Valhalla Scientific Inc.
Valhalla Scientific is a leading manufacturer of precision electronic test and measurement instrumentation.
- (800) 548-9806
858 457-5576 - 858-329-0274
- valhalla@valhallascientific.com
- 12127 Kirkham Road
Poway, CA 92064
United States of America
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Product
Multiphase Power Analyzer
2800 Series
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The Valhalla Scientific 2800 High-Precision Power Analyzer is available in 1-, 2-, 3-, 4-, 5-, or 6-phase versions. All voltage inputs 0.3V up to 1500V peak and all current inputs 1.5mA up to 1A; 15mA up to 5A; 1A up to 40A; and shunt inputs 60mV up to 6V are potentially free and exhibit low noise, high common mode suppression, excellent DC-stability, wide frequency range (DC-2MHz) and very low self-heating on current inputs.There is no need to fiddle with DC-compensation, or changing current plugging. All is built into the input sections of the power analyzer, ready for measurements. It is simple to use, your intuition will guide you to operate the Power Analyzer touch screen correctly.
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Product
KVS Rugged Igniter Tester With Current Monitor
4314
Tester
The Valhalla Scientific Model 4314 KVS Digital Igniter Tester is designed to provide extremely safe and reliable resistance testing of explosive or volatile devices. Proven uses include fuses, squibs, igniters, explosive bolts, automobile airbag initiators and many others.
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Product
4314-Ki Wide-Range, Ultra-Safe Digital Igniter Tester
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Featuring the intrinsically-safe internal circuitry of our storied 4314 igniter tester line, the 4314Ki begins the next generation of precision measurement instruments.
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Product
Wide-Range Digital Igniter Tester
4314Mi
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Featuring the intrinsically-safe internal circuitry of our storied 4314 igniter tester line, the 4314Mi is the newest addition to Valhalla Scientific's i-Series Wide Range Igniter Testers.
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Product
Rugged Igniter Tester
4314 KV
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Model 4314 KV is a 4-wire ohmmeter designed to use low test currents for its measurement. Additional circuitry proprietary to Valhalla Scientific is used to ensure that test current levels do not exceed the specified “fail-safe current” even in a worst-case component failure situation.





