xr 2240
Abstract: IC XR 2240 pin function xr 2240 reset circuit MAX6381 MAX6388 MAX6390 MAX6381-MAX6389 MAX6390XSD4
Text: 19-1839; Rev 0; 10/00 SC70, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381/MAX6382/MAX6383 are available in 3-pin SC70 packages and the MAX6384–MAX6390 are available in 4-pin SC70 packages. _Applications Computers
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MAX6381/MAX6382/MAX6383
MAX6384
MAX6390
100mV
140ms,
280ms,
560ms,
1120ms,
1200ms
MAX6381
xr 2240
IC XR 2240
pin function xr 2240
reset circuit
MAX6388
MAX6381-MAX6389
MAX6390XSD4
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MAX6390XSD4
Abstract: MAX6390XS MAX6381
Text: 19-1839; Rev 0; 10/00 SC70, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381/MAX6382/MAX6383 are available in 3-pin SC70 packages and the MAX6384–MAX6390 are available in 4-pin SC70 packages. _Applications Computers
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MAX6381
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
MAX6390
MAX6390XSD4
MAX6390XS
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xr 2240
Abstract: MAX6381 MAX6388 MAX6390
Text: 19-1839; Rev 1; 04/01 SC70, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381/MAX6382/MAX6383 are available in 3-pin SC70 packages and the MAX6384–MAX6390 are available in 4-pin SC70 packages. _Applications Computers
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MAX6381/MAX6382/MAX6383
MAX6384
MAX6390
100mV
140ms,
280ms,
560ms,
1120ms,
1200ms
OpenMAX6381
xr 2240
MAX6381
MAX6388
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MAX6381
Abstract: MAX6388 MAX6390 momentary switch
Text: 19-1839; Rev 1; 04/01 SC70, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381/MAX6382/MAX6383 are available in 3-pin SC70 packages and the MAX6384–MAX6390 are available in 4-pin SC70 packages. _Applications Computers
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MAX6381/MAX6382/MAX6383
MAX6384
MAX6390
100mV
140ms,
280ms,
560ms,
1120ms,
1200ms
Open-DraMAX6381
MAX6381
MAX6388
momentary switch
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MAX6390
Abstract: No abstract text available
Text: 19-1839; Rev 3; 12/05 SC70, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at +1.8V. Whenever VCC falls below the factory-set reset
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MAX6381
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
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xr 2240
Abstract: IC XR 2240 switch SC70
Text: 19-1839; Rev 2; 9/04 SC70, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at +1.8V. Whenever VCC falls below the factory-set reset
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MAX6381
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
xr 2240
IC XR 2240
switch SC70
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Untitled
Abstract: No abstract text available
Text: 19-1839; Rev 5; 7/12 SC70/µDFN, Single/Dual Low-Voltage, Low-Power µP Reset Circuits Features The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power-supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at
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SC70/Â
MAX6381â
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
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Untitled
Abstract: No abstract text available
Text: 19-1839; Rev 5; 7/12 SC70/µDFN, Single/Dual Low-Voltage, Low-Power µP Reset Circuits Features The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power-supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at
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SC70/Â
MAX6381â
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
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Untitled
Abstract: No abstract text available
Text: 19-1839; Rev 5; 7/12 SC70/µDFN, Single/Dual Low-Voltage, Low-Power µP Reset Circuits Features The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power-supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at
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SC70/Â
MAX6381â
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
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max6381
Abstract: No abstract text available
Text: 19-1839; Rev 5; 7/12 SC70/µDFN, Single/Dual Low-Voltage, Low-Power µP Reset Circuits Features The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power-supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at
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MAX6381
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
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xr 2240
Abstract: IC XR 2240 max810 xr 2240 data sheet MAX6381 MAX6388 MAX6390 D3 017 6PIN UDFN6
Text: 19-1839; Rev 4; 4/07 SC70/µDFN, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power-supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at +1.8V. Whenever VCC falls below the factory-set reset
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MAX6381
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
MAX6390
xr 2240
IC XR 2240
max810
xr 2240 data sheet
D3 017 6PIN
UDFN6
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LAS 5205
Abstract: MAX6383XR31D7 MAX6383XR31D7-T xr 2240
Text: 19-1839; Rev 4; 4/07 SC70/µDFN, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power-supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at +1.8V. Whenever VCC falls below the factory-set reset
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MAX6381
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
LAS 5205
MAX6383XR31D7
MAX6383XR31D7-T
xr 2240
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IC XR 2240
Abstract: FP1 C40 593D HIP6018B HIP6018BCB
Text: HIP6018B Data Sheet Advanced PWM and Dual Linear Power Control The HIP6018B provides the power control and protection for three output voltages in high-performance microprocessor and computer applications. The IC integrates a PWM controllers, a linear regulator and a linear controller as well
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HIP6018B
HIP6018B
IC XR 2240
FP1 C40
593D
HIP6018BCB
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LM3661TL-1.40
Abstract: MAX6383XR31D7 MAX6383XR31D7-T MAX6383XR31D7 T
Text: 19-1839; Rev 4; 4/07 SC70/µDFN, Single/Dual Low-Voltage, Low-Power µP Reset Circuits The MAX6381–MAX6390 microprocessor µP supervisory circuits monitor power-supply voltages from +1.8V to +5.0V while consuming only 3µA of supply current at +1.8V. Whenever VCC falls below the factory-set reset
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MAX6381
MAX6390
100mV
1200ms
MAX6381/MAX6384/MAX6387
MAX6382/MAX6385/
MAX6388
active-high3LT16D3+
MAX6383LT23D3+
MAX6383LT29D2
LM3661TL-1.40
MAX6383XR31D7
MAX6383XR31D7-T
MAX6383XR31D7 T
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Intel i860
Abstract: No abstract text available
Text: INTEL CORP UP/PRPHLS bflE » • 4ñ2bl7S Dia^flSb in te i i860 XR 64-BIT MICROPROCESSOR ■ Parallel Architecture that Supports Up to Three Operations per Clock — One Integer or Control Instruction per Clock — Up to Two Floating-Point Results per
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64-BIT
128-Bit
32-Bit
32/64-Bit
80860XR
Intel i860
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FGT 313
Abstract: No abstract text available
Text: in te i ¡860 XR 64-BIT MICROPROCESSOR • Parallel Architecture that Supports Up to Three Operations per Clock — One Integer or Control Instruction per Clock — Up to Two Floating-Point Results per Clock Compatible with Industry Standards — ANSI/IEEE Standard 754-1985 for
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64-BIT
lntel386TM/486TM
168-pin
128-Bit
80860XR
FGT 313
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intel i860
Abstract: A80860XR-40 pbit 2180 a80860xr-33 A80860XR40 TE 2197 transistor 8550 sad intel I860 processor pin diagram of XR 2206 i860 64-Bit Microprocessor Performance Brief
Text: i860 XR 64-BIT MICROPROCESSOR • Parallel Architecture that Supports Up to Three Operations per Clock ' — One Integer or Control Instruction per Clock — Up to Two Floating-Point Results per Clock ■ High Performance Design — 25/33.3/40 MHz Clock Rates
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64-BIT
128-Bit
32-Bit
32/64-Bit
intel i860
A80860XR-40
pbit 2180
a80860xr-33
A80860XR40
TE 2197
transistor 8550 sad
intel I860 processor
pin diagram of XR 2206
i860 64-Bit Microprocessor Performance Brief
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Untitled
Abstract: No abstract text available
Text: i860 XR 64-BIT MICROPROCESSOR • Parallel Architecture that Supports Up to Three Operations per Clock — One Integer or Control Instruction per Clock — Up to Two Floating-Point Results per Clock ■ High Performance Design — 25/33.3/40 MHz Clock Rates
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64-BIT
128-Bit
32-Bit
32/64-Bit
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4558 equivalent
Abstract: XR4741CP XR-4741CP XR-4558CP XR-4739 LM 4741 SN72558P transistor tt 2206 RC4739DB equivalent 4558 lowpass filter CIRCUIT DIAGRAM
Text: $ 1.75 OPERATIONAL AMPLIFIER DATA BOOK First in Q uality.First in Service • Custom, Semi-custom and Standard IC's E fu tu r e e l e c t r o n ic s 4800 Oufferin Street Downsview, Ontario M3H 5S8 Tel.: 416 663-5563 in c . Introduction This D ata Book contains a com plete sum m ary o f technical
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XR-205
Abstract: XR2206 monolithic function generator XR2206 pin details for function generator XR205 IC XR 2240 XR-2240 XR8038 intersil 8038 XR220 exar xr8038
Text: Introduction This D ata B ook contains a com plete sum m ary o f technical inform ation covering E xar’s com plete line o f V oltage-C on trolled O scillator V C O and F un ction G enerator IC products. The wide range o f applications for each o f the products
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D-4051
XR-205
XR2206 monolithic function generator
XR2206 pin details for function generator
XR205
IC XR 2240
XR-2240
XR8038
intersil 8038
XR220
exar xr8038
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MV3010
Abstract: No abstract text available
Text: GEC PLESSEY SEMICONDS 44E D B 37bflS22 QQlbaiR- Ô SSPLSB GEC PL ES S E Y S E M I C O N D U C T O R S 'T - 'ï s -i e - n • | _ PRELIM INARY IN F O R M A T IO N DS2382-1.0 MV3010 SUBSCRIBER LINE AUDIO CIRCUIT The MV3010 is a Subscriber Line Audio Circuit SLAC
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37bflS22
DS2382-1
MV3010
MV3010
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MV3010
Abstract: No abstract text available
Text: GEC PLESSEY I S E M I C O N D U C T O R S ~ | ELIM IN A R Y IN FO RM A TIO N DS2382-1.0 MV3010 SUBSCRIBER LINE AUDIO CIRCUIT The MV3010 is a Subscriber Line Audio Circuit SLAC for use in subscriber line cards in telephone exchanges or
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DS2382-1
MV3010
MV3010
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Untitled
Abstract: No abstract text available
Text: Data Sheet m i c r o e l e c t r o n i c s gr o up Lucent Technologies Bell Labs Innovations ORCA OR2CxxA 5.0 V and OR2TxxA (3.3 V) Series Field-Programmable Gate Arrays Features • High-performance, cost-effective, low-power 0.35 pm/0.3 pm CMOS technology, with a migration
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16-bit
BA256
352-Pin
432-Pin
600-Pin
BA352
BC432
BC600
256-Pin
304-Pin
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XR2206 application notes
Abstract: XR-2216 fsk modulation and demodulation using Xr2206 XR-2208 XR2206 pin details for function generator xr2206 application XR2240 XR-2206 CIRCUIT IC XR 2240 applications xR-2208
Text: Introduction This semi-custom IC design brochure contains a complete outline and summary o f Exar’s unique semi-custom IC design, development, and production program and capabilities. This technique, which was pioneered by Exar, offers a unique and effective method o f manufacturing an almost unlimited
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