ZHCSYI4 June 2025 LMG2656
PRODUCTION DATA
| 参数 | 测试条件 | 最小值 | 典型值 | 最大值 | 单位 | |
|---|---|---|---|---|---|---|
| 低侧 GaN 功率 FET | ||||||
| RDS(on)(ls) | 漏源(SW 至 SL)导通电阻 | VINL = 5V,ID(ls) = 2.1A,TJ = 25°C | 230 | 325 | mΩ | |
| VINL = 5V,ID(ls) = 2.1A,TJ = 125°C | 420 | |||||
| VSD(ls) | 源漏(SL 至 SW)第三象限电压 | SL 至 SW 电流 = 0.21A | 1.9 | V | ||
| SL 至 SW 电流 = 2.1A | 2.6 | |||||
| IDSS(ls) | 漏极(SW 至 SL)漏电流 | VDS(hs) = 0V,VDS(ls) = 650V,TJ = 25°C | 1.6 | µA | ||
| VDS(hs) = 0V,VDS(ls) = 650V,TJ = 125°C | 6.7 | |||||
| QOSS(ls) | 输出(SW 至 SL)电荷 | VDS(hs) = 0V,VDS(ls) = 400V | 15.2 | nC | ||
| COSS(ls) | 输出(SW 至 SL)电容 | 22.1 | pF | |||
| EOSS(ls) | 输出(SW 至 SL)电容储存能量 | 2.2 | µJ | |||
| COSS,er(ls) | 与能量相关的有效输出(SW 至 SL)电容 | 27.3 | pF | |||
| COSS,tr(ls) | 与时间相关的有效输出(SW 至 SL)电容 | VDS(hs) = 0V,VDS(ls) = 0V 至 400V | 38 | pF | ||
| QRR(ls) | 反向恢复电荷 | 0 | nC | |||
| 高侧 GaN 功率 FET | ||||||
| RDS(on)(hs) | 漏源(DH 至 SW)导通电阻 | VINH = 5V,ID(hs) = 2.1A,TJ = 25°C | 230 | 325 | mΩ | |
| VINH = 5V,ID(hs) = 2.1A,TJ = 125°C | 420 | |||||
| VSD(hs) | 源漏(SW 至 DH)第三象限电压 | SW 至 DH 电流 = 0.21A | 1.9 | V | ||
| SW 至 DH 电流 = 2.1A | 2.6 | |||||
| IDSS(hs) | 漏极(DH 至 SW)漏电流 | VDS(ls) = 0V,VDS(hs) = 650V,TJ = 25°C | 1.3 | µA | ||
| VDS(ls) = 0V,VDS(hs) = 650V,TJ = 125°C | 6.7 | |||||
| QOSS(hs) | 输出(DH 至 SW)电荷 | VDS(ls) = 0V,VDS(hs) = 400V | 15.2 | nC | ||
| COSS(hs) | 输出(DH 至 SW)电容 | 22.1 | pF | |||
| EOSS(hs) | 输出(DH 至 SW)电容储存能量 | 2.2 | µJ | |||
| COSS,er(hs) | 与能量相关的有效输出(DH 至 SW)电容 | 27.3 | pF | |||
| COSS,tr(hs) | 与时间相关的有效输出(DH 至 SW)电容 | VDS(ls) = 0V,VDS(hs) = 0V 至 400V | 38 | pF | ||
| QRR(hs) | 反向恢复电荷 | 0 | nC | |||
| 低侧过流保护 | ||||||
| IT(OC)(ls) | 过流故障 - 阈值电流 | 3.5 | 3.9 | 4.3 | A | |
| 高侧过流保护 | ||||||
| IT(OC)(hs) | 过流故障 - 阈值电流 | 3.5 | 3.9 | 4.3 | A | |
| 自举整流器 | ||||||
| RDS(on) | AUX 至 BST 导通电阻 | VINL = 5V,VAUX_BST = 1V,TJ = 25°C | 7 | Ω | ||
| VINL = 5V,VAUX_BST = 1V,TJ = 125°C | 11 | |||||
| AUX 至 BST 电流限制 | VINL = 5V,VAUX_BST = 7V | 210 | 240 | 270 | mA | |
| BST 至 AUX 反向电流阻断阈值 | VINL = 5V | 11 | 20 | mA | ||
| CS | ||||||
| 电流检测增益 (ICS(src) / ID(LS)) | VINL = 5V,0V ≤ VCS ≤ 2V,0A ≤ ID(ls)< IT(OC)(ls) | 1.415 | mA/A | |||
| 电流检测输入失调电流 | VINL = 5V,0V ≤ VCS ≤ 2V,0A ≤ ID(ls)< IT(OC)(ls) | -36.0 | 36.0 | mA | ||
| 发生过流故障后,在 INL 保持高电平时初始保持输出 | VINL = 5V,0V ≤ VCS ≤ 2V | 7 | mA | |||
| ICS(src)(OC)(final) | 发生过流故障后,在 INL 保持高电平时的最终保持输出 | VINL = 5V,0V ≤ VCS ≤ 2V | 9.4 | 12 | 15 | mA |
| 输出钳位电压 | VINL = 5V,ID(ls) = 3.5A,CS 从外部源获得 5mA 灌电流 | 2.5 | V | |||
| EN、INL、INH 至 AGND;GDH 至 SW | ||||||
| VIT+ | 正向输入阈值电压 | 1.7 | 2.45 | V | ||
| VIT– | 负向输入阈值电压 | 0.7 | 1.3 | V | ||
| 输入阈值电压迟滞 | 1 | V | ||||
| 下拉输入电阻 | 0V ≤ VPIN ≤ 3V | 200 | 400 | 600 | kΩ | |
| 下拉输入电流 | 10V ≤ VPIN ≤ 26V;VAUX = 26V | 10 | µA | |||
| 过热保护 | ||||||
| 温度故障 – 正向阈值温度 | 150 | 165 | °C | |||
| 温度故障 – 负向阈值温度 | 150 | °C | ||||
| 温度故障 – 阈值温度迟滞 | 15 | °C | ||||
| AUX | ||||||
| VAUX,T+(UVLO) | UVLO – 正向阈值电压 | 8.8 | 9.3 | 9.8 | V | |
| UVLO – 负向阈值电压 | 8.6 | 9.0 | 9.6 | V | ||
| UVLO – 阈值电压迟滞 | 250 | mV | ||||
| 待机静态电流 | VEN = 0V | 50 | 110 | µA | ||
| 静态电流 | VEN = 1V、VINL = 0V | 250 | 400 | µA | ||
| VEN = 1V、VINL = 5V、ID(ls) = 0A | 860 | |||||
| 工作电流 | VINL = 0V 或 5V,VDS(ls) = 0V,ID(ls) = 0A,fINL = 500kHz | 3 | mA | |||
| VINL = 0V 或 5V,VDS(ls) = 400V 或 0V,ISW = 1A,fINL = 500kHz | 4 | |||||
| BST | ||||||
| VBST_SW,T+(UVLO) | 使 FET 导通的 VBST_SW UVLO - 正向阈值电压 | 6.8 | 7.1 | 7.4 | V | |
| 使 FET 保持开启的 VBST_SW UVLO – 负向阈值电压 | 4.8 | 5.1 | 5.4 | V | ||
| 静态电流 | VINH = 0V | 85 | 120 | µA | ||
| VINH = 5V,ID(hs) = 0A | 600 | |||||
| VGDH_SW = 5V,ID(hs) = 0A | 600 | |||||
| 工作电流 | VINH = 0V 或 5V,VDS(hs) = 0V,IDS(hs) = 0A;fINH = 500kHz | 1.5 | mA | |||
| VINH = 0V 或 5V,VDS(hs) = 400V 或 0V,ISW = 1A;fINH = 500kHz | 1.5 | |||||
| VGDH_SW = 0V 或 5V,VDS(hs) = 0V,IDS(hs) = 0A;fGDH_SW = 500kHz | 1.2 | |||||
| VGDH_SW = 0V 或 5V,VDS(hs) = 400V 或 0V,ISW = 1A;fGDH_SW = 500kHz | 1.5 | |||||