The H1001-M is the Incu-Shaker Mini — Benchmark Scientific's benchtop incubator-shaker combining temperature-controlled incubation with shaker mixing in a single chassis. NEW PRODUCT FAMILY: Incu-Shaker incubator-shakers. 115 V / 230 V chassis (115 V or 230 V, 50–60 Hz, 300 W) — single SKU covers global voltage. Includes non-slip rubber mat for sample / vessel positioning.
Author confidence note (MEDIUM): No specific Incu-Shaker Mini brochure in available corpus. Confirm exact temperature range, temperature stability, shaking speed range (RPM), shaking orbit / amplitude, chamber dimensions, and accessory compatibility (does it accept H1000-MR or H1000-P platforms?) with Benchmark Scientific technical support. Universe also has a duplicate row for this SKU (same name, price, electrical — data quirk; flagging for staging-table cleanup).
Voltage options: This unit can be ordered with European voltage requirements (230V/50Hz). Contact us to order.
Key Specifications
| SKU | H1001-M |
| Type | Benchtop incubator-shaker (combined temperature + mixing) |
| Voltage | 115 V or 230 V, 50–60 Hz (discrete 115 V / 230 V variants) |
| Power | 300 W |
| Plug type | Single SKU; verify plug at order |
| Includes | Non-slip rubber mat for sample positioning |
Why an Incubator-Shaker
Incubator-shaker workflows combine two traditionally separate instruments — temperature-controlled incubator + shaker — into a single chassis. The combined approach addresses workflows where samples need both temperature and mixing: bacterial / yeast culture at controlled temperature (typically 30–37 °C) with continuous mixing for aeration; cell-culture suspension workflows at 37 °C with mild shaking for nutrient distribution; enzyme / protein assays requiring temperature stability and mixing during incubation; and method-development workflows where temperature and mixing parameters are co-optimized.
Combined chassis advantages over separate incubator + shaker: a single bench footprint instead of two units; the sample never leaves the controlled environment, so there is no temperature loss during shaker transfers; a single power connection and single calibration instead of maintaining two instruments; and cost efficiency for moderate-throughput workflows.
Pick the Incu-Shaker Mini (H1001-M) when:
- Bacterial / yeast / cell-culture workflow at moderate throughput
- Bench-space-constrained labs — combined chassis fits where two separate instruments don't
- Educational / undergraduate teaching workflow at scaled-down bench format
- Method-development workflows at compact-mini scale
Frequently Asked Questions
What is the Incu-Shaker Mini (H1001-M)? A benchtop incubator-shaker that combines temperature-controlled incubation with shaker mixing in a single chassis.
What voltage and power does the H1001-M use? 115 V or 230 V, 50–60 Hz, 300 W.
Why choose an incubator-shaker over separate instruments? A single bench footprint, the sample never leaving the controlled environment, single power and calibration, and cost efficiency at moderate throughput.
How does the H1001-M compare to the H2010? The H1001-M Mini is the entry-tier chassis; the H2010 steps up to 10 L production scale.
What is included with the H1001-M? A non-slip rubber mat for sample positioning.
Ordering & Configuration
Confirm temperature range and stability with Benchmark Scientific tech support — typical incu-shaker workflows require ambient–60 °C range with ±0.5 °C stability.
Confirm shaking speed range — typical incu-shaker workflows operate at 50–300 RPM range.
Confirm platform compatibility — verify whether H1000-MR / H1000-P shaker platforms fit the Incu-Shaker Mini chassis envelope, or whether the chassis ships with a fixed integrated platform.
Confirm at quote: voltage / plug type, intended temperature / shaking workflow, platform / accessory compatibility, sample-throughput planning, and lead time.
Warranty: Per Benchmark Scientific standard capital-equipment terms.
Incu-Shaker Mini — 115 V / 230 V benchtop incubator-shaker. Pick for combined temperature-controlled incubation + shaking workflows at compact-mini throughput scale.