ZHCSJ67A December 2018 – August 2019 DP83825I
PRODUCTION DATA.
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |
---|---|---|---|---|---|---|
IEEE Tx CONFORMANCE (100BaseTx) | ||||||
Differential Output Voltage | 100 Base Tx idle transmission | 1.0 | V | |||
IEEE Tx CONFORMANCE (10BaseTe) | ||||||
Differential Voltage | 10BaseTe data transmission | 1.75 | V | |||
POWER CONSUMPTION ( Power Optimised Mode ) | ||||||
I(AVDD3V3) | RMII Master (100BaseTx) | Traffic = 50% | 37.5 | mA | ||
I(AVDD3V3) | RMII Slave (100BaseTx) | Traffic = 50% | 37.5 | mA | ||
I(VDDIO=3V3) | RMII Master (100BaseTx) | Traffic = 50% | 7.5 | mA | ||
I(VDDIO=3V3) | RMII Slave (100BaseTx) | Traffic = 50% | 3.5 | mA | ||
I(VDDIO=1V8) | RMII Master (100BaseTx) | Traffic = 50% | 4.5 | mA | ||
I(VDDIO=1V8) | RMII Slave (100BaseTx) | Traffic = 50% | 1.6 | mA | ||
POWER CONSUMPTION ( Cable Reach Optimised Mode) | ||||||
I(AVDD3V3) | RMII Master (100BaseTx) | Traffic = 50% | 41 | mA | ||
I(AVDD3V3) | RMII Master (100BaseTx) | Traffic = 100% | 41 | 50 | mA | |
I(AVDD3V3) | RMII Master (10BaseTe) | Traffic = 50% | 28 | mA | ||
I(AVDD3V3) | RMII Master (10BaseTe) | Traffic = 100% | 32 | 40 | mA | |
I(AVDD3V3) | RMII Slave (100BaseTx) | Traffic = 50% | 41 | 50 | mA | |
I(AVDD3V3) | RMII Slave (100BaseTx) | Traffic = 100% | 41 | 50 | mA | |
I(AVDD3V3) | RMII Slave (10BaseTe) | Traffic = 50% | 28 | mA | ||
I(AVDD3V3) | RMII Slave (10BaseTe) | Traffic = 100% | 32 | 40 | mA | |
I(VDDIO=3V3) | RMII Master (100BaseTx) | Traffic = 50% | 7.5 | mA | ||
I(VDDIO=3V3) | RMII Master (100BaseTx) | Traffic = 100% | 10 | 14 | mA | |
I(VDDIO=3V3) | RMII Master (10BaseTe) | Traffic = 50% | 6.5 | mA | ||
I(VDDIO=3V3) | RMII Master (10BaseTe) | Traffic = 100% | 7.5 | 12 | mA | |
I(VDDIO=3V3) | RMII Slave (100BaseTx) | Traffic = 50% | 3.5 | mA | ||
I(VDDIO=3V3) | RMII Slave (100BaseTx) | Traffic = 100% | 5 | 8 | mA | |
I(VDDIO=3V3) | RMII Slave (10BaseTe) | Traffic = 50% | 2.5 | 6 | mA | |
I(VDDIO=3V3) | RMII Slave (10BaseTe) | Traffic = 100% | 2.5 | 6 | mA | |
I(VDDIO=1V8) | RMII Master (100BaseTx) | Traffic = 50% | 4 | 14 | mA | |
I(VDDIO=1V8) | RMII Master (100BaseTx) | Traffic = 100% | 5.5 | 14 | mA | |
I(VDDIO=1V8) | RMII Master (10BaseTe) | Traffic = 50% | 4 | mA | ||
I(VDDIO=1V8) | RMII Master (10BaseTe) | Traffic = 100% | 4 | 14 | mA | |
I(VDDIO=1V8) | RMII Slave (100BaseTx) | Traffic = 50% | 1.5 | mA | ||
I(VDDIO=1V8) | RMII Slave (100BaseTx) | Traffic = 100% | 2.5 | 6 | mA | |
I(VDDIO=1V8) | RMII Slave (10BaseTe) | Traffic = 50% | 1 | mA | ||
I(VDDIO=1V8) | RMII Slave (10BaseTe) | Traffic = 100% | 1 | 6 | mA | |
POWER CONSUMPTION (Low Power Modes) | ||||||
I(AVDD=3V3) | 100 BaseTx EEE mode | 100 BaseTx link in EEE mode with LPIs ON | 15.5 | mA | ||
Deep Power Down | 3.5 | mA | ||||
IEEE Power Down | 4 | mA | ||||
Active Sleep | 11 | mA | ||||
Active but not Link | 37 | mA | ||||
RESET | 5.5 | mA | ||||
I(VDDIO=3V3) | 100 BaseTx EEE mode | 2 | mA | |||
Deep Power Down | 2.5 | mA | ||||
IEEE Power Down | 2 | mA | ||||
Active Sleep | 5 | mA | ||||
Active but not Link | 5 | mA | ||||
RESET | 2.5 | mA | ||||
I(VDDIO=1V8) | 100 BaseTx EEE mode | 2 | mA | |||
Deep Power Down | 1.5 | mA | ||||
IEEE Power Down | 1.5 | mA | ||||
Active Sleep | 3 | mA | ||||
Active but not Link | 3 | mA | ||||
RESET | 1.5 | mA | ||||
BOOTSTRAP DC CHARACTERISTICS (2 Level) | ||||||
VIH_3v3 | High Level Bootstrap Threshold : 3V3 | 1.3 | V | |||
VIL_3v3 | Low Level Bootstrap Threshold : 3V3 | 0.6 | V | |||
VIH_1v8 | High Level Bootstrap Threshold:1V8 | 1.3 | V | |||
VIL_1v8 | Low Level Bootstrap Threshold :1V8 | 0.6 | V | |||
Crystal oscillator | ||||||
Load Capacitance | 15 | 30 | pF | |||
IO | ||||||
3V3 | VIH High Level Input Voltage | VDDIO= 3V3+/- 10% | 1.7 | V | ||
VIL Low Level Input Voltage | VDDIO= 3V3+/- 10% | 0.8 | V | |||
VOH High Level Output Voltage | IoH= -2mA, VDDIO=3V3 +/-10% | 2.4 | V | |||
VOLLow Level Output Voltage | IoL= 2mA, VDDIO=3V3 +/- 10% | 0.4 | V | |||
1V8 | VIH High Level Input Voltage | VDDIO= 1V8+/- 10% | 0.65*VDDIO | V | ||
VIL Low Level Input Voltage | VDDIO= 1V8+/- 10% | 0.35*VDDIO | V | |||
VOH High Level Output Voltage | IoH= -2mA, VDDIO=1V8 +/-10% | VDDIO-0.45 | V | |||
VOLLow Level Output Voltage | IoL= 2mA, VDDIO=1V8 +/- 10% | 0.45 | V | |||
Iih (VIN=VCC) | TA=-40 TO 85C, VIN=VDDIO | 15 | uA | |||
Iil (VIN=GND) | TA=-40 TO 85C, VIN=GND | 15 | uA | |||
Iozh | Tri State Output High Current | -15 | 15 | uA | ||
Iozl | Tri State Output Low Current | -15 | 15 | uA | ||
Cin ( Input Capacitance) | 5 | pF | ||||
R Pull Down | 8 | 10 | 13 | Kohms | ||
R Pull UP | 8 | 10 | 13 | Kohms | ||
XI input osc clock pk-pk | VDDIO | V | ||||
XI input osc clock common mode | VDDIO/2 | V |