ENC61000-4-2
Abstract: SM10 UL-1950 SM10-24S05 TDK lambda 24 VDC power supply 1206B104K101N SM10-24D15 IMC process inductor
Text: Lambda’s new SM Series of Power Modules are ideally designed for Telecommunications and Network applications. Instruction Manual SM10 Series of Power Modules Lambda Electronics, Inc. 515 Broad Hollow Road Melville, New York 11747 Tel: 516 694-4200 or Toll Free: (800) LAMBDA-4/5
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DRS24
N2510B2510BA
N1810B1810BA
N1410B1410BA
ENC61000-4-2
SM10
UL-1950
SM10-24S05
TDK lambda 24 VDC power supply
1206B104K101N
SM10-24D15
IMC process inductor
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circuit diagram of very long range remote control
Abstract: RC-90023A SM10 SM20 wagner PADS Soldering and desoldering Cracking furnaces lambda transistor PWB series lambda ENC61000-4-2
Text: Lambda’s new SM Series of Power Modules are ideally designed for Telecommunications and Network applications. APPLICATION NOTES SM10 Series of Power Modules Lambda Electronics, Inc. 515 Broad Hollow Road Melville, New York 11747 Tel: 516 694-4200 or Toll Free: (800) LAMBDA-4/5
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AN1028
Abstract: AN-1028 DV240 fluke 52
Text: National Semiconductor Application Note 1028 June 2001 INTRODUCTION As packages become smaller, achieving efficient thermal performance for power applications requires that the designers employ new methods of meliorating the heat flow out of devices. Thus the purpose of this paper is to aid the user in
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OT-223
AN-1028
AN1028
AN-1028
DV240
fluke 52
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AN1028
Abstract: fluke 52 k/j thermometer tesec DV240 fluke 52 k/j Thermocouple AN-1028 AN-569 DV240 an-569 national
Text: National Semiconductor Application Note 1028 June 2001 PDMAX t = [TJMAX − TA] / RθJA(t) Introduction As packages become smaller, achieving efficient thermal performance for power applications requires that the designers employ new methods of meliorating the heat flow out of
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OT-223
AN-1028
AN1028
fluke 52 k/j thermometer
tesec DV240
fluke 52 k/j Thermocouple
AN-1028
AN-569
DV240
an-569 national
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R-T curves RJC
Abstract: AN1026 AN-569 DV240 NDS9956
Text: N 2. Theory Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong When a device operates in a system under the steady-state condition, the maximum power dissipation is determined by the maximum junction temperature rating, the ambient temperature, and the junction-to-ambient
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R-T curves RJC
Abstract: MOSFET 12W tesec DV240 motorola application note AN-569 AN1029 AN-569 DV240 NDS9956
Text: N AN1029 April, 1996 Maximum Power Enhancement Techniques for SO-8 Power MOSFETs Discrete POWER & Signal Technologies 2. Theory Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong When a device operates in a system under the steady-state condition, the maximum power
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AN1029
R-T curves RJC
MOSFET 12W
tesec DV240
motorola application note AN-569
AN1029
AN-569
DV240
NDS9956
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R-T curves RJC
Abstract: FLUKE 381 AN1025 AN-569 DV240 NDS9956 tesec DV240 fluke 52 Mosfet DF 50
Text: N 2. Theory Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong When a device operates in a system under the steady-state condition, the maximum power dissipation is determined by the maximum junction temperature rating, the ambient temperature, and the junction-to-ambient
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OT-23)
OT-23
R-T curves RJC
FLUKE 381
AN1025
AN-569
DV240
NDS9956
tesec DV240
fluke 52
Mosfet DF 50
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AN1027
Abstract: AN-569 DV240 NDS9956 sot8
Text: N 2. Theory Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong When a device operates in a system under the steady-state condition, the maximum power dissipation is determined by the maximum junction temperature rating, the ambient temperature, and the junction-to-ambient
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R-T curves RJC
Abstract: AN1028 AN-569 DV240 NDS9956
Text: N AN1028 April, 1996 Maximum Power Enhancement Techniques for SOT-223 Power MOSFETs Discrete POWER & Signal Technologies 2. Theory Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong When a device operates in a system under the steady-state condition, the maximum power
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AN1028
OT-223
OT-223
R-T curves RJC
AN1028
AN-569
DV240
NDS9956
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R-T curves RJC
Abstract: motorola application note AN-569 tesec DV240 AN1028 AN-569 DV240 NDS9956
Text: AN1028 April, 1996 Maximum Power Enhancement Techniques for SOT-223 Power MOSFETs Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong 1. Introduction As packages become smaller, achieving efficient thermal performance for power applications requires that the designers employ new methods of meliorating the heat flow out of devices. Thus
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AN1028
OT-223
OT223
R-T curves RJC
motorola application note AN-569
tesec DV240
AN1028
AN-569
DV240
NDS9956
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tesec DV240
Abstract: AN1027 AN-569 DV240 NDS9956
Text: AN1027 April, 1996 Maximum Power Enhancement Techniques for SuperSOTTM-8 Power MOSFETs Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong 1. Introduction As packages become smaller, achieving efficient thermal performance for power applications requires that the designers employ new methods of meliorating the heat flow out of devices. Thus
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tesec DV240
AN1027
AN-569
DV240
NDS9956
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Mohan
Abstract: AN1026 AN-569 DV240 NDS9956 motorola application note AN-569
Text: AN1026 April, 1996 Maximum Power Enhancement Techniques for SuperSOTTM-6 Power MOSFETs Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong 1. Introduction As packages become smaller, achieving efficient thermal performance for power applications requires that the designers employ new methods of meliorating the heat flow out of devices. Thus
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Mohan
AN1026
AN-569
DV240
NDS9956
motorola application note AN-569
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SM20
Abstract: SM20-24S12 SM20-24S15 UL-1950 1320UH IMC process inductor
Text: Lambda’s new SM Series of Power Modules are ideally designed for Telecommunications and Network applications. Instruction Manual SM20 Series of Power Modules Lambda Electronics, Inc. 515 Broad Hollow Road Melville, New York 11747 Tel: 516 694-4200 or Toll Free: (800) LAMBDA-4/5
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DRS24
N2510B2510BA
N1810B1810BA
N1410B1410BA
SM20
SM20-24S12
SM20-24S15
UL-1950
1320UH
IMC process inductor
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TDK lambda 24 VDC power supply
Abstract: Tokin CY55 k101n DRS24 CY55 CY55Y5 SM30 UL-1950
Text: Lambda’s new SM Series of Power Modules are ideally designed for Telecommunications and Network applications. Instruction Manual SM30 Series of Power Modules Lambda Electronics, Inc. 515 Broad Hollow Road Melville, New York 11747 Tel: 516 694-4200 or Toll Free: (800) LAMBDA-4/5
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DRS24
N2510B2510BA
N1810B1810BA
N1410B1410BA
TDK lambda 24 VDC power supply
Tokin CY55
k101n
CY55
CY55Y5
SM30
UL-1950
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DR2000
Abstract: vdf displays CMOS BCD-TO-7-SEGMENT LATCH DECODER DRIVERS connecting diagram for ic 7404 to 7 segment IC 7404 vdf displays units 7404 using in 7-segment datasheet CIRCUIT DIAGRAM ic 7404 dr2000 numitron functional DIAGRAM 7404
Text: CD4511BMS S E M I C O N D U C T O R CMOS BCD-to-7-Segment Latch Decoder Drivers December 1992 Features Pinout • High Voltage Type 20V Rating CD4511BMS TOP VIEW • High Output Sourcing Capability up to 25mA • Input Latches for BCD Code Storage • Lamp Test and Blanking Capability
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100nA
DR2000
vdf displays
CMOS BCD-TO-7-SEGMENT LATCH DECODER DRIVERS
connecting diagram for ic 7404 to 7 segment
IC 7404
vdf displays units
7404 using in 7-segment datasheet
CIRCUIT DIAGRAM ic 7404
dr2000 numitron
functional DIAGRAM 7404
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common cathode 7 segment
Abstract: 5082-7740 dr2000 numitron functional DIAGRAM 7404 CD4511BMS MC14511 cd4511 numitron common cathode 7 segment led
Text: CD4511BMS CMOS BCD-to-7-Segment Latch Decoder Drivers December 1992 Features Pinout • High Voltage Type 20V Rating CD4511BMS TOP VIEW • High Output Sourcing Capability up to 25mA • Input Latches for BCD Code Storage B 1 16 VDD C 2 15 f LT 3 14 g BL
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CD4511BMS
100nA
common cathode 7 segment
5082-7740
dr2000 numitron
functional DIAGRAM 7404
CD4511BMS
MC14511
cd4511
numitron
common cathode 7 segment led
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R-T curves RJC
Abstract: tesec DV240 AN-569 DV240 NDS9956 AN1025 SuperSOTTM -3 Fluke 16 thermocouple FLUKE 52
Text: AN1025 April, 1996 Maximum Power Enhancement Techniques for SuperSOTTM-3 Power MOSFETs Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong 1. Introduction As packages become smaller, achieving efficient thermal performance for power applications requires that the designers employ new methods of meliorating the heat flow out of devices.
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OT-23)
R-T curves RJC
tesec DV240
AN-569
DV240
NDS9956
AN1025
SuperSOTTM -3
Fluke 16 thermocouple
FLUKE 52
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SM10
Abstract: SM20 CONN36
Text: Lambda’s new SM Series of Power Modules are ideally designed for Telecommunications and Network applications. APPLICATION NOTES SM20 Series of Power Modules Lambda Electronics, Inc. 515 Broad Hollow Road Melville, New York 11747 Tel: 516 694-4200 or Toll Free: (800) LAMBDA-4/5
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common cathode 7 segment led
Abstract: CMOS BCD-TO-7-SEGMENT LATCH DECODER DRIVERS vdf displays CD4511BMS MC14511 common cathode 7-segment 5082-7740 numitron
Text: CD4511BMS CMOS BCD-to-7-Segment Latch Decoder Drivers December 1992 Features Pinout • High Voltage Type 20V Rating CD4511BMS TOP VIEW • High Output Sourcing Capability up to 25mA • Input Latches for BCD Code Storage B 1 16 VDD C 2 15 f LT 3 14 g BL
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CD4511BMS
100nA
common cathode 7 segment led
CMOS BCD-TO-7-SEGMENT LATCH DECODER DRIVERS
vdf displays
CD4511BMS
MC14511
common cathode 7-segment
5082-7740
numitron
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tesec DV240
Abstract: AN1029 AN-569 DV240 NDS9956 213 so8
Text: AN1029 April, 1996 Maximum Power Enhancement Techniques for SO-8 Power MOSFETs Alan Li, Brij Mohan, Steve Sapp, Izak Bencuya, Linh Hong 1. Introduction As packages become smaller, achieving efficient thermal performance for power applications requires that the designers employ new methods of meliorating the heat flow out of devices. Thus
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tesec DV240
AN1029
AN-569
DV240
NDS9956
213 so8
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B7971
Abstract: pinlite DG12E monsanto 7 segment pinlites B897 CA3081 BURROUGHS nixie CA3081 HARRIS man seven segment display
Text: CD4033BMS S E M I C O N D U C T O R CMOS Decade Counter/Divider January 1995 December 1992 Features Description • High Voltage Types 20V Rating CD4033BMS consists of a 5 stage Johnson decade counter and an output decoder which converts the Johnson code to a 7
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CD4033BMS
CD4033BMS
T1705C
DG12E
LD915
B7971
pinlite
monsanto 7 segment
pinlites
B897
CA3081
BURROUGHS nixie
CA3081 HARRIS
man seven segment display
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pinlites
Abstract: pinlite B7971 Nixie CD4033BMS CA3081 IOH15 Wagner Electric 7830 equivalent numitron
Text: CD4033BMS CMOS Decade Counter/Divider December 1992 Features Description • High Voltage Types 20V Rating CD4033BMS consists of a 5 stage Johnson decade counter and an output decoder which converts the Johnson code to a 7 segment decoded output for driving one stage in a numerical
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CD4033BMS
pinlites
pinlite
B7971
Nixie
CA3081
IOH15
Wagner Electric
7830 equivalent
numitron
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Wagner Electric
Abstract: CMOS BCD-to-7-Segment LED Latch Decoder Drivers
Text: CD4511BMS CMOS BCD-to-7-Segment Latch Decoder Drivers D ecem ber 1992 Pinout Features CD4511BMS TOP VIEW • High Voltage Type 20V Rating • High Output Sourcing Capability up to 25mA • Input Latches for B C D Code Storage • Lamp Test and Blanking Capability
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CD4511BMS
CD4511BMS
100nA
2N3053
2N2102)
Wagner Electric
CMOS BCD-to-7-Segment LED Latch Decoder Drivers
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DT1705C
Abstract: B-5971 CD4033BM nec B897 monsanto 7 segment DT1704A B8971 B897 of la 7830 & equivalent 4033B
Text: CD4033BMS ÍH HARRIS V U S E M I C O N D U C T O R CMOS Decade Counter/Divider December 1992 Features Description • High Voltage Types 20V Rating C D 4033B M S consists of a 5 stage Johnson decade counter and an output decoder which converts the Johnson code to a 7
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CD4033BMS
4033B
negative-eT1705C
DG12E
LD915
CD4033BMS
DT1705C
B-5971
CD4033BM
nec B897
monsanto 7 segment
DT1704A
B8971
B897
of la 7830 & equivalent
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