HS2010248444704

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The HS2010248444704 is a sealed hollowshaft incremental encoder configured for 1024 Pulses per Revolution (PPR). Manufactured by Danaher as part of their Dynapar Encoders series, it features a NEMA4/IP65 enclosure, making it dustproof and washdown capable. This encoder supports shaft speeds up to 6000 RPM.

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Product Description:

Danaher manufactures the HS201024844704 which is a Hollowshaft optical encoder for the Dynapar HS20 series. The encoder is designed for applications that require precise input on speed and position. It can link to a variety of motion control systems used in industrial robotics. The HS2 encoder is well-made and consistently performs in the same manner.

With a precision of 1,024 pulses per revolution, the encoder sends out accurate signals for tracking motion. Because it can accept voltages between 5 and 26 VDC, it can work with a variety of power sources. The 5/8-inch diameter of the hollow shaft makes it easy to line up with normal motor shafts. The encoder has a shaft seal that protects the area where the shaft meets the housing. This encoder has an IP65 grade, which means that it protects internal parts from dust and some water. The CE mark guarantees that the encoder complies with all European safety regulations. The HS2 encoder is suitable for tasks that necessitate position feedback in workplace automation settings.

The NEMA 4 rating of the HS201024844704 hollow optical encoder indicates the enclosure's resistance to solid particles and cascading water. Since the shaft is hollow and the mounting is also hollow, it is easy to clamp on the shaft without the need for connections. The encoder has a bolt circle that is 1.6 inches in diameter. The sensor technology used is optical, which makes sure that a clean signal is sent by detecting light. Under normal conditions, the encoder works in a temperature range of 0 to 70 °C, which provides thermal stability. The encoder keeps the integrity of the system input by using both optical sensing and sealed shaft protection. The encoder works as an accurate feedback part in systems for controlling motion.

Connector compatibility
MS3106A: 6-pin, 7-pin, and 10-pin options
Enclosure rating
NEMA 4 / IP65, dustproof, washdown capable
Encoder type
Sealed hollowshaft incremental (Dynapar HS20)
Frequency response
≥100 kHz (outputs), ≥75 kHz (index)
Input voltage
5–26 VDC, ≤100 mA (no load)
Max shaft speed
6000 RPM
Operating temperature
0 to +70 °C standard; 0 to +85 °C extended
Output current
40 mA max for push-pull, line driver & open collector
Output format
Quadrature AB, optional index Z, complementary outputs
Phase sense
A leads B for CCW rotation
Phasing
90° ±22.5° electrical
Resolution
50–2540 PPR
Shaft bore
6–16 mm
Shaft design
Hollowshaft (compact size)
Shaft loading
35 lb radial; 24 lb axial
Symmetry
180° ±18° electrical

Frequently Asked Questions about HS2010248444704:

Q: Does HS2010248444704 encoder include a shaft seal?

A: Yes, the encoder includes a shaft seal. It protects the internal components from contaminants at the shaft interface.

Q: Why does HS2010248444704 support 5–26 VDC input?

A: This voltage range ensures compatibility with a wide range of controllers. It offers flexibility in electrical system integration.

Q: How does HS2010248444704 benefit from IP65 rating?

A: IP65 rating protects the unit against dust and low-pressure water jets. It ensures long-term reliability in enclosed environments.

Q: Why does HS2010248444704 use hollowshaft mounting design?

A: Hollowshaft mounting simplifies installation. It removes the need for couplings and allows direct clamping on the motor shaft.

Q: Do HS2010248444704 encoders operate under 0–70 °C?

A: Yes, the encoder is rated for that temperature range. It maintains performance stability across standard industrial thermal conditions.


Internal Product Review

  • ‘‘The HS2010248444704 encoder from Dynapar delivers reliable performance with optical sensing and IP65 protection. It supports 5–26 VDC input and NEMA 4 enclosure standard. The 0–70 °C operating range and sealed hollowshaft design ensure stable output across varying operational demands.’’

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