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VCMA-0630-2R2-M-1A

MAZO 2.2 µH 75 V 12.5 A shielded power inductor

インダクタンス
2.2 µH
Isat
12.5 A
Idc
9.5 A
DCR 最大
15 mΩ
ブランド
MAZO
シリーズ
VCMA-0630
サイズ
7.3 × 6.8 × 3 mm
関連する用途
車載 / OBC
特長
AEC-Q200磁気シールドRoHSハロゲンフリー
在庫
メーカー在庫あり

仕様

BrandMAZO / Mazotech
SeriesVCMA-0630
Inductance L02.2 µH ±20% (1 MHz, 1.0 V)
DCR typ.13.5 mΩ
DCR max.15 mΩ
Heating current Idc typ.9.5 A
Heating current Idc max.9 A
Saturation current Isat typ.12.5 A
Saturation current Isat max.12 A
Rated voltage max.75 V
Package7.3 × 6.8 × 3.0 mm max
Operating temperature-55 °C to +125 °C (ambient plus self-temperature rise)
Magnetic constructionMagnetically shielded, low EMI
QualificationAEC-Q200 qualified; RoHS compliant; halogen free
Packaging1500 pieces/reel
ApplicationsAutomotive applications

データシートの要点

3.73.52.358.4
推奨ランドパターン(mm)
推奨ランドパターン
3.5 × 2.35 mm のパッド 2 個、間隔 3.7 mm、全長 8.4 mm
インダクタンス測定条件
1 MHz、1.0 V、25 °C
電流の定義
Isat:インダクタンスが約 30% 低下;Idc:温度上昇 約 40 °C
はんだ付け
リフロー(J-STD-020 準拠)
使用温度(周囲 + 自己発熱)
-55 ~ +125 °C
保存温度
-55 ~ +125 °C
梱包
1 リール 1500 個;キャリアテープのポケット 7.2±0.10 × 7.5±0.10 × 3.6±0.15 mm

MAZO データシート VCMA-0630-XXX-M-1A、改訂 A2、2025-11-26、4 ページ

特性グラフ

インダクタンス – 直流重畳CSV
00.511.522.50510152025Isat 12.5 A直流電流(A)インダクタンス(µH)
温度上昇 – 電流CSV
05010015005101520Idc 9.5 A直流電流(A)温度上昇(°C)

MAZO データシートの代表特性です(参考値)。

はんだ付けと梱包

以下の部品の代替品

VCMA-0630-2R2-M-1A は下記の部品と同じフットプリントクラス・同じ公称値です。置き換える前にランドを確認し、サンプルで評価してください。

ブランド部品番号インダクタンスIsatIrmsDCR 最大サイズフットプリント推奨ランドこの部品と比べた VCMA-0630-2R2-M-1A
CyntecVCMT063T-2R2MN5TMVCMT063T MN5TM2.2 µH8 A · 20%9 A · 40 °C16.5 mΩ6.95 × 6.6 × 2.8 mmパッド互換3.429 × 2.413 mm、間隔 3.429 mmMAZO に近い(差 0.271 mm)そのまま置換できる候補
VishayIHLP2525CZER2R2M5AIHLP-2525CZ-5A2.2 µH10.8 A · 20%8.1 A · 40 °C18.3 mΩ6.86 × 6.47 × 3 mmパッド互換3.429 × 2.413 mm、間隔 3.429 mmMAZO に近い(差 0.271 mm)そのまま置換できる候補
CyntecVCMV063T-2R2MN2TMVCMV063T MN2TM / MN2T2.2 µH14 A · 20%8.7 A · 40 °C19.9 mΩ6.95 × 6.6 × 2.8 mmパッド互換3.429 × 2.413 mm、間隔 3.429 mmMAZO に近い(差 0.271 mm)設計マージンがあれば置換可
VishayIHLP2525CZER2R2M01IHLP-2525CZ-012.2 µH14 A · 20%8 A · 40 °C20 mΩ6.86 × 6.47 × 3 mmパッド互換3.429 × 2.413 mm、間隔 3.429 mmMAZO に近い(差 0.271 mm)設計マージンがあれば置換可
CoilcraftXEL6030-222MECXEL60302.2 µH13 A · 30%10 A · 40 °C13.97 mΩ6.36 × 6.56 × 3.1 mm同一フットプリントクラス5.5 × 1.43 mm、間隔 2.61 mmMAZO と異なる(差 2.93 mm)数値は適合、ランドは要確認
TDKSPM6530T-2R2MSPM6530T2.2 µH8.4 A · 20%8.2 A · 40 °C19.1 mΩ7.1 × 6.5 × 3 mm同一フットプリントクラス3.4 × 1.85 mm、間隔 3.7 mmMAZO と異なる(差 1 mm)数値は適合、ランドは要確認
TDKSPM6530T-2R2M-HZSPM6530T-HZ2.2 µH8.4 A · 20%8.4 A · 40 °C19.1 mΩ7.1 × 6.5 × 3 mm同一フットプリントクラス3.4 × 1.85 mm、間隔 3.7 mmMAZO と異なる(差 1 mm)数値は適合、ランドは要確認
BournsSRP6030CA-2R2MSRP6030CA2.2 µH15.9 A · 30%10 A · 40 °C12.2 mΩ6.6 × 6.4 × 2.9 mm同一フットプリントクラス5.6 × 1.55 mm、間隔 2.5 mmMAZO と異なる(差 2.8 mm)マージンがあれば可、ランドは要確認
BournsSRP6530A-2R2MSRP6530A2.2 µH14 A · 30%10 A · 40 °C20 mΩ7.1 × 6.6 × 3 mm同一フットプリントクラス3.4 × 1.85 mm、間隔 3.7 mmMAZO と異なる(差 1 mm)マージンがあれば可、ランドは要確認
CoilcraftXAL6030-222MECXAL60302.2 µH15.9 A · 30%10 A · 40 °C13.97 mΩ6.36 × 6.56 × 3.1 mm同一フットプリントクラス5.5 × 1.43 mm、間隔 2.61 mmMAZO と異なる(差 2.93 mm)マージンがあれば可、ランドは要確認
Würth Elektronik74438377022WE-MAPI 60302.2 µH14 A · 30%12.4 A · 40 °C11.9 mΩ6.6 × 6.6 × 3.1 mm同一フットプリントクラス6.9 × 2.15 mm、間隔 2.6 mmMAZO と異なる(差 3.4 mm)マージンがあれば可、ランドは要確認
Würth Elektronik74439344022WE-XHMI 60302.2 µH16.25 A · 30%8 A · 40 °C11.55 mΩ6.65 × 6.45 × 3 mm同一フットプリントクラス5.5 × 1.45 mm、間隔 2.55 mmMAZO と異なる(差 2.95 mm)マージンがあれば可、ランドは要確認
CoilcraftXGL6030-222MECXGL60302.2 µH12.2 A · 30%12 A · 40 °C10.3 mΩ6.51 × 6.71 × 3.1 mm同一フットプリントクラス5.5 × 1.43 mm、間隔 2.61 mmMAZO と異なる(差 2.93 mm)数値が劣る
Würth Elektronik74437346022WE-LHMI 70302.2 µH19.1 A · 30%7.7 A · 40 °C20 mΩ7.3 × 6.6 × 2.8 mm同一フットプリントクラス3.5 × 2.95 mm、間隔 2.5 mmMAZO と異なる(差 1.2 mm)数値が劣る
各比較の説明(14 件)
  1. Cyntec VCMT063T-2R2MN5TM (VCMT063T MN5TM): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 8 A (20% drop) vs MAZO 12.5 A typ. (30% drop), rated on different bases so not directly comparable; heating current 9 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 16.5 mΩ max vs MAZO 15 mΩ max. Body 6.95 × 6.6 × 2.8 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.2 mm taller. Land pattern close to MAZO's: two 3.429 × 2.413 mm pads 3.429 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (gap differs by 0.271 mm). Verdict: drop-in candidate (Idc not lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, height clearance, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  2. Vishay IHLP2525CZER2R2M5A (IHLP-2525CZ-5A): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 10.8 A (20% drop) vs MAZO 12.5 A typ. (30% drop), rated on different bases so not directly comparable; heating current 8.1 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 18.3 mΩ max vs MAZO 15 mΩ max. Body 6.86 × 6.47 × 3 mm vs MAZO 7.3 × 6.8 × 3 mm. Land pattern close to MAZO's: two 3.429 × 2.413 mm pads 3.429 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (gap differs by 0.271 mm). Verdict: drop-in candidate (Idc not lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  3. Cyntec VCMV063T-2R2MN2TM (VCMV063T MN2TM / MN2T): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 14 A (20% drop) vs MAZO 12.5 A typ. (30% drop), rated on different bases so not directly comparable; heating current 8.7 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 19.9 mΩ max vs MAZO 15 mΩ max. Body 6.95 × 6.6 × 2.8 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.2 mm taller. Land pattern close to MAZO's: two 3.429 × 2.413 mm pads 3.429 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (gap differs by 0.271 mm). Verdict: replaceable with design margin (Idc not lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, height clearance, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  4. Vishay IHLP2525CZER2R2M01 (IHLP-2525CZ-01): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 14 A (20% drop) vs MAZO 12.5 A typ. (30% drop), rated on different bases so not directly comparable; heating current 8 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 20 mΩ max vs MAZO 15 mΩ max. Body 6.86 × 6.47 × 3 mm vs MAZO 7.3 × 6.8 × 3 mm. Land pattern close to MAZO's: two 3.429 × 2.413 mm pads 3.429 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (gap differs by 0.271 mm). Verdict: replaceable with design margin (Idc not lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples.
  5. Coilcraft XEL6030-222MEC: Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 13 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 10 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 13.97 mΩ max vs MAZO 15 mΩ max. Body 6.36 × 6.56 × 3.1 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.1 mm lower. Land pattern differs from MAZO's: two 5.5 × 1.43 mm pads 2.61 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 2.93 mm). Verdict: the figures qualify, but the pads need checking (MAZO Isat about 4% lower, Idc about 5% lower at 40 °C rise, DCR slightly higher). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  6. TDK SPM6530T-2R2M: Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 8.4 A (20% drop) vs MAZO 12.5 A typ. (30% drop), rated on different bases so not directly comparable; heating current 8.2 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 19.1 mΩ max vs MAZO 15 mΩ max. Body 7.1 × 6.5 × 3 mm vs MAZO 7.3 × 6.8 × 3 mm. Land pattern differs from MAZO's: two 3.4 × 1.85 mm pads 3.7 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 1 mm). Verdict: the figures qualify, but the pads need checking (Idc not lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples.
  7. TDK SPM6530T-2R2M-HZ (SPM6530T-HZ): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 8.4 A (20% drop) vs MAZO 12.5 A typ. (30% drop), rated on different bases so not directly comparable; heating current 8.4 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 19.1 mΩ max vs MAZO 15 mΩ max. Body 7.1 × 6.5 × 3 mm vs MAZO 7.3 × 6.8 × 3 mm. Land pattern differs from MAZO's: two 3.4 × 1.85 mm pads 3.7 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 1 mm). Verdict: the figures qualify, but the pads need checking (Idc not lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  8. Bourns SRP6030CA-2R2M: Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 15.9 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 10 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 12.2 mΩ max vs MAZO 15 mΩ max. Body 6.6 × 6.4 × 2.9 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.1 mm taller. Land pattern differs from MAZO's: two 5.6 × 1.55 mm pads 2.5 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 2.8 mm). Verdict: replaceable with design margin, pads need checking (MAZO Isat about 21% lower, Idc about 5% lower at 40 °C rise, DCR slightly higher). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, height clearance, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  9. Bourns SRP6530A-2R2M: Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 14 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 10 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 20 mΩ max vs MAZO 15 mΩ max. Body 7.1 × 6.6 × 3 mm vs MAZO 7.3 × 6.8 × 3 mm. Land pattern differs from MAZO's: two 3.4 × 1.85 mm pads 3.7 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 1 mm). Verdict: replaceable with design margin, pads need checking (MAZO Isat about 11% lower, Idc about 5% lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  10. Coilcraft XAL6030-222MEC: Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 15.9 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 10 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 13.97 mΩ max vs MAZO 15 mΩ max. Body 6.36 × 6.56 × 3.1 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.1 mm lower. Land pattern differs from MAZO's: two 5.5 × 1.43 mm pads 2.61 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 2.93 mm). Verdict: replaceable with design margin, pads need checking (MAZO Isat about 21% lower, Idc about 5% lower at 40 °C rise, DCR slightly higher). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  11. Würth Elektronik 74438377022 (WE-MAPI 6030): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 14 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 12.4 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 11.9 mΩ max vs MAZO 15 mΩ max. Body 6.6 × 6.6 × 3.1 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.1 mm lower. Land pattern differs from MAZO's: two 6.9 × 2.15 mm pads 2.6 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (pad width differs by 3.4 mm). Verdict: replaceable with design margin, pads need checking (MAZO Isat about 11% lower, Idc about 23% lower at 40 °C rise, DCR slightly higher). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  12. Würth Elektronik 74439344022 (WE-XHMI 6030): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 16.25 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 8 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 11.55 mΩ max vs MAZO 15 mΩ max. Body 6.65 × 6.45 × 3 mm vs MAZO 7.3 × 6.8 × 3 mm. Land pattern differs from MAZO's: two 5.5 × 1.45 mm pads 2.55 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 2.95 mm). Verdict: replaceable with design margin, pads need checking (MAZO Isat about 23% lower, Idc not lower at 40 °C rise, DCR slightly higher). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  13. Coilcraft XGL6030-222MEC: Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 12.2 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 12 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 10.3 mΩ max vs MAZO 15 mΩ max. Body 6.51 × 6.71 × 3.1 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.1 mm lower. Land pattern differs from MAZO's: two 5.5 × 1.43 mm pads 2.61 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (overall span differs by 2.93 mm). Verdict: MAZO figures are weaker, consider only with ample margin (MAZO Isat not lower, Idc about 21% lower at 40 °C rise, DCR slightly higher). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, the land pattern against both drawings and test samples. Both parts are AEC-Q200.
  14. Würth Elektronik 74437346022 (WE-LHMI 7030): Same inductance, 2.2 µH vs MAZO 2.2 µH. Saturation current 19.1 A (30% drop) vs MAZO 12.5 A typ. (30% drop); heating current 7.7 A (40 °C rise) vs MAZO 9.5 A typ. (40 °C rise). DCR 20 mΩ typ vs MAZO 13.5 mΩ typ. Body 7.3 × 6.6 × 2.8 mm vs MAZO 7.3 × 6.8 × 3 mm, MAZO 0.2 mm taller. Land pattern differs from MAZO's: two 3.5 × 2.95 mm pads 2.5 mm apart vs MAZO two 3.5 × 2.35 mm pads 3.7 mm apart (gap differs by 1.2 mm). Verdict: MAZO figures are weaker, consider only with ample margin (MAZO Isat about 35% lower, Idc not lower at 40 °C rise, DCR lower, less conduction loss). Before switching, verify brands define Isat/Irms differently: check the real peak current and allowed temperature rise, height clearance, the land pattern against both drawings and test samples.
数値の比較方法

Isat と Irms は各社データシートの定義どおりで、基準を数値の後に示しています。MAZO の数値は仕様表の標準値です。

推奨ランド:各社データシートが推奨するパッド幅 × パッド長と 2 つのパッドの間隔を、MAZO と比較しています。

同じフットプリントの他の値

本体サイズが同じ 7.3 × 6.8 mm の部品をインダクタンス順に表示。置き換える前に高さを確認してください。

部品番号インダクタンスIsatIdcDCR 最大高さ単価
VCMA-0630-R22-M-1A0.22 µH40 A24.5 A3 mΩ3 mm$0.30
VCMA-0630-R24-M-1A0.24 µH32 A23.5 A3.1 mΩ3 mm$0.30
VCMA-0630-R33-M-1A0.33 µH27 A21.5 A3.5 mΩ3 mm$0.30
VCMA-0630-R36-M-1A0.36 µH26 A20 A3.7 mΩ3 mm$0.30
VCMA-0630-R47-M-1A0.47 µH22 A19 A4.1 mΩ3 mm$0.30
VCMA-0630-R56-M-1A0.56 µH19 A18 A4.5 mΩ3 mm$0.30
VCMA-0630-R68-M-1A0.68 µH18 A16 A5.3 mΩ3 mm$0.30
VCMA-0630-R82-M-1A0.82 µH17 A14.5 A6 mΩ3 mm$0.23
VCMA-0630-1R0-M-1A1 µH15.5 A13.5 A7.4 mΩ3 mm$0.24
VCMA-0630-1R5-M-1A1.5 µH14.5 A12 A11 mΩ3 mm$0.23
VCMA-0630-5R6-M-1A5.6 µH6.5 A5.5 A42 mΩ3 mm$0.33
VCMA-0630-6R8-M-1A6.8 µH6 A5 A48 mΩ3 mm$0.30

同じインダクタンスの他のサイズ

小さい順。本体が大きいほど一般に電流に余裕があります。ランドは異なります。

部品番号インダクタンスIsatIdcDCR 最大本体サイズ単価
VCMA-0420-2R2-M-1A2.2 µH5.5 A4.2 A50 mΩ4.75 × 4.45 × 2 mm$0.21
VCMA-0530-2R2-M-1A2.2 µH8.5 A5.5 A26 mΩ5.7 × 5.4 × 3 mm$0.30
VCMA-1040-2R2-M-1A2.2 µH19 A14 A7 mΩ11.5 × 10.3 × 4 mm$0.52
VCMA-1350-2R2-M-1A2.2 µH28 A21 A4.6 mΩ13.8 × 12.9 × 5 mm$0.72
VCMA-1365-2R2-M-1A2.2 µH35 A30 A3.2 mΩ13.8 × 12.9 × 6.5 mm$0.79

購入

単価 · USD / 個$0.235 個の場合
数量別価格ティアを選択すると数量が設定されます。
数量単価金額
5–49$0.23$1.15
50–149$0.17$8.50
150–499$0.132$19.80
商品小計$1.15商品金額のみで、包装、取扱手数料、送料、関税、税金は含みません。包装と取扱手数料はカートに表示されます。送料、関税、税金は別途確認します。
最小発注数量
5 個
発注単位
1 個
在庫状況
メーカー在庫あり
発送準備
2 日
中国から発送配送方法:DHL Express配送先の国を選択すると輸送日数の目安を表示します。

発送準備と輸送の日数は別々に計算します。到着予定は目安です。実際の配送ルートと追跡情報をご確認ください。

最小発注数量:5。1 単位でご注文ください。
包装選択した数量の場合
フルリールの標準数量
1500 個
包装形態
カットテープ · 5 個
カットテープ料金
なし
オンライン注文の上限
499 個

包装と取扱手数料はカートに表示されます。送料、関税、税金は別途確定します。

この数量をカートに入れて、注文費用と利用可能な支払い手順を確認してください。求められた場合はログインしてください。

選定と用途

選定のポイント

Choosing inductance

L ≈ (Vin − Vout) × Vout ÷ (Vin × fsw × ΔI), with ΔI at 20–40% of the output current. The series covers 0.22–22 µH in one body, so changing the value needs no new layout.

Saturation current Isat

the current at which inductance falls about 30%; keep the peak current below it.

Heating current Idc

the current that raises the part about 40 °C above a 25 °C ambient; ambient plus rise stays within 125 °C.

DC resistance

sets the conduction loss. Typical 2.5–175 mΩ across the series; use the maximum for loss budgets.

Rated voltage

75 V maximum; check it against the input voltage.

Height

Max 3.0 mm. More current: VCMA-1040; lower: VCMA-0420.

代表的な用途

  • Domain controllers
  • ADAS compute units
  • 12 V to 5 V / 3.3 V bucks
  • LED drivers and backlight
  • SEPIC / buck-boost front ends
  • BMS and on-board charger auxiliary supplies