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voltages

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Abstract: voltages. If you are using them with AC voltages, see the following section. If you are using them with DC field voltages, use these diagrams. G4 Digital I/O Wiring Diagrams On 4-Position Mounting Rack (G4PB4) On All Other Mounting Racks Input Modules Using AC Field Voltages Use the diagrams in this , DC input modules listed at left will work with either DC or AC field voltages. If you are using them , G4 Digital I/O Wiring Diagrams Input Modules Using DC Field Voltages Use the diagrams in this ... Original
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2 pages,
85.5 Kb

G4ODC5 G4IDC5K G4IDC5D wiring diagrams G4IAC5A G4OAC5 G4IDC5G g4pb4 g4iac5 G4IDC5B G4IDC5 datasheet abstract
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Abstract: modules listed at left will work with either AC or DC field voltages. If you are using them with AC voltages, see the following section. If you are using them with DC field voltages, use these diagrams. On All Other Mounting Racks Input Modules Using AC Field Voltages Use the diagrams in this , DC or AC field voltages. If you are using them with DC voltages, see the previous section. If you , Standard Digital I/O Wiring Diagrams Input Modules Using DC Field Voltages Use the diagrams in ... Original
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2 pages,
85.26 Kb

OAC5A5 idc5 IDC-5 wiring diagrams oac5 diagram ODC5 IDC5B IAC5A PB4R datasheet abstract
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Abstract: : Thyristor modules: TZ800N TZ800N.KOF with blocking voltages 1200V up to 1800V TZ740N TZ740N.KOF with blocking voltages 1800V up to 2200V TZ630N TZ630N.KOF with blocking voltages 2200V up to 2800V TZ530N TZ530N.KOF with blocking voltages 3000V up to 3600V Diode modules: DZ1070N DZ1070N.KOF with blocking voltages 1800V up to 2800V DZ950N DZ950N.KOF with blocking voltages 3600V up to 4400V Main fields of applications are UPS, windpower, drives ... Original
datasheet

1 pages,
54.66 Kb

DZ950N homepage ups blocking DIODE thyristor modules transistor 764 TZ530N TZ740N TZ630N MN2001 DISC THYRISTOR DZ1070N Eupec Power Semiconductors 2902 TZ800N datasheet abstract
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Abstract: Collector-emitter saturation voltages VCEsat-2 V Collector-emitter saturation voltages VCEsat-4 0.5 Collector-emitter saturation voltages VCEsat-3 IC =1A; IB =0.1A Collector-emitter saturation voltages , voltages VBE(sat)2 Base-emitter saturation voltages VBE(sat)3 Base-emitter saturation voltages ... Original
datasheet

1 pages,
63.84 Kb

2N5609 2N5609 abstract
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Abstract: performance of IC switches can be improved by increasing the differential between the control voltages. Due to system design constraints sufficient positive or negative control voltages are not always , AW002R2-12 AW002R2-12, 10 W T/R switch can be operated with positive and negative voltages. Figure 1 shows the required schematic, control voltages and truth table. The differential of the control voltages must not , Isolation Insertion Loss Control Voltages (V1, V2) -12 V VLow 0 V VLow 0 V VHigh +12 V VHigh ... Original
datasheet

1 pages,
15.66 Kb

AW002R2-12 AW002R2-12 abstract
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Abstract: Emitter-base breakdown voltage VCEsat-1 Collector-emitter saturation voltages VCEsat-2 V Collector-emitter saturation voltages VCEsat-4 1.2 Collector-emitter saturation voltages VCEsat-3 IC = 3A; IB = 375mA Collector-emitter saturation voltages hFE-1 Forward current transfer ratio , voltages VBE(sat)2 Base-emitter saturation voltages VBE(sat)3 Base-emitter saturation voltages ... Original
datasheet

1 pages,
75.3 Kb

2N5298 2N5298 abstract
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Abstract: voltage VCEsat-1 Collector-emitter saturation voltages IC =5A; IB =1A 1.5 V VCEsat-2 Collector-emitter saturation voltages IC =8A; IB =2A 5.0 V VCEsat-3 Collector-emitter saturation voltages VCEsat-4 Collector-emitter saturation voltages hFE-1 Forward current transfer ratio , Base-emitter saturation voltages VBE(sat)2 Base-emitter saturation voltages VBE(sat)3 Base-emitter saturation voltages fT Transition frequency at f = 1MHz tf IC=0.3A,VCE=10V Fall time ts ... Original
datasheet

1 pages,
123.45 Kb

2N6543 2N6543 abstract
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Abstract: Cutoff Current IE=5mA; IC=0 VCE(sat-1) Collector-emitter saturation voltages IC=5A; IB=0.5A VCE(sat-2) Collector-emitter saturation voltages VCE(sat-3) Collector-emitter saturation voltages VCE(sat-4) Collector-emitter saturation voltages hFE-1 Forward current transfer ratio hFE-2 Forward current transfer ratio VBE(sat) Base-emitter Saturation voltages fT Current ... Original
datasheet

1 pages,
40.9 Kb

TO-247 NPN SILICON POWER TRANSISTORS 2SA1633 2SC4278 2SC4278 abstract
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Abstract: V, 3.3 V, all voltages in kit ADP122UJZ-REDYKIT ADP122UJZ-REDYKIT 2.5 V, 3.3 V, all voltages in kit ADP124CPZ-REDYKIT ADP124CPZ-REDYKIT 1.8 V, 3.3 V, all voltages in kit ADP124RHZ-REDYKIT ADP124RHZ-REDYKIT 2.8 V, 3.3 V, all voltages in kit ADP130UJZ-REDYKIT ADP130UJZ-REDYKIT 1.2 V, 1.8 V, all voltages in kit ADP150UJZ-REDYKIT ADP150UJZ-REDYKIT 1.8 V, 3.3 V, all voltages in kit ADP151CPZ-REDYKIT ADP151CPZ-REDYKIT 2.8 V, 3.0 V, all voltages in kit ADP151UJZ-REDYKIT ADP151UJZ-REDYKIT 1.8 V, 3.3 V, all voltages in kit ADP162UJZ-REDYKIT ADP162UJZ-REDYKIT 3.3 V, 4.2 V, all voltages in kit ADP2108UJZ-REDYKIT ADP2108UJZ-REDYKIT 1.2 V, 3.3 V, all voltages in kit ... Original
datasheet

2 pages,
1315.46 Kb

ADP2140CPZ-REDYKIT ADP151UJZ-REDYKIT all ic in one file datasheet abstract
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Abstract: variety of applications needing multiple output voltages. C1, C2: TAIYO YUDEN JMK212BJ475 JMK212BJ475 (408 , DESIGN IDEAS Simple and Efficient Way to Provide Three Supply Voltages for Small TFT LCDs by Bryan Legates TFT LCDs used in portable devices today typically need three different supply voltages: 5V, 15V, and ­10V. One way to generate these three voltages is to use a single DC/DC converter and , well-regulated output voltages using a small number of external components. Both DC/DC converters in the DESIGN ... Original
datasheet

1 pages,
27.68 Kb

LTC1705 LT1969 LT1944-1 LQH3C220 LQH3C-220 5V DC DESIGN POWER SUPPLY EMK107BJ104 avalanche photodiode bias design ideas LT1944-1 abstract
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*= *Math Operations for Voltage *V-Math2 Pinout: A B O *Copyright (c) 1997 MicroCode Engineering, Inc. *All Rights Reserved *= *Add Voltages - pkg:V(A+B) .PARAM XADDV File:Mcemods1.lib *Subrtact Voltages - pkg:V(A-B) .PARAM XSUBV File:Mcemods1.lib *Multiply Voltages - pkg:V(A*B) .PARAM XMULTV File:Mcemods1.lib *Divide Voltages - pkg:V(A/B) .PARAM XDIVV File:Mcemods1.lib
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*= *Math Operations for Voltage *V-Math2 Pinout: A B O *Copyright (c) 1997 MicroCode Engineering, Inc. *All Rights Reserved *= *Add Voltages - pkg:V(A+B) .PARAM XADDV File:Mcemods1.lib *Subrtact Voltages - pkg:V(A-B) .PARAM XSUBV File:Mcemods1.lib *Multiply Voltages - pkg:V(A*B) .PARAM XMULTV File:Mcemods1.lib *Divide Voltages - pkg:V(A/B) .PARAM XDIVV File:Mcemods1.lib
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*= *Math Operations for Voltage *V-Math2 Ref Pinout: +A -A +B -B -O +O *Copyright (c) 1997 MicroCode Engineering, Inc. *All Rights Reserved *= *Add Voltages - pkg:V(A+B) .PARAM XADDVR File:Mcemods1.lib *Subrtact Voltages - pkg:V(A-B) .PARAM XSUBVR File:Mcemods1.lib *Multiply Voltages - pkg:V(A*B) .PARAM XMULTVR File:Mcemods1.lib *Divide Voltages - pkg:V(A/B) .PARAM XDIVVR File:Mcemods1.lib
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such voltages. Latchup refers to the unintentional activation of parasitic transistors. This can occur with the application of voltages above Vdd, or below Vss. Care should be taken to avoid exposing I/O pins to voltages or currents which exceed those stated in the electrical specification. minimum voltages and currents. One should take every step necessary to ensure that the voltages at an I/O is nothing internally which will limit current flow. The user should ensure that voltages at an input
www.datasheetarchive.com/files/motorola/cdcsic2/web/techhelp/faq/io/damage.htm
Motorola 08/03/1998 4.11 Kb HTM damage.htm
X5083 X5083 X5083 X5083 All packages/resistances/voltages/grades Data /voltages/grades Foundry Change, Process Change X9313 X9313 X9313 X9313 All packages/resistances/voltages/grades Foundry /resistances/voltages/grades Foundry Change, Process Change X9317 X9317 X9317 X9317 All packages/resistances/voltages/grades Foundry
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Xicor 07/02/2003 29.88 Kb HTML pcn_020828.html
Microprocessors Supervisory Circuit in 4-Lead SOT-143, Logic High RESET Output General Description The ADM811/ADM812 ADM811/ADM812 ADM811/ADM812 ADM811/ADM812 are reliable voltage monitoring devices suitable for use in most voltage monitoring applications. The ADM811/ADM812 ADM811/ADM812 ADM811/ADM812 ADM811/ADM812 are designed to monitor five different voltages, each allowing for a 5% or 10% degradation of standard PSU voltages before a reset occurs. These voltages have been selected for the effective monitoring of +3 V, +3.3 V and +5 V supply voltage levels.
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designed to monitor five different voltages, each allowing for a 5% or 10% degradation of standard PSU voltages before a reset occurs. These voltages have been selected for the effective monitoring
www.datasheetarchive.com/files/analog-devices/productdescriptions/1392.html
Analog Devices 24/03/2005 1.14 Kb HTML 1392.html
The regulator delivers up to 4.5A at output voltages of either 3.3V or 5V, selected via a jumper. By modifying a resistive divider, other output voltages are possible. Input voltages can range from 4.5V up to
www.datasheetarchive.com/files/linear/c1003/c1263/p11392/p11392-printfriendly.html
Linear 21/11/2005 3.23 Kb HTML p11392-printfriendly.html
The regulator delivers up to 4.5A at output voltages of either 3.3V or 5V, selected via a jumper. By modifying a resistive divider, other output voltages are possible. Input voltages can range from 4.5V up to
www.datasheetarchive.com/files/linear/c1003/c1263/p11392/p11392-printfriendly-v1.html
Linear 09/02/2007 3.27 Kb HTML p11392-printfriendly-v1.html
switching regulator controller. The regulator delivers up to 4.5A at output voltages of either 3.3V or 5V, selected via a jumper. By modifying a resistive divider, other output voltages are possible. Input voltages can range from 4.5V up to 28V (limited by the external MOSFETs).
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