ZHCSYW5 September 2025 TCAN843-Q1
ADVANCE INFORMATION
| 参数 | 测试条件 | 最小值 | 典型值 | 最大值 | 单位 | ||
|---|---|---|---|---|---|---|---|
| CAN 驱动器特性 | |||||||
| VCANH(D) | 显性输出电压 总线偏置激活 |
CANH | TXD = 0V,50Ω ≤ RL ≤ 65Ω,CL = 开路,RCM = 开路 | 2.75 | 4.5 | V | |
| CANL | 0.5 | 2.25 | V | ||||
| VCANH(R) VCANL(R) |
隐性输出电压 总线偏置激活 |
TXD = VIO,RL = 开路(无负载),RCM = 开路 | 2 | 2.5 | 3 | V | |
| VSYM | 驱动器对称性 总线偏置激活 (VO(CANH) + VO(CANL))/VCC |
EN = nSTB= VIO,RL = 60Ω,CSPLIT = 4.7nF, CL = 开路,RCM = 开路,TXD = 250kHz、1MHz、2.5MHz | 0.9 | 1.1 | V/V | ||
| VSYM_DC | 直流驱动器对称性 总线偏置激活 VCC – VO(CANH) – VO(CANL) |
EN = nSTB= VIO,RL = 60Ω,CL = 开路 | -300 | 300 | mV | ||
| VDIFF(D) | 差分输出电压 总线偏置激活 显性 |
CANH - CANL | EN = nSTB = VIO,TXD = 0V,50Ω ≤ RL ≤ 65Ω,CL = 开路 | 1.5 | 3 | V | |
| CANH - CANL | EN = nSTB = VIO,TXD = 0V,45Ω ≤ RL ≤ 70Ω,CL = 开路 | 1.4 | 3.3 | V | |||
| CANH - CANL | EN = nSTB = VIO,TXD = 0V,RL = 2240Ω,CL = 开路 | 1.5 | 5 | V | |||
| VDIFF(R) | 差分输出电压 总线偏置激活 隐性 |
CANH - CANL | EN = nSTB = VIO,TXD = VIO,RL = 开路,CL = 开路 | -50 | 50 | mV | |
| VCANH(INACT) | 总线输出电压 总线偏置未激活 |
CANH | nSTB = 0V,TXD = VIO,RL = 开路(无负载),CL = 开路 | -0.1 | 0.1 | V | |
| CANL | nSTB = 0V,TXD = VIO,RL = 开路(无负载),CL = 开路 | -0.1 | 0.1 | V | |||
| CANH - CANL | nSTB = 0V,TXD = VIO,RL = 开路(无负载),CL = 开路 | -0.2 | 0.2 | V | |||
| ICANH(OS) | 短路稳态输出电流 总线偏置激活 显性 |
nSTB = VIO,TXD = 0V –3V ≤ V(CANH) ≤ 18V |
-100 | mA | |||
| nSTB = VIO,TXD = 0V –3V ≤ V(CANL) ≤ 18V |
100 | mA | |||||
| IOS_REC | 短路稳态输出电流 总线偏置激活 隐性 |
nSTB = VIO,VBUS = CANH = CANL –27V ≤ VBUS ≤ 40V |
-3 | 3 | mA | ||
| CAN 接收器特性 | |||||||
| VDIFF_RX(D) | 接收器显性状态输入电压范围 总线偏置激活 |
nSTB = VIO,–12V ≤ VCM ≤ 12V | 0.9 | 8 | V | ||
| VDIFF_RX(R) | 接收器隐性状态输入电压范围 总线偏置激活 |
-3 | 0.5 | V | |||
| VHYS | 输入的迟滞电压阈值 总线偏置激活 |
nSTB = VIO | 80 | mV | |||
| VDIFF_RX(D_INACT) | 接收器显性状态输入电压范围 总线偏置未激活 |
nSTB = 0V,–12V ≤ VCM ≤ 12V | 1.1 | 9 | V | ||
| VDIFF_RX(R_INACT) | 接收器隐性状态输入电压范围 总线偏置未激活 |
-4 | 0.4 | V | |||
| VCM | 共模范围 | nSTB = VIO | -12 | 12 | V | ||
| ILKG(IOFF) | 断电(未上电)输入漏电流 CANH、CANL 引脚 | VSUP = 0V,CANH = CANL = 5V | 5 | µA | |||
| CI | 对地输入电容(CANH 或 CANL)(1) | 20 | pF | ||||
| CID | 差分输入电容(1) | 10 | pF | ||||
| RDIFF | 差分输入电阻 | TXD = VCC = VIO = 5V,nSTB = 5V -2V ≤ VCM ≤ 7V |
50 | 100 | kΩ | ||
| RSE_CANH RSE_CANL |
输入电阻(CANH 或 CANL) | 25 | 50 | kΩ | |||
| mR | 输入电阻匹配: [1 – RIN(CANH) / RIN(CANL)] × 100% |
V(CANH) = V(CANL) = 5V | -2 | 2 | % | ||
| TXD 特性 | |||||||
| VIH | 高电平输入电压 | 0.7 | VIO | ||||
| VIL | 低电平输入电压 | 0.3 | VIO | ||||
| IIH | 高电平输入漏电流 | TXD = VIO = 5.5V | -1 | 0 | 1 | µA | |
| IIL | 低电平输入漏电流 | TXD = 0V,VIO = 5.5V | -115 | -2.5 | µA | ||
| ILKG(OFF) | 未供电时的漏电流 | TXD = 5.5V,VSUP = VIO = 0V | -1 | 0 | 1 | µA | |
| CI | 输入电容 | VIN = 0.4 x sin(2 × π × 2 × 106 × t) + 2.5V | 5 | 10 | pF | ||
| RXD 特性 | |||||||
| VOH | 高电平输出电压 | IO = -2mA | 0.8 | VIO | |||
| VOL | 低电平输出电压 | IO = 2mA | 0.2 | VIO | |||
| ILKG(OFF) | 未供电时的漏电流 | RXD = 5.5V,VSUP = VIO = 0V | -1 | 1 | µA | ||
| nSTB 特性 | |||||||
| VIH | 高电平输入电压 | 0.7 | VIO | ||||
| VIL | 低电平输入电压 | 0.3 | VIO | ||||
| IIH | 高电平输入漏电流 | nSTB = VIO = 5.5V | 0.5 | 115 | µA | ||
| IIL | 低电平输入漏电流 | nSTB = 0V,VIO = 5.5V | -1 | 1 | µA | ||
| ILKG(OFF) | 未供电时的漏电流 | nSTB = 5.5V,VIO = 0V | -1 | 0 | 1 | µA | |
| nFAULT 特性 | |||||||
| VOH | 高电平输出电压 | IO = -2mA |
0.8 | VIO | |||
| VOL | 低电平输出电压 | IO = 2mA |
0.2 | VIO | |||
| ILKG(OFF) | 未供电时的漏电流 | nFAULT = 5.5V,VIO = 0V | -1 | 0 | 1 | µA | |
| EN 特性 | |||||||
| VIH | 高电平输入电压 | 0.7 | VIO | ||||
| VIL | 低电平输入电压 | 0.3 | VIO | ||||
| IIH | 高电平输入漏电流 | EN = VCC = VIO = 5.5V | 0.5 | 115 | µA | ||
| IIL | 低电平输入漏电流 | EN = 0V,VCC = VIO = 5.5V | -1 | 1 | µA | ||
| ILKG(OFF) | 未供电时的漏电流 | EN = 5.5V,VCC = VIO = 0V | -1 | 1 | µA | ||
| RPD | 下拉电阻 | 50 | 2000 | kΩ | |||
| WAKE 特性 | |||||||
| VIH | 高电平输入电压 | 睡眠模式 | 2.6 | V | |||
| VIL | 低电平输入电压 | 1.8 | V | ||||
| IIH | 高电平输入漏电流(2) | WAKE = VSUP | 2 | µA | |||
| WAKE = 4V | -3 | µA | |||||
| IIL | 低电平输入漏电流 (2) | WAKE = 1V | 3 | µA | |||
| RWAKE | 上拉/下拉电阻(2) | 600 | kΩ | ||||
| INH 特性 | |||||||
| ΔVH | 从 VSUP 至 INH 的高电平压降 (VSUP - VINH) | IINH = –2mA | 1 | 2 | V | ||
| ILKG(INH) | 睡眠模式漏电流 | INH = 0V | -0.5 | 0.5 | µA | ||