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Abstract: temperature Temperature of the air surrounding the capacitor, usually considered to be 20°C if in open air. Anode The positive electrode of a polar capacitor. Also used to refer to the capacitor during the , The voltage applied to a polar capacitor in the opposite direction of the indicated polarity. , capacitor, or the extent to which the capacitor is not a perfect capacitor. DF is usually expressed as a percentage or a decimal equivalent. DF for a tantalum capacitor is measured at 120 Hz at 20°C using a ... Original
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4 pages,
66.73 Kb

tantalum capacitor 1 micro farad capacitor capacitor date codes capacitor symbols measure leakage capacitor separates Standard Tantalum 106 inductor chip mtbf 1 microfarad capacitor capacitor 10 microfarad capacitor 100 micro farad capacitor datasheet datasheet abstract
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Abstract: Miniature Aluminum Electrolytic Capacitors Ripple Current of Miniature Size Aluminum Electrolytic Capacitors s Maximum Permissible Ripple Current Diagram 1 qVoltage Limitation A polar capacitor can be used, but the peak voltage (VH) applied VH Voltage to the capacitor should not exceed its rated voltage. (Refer to Diagram 1) qCurrent Limitation Ripple current should not exceed the maximum permissible , such a level that the surface temperature of the capacitor rises no more than 3°C above room ... Original
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1 pages,
12.86 Kb

datasheet abstract
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Abstract: temperature Temperature of the air surrounding the capacitor, usually considered to be 20°C if in open air. Anode The positive electrode of a polar capacitor. Also used to refer to the capacitor during the , The voltage applied to a polar capacitor in the opposite direction of the indicated polarity. , capacitor, or the extent to which the capacitor is not a perfect capacitor. DF is usually expressed as a percentage or a decimal equivalent. DF for a tantalum capacitor is measured at 120 Hz at 20°C using a ... Original
datasheet

4 pages,
58.01 Kb

AVX solid tantalum capacitor CAPACITOR Tantalum 2906 datasheet abstract
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Abstract: polar capacitor wherever possible. Note) Place a decoupling capacitor between Vcc and GND as close as , capacitor as a polar capacitor wherever possible. Note) Notes for the above are almost same as in BTL. - 7 , IN1 Input pin for CHI. This pin is connected to the ground via a coupling capacitor. the same one as , This pin is connected to the ground via a coupling capacitor, the same one as used for the input pin , and OUT2. • Ground the unused input pins via a coupling capacitor which is the same one used for the ... OCR Scan
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11 pages,
706.77 Kb

THD10 CX20172 3023B3 3023B3 abstract
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Abstract: 00111^4 444 CX20172 CX20172 SONY, BTL Mode Application Circuit ION) * Use tantalum capacitor as a polar capacitor , as a polar capacitor wherever possible. Note) Notes for the above are almost same as in BTL. - 7 - , coupling capacitor. the same one as used for the input pin, when the pin is not used as an input pin in the , - 5 IN 2 Input pin for CH2. This pin is connected to the ground via a coupling capacitor, the same , input pins via a coupling capacitor which is the same one used for the input pin. • Gain setting can be ... OCR Scan
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11 pages,
363.95 Kb

THD10 CX20172 CX20172 abstract
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Abstract: input is AC coupled with a VF non polar capacitor, then offset by -0.8V with a 741 type operational , TDC1029 TDC1029. The analog input is AC coupled with a 1/uF non polar capacitor, then offset by -0.8V with a 741 , capacitor to Aqnq is recommended. If the reference inputs are varied dynamically (as in an AGC circuit), a , regulator, then V^A has a ferrite bead inductor in series with the supply and a parallel bypass capacitor to , capacitor to ground. The purpose of the inductor is to isolate the analog supply from the noise and voltage ... OCR Scan
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10 pages,
309.1 Kb

TDC1029B7C TDC1029 R3M marking MARKING lsi logic LM337 C1029 TRW TDC1029 NON POLAR capacitor TDC1029 abstract
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Abstract: , C can be polar capacitor. 10,000 1,000 OK to 90% Rise Time 0.1MF 1IUF 10JIF 10JIF Averaging , (log Em2/Eout) = Ein2/Eout The A3 circuit which contains the external capacitor takes the time average , and 3 show the effects of the external filter capacitor on ripple magnitude and response time. As the , averaging capacitor must be made very large to minimize ripple at low frequencies. Burr-Brown 1C Data Book , 4341 will convert DC inputs. Lower frequency AC inputs require a large value of averaging capacitor to ... OCR Scan
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4 pages,
125.97 Kb

logarithmic converter FULL WAVE RECTIFIER and waveforms 4341 burr brown 4341 4341 RMS datasheet abstract
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Abstract: polar capacitor. EXPANDED TRIM PROCEDURE FOR GREATER ACCURACY If the 4341 is used in applications to , capacitor, takes the time average of the i2 signal and produces E0UT, which is directly proportional to the rms value of Figures 2 and 3 show the effects of the external filter capacitor on ripple magnitude and , input voltages, the averaging capacitor must be made very large to minimize ripple at low frequencies. CHOOSING THE AVERAGING CAPACITOR A single-pole low-pass RC filter provides the averaging function. The ... OCR Scan
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4 pages,
131.25 Kb

14VDC burr brown 4341 datasheet abstract
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Abstract: polar capacitor. EXPANDED TRIM PROCEDURE FOR GREATER ACCURACY If the 4341 is used in applications to , capacitor, takes the time average of the i2 signal and produces E0UT, which is directly proportional to the rms value of Figures 2 and 3 show the effects of the external filter capacitor on ripple magnitude , convert DC input voltages, the averaging capacitor must be made very large to minimize ripple at low frequencies. CHOOSING THE AVERAGING CAPACITOR A single-pole low-pass RC filter provides the averaging ... OCR Scan
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4 pages,
328.98 Kb

transistor 4341 datasheet abstract
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Abstract: NIOBIUM ELECTROLYTIC CAPACITORS NMC Series Product specifications (Miniaturized Niobium Capacitors) NMC Test conditions JIS C5101-1 C5101-1:1998 Operating temperature range ­55°C ~ +105°C Rated voltage DC2.5 ~ 16V 85°C Surge voltage DC3.0~ 19V 85°C Derated voltage DC1.7 ~ 10.7V 105°C Capacitance 4.7 ~ 470uF 120 Hz, 1.5V Capacitance tolerance ±20% Paragraph 4.7, 120 Hz, 1.5V Leakage current Features A niobium capacitor is a polar capacitor which ... Original
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2 pages,
88.76 Kb

C5101-1 hitachi NMC NMCB0J107 datasheet abstract
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Extended Electronics Archive (Experimental)

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Over 1.1 million files (1986-2013): html articles, reference designs, gerber files, chemical content, spice models, programs, code, pricing, images, circuits, parametric data, RoHS data, cross references, pcns, military data, and more. Please note that due to their age, these files do not always format correctly in modern browsers. Disclaimer.
 
1 Chip LED, 0805 C1 C4 C11 C16-18 C16-18 C16-18 C16-18 6 Ceramic capacitor 470nF/16V, 0805 C7 C5 2 Ceramic capacitor NPO 10pF, 0603 C8 1 Ceramic capacitor NPO 1nF, 0603 C9-10 C9-10 C9-10 C9-10 C3 C12 C2 C6 6 Ceramic capacitor 100nF/16V, 0603 C13 1 Ceramic capacitor 2uF2/16V or polar Tantalum 2uF2, 1206 or Tantalum-A C14-15 C14-15 C14-15 C14-15 2 Ceramic capacitor array 4x47-100nF, 1206 C19-21 C19-21 C19-21 C19-21 3 Tantalum capacitor >=10uF/6.3V
www.datasheetarchive.com/download/30089349-903408ZC/sbaa114.zip (ELMET.pdf)
Texas Instruments 10/03/2005 889.87 Kb ZIP sbaa114.zip
shorting it to the supply voltage (see fig. 3.1.). Two capacitors C1 and C2 guarantee that in pres- ence of dimensioned considering that the 100ns current peak flowing through the polar- ity guard is equal to about 110 . For negative surges (worst case) the charge Q in- jected in the capacitor is 13A x 100ns=1.3 m C (supposing that no current flows through the power supply) therefore a 1 m F capacitor is large enough to used the capacitors C1 and C2 have to be dimensioned depending on the clamping time of such device. It
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1757.htm
STMicroelectronics 02/04/1999 7.65 Kb HTM 1757.htm
shorting it to the supply voltage (see fig. 3.1.). Two capacitors C1 and C2 guarantee that in pres- ence of dimensioned considering that the 100ns current peak flowing through the polar- ity guard is equal to about 110 . For negative surges (worst case) the charge Q in- jected in the capacitor is 13A x 100ns=1.3 m C (supposing that no current flows through the power supply) therefore a 1 m F capacitor is large enough to used the capacitors C1 and C2 have to be dimensioned depending on the clamping time of such device. It
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1757-v1.htm
STMicroelectronics 14/06/1999 7.61 Kb HTM 1757-v1.htm
signal to the controller the failure of the logic supply. POR DELAY Capacitor connection to set the power on reset delay. LOGIC SUPPLY FILTER Capacitor connection to filter the logic supply ripple voltage, ERROR AMP IN, controls the polar - ity and amplitude of the VCM driving current. Refer to supply voltage reaches its nominal value a delay capacitor has to be charged [Tdelay = 3x2x10e5 x C A I ch Power On Reset Delay Capacitor Charging 5 m A R F Equivalent Input
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4932-v3.htm
STMicroelectronics 25/05/2000 15.62 Kb HTM 4932-v3.htm
will signal to the controller the failure of the logic supply. POR DELAY Capacitor connection to set the power on reset delay. LOGIC SUPPLY FILTER Capacitor connection to filter the logic supply ripple voltage, ERROR AMP IN, controls the polar - ity and amplitude of the VCM driving current. Refer to figure supply voltage reaches its nominal value a delay capacitor has to be charged [Tdelay = 3x2x10e5 x C sec A 0.5 V I prog Parking Voltage Program Current 100 m A I ch Power On Reset Delay Capacitor Charging 5
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4932-v2.htm
STMicroelectronics 14/06/1999 13.78 Kb HTM 4932-v2.htm
logic supply. POR DELAY Capacitor connection to set the power on reset delay. LOGIC SUPPLY FILTER Capacitor connection to filter the logic supply ripple LOGIC SUPPLY SENSE VDDA OUTA PARK ENABLE GND input voltage, ERROR AMP IN, controls the polar - ity and amplitude of the VCM driving current. Refer delay capacitor has to be charged [Tdelay = 3x2x10e5 x C sec] before Power on Reset output change from On Reset Delay Capacitor Charging 5 m A R F Equivalent Input Resistance at 5V Filter Input 6
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4932.htm
STMicroelectronics 20/10/2000 16.3 Kb HTM 4932.htm
will signal to the controller the failure of the logic supply. POR DELAY Capacitor connection to set the power on reset delay. LOGIC SUPPLY FILTER Capacitor connection to filter the logic supply ripple voltage, ERROR AMP IN, controls the polar - ity and amplitude of the VCM driving current. Refer to figure supply voltage reaches its nominal value a delay capacitor has to be charged [Tdelay = 3x2x10e5 x C sec A 0.5 V I prog Parking Voltage Program Current 100 m A I ch Power On Reset Delay Capacitor Charging 5
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4932-v1.htm
STMicroelectronics 02/04/1999 13.81 Kb HTM 4932-v1.htm
DESCRIPTION The AM82731-025 AM82731-025 AM82731-025 AM82731-025 device is a high power silicon bi- polar NPN transistor specifically designed for : .025 thick Al 2 O 3 (Er = 9.6) C1 : 22 pF Chip Capacitor C2 : 1500 pF RF Feedthrough L1 : No. 26 Wire
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2768-v2.htm
STMicroelectronics 14/06/1999 4.8 Kb HTM 2768-v2.htm
DESCRIPTION The AM82731-025 AM82731-025 AM82731-025 AM82731-025 device is a high power silicon bi- polar NPN transistor specifically designed for : .025 thick Al 2 O 3 (Er = 9.6) C1 : 22 pF Chip Capacitor C2 : 1500 pF RF Feedthrough L1 : No. 26 Wire
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2768-v1.htm
STMicroelectronics 02/04/1999 4.84 Kb HTM 2768-v1.htm
- fier charges a capacitor in series with the Power Supply voltage at the optimum DC level defined by an -phase bi- polar stepper motors and in applications where two DC motors must be driven. 1/8 This is (mas- ter) and used to supply all the other L6204 L6204 L6204 L6204 (slaves) saving diodes and capacitors. R1 C1 (R2 C2 chopped, the motor current ricirculates via the Supply; because of this a suitable large capacitor must be
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1655-v2.htm
STMicroelectronics 14/06/1999 9.63 Kb HTM 1655-v2.htm