In-Stock, Ships 1-2 Days
Part Number:

HS35R1024H39C

Manufacturer: Danaher
Series: Dynapar Encoders

Current response time:

5 Minutes

13 Seconds

  • Rated 4.6 (29 total ratings)
  • Straightforward Pricing: No Rush Fees, No Credit Card Fees
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Worldwide Delivery
Repair Options Available

The HS35R1024H39C encoder is a part of Danaher's Dynapar Encoders series and offers a resolution of up to 1024 PPR. It operates with an input power range of 4.5 VDC to 26 VDC and supports shaft speeds up to 6,000 RPM. Featuring a 90° ± 18° electrical quadrature phasing, it weighs a maximum of 14 ounces.

In-Stock, Ships 1-2 Days
Part Number:

HS35R1024H39C

Manufacturer: Danaher
Series: Dynapar Encoders

Current response time:

5 Minutes

0 Seconds

  • Rated 4.6 (29 total ratings)
  • Straightforward Pricing: No Rush Fees, No Credit Card Fees
Free Ground Shipping
Worldwide Delivery
Repair Options Available

The HS35R1024H39C encoder is a part of Danaher's Dynapar Encoders series and offers a resolution of up to 1024 PPR. It operates with an input power range of 4.5 VDC to 26 VDC and supports shaft speeds up to 6,000 RPM. Featuring a 90° ± 18° electrical quadrature phasing, it weighs a maximum of 14 ounces.

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Product Description

Danaher developed the model HS35R1024H39C Dynapar Encoder for the applications of Industrial automation. The device maintains a constant 1024 PPR resolution when operating from 1 PPR to 1270 PPR. The device contains an encoding scheme using two-channel quadrature telecommunication signals with Z indexing and complementary junctions available.

The HS35R1024H39C Dynapar encoder maintains signal timing reliability at 90° electrical while operating within 18° degrees of variation. The encoder phase sense arrangement dictates that channel A will lead channel B when the shaft turns clockwise while facing the unit from its remote end. The correct direction sensing needed for motion control applications can be achieved through this setup. The device has a maximum shaft speed rating of 6,000 RPM when operating. The starting torque reaches a maximum of 2.5 oz-in and the moment of inertia equals 1.3 x 10⁻⁴ oz-in–sec². The complete unit weight of this device is 14 oz. This sensing component functions between 0°C to +70°C of temperatures. The encoder supports shaft loading conditions that reach up to 40 pounds radial and 30 pounds axial. The Shaft tolerance specification remains unspecified in this model design. The encoder's technical requirements enable its use in applications with designed mechanical stress limitations and stable environmental conditions.

The HS35R1024H39C Dynapar encoder maintains two output selections as a signal compatibility option. The 7273 Open Collector output enables current sinking operation of up to 30 VDC and 40 mA. The 7272 Push-Pull Line Driver maintains a current capability of 40 mA for both sink and source functions. This device achieves a minimum 120 kHz data channel frequency response and 50 kHz frequency response for index channels. The power supply requires 4.5 VDC to 26 VDC and consumes a maximum current of 110 mA other than the output load.

HS35R1024H39C Technical Specifications

Frequency Response (Data): ≥120 kHz
Shaft Radial Load: 40 lbs max
Shaft Axial Load: 30 lbs max
Max Shaft Speed: 6000 RPM
Signal Format: 2‑channel AB with optional Z & complementary outputs
Starting Torque: ≤2.5 oz·in
Operating Temp: 0°C to +70°C
Storage Temp: –40°C to +90°C
Weight: ≤14 oz
Frequency Response (Index): ≥50 kHz
Input Power: 4.5–26 VDC, 110 mA max (no load)
Moment of Inertia: 1.3e-4 oz·in·sec²
Output: Open Collector: 30 VDC max, 40 mA sink
Output: Push‑Pull/Differential: 40 mA sink/source
Phase Sense: A leads B for CW rotation (view from shaft end)
Quadrature Phasing: 90° ±18° electrical
Resolution: 1–1270 PPR (model up to 1024 PPR)

Frequently Asked Questions about HS35R1024H39C


Q: How does the 7272 Push-Pull Line Driver improve data integrity in HS35R1024H39C encoder?

A: The 7272 driver in HS35R1024H39C supports differential output which helps reduce noise susceptibility and improves signal reliability over longer distances.

Q: How does the dual-channel quadrature signal benefit HS35R1024H39C encoder performance?

A: The dual-channel quadrature signal in HS35R1024H39C enables precise directional sensing and high-resolution motion tracking in real-time operations.

Q: How does the moment of inertia affect HS35R1024H39C encoder performance under fast rotational starts?

A: HS35R1024H39C's low moment of inertia minimizes mechanical lag and energy loss, improving its responsiveness during rapid acceleration or deceleration cycles.

Q: Why does HS35R1024H39C encoder support both 7273 and 7272 output types?

A: The HS35R1024H39C encoder supports both output types for compatibility with diverse controller input requirements, optimizing integration in multi-system setups.

Q: Why is phase sense arrangement critical in the HS35R1024H39C encoder's motion detection?

A: The defined phase relationship in HS35R1024H39C allows accurate rotation direction identification, which is crucial in synchronized motion control systems.

Internal Product Review

  • ‘‘The HS35R1024H39C encoder stands out for its 7273/7272 signal compatibility, stable quadrature output, and a wide 0°C to +70°C operating range. Its low starting torque, compact build, and rugged load support make it a reliable choice for precise, high-speed automation tasks.’’

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