Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

THERMOVAC MEMS Vacuum Gauge Guide

来源: | 作者:FAN | 发布时间 :2026-04-15 | 89 次浏览: | 🔊 Click to read aloud ❚❚ | Share:

Leybold THERMOVAC series MEMS Pirani vacuum transmitters: a complete guide to selection, installation, and troubleshooting

Introduction: When traditional Pirani vacuum gauges cannot meet modern process requirements

In the field of vacuum technology, the accuracy of pressure measurement is directly related to process quality and equipment safety. The traditional Pirani vacuum gauge uses slender hot wires as sensing elements, which are prone to damage due to vibration, impact, or contamination, and have limited response speed. Leybold's THERMOVAC series (TTR 91 N, TTR 96 N, TTR 911 N, TTR 916 N) uses advanced MEMS Pirani solid-state sensors to apply microelectromechanical systems (MEMS) technology to thermal conductivity vacuum measurement. This sensor is composed of heating resistor elements on a silicon chip, which has significant advantages such as anti vibration, anti impact, fast response, and high repeatability. In addition, the coating version (C model) uses Parylene HT coating, which significantly improves its chemical corrosion resistance and is suitable for harsh process environments.

This article is based on the THERMOVAC series product data manual, providing a detailed technical guide from technical principles, model comparison, installation and wiring, gas correction, digital interfaces, fault diagnosis to maintenance and calibration, to help engineers correctly select and use in replacing old models or building new systems.


Principles and advantages of MEMS Pirani technology

1.1 Differences between Traditional Pirani and MEMS Pirani

The traditional Pirani vacuum gauge utilizes the relationship between the heat loss of a hot wire (usually tungsten or platinum) and gas pressure. As the pressure decreases, the number of gas molecules decreases, the heat dissipation of the hot wire deteriorates, the temperature increases, and the resistance changes. This method is simple and reliable, but the hot wire is slender, prone to breakage, sensitive to vibration, and has a large heat capacity, resulting in a slow response.

The MEMS Pirani sensor integrates heating resistors onto tiny silicon membranes and is manufactured using microfabrication technology. Its advantages include:

Extremely high mechanical strength: Silicon chips can withstand severe vibrations and impacts without the risk of filament breakage.

Quick response: The small thermal mass makes the thermal equilibrium time extremely short.

Low power consumption: Operating power consumption<1.2 W.

Good repeatability: The semiconductor process ensures consistency.

Small size: The sensor size is only a few millimeters, which is conducive to integration.

1.2 Measurement principle

THERMOVAC transmitters are based on the principle of thermal conductivity measurement. The heating resistor in the MEMS Pirani sensing unit is subjected to a constant power, and its temperature depends on the thermal conductivity of the surrounding gas. The higher the gas pressure, the higher the thermal conductivity, and the lower the resistance temperature. By measuring the resistance value (or the power required to maintain a constant temperature), the gas pressure can be inferred. The output signal is linearized to provide a voltage proportional to the logarithm of pressure.

1.3 Coating version (C model)

For corrosive process gases such as halogens and acidic gases, the metal and silicon surfaces of standard MEMS Pirani sensors may be corroded. Parylene HT is a high-performance polymer coating with excellent thermal stability (able to withstand 350 ° C for short periods of time) and chemical inertness. The sensors with coated versions (TTR 911 CN, TTR 916 CN) have been coated with Parylene HT, significantly improving their corrosion resistance and making them suitable for harsh chemical processes.


Detailed explanation of product series and models

The THERMOVAC series includes multiple models, covering a wide range of needs from basic analog outputs to advanced digital interfaces.

2.1 TTR 91 N (No Switching Output)

Measurement range: 5.0 × 10 ⁻⁵~Atmospheric pressure (1000 mbar)

Output: Analog voltage (logarithmic characteristic)

Interface: Analog only

Vacuum connection: DN 16 ISO-KF, ⅛ "NPT, DN 16 CF (can be baked to 85 ° C)

Applicable scenarios: General coarse/medium vacuum measurement, connected to a controller (such as PLAY ONE/GRAPHIX ONE)

2.2 TTR 91 SN/TTR 96 N (with switch output)

TTR 91 SN: 2 set point relays (SP1, SP2), DN 16 ISO-KF or NPT

TTR 96 N: 2 set point relays, coated sensor (Parylene HT), suitable for corrosive media

Switch range: 2.7 × 10 ⁻⁴~1000 mbar

Contact capacity: 1 A @ 30 V AC/DC (resistive load)

Contact life: ≥ 100000 times under 1A load; ≥ 2000000 times under 0.2 A load

Applicable scenarios: requiring on-site interlocking, alarm or control (no PLC required)

2.3 TTR 911 N/911 SN/911 CN (digital interface model)

TTR 911 N: Equipped with LCD touch screen display, displaying pressure values, units, and set point status. No digital interface.

TTR 911 SN: with RS 232 interface (+3 set point relays), can be used for communication with PC or PLC.

TTR 911 CN: with EtherCAT or Profibus interface (coated sensor), suitable for industrial fieldbus networks.

  • ABB UFC921A101 Main Control Board
  • ABB UFC921A Main Control Unit
  • ABB UFC911B108 Drive Main Control Unit
  • ABB UFC911B106 Drive Main Control Unit
  • ABB UFC911B101 Drive Main Control Unit
  • ABB UFC765AE102 Drive Control Interface Board
  • ABB UFC762AE101 I/O and Communication Extension Board
  • ABB UFC760BE41 I/O and Communication Extension Board
  • ABB UFC760BE145 I/O and Communication Extension Module
  • ABB UFC721BE101 Fieldbus Communication Adapter Module
  • ABB UFC721AE101 3BHB002916R0101 Network Interface
  • ABB UFC718AE101 HIEE300936R0101 Communication Module
  • ABB UDC920BE01 3BHE034863R0001 Communication Module
  • GE IS420UCSCH1A-F-VO.1-A Controller Module
  • GE UCSC H1 IS420UCSCH1A Controller Station Card
  • ABB UCD240A101 3BHE022287R0101 Process Controller
  • ABB UCD224A103 Process I/O Module
  • ABB UCD224A102 Analog Input Module
  • WOODWARD 9907-838 Load Sharing Module
  • B&R X20CP1485-1 Industrial PC CPU Module
  • ELAU MC-4/11/22/400 4-Axis Servo Drive
  • ELAU C600/10/1/1/1/00 Configurable Safety Relay
  • BENTLY 60R/SIM01 Proximitor Power Supply
  • BENTLY 60R/PPM01 Protection Processing Module
  • BENTLY 60R/PNL01 Operator Control Panel
  • BENTLY 60R/PIM01 Panel Interface Module
  • BENTLY 60R/INP07 Isolated DC Input Module
  • BENTLY 60R/INP01 4-Channel Analog Input Module
  • BENTLY 60R/CMM01 Communication Multiplexer Module
  • BENTLY 60R/CHA02 System Chassis Rack Enclosure
  • BENTLY 60R/CGW01 Condition Monitoring Gateway
  • Pacific Scientific P70360-SDN Servo Motor
  • HONEYWELL 05701-A-0284 Signal Conditioner
  • YOKOGAWA NFCP501-W05 Pressure Transmitter
  • ABB CI541V1 3BSE0146666R1 Control Interface
  • ABB DSTC176 57310001-KT Terminal Base Unit
  • ABB DSDP170K02 3BSE019925R1 Analog Input Module
  • ABB DSBC173 57310001-KH Terminal Base Unit
  • ABB DSAI130K01 5730-030-UC Thermocouple Input
  • ABB DSRF182 57310255-AL Relay Output Module
  • ABB SC520 3BSE003816R1 Compact PLC
  • ABB DSDP140A 57160001-ACT Analog Input Module
  • ABB DSAI130 57120001-P Analog Input Module
  • ABB SCYC55830 3AFE58063282 MCCB
  • Fireye 95DSS3-1CEX UV Flame Scanner
  • ABB DSDP170 57160001-ADF Analog Input Module
  • ABB CI532 3BSC140120R1 Communication Interface
  • ABB DSAO120A 3BSE018293R1 Analog Output Module
  • ABB CI869K01 3BSE049110R1 Ethernet Interface
  • ABB CI522A 3BSE018460R1 PROFIBUS DP Master
  • GUTOR OP6257 Rectifier Control Unit
  • Meggitt C327845-11 Gas Shutoff Valve
  • ABB SACO64D4 4-Pole Digital Annunciator Unit
  • ABB CI522AK04 3BSE018451R1 PROFIBUS DP Module
  • ABB DSAI130DK01 3BSE020828R1 Temperature Input Module
  • ABB CI546 3BSE012610R1 PROFIBUS DP Master Module
  • ABB SC510 3BSE003832R1 Compact PLC Controller
  • ABB CI540 3BSE001077R1 PROFIBUS DP Slave Module
  • ABB CI532V03 3BSE003828R1 AF 100 PROFIBUS DP Master
  • ABB DSBC172 57310256-EL Digital Input Terminal Base
  • Rexroth VT2000-5X Frequency Converter AC Drive
  • GE MAVS01L1AB0751D-140393N Soft Starter
  • ABB REF615 HBFDACADNAA1BCN1XE Relay
  • ABB SACO16D1 1-Pole Digital Annunciator Unit
  • ABB UNITROL 1000 3BHE014557R0003 Static Excitation System
  • Woodward 8273-1011 Electro-Hydraulic Actuator
  • Eaton MC2-442-57CQB-1-2A Molded Case Circuit Breaker
  • Siemens 3AY1715-6L VS30029P VS30041 Auxiliary Contact Block
  • ABB PCD235B101 3BHE032025R0101 Digital I/O Control Module
  • Socapel PAM-R1R-H8F-AP-P V10800 Programmable Axis Manager
  • Rexroth VT-HNC100-1-23N-08-P-0 Digital Hydraulic Amplifier
  • Woodward 5448-890 SPM-D10 Digital Synchronizer
  • TDK-Lambda HWS1500-24 Industrial Power Supply
  • Land M2300/1100C-V Infrared Pyrometer
  • Lantronix 080-332-000-R Industrial Device Server
  • LED E14 3W Miniature LED Lamp
  • LEM LC100S/SP7 Hall Effect Current Sensor
  • Lenel LNL-1320 Dual Reader Interface Module
  • Lenze L5311 Industrial Control Module
  • Lenze EPZ-10203 Safety Controller
  • Lenze EPL10200 Industrial Drive Module
  • Lenze EPL-10200-XX Drive Controller
  • Lam Research 810-801237-021 Industrial Part
  • Lam Research 810-073479-215 Precision Part
  • Lam Research 853-001983-110 Assembly Data
  • Lam Research 810-017034-005 Semiconductor Part
  • Lambda LZS-A1500-3 AC-DC Power Module
  • Lambda LZS-1500-3 Industrial Power Supply
  • LAM 810-072907-005 Chamber Interface Control Module
  • LAM 810-068158-014 Semiconductor Process Control Module
  • LAM 810-800081-018 Vacuum System Interface Module
  • LAM 810-068158-013 Semiconductor Control Module
  • Leybold CM330 Vacuum Gauge Controller
  • Leybold 850-400-G1 Vacuum Pump Module
  • LIFTMASTER 71-1550B18LGH Electric Actuator
  • LKB Bromma 2211 Pressure Sensor
  • LLASERGAS AO2000 LS25 12944-E Gas Analyzer Module
  • Load Controls PH-3A Three-Phase Power Sensor
  • Ludlum 2401-P Pancake GM Survey Meter
  • LUST VF1410LHFS41 AC Servo Drive
  • LUTZE UBE-FL/34M Terminal Block Contact
  • Marposs E78 Dynamic Balancing Controller
  • LENZE E84AVSCE1534VX0 Servo Drive Controller
  • LENZE EVF8212-E Frequency Inverter Drive
  • LENZE EA-4/10 Drive Expansion Module
  • LENZE BG10 Brake Module
  • LEUZE DDLS 200/200.1-50-M12 Data Link Data
  • LEUZE DDLS 200/200.2-50-M12 Optical Data
  • LEYBOLD TURBOVAC 361 Turbomolecular Pump
  • LEYBOLD TR211 Vacuum Controller Data
  • LEYBOLD SV40BI Rotary Vane Pump Specifications
  • LEYBOLD PR25 Vacuum Pressure Sensor Data
  • MARPOSS E9066 Precision Measurement Control Unit
  • MATROX Y7116-04 REV A Industrial Vision Processing Board
  • MATROX Y7116-01 REV A Industrial Video Processing Board
  • MCS SA1000 Industrial Signal Amplifier Module
  • MECS CS-1000 Control System Hardware Data
  • MECS UTX1010 Industrial Control Module
  • MECS UTX-1000A Industrial Module
  • MECS UTV-F2500HA High-Power Thyristor Data
  • MECS EXT-2 Advanced Expansion Interface
  • MECS EXT-1 Interface Extension Module
  • MECS CPU-1000 Industrial PLC Controller
  • MEN A201SR04 Embedded Computer
  • MERAK 681H10078 681K10078 681K10079 Control Modules
  • Mercury Step C-663 Stepper Motor Controller
  • MERLIN GERIN MX+0F 26948 Shunt Trip Release
  • MERLIN GERIN 32570 Miniature Circuit Breaker