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| Catalog Datasheet Results | Type | Document Tags |
| Abstract: 5RXWLQJ XVLQJ PP 3DG 'LDPHWHU 1.41 mm 1.0 mm 6SDFH UHTXLUHG IRU RQH OLQH PLO OV PLO OV PLO OV PLO OV VOV PP PP PP PP )RU LQQHU OD\HU GLDPHWHU RI WKH YLD GULOO LV PP 1R PDVN UHOLHI LV UHTXLUHG VR 6SDFH DYDLODEOH 3LWFK YLD GLDPHWHU PP VR 2. IRU PLO OV Semiconductor Products Sector 6SDFH UHTXLUHG IRU WZR OLQHV PLO OV PLO OV PLO OV PLO OV VOVOV PP , IRU PLO OV Space available = Pitch - pad diameter - 2* mask relief = 1.0 - 0.5 - (2*0.1) = 0.3 mm ... | Original |
3 pages, |
datasheet abstract |
| Abstract: -proof,small volum and water -proof SERIES NEMBER OT OE OV OEC OP SIZE DETECT , OE - G24NA G24NA OV - G0724NA G0724NA OEC - G5124NA G5124NA OP - D5324NA D5324NA CLOSED OT - D5324NB D5324NB OE - G24NB G24NB OV - G0724NB G0724NB OEC - G5124NB G5124NB OP - D5324NB D5324NB OPEN AND CLOSED OT - D5324NC D5324NC OE - G24NC G24NC OV - G0724NC G0724NC OEC - G5124NC G5124NC OP - D5324NC D5324NC OPEN OT - D5324PA D5324PA OE - G24PA G24PA OV - G0724PA G0724PA OEC - G5124PA G5124PA OP - D5324PA D5324PA CLOSED OT - D5324PB D5324PB OE - G24PB G24PB OV - G0724PB G0724PB OEC - G5124PB G5124PB ... | Original |
1 pages, |
ot 3000 G31* Diode amplifer datasheet abstract |
| Abstract: 35 Test Conditions V IG =  1uA, VDS = ØV  0.1  0.1 nA VGS =  20V, VDS = ØV  0.1  0.1 uA VGS =  20V, VDS = ØV TA = 150°C Â6  2.5 Â6 V VDS = 15V, ID = 1 nA 15 5 15 mA VDS = 15V, VGS = ØV 4500 7500 4500 7500 uS VDS = 15V, VGS = ØV f = 1 kHz 4000 uS VDS = 15V, VGS = ØV f = 400 MHz 5 Dynamic Electrical Characteristics Common Source Forward Transconductance gfs 4000 50 uS VDS = 15V, VGS = ØV f = 1 ... | Original |
1 pages, |
SMP4416A SMP4416 2N4416A 2n4416 transistor 2N4416 InterFET 2N4416 abstract |
| Abstract: 30 V 10 mA 360 mW 3.27 mW/°C Process NJ26 Max Unit V IG =  1uA, VDS = ØV  100 pA VGS =  20V, VDS = ØV  30  100 Test Conditions Â2 Â6  0.5 Â3 V VDS = 15V, ID = 1 nA 5 15 1 8 mA VDS = 15V, VGS = ØV 4500 7500 3000 uS VDS = 15V, VGS = ØV f = 1 kHz uS VDS = 15V, VGS = ØV f = 100 MHz uS VDS = 15V, VGS = ØV f = 400 MHz uS VDS = 15V, VGS = ØV f = 1 kHz Dynamic Electrical Characteristics ... | Original |
1 pages, |
SMPJ305 SMPJ304 J304 bos-800 J305 datasheet abstract |
| Abstract: NJ42 Unit  200 Test Conditions V IG =  10 uA, VDS = ØV nA VGS =  150V, VDS = ØV nA VGS =  100V, VDS = ØV uA VGS =  150V, VDS = ØV TA = 150°C  100 uA VGS =  100V, VDS = ØV TA = 150°C  100 Gate Reverse Current  100 IGSS Gate Source Cutoff , 30V, ID = 4 nA IDSS 2 10 2 10 mA VDS = 30V, VGS = ØV Common Source Forward Transfer Admittance Yfs 0.5 3 0.5 3 mS VDS = 30V, VGS = ØV f = 1 kHz Common ... | Original |
1 pages, |
2N6450 2n6449 2N6449 2N6449 abstract |
| Abstract: 2mW/°C Process NJ16 Unit Test Conditions V IG =  1 uA, VDS = ØV  100  100 pA VGS =  30V, VDS = ØV  100  100 nA VGS =  30V, VDS = ØV  0.6  1.8 V VDS = 15V, ID = 0.1 uA 1.5 mA VDS = 15V, VGS = ØV 0.05 ( 5) 0.05 ( 5) nA V VDS = 15V, VGS = ( ) 2500 1700 VGS = ØV, ID = Ø A f = 1 kHz 600 1800 800 2400 uS VDS = 15V, VGS = ØV f = 1 kHz 15 uS VDS = 15V, VGS = ØV f = 1 kHz 7 7 pF ... | Original |
1 pages, |
NJ16 2N4338 2N4339 2N4338 abstract |
| Abstract: 1uA, VDS = ØV  250 pA VGS =  30V, VDS = ØV  40  250 IG Gate Source Cutoff , = ØV  0.5 Â3  1.5 Â5 V VDS = 20V, ID = 1 uA IDSS 0.7 3 2 6 mA VDS = 20V, VGS = ØV Common Source Forward Transconductance g fs 1000 3500 1500 4000 uS VDS = 20V, VGS = ØV f = 1 kHz Common Source Output Conductance g os 1.5 3 uS VDS = 20V, VGS = ØV f = 1 kHz Common Source Input Capacitance Ciss 4 4 pF VDS = ... | Original |
1 pages, |
SMPJ231 SMPJ230 NJ16 J230 J231 J231 transistor datasheet abstract |
| Abstract: 2mW/°C Process NJ16 Unit  50 Test Conditions V IG =  1 uA, VDS = ØV  100  100 pA VGS =  30V, VDS = ØV  100  100 nA VGS =  30V, VDS = ØV Â2 Â6 V VDS = 15V, ID = 0.1 uA 3 9 mA VDS = 15V, VGS = ØV 0.07 nA ( 10) V VDS = 15V, VGS = ( ) TA = 150°C Dynamic Electrical Characteristics 800 VGS = ØV, ID = Ø A f = 1 kHz 1300 3000 2000 4000 uS VDS = 15V, VGS = ØV f = 1 kHz 60 uS VDS = 15V, VGS = ØV f = 1 ... | Original |
1 pages, |
SMP4341 NJ16 2N4341 2N4340 SMP4340 2N4340 equivalent 2N4340 abstract |
| Abstract:  30 Min Max Unit V IG =  1uA, VDS = ØV pA VGS = 20V, VDS = ØV 1 1 3 6 uA VGS = 20V, VDS = ØV 4 V VDS =  15V, IG =  1 nA  90 Â1 1 Â1 Â5  25 V VDS = ØV, IG =  1 mA mA VGS = ØV, VDS =  15V VDS =  15V, VGS = 12 V uA Â1 VDS , ØV, ID =  15 mA  1.3 Drain Source ON Voltage TA = 150°C VGS = ØV, VDS =  18V pA  , 2N5115 2N5115  40 V 50 mA 500mW 3 mW/°C  65°C to + 200°C  0.8 V V TA = 150°C VGS = ØV, ID ... | Original |
1 pages, |
PJ99 2N5116 2N5115 2N5114 2N5114 abstract |
| Abstract: Process NJ132 NJ132 Max Unit V IG =  1uA, VDS = ØV  100 pA VGS =  20V, VDS = ØV  40  100  200 nA VGS =  20V, VDS = ØV  0.5 Â3 V VDS =  20V, ID = 1 nA 1 V IG = 1 mA, VDS = ØV 5 30 mA VDS = 20V, VGS = ØV pA VDS = 20V, VGS =  5V 200 , 7V 100 pA VDS = 20V, VGS =  12V 200 nA VDS = 20V, VGS =  12V V VGS = ØV, ID = 3 mA V VGS = ØV, ID = 6 mA V VGS = ØV, ID = 12 mA VGS = ØV, ID = 1 mA Â4 ... | Original |
1 pages, |
transistor 2N4393 SMP4393 SMP4392 SMP4391 NJ132 2N4392 2N4391 2n4393 datasheet 2N4393 2N4391 abstract |
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| DEMO 1555A LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 High Voltage NFet Driver UV, OV and Reverse Supply Protection DEMO 1555A LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 High Voltage NFet Driver UV, OV and Reverse Supply Protection DEMO 1555A LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 High Voltage NFet Driver UV, OV and Reverse Supply Protection DEMO 1555A LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 High Voltage NFet Driver UV, OV and Reverse Supply Protection DEMO 1555A LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 High Voltage NFet Driver UV, OV and Reverse Supply Protection DEMO 1555A LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 LTC4365CTS8 High Voltage NFet www.datasheetarchive.com/download/69732249-364866ZC/1555a.zip (Label1555A.pdf) |
Linear | 28/01/2011 | 2430.08 Kb | ZIP | 1555a.zip |
| Linear Techonology Product Catalog LTC2912 LTC2912 LTC2912 LTC2912 - Single UV/OV Voltage Monitor Monitors Single Voltage Adjustable UV and OV Adjustable Reset Timeout with Timeout Disable 40uA Quiescent Current Open-Drain OV and UV Outputs Guaranteed OV and UV for V CC ≥ 1V Available in 8-Lead ThinSOT TM and (3mm Ã- 2mm LTC2912 LTC2912 LTC2912 LTC2912 voltage monitor is designed to detect power supply undervoltage and overvoltage events. The VL www.datasheetarchive.com/files/linear/c1003/c1144/c1043/c1132/p30132/p30132-printfriendly.html |
Linear | 09/02/2007 | 4.72 Kb | HTML | p30132-printfriendly.html |
| separate overvoltage (OV) conditions. All monitors share a common undervoltage output and a common Monitors > LTC2913 LTC2913 LTC2913 LTC2913 - Dual UV/OV Voltage Monitor Dual Supply - Dual UV/OV Voltage Monitor Monitors Two Voltages Simultaneously Adjustable UV and OV Trip Values Guaranteed Threshold A Quiescent Current Open-Drain OV and UV Outputs Guaranteed OV and UV for VCC ≥ 1V Available www.datasheetarchive.com/files/linear/c1003/c1144/c1043/c1132/p25892/p25892-viewall.html |
Linear | 09/02/2007 | 9.18 Kb | HTML | p25892-viewall.html |
| Monitors > LTC2912 LTC2912 LTC2912 LTC2912 - Single UV/OV Voltage Monitor Dual Supply - Single UV/OV Voltage Monitor Monitors Single Voltage Adjustable UV and OV Trip Values Guaranteed Threshold Accuracy: ±1 Current Open-Drain OV and UV Outputs Guaranteed OV and UV for V CC ≥ 1V The LTC2912 LTC2912 LTC2912 LTC2912 voltage monitor is designed to detect power supply undervoltage and overvoltage events www.datasheetarchive.com/files/linear/c1003/c1144/c1043/c1132/p30132/p30132-viewall.html |
Linear | 09/02/2007 | 9.91 Kb | HTML | p30132-viewall.html |
| or More Supply Monitors > LTC2914 LTC2914 LTC2914 LTC2914 - Quad UV/OV Positive/Negative Voltage Monitor LTC2914 LTC2914 LTC2914 LTC2914 - Quad UV/OV Positive/Negative Voltage Monitor Monitors Four Voltages Simultaneously Adjustable UV and OV Trip Values Guaranteed Threshold Accuracy: ±1.5% of Monitored Voltage over Temperature Input Glitch Rejection Monitors up to Two 70uA Quiescent Current Open-Drain OV and UV Outputs Guaranteed OV and UV for VCC www.datasheetarchive.com/files/linear/c1003/c1144/c1043/c1124/p24772/p24772.html |
Linear | 09/02/2007 | 8.93 Kb | HTML | p24772.html |
| Monitors > LTC2912 LTC2912 LTC2912 LTC2912 - Single UV/OV Voltage Monitor Dual Supply - Single UV/OV Voltage Monitor The LTC2912 LTC2912 LTC2912 LTC2912 voltage monitor is designed to detect power supply undervoltage and overvoltage events overvoltage and undervoltage reset outputs which function independently. While the LTC2912 LTC2912 LTC2912 LTC2912 operates directly 2912-1 has a latch control for the OV output; the LTC2912-2 LTC2912-2 LTC2912-2 LTC2912-2 has an OV and UV output disable www.datasheetarchive.com/files/linear/c1003/c1144/c1043/c1132/p30132/p30132-description.html |
Linear | 09/02/2007 | 8.69 Kb | HTML | p30132-description.html |
| Monitors > LTC2912 LTC2912 LTC2912 LTC2912 - Single UV/OV Voltage Monitor Dual Supply - Single UV/OV Voltage Monitor Monitors Single Voltage Adjustable UV and OV Trip Values Guaranteed Threshold Accuracy: ±1 Current Open-Drain OV and UV Outputs Guaranteed OV and UV for V CC ≥ 1V Documentation Datasheet LTC2912 LTC2912 LTC2912 LTC2912 - Single UV/OV Voltage Monitor Design Note www.datasheetarchive.com/files/linear/c1003/c1144/c1043/c1132/p30132/p30132.html |
Linear | 09/02/2007 | 8.6 Kb | HTML | p30132.html |
| Monitors > LTC2913 LTC2913 LTC2913 LTC2913 - Dual UV/OV Voltage Monitor Dual Supply - Dual UV/OV Voltage Monitor Monitors Two Voltages Simultaneously Adjustable UV and OV Trip Values Guaranteed Threshold A Quiescent Current Open-Drain OV and UV Outputs Guaranteed OV and UV for VCC ≥ 1V Available Documentation Datasheet LTC2913 LTC2913 LTC2913 LTC2913 - Dual UV/OV Voltage Monitor Design Note www.datasheetarchive.com/files/linear/c1003/c1144/c1043/c1132/p25892/p25892.html |
Linear | 09/02/2007 | 8.31 Kb | HTML | p25892.html |
| CommonUncertaintyLike ) Waveform ( name("tOV1") edges( (invalid,0.000,0.000,L), (valid,76000.000,80000.000), (invalid,126000.000,130000.000), (blank,185500.000,185500.000,T) ) Waveform ( name("tOV2") edges( (invalid ,185500.000,185500.000,T) ) Waveform ( name("tOV3") edges( (invalid,0.000,0.000,L), (valid,71500.000,75500.000), (invalid,125000.000,129000.000), (blank,185500.000,185500.000,T) ) Waveform ( name("tOV4") edges ,185500.000,185500.000,T) ) Waveform ( name("tOV5") edges( (invalid,0.000,0.000,L), (valid,79500 www.datasheetarchive.com/download/56684786-173679ZC/i960.zip (FIGURE7.TD) |
Intel | 16/03/1997 | 1212.21 Kb | ZIP | i960.zip |
| CommonUncertaintyLike ) Waveform ( name("tOV1") edges( (invalid,0.000,0.000,L), (valid,76000.000,80000.000), (invalid,126000.000,130000.000), (blank,185500.000,185500.000,T) ) Waveform ( name("tOV2") edges( (invalid ,185500.000,185500.000,T) ) Waveform ( name("tOV3") edges( (invalid,0.000,0.000,L), (valid,71500.000,75500.000), (invalid,125000.000,129000.000), (blank,185500.000,185500.000,T) ) Waveform ( name("tOV4") edges ,185500.000,185500.000,T) ) Waveform ( name("tOV5") edges( (invalid,0.000,0.000,L), (valid,79500 www.datasheetarchive.com/download/56684786-173679ZC/i960.zip (FIGURE7.TDK) |
Intel | 16/03/1997 | 1212.21 Kb | ZIP | i960.zip |