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P51-1000-A-O-P-4.5V-000-000 datasheet (1)

Part ECAD Model Manufacturer Description Type PDF
P51-1000-A-O-P-4.5V-000-000 P51-1000-A-O-P-4.5V-000-000 ECAD Model SSI Technologies Pressure Sensors, Transducers, Sensors, Transducers, SENSOR 1000PSI 7/16-20UNF2B 4.5V Original PDF

P51-1000-A-O-P-4.5V-000-000 Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
1998 - 200mv shunt

Abstract: SOIC-16 UCC1926 UCC2926 UCC3926
Text: differential output, AOP positive with respect to the other differential output, AON. SIGN indicates the , MAX UNIT S 3.8 Supply VDD IVDD Transimpedance Amplifier AOP ­ AON MIN 14 6 V , , ­55°C to +125°C Quiescent Output Voltage ( AOP , AON) IIN = 0 Quiescent Differential Voltage ( AOP ­ AON , Figure 1. AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may show some "chopping" noise. The


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PDF UCC1926 UCC2926 UCC3926 UCC3926 UDG-97158 200mv shunt SOIC-16 UCC1926 UCC2926
accelerometer module

Abstract: No abstract text available
Text: The Model 2422 produces three differential analog output voltage pairs (AON & AOP ), which vary with , at zero acceleration, both AON & AOP are equal to halfway between VDD and GND. The axis directions , Analog Accelerometer Module .985 [25.0] .748 [19.0] .166 [4.2] DIA 39 [ 1000 ] +5V ONLY SILICON DESIGNS , ±100 ±200 ±400 Frequency Response (Nominal, 3 dB) Hz 0 - 300 0 - 400 0 - 600 0 - 1000 0 - 1500 0 - 2000 , Note 1: Voltages on AOP & AON may exceed 0.5 volt above or below the supply voltage, provided the


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PDF 2422-nnn accelerometer module
2000 - 200mv shunt

Abstract: differential to single-ended conversion SOIC-16 UCC1926 UCC2926 UCC3926
Text: cross-switching block rectifies the input signal by forcing the differential output, AOP positive with respect to , Amplifier Section AOP ­ AON Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ , . Current into CSN is defined as negative. AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may show some "chopping" noise. The differential to single-ended conversion removes the common-mode noise between AOP and


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PDF UCC1926 UCC2926 UCC3926 UCC3926 200mv shunt differential to single-ended conversion SOIC-16 UCC1926 UCC2926
2000 - Not Available

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926 100pF 100pF UDG-97158
2011 - ucc1926

Abstract: No abstract text available
Text: cross-switching block rectifies the input signal by forcing the differential output, AOP positive with respect to , Transimpedance Amplifier Section AOP – AON Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP – AON) Bandwidth Output Impedance Shunt Resistance PSRR Temperature Coefficient Sign , defined as negative. AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may show some “chopping” noise


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PDF UCC1926 UCC2926 UCC3926 UCC3926 ucc1926
Not Available

Abstract: No abstract text available
Text: (+9 to +32 Volts DC) and ground. AOP and AON (Output): Green and White wires respectively. Analog output voltages proportional to acceleration; AOP voltage increases (AON decreases) with positive , [25.4] 1.00 [25.4] 0.825 [20.95] 39 [ 1000 ] 0.10 [2.5] SI L ICO N DE SI G NS 2 2 20 - x x x 0.50 , ±25 1 Frequency Response (Nominal, 3 dB) 0 - 400 0 - 600 0 - 1000 0 - 1500 2 Sensitivity, Differential , Voltage Operating Voltage Operating Current ( AOP & AON open) Mass (not including cable) Cable Mass 3, 4 3


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2012 - panasonic dv 700 inverter

Abstract: EZPE50606MTA EZPE80506MTA panasonic inverter dv 700 EZPE EZPE80 EZPE50 DC1300V EZPE50117MTA EZPE50107MTA
Text: Current [ Ao-p ] ( *1 ) W H L P1 P2 RMS Current [Arms] ( *2 ) ESRtyp [m] ( *3 , ] Part Number CR [F] dv/dt [V/s] Permissible current Peak Current [ Ao-p ] ( *1 ) W H L P1 , [V/s] Permissible current Peak Current [ Ao-p ] ( *1 ) W H L P1 P2 RMS Current , ] dv/dt [V/s] Permissible current Peak Current [ Ao-p ] ( *1 ) W H L P1 P2 RMS , 1000 1250 12.0 10.0 14.0 17.0 10.0 14.5 11.1 8.5 0.17 0.22 0.22 0.22 80 109 103 136 400


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2009 - UCC3926

Abstract: Transimpedance Amplifier DC Cancel SOIC-16 UCC1926 UCC2926 UCC2926DS UCC2926DSTR UCC3926DS
Text: cross-switching block rectifies the input signal by forcing the differential output, AOP positive with respect to , Amplifier Section AOP ­ AON Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ , . Current into CSN is defined as negative. AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may show some "chopping" noise. The differential to single-ended conversion removes the common-mode noise between AOP and


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PDF UCC1926 UCC2926 UCC3926 UCC3926 Transimpedance Amplifier DC Cancel SOIC-16 UCC1926 UCC2926 UCC2926DS UCC2926DSTR UCC3926DS
2004 - Not Available

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926
2008 - Not Available

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926
2008 - Not Available

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926
2006 - Transimpedance Amplifier DC Cancel

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926 Transimpedance Amplifier DC Cancel
CAB14

Abstract: No abstract text available
Text: -PIN CONNECTOR AOP and AON (Output): Green and Yellow wires respectively for the 2240-CAB cable (ordered separately). Analog output voltages proportional to acceleration; AOP voltage increases (AON decreases) with , [3.8] GND AON (ACTUAL SIZE) INCH [mm] AOP Vs = Location of Sense Element PERFORMANCE - By , 2240-010 ±10 0 - 1000 400 10 2240-025 ±25 0 - 1500 160 25 2000 2240-050 ±50 0 - 2000 80 50 2240-100 ±100 0 , Impedance Output Common Mode Voltage VDC Operating Voltage 9 32 VDC Operating Current ( AOP & AON open) 12


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PDF 2240-CAB-04 2240-CAB-14 2240-CAB-33 2240-CAB-50 CAB14
Not Available

Abstract: No abstract text available
Text: [V/μs] Permissible current Peak Current RMS Current [ Ao-p ] [Arms] (â , RMS Current [ Ao-p ] 14 Peak Current [Arms] (※1) Part No. (※2) 400 3.0 , ), and peak current ( Ao-p ) according to the following diagram, when the temperature of the capacitor , Total cycles applied peak current ( Ao-p ) (including pulse current) are within following diagram , % 40% 20% 0% 10 100 1000 10000 Total cycles Design, Specifications are subject to


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PDF 500VDC 110uF
2260-025

Abstract: accelerometer module
Text: XXX 8 - 32 VDC 0.46 [11.68] 0 + Full Scale ACCELERATION 0.30 [7.6] 39 [ 1000 ] Positive , Volts DC) and ground. INCH [mm] = Location of Sense Element AOP and AON (Output): Green and White wires respectively. Analog output voltages proportional to acceleration; AOP voltage increases , (0.1 ms) VS=+8 to +32VDC, TC=25°C 2260-005 ±5 0 - 600 800 32 2260-010 ±10 0 - 1000 400 63 2260-025 , Operating Current ( AOP & AON open) Mass (not including cable) Cable Mass Note 3: 100g versions and above are


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accelerometer module

Abstract: No abstract text available
Text: XXX 8 - 32 VDC 0.46 [11.68] 0 + Full Scale ACCELERATION 0.30 [7.6] 39 [ 1000 ] Positive , . INCH [mm] = Location of Sense Element AOP and AON (Output): Green and White wires respectively. Analog output voltages proportional to acceleration; AOP voltage increases (AON decreases) with positive , 2270-005 2270-010 2270-025 2270-050 ±2 ±5 ±10 ±25 ±50 0 - 400 0 - 600 0 - 1000 0 - 1500 0 - 2000 2000 800 , Output Impedance Output Common Mode Voltage Operating Voltage Operating Current ( AOP & AON open) Mass


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2005 - Not Available

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926
1999 - PO55F

Abstract: PO77F 090569 PO22 PX2L po11s 328-529 PO11F 24236 PO55V
Text: TIMECHK P-AI AO-PN AO-PP AO-PN AO-PP P-AI P-AI P-AI P-AI P-AI EN-AI P-AI REF-AI AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P Rising HOLD-R 0.27762 0.84822 0.84822 0.84822 0.84822 , PX1L PX1L PX1L PX1L E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P E0-P AO-P


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PDF ATL35 PO22V5 PO44V5 PO55F PO77F 090569 PO22 PX2L po11s 328-529 PO11F 24236 PO55V
2013 - Not Available

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926
2005 - Not Available

Abstract: No abstract text available
Text: cross-switching block rectifies the input signal by forcing the differential output, AOP positive with respect to , Transimpedance Amplifier Section AOP – AON Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP – AON) Bandwidth Output Impedance Shunt Resistance PSRR Temperature Coefficient Sign , defined as negative. AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may show some “chopping” noise


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PDF UCC1926 UCC2926 UCC3926 UCC3926
2005 - Not Available

Abstract: No abstract text available
Text: signal by forcing the differential output, AOP positive with respect to the other differential output , Section AOP ­ AON TEST CONDITIONS MIN 4.8 3.8 IIN = 15A, VDD = 10V, 25°C IIN = 15A, VDD = 10V, 0°C to , MHz m dB dB ppm/°C Quiescent Output Voltage ( AOP , AON) Quiescent Differential Voltage ( AOP ­ AON , . Not 100% tested in prodcution. PIN DESCRIPTIONS AOP : Positive output of the converted current signal. Voltage from AOP to AON is the absolute value of the transimpedance amplifier output. AOP may


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PDF UCC1926 UCC2926 UCC3926 UCC3926
accelerometer module

Abstract: No abstract text available
Text: (Power): Red and Black wires respectively. Power (+8 to +32 Volts DC) and ground. AOP and AON (Output): Green and White wires respectively. Analog output voltages proportional to acceleration; AOP voltage , ±5 0 - 600 800 32 2266-010 ±10 0 - 1000 400 63 2000 2266-025 ±25 0 - 1500 160 158 2266-050 ±50 0 - , Output Common Mode Voltage Operating Voltage Operating Current ( AOP & AON open) Mass (not including cable , connect it to your instrumentation in a differential configuration using both the AOP and AON output


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PDF 1221L 20kHz 50kHz accelerometer module
accelerometer module

Abstract: No abstract text available
Text: produces three differential analog output voltage pairs (AON & AOP ), which vary with acceleration as shown , [ 1000 ] Triaxial Analog Accelerometer Module SERIAL # 0.125 [3.2] 8 - 32 VDC .985 [25.0 , ) Differential g Hz mV/g 2470-002 ±2 0 - 400 2000 2470-005 ±5 0 - 600 800 2470-010 ±10 0 - 1000 400 2470-025 ±25 , Voltage Operating Voltage (reduce max by 0.4V/°C above 110°C) Operating Current ( AOP & AON open) Mass (not , configuration using both the AOP and AON output signals. But a differential connection may not always be


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PDF 2470-XXX accelerometer module
Not Available

Abstract: No abstract text available
Text: wires respectively. Power (+8 to +32 Volts DC) and ground. AOP and AON (Output): Green and White wires respectively. Analog output voltages proportional to acceleration; AOP voltage increases (AON decreases) with , =25°C 2276-100 ±100 0 ­ 2500 40 150 2276-200 ±200 0 - 3000 20 300 UNITS g Hz mV/g g/(root Hz) g ±10 0 - 1000 400 , Current ( AOP & AON open) Mass (not including cable) Cable and Connector Mass Note 3: 100g versions and , configuration using both the AOP and AON output signals. But a differential connection may not always be


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PDF 20kHz 50kHz
ua741

Abstract: accelerometer module A741 LM124 UA741 op-amp fully differential opamp
Text: outputs, AOP & AON, which vary with acceleration as shown in the graph at right. The signal outputs are , wires respectively. Power (+5 Volts DC) and ground. AOP and AON (Output): Green & white wires respectively. AOP voltage increases (AON decreases) with positive acceleration. At zero acceleration, both , . . . . . . . -0.5V to 6.5V Voltage on AOP or AON to GND 1 . . . . . . . -0.5V to VDD+0.5V Power , Hz Frequency Response (Nominal, 3 dB) 0 - 300 0 - 400 0 - 600 0 - 1000 0 - 1600 0 - 2000 0 - 2500 0


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PDF 125EC 1210L 1445-NW ua741 accelerometer module A741 LM124 UA741 op-amp fully differential opamp
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