Index / Shell 26.5 x 17.5 x 48.5 mm / 6LF22
6LF22
6LF22 — alkaline, 9 V, 26.5 x 17.5 x 48.5 mm, known as a 9V cell. Current. 6LR61 takes the same slot at the same 9 V; 6F22 drops straight in, and runs the same 9 V, and it is carbon zinc, which holds far less; 7.2H5 drops straight in, and runs 7.2 V — -20.0%, which reads low, and it is rechargeable, never a drop-in.
What fits the compartment, and what does not
Fit answers whether it enters the compartment. Voltage answers whether the circuit will notice. A cell that fits is not always a safe substitute.
| Cell | Fit | Voltage | Chemistry | Capacity |
|---|---|---|---|---|
| 6LR61 | drop-in | 9 V 0%same volts | alkaline | 565 mAh |
| 6F22 | drop-in | 9 V 0%same volts | carbon zinc | 330 mAh |
| 7.2H5 | drop-in | 7.2 V -20.0%reads off | nickel-metal hydride | 150 mAh |
| 1604LC | too tall | 9 V 0%same volts | lithium | — |
3 cells drop in and they are not equivalent: of those, 7.2H5 sits furthest at -20.0% of this cell’s 9 V, low enough that a calibrated instrument reads below true.
Also stamped 1604A, 522, 522 ALKALINE POWER, EN22, A522
The axis is the difference from this cell, not a range of volts: the centre is 9 V and the ruled middle is the class where a substitute still runs and only reads off — a gap within 20.0% of the higher of the two nominals, which counted from this cell reaches 20.0% below and 25.0% above. One gap, two readings: the other cell’s page prints the other figure for this same pair and lands on the same class. Outside those two rules the class changes. The middle is drawn straight and the outer fifth of each side is compressed, so -20.0% puts the mark in one place here and in the same place on every other page of this site.
Same size, and not the same voltage
The 9V compartment takes cells of more than one voltage. This one is 9 V; AC146X in the same size runs 8.4 V, -6.7% of this cell — low enough that a calibrated instrument reads below true. Nothing about the shape warns you, which is why the label matters more here than the size does.
What the chemistry changes
Everything above answers size and voltage. What it cannot answer is chemistry, and 3 other kinds are in play here beside the alkaline this cell uses.
- Alkaline drops in voltage steadily as it empties, so a device calibrated for a flat discharge will drift as it goes.
- Carbon zinc carries a fraction of the capacity of an alkaline cell of the same size and leaks more readily when spent.
- Nickel-metal hydride is rechargeable and sits at 7.2 V, below the nominal of the primary cell whose slot it takes. It is never a drop-in for a primary cell no matter how well it fits, and a device that cuts off early will read it as flat.
- Lithium runs at 9 V, roughly six times the nominal of the alkaline and silver classes. Of the 26 lithium cells here whose envelope the maker publishes, 3 share that envelope with an alkaline or silver cell.
What a smoke alarm needs from a cell this size
In a United States home the commonest thing behind a 9 V cell is a smoke alarm, and an alarm is the one device that has to warn you before it stops. 7.2H5 fits the same clip and is rechargeable at 7.2 V. Its voltage falls off a cliff instead of drifting down, so the low-battery chirp an alarm is tuned to may never arrive.
Alarm manufacturers name an acceptable cell on the unit and in the manual. Where a device is a safety device, that name settles it and this table does not. 4 cells measure close enough to compare against it in the Energizer data this site reads, and 4 of them are still listed. The nearest is 6LR61: it drops straight in and runs 9 V, same volts.
- Energizer files it for Asia Pacific, Europe, Latin America and North America, which is where the part is sold rather than where the cell will work.
- The maker still lists it, under 4 product lines: 522, 522 Alkaline Power, A522 and EN22.
Drawn to scale
6LF22, side elevation, from the published figures
The same scale for all of them. The dashed line marks the height of 6LF22: a silhouette that stops short of it will not reach the contact, one that crosses it will not let the cover close.
Every published figure
Capacity is missing here, and with it every figure derived from capacity: 11 figures are published, 4 fields are not.
| Designation | 6LF22 |
|---|---|
| Also stamped | 1604A, 522, 522 ALKALINE POWER, EN22, A522 |
| Chemistry | Alkaline |
| Nominal voltage | 9 V |
| Length | 26.5 mm |
| Width | 17.5 mm |
| Height | 48.5 mm |
| Weight | 45 g |
| Volume | 21 cc |
| In the Energizer catalog | Listed |
| Listed for | Asia Pacific, Europe, Latin America, North America |
What the maker says about cold
The sheet for 6LF22 carries an operating range as well as a capacity, and it reaches -18 C (-0 F) at the cold end. 3 more published figures follow it, and none of them reaches a cross-reference table.
The part occupies 21 cubic centimeters and weighs 45 g. Energizer files it for Asia Pacific, Europe and Latin America.
- Operating range
- -18 C (-0 F) to 55 C (131 F). Below the lower figure the maker makes no claim at all, which is not the same as the cell stopping.
- Maker's classification
- Alkaline. That is the maker's own filing word for the part, not a standard designation.
- Mass against volume
- 45 g filling 21 cubic centimeters. When the printing has worn off, a kitchen scale separates two cells of one envelope faster than a caliper does.
- Where the part is filed
- Asia Pacific, Europe, Latin America and North America. That is a statement about the maker's distribution and not about where the cell works.
Is that a lot of energy?
Capacity is not published for this cell, so it is absent from the energy ranking rather than placed at the bottom of it. What can be compared is size: 26.5 x 17.5 x 48.5 mm, against a shell that holds 3 designations.
A width the catalog keeps returning to
not published mm is a width this catalog keeps coming back to: 0 boxes sit within half a millimeter of it, 6LF22 included.
- 6F22 — the next step down by volume: 20.3 cubic centimeters against this cell's 21.
- 1604LC — the next step up: 21.4 cubic centimeters, 102% of this one.
- 8 of the 50 boxes share its 9 V exactly.
The maker's own part numbers
6LF22 carries 5 names beyond the designation, and every one of them is a manufacturer part number: a catalog line, not a size and not a standard.
- 1604A — a manufacturer part number for 6LF22, not a standard designation.
- 522 — a manufacturer part number for 6LF22, not a standard designation.
- 522 ALKALINE POWER — a manufacturer part number for 6LF22, not a standard designation.
- The maker's own catalog carries 4 product lines under it.
The identical cell with different insides
Nothing about the outside of 6LF22 separates it from 7.2H5: the same 26.5 x 17.5 x 48.5 mm, and 7.2 V against this cell's 9 V. The label is the whole difference.
- 7.2H5 — the same 26.5 x 17.5 x 48.5 mm in nickel-metal hydride at 7.2 V. Identical on a caliper, different in the circuit.
- 7.2H5 — sold as the same 9V and rated 7.2 V against this cell's 9 V.
- On a scale the difference shows before it shows on a caliper: this one weighs 45 g.
What this page cannot tell you
3 of the 7 fields this site reads are empty for 6LF22: capacity, cutoff voltage and impedance. Everything computed from them is absent from this page rather than estimated.
The blanks are the same in all 4 records behind this designation, so they are the catalog's silence and not a merge losing a value. What is not missing is the envelope: 26.5 x 17.5 x 48.5 mm, published and checked against the designation itself.
- No capacity — so this page cannot tell you how long it runs, and every energy figure that depends on it.
- No cutoff voltage — so this page cannot tell you what the capacity figure was counted down to, without which the capacity is a number without a scale.
- No impedance — so this page cannot tell you whether the cell can drive a pulse, which is the whole question in a watch or a sensor.
Before you swap anything
Everything here is computed from published dimensions and nominal voltages. That answers whether a cell enters the compartment and whether the voltage matches on paper. It does not answer what your device does with the difference, and it cannot: a cell that fits can still be the wrong cell.
One more limit, and it is the biggest. This site reads a single manufacturer’s catalog. When a page says a designation is not listed, that means Energizer no longer offers a part under it — not that nobody makes the cell. Other makers may still sell it, and for common sizes they usually do.
A voltage difference is one relation between two cells, and this page prints it from the cell it is about — in every table on the page, including the one listing cells no longer made. A figure always belongs to the cell whose voltage is printed beside it: a cell that runs lower than this one carries a minus here, one that runs higher carries a plus, and two cells at the same nominal voltage carry zero. Meet the same pair on the other cell’s page and the sign is the other one, with the figure taken against that cell instead of this one; where the two run at the same voltage, both pages print zero. The class beside the figure is not read off that figure directly. It is decided on the gap itself, taken against the higher of the two nominal voltages, so one pair of cells gets one class whichever page you meet it on: counted from this side the boundary of the class that still runs falls at 20.0% below and 25.0% above, which is the same gap divided once by the larger nominal and once by the smaller. What genuinely differs between the two directions is the consequence, and the words carry it: a cell that runs low makes a calibrated instrument read below true, and a cell that runs high makes it read above.
3 things this site cannot see. Whether the contacts reach a shorter cell. Whether the device was calibrated for a chemistry that holds its voltage flat, which silver oxide does and alkaline does not. Whether the equipment tolerates the higher current a different chemistry can deliver. Rechargeable cells are never a drop-in for primary cells regardless of size.
Cells measured next to this one
The shell is shared across chemistries: 2 cells sit at exactly this size in alkaline and nickel-metal hydride. Same hole, different insides, different discharge curve.
Where these numbers come from
Dimensions, voltages, chemistries and capacities are published by the manufacturer and reproduced without change. Everything else on the page is ours, computed from those figures: whether one cell fits where another sat, how far apart their voltages are, stored energy and energy per cubic centimeter, the rank within a shell, and the check of the designation against the measured size.
Fit is decided within 0.3 mm on every axis, which is the order of a contact spring's travel. Voltage classes are decided by consequence, not by roundness, and they are decided on the gap between two nominal voltages taken against the higher of the two: 2.0% or less of it is the same working voltage, 6.0% starts to matter to a calibrated instrument, and past 20.0% it is a different class altogether. Measuring the gap against the higher figure is what makes the verdict the same from either cell’s page, while the printed percentage stays counted from the cell you are reading about. Cells with identical stored energy share a rank instead of being ordered arbitrarily.
Ranking uses capacity times nominal voltage, because capacity alone is not comparable across chemistries: 150 mAh at 3 V is twice the energy of 150 mAh at 1.5 V. Neighbors are chosen by measurement and never alphabetically, because two cells filed next to each other by name usually have nothing in common. A blank in any table means the maker publishes no figure, which is not the same as zero.
Source: Energizer technical data, retrieved 1 September 2026.
The records behind this page
6LF22 is not one catalog entry. 4 records carry this designation, 4 of them with a technical data sheet, and each is numbered below with a direct link to the sheet the figures came from.
- [1] Energizer catalog record 171, listed as 522, active in the snapshot. Technical data sheet: 522.pdf.
- [2] Energizer catalog record 186, listed as A522, active in the snapshot. Technical data sheet: a522.pdf.
- [3] Energizer catalog record 270, listed as EN22, active in the snapshot. Technical data sheet: en22-industrial-na0920.pdf.
- [4] Energizer catalog record 2517, listed as 522 Alkaline Power, active in the snapshot. Technical data sheet: 522_alkaline_power_gl.pdf.
Every figure above is reproduced from those records without change; the comparisons are ours and are described on the method page. Snapshot: Energizer technical data, retrieved 1 September 2026.
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