ZHCSTB8 December 2024 TPS546B26
PRODUCTION DATA
| 参数 | 测试条件 | 最小值 | 典型值 | 最大值 | 单位 | ||
|---|---|---|---|---|---|---|---|
| 电源 | |||||||
| IQ(PVIN) | PVIN 静态电流 | PVIN = 12V,VEN = 0V,VCC 和 VDRV 引脚上无辅助电源 | 8 | mA | |||
| IVCC | VCC 外部偏置电流 | VCC+VDRV 上的 5V 外部辅助电源,常规开关。TJ = 25°C,PVIN = 12V,VOUT = 1.1V,VEN = 2V,fSW = 1MHz | fSW = 1MHz | 10 | mA | ||
| IVDRV | VDRV 外部偏置电流 | VCC+VDRV 上的 5V 外部辅助电源,常规开关。TJ = 25°C,PVIN = 12V,VOUT = 1.1V,VEN = 2V,fSW = 1MHz | fSW = 1MHz | 40 | mA | ||
| IQ(VDRV) | VCC+VDRV 静态电流 | VCC + VDRV 上的 5V 外部辅助电源,非开关。PVIN = 12V,VEN = 0V | 8 | mA | |||
| 输入 UVLO 和 OV | |||||||
| PVINOV | PVIN 过压阈值 (55h) VIN_OV_FAULT_LIMIT | (55h) VIN_OV_FAULT_LIMIT = 16.5V | 15.9 | 16.5 | V | ||
| (55h) VIN_OV_FAULT_LIMIT = 18V | 18.9 | 19.5 | V | ||||
| PVINOV | PVIN 过压下降阈值。 PVIN_OVF 状态位,一旦复位,就无法清除,除非 PVIN 降至该阈值以下。 | PVIN 下降 |
13.5 | V | |||
| VIN_ON | PVIN 导通电压 (35h) VIN_ON | PVIN 上升 | (35h) VIN_ON = 10V | 10 | V | ||
| (35h) VIN_ON = 9V | 9 | V | |||||
| (35h) VIN_ON = 8V | 8 | V | |||||
| VIN_ON | (35h) VIN_ON = 7V | 7 | V | ||||
| (35h) VIN_ON = 6V | 6 | V | |||||
| (35h) VIN_ON = 5V | 5 | V | |||||
| (35h) VIN_ON = 3.8V | 3.8 | V | |||||
| (35h) VIN_ON = 2.5V | 2.5 | V | |||||
| VIN_OFF | PVIN 关断电压 (36h) VIN_OFF | PVIN 下降 | (36h) VIN_OFF = 9.5V | 9.5 | V | ||
| (36h) VIN_OFF = 8.5V | 8.5 | V | |||||
| (36h) VIN_OFF = 7.5V | 7.5 | V | |||||
| (36h) VIN_OFF = 6.5V | 6.5 | V | |||||
| (36h) VIN_OFF = 5.5V | 5.5 | V | |||||
| (36h) VIN_OFF = 4.2V | 4.2 | V | |||||
| (36h) VIN_OFF = 3.6V | 3.6 | V | |||||
| VIN_OFF | PVIN 关断电压 (36h) VIN_OFF | PVIN 下降 | (36h) VIN_OFF = 2.3V | 2.3 | V | ||
| TDGLTCH(ON) | VIN_ON 抗尖峰脉冲时间 | 50 | µs | ||||
| TDGLTCH(OFF) | VIN_OFF 抗尖峰脉冲时间 | 5 | µs | ||||
| ENABLE | |||||||
| VEN(R) | CTRL 电压上升阈值 | CTRL 上升,启用开关 | 1.2 | 1.3 | V | ||
| VEN(F) | CTRL 电压下降阈值 | CTRL 下降,禁用开关 | 0.9 | 1.0 | V | ||
| VEN(H) | CTRL 电压迟滞 | 0.2 | V | ||||
| tEN(DGLTCH) | CTRL 抗尖峰脉冲时间 (1) | 0.2 | µs | ||||
| REN(PD) | CTRL 内部下拉电阻(CTRL 至 AGND) | VEN = 2V,CTRL 引脚至 AGND | 110 | 125 | 140 | kΩ | |
| 内部 VCC LDO | |||||||
| VVCC(LDO) | 内部 VCC LDO 输出电压 | PVIN = 4V,IVCC(load) = 5mA | PVIN = 4V,IVCC(load) = 5mA | 3.925 | 3.97 | 4.0 | V |
| VVCC(LDO) | 内部 VCC LDO 输出电压 | PVIN = 5V 至 18V,IVCC(load) = 5mA | 4.28 | 4.44 | 4.55 | V | |
| VVCC(ON) | VCC UVLO 上升阈值 | VCC 上升 | 3.70 | 3.80 | 3.86 | V | |
| VVCC(OFF) | VCC UVLO 下降阈值 | VCC 下降 | 3.50 | 3.60 | 3.65 | V | |
| VVCC(DO) | VCC LDO 压降电压 | PVIN – VVCC,PVIN = 4V,IVCC(load) = 45mA | 90 | 144 | 226 | mV | |
| IVCC(SC) | VCC LDO 短路电流限制 | PVIN = 12V | 150 | 200 | mA | ||
| VOUT 电压 | |||||||
| VOUT(ACC) | 输出电压调节精度 | TJ = 0°C 至 85°C | VOUT = 0.5V,VOSL = 1,VVOSNS–VGOSNS | 0.495 | 0.5 | 0.505 | V |
| VOUT = 1V,VOSL = 0.5,VVOSNS–VGOSNS | 0.995 | 1 | 1.005 | V | |||
VOUT = 1.8V,VOSL = 0.25,VVOSNS–VGOSNS |
1.791 | 1.8 | 1.809 | V | |||
VOUT = 3.3V,VOSL = 0.125,VVOSNS–VGOSNS |
3.284 | 3.3 | 3.316 | V | |||
| TJ = -40°C 至 125°C | VOUT = 0.5V,VOSL = 1,VVOSNS–VGOSNS |
0.4925 | 0.5 | 0.5075 | V | ||
VOUT = 1V,VOSL = 0.5,VVOSNS–VGOSNS |
0.990 | 1 | 1.01 | V | |||
VOUT = 1.8V,VOSL = 0.25,VVOSNS–VGOSNS |
1.782 | 1.8 | 1.818 | V | |||
VOUT = 3.3V,VOSL = 0.125,VVOSNS–VGOSNS |
3.267 | 3.3 | 3.333 | V | |||
| IVOS | VOSNS 输入电流 | VVOSNS = 1.8V,VOSL = 0.25 | 60 | 100 | µA | ||
| VOUTRES | VOUT_COMMAND 和 VOUT_TRIM 的分辨率 | 1.953 | mV | ||||
| VOSL | VOUT_SCALE_LOOP.内部反馈环路比例因子。 | 可编程范围,4 个分立式设置 | 0.125 | 1 | |||
| VOUT_TRIM | 可编程范围 | -125 | 123 | mV | |||
| VOUT_TR | 输出电压转换率精度 | VOUT_TRANSITION_RATE = 10mV/µs | 8.8 | 9.77 | 10.7 | mV/µs | |
| 开关频率 | |||||||
| fSW(FCCM) | 开关频率 (33h) FREQUENCY_SWITCH | PVIN = 12V,FCCM,VOUT = 1.1V,空载 | (33h) FREQUENCY_SWITCH = 000b | 400 | 440 | kHz | |
| (33h) FREQUENCY_SWITCH = 001b | 510 | 600 | 660 | kHz | |||
| (33h) FREQUENCY_SWITCH = 010b | 680 | 800 | 920 | kHz | |||
| (33h) FREQUENCY_SWITCH = 011b | 850 | 1000 | 1150 | kHz | |||
| (33h) FREQUENCY_SWITCH = 100b | 1020 | 1200 | 1440 | kHz | |||
| (33h) FREQUENCY_SWITCH = 101b | 1400 | kHz | |||||
| (33h) FREQUENCY_SWITCH = 110b | 1800 | kHz | |||||
| (33h) FREQUENCY_SWITCH = 111b | 2000 | kHz | |||||
| 启动和关断时序 | |||||||
| tON(DLY) | 上电序列延迟,(60h) TON_DELAY | VVCC = 4.5V | TON_DELAY = 0ms | 0.05 | 0.1 | ms | |
| TON_DELAY = 0.5ms | 0.5 | 0.55 | ms | ||||
| TON_DELAY = 1.0ms | 1.0 | 1.1 | ms | ||||
| TON_DELAY = 2.0ms | 2.0 | 2.2 | ms | ||||
| tON(Rise) | 软启动时间,(61h) TON_RISE | VVCC = 4.5V | TON_RISE = 0.5ms | 0.5 | 0.55 | ms | |
| TON_RISE = 1.0ms | 1.0 | 1.1 | ms | ||||
| TON_RISE = 2.0ms | 2.0 | 2.2 | ms | ||||
| TON_RISE = 4.0ms | 4.0 | 4.4 | ms | ||||
| TON_RISE = 8.0ms | 8.0 | 8.8 | ms | ||||
| TON_RISE = 16.0ms | 16.0 | 17.6 | ms | ||||
| tOFF(DLY) | 下电序列延迟,(64h) TOFF_DELAY | VVCC = 4.5V | TOFF_DELAY = 0ms | 0 | 0.05 | ms | |
| TOFF_DELAY = 1.0ms | 1.0 | 1.1 | ms | ||||
| TOFF_DELAY = 1.5ms | 1.5 | 1.65 | ms | ||||
| TOFF_DELAY = 2.0ms | 2.0 | 2.2 | ms | ||||
| SR(Fall) | 软停止压摆率,(65h) TOFF_FALL | VVCC = 4.5V,VOSL = 0.5 或 5mV VID 表,VDACBOOT = 0.55V | TOFF_FALL = 0.5ms | -2.22 | mV/µs | ||
| TOFF_FALL = 1ms | -1.11 | mV/µs | |||||
| TOFF_FALL = 2ms | -0.56 | mV/µs | |||||
| TOFF_FALL = 4ms | -0.28 | mV/µs | |||||
| VVCC = 4.5V,VOSL = 0.25 或 10mV VID 表,VDACBOOT = 0.45V | TOFF_FALL = 0.5ms | -3.64 | mV/µs | ||||
| TOFF_FALL = 1ms | -1.82 | mV/µs | |||||
| TOFF_FALL = 2ms | -0.91 | mV/µs | |||||
| TOFF_FALL = 4ms | -0.46 | mV/µs | |||||
| 功率级 | |||||||
| RDSON(HS) | 高侧 MOSFET 导通电阻 | TJ = 25°C,PVIN = 12V,VBOOT-PHASE = 4.5V | 2.55 | mΩ | |||
| TJ = 25°C,PVIN = 12V,VBOOT-PHASE = 5V | 2.47 | mΩ | |||||
| RDSON(LS) | 低侧 MOSFET 导通电阻 | TJ = 25°C,PVIN = 12V,VVCC/VDRV= 4.5V | 0.97 | mΩ | |||
| TJ = 25°C,PVIN = 12V,VVCC/VDRV= 5V | 0.94 | mΩ | |||||
| tON(min) | 最小 ON 脉冲宽度 | VVCC/VDRV= 4.5V | 30 | ns | |||
| tOFF(min) | 最小 OFF 脉冲宽度 | VVCC/VDRV= 4.5V,IO =1.5A,VOUT = VOUT(set) – 20mV,SW 下降沿至上升沿 | 210 | ns | |||
| 自举电路 | |||||||
| IBOOT(LKG) | BOOT 漏电流 | VEN = 2V,VBOOT-PHASE = 5V | 150 | µA | |||
| VBT-PH(UV_F) | BOOT-PHASE UVLO 下降阈值 | 3 | V | ||||
| 过流保护 | |||||||
| ILS(OC) | 低侧 MOSFET 谷值过流限制,(46h) IOUT_OC_FAULT_LIMIT | IOUT_OC_FAULT_LIMIT = 6.25A | 5.5 | 6.25 | 7 | A | |
| IOUT_OC_FAULT_LIMIT = 7.5A | 6.75 | 7.5 | 8.25 | A | |||
| IOUT_OC_FAULT_LIMIT = 9A | 8.3 | 9.4 | 10.4 | A | |||
| IOUT_OC_FAULT_LIMIT = 12A | 10.5 | 11.9 | 13.1 | A | |||
| IOUT_OC_FAULT_LIMIT = 13A | 11.8 | 13.1 | 14.5 | A | |||
| IOUT_OC_FAULT_LIMIT = 15A | 13.5 | 15 | 16.5 | A | |||
| IOUT_OC_FAULT_LIMIT = 17.5A | 15.7 | 17.5 | 19.3 | A | |||
| IOUT_OC_FAULT_LIMIT = 18.75A | 16.8 | 18.8 | 20.7 | A | |||
| IOUT_OC_FAULT_LIMIT = 20A | 18 | 20 | 22 | A | |||
| IOUT_OC_FAULT_LIMIT = 22A | 19.6 | 21.9 | 24.1 | A | |||
| IOUT_OC_FAULT_LIMIT = 24A | 21.9 | 24.4 | 27 | A | |||
| IOUT_OC_FAULT_LIMIT = 25A | 22.5 | 25 | 27.5 | A | |||
| IOUT_OC_FAULT_LIMIT = 27.5A | 24.7 | 27.5 | 30.3 | A | |||
| IOUT_OC_FAULT_LIMIT = 30A | 27 | 30 | 33 | A | |||
| I(OCW) | 平均输出电流警告,(4Ah) IOUT_OC_WARN_LIMIT | IOUT_OC_WARN_LIMIT = 5A | 4 | 5 | 6.3 | A | |
| IOUT_OC_WARN_LIMIT = 10A | 8.5 | 10 | 13 | A | |||
| IOUT_OC_WARN_LIMIT = 15A | 13.5 | 15 | 17 | A | |||
| IOUT_OC_WARN_LIMIT = 20A | 18 | 20 | 23 | A | |||
| IOUT_OC_WARN_LIMIT = 25A | 22.5 | 25 | 28.5 | A | |||
| IOUT_OC_WARN_LIMIT = 30A | 27 | 30 | 34 | A | |||
| IOUT_OC_WARN_LIMIT = 35A | 31.5 | 35 | 40 | A | |||
| IOUT_OC_WARN_LIMIT = 40A | 36 | 40 | 45 | A | |||
| IOUT_OC_WARN_LIMIT = 45A | 40.5 | 45 | 50.5 | A | |||
| IOUT_OC_WARN_LIMIT = 50A | 45 | 50 | 56 | A | |||
| IOUT_OC_WARN_LIMIT = 55A | 49.5 | 55 | 63 | A | |||
| ILS(NOC) | 低侧 MOSFET 负过流限制, | SEL_UCF = 00b | -18 | -15 | -12 | A | |
| SEL_UCF = 01b | -15 | -12.5 | -10 | A | |||
| SEL_UCF = 01b | -12 | -10 | -8 | A | |||
| SEL_UCF = 01b | -6 | -5 | -4 | A | |||
| 输出 OVF/UVF | |||||||
| VOVF | Vout 过压故障 (OVF) 阈值,(40h) VOUT_OV_FAULT_LIMIT | (VOSNS – GOSNS) 上升 | VOUT_OV_FAULT_LIMIT = 573d | 112% | VOC | ||
| VOUT_OV_FAULT_LIMIT = 594d | 116% | VOC | |||||
| VOUT_OV_FAULT_LIMIT = 614d | 120% | VOC | |||||
| VOUT_OV_FAULT_LIMIT = 717d | 150% | VOC | |||||
| VOVF(acc) | Vout OVF 精度 | (VOSNS – GOSNS) 上升 | -3% | 3% | VOC | ||
| VUVF | Vout 欠压故障 (UVF) 阈值,(44h) VOUT_UV_FAULT_LIMIT | (VOSNS – GOSNS) 下降 | VOUT_UV_FAULT_LIMIT = 430d | 84% | VOC | ||
| VOUT_UV_FAULT_LIMIT = 389d | 76% | VOC | |||||
| VOUT_UV_FAULT_LIMIT = 348d | 68% | VOC | |||||
| VOUT_UV_FAULT_LIMIT = 307d | 60% | VOC | |||||
| VOVF(acc) | Vout UVF 精度 | (VOSNS – GOSNS) 下降 | -3% | 3% | VOC | ||
| VOUT UVF 和 UVW 延迟时间 | (45h) VOUT_UV_FAULT_RESPONSE<2:0> = x00b | 2 | µs | ||||
| (45h) VOUT_UV_FAULT_RESPONSE<2:0> = x01b | 16 | µs | |||||
| (45h) VOUT_UV_FAULT_RESPONSE<2:0> = x10b | 64 | µs | |||||
| (45h) VOUT_UV_FAULT_RESPONSE<2:0> = x11b | 256 | µs | |||||
| THICCUP | 重新启动之前的断续睡眠时间。适用于所有具有断续响应选项的故障。 | (45h) VOUT_UV_FAULT_RESPONSE<5:3> = 111b | 52 | ms | |||
| VOVF(FIX) | VOUT 固定 OVF 保护阈值 | VOUT_SCALE_LOOP = 1 |
OVF_FIXED = 0b | 0.75 | V | ||
| OVF_FIXED = 1b | 0.9 | V | |||||
| VOUT_SCALE_LOOP = 0.5 | OVF_FIXED = 0b | 1.425 | 1.5 | 1.575 | V | ||
| OVF_FIXED = 1b | 1.71 | 1.8 | 1.89 | V | |||
| VOUT_SCALE_LOOP = 0.25 | OVF_FIXED = 0b | 2.93 | 3.0 | 3.07 | V | ||
| OVF_FIXED = 1b | 3.6 | V | |||||
| VOUT_SCALE_LOOP = 0.125 | OVF_FIXED = 0b | 4.8 | V | ||||
| OVF_FIXED = 1b | 6.0 | V | |||||
| OUTPUT OVW/UVW | |||||||
| VOVW | 过压警告 (OVW) 阈值,(42h) VOUT_OV_WARN_LIMIT | (VOSNS – GOSNS) 上升 | VOUT_OV_WARN_LIMIT = 553d | 105% | 108% | 111% | VOC |
| VOUT_OV_WARN_LIMIT = 573d | 112% | VOC | |||||
| VOUT_OV_WARN_LIMIT = 594d | 116% | VOC | |||||
| VOUT_OV_WARN_LIMIT = 655d | 128% | VOC | |||||
| tOVW(DLY) | OVW 延迟时间 | (VOSNS – GOSNS) > VOVW | 2 | µs | |||
| VUVW(range) | 欠压警告 (UVW) 阈值,(43h) VOUT_UV_WARN_LIMIT 可编程范围 | (VOSNS – GOSNS) 下降 | 68% | 96% | VOC | ||
| VUVW(res) | 欠压警告 (UVW) 阈值分辨率 | 4% | VOC | ||||
| VUVW | 欠压警告 (UVW) 阈值,(43h) VOUT_UV_WARN_LIMIT | (VOSNS – GOSNS) 下降 | VOUT_UV_WARN_LIMIT = 492d | 96% | VOC | ||
| VOUT_UV_WARN_LIMIT = 471d | 89% | 92% | 95% | VOC | |||
| VOUT_UV_WARN_LIMIT = 451d | 88% | VOC | |||||
| VOUT_UV_WARN_LIMIT = 430d | 84% | VOC | |||||
| 电源正常 | |||||||
| tPG(DLY_RISE) | PG 上升沿延迟(软启动完成至高电平延迟时间,仅在启动期间发生) | PGD_DEL = 00b | 0 | ms | |||
| PGD_DEL = 01b | 0.5 | ms | |||||
| PGD_DEL = 10b | 1.0 | ms | |||||
| PGD_DEL = 11b | 2.0 | ms | |||||
| tPG(DLY_UVF) | PG 下降沿 UVF 延迟 | 1 | µs | ||||
| PG 灌电流 | VPG = 0.3V,VVCC = 4.5V | 10 | mA | ||||
| IPG(LKG) | 开漏输出高电平时的 PG 引脚漏电流 | VPG = 5V | 5 | µA | |||
| VOL(PG) | PG 引脚输出低电平电压 | IPG= 10mA,VIN = 12V,VVCC = 4.5V | 300 | mV | |||
| 有效输出的最小 VCC | VEN = 0V,Rpullup = 10kΩ,VPG ≤ 0.3V | 1.2 | V | ||||
| RESET (VORST#) | |||||||
| VTH_H(reset) | 高电平电压阈值(1.8V 逻辑)(仅限 PMBus) | VORST# 引脚 | SEL_VORST_TH = 1 | 1.1 | 1.35 | V | |
| VTH_L(reset) | 低电平电压阈值(1.8V 逻辑)(仅限 PMBus) | VORST# 引脚 | SEL_VORST_TH = 1 | 0.8 | 0.9 | V | |
| VHYS(reset) | 输入电压迟滞(1.8V 逻辑)(仅限 PMBus) | VORST# 引脚 | SEL_VORST_TH = 1 | 125 | mV | ||
| VTH_H(reset) | 高电平电压阈值(1.2V 逻辑)(所有) | VORST# 引脚 | SEL_VORST_TH = 0 | 0.6 | 0.65 | V | |
| VTH_L(reset) | 低电平电压阈值(1.2V 逻辑)(所有) | VORST# 引脚 | SEL_VORST_TH = 0 | 0.45 | 0.5 | V | |
| VHYS(reset) | 输入电压迟滞(1.2V 逻辑)(所有) | VORST# 引脚 | SEL_VORST_TH = 0 | 150 | mV | ||
| VIH(reset) | 输入逻辑低电平(1.8V 逻辑) | VORST# 引脚 | SEL_VORST_TH = 1 | 0.8 | V | ||
| VIL(reset) | 输入逻辑高电平(1.8V 逻辑) | VORST# 引脚 | SEL_VORST_TH = 1 | 1.35 | V | ||
| VIH(reset) | 输入逻辑低电平(1.2V 逻辑) | VORST# 引脚 | 0.4 | V | |||
| VIL(reset) | 输入逻辑高电平(1.2V 逻辑) | VORST# 引脚 | 0.9 | V | |||
| tPW(reset) | 最小 VORST# 脉冲宽度 (1) | 0.2 | µs | ||||
| 热关断和温度保护 | |||||||
| TJ(SD) | 热关断阈值(1) | 结温上升 | 153 | 166 | °C | ||
| TJ(HYS) | 热关断迟滞 (1) | 30 | |||||
| TOT(FAULT) | 过热故障阈值,(4Fh) OT_FAULT_LIMIT | 可编程范围 | 125 | 150 | |||
| 分辨率 | 10 | ||||||
| TOT(WARN) | 过热警告阈值,(51h) OT_WARN_LIMIT | 可编程范围 | 95 | 130 | |||
| 分辨率 | 5 | ||||||
| 遥测 (PMBus) | |||||||
| fADC | ADC 转换率 | 4 | MHz | ||||
| MIOUT(rng) | 输出电流测量范围 | 0 | 28.5 | A | |||
| MIOUT(acc) | 输出电流测量精度数据点 | TJ = 0°C 至 125°C | IOUT = 2.5A | 1.0 | 2.5 | 4 | A |
| MIOUT(acc) | IOUT = 12A | 10.5 | 12 | 13.5 | A | ||
| MIOUT(acc) | IOUT = 25A | 22.6 | 25 | 27.4 | A | ||
| MVOUT(rng) | 输出电压测量范围 | 0 | 6 | V | |||
| MVOUT(acc) | 输出电压测量精度数据点 | VOUT_SCALE_LOOP = 1 | VOUT = 0.5V | 0.49 | 0.5 | 0.51 | V |
| VOUT_SCALE_LOOP = 0.5 | VOUT = 0.75V | 0.737 | 0.75 | 0.763 | V | ||
| VOUT_SCALE_LOOP = 0.5 | VOUT = 1.1V | 1.087 | 1.1 | 1.113 | V | ||
| VOUT_SCALE_LOOP = 0.25 | VOUT = 1.5V | 1.481 | 1.5 | 1.519 | V | ||
| VOUT_SCALE_LOOP = 0.25 | VOUT = 1.8V | 1.775 | 1.8 | 1.825 | V | ||
| VOUT_SCALE_LOOP = 0.125 | VOUT = 3.3V | 3.234 | 3.3 | 3.366 | V | ||
| MPVIN(rng) | 输入电压测量范围 | 4 | 18 | V | |||
| MPVIN(acc) | 输入电压测量精度数据点 | TJ = 25°C | VIN = 8V | 8 | V | ||
| VIN = 12V | 11.9 | 12 | 12.1 | V | |||
| VIN = 16V | 16 | V | |||||
| MTSNS(rng) | 内部温度检测范围 | -40 | 150 | °C | |||
| MTSNS(acc) | 内部温度检测精度 | –40°C ≤ TJ ≤ 150°C | -4 | 4 | °C | ||
| PMBus 接口 | |||||||
| tdelay(uvlo_PMBus) | 从 VCC UVLO 到 PMBus 准备好通信的延迟 | VCC/VDRV ≥ 3V | 1.5 | ms | |||
| VIH(PMBUS) | PMB_CLK、PMB_DATA 上的高电平输入电压 | 1.35 | V | ||||
| VIL(PMBUS) | PMB_CLK、PMB_DATA 上的低电平输入电压 | 0.8 | |||||
| IlH(PMBUS) | 将高电平电流输入 PMB_CLK、PMB_DATA | -10 | 10 | µA | |||
| VOL(PMBUS) | PMB_DATA 和 SMB_ALERT#/PINALRT#/CAT_FAULT# 上的输出低电平电压 | VCC ≥ 4.5V,Ipin = 20mA | 0.4 | V | |||
| IOH(PMBUS) | 将高电平开漏漏电流输出到 PMB_DATA、SMB_ALERT#/PINALRT#/CAT_FAULT# 中 | Vpin = 5.5V | 10 | µA | |||
| IOL(PMBUS) | PMB_DATA、SMB_ALERT#/PINALRT#/CAT_FAULT# 上的输出低电平开漏灌电流 | Vpin = 0.4V | 20 | mA | |||
| CPIN_PMB | PMB_CLK 和 PMB_DATA 引脚输入电容 (1) | Vpin = 0.1V 至 1.35V | 5 | pF | |||
| fPMBUS_CLK | PMBus 工作频率范围 | 10 | 1000 | kHz | |||
| tBUF | STOP 与 START 条件之间的总线空闲时间 | 0.5 | µs | ||||
| tHD_STA | (重复)START 条件的保持时间 | 0.26 | µs | ||||
| tSU_STA | 重复 START 条件的建立时间 | 0.26 | µs | ||||
| tSU_STO | STOP 条件的建立时间 | 0.26 | µs | ||||
| tHD_PMB | PMB_DATA 保持时间 | 0 | µs | ||||
| tSU_PMB | PMB_DATA 建立时间 | 50 | ns | ||||
| tTIMEOUT | 检测时钟低电平超时 | 25 | 30 | 35 | ms | ||
| tLOW | PMB_CLK 的低电平周期 | 0.5 | µs | ||||
| tHIGH | PMB_CLK 的高电平周期 | 0.26 | µs | ||||
| tR_PMB | PMB_CLK 和 PMB_DATA 上升时间 (1) | 1000kHz 级;VIL(MAX) - 150mV 至 VIH(MIN) + 150mV | 120 | ns | |||
| tF_PMB | PMB_CLK 和 PMB_DATA 下降时间 (1) | 1000kHz 级;VIH(MIN) + 150mV 至 VIL(MAX) - 150mV | 120 | ns | |||
| NWR_NVM | NVM 可写周期数(1) | –40°C ≤ TJ ≤ 125°C | 1000 | 周期 | |||