SNLS787 September 2025 TDP2004-Q1
PRODUCTION DATA
| PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |
|---|---|---|---|---|---|---|
| Power | ||||||
| PACT | Device active power | 4 channels active, EQ = 0-2 | 0.57 | 0.71 | W | |
| 4 channels active, EQ = 5-19 | 0.69 | 0.85 | W | |||
| PSTBY | Device power consumption in standby power mode | All channels disabled (PD = H) | 17 | 25 | mW | |
| Control IO | ||||||
| VIH | High level input voltage | SDA, SCL, PD, READ_ENn, SEL pins | 2.1 | V | ||
| VIL | Low level input voltage | SDA, SCL, PD, READ_ENn, SEL pins | 1.08 | V | ||
| VOH | High level output voltage | Rpullup = 4.7kΩ (SDA, SCL, DONEn pins) | 2.1 | V | ||
| VOL | Low level output voltage | IOL = –4mA (SDA, SCL, DONEn pins) | 0.4 | V | ||
| IIH,SEL | Input high leakage current for SEL pins | VInput = SEL pins | 100 | µA | ||
| IIH | Input high leakage current | VInput = VCC, (SCL, SDA, PD, READ_ENn pins) | 10 | µA | ||
| IIL | Input low leakage current | VInput = 0V, (SCL, SDA, PD, READ_ENn, SEL pins) | –10 | µA | ||
| IIH,FS | Input high leakage current for fail safe input pins | VInput = 3.6V, VCC = 0V, (SCL, SDA, PD, READ_ENn, SEL pins) | 200 | µA | ||
| CIN-CTRL | Input capacitance | SDA, SCL, PD, READ_ENn, SEL pins | 1.6 | pF | ||
| 5 Level IOs (MODE, GAIN, EQ0, EQ1 pins) | ||||||
| IIH_5L | Input high leakage current, 5-level IOs | VIN = 2.5V | 10 | µA | ||
| IIL_5L | Input low leakage current for all 5-level IOs except MODE. | VIN = GND | –10 | µA | ||
| IIL_5L,MODE | Input low leakage current for MODE pin | VIN = GND | –200 | µA | ||
| Receiver | ||||||
| VRX-DC-CM | RX DC common vode voltage | Device is in active or standby state | 1.4 | V | ||
| ZRX-DC | Rx DC single-ended impedance | 50 | Ω | |||
| Transmitter | ||||||
| ZTX-DIFF-DC | DC differential Tx impedance | Impedance of Tx during active signaling, VID,diff = 1Vpp | 100 | Ω | ||
| VTX-DC-CM | Tx DC common mode voltage | 1.0 | V | |||
| ITX-SHORT | Tx short circuit current | Total current the Tx can supply when shorted to GND | 70 | mA | ||