# Rosie

> Rosie is a family of six-axis industrial robots from Advanced Metal Research in three reaches: Rosie 600, Rosie 1000 and Rosie 1400. Open RosieOS controller with everything switched on, configured to order.

URL: https://advancedmetalresearch.com/rosie

Six-axis industrial robots · Three reaches Configured to order Hawthorne, California

Advanced Metal Research

Precise six-axis industrial arms you can program any way you like, in three reaches: 600, 1,000 and 1,400 mm. One design and one open controller, from bench cells to long welds.

$19,900 launch price · fully refundable deposit

[Pre-order Rosie 1000 · $500 deposit](https://buy.stripe.com/bJeaER3oocI39HBdls9k402) [Compare the three](https://advancedmetalresearch.com/rosie#compare)

Rosie 600: $14,900 and Rosie 1000: $19,900 per robot, launch prices for pre-orders placed before 31 December 2026. Rosie 1400: $29,000 per robot, deliveries begin Q1 2027. Every deposit is fully refundable. The balance is invoiced before shipment.

*Figure: Isometric line drawing of the Rosie 1000 six-axis robot from the front right; after it is drawn, the arm runs a motion demonstration: straight-line moves, a circle, a tool reorientation about a fixed point and joint moves.*

Models · Rosie 600 · 1000 · 1400 · 600 to 1,400 mm reach

Control · RosieOS · Built by AMR, Apache 2.0

Key figures · Rosie 1000

- **Axes:** 6
- **Reach:** 1,000 mm
- **Payload:** 7.4 kg
- **Supply:** 220–240 V
- **Controller:** RosieOS
- **Price:** $19,900

Reach to the wrist centre, 1,077 mm to the tool flange. Rated payload with its centre of mass 100 mm out and 50 mm off the tool axis, in every pose. Single-phase supply on a 20 A circuit. Launch price for pre-orders placed before 31 December 2026.

Three reaches · Elevation, one scale Reach to the wrist centre

## Three reaches, one design.

The same six-axis layout, wrist and RosieOS controller in three sizes. Pick the reach your cell needs.

Rosie 600 and Rosie 1000 share the base, the wrist and the tool flange. The 1000 has a 470 mm upper arm and a longer forearm, with larger drives at the shoulder and elbow. Both have harmonic gearboxes and absolute encoders on all six joints. Rosie 1400 has the longest reach and the highest payload.

*Figure: Side elevations of Rosie 600, Rosie 1000 and Rosie 1400 drawn to one scale on one floor line, each with its arm stretched out level; a dimension from the base axis to the wrist centre reads 600, 1,000 and 1,400 mm.*

*Rosie 600, 1000 and 1400 compared*

| Figure | Rosie 600 | Rosie 1000 | Rosie 1400 |
| --- | --- | --- | --- |
| Reach | 600 mm | 1,000 mm | 1,400 mm |
| Payload, rated | 9 kg | 7.4 kg | 15 kg nominal |
| Payload, peak | 29.7 kg | 29.7 kg | 23.4 kg |
| Repeatability | ±0.03 mm | ±0.04 mm | ±0.05 mm |
| Axes | 6 | 6 | 6 |
| Supply | 220–240 VAC, single-phase, 16 A circuit | 220–240 VAC, single-phase, 20 A circuit | 200 to 240 VAC, 3-phase, 35 A |
| Line current, peak / average | 10.8 A / 2.6 A | 16.4 A / 3.1 A | 17.4 A / 3.1 A per phase |
| Base | Ø230 floor plate, 6 × M10 anchors | Ø230 floor plate, 6 × M10 anchors | 300 × 300 mm plate, 4 × Ø26 anchors |
| Tool flange | ISO 9409-1-50-4-M6 | ISO 9409-1-50-4-M6 | Ø38 face, 6 × M5 on PCD 27, ISO 50 adapter |
| Controller | RosieOS | RosieOS | RosieOS |
| Price | $14,900 launch | $19,900 launch | $29,000 |

[Pre-order Rosie 600 · $500 deposit](https://buy.stripe.com/7sYeV70ccazVaLF8189k401) $14,900 launch price

[Pre-order Rosie 1000 · $500 deposit](https://buy.stripe.com/bJeaER3oocI39HBdls9k402) $19,900 launch price

[Pre-order Rosie 1400 · $500 deposit](https://buy.stripe.com/eVqbIV1ggfUf4nha9g9k400) $29,000 · deliveries begin Q1 2027

Launch prices are for pre-orders placed before 31 December 2026. Full figures for each model are in the [specification](https://advancedmetalresearch.com/rosie#specs). Line current is at 230 V, power factor 0.6, over a standard pick-and-place cycle at rated payload.

In motion · Hawthorne R&D lab

Video (https://advancedmetalresearch.com/assets/video/rosie-lab.webm)

*Rosie 1400 articulating its wrist in the Hawthorne R&D lab.*

Processes · Illustrative cycles Planned on the Rosie 1400 model

## One arm, many processes.

Welding comes first. With a different end-effector and program, the same arm can handle, assemble, dispense, deburr, and cut.

Each cycle below is planned on the kinematic model of Rosie 1400 and timed to its rated joint speeds, with a conservative estimate of its acceleration. Every target is within the joint limits, and the tooling is drawn to scale. Rosie 600 and Rosie 1000 take the same kinds of tooling for parts within their reach and payload. Tell us the part and the process, and we will scope the tooling and the right Rosie with the proposal.

1. *Figure: Line drawing of Rosie 1400 with a MIG torch, laying a fillet weld along a T-joint clamped to a fixture table.*

   ### Welding: MIG fillet

   A MIG torch lays a fillet weld along a T-joint.
2. *Figure: Line drawing of Rosie 1400 tending a CNC machine: it loads a blank into the vise through the open door and unloads the finished part.*

   ### Machine tending

   Rosie loads a blank through the machine door and unloads the finished part.
3. *Figure: Line drawing of Rosie 1400 with a vacuum gripper, stacking cartons from a conveyor onto a pallet in interlocked layers.*

   ### Palletizing

   A vacuum gripper stacks cartons on a pallet in interlocked layers.
4. *Figure: Line drawing of Rosie 1400 with a nutrunner, running down and torquing the six cover bolts of a gearbox housing in a star pattern on a two-station index table.*

   ### Assembly

   A nutrunner torques a gearbox cover's six bolts in a star pattern.
5. *Figure: Line drawing of Rosie 1400 with a dispensing valve, laying a continuous sealant bead around the flange of a panel.*

   ### Dispensing

   A dispensing valve lays a continuous sealant bead around a flange.
6. *Figure: Line drawing of Rosie 1400 with a spray gun, coating a vertical panel in overlapping horizontal passes.*

   ### Coating

   A spray gun covers a panel in overlapping passes at a constant standoff.
7. *Figure: Line drawing of Rosie 1400 with a compliant deburring spindle, following the edges of a machined plate held in a fixture.*

   ### Deburring

   A compliant spindle follows the part's edges at a set tool angle.
8. *Figure: Line drawing of Rosie 1400 with a plasma torch, cutting a profile with holes from a plate on a slat table.*

   ### Plasma cutting

   A plasma torch cuts a profile from plate on a slat table.

Illustrative cycles drawn from the robot's kinematic model. Process tooling is quoted per application.

Control · Programs checked before load

## RosieOS control and a handheld pendant.

Every Rosie runs on RosieOS, AMR's real-time controller software, open source under Apache 2.0. Everything is switched on from day one: you never pay to unlock a feature the robot already has. The teach pendant is a handheld Steam Deck.

Weld programs are checked for collisions and joint limits before they can be loaded, and can be replayed in simulation before the real joints move. Operators program, jog, and run weld paths from the pendant. Programs, offsets, and procedures are stored on the controller and travel with the machine.

[Read the RosieOS docs](https://advancedmetalresearch.com/docs/)[RosieOS on GitHub](https://github.com/advanced-metal-research/RosieOS)

*Figure: The RosieOS teach pendant running on a Steam Deck, Jog page: Rosie in a 3D view beside the Cartesian move and rotate pads, connected to a cell and armed.*

*Hold R2 and move the tool with the sticks. Every pad shows the Steam Deck control that drives it, and B stops the robot from every page.*

*Figure: RosieOS teach pendant, Program page: a weld program as a spreadsheet of approach, weld and transit rows with their destinations, speeds and status.*

*The weld program as a spreadsheet. Record, reteach and edit rows from the pendant, then plan, preview and run them.*

*Figure: RosieOS teach pendant, Telemetry page: live velocity plots for every joint over the last ten seconds.*

*Live position, velocity, acceleration, following error and torque from every drive, with a 1 kHz capture.*

**Offline programming**

### Program the next job on your PC while Rosie runs this one.

Offline programming runs in the browser on your workstation. Teach waypoints and build any program from MoveJ, MoveL and MoveC moves, dwells, I/O and Home, or import the STEP part and pick welds from its edges. Every plan is checked for collisions and joint limits, and you replay the exact trajectory in simulation before the robot moves. The pendant opens the same programs, and both are open source under Apache 2.0 with the rest of RosieOS.

[See offline programming](https://advancedmetalresearch.com/offline-programming)[Teach waypoints and moves](https://advancedmetalresearch.com/docs/guides/teach-waypoints)[Program a weld from CAD](https://advancedmetalresearch.com/docs/guides/offline-programming)

*Figure: The RosieOS offline programming app: the Rosie 1400 cell in 3D with a welded hitch on the positioner table, its welds listed, the J6 and TCP camera views, and a server-validated plan replaying in simulation.*

Video (https://advancedmetalresearch.com/assets/video/handheld-control.mp4)

*Starting a weld program from the handheld pendant in the AMR R&D lab.*

Specification · Rosie 600 Rosie 1000 Rosie 1400

## Specification

The figures needed to specify, install, and integrate each Rosie.

![The Rosie arm with a MIG torch fitted, photographed in the AMR R&D lab](https://advancedmetalresearch.com/assets/img/arm-6dof.webp)

*Rosie 1400 with the MIG torch package.*

### Rosie 600

- **Axes:** 6
- **Reach, wrist centre:** 600 mm
- **Reach, tool flange:** 677 mm
- **Payload, rated:** 9.0 kg
- **Payload, peak torque:** 29.7 kg
- **Cycle, 25 / 305 / 25 mm, 1 kg:** 0.621 s
- **Cycle at rated payload:** 0.814 s
- **Tool speed, peak:** 4.3 m/s
- **Repeatability:** ±0.03 mm
- **Mass:** 29.3 kg
- **Height at home, width:** 734 mm, 213 mm
- **Supply:** 220–240 VAC, single-phase, 16 A circuit
- **Power, peak / average:** 1.50 kW / 358 W
- **Line current, peak / average:** 10.8 A / 2.6 A
- **Base:** Ø230 floor plate, 6 × M10 anchors
- **Tool flange:** ISO 9409-1-50-4-M6

[Pre-order Rosie 600 · $500 deposit](https://buy.stripe.com/7sYeV70ccazVaLF8189k401) $14,900 launch price

### Rosie 1000

- **Axes:** 6
- **Reach, wrist centre:** 1,000 mm
- **Reach, tool flange:** 1,077 mm
- **Payload, rated:** 7.4 kg
- **Payload, peak torque:** 29.7 kg
- **Cycle, 25 / 305 / 25 mm, 1 kg:** 0.665 s
- **Cycle at rated payload:** 0.801 s
- **Tool speed, peak:** 6.6 m/s
- **Repeatability:** ±0.04 mm
- **Mass:** 38.6 kg
- **Height at home, width:** 934 mm, 267 mm
- **Supply:** 220–240 VAC, single-phase, 20 A circuit
- **Power, peak / average:** 2.27 kW / 422 W
- **Line current, peak / average:** 16.4 A / 3.1 A
- **Base:** Ø230 floor plate, 6 × M10 anchors
- **Tool flange:** ISO 9409-1-50-4-M6

[Pre-order Rosie 1000 · $500 deposit](https://buy.stripe.com/bJeaER3oocI39HBdls9k402) $19,900 launch price

### Rosie 1400

- **Axes:** 6
- **Reach, wrist centre:** 1,400 mm
- **Reach, tool flange:** 1,499 mm
- **Payload, rated:** 15 kg
- **Payload, peak torque:** 23.4 kg
- **Cycle, 25 / 305 / 25 mm, 1 kg:** 0.803 s
- **Cycle at rated payload:** 0.845 s
- **Tool speed, peak:** 6.6 m/s
- **Repeatability:** ±0.05 mm
- **Mass:** 77.0 kg
- **Height at home, width:** 949 mm, 299 mm
- **Supply:** 200 to 240 VAC, 3-phase, 35 A
- **Power, peak / average:** 4.15 kW / 745 W
- **Line current, peak / average:** 17.4 A / 3.1 A per phase
- **Base:** 300 × 300 mm plate, 4 × Ø26 on 250 mm square
- **Tool flange:** Ø38 face, 6 × M5 on PCD 27, ISO 50 adapter

[Pre-order Rosie 1400 · $500 deposit](https://buy.stripe.com/eVqbIV1ggfUf4nha9g9k400) $29,000 · deliveries begin Q1 2027

Rosie 1400 is made in the USA, from US and imported parts.

### Every Rosie

- **Controller:** RosieOS, built by AMR, open source under Apache 2.0
- **Motion control:** Real-time, all six axes
- **Teach pendant:** Handheld
- **Program check:** Collision and limits before load

### Drives

- **Motors:** EtherCAT servos, IP67, 24 VDC holding brakes
- **Encoders:** 17-bit absolute
- **Installed motor power:** 1,850 W (600), 2,450 W (1000), 3,900 W (1400)
- **Gearboxes:** Harmonic, all six joints, IP65 (600, 1000)
- **Structure:** Machined 6061-T6 aluminum (600, 1000)

*Rosie 600, 1000 and 1400 axes*

| Joint | Range, Rosie 600 and 1000 | Range, Rosie 1400 | Speed, Rosie 600 | Speed, Rosie 1000 | Speed, Rosie 1400 |
| --- | --- | --- | --- | --- | --- |
| J1 base | ±170° | ±177.6° | 336 °/s | 336 °/s | 240 °/s |
| J2 shoulder | ±110° | ±108.9° | 288 °/s | 240 °/s | 240 °/s |
| J3 elbow | ±150° | ±149.0° | 336 °/s | 288 °/s | 240 °/s |
| J4 forearm roll | ±180° | ±177.6° | 360 °/s | 360 °/s | 336 °/s |
| J5 wrist bend | ±125° | ±126.1° | 360 °/s | 360 °/s | 360 °/s |
| J6 flange roll | ±180° | ±177.6° | 360 °/s | 360 °/s | 360 °/s |

![End-view drawing detail of the Rosie 1400 wrist: the tool flange face with its bolt circles, set in the square wrist housing](https://advancedmetalresearch.com/assets/drawings/rosie/detail/flange-white.webp)

*Rosie 1400 wrist flange and ISO 50 tool adapter*

![Underside drawing detail of the Rosie 1400 base plate: a square plate with four corner holes, a ring of twelve counterbored bolt holes, and eight holes on the central disc](https://advancedmetalresearch.com/assets/drawings/rosie/detail/baseplate-white.webp)

*Rosie 1400 base plate, 300 × 300 mm, 250 mm anchor square*

CAD and simulation · STEP URDF MuJoCo Free download

## CAD and simulation

STEP, URDF and MuJoCo models of all three Rosie robots, with full kinematics, joint limits, speeds, torques and mass properties.

The models carry the robot's real outside surfaces: each link is one solid, filled inside, with the structural parts' own CAD faces and the motors and gearboxes as plain envelopes of the same size, so you can dimension from them and design a pedestal or tool against them. Every number is also in `robot.json`, including joint accelerations and the exact conditions of the published cycle times, and each kit has tested quickstart code for PyBullet, MuJoCo and ROS 2. Each kit also carries the benchmark cycle as a timestamped joint trajectory, IK reference cases solved by RosieOS's own solver, and a GLB that loads straight into a browser. Joint names and the home pose match RosieOS. Drawings and STEP files of the Rosie 1400 base and tool flange are in the docs under [Mechanical interfaces](https://advancedmetalresearch.com/docs/reference/mechanical-interfaces).

### Rosie 600

600 mm reach 29.3 kg

[Download the kit · ZIP, 700 KB](https://advancedmetalresearch.com/assets/sim/rosie-600-sim-kit.zip)

- [Robot model · **STEP** AP214, mm, 574 KB](https://advancedmetalresearch.com/assets/sim/600/step/rosie_600.step)
- [Robot description · **URDF** meshes in the kit, 17 KB](https://advancedmetalresearch.com/assets/sim/600/urdf/rosie_600.urdf)
- [MuJoCo model · **MJCF** actuators and keyframes, 13 KB](https://advancedmetalresearch.com/assets/sim/600/mjcf/rosie_600.xml)
- [Kinematics and ratings · **JSON** robot.json, 25 KB](https://advancedmetalresearch.com/assets/sim/600/robot.json)
- [Web model · **GLB** joint hierarchy, 223 KB](https://advancedmetalresearch.com/assets/sim/600/glb/rosie_600.glb)
- [IK reference cases · **JSON** solved by RosieOS, 31 KB](https://advancedmetalresearch.com/assets/sim/600/ik_cases.json)

### Rosie 1000

1,000 mm reach 38.6 kg

[Download the kit · ZIP, 742 KB](https://advancedmetalresearch.com/assets/sim/rosie-1000-sim-kit.zip)

- [Robot model · **STEP** AP214, mm, 618 KB](https://advancedmetalresearch.com/assets/sim/1000/step/rosie_1000.step)
- [Robot description · **URDF** meshes in the kit, 17 KB](https://advancedmetalresearch.com/assets/sim/1000/urdf/rosie_1000.urdf)
- [MuJoCo model · **MJCF** actuators and keyframes, 12 KB](https://advancedmetalresearch.com/assets/sim/1000/mjcf/rosie_1000.xml)
- [Kinematics and ratings · **JSON** robot.json, 25 KB](https://advancedmetalresearch.com/assets/sim/1000/robot.json)
- [Web model · **GLB** joint hierarchy, 234 KB](https://advancedmetalresearch.com/assets/sim/1000/glb/rosie_1000.glb)
- [IK reference cases · **JSON** solved by RosieOS, 26 KB](https://advancedmetalresearch.com/assets/sim/1000/ik_cases.json)

### Rosie 1400

1,400 mm reach 77.0 kg

[Download the kit · ZIP, 3.7 MB](https://advancedmetalresearch.com/assets/sim/rosie-1400-sim-kit.zip)

- [Robot model · **STEP** AP214, mm, 7.5 MB](https://advancedmetalresearch.com/assets/sim/1400/step/rosie_1400.step)
- [Robot description · **URDF** meshes in the kit, 16 KB](https://advancedmetalresearch.com/assets/sim/1400/urdf/rosie_1400.urdf)
- [MuJoCo model · **MJCF** actuators and keyframes, 12 KB](https://advancedmetalresearch.com/assets/sim/1400/mjcf/rosie_1400.xml)
- [Kinematics and ratings · **JSON** robot.json, 27 KB](https://advancedmetalresearch.com/assets/sim/1400/robot.json)
- [Web model · **GLB** joint hierarchy, 1.1 MB](https://advancedmetalresearch.com/assets/sim/1400/glb/rosie_1400.glb)
- [IK reference cases · **JSON** solved by RosieOS, 26 KB](https://advancedmetalresearch.com/assets/sim/1400/ik_cases.json)

### Run it in simulation

Shown for the Rosie 1000. For the other robots, change 1000 to 600 or 1400.

Terminal · Bash

```bash
curl -LO https://advancedmetalresearch.com/assets/sim/rosie-1000-sim-kit.zip
unzip -q rosie-1000-sim-kit.zip && cd rosie_1000_description
pip install mujoco pybullet numpy
python examples/mujoco_demo.py      # also: pybullet_demo.py, fk_ik.py
```

mujoco_hold.py, in rosie_1000_description · Python

```python
import mujoco
import numpy as np

model = mujoco.MjModel.from_xml_path("mjcf/rosie_1000.xml")
data = mujoco.MjData(model)
data.ctrl[:] = np.radians([30, 45, -10, 0, -35, 0])   # position servos on J1..J6
for _ in range(1500):                                  # 3 s at 2 ms steps
    mujoco.mj_step(model, data)
print(np.degrees(data.qpos).round(2))                  # joint angles (deg)
print(data.actuator_force.round(1))                    # joint torques (N m)
print(data.site("tool0").xpos.round(4))                # flange face (m)
```

pybullet_move.py, in rosie_1000_description · Python

```python
import math
import pybullet as p

p.connect(p.DIRECT)                                    # p.GUI for a window
p.setGravity(0, 0, -9.81)
robot = p.loadURDF("urdf/rosie_1000.urdf", useFixedBase=True,
                   flags=p.URDF_USE_INERTIA_FROM_FILE)
joints = [p.getJointInfo(robot, i) for i in range(p.getNumJoints(robot))]
arm = [j for j in joints if j[2] == p.JOINT_REVOLUTE]  # J1..J6
tool0 = next(j[0] for j in joints if j[12] == b"tool0")

target = [math.radians(a) for a in (30, 45, -10, 0, -35, 0)]
for j, q in zip(arm, target):                          # j[10] peak torque, j[11] max speed
    p.setJointMotorControl2(robot, j[0], p.POSITION_CONTROL, targetPosition=q,
                            force=j[10], maxVelocity=j[11])
for _ in range(3 * 240):
    p.stepSimulation()
print(p.getLinkState(robot, tool0, computeForwardKinematics=True)[4])
```

Terminal, in a ROS 2 workspace · Bash

```bash
cp -r rosie_1000_description ~/ros2_ws/src/
cd ~/ros2_ws && colcon build --packages-select rosie_1000_description
source install/setup.bash
ros2 launch rosie_1000_description display.launch.py   # RViz with joint sliders
```

fk.py, numpy only · Python

```python
import json
import urllib.request

import numpy as np

URL = "https://advancedmetalresearch.com/assets/sim/1000/robot.json"
req = urllib.request.Request(URL, headers={"User-Agent": "rosie-sim-kit/1.0"})
robot = json.load(urllib.request.urlopen(req))

def rot(axis, q):
    x, y, z = axis
    c, s, t = np.cos(q), np.sin(q), 1 - np.cos(q)
    return np.array([[t * x * x + c, t * x * y - s * z, t * x * z + s * y],
                     [t * x * y + s * z, t * y * y + c, t * y * z - s * x],
                     [t * x * z - s * y, t * y * z + s * x, t * z * z + c]])

def fk(q):
    """Pose of tool0 (4x4) in base_link for joint angles q (rad)."""
    T = np.eye(4)
    for j, qi in zip(robot["joints"], q):
        A = np.eye(4)
        A[:3, 3], A[:3, :3] = j["origin_xyz"], rot(j["axis"], qi)
        T = T @ A
    return T @ np.diag([1, -1, -1, 1])                 # tool0: z out of the flange

print(fk(robot["poses"]["stretched"])[:3, 3])          # (m)
```

Units are metres, kilograms and radians; the STEP is in millimetres. At home every joint is zero, the forearm points along +x and the tool flange faces down. `tool0` is the flange face, z out of the flange. Every file has a stable URL under [/assets/sim/](https://advancedmetalresearch.com/assets/sim/index.json), and the guide [Simulate a Rosie robot](https://advancedmetalresearch.com/docs/guides/simulate-a-rosie-robot) covers frames, ratings and the RosieOS simulator.

Options

## Configured to order.

Tell us what Rosie needs to move, carry, or position, and we will recommend the reach and prepare a proposal. Every robot ships with the arm, controller, drives, cabling, pendant, and commissioning at your site.

- **Arm and controller:** Rosie 600, Rosie 1000 or Rosie 1400, RosieOS controller, drives, handheld pendant, base hardware. Included with every order.
- **Welding package:** MIG, TIG, or fiber laser torch with wire feed, gas, and torch-mount tooling on the ISO 50 flange. Laser packages include a 2–10 kW fiber laser source and interlocks.
- **War Machine:** Rosie 1400 is also available as the robot inside War Machine, our production welding cell. [See War Machine](https://advancedmetalresearch.com/war-machine).

Order

## Order Rosie.

Rosie 600 is $14,900 and Rosie 1000 is $19,900, launch prices for pre-orders placed before 31 December 2026.

Pre-order Rosie 600 or Rosie 1000 with a fully refundable $500 deposit per robot. We confirm your production slot by email within one business day and send your ship date as production is scheduled. The balance, $14,400 for Rosie 600 and $19,400 for Rosie 1000, is invoiced before shipment.

[Pre-order Rosie 600 with a $500 deposit](https://buy.stripe.com/7sYeV70ccazVaLF8189k401)

[Pre-order Rosie 1000 with a $500 deposit](https://buy.stripe.com/bJeaER3oocI39HBdls9k402)

Rosie 1400 is $29,000. The arm, RosieOS controller, drive cabinet, cabling, pendant, and commissioning at your site are included. Welding packages are quoted per application.

Pre-order Rosie 1400 with a fully refundable $500 deposit per robot. Deliveries begin Q1 2027. We confirm your production slot by email within one business day and send your ship date as production is scheduled. The $28,500 balance is invoiced before shipment.

[Pre-order Rosie 1400 with a $500 deposit](https://buy.stripe.com/eVqbIV1ggfUf4nha9g9k400)

Prefer a written proposal first? Complete the fields that apply. We reply with a proposal, lead time, and a date to see Rosie run in Hawthorne. Not sure which reach? Pick "Help me choose" and describe the part. Sending opens a pre-filled email in your own mail client. This site stores nothing.

Or write directly to [generalcontact@advancedmetalresearch.com](mailto:generalcontact@advancedmetalresearch.com?subject=Order%20Rosie)

**Form** (fields)

- Name
- Company
- Email
- Quantity
- Model:
  - Rosie 600
  - Rosie 1000
  - Rosie 1400
  - Help me choose
- Packages:
  - MIG
  - TIG
  - Laser
  - War Machine cell
- What does Rosie need to move, carry, or position?
