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Sensata | Newall simplified DRO selection with two models: the DP700 for small toolroom machines and the DP1200 for large, long-travel machines. The DP1200 features LED displays that are 60% larger than industry standard, improving visibility. Paired with maintenance-free Spherosyn and Microsyn scales, these systems offer reliable, easy-to-read positioning for machinists across all machine sizes.
Sensata | Newall streamlined DRO display selection with the compact DP700 for small machines and the larger DP1200 for long-travel machines. The DP700 now features Tool Datum Memory, enabling independent offsets for multiple tools—ideal for quick-change or turret tool posts. This allows fast, on- the-fly edits without affecting other tools, boosting setup efficiency during turning operations.
DSG and DMG linear encoders are designed to replace glass scales on third-party DROs with Sensata |
Newall’s reliable inductive technology. Built on Spherosyn and Microsyn platforms, they offer IP67 protection and exceptional durability against coolant, oil, and debris—ensuring long-lasting accuracy and performance.
The MAG-TS encoder is ideal for metal fabrication, woodworking, and general measurement tasks. It features a read head that moves along a magnetically encoded tape, which is protected by a stainless steel strip. Easy to install, the tape mounts directly with adhesive or via an optional backer bar.
The MCG-TT Linear Encoder provides an ultra-low encoder profile for restricted spaces without the need to sacrifice performance or environmental robustness. Having a cylindrical shape, the MCG-TT reader- head can be fitted into a bore of only 16mm in diameter offering a wide array of application possibilities
The MHG-TT linear encoder offers differential quadrature TTL output compatible with most PLC and CNC controls, featuring a periodic reference mark for homing. The MCG-TT is a compact, robust encoder with a slim 16mm cylindrical reader-head, providing the same TTL RS422 signals and ideal for tight spaces without compromising performance.
The MHG-VP linear encoder is intended for use in conjunction with Sensata | Newall’s SCC-200 module. The SCC-200 will output a ~1Vpp sine/cosine signal making it ideally suited for CNC and other control feedback.
Sensata | Newall’s NMS 100 is a durable, user-friendly DRO in a rugged aluminum housing, ideal for single-axis applications. It comes in two models and supports both Spherosyn/Microsyn Serial encoders and quadrature TTL linear/rotary encoders, offering flexible integration and easy setup.
Sensata | Newall’s NMS 100 is a robust, easy-to-use single-axis DRO, built in a durable aluminum chassis with a wipe-clean front. Available in two models, it supports Spherosyn/Microsyn Serial and quadrature TTL linear or rotary encoders, offering flexible, reliable positioning for various applications.
Sensata | Newall’s NMS300 Digital Readout System offers reliable, user-friendly performance at great value. Designed for machine tool builders and importers, it pairs with Spherosyn300 and Microsyn300 inductive encoders, delivering consistent accuracy and durability—even in tough workshop environments.
Sensata | Newall’s NMS800 is a premium DRO packed with productivity-boosting features to enhance machine tool efficiency. Paired with Spherosyn or Microsyn Serial inductive encoders, it delivers accurate, maintenance-free performance—even in harsh workshop environments.
The SVV/SVM Sine-Cosine Converter transforms quadrature differential signals from SHG-VV/VM or MHGVV/VM encoders into analog sine and cosine outputs. The SVV outputs 1V p-p, while the SVM provides 11mA p-p, both with differential signals plus a digital reference marker.
The SHG-A2 absolute linear encoder delivers true position instantly at power-up—no batteries or memory needed. It uses RS232 serial communication for PC COM port interfacing, with a USB converter available.
It’s ideal for reliable, battery-free feedback in various motion control applications.
The SHG-A4 absolute linear encoder uses RS485, supporting up to 32 drivers and 32 receivers on a two-wire bus with unique device addressing. It provides true absolute position instantly at power-up without batteries or memory, reliably reacquiring position after power loss or movement.
SSI (Synchronous Serial Interface) is a fast, patented absolute encoder protocol ideal for closed-loop motion control. SSI encoders provide true absolute position instantly at power-up without batteries or memory, reliably reacquiring position after power loss or movement.
The SHG-AF absolute linear encoder uses Fanuc’s proprietary protocol, requiring precise, timely data responses to controller requests. It provides true absolute position instantly at power-up without batteries or memory, reliably reacquiring position after power loss or movement.
The SHG-PV encoder provides differential quadrature outputs matching its 5–28V DC supply voltage. For instance, a 5V input yields 5V output, and a 24V input yields 24V output.
The SHG-TC encoder uses distance-coded technology to determine absolute position after just 20mm ofmovement. Its coded scale provides reference markers compatible with most control systems that process RS422 incremental signals with distance-coded references.
The SHG-TS linear encoder is compatible with the majority of PLC and CNC controls. It has a series of four selectable reference markers spaced every 25.4mm. The reference mark selected to be active is dependent on the rotational alignment of the scale relative to the reader head upon installation.
The SHG-TT is Sensata | Newall’s popular incremental linear encoder, compatible with most PLC and CNC controls. It provides differential quadrature TTL output with a periodic reference mark for homing. Its design allows flexible mounting positions and easy installation with self-aligning brackets, unlike traditional glass scales.
The SHG-VP linear encoder is intended for use with the SCC-200 module. The SCC-200 will output a ~1Vpp sine/cosine signal with a periodic reference marker.
The SHG-VS linear encoder is intended for use with the SCC-200 module. The SCC-200 will output a ~1Vpp sine/cosine signal with a single reference marker. The encoder has a series of four selectable reference markers spaced every 25.4mm. The reference selected for the output reference is dependent on the rotational alignment of the scale relative to the reader head upon installation.
The SPB Linear Encoders are specifically designed to meet the strenuous demands of the press brake industry. Cost-effective encoders offer unsurpassed durability with high resistance to shock, vibration and contamination.
The Spherosyn 2G and Microsyn 2G encoders are built exclusively for Sensata | Newall DROs, featuring a fully sealed design with all components protected. With an IP67 rating, they deliver reliable, accurate performance even when submerged in water, oil, or coolant—offering unmatched durability in harsh environments.
The Spherosyn300 and Microsyn300 encoders are part of Sensata | Newall’s NMS300 DRO System, built for machine tool builders. These inductive encoders are easy to install and deliver consistent accuracy and reliability, even in harsh workshop environments.
Spherosyn Serial and Microsyn Serial encoders use electromagnetic technology for consistent accuracy and reliability. Fully sealed with an IP67 rating, they perform accurately even when submerged in water, oil, or coolant—ideal for harsh shop environments.
The SPT power management encoder interface modules allow 5V SHG-TT/TS or MHG-TT linear encoders to run from a 5–28V power supply, while maintaining 5V differential quadrature output signals to the control system.
The SPV and SPC encoder signal converters interface encoders with various industrial controls, offering output voltages matching their 5–28 VDC supply. The SPV provides 24 VDC HTL outputs, while the SPC delivers open collector outputs for versatile control compatibility.
The SVV/SVM Sine-Cosine converter converts quadrature differential signals from SHG-VV/VM or MHGVV/VM encoders into analog sine and cosine outputs. The SVV outputs 1V p-p, and the SVM outputs 11mA p-p, both with differential signals plus a digital reference marker.
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