Unwilligen ihre Eseleien auszutreiben zu wollen. Namaste
16 FIGURE 6. Power Dissipation Diagram Once the device power is determined, the maximum allow- θHA(max) = θ JA(max) − (θJC + θCH ) able (θJA(max)) is calculated as: θHA (max) should be calculated twice as follows: θ JA (max)= TR(max)/P D T J(max) − TA(max))/PD θHA (max) = θ JAax, CONTROL SECTION) - (
Related Document: IEC 60384-6 Dimensions in millimeters FEATURES Product is completely lead (Pb)-free. L Max. Product is RoHS compliant. W Max. Marking DERATING FOR DC AND AC. CATEGORY VOLTAGE U At + 85°C: U = 1.0 U e3 H At + 100°C: U = 0.8 UR Max. C R RoHS 0.6 COMPLIANT CAPACITANCE RANGE 0.01µF to 10µF 6.0
(Ts) of 3 from the LEDs. Between 500 Hz and 20 kHz the circuit may milliseconds or a frequency of 333 Hz will be required. generate audible sound. Dimming is achieved by turning the http://onsemi.com 6 NSI45060JDT4G Thermal Considerations P + TJ(MAX)* T A As power in the CCR increases, it might become
thermalresistanceandlowpackagecostoftheTO-220 contributetoitswideacceptancethroughouttheindustry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS @ 10V 202 D @ TC= 100°C Continuous Drain CurrenGS @ 10V 143 A DM Pulsed Drain Current 808 PD@T C 25°C Power Dissipation 333 W Linear Derating Factor 2.2
voltage or P70 x R whichever is less (4)Zero power or zero dissipation is considered as measuring power max. 1 % of rated powe70P (5)Please refer to APPLICATION INFORMATION (6)Power levels are depending on way of mounting and substrates used. Higher power up to 200 mW at 25 °C (P ) can be tolerated on uniform
current invariant to load voltage change z Excellent output current accuracy: between channels: <±3% (max.), and CN: P-DIP24-300-2.54 between ICs: <±6% (max.) GN: P-DIP24-300-2.54 z Output current adjusted through an external resistor CNS: SP-DIP24-300-1.78 z Constant output current range: 5-90 mA GNS:
current invariant to load voltage change z Excellent output current accuracy: between channels: <±3% (max.), and CN: P-DIP24-300-2.54 between ICs: <±6% (max.) GN: P-DIP24-300-2.54 z Output current adjusted through an external resistor CNS: SP-DIP24-300-1.78 z Constant output current range: 5-90 mA GNS:
25 C 85 140 I kX OL § a R a Input Resistance 25 C 700 1000 I kX IN § (Note 3) T , T 600 IV kX MIN MAX 2 a C a Input Capacitance 25§C 3 V pF 3 IN i CMIR Common Mode Input Range 25§C g 12.5 V V D T 2 EL2099C Video Distribution Amplifier Open Loop DC Electrical Characteristics — Contd. VS e g 15V, RLe 25X, TA e 25§C unless otherwise specified Test Parameter Description Temp Min Typ Max Level Units V O Output Voltage Swing e 25§C g 9 g11 I V V S g 15V Output Voltage Swing 25§C g 2.4 g 3.0 I V V Se g5V IOUT Output Current 25§C 360 440 I mA ISC Output Short-Circuit 25§C 600 800 I mA
MAX1920ETT+T -40°C to +85°C 6 TDFN CDMA Power Amplifier Supply MAX1921EUT_ _-T -40°C to +85°C 6 SOT23-6 MAX1921EUT_ _+T -40°C to +85°C 6 SOT23-6 Note: The MAX1921 offers five preset output voltage options
dann "unerträglich" für Normalohren war. Und nur bei der "geeignetsten" Frequenz, ich erinnere an 333 und 400Hz, wurde jene Aussteuerbarkeit überhaupt erreicht, bei allen anderen Frequenzen war sie schlechter, viel schlechter. Langsame CompactCassette hatte immer Probleme mit Höhen, schnell laufende
muß um diesen Betrag höher sein- es ist also ein Trafo nötig. Der Strom EINES EW ist eben gering (max. 0,2 A). Zudem sind diese Bauteile laaaaange veraltet. Aber manchmal bekommt man sie "hinterhergeworfen". Dafür wäre der Aufbau einfach. Für Geräte bis 120 W zum Beispiel: Trafo, 6 EW's,
= T.3nF) UC284XB UC384XB Symbol Parameter Test Conditions Unit Min. Typ. Max. Min. Typ. Max. REFERENCE SECTION V REF Output Voltage Tj= 25°C Io= 1mA 4.95 5.00 5.05 4.90 5.00 5.10 V V Line Regulation 12V V 25V 2 20 2 20 mV REF ≤ i≤ VREF Load Regulation 1 ≤ o ≤20mA 3 25 3 25 mV
= T.3nF) UC284XB UC384XB Symbol Parameter Test Conditions Unit Min. Typ. Max. Min. Typ. Max. REFERENCE SECTION V REF Output Voltage Tj= 25°C Io= 1mA 4.95 5.00 5.05 4.90 5.00 5.10 V V Line Regulation 12V V 25V 2 20 2 20 mV REF ≤ i≤ VREF Load Regulation 1 ≤ o ≤20mA 3 25 3 25 mV