
Programmable Servo Drive
36V 4A with CAN
PRO-A0xV36x-SA-CAN Drive Data Sheet (Stand-alone, CAN)
Product Details
Overview & Features
Compact. Intelligent.
The ElectroCraft PRO Series programmable DC motor drives are based on the latest in digital drive technology, offering a cost effective, compact and modular solution for the control of rotary or linear brushless, stepper or PMDC brush motors. The ElectroCraft PRO Series drives integrate advanced motion control functionality in two form factors: PCB Mount (PE models) or built into a stand-alone package with pluggable connectors (SA models).
With a comprehensive and flexible motion instruction set, the PRO-A04V36A is an intelligent programmable servo drive that is useful for a wide variety of motor architectures, including Brushless DC Motors, PMDC Brush Motors, DC Stepper Motors and Stepper Linear Actuators, and a wide variety of applications.
There are four standard capacities available in the model lineup with customized versions available for large volume OEM requirements. Now available with CAN Bus!

PRO-A04V36A-PE-CAN (PCB Mount, CAN)
Motor – sensor configurations
| Sensor Motor | PMSM | BLDC |
DC BRUSH |
STEP (2-ph) |
STEP (3-ph) |
|---|---|---|---|---|---|
| Incr. Encoder | ✓ | ✓ | ✓ | ||
| Incr. Encoder + Hall | ✓ | ✓ | |||
| Analog Sin/Cos encoder | ✓ | ||||
| Linear Halls | ✓ | ||||
| Digital Halls | ✓ | ||||
| Tacho | ✓ | ||||
| Open-loop (no sensor) | ✓ | ✓ |
Features
- Motor supply: 9-36V. Optional logic supply: 7-36V
- Output current: 4A cont. (BLDC mode); 10APEAK, up to 100KHz PWM
- Digital Hall sensor interface (single-ended and open collector)
- Incremental encoder interface (single-ended, open collector and differential)
- Linear Hall sensors interface
- Analogue sin/cos encoder interface (differential 1Vpp)
- 5 digital inputs, 5-36V, NPN: Enable, 2 for limit switches, 2 general-purpose
- 4 digital outputs, 5-36V, 0.5A, NPN O.C.: Ready, Error, 2 general-purpose
- 2 analogue inputs: 12-bit, 0-5V: Reference, Feedback or general purpose
- RS-232 serial & CAN-bus 2.0B interfaces with h/w selectable addresses
- MPLCAN and CANopen (CiA 301v4.2 and 402v3.0) protocols
- 2K × 16 SRAM for data acquisition
- 4K × 16 E²ROM to store MPL motion programs and data
- Operating ambient temperature: 0-40°C (over 40°C with derating)
- Hardware Protections: short-circuit between motor phases and from motor phases to GND, over-voltage, under-voltage and I²t
- Firmware: F508M+ or F523E+
Electrical characteristics
All parameters measured under the following conditions (unless otherwise specified):
- Tamb = 0...40°C, VLOG = 24 VDC; VMOT = 36 VDC
- Supplies start-up / shutdown sequence: -any-
- Load current (sinusoidal amplitude / continuous BLDC, DC, stepper) = 2A
| Operating Conditions | Min. | Typ. | Max. | Units | ||
|---|---|---|---|---|---|---|
| Ambient temperature1 | 0 | +40 | °C | |||
| Ambient humidity | Non-condensing | 0 | 90 | %Rh | ||
| Altitude / pressure2 | Altitude (vs. sea level) | -0.1 | 0 ÷ 2.5 | Km | ||
| Ambient Pressure | 0 | 0.75 ÷ 1 | 10.0 | atm | ||
| Storage Conditions | Min. | Typ. | Max. | Units | ||
| Ambient temperature | -40 | +85 | °C | |||
| Ambient humidity | Non-condensing | 0 | 100 | %Rh | ||
| Ambient Pressure | 0 | 10.0 | atm | |||
| ESD capability (Human body model) |
Not powered; applies to any accessible part | ±0.5 | kV | |||
| Original packaging | ±15 | kV | ||||
| Mechanical Mounting | Min. | Typ. | Max. | Units | ||
| Airflow | Natural convection3, closed box | |||||
| Spacing required for vertical mounting | Between adjacent drives | 30 | mm | |||
| Between drives and nearby walls | 30 | mm | ||||
| Between drives and roof-top | 20 | mm | ||||
| Spacing required for horizontal mounting | Between adjacent drives | 4 | mm | |||
| Between drives and nearby walls | 5 | mm | ||||
| Space needed for drive removal | 10 | mm | ||||
| Between drives and roof-top | 15 | mm | ||||
| Insertion force | Using recommended mating connectors; without retainer | 20 | 36 | N | ||
| Extraction force | 5 | 10 | N | |||
| Environmental Characteristics | Min. | Typ. | Max. | Units | ||
| Size (Length x Width x Height) | Without mating connector / retainer | 56 x 28.8 x 7.6 | mm | |||
| ~2.2 x 1.1 x 0.3 | inch | |||||
| With recommended mating vertical connector and retainer. Height above PCB surface. | 63.3 x 32.6 x 16.3 | mm | ||||
| ~2.5 x 1.3 x 0.64 | inch | |||||
| With recommended mating horizontal connector. Height above PCB surface. | 56 x 41.2 x 7.6 | mm | ||||
| ~2.2 x 1.6 x 0.3 | inch | |||||
| Weight | 10 | g | ||||
| Power dissipation | Idle (no load) | 1 | W | |||
| Operating | 3 | W | ||||
| Efficiency | 98 | % | ||||
| Cleaning agents | Dry cleaning is recommended | Only Water- or Alcohol-based | ||||
| Protection degree | According to IEC60529, UL508 | IP00 | - | |||
| Logic Supply Input (+VLOG) | Min. | Typ. | Max. | Units | ||
| Supply voltage | Nominal values | 7 | 36 | VDC | ||
| Absolute maximum values, drive operating but outside guaranteed parameters | 4.9 | 40 | VDC | |||
| Absolute maximum values, continuous | -0.7 | 42 | VDC | |||
| Absolute maximum values, surge (duration ≤ 10ms)† | -1 | +45 | V | |||
| Supply current | +VLOG = 7V | 125 | 300 | mA | ||
| +VLOG = 12V | 80 | 200 | ||||
| +VLOG = 24V | 50 | 125 | ||||
| +VLOG = 40V | 40 | 100 | ||||
| Motor Supply Input (+VMOT) | Min. | Typ. | Max. | Units | ||
| Supply voltage | Nominal values | 9 | 36 | VDC | ||
| Absolute maximum values, drive operating but outside guaranteed parameters | 8.5 | 40 | VDC | |||
| Absolute maximum values, continuous | -0.7 | 42 | VDC | |||
| Absolute maximum values, surge (duration ≤ 10ms)† | -1 | +45 | V | |||
| Supply current | Idle | 1 | 5 | mA | ||
| Operating | -10 | ±4 | +10 | A | ||
| Absolute maximum value, short-circuit condition (duration ≤ 10ms)† | 15 | A | ||||
| Motor Outputs (A/A+, B/A-, C/B+, CR/B-) | Min. | Typ. | Max. | Units | ||
| Nominal output current, continuous | For DC brushed, steppers and BLDC motors with Hall-based trapezoidal control | 4 | A | |||
| For PMSM motors with FOC sinusoidal control (sinusoidal amplitude value) | 4 | |||||
| For PMSM motors with FOC sinusoidal control (sinusoidal effective value) | 2.82 | |||||
| Motor output current, peak | Maximum 2.5s | -10 | +10 | A | ||
| Short-circuit protection threshold | Measurement range | ±13 | ±15 | A | ||
| Short-circuit protection delay | 5 | 10 | µs | |||
| On-state voltage drop | Nominal output current; including typical mating connector contact resistance | ±0.3 | ±0.5 | V | ||
| Off-state leakage current | ±0.5 | ±1 | mA | |||
| Motor inductance (phase-to-phase) | Recommended value, current ripple max. ±5% of full range; +VMOT = 36 V | FPWM | µH | |||
| 20 kHz | 250 | |||||
| 40 kHz | 120 | |||||
| 60 kHz | 100 | |||||
| 80 kHz | 60 | |||||
| 100 kHz | 45 | |||||
| Minimum value, limited by short-circuit protection; +VMOT = 36 V | 20 kHz | 75 | µH | |||
| 40 kHz | 25 | |||||
| 60 kHz | 20 | |||||
| 80 kHz | 10 | |||||
| 100 kHz | 5 | |||||
| Motor electrical time-constant (L/R) | Recommended value for ±5% current measurement error | 20 kHz | 250 | µs | ||
| 40 kHz | 125 | |||||
| 60 kHz | 100 | |||||
| 80 kHz | 63 | |||||
| 100 kHz | 50 | |||||
| Current measurement | FS = Full Scale accuracy | ±4 | ±8 | %FS | ||
1 Operating temperature can be extended up to +65°C with reduced current and power ratings.
2 The drive can be operated in vacuum (no altitude restriction), but at altitudes over 2,500m, current and power rating are reduced due to thermal dissipation efficiency.
3 In case of forced cooling (conduction or ventilation) the spacing requirements may drop substantially down to zero as long as the ambient temperature is kept below the maximum operating limit.
PRO-A04V36A-SA-CAN (Stand-alone, CAN)
Motor – sensor configurations
| Sensor Motor | PMSM | BLDC |
DC BRUSH |
STEP (2-ph) |
STEP (3-ph) |
|---|---|---|---|---|---|
| Incr. Encoder | ✓ | ✓ | ✓ | ||
| Incr. Encoder + Hall | ✓ | ✓ | |||
| Analog Sin/Cos encoder | ✓ | ||||
| Tacho | ✓ | ||||
| Open-loop (no sensor) | ✓ | ✓ |
Features
- Motor supply: 9-36V. Optional logic supply: 9-36V
- Output current: 4A cont. (BLDC mode); 10APEAK, up to 100KHz PWM
- Digital Hall sensor interface (single-ended and open collector)
- Incremental encoder interface (differential)
- Analogue sin/cos encoder interface (differential 1Vpp)
- 5 digital inputs, 5-36V, PNP or NPN software selectable: Enable, 2 for limit switches, 2 general-purpose
- 4 digital outputs, 5-36V, 0.5A, NPN open-collector: Ready, Error, 2 general-purpose
- 1 analogue input: 12-bit, 0-5V: Reference/Feedback or general purpose
- RS-232 serial & CAN-bus 2.0B interfaces with H/W selectable addresses
- MPLCAN and CANopen (CiA 301 v4.2 and CiA 402 v3.0) protocols selectable by jumper
- 2K × 16 SRAM for data acquisition
- 4K × 16 E²ROM to store MPL motion programs and data
- Operating ambient temperature: 0-40°C (over 40°C means derating)
- Hardware Protections: short-circuit between motor phases and from motor phases to GND, over-voltage, under-voltage and I²t
- Firmware: F508M+ or F523E+
Electrical characteristics
All parameters measured under the following conditions (unless otherwise specified):
- Tamb = 0...40°C, VLOG = 24 VDC; VMOT = 36 VDC
- Supplies start-up / shutdown sequence: -any-
- Load current (sinusoidal amplitude / continuous BLDC, DC, stepper) = 4 A
| Operating Conditions | Min. | Typ. | Max. | Units | ||
|---|---|---|---|---|---|---|
| Ambient temperature2 | 0 | +40 | °C | |||
| Ambient humidity | Non-condensing | 0 | 90 | %Rh | ||
| Altitude / pressure2 | Altitude (vs. sea level) | -0.1 | 0 ÷ 2.5 | 2 | Km | |
| Ambient Pressure | 02 | 0.75 ÷ 1 | 10.0 | atm | ||
| Storage Conditions | Min. | Typ. | Max. | Units | ||
| Ambient temperature | -40 | +85 | °C | |||
| Ambient humidity | Non-condensing | 0 | 100 | %Rh | ||
| Ambient Pressure | 0 | 10.0 | atm | |||
| Mechanical Mounting | Min. | Typ. | Max. | Units | ||
| Airflow | natural convection4, closed box | |||||
| Environmental Characteristics | Min. | Typ. | Max. | Units | ||
| Size (Length x Width x Height) | Without mating connectors | 80 x 55 x 16.3 | mm | |||
| ~3.15 x 2.17 x 0.64 | inch | |||||
| With recommended mating connectors | 84 x 63 x 16.3 | mm | ||||
| ~3.3 x 2.5 x 0.64 | inch | |||||
| Weight | Without mating connectors | 70 | g | |||
| Power dissipation | Idle (no load) | 1 | W | |||
| Operating | 3 | 5 | ||||
| Efficiency | 98 | % | ||||
| Cleaning agents | Dry cleaning is recommended | Only Water- or Alcohol-based | ||||
| Protection degree | According to IEC60529, UL508 | IP20 | - | |||
| Logic Supply Input (+VLOG) | Min. | Typ. | Max. | Units | ||
| Supply voltage | Nominal values | 9 | 36 | VDC | ||
| Absolute maximum values, drive operating but outside guaranteed parameters | 5.9 | 39 | VDC | |||
| Absolute maximum values, continuous | 0 | 39 | VDC | |||
| Absolute maximum values, surge (duration ≤ 10ms)† | 0 | +45 | V | |||
| Supply current | No Load on Digital Outputs | +VLOG = 9V | 125 | 300 | mA | |
| +VLOG = 12V | 80 | 200 | ||||
| +VLOG = 24V | 50 | 125 | ||||
| +VLOG = 39V | 40 | 100 | ||||
| Motor Supply Input (+VMOT) | Min. | Typ. | Max. | Units | ||
| Supply voltage | Nominal values | 9 | 36 | VDC | ||
| Absolute maximum values, drive operating but outside guaranteed parameters | 8.5 | 40 | VDC | |||
| Absolute maximum values, continuous | 0 | 42 | VDC | |||
| Absolute maximum values, surge (duration ≤ 10ms)† | 0 | +45 | V | |||
| Supply current | Idle | 1 | 5 | mA | ||
| Operating | -10 | ±4 | +10 | A | ||
| Absolute maximum value, short-circuit condition (duration ≤ 10ms)† | 15 | A | ||||
| Motor Outputs (A/A+, B/A-, C/B+, BR/B-) | Min. | Typ. | Max. | Units | ||
| Nominal output current, continuous | For DC brushed, steppers and BLDC motors with Hall-based trapezoidal control | 4 | A | |||
| For PMSM motors with FOC sinusoidal control (sinusoidal amplitude value) | 4 | |||||
| For PMSM motors with FOC sinusoidal control (sinusoidal effective value) | 2.82 | |||||
| Motor output current, peak | Maximum 2.5s | -10 | +10 | A | ||
| Short-circuit protection threshold | Measurement range | ±13 | ±15 | A | ||
| Short-circuit protection delay | 5 | 10 | µs | |||
| On-state voltage drop | Nominal output current; including typical mating connector contact resistance | ±0.3 | ±0.5 | V | ||
| Off-state leakage current | ±0.5 | ±1 | mA | |||
| Motor inductance (phase-to-phase) | Recommended value, current ripple max. ±5% of full range; +VMOT = 36 V | FPWM | µH | |||
| 20 kHz | 250 | |||||
| 40 kHz | 120 | |||||
| 60 kHz | 100 | |||||
| 80 kHz | 60 | |||||
| 100 kHz | 45 | |||||
| Minimum value, limited by short-circuit protection; +VMOT = 36 V | 20 kHz | 75 | µH | |||
| 40 kHz | 25 | |||||
| 60 kHz | 20 | |||||
| 80 kHz | 10 | |||||
| 100 kHz | 5 | |||||
| Motor electrical time-constant (L/R) | Recommended value for ±5% current measurement error | 20 kHz | 250 | µs | ||
| 40 kHz | 125 | |||||
| 60 kHz | 100 | |||||
| 80 kHz | 63 | |||||
| 100 kHz | 50 | |||||
| Current measurement | FS = Full Scale accuracy | ±4 | ±8 | %FS | ||
1 For full RS-422 compliance, 120Ω termination resistors must be connected across the differential pairs, as close as possible to the drive input pins.
2 For many applications, an 120Ω termination resistor should be connected across SIN+ to SIN-, and across COS+ to COS-. Please consult the feedback device datasheet for confirmation.
3 "FS" stands for "Full Scale"
Dimensional Drawing

Motor Compatibility
Brushless DC Motors
Linear Actuators
Please contact ElectroCraft if the motor you are searching for is not included in the charts below.
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| RPX, LRPX | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
RPX16-007V12 | 1.6 | 3.7 | 12 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | |
| RPX16-007V24 | 0.8 | 1.9 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| RPX16-007V48 | 0.4 | 0.9 | 48 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| RPX16-013V12 | 2.4 | 6.6 | 12 | PRO-A08V48B | PRO-A04V36A | CPP-A06V48A | CPP-A06V48A | ||
| RPX16-013V24 | 1.2 | 3.3 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| RPX16-013V48 | 0.6 | 1.7 | 48 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX16-013V12 (4:1 to 23:1) | 2.4 to 2.5 | 5.3 to 6.8 | 12 | PRO-A08V48B | PRO-A04V36A | CPP-A06V48A | CPP-A06V48A | ||
| LRPX16-013V12 (31:1 to 941:1) | 0.6 to 2.3 | 0.9 to 4.1 | 12 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX16-013V24 (all ratios) | 0.3 to 1.2 | 0.5 to 3.3 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX16-013V48 (all ratios) | 0.2 to 0.6 | 0.2 to 1.7 | 48 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| RPX22-042V12 | 5.0 | 10.8 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | ||
| RPX22-042V24 | 2.5 | 5.5 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-A06V48A | CPP-A06V48A | ||
| RPX22-042V48 | 1.3 | 2.8 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | CPP-A06V48A | ||
| LRPX22-042V12 (3:1 to 66:1) | 3.5 | 5.0 to 10.8 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX22-042V12 (81:1 ) | 3.2 | 4.0 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | CPP-A06V48A | ||
| LRPX22-042V12 (94:1 to 624:1) | 0.7 to 2.8 | 0.9 to 3.5 | 12 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX22-042V24 (3:1 to 19:1) | 1.8 | 5.5 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-A06V48A | CPP-A06V48A | ||
| LRPX22-042V24 (27:1 to 624:1) | 0.4 to 1.8 | 0.4 to 4.2 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX22-042V48 (3:1 to 624:1) | 0.2 to 0.9 | 0.2 to 2.8 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | CPP-A06V48A | ||
| RPX32-090V12 | 7.6 | 23.5 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A12V48A | ||
| RPX32-090V24 | 3.8 | 11.8 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A | ||
| RPX32-090V48 | 1.9 | 5.9 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX32-090V12 (3:1 to 19:1) | 4.2 | 23.5 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A06V48A | ||
| LRPX32-090V12 (24:1 to 28:1) | 4.2 | 16.6 to 19.6 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A06V48A | ||
| LRPX32-090V12 (33:1) | 4.2 | 14.0 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A | ||
| LRPX32-090V12 (50:1 to 60:1) | 4.2 | 15.5 to 18.3 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A06V48A | ||
| LRPX32-090V12 (76:1) | 4.2 | 12.1 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A | ||
| LRPX32-090V12 (90:1 to 192:1) | 4.0 to 4.2 | 4.8 to 10.2 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX32-090V12 (246:1 to 291:1) | 2.9 to 3.4 | 3.5 to 4.2 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | CPP-A06V48A | ||
| LRPX32-090V12 (344:1 to 999:1) | 0.8 to 2.5 | 0.9 to 3.0 | 12 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX32-090V24 (3:1 to 19:1) | 2.1 | 11.8 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A | ||
| LRPX32-090V24 (24:1 to 28:1) | 2.1 | 8.3 to 9.8 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX32-090V24 (33:1 to 107:1) | 2.1 | 4.3 to 7.0 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-A06V48A | CPP-A06V48A | ||
| LRPX32-090V24 (116:1 to 999:1) | 0.4 to 2.1 | 0.5 to 4.0 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX32-090V48 (3:1 to 24:1) | 1.1 | 4.9 to 5.9 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX32-090V48 (192:1 to 999:1) | 0.2 to 1.0 | 0.2 to 4.1 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | CPP-A06V48A | ||
| RPX32-150V12 | 12.6 | 36.8 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| RPX32-150V24 | 6.7 | 19.6 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | ||
| RPX32-150V48 | 3.3 | 9.8 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| RPX40-125V12 | 6.6 | 19.7 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | ||
| RPX40-125V24 | 3.3 | 9.8 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| RPX40-125V48 | 1.6 | 4.9 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| RPX40-250V12 | 10.9 | 33.3 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| RPX40-250V24 | 5.5 | 16.7 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | ||
| RPX40-250V48 | 2.7 | 8.3 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX40-250V12 (3:1 to 63:1) | 6.8 | 21.6 to 33.3 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A12V48A | ||
| LRPX40-250V12 (69:1 to 93:1) | 6.8 | 14.4 to 19.5 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | ||
| LRPX40-250V12 (103:1 to 126:1) | 6.8 | 10.7 to 13.1 | 12 | PRO-A10V80A | PRO-A10V80A | CPP-A12V80A | CPP-A12V48A | ||
| LRPX40-250V12 (170:1 to 232:1) | 4.3 to 5.3 | 6.4 to 7.9 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | ||
| LRPX40-250V12 (257:1 to 346:1) | 2.9 to 3.9 | 4.3 to 5.8 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX40-250V12 (383:1 to 941:1) | 1.1 to 2.6 | 1.6 to 3.9 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX40-250V24 (3:1 to 46:1) | 3.4 | 14.5 to 16.7 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A06V48A | ||
| LRPX40-250V24 (57:1 to 63:1) | 3.4 | 10.8 to 11.9 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A | ||
| LRPX40-250V24 (69:1 to 126:1) | 3.4 | 5.4 to 9.7 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX40-250V24 (170:1 to 941:1) | 0.5 to 2.6 | 0.8 to 4.0 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | CPP-A06V48A | ||
| LRPX40-250V48 (3:1 to 76:1) | 1.7 | 4.4 to 8.3 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| LRPX40-250V48 (93:1 to 941:1) | 0.3 to 1.7 | 0.4 to 3.6 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | CPP-A06V48A | ||
| RPX40-325V12 | 10.2 | 31.0 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| RPX40-325V24 | 5.1 | 15.5 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | ||
| RPX40-325V48 | 2.6 | 7.7 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | ||
| RPX52-300V12 | 20.0 | 36.8 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A40V24A | CPP-A24V48A | ||
| RPX52-300V24 | 10.0 | 17.4 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| RPX52-300V48 | 5.0 | 8.6 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | ||
| RPX52-600V12 | 24.0 | 56.3 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A40V24A | CPP-A24V48A | ||
| RPX52-600V24 | 12.0 | 26.5 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| RPX52-600V48 | 6.0 | 12.9 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | ||
| RPX52-750V24 | 14.1 | 55.8 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A40V24A | CPP-A24V48A | ||
| RPX52-750V48 | 7.1 | 28.6 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A24V80A | CPP-A12V48A | ||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| RapidPower - RP | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
RP17-12V24 | RP17M-8V24 | 4.2 | 7.6 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A |
| RP17-12V48 | RP17M-8V48 | 2.1 | 3.8 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | CPP-A06V48A | |
| RP17-12V60 | RP17M-8V60 | 1.7 | 3.0 | 60 | PRO-A10V80A | PRO-A10V80A | CPP-A06V48A | CPP-A06V48A | |
| RP17-22V24 | RP17M-16V24 | 3.6 | 9.9 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | |
| RP17-22V48 | RP17M-16V48 | 1.8 | 4.9 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | |
| RP17-22V60 | RP17M-16V60 | 1.4 | 3.9 | 60 | PRO-A10V80A | PRO-A10V80A | CPP-A06V48A | CPP-A06V48A | |
| RP17-36V24 | RP17M-25V24 | 3.7 | 10.4 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | |
| RP17-36V48 | RP17M-25V48 | 1.4 | 5.2 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | |
| RP17-36V60 | RP17M-25V60 | 1.4 | 4.2 | 60 | PRO-A10V80A | PRO-A10V80A | CPP-A06V48A | CPP-A06V48A | |
| RP17-45V24 | RP17M-32V24 | 3.6 | 10.9 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A | |
| RP17-45V48 | RP17M-32V48 | 1.8 | 5.5 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | |
| RP17-45V60 | RP17M-32V60 | 1.4 | 4.4 | 60 | PRO-A10V80A | PRO-A10V80A | CPP-A06V48A | CPP-A06V48A | |
| RP23-26V12 | RP23M-18V12 | 5.3 | 11.0 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | |
| RP23-26V24 | RP23M-18V24 | 4.6 | 9.0 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | |
| RP23-26V48 | RP23M-18V48 | 2.6 | 6.5 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | |
| RP23-34V12 | RP23M-24V12 | 8.6 | 17.5 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | |
| RP23-34V24 | RP23M-24V24 | 4.5 | 10 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | |
| RP23-34V48 | RP23M-24V48 | 2.5 | 7.0 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | CPP-A06V48A | |
| RP23-54V12 | RP23M-38V12 | 8.7 | 15.9 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | |
| RP23-54V24 | RP23M-38V24 | 5.7 | 18.5 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | |
| RP23-54V48 | RP23M-38V48 | 4.2 | 11.1 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A | |
| RP23-73V24 | RP23M-52V24 | 8.3 | 25.3 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A12V48A | |
| RP23-73V48 | RP23M-52V48 | 4.7 | 14.4 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | |
| RP34-112V24 | RP34M-79V24 | 24.4 | 85.2 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | |
| RP34-112V48 | RP34M-79V48 | 12.1 | 42.4 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | |
| RP34-112V90 | RP34M-79V90 | 6.1 | 21.2 | 90 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A12V48A | |
| RP34-217V24 | RP34M-153V24 | 22.3 | 76.0 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | |
| RP34-217V48 | RP34M-153V48 | 16.9 | 59.1 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | |
| RP34-217V90 | RP34M-153V90 | 8.9 | 31.1 | 90 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | |
| RP34-313V24 | RP34M-221V24 | 22.7 | 68.1 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | |
| RP34-313V48 | RP34M-221V48 | 17.0 | 59.5 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | |
| RP34-313V90 | RP34M-221V90 | 11.3 | 39.7 | 90 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | |
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| RapidPower Plus - RPP | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
RPP23-64V48 | RPP23M-45V48 | 3.0 | 11.0 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A06V48A |
| RPP23--98V48 | RPP23M-69V48 | 4.5 | 15.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | |
| RPP23-118V48 | RPP23-83V48 | 6.0 | 20.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | |
| RPP23-154V48 | RPP23M-108V48 | 7.3 | 25.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A12V48A | |
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| MPW | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
MPW52-300V24 | 6.4 | 17.4 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | CPP-A12V48A | |
| MPW52-300V48 | 3.4 | 8.6 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A06V80A | CPP-A06V48A | ||
| MPW52-600V24 | 11.4 | 26.5 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| MPW52-600V48 | 5.6 | 12.9 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | ||
| MPW86-120V24 (10:1) | 22.0 | 80.0 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | ||
| MPW86-120V48 (10:1) | 15.0 | 40.0 | 48 | N/A | N/A | CPP-A24V80A | CPP-A24V48A | ||
| MPW86-185V24 (10:1) | 30.0 | 73.0 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | ||
| MPW86-185V48 (10:1) | 16.0 | 29.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| MPW86-120V24 (20:1) | 21.0 | 47.0 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | ||
| MPW86-120V48 (20:1) | 13.0 | 23.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| MPW86-185V24 (20:1) | 24.0 | 43.0 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | ||
| MPW86-185V48 (20:1) | 10.0 | 17.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| MPW140H-900V24-E | 8.84 | 23.56 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| MPW140H-900V48-E | 4.42 | 11.78 | 48 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | CPP-A12V48A | ||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| MP, MPP, MPS | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
All MP24 (24V windings, all ratios) |
up to 23.5 | 58.5 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | |
| All MP24 (48V windings, all ratios) |
up to 11.8 | 29.3 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| All MPP24 (24V windings, all ratios) |
up to 30.0 | 65 | 24 | N/A | N/A | CPP-A40V24A | CPP-A24V48A | ||
| All MPP24 (48V windings, all ratios) |
up to 15.0 | 32.5 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | CPP-A24V48A | ||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| MP, MPP, MPS | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
All MP26, MP36 (24V windings, all ratios) |
up to 25.0 | 80.0 | 24 | N/A | N/A | CPP-A40V24A | ||
| All MPP26, MPP36 (24V windings, all ratios) |
up to 30.0 | 100.0 | 24 | N/A | N/A | CPP-A40V24A | |||
| MPS Series (24V windings, all models) |
up to 28.0 | 80.0 | 24 | N/A | N/A | CPP-A40V24A | |||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| DirectPower - DP | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
DP20-10V12 | DP20M-07V12 | 3.8 | 11.5 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | |
| DP20-10V24 | DP20M-07V24 | 1.9 | 5.7 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-A06V48A | ||
| DP20-15V12 | DP20M-11V12 | 4.0 | 13.5 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | ||
| DP20-15V24 | DP20M-11V24 | 2.0 | 6.7 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-A06V48A | ||
| DP20-20V12 | DP20M-14V12 | 4.3 | 11.5 | 12 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | ||
| DP20-20V24 | DP20M-14V24 | 2.1 | 2.7 | 24 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||
| DP25-30V12 | DP25M-21V12 | 9.0 | 32.0 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DP25-30V24 | DP25M-21V24 | 5.0 | 16.0 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | ||
| DP25-35V24 | DP25M-25V24 | 5.0 | 20.0 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | ||
| DP25-45V12 | DP25M-32V12 | 8.0 | 30.0 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DP25-45V24 | DP25M-32V24 | 4.0 | 16.0 | 24 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | ||
| DP30-60V12 | 9.0 | 27.0 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | |||
| DP30-60V24 | 4.0 | 14.0 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | |||
| DP30-75V12 | 7.0 | 14.0 | 12 | PRO-A10V80A | PRO-A10V80A | CPP-A12V80A | |||
| DP30-75V24 | 3.0 | 7.0 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | |||
| DP30-85V12 | 5.0 | 15.0 | 12 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | |||
| DP30-85V24 | 3.0 | 6.0 | 24 | PRO-A08V48B | PRO-A08V48B | CPP-A06V48A | |||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| DirectPower Plus - DPP | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
DPP240(T)-29V48 | DPP240M(T)-20V48 | 2.0 | 16.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | |
| DPP240(T)-29V60 | DPP240M(T)-20V60 | 2.0 | 14.0 | 60 | PRO-A10V80A | PRO-A10V80A | CPP-A12V80A | ||
| DPP242(T)-44V48 | DPP242M(T)-31V48 | 4.0 | 27.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP242(T)-44V60 | DPP242M(T)-31V60 | 3.0 | 21.0 | 60 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | ||
| DPP243(T)-52V48 | DPP243M(T)-36V48 | 5.0 | 32.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP243(T)-52V60 | DPP243M(T)-36V60 | 4.0 | 25.0 | 60 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP642(T)-100V48 | DPP642M(T)-70V48 | 6.0 | 25.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP642(T)-100V60 | DPP642M(T)-70V60 | 5.0 | 20.0 | 60 | PRO-A20V80A | PRO-A20V80A | CPP-A12V80A | ||
| DPP643(T)-165V48 | DPP643M(T)-116V48 | 6.0 | 30.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP643(T)-165V60 | DPP643M(T)-116V60 | 6.0 | 23.0 | 60 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP644(T)-210V48 | DPP644M(T)-148V48 | 7.0 | 28.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP644(T)-210V60 | DPP644M(T)-148V60 | 5.0 | 22.0 | 60 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP681(T)-90V48 | DPP681M(T)-64V48 | 7.0 | 30.0 | 48 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP681(T)-90V60 | DPP681M(T)-64V60 | 6.0 | 25.0 | 60 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| DPP701-150V60 | DPP701M-106V60 | 4.0 | 27.0 | 60 | PRO-A20V80A | PRO-A20V80A | CPP-A24V80A | ||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| TorquePower Enhanced - TPE | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
TPE17-45A10 | TPE17M-32A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | |||
| TPE17-45A15 | TPE17M-32A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE17-45A20 | TPE17M-32A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE17-63A10 | TPE17M-44A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE17-63A15 | TPE17M-44A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE17-63A20 | TPE17M-44A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE17-78A10 | TPE17M-55A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE17-78A15 | TPE17M-55A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE17-78A20 | TPE17M-55A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE23-100A10 | TPE23M-71A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE23-100A20 | TPE23M-71A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE23-100A30 | TPE23M-71A30 | 0 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | ||||
| TPE23-166A10 | TPE23M-117A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE23-166A20 | TPE23M-117A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE23-166A30 | TPE23M-117A30 | 0 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | ||||
| TPE23-294A10 | TPE23M-208A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE23-294A20 | TPE23M-208A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| TPE23-294A30 | TPE23M-208A30 | 0 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | ||||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| AxialPower Plus - APPS | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
APPS11M-7A05 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS11M-7A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | |||||
| APPS11M-7A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | |||||
| APPS11M-10A05 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | |||||
| APPS11M-10A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | |||||
| APPS11M-10A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | |||||
| APPS17-29A10 | APPS17M-21A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-29A15 | APPS17M-21A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-29A20 | APPS17M-21A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-47A10 | APPS17M-33A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-47A15 | APPS17M-33A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-47A20 | APPS17M-33A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-58A10 | APPS17M-41A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-58A15 | APPS17M-41A15 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS17-58A20 | APPS17M-41A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS23-90A10 | APPS23M-64A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS23-90A20 | APPS23M-64A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS23-90A30 | APPS23M-64A30 | 0 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | ||||
| APPS23-150A10 | APPS23M-106A10 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS23-150A20 | APPS23M-106A20 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| APPS23-150A30 | APPS23M-106A30 | 0 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | ||||
| Motor Series | Motor P/N | Cont Stall Current (ARMS) |
Peak Current (ARMS) |
Voltage | Drive Model | ||||
|---|---|---|---|---|---|---|---|---|---|
| L3 | Imperial | Metric | PRO (-CAT) | PRO (-CAN) | CPP-Universal | CPP-EZ | |||
|
L3SAF-M200 | 0 | PRO-A08V48B | PRO-A04V36A | CPP-B06V48A | ||||
| L3SAF-M300 | 0 | PRO-A08V48B | PRO-A08V48B | CPP-B06V48A | |||||
| L3SAF-M500 | 0 | PRO-A08V48B | PRO-A08V48B | CPP-A12V80A | |||||
Documents & Downloads
| Download | Description |
|---|---|
| PRO-A0xV36x-PE-CAN Drive Data Sheet (PCB Mount, CAN) | Download Data Sheet (PDF) |
| PRO-A0xV36x-SA-CAN Drive Data Sheet (Stand-alone, CAN) | Download Data Sheet (PDF) |
| PRO-A0xV36x-PE-CAN Drive Technical Reference (PCB Mount, CAN) | Technical Reference Manual (PDF) |
| PRO-A0xV36x-SA-CAN Drive Technical Reference (Stand-Alone, CAN) | Technical Reference Manual (PDF) |
| PRO-A0xV36x-PE-CAN Connection Diagram (PCB Mount, CAN) | Connection Diagram (PDF) |
| PRO-A0xV36x-SA-CAN Connection Diagram (Stand-alone, CAN) | Connection Diagram (PDF) |
| ElectroCraft MotionPRO Suite Configuration and Programming Software with Quick Start Guide | Download Software (ZIP) |
| MotionPro Suite II - Quick Setup and Programming Guide 0424 | Setup and Programming Guide (PDF) |
| PRO Series CANopen EDS File | Download EDS File (ZIP) |
Accessories
| Photo | Model |
Description |
|---|---|---|
![]() |
2000695 | PRO-A04V36x-PE-CAN Evaluation Kit (PCB Mount, 36V, 4A, 144W, Enc., CAN) |
![]() |
2000696 | PRO-A04V36x-SA-CAN Evaluation Kit (Stand-alone, 36V, 4A, 144W, Enc., CAN) |
ElectroCraft Rapid Delivery Program
Some versions of this product are available via ElectroCraft's Rapid Delivery Program. Lead times for these products are given in working days and stated below. Please note, these lead times may be exceeded during holiday periods or due to unforeseen circumstances. Always contact your local ElectroCraft representative for confirmation of availability.
Rapid delivery products are stocked in locations all over the World. If the product you require is not stocked in your region, you may request accelerated delivery from other areas. Please consult your local representative for more information.
Customers are responsible for all freight charges.
Rapid Delivery to:
The Americas - View Cart
| Part Number | Description | Add to Cart |
|---|---|---|
| PRO-A04V36A-PE-CAN | PRO Series programmable drive, compatible with brushless DC, PMDC Brush, open and closed-loop stepper motors, 10A peak, 4A continuous, 9 to 36 VDC, PCB Assembly, CAN bus | Contact Sales |
| PRO-A04V36A-SA-CAN | PRO Series programmable drive, compatible with brushless DC, PMDC Brush, open and closed-loop stepper motors, 10A peak, 4A continuous, 9 to 36 VDC, Stand-Alone Chassis, CAN bus | Contact Sales |
| PRO-SERIES EVALUATION KIT (PRO-A04V36A-PE-CAN) | Eval Kit - PRO Series programmable drive, compatible with brushless DC, PMDC Brush, open and closed-loop stepper motors, 10A peak, 4A continuous, 9 to 36 VDC, PCB Assembly, CAN bus | Buy Now |
| PRO-SERIES EVALUATION KIT (PRO-A04V36A-SA-CAN) | Eval Kit - PRO Series programmable drive, compatible with brushless DC, PMDC Brush, open and closed-loop stepper motors, 10A peak, 4A continuous, 9 to 36 VDC, Stand-Alone Chassis, CAN bus | Buy Now |
| 2000695 | 2000695: PRO-A04V36x-PE-CAN Evaluation Kit (PCB Mount, 36V, 4A, 144W, Enc., CAN) | Contact Sales |
| 2000696 | 2000696: PRO-A04V36x-SA-CAN Evaluation Kit (Stand-alone, 36V, 4A, 144W, Enc., CAN) | Contact Sales |
