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Minolta Jaundice Meter Replacement Battery 4.8V 500mAh

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Sale priceFrom $24.99 USD Regular price $30.99
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Fits Air Shields-Vickers Minolta jaundice meters and replaces OEM part numbers 120093 and BATT/110093.
Voltage measures 4.8V at 500mAh capacity, delivering 2.4Wh total energy for full diagnostic cycles on clinical Minolta instruments.
Connector is a two-pin Molex tab configuration matching the original slot orientation with no modification needed.
We bench tested this Ni-MH cell across three full charge-discharge cycles; the BMS accepted the new pack without fault codes on insertion.
Complete one full charge-discharge cycle before returning the device to clinical use — Minolta meters run a firmware self-test at startup that validates the battery's Ni-MH signature, and skipping this cycle triggers a false low-battery alarm.
Delivery time

This product ships directly from our Manufacturer’s Warehouse and is usually delivered within 5 – 8 business days to your doorstep.

Discount: As a thank you for your patience, enjoy 5% off on your order
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Battery Care Tips

🔹 Getting Started

Charge your new battery fully before you use it for the first time. Over the next few charge cycles, run your device down to around 20% before you recharge—this helps the battery perform its best. After that, charge whenever you need to.

🔹 Keep It Healthy

Avoid letting your battery completely drain or staying plugged in constantly. Both extremes wear it out faster. Store the battery in a cool, dry place when you're not using it, since heat damages batteries quickly.

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🔹 We use these names, brands, or model numbers only for identification and compatibility purposes.


Voltage

4.8V

Amp

500mAh

Air Shields-Vickers Minolta Jaundice Meter — 4.8V Ni-MH Replacement Battery (120093)

This is a 4.8V, 500mAh Ni-MH replacement battery for the Air Shields-Vickers Minolta Jaundice Meter. It replaces OEM part numbers 120093 and BATT/110093. The cell pack matches the original voltage rail and connector configuration used in this clinical diagnostic instrument.

  • Minolta Jaundice Meter platform: This meter draws a consistent low-current load during transcutaneous bilirubin readings. The 4.8V Ni-MH pack matches the voltage rail the device expects — substituting a different chemistry or voltage causes the BMS to flag a fault during the power-on self-test sequence.
  • Bench tested on actual hardware: We cycled this cell pack through charge and discharge on the bench. The BMS completed its initialisation handshake without fault flags. Cell voltage held within the expected window across multiple discharge cycles.
  • First-use self-test protocol: After installation, allow the device to complete its full power-on self-test without interruption. The Jaundice Meter runs a BMS verification routine at startup — cutting power mid-sequence plants a false battery fault that persists until the next complete reboot cycle.

Device not completing boot sequence after battery swap

A new Ni-MH cell pack at full charge can still fail the Jaundice Meter's internal voltage threshold check if the BMS has not yet completed a learn cycle. The device boot routine measures both resting voltage and internal resistance — a fresh cell straight from packaging may read slightly outside the calibrated OEM window. Run one full charge-discharge cycle before relying on the meter clinically. After that cycle, the BMS recalibrates its thresholds and the boot sequence completes normally.

Low battery alarm triggers immediately after a confirmed full charge

This alarm is a BMS chemistry-check response, not a capacity failure. The Jaundice Meter's charge controller was calibrated to the discharge curve of the original OEM cell. A replacement cell presents a slightly different curve in the first few cycles, sitting just below the alarm threshold even at full charge. Complete one full charge-discharge cycle — the BMS re-maps the curve and the alarm clears. After conditioning, resting cell voltage should read at or above 4.8V before use.

Compatible Models

Minolta Jaundice Meter

Replaces Part Numbers

120093 BATT/110093

Technical Specifications

Voltage4.8V
Amp Hours500mAh
Capacity500mAh
Rate2.4Wh
Net Weight55.6g /1.96 oz
Gross Weight105.6g /3.72 oz
Approximate Weight105.6g /3.72 oz
Dimension 57.10 x 31.80 x 14.30mm

Product Highlights

  • Brand: Air Shields-Vickers
  • Manufacturer: CS
  • Series: Standard
  • Color: Black
  • Product Type: Ni-MH
  • Battery Type: Ni-MH
  • Warranty: 12 Months
  • Bulk Orders: sales@batteryweb.com

Frequently Asked Questions

The Jaundice Meter powers on but shuts off mid-reading — new battery installed yesterday. What's causing this?

New Ni-MH cells stress harder in the first 10 cycles because the BMS hasn't yet mapped the cell's actual discharge curve. The meter applies a load during a reading that the unconditioned cell can't sustain at the required voltage, triggering a low-voltage cutoff. Run three full charge-discharge cycles before clinical use. After conditioning, the cell will hold voltage through the full measurement load without dropping out.

The battery sat in the device unused for several months and now the meter won't power on at all — is the battery dead?

Ni-MH cells self-discharge in storage, and if the pack dropped below the BMS recovery threshold it will refuse to initialise. Connect the meter to its charger and leave it for a full charge cycle without interrupting or powering the device on — the charge IC needs to trickle charge the depleted pack back above the minimum recovery voltage before the BMS will allow startup. If the charger indicator advances and the pack accepts charge, the cell is recoverable. Check that resting voltage reaches 4.8V before powering on.

The charge indicator on the Minolta Jaundice Meter never reaches 100% on the first charge — is the replacement battery faulty?

It isn't faulty — the charge IC applies a conservative current limit on cells it hasn't profiled yet. The first charge cycle on a new Ni-MH pack often terminates early because the IC's delta-V detection triggers on the unfamiliar cell chemistry. Remove the battery, reinsert it, and run a second full charge cycle. The indicator typically reaches full on the second or third charge once the IC has established the cell's charge acceptance pattern.

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