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Lead Acid BatteryModel evidence review

Techfine 12 V 150 Ah lead-acid battery: Verify Capacity, Case and Duty

This page preserves the current source record for the Techfine 12 V 150 Ah lead-acid battery. 150 Ah at 10-hour rate; 484 × 170 × 242 mm container; about 41 kg. Capacity depends on its stated rate, cutoff and temperature; it must not be converted into a universal runtime or bank-design claim.

Displayed identity: 12 V 150 Ah lead-acid battery
Current source evidence: 150 Ah at 10-hour rate; 484 × 170 × 242 mm container; about 41 kg
Voltage: 12 V title/table route
Evidence boundary: Rate, temperature and exact model remain decisive
Build Your RFQ

Current source route: 12 V 150 Ah lead-acid battery.

Current source parameter table

This table is preserved from the current source record. Read it with the identity, compatibility and document boundaries below; unresolved conflicts are not corrected by assumption.

Nominal Voltage12V
Nominal Capacity(20HR)150AH
DimensionLength484±3mm (19.06 inches)
Width170±2mm (6.69 inches)
Container Height242±2mm (9.53inches)
Total Height (with Terminal)247±2mm (9.72inches)
Approx WeightApprox 41 kg(90.39lbs)
TerminalT11
Container MaterialABS
Rated Capacity156.0 AH/7.80A(20hr,1.80V/cell,25°C/77°F)
150.0 AH/15.0A(10hr,1.80V/cell,25°C/77°F)
129.0 AH/25.8A(5hr,1.75V/cell,25°C/77°F)
117.0 AH/39.0A(3hr,1.75V/cell,25°C/77°F)
91.5 AH/91.5A(1hr,1.60V/cell,25°C/77°F)
Max. Discharge Current1500A (5s)
Internal ResistanceApprox 3.5mΩ
Operating Temp.RangeDischarge:-15~50℃ (5~122°F)
Charge: 0~40°C(32~104°F)
Storage:-15~40°C(5~104°F)
Nominal Operating Temp. Range25 ±3°C(77±5°F)
Cycle Uselnitial Charging Current less than 45.0 A.Voltage
14.4V~15.0V at 25℃(77°F)Temp.Coefficient -30mV/℃
StandbyUseNo limit on Initial Charging Current Voltage
13.5V~13.8V at 25℃(77F)Temp.Coefficient -20mV/℃
Capacity affectedby Temperature40°C (104°F)103%
25℃(77°F)100%
0℃(32°F)86%
Self DischargeTechfine batteries may be stored for up to 6monthsat 25°C(77°F)and then a freshening charge is required. Forhigher temperatures the time interval will be shorter.

Current document status

Request the current exact-model datasheet, charge/float limits, discharge table, terminal drawing, production revision and transport files before order release.

Current battery evidence

Keep capacity rate and physical format together

Battery bank design needs the exact cell construction, rate, temperature, case, terminals and charging limits.

Current record

150 Ah at 10-hour rate; 484 × 170 × 242 mm container; about 41 kg

Capacity boundary

Ah is rate- and cutoff-dependent. Confirm the exact discharge table, temperature and end voltage before calculating usable energy or runtime.

Construction and charging

Lead-acid, gel and AGM labels are not interchangeable. Confirm exact construction, cyclic/standby duty, charge/float/equalize limits and temperature compensation.

Bank integration

Confirm series/parallel count, charger/controller settings, BMS if applicable, fuse/cable, ventilation, enclosure, terminals and maintenance access.

Battery RFQ checks

Six checks before finalizing the battery bank

A battery page is one component of a defined DC system and operating duty.

Exact model

Request model, nameplate, construction and current datasheet.

Energy and runtime

State load watts, discharge rate, cutoff, reserve, temperature and target autonomy.

Charge settings

Confirm charger/controller voltage, current, float/equalize rules and temperature compensation.

Mechanical fit

Confirm case, terminal, dimensions, mass, clearance, rack/cabinet, cable and service access.

Duty and environment

Confirm cyclic or standby profile, ambient temperature, ventilation, installation orientation and maintenance.

Evidence and supply

Request test basis, safety/transport files, packing, warranty, sample, lead time and substitution controls.

Battery boundaries

A 12 V Ah headline is not a runtime or compatibility guarantee

Final bank performance depends on rate, temperature, charging, age, wiring and exact battery construction.

Capacity is conditional

Do not use an Ah headline without its discharge rate, cutoff, temperature and test basis.

Construction needs confirmation

Gel, AGM and lead-acid terminology needs an exact model document; do not infer electrolyte, valve regulation or maintenance requirement.

Runtime requires system inputs

Actual load, inverter losses, cable losses, reserve, battery condition and temperature determine runtime.

Documents control the order

Packing, transport, warranty, production revision, terminal and installation data must match the quoted exact model.

Continue the battery review

Define bank energy and export evidence

Use existing guidance to prepare the actual system inputs and document request.

Lead-acid battery FAQ

Questions to close before quotation

The exact model document and bank design remain decisive.

What capacity applies to this 12 V 150 Ah lead-acid battery?

The current source record is 150 Ah at 10-hour rate; 484 × 170 × 242 mm container; about 41 kg. Confirm the exact discharge-rate table, cutoff and temperature before sizing.

Can capacity be used as a runtime value?

No. Runtime needs load, discharge rate, inverter losses, cutoff, reserve, temperature, battery condition and bank wiring.

Are gel, AGM and lead-acid labels interchangeable?

No. Confirm exact construction, charge/float/equalize settings, duty cycle, terminals and maintenance requirements from the current model document.

Which documents should the RFQ include?

Request exact datasheet, nameplate, discharge table, charge settings, dimensions/terminal drawing, test/transport files, warranty and packing.

Prepare a verified 12 V 150 Ah lead-acid battery RFQ

Send load and autonomy target, charge source/settings, environment, bank layout, case/terminal constraints and required documents.

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