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LMDOP423
Novanta IMS LMDOP423 is a stepper motor within the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor with Pulse/Direction I-O functionality. It is designed as a triple (3) motor stack open-loop system. For connections, it utilizes a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector. The supply voltage required for operation ranges from 12Vdc to 48Vdc, with an optimal performance at 24Vdc. It is mounted using a 42x42mm flange and offers a degree of protection rated at IP20. The moment of inertia is specified at 0.082kg.cm^2, indicating standard torque, and it has a stall torque of 62N.cm. The resolution is defined by a 1.8° step angle.
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LMDOP421C
Novanta IMS LMDOP421C is a stepper motor within the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor with Pulse/Direction I-O functionality. This model is designed as a single motor stack open-loop system and offers a variety of connection types including a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector. It operates on a supply voltage range of 12Vdc to 48Vdc, with an optimal performance at 24Vdc. The motor is mounted via a 42x42mm flange and boasts a degree of protection rated at IP65. With a moment of inertia at 0.038kg.cm2 for standard torque, it provides a stall torque of 31N.cm and achieves a resolution with a 1.8° step angle.
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LMDOM851C
Novanta IMS LMDOM851C is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. It operates as a single motor stack open-loop system. This part offers a variety of connection types, including a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector. It supports RS-422 and RS-485 communication protocols. The supply voltage requirement ranges from 12Vdc to 70Vdc, with 24Vdc and 48Vdc being typical values. It is designed for mounting with an 85x85mm flange and has an IP65 degree of protection, making it suitable for environments where dust and water resistance are necessary. The moment of inertia is rated at 0.9kg.cm2, indicating standard torque, and it has a stall torque of 237N.cm. The resolution is defined by a 1.8° step angle.
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LMDOM573C
Novanta IMS LMDOM573C is a stepper motor designed for applications requiring integrated drive functionality and hybrid DC stepper motor capabilities. This model is part of the Stepper Motors (hybrid) sub-range and features a triple (3) motor stack in an open-loop system. It offers a variety of connection types, including a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector, supporting RS-422 and RS-485 communication protocols. The LMDOM573C operates on a supply voltage range of 12Vdc to 60Vdc, with optimal performance at 24Vdc and 48Vdc. It is designed for mounting with a 57x57mm flange and provides a degree of protection rated at IP65. The motor has a moment of inertia of 0.46kg.cm^2, a stall torque of 171N.cm, and a resolution characterized by a 1.8° step angle.
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LMDOE851C
Novanta IMS LMDOE851C is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. This model operates as a single motor stack open-loop system and offers various connection types, including a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector. It supports Ethernet/IP and Modbus TCP communication protocols. The LMDOE851C is designed to work with a supply voltage range of 12Vdc to 70Vdc, with optimal performance at 24Vdc and 48Vdc. It is mounted via an 85x85mm flange and boasts an IP65 degree of protection, making it suitable for environments requiring a high degree of protection. The motor has a moment of inertia of 0.9kg.cm^2, providing a standard torque, and a stall torque of 237N.cm. It operates with a resolution of a 1.8° step angle.
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LMDOE572
Novanta IMS LMDOE572 is a stepper motor designed for applications requiring integrated drive functionality and hybrid DC stepper motor capabilities. This model is part of the Stepper Motors (hybrid) sub-range and features a double motor stack in an open-loop system configuration. It offers a variety of connection types, including a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector, ensuring versatile integration options. The LMDOE572 supports Ethernet/IP and Modbus TCP communication protocols, catering to a wide range of industrial automation needs. It operates on a supply voltage range of 12Vdc to 60Vdc, with 24Vdc and 48Vdc being typical values. The motor is designed for mounting via a 57x57mm flange, providing a secure and standardized installation method. With a degree of protection rated at IP20, it is suited for use in environments where protection against solid objects is necessary. The motor's moment of inertia is specified at 0.26kg.cm2, and it delivers a stall torque of 112N.cm. Its resolution is defined by a 1.8° step angle, allowing for precise control in a variety of applications.
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LMDOA851C
Novanta IMS LMDOA851C is a stepper motor characterized by its integration of a driver and a hybrid DC stepper motor within a single motor stack open-loop system. This part falls under the sub-range of hybrid stepper motors and is designed to connect via a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector. It operates on a CANopen communication protocol and is powered by a supply voltage ranging from 12Vdc to 70Vdc, with optimal performance at 24Vdc or 48Vdc. The LMDOA851C features an 85x85mm flange for mounting, ensuring compatibility with a variety of setups. It boasts a degree of protection rated at IP65, making it suitable for environments where dust and water resistance are necessary. The motor's moment of inertia is specified at 0.9kg.cm^2, with a standard torque, and it delivers a stall torque of 237N.cm. Its resolution is defined by a 1.8° step angle, facilitating precise control over movement.
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LMDOA573C
Novanta IMS LMDOA573C is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and a hybrid DC stepper motor design. This model is characterized by a triple (3) motor stack open-loop system. It offers a variety of connection types, including a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector, supporting CANopen communication protocol. The LMDOA573C operates on a supply voltage ranging from 12Vdc to 60Vdc, with optimal performance at 24Vdc and 48Vdc. It is designed for mounting with a 57x57mm flange and boasts a degree of protection rated at IP65. The motor's moment of inertia is specified at 0.46kg.cm^2, and it delivers a stall torque of 171N.cm. Its resolution is defined by a 1.8° step angle.
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LMDOA573
Novanta IMS LMDOA573 is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. This model is built with a triple (3) motor stack open-loop system and offers various connection types, including a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector. It supports the CANopen communication protocol. The LMDOA573 operates on a supply voltage range of 12Vdc to 60Vdc, with optimal performance at 24Vdc or 48Vdc. It is designed for mounting with a 57x57mm flange and has a degree of protection rated at IP20. The motor's moment of inertia is specified at 0.46kg.cm^2, and it delivers a stall torque of 171N.cm. The resolution of this stepper motor is defined by a 1.8° step angle.
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LMDCP851C
Novanta IMS LMDCP851C is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor with Pulse/Direction I-O. It is designed with an incremental magnetic encoder, a single motor stack, and closed-loop hMTechnology. The connection is facilitated through a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector. This stepper motor operates on a supply voltage ranging from 12Vdc to 70Vdc, with optimal performance at 24Vdc and 48Vdc. It is mounted using an 85x85mm flange and offers a degree of protection rated at IP65. The moment of inertia is specified at 0.9kg.cm2, indicating standard torque, and it has a stall torque of 237N.cm. The resolution is defined by a 1.8° step angle.
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LMDCP571C
Novanta IMS LMDCP571C is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor with Pulse/Direction I-O. It is designed with an incremental magnetic encoder, a single motor stack, and operates on closed-loop hMTechnology. The connection is facilitated through a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector. This stepper motor supports a supply voltage range of 12Vdc to 60Vdc, with optimal performance at 24Vdc and 48Vdc. It is mounted via a 57x57mm flange and offers a degree of protection rated at IP65. The LMDCP571C has a moment of inertia of 0.18kg.cm^2, a stall torque of 73N.cm, and a resolution characterized by a 1.8° step angle.
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LMDCM853
Novanta IMS LMDCM853 is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and a hybrid DC stepper motor design. It incorporates an incremental magnetic encoder with a triple (3) motor stack and operates on closed-loop hMTechnology. The connection options include a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector, supporting RS-422 and RS-485 communication protocols. This stepper motor is designed for a supply voltage range of 12Vdc to 70Vdc, with optimal performance at 24Vdc and 48Vdc. It mounts via an 85x85mm flange and offers a degree of protection rated at IP20. The LMDCM853 has a moment of inertia of 2.7kg.cm^2, providing a standard torque, and a stall torque of 650N.cm. Its resolution is defined by a 1.8° step angle.
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LMDCE852
Novanta IMS LMDCE852 is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. It incorporates an incremental magnetic encoder with a double motor stack and operates on closed-loop hMTechnology. The connection options include a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector. It supports Ethernet/IP and Modbus TCP communication protocols. The supply voltage requirement ranges from 12Vdc to 70Vdc, with 24Vdc and 48Vdc being typical. It is designed for mounting with an 85x85mm flange and has an IP20 degree of protection. The moment of inertia is specified at 1.35kg.cm2, indicating standard torque, and it has a stall torque of 339N.cm. The resolution is defined by a 1.8° step angle.
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LMDCE421
Novanta IMS LMDCE421 is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. It incorporates incremental magnetic encoding with a single motor stack and operates on closed-loop hMTechnology. The connection options include a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector, supporting Ethernet/IP and Modbus TCP communication protocols. This motor is designed for a supply voltage range of 12Vdc to 48Vdc, with an optimal performance at 24Vdc. It mounts via a 42x42mm flange and offers a degree of protection rated at IP20. The LMDCE421 has a moment of inertia of 0.038kg.cm^2, providing a standard torque, and a stall torque of 31N.cm. Its resolution is defined by a 1.8° step angle.
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LMDCA853C
Novanta IMS LMDCA853C is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. It incorporates an incremental magnetic encoder with a triple (3) motor stack and operates on closed-loop hMTechnology. The connection is facilitated through a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector, supporting CANopen communication protocol. This stepper motor is designed for a supply voltage range of 12Vdc to 70Vdc, with optimal performance at 24Vdc and 48Vdc. It is mounted via an 85x85mm flange and offers a degree of protection rated at IP65. The moment of inertia is specified at 2.7kg.cm2 for standard torque, with a stall torque of 650N.cm and a resolution characterized by a 1.8° step angle.
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LMDCA573C
Novanta IMS LMDCA573C is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and a hybrid DC stepper motor design. It is equipped with an incremental magnetic encoder, triple motor stack, and operates on closed-loop hMTechnology. The connection options include a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector, supporting CANopen communication protocol. This stepper motor is designed for a supply voltage range of 12Vdc to 60Vdc, with optimal performance at 24Vdc and 48Vdc. It mounts via a 57x57mm flange and offers a degree of protection rated at IP65. The moment of inertia is specified at 0.46kg.cm^2, with a stall torque of 171N.cm and a resolution characterized by a 1.8° step angle.
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LMDCA421C
Novanta IMS LMDCA421C is a stepper motor designed for precision applications, featuring an integrated driver and hybrid DC stepper motor technology. It incorporates an incremental magnetic encoder and operates within a closed-loop system utilizing hMTechnology. This motor is equipped with multiple connection options, including a 4-pin M12 male connector, a 12-pin M12 male connector, and a 5-pin M12 male connector, supporting CANopen communication protocol. It operates on a supply voltage range of 12Vdc to 48Vdc, typically at 24Vdc. The motor is designed for mounting with a 42x42mm flange and offers a degree of protection rated at IP65. With a moment of inertia of 0.038kg.cm^2 for standard torque and a stall torque of 31N.cm, it achieves a resolution of 1.8° step angle.
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LMDCA421
Novanta IMS LMDCA421 is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. It incorporates an incremental magnetic encoder, a single motor stack, and operates on closed-loop hMTechnology. The connection options include a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector, ensuring versatile connectivity. It supports the CANopen communication protocol for seamless integration into various systems. The LMDCA421 operates on a supply voltage range of 12Vdc to 48Vdc, with an optimal performance at 24Vdc. It is designed for mounting with a 42x42mm flange and offers a degree of protection rated at IP20. The motor has a moment of inertia of 0.038kg.cm^2, providing a standard torque, and a stall torque of 31N.cm. It achieves a resolution of 1.8° step angle, making it suitable for precise control applications.
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LMDAM572
Novanta IMS LMDAM572 is a stepper motor within the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. It incorporates an absolute multi-turn encoder and a double motor stack with closed-loop hMTechnology. This part offers a variety of connection types, including a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector. It supports RS-422 and RS-485 communication protocols. The supply voltage ranges from 12Vdc to 60Vdc, with optimal performance at 24Vdc and 48Vdc. The LMDAM572 is designed for mounting with a 57x57mm flange and has an IP20 degree of protection. Its moment of inertia is rated at 0.26kg.cm^2, and it delivers a stall torque of 112N.cm. The resolution is specified as a 1.8° step angle.
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LMDAM423
Novanta IMS LMDAM423 is a stepper motor that falls under the hybrid stepper motors sub-range, featuring an integrated driver and hybrid DC stepper motor design. It is equipped with an absolute multi-turn encoder and a triple motor stack, operating on a closed-loop hMTechnology. The connection options include a 2-pin screw-lock connector, a 7-pin spring-clamp connection, and a 9-pin D-sub male connector, supporting RS-422 and RS-485 communication protocols. The supply voltage requirement is 12Vdc to 48Vdc, with an optimal performance at 24Vdc. It is designed for mounting with a 42x42mm flange and has an IP20 degree of protection. The motor presents a moment of inertia of 0.082kg.cm^2, offering a standard torque, a stall torque of 62N.cm, and a resolution characterized by a 1.8° step angle.
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