pinch valve Search Results


90
ASCO Valve Inc a pinch valve (390nc24330
A Pinch Valve (390nc24330, supplied by ASCO Valve Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/us08785846-142-15-18?v=ASCO+Valve+Inc
Average 90 stars, based on 1 article reviews
a pinch valve (390nc24330 - by Bioz Stars, 2026-07
90/100 stars
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90
ALA Scientific Instruments voltage command 8 pinch valve superfusion system
Voltage Command 8 Pinch Valve Superfusion System, supplied by ALA Scientific Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/10__1007_slash_s11434___013___5870___7-57-5-12?v=ALA+Scientific+Instruments
Average 90 stars, based on 1 article reviews
voltage command 8 pinch valve superfusion system - by Bioz Stars, 2026-07
90/100 stars
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90
Valcor Engineering pinch valve
Pinch Valve, supplied by Valcor Engineering, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/pmc09243525__mmc2-306-185-192?v=Valcor+Engineering
Average 90 stars, based on 1 article reviews
pinch valve - by Bioz Stars, 2026-07
90/100 stars
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90
Takasago Electric Inc vent valve
Vent Valve, supplied by Takasago Electric Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/pmc06190346-38-37-40?v=Takasago+Electric+Inc
Average 90 stars, based on 1 article reviews
vent valve - by Bioz Stars, 2026-07
90/100 stars
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90
PendoTECH automated pinch valve
Automated Pinch Valve, supplied by PendoTECH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/ppr0439119-81-12-14?v=PendoTECH
Average 90 stars, based on 1 article reviews
automated pinch valve - by Bioz Stars, 2026-07
90/100 stars
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90
Precigenome LLC 12v three-way solenoid pinch valves
Fluidic Multiplexing with <t>Three-Way</t> <t>Solenoid</t> Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a <t>DSCPM</t> unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.
12v Three Way Solenoid Pinch Valves, supplied by Precigenome LLC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/bio_rxiv__2024__08__16__608339-128-8-16?v=Precigenome+LLC
Average 90 stars, based on 1 article reviews
12v three-way solenoid pinch valves - by Bioz Stars, 2026-07
90/100 stars
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90
ALA Scientific Instruments 4-pinch or 8-pinch valve bath perfusion system
Fluidic Multiplexing with <t>Three-Way</t> <t>Solenoid</t> Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a <t>DSCPM</t> unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.
4 Pinch Or 8 Pinch Valve Bath Perfusion System, supplied by ALA Scientific Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/us09365578-919-17-24?v=ALA+Scientific+Instruments
Average 90 stars, based on 1 article reviews
4-pinch or 8-pinch valve bath perfusion system - by Bioz Stars, 2026-07
90/100 stars
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90
Takasago Electric Inc electromagnetic solenoid pinch valve pk305-no
Fluidic Multiplexing with <t>Three-Way</t> <t>Solenoid</t> Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a <t>DSCPM</t> unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.
Electromagnetic Solenoid Pinch Valve Pk305 No, supplied by Takasago Electric Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/10__2116_slash_analsci__16__65-19-1-6?v=Takasago+Electric+Inc
Average 90 stars, based on 1 article reviews
electromagnetic solenoid pinch valve pk305-no - by Bioz Stars, 2026-07
90/100 stars
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90
Bio-Chem Fluidics two three-way pinch valves
Fluidic Multiplexing with <t>Three-Way</t> <t>Solenoid</t> Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a <t>DSCPM</t> unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.
Two Three Way Pinch Valves, supplied by Bio-Chem Fluidics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/pmc09492539-131-1-6?v=Bio-Chem+Fluidics
Average 90 stars, based on 1 article reviews
two three-way pinch valves - by Bioz Stars, 2026-07
90/100 stars
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90
McMaster-Carr pinch valve body
Fluidic Multiplexing with <t>Three-Way</t> <t>Solenoid</t> Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a <t>DSCPM</t> unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.
Pinch Valve Body, supplied by McMaster-Carr, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/us08012555-207-9-14?v=McMaster-Carr
Average 90 stars, based on 1 article reviews
pinch valve body - by Bioz Stars, 2026-07
90/100 stars
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90
Takasago Fluidic Systems solenoid pinch valve pm-0815w
Fluidic Multiplexing with <t>Three-Way</t> <t>Solenoid</t> Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a <t>DSCPM</t> unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.
Solenoid Pinch Valve Pm 0815w, supplied by Takasago Fluidic Systems, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/pmc10985227-218-14-18?v=Takasago+Fluidic+Systems
Average 90 stars, based on 1 article reviews
solenoid pinch valve pm-0815w - by Bioz Stars, 2026-07
90/100 stars
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90
ASCO Numatics pinch valves
Fluidic Multiplexing with <t>Three-Way</t> <t>Solenoid</t> Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a <t>DSCPM</t> unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.
Pinch Valves, supplied by ASCO Numatics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pinch+valve/10__1364_slash_oe__21__031782-109-13-15?v=ASCO+Numatics
Average 90 stars, based on 1 article reviews
pinch valves - by Bioz Stars, 2026-07
90/100 stars
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Image Search Results


Fluidic Multiplexing with Three-Way Solenoid Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a DSCPM unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.

Journal: bioRxiv

Article Title: A Continuous, Low-Flow, and Multiplexing Pumping System for Microfluidics Applications

doi: 10.1101/2024.08.16.608339

Figure Lengend Snippet: Fluidic Multiplexing with Three-Way Solenoid Pinch Valves. A) Fluidic multiplexing (MUXing) schematics with 3-Way Pinch Valves: “wiring diagrams” and valve-state / output truth tables. *The 3 to 1 and 4 to 1 MUX schematics pictured are the optimal obtainable schematics using BEION pinch valves and Shore A 50 durometer hardness tubing, due to the internal solenoid spring being unable to fully compress more than one cross-section of Shore A 50 tubing in the OFF state. These schematics follow the Select N+1 rule, while optimal MUXes using different valves or softer tubing could follow the Select 2 to the N rule. B) i) Main use cases for fluidic MUXes, which are perturbation between sources (“digital” MUXing), and mixing of sources (“analog” MUXing). ii) Mixing diffusion computational fluid dynamic modeling, which shows the diffusion of infused inputs in tubing with three different MUXing cycle periods. iii) Quantitative representation of the data from part (ii). The behavior of the mole fraction can be further modeled by over-damped oscillators, whose dampening coefficients can predict when convergence at a mole fraction of 0.5 is reached. C) Setup and results of an experiment using a 3 to 1 MUX, a DSCPM unit, and dyed input solutions. The DSCPM infused from the three reservoirs at 15μL/min, while the MUX “mixed” the three inputs with a cycle period of 35 seconds.

Article Snippet: This is because the valves used for the DSCPM prototype (12V Three-Way Solenoid Pinch Valves from BEION/PreciGenome) cannot maintain the OFF state when pinching more than one cross-section of tubing.

Techniques: Multiplexing, Diffusion-based Assay