SNAS264D April 2006 – February 2024 LM94
PRODUCTION DATA
| Parameter | Test Conditions | Typical (1) | Limits (2) | Units (Limits) | ||
|---|---|---|---|---|---|---|
| POWER SUPPLY CHARACTERISTICS | ||||||
| Power Supply Current | Converting, Interface and Fans Inactive, Peak Current | 2 | 2.75 | mA (max) | ||
| Converting, Interface and Fans Inactive, Average Current | 1.6 | mA | ||||
| Power-On Reset Threshold Voltage | 2 | 1.6 | V (min) | |||
| 2.7 | V (max) | |||||
| TEMPERATURE-TO-DIGITAL CONVERTER CHARACTERISTICS | ||||||
| Local Temperature Accuracy Over Full Range | 0°C ≤ TA ≤ 85°C | ±2 | ±3 | °C (max) | ||
| TA = +55°C | ±1 | ±2.5 | °C (max) | |||
| Local Temperature Resolution | 1 | °C | ||||
| Remote Thermal Diode Temperature Accuracy Over Full Range; targeted for a typical Pentium processor on 90 nm or 65 nm process(3) | 0°C ≤ TA ≤ 85°C and 0°C ≤ TD ≤ 100°C | ±3 | °C (max) | |||
| 0°C ≤ TA ≤ 85°C and TD =70°C | ±2.5 | °C (max) | ||||
| Remote Thermal Diode Temperature Accuracy; targeted for a typical Pentium processor on 90nm or 65nm process (3) | 0°C ≤ TA ≤ 85°C and 25°C ≤ TD ≤ 70°C | ±1 | °C | |||
| Remote Temperature Resolution | 1 | °C | ||||
| Thermal Diode Source Current | High Level | 172 | 230 | µA (max) | ||
| Low Level | 10.75 | µA | ||||
| Thermal Diode Current Ratio | 16 | |||||
| TC | Total Monitoring Cycle Time | 100 | ms (max) | |||
| ANALOG-TO-DIGITAL VOLTAGE MEASUREMENT CONVERTER CHARACTERISTICS | ||||||
| TUE | Total Unadjusted Error (4)(5) | ±2 | % of FS (max) | |||
| DNL | Differential Non-Linearity | ±1 | LSB | |||
| PSS | Power Supply (VDD) Sensitivity | ±1 | %/V (of FS) | |||
| TC | Total Monitoring Cycle Time | 100 | ms (max) | |||
| Input Resistance for Inputs with Dividers | 200 | 140 | kΩ (min) | |||
| AD_IN1- AD_IN3 and AD_IN15 Analog Input Leakage Current (6) | 60 | nA (max) | ||||
| REFERENCE OUTPUT (VREF) CHARACTERISTICS | ||||||
| Tolerance | ±1 | % (max) | ||||
| VREF | Output Voltage (7) | 2.500 | 2.525 2.475 | V (max) V (min) | ||
| Load Regulation | ISOURCE = −2 mA ISINK = 2 mA | 0.1 | % | |||
| DIGITAL OUTPUTS: PWM1, PWM2 | ||||||
| IOL | Maximum Current Sink | 8 | mA (min) | |||
| VOL | Output Low Voltage | IOUT = 8.0 mA | 0.4 | V (max) | ||
| DIGITAL OUTPUTS: ALL | ||||||
| VOL | Output Low Voltage (Note excessive current flow causes self-heating and degrades the internal temperature accuracy.) | IOUT = 4.0 mA | 0.4 | V (min) | ||
| IOUT = 6 mA | 0.55 | V (min) | ||||
| IOH | High Level Output Leakage Current | VOUT = VDD | 0.1 | 10 | µA (max) | |
| IOTMAX | Maximum Total Sink Current for all Digital Outputs Combined | 32 | mA (max) | |||
| CO | Digital Output Capacitance | 20 | pF | |||
| DIGITAL INPUTS: ALL | ||||||
| VIH | Input High Voltage Except Address Select(8) | 2.1 | V (min) | |||
| VIL | Input Low Voltage Except Address Select(8) | 0.8 | V (max) | |||
| VIH | Input High Voltage for Address Select(8) | 90% VDD | V (min) | |||
| VIM | Input Mid Voltage for Address Select | 43% VDD 57% VDD | V (min) V (max) | |||
| VIL | Input Low Voltage for Address Select(8) | 10% VDD | V (max) | |||
| VHYST | DC Hysteresis | 0.3 | V | |||
| IIH | Input High Current | VIN = VDD | −10 | µA (min) | ||
| IIL | Input Low Current | VIN = 0V | 10 | µA (max) | ||
| CIN | Digital Input Capacitance | 20 | pF | |||
| DIGITAL INPUTS: P1_VIDx, P2_VIDx, GPI_9, GPI_8, GPIO_7, GPIO_6, GPIO_5, GPIO_4 (When respective bit set in Register BEh GPI/VID Level Control) | ||||||
| VIH | Alternate Input High Voltage (AGTL+ Compatible) | 0.8 | V (min) | |||
| VIL | Alternate Input Low Voltage (AGTL+ Compatible) | 0.4 | V (max) | |||