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RC用AC/DC LiPoバッテリーチャージャー

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    ToolkitRC M6DAC V2 800W 16A デュアルチャネル(2CH) AC/DC スマート 1-6S LiPo バッテリーバランス充電器 – XT60

    在庫切れ

    本格的なRC充電のために設計されたM6DAC V2(型番: TK4100)は、真のデュアル16A、チャネルあたり400W設計とAC 200Wの利便性、最大DC 800Wのパワーを組み合わせています。<0.005Vの精度でバランスを取り、電話やノートパソコン用の65W USB-C PDポ...

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    元の価格 $99.99 - 元の価格 $99.99
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    売り切れ
  • 元の価格 $129.99 - 元の価格 $129.99
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    ToolkitRC M6DAC Pro 800W 16A デュアルチャネル(2CH) AC/DC スマート 1-6S LiPo バッテリーチャージャー – XT60

    残り4台のみ

    本格的なRC充電のために設計されたM6DAC Pro(品番: TK42000)は、真のデュアル16A、チャネルあたり400W設計とAC 300Wの利便性、最大DC 800Wのパワーを組み合わせています。<0.005Vの精度でバランスを取り、10Wワイヤレス充電と電話やノートパソコン用の...

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    元の価格 $129.99 - 元の価格 $129.99
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    現在の価格 $129.99 USD
  • 元の価格 $199.00 - 元の価格 $199.00
    元の価格 $199.00
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    現在の価格 $199.00 USD

    ToolkitRC Q6AC 1000W 15A クアッドチャネル(4CH) AC/DC スマート 1-6S LiPo バッテリーバランス充電器 – XT30/XT60

    在庫に10以上あります

    ToolkitRC Q6AC(在庫番号: TK12900)は、パワフルで信頼性が高く使いやすいスマートチャージャーを必要とするRCパイロットやドライバー向けに設計された4チャネルのリポバッテリーチャージャーです。AC/DCの柔軟性、多チャネル操作、正確なセルバランス機能を備え、Toolkit...

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    元の価格 $199.00 - 元の価格 $199.00
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    現在の価格 $199.00 USD
  • 元の価格 $139.99 - 元の価格 $139.99
    元の価格 $139.99
    $139.99 USD
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    現在の価格 $139.99 USD

    ISDT K2 ZIP 8S LiPo スマートデュアル充電器 – AC 200W / DC 500W ×2

    在庫に10以上あります

    ISDT K2 ZIPは、2つの独立した充電チャンネル、内蔵AC電源、外部DC電源接続時の大幅に高い出力を求めるRCユーザー向けに設計された、コンパクトで高出力な8S LiPoスマートデュアル充電器です。 AC 200W充電と、チャンネルあたり最大DC 500W、充電電流最大20A ×2、1S...

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    元の価格 $139.99 - 元の価格 $139.99
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    現在の価格 $139.99 USD
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    元の価格 $64.99
    $64.99 USD
    $64.99 - $64.99
    現在の価格 $64.99 USD

    ISDT 608AC 200Wスマートバランスチャージャー – AC/DC 8A 1~6S LiPo充電器

    残り9台のみ

    ISDT 608ACは、便利なAC接続充電と、適切な外部DC電源で使用した際の大幅に高い出力を組み合わせた、モジュール式AC/DCスマートバランス充電器です。着脱式AC電源モジュールを取り付けた状態では、608ACは最大50Wの充電出力を提供します。電源モジュールを取り外し、対応する10~...

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    元の価格 $64.99 - 元の価格 $64.99
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    現在の価格 $64.99 USD
  • 元の価格 $229.99 - 元の価格 $229.99
    元の価格 $229.99
    $229.99 USD
    $229.99 - $229.99
    現在の価格 $229.99 USD

    ISDT K4 8S LiPoスマートデュアル充電器 – AC 400W / DC 600W ×2

    残り10台のみ

    ISDT K4は、負荷の大きいRCバッテリー環境向けに設計された、高出力8S LiPoスマートデュアル充電器です。独立制御可能な2つの充電チャンネル、内蔵100~240V AC電源システム、高性能10~34V DC入力を、1台のデスクトップ充電器に搭載しています。 AC電源使用時、K4は合計最...

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    現在の価格 $229.99 USD

What Is an AC/DC LiPo Battery Charger?

An AC/DC LiPo battery charger is an RC charger designed to operate from two different types of input power. AC operation allows the charger to connect to a compatible mains outlet, while DC operation allows it to run from a suitable external DC source.

That combination makes AC/DC chargers particularly versatile. The same charger can work as a self-contained charging station at home and then become part of a portable or higher-power DC charging system at a flying field, race track, workshop or RC event.

Why Choose a Dual-Input RC Charger?

The main reason to choose an AC/DC charger is not simply that it has more connectors. The advantage is being able to choose the most appropriate input source for different charging situations.

  • Simple AC charging at home: connect directly to a compatible mains outlet without setting up a separate DC power supply.
  • More flexible field charging: use an appropriate external DC source where AC mains power is unavailable or inconvenient.
  • Potentially higher charging power: many AC/DC chargers provide substantially greater output when operated from a sufficiently capable DC source.
  • One charger for multiple environments: the same charger can move between the home bench, workshop, race pit and flying field.
  • Long-term flexibility: users can start with convenient AC charging and later build a more powerful external DC charging system without replacing the charger.

AC Mode vs DC Mode on the Same Charger

AC and DC are two ways of supplying power to the same charging electronics, but they do not necessarily provide the same maximum charging performance.

Feature AC Mode DC Mode
Power source Compatible AC mains outlet Compatible external DC source
External power supply Not required for normal AC operation Required
Setup Usually simpler Requires input-source planning
Available power Limited by the charger's AC power stage Can be substantially higher on some models
Typical use Home, workshop and powered pit areas Field, pit and high-power charging systems

The benefit of an AC/DC charger is that you do not have to permanently choose one approach. Use whichever input method better fits the charging session.

Does DC Input Always Give an AC/DC Charger More Power?

Many high-performance AC/DC RC chargers do offer considerably more charging power from DC input than from their internal AC power system. This happens because the built-in AC supply has its own wattage and thermal limits, while the charging electronics may be capable of handling considerably more power from an external source.

However, this is not a rule that should be assumed for every charger. Always check the separate AC and DC specifications for the exact model.

Important: A charger's highest advertised wattage may describe DC operation rather than AC operation. Check both figures before estimating how quickly the charger can prepare your batteries from a wall outlet.

Compare Current AC/DC RC Battery Chargers

Current AC/DC chargers range from compact single-channel models to high-output dual and four-channel charging stations. Their AC and DC capabilities can be very different, so input flexibility should be compared together with charging power and supported cell count.

Charger AC Input / Capability DC Input / Capability Channels Standard LiPo Range
ISDT 608AC 100–240V / up to 50W charging 10–30V / up to 200W charging 1 1–6S
ToolkitRC M6DAC V2 100–240V / up to 200W input 7–28V / up to 800W input 2 1–6S
ToolkitRC M6DAC Pro 100–240V / up to 330W input 7–28V / up to 800W input 2 1–6S
ToolkitRC Q6AC 100–240V / approx. 400W total 7–30V / up to 1000W total 4 1–6S
ISDT K2 ZIP 100–240V / up to 200W total charging 10–34V / up to 500W ×2 charging 2 1–8S
ISDT K4 100–240V / up to 400W total charging 10–34V / up to 600W ×2 charging 2 1–8S

Input wattage and charging output are not always quoted in exactly the same way by every manufacturer. Maximum usable charging performance also depends on battery voltage, selected current, active channels, thermal conditions and available input power. Always check the individual product specification before building a charging system around a maximum wattage figure.

AC/DC Does Not Mean Dual-Channel

The terms dual-input and dual-channel describe two completely different charger features.

Term What It Means
Dual-input / AC/DC The charger can receive operating power from both AC and DC sources.
Dual-channel The charger has two independently controlled battery charging channels.

An AC/DC charger can have one, two or more charging channels. For example, the ISDT 608AC is a single-channel AC/DC charger, while other models use dual or multi-channel architectures.

When AC Operation Makes More Sense

AC mode is usually the most convenient choice when compatible mains power is readily available and the charger's AC output is sufficient for the batteries being charged.

This can make AC operation ideal for routine overnight preparation, smaller and medium-size battery packs, home charging stations and users who prefer to avoid carrying a separate high-current DC supply.

When DC Operation Makes More Sense

DC operation becomes particularly useful when the charger is being used away from normal mains power or when the charger's DC mode provides significantly more charging capacity than its built-in AC supply.

Large-capacity 4S, 6S and 8S batteries, two or more active charging channels and short turnaround times can all increase wattage demand. In those situations, an appropriately designed external DC charging system may make better use of the charger's full capabilities.

Matching an External DC Supply to an AC/DC Charger

The DC source must match the charger rather than simply having a large wattage number. Check the charger's supported input-voltage range, maximum input current and required connector before connecting an external supply.

Example: A charger capable of 1000W from DC input will not automatically produce 1000W when connected to a 200W power supply. The complete charging system is limited by the weakest relevant power constraint.

Wiring and connectors also need to be rated appropriately for the voltage and current involved. High-power charging systems should be planned as complete electrical systems rather than choosing the charger and power supply independently.

Choosing Between 6S and 8S AC/DC Chargers

The charger's maximum supported cell count should match both the batteries you use now and the battery systems you realistically expect to use later.

  • Up to 6S: covers a very broad range of RC car, airplane, helicopter, boat and FPV batteries.
  • Up to 8S: adds support for larger high-voltage RC battery systems when the charger specifically lists standard 8S LiPo compatibility.

A higher maximum cell count does not mean the charger is automatically faster. Available wattage and charging current remain separate limitations.

How Charging Power Changes with Battery Voltage

Charging current alone does not describe how demanding a battery is to charge. Higher-voltage batteries require more wattage to maintain the same charging current.

Charging Power ≈ Battery Charging Voltage × Charging Current

For example, a standard 6S LiPo approaches approximately 25.2V near full charge. Maintaining 5A at that voltage requires roughly 126W before allowing for charger losses and overhead.

This is why the difference between AC and DC wattage can become much more noticeable when charging large 6S or 8S batteries than when working with smaller 2S and 3S packs.

AC/DC Chargers for RC Cars, Airplanes, Helicopters, Boats and FPV

AC/DC charging is useful across many RC categories because the input choice is independent of the vehicle type. A 6S airplane pack, 4S RC car pack and FPV battery can all potentially use the same compatible charger when chemistry, cell count, connector setup and charge rate are correctly matched.

Users with several RC platforms may find dual-input charging particularly practical because one charger can remain convenient for everyday home use while still supporting a more powerful or portable DC setup when required.

Check Battery Chemistry as Well as Input Type

AC/DC describes how the charger itself is powered. It does not determine which battery chemistries the charger can safely charge.

Standard LiPo batteries must use the correct LiPo program and must not be charged above 4.20V per cell. LiHV batteries require a charger with a compatible LiHV program when charging above standard LiPo voltage. LiFe, Li-ion, NiMH and other rechargeable batteries also require their corresponding charging programs and limits.

Check chemistry-specific cell-count support on the individual charger. Do not assume that a charger's maximum standard LiPo rating automatically applies to every other lithium chemistry.

What to Check Before Buying an AC/DC LiPo Charger

  • AC input range: confirm compatibility with the mains voltage where the charger will be used.
  • Regional AC plug: check the US, EU, UK, AU or other supplied mains connection where applicable.
  • AC power: check the charger's actual capability when running from mains power.
  • DC input range: make sure an external source stays within the charger's specified voltage limits.
  • Maximum DC input current and wattage: these affect how much charging performance can be accessed from an external power source.
  • Battery cell count: confirm whether you require support through 6S, 8S or another configuration.
  • Battery chemistry: verify LiPo, LiHV, LiFe, Li-ion or other required charging programs.
  • Channel count: decide whether single, dual or multi-channel operation better fits your battery routine.
  • Main charging connector: confirm whether an appropriately rated lead or adapter is required.
  • Balance connection: check the required balance-port arrangement for multi-cell lithium packs.

AC/DC LiPo Charger FAQ

What does AC/DC mean on an RC battery charger?

It means the charger can receive operating power from both a compatible AC mains source and a compatible external DC source. It does not refer to the battery chemistry being charged.

Is an AC/DC charger the same as a dual-channel charger?

No. AC/DC describes two input-power options. Dual-channel describes two independently controlled battery outputs. An AC/DC charger can be single-channel, dual-channel or multi-channel.

Do I need an external power supply for an AC/DC charger?

Not when operating the charger from its supported AC input. A compatible external DC source is required when you choose to use DC operation.

Why is DC power higher than AC power on some chargers?

The built-in AC power system can have a lower wattage limit than the charger's main charging electronics. A sufficiently capable external DC source can therefore allow some models to operate at considerably higher output.

Can I use an AC/DC charger only on AC power?

Yes. If the available AC charging power meets your needs, you do not have to use the charger's DC input simply because it is available.

Can I use an AC/DC charger only on DC power?

Yes, provided the external DC source operates within the charger's specified input range and can safely provide the required power.

Are AC/DC chargers good for field charging?

They can be particularly useful for field charging because the same charger used from mains power at home can operate from a suitable portable or field DC source when required.

Can an AC/DC charger charge 8S LiPo batteries?

Only models specifically rated for standard 8S LiPo batteries should be used. Other AC/DC chargers may be limited to 6S or another maximum cell count.

Compare AC, DC and AC/DC RC Chargers

If you mainly want direct wall-power convenience, explore AC LiPo battery chargers for RC. If your priority is an external power source, field charging or maximum DC performance, compare DC LiPo battery chargers for RC.

For charger options across all input types, cell-count ranges and channel configurations, browse the complete LiPo battery chargers collection.

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