Pressure Transducers

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Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Up to 8 times smaller than a conventional process transmitter with NEMA 4X IP65 aluminum housing.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Two-sensor design well suited for high differential pressure ranges.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
Stainless steel & titanium construction designed for pressures between 30,000 and 72,000 psig with ±1.00% of span accuracy.
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