Batteries Non-Rechargeable (Primary)

Results: 5
Manufacturer
Murata ElectronicsSeiko Instruments
Packaging
BoxBulkTray
Product Status
ActiveNot For New Designs
Capacity
53mAh60mAh
Size / Dimension
0.46" Dia x 0.08" H (11.6mm x 2.0mm)0.46" Dia x 0.08" H (11.6mm x 2.1mm)
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Mfr Part #
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Price
Series
Package
Product Status
Battery Chemistry
Battery Cell Size
Voltage - Rated
Capacity
Size / Dimension
Termination Style
SR1120
SR1120
BATT SILVER OX 1.55V COIN 11.6MM
Murata Electronics
1,052
In Stock
1 : $2.07000
Box
Box
Not For New Designs
Silver Oxide
Coin, 11.6mm
1.55 V
60mAh
0.46" Dia x 0.08" H (11.6mm x 2.1mm)
Requires Holder
SR1120_11.6mmx2.0mm
SR1120SW
BATT SILVER OX 1.55V COIN 11.6MM
Seiko Instruments
207
In Stock
1 : $3.62000
Tray
Tray
Active
Silver Oxide
Coin, 11.6mm
1.55 V
53mAh
0.46" Dia x 0.08" H (11.6mm x 2.0mm)
Requires Holder
BATT SILVER OX 1.55V COIN 11.6MM
SR1120W
BATT SILVER OX 1.55V COIN 11.6MM
Seiko Instruments
66
In Stock
1 : $2.56000
Tray
Tray
Active
Silver Oxide
Coin, 11.6mm
1.55 V
53mAh
0.46" Dia x 0.08" H (11.6mm x 2.0mm)
Requires Holder
BATT SILVER OX 1.55V COIN 11.6MM
SR1120W-5SE
BATT SILVER OX 1.55V COIN 11.6MM
Seiko Instruments
0
In Stock
Check Lead Time
300 : $2.54097
Bulk
Bulk
Active
Silver Oxide
Coin, 11.6mm
1.55 V
53mAh
0.46" Dia x 0.08" H (11.6mm x 2.0mm)
Requires Holder
SR1120_11.6mmx2.0mm
SR1120SW-5SE
BATTERY SILVER OXIDE COIN 11.6MM
Seiko Instruments
0
In Stock
Check Lead Time
300 : $2.54097
Bulk
Bulk
Active
Silver Oxide
Coin, 11.6mm
-
53mAh
0.46" Dia x 0.08" H (11.6mm x 2.0mm)
Requires Holder
Showing
of 5

Batteries Non-Rechargeable (Primary)


Non-rechargeable (Primary) battery cells are electrochemical storage devices designed to be discarded when depleted. These single use cells produce energy from a non-reversible chemical reaction when placed under load and have stable long-term energy storage characteristics. Primary cells are typically less expensive than a similarly rated rechargeable (secondary) type. Some primary battery types, such as alkaline, are prone to leak and corrode over time especially when in a depleted state.