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MCP960X Fiches technique(PDF) 8 Page - Microchip Technology |
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MCP960X Fiches technique(HTML) 8 Page - Microchip Technology |
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8 / 57 page ![]() 2015-2021 Microchip Technology Inc. DS20005426G-page 8 MCP960X/L0X/RL0X INPUT/OUTPUT PIN DC CHARACTERISTICS Electrical Specifications: Unless otherwise indicated, VDD = 2.7V to 5.5V, GND = Ground, TA = -40°C to +125°C (where: TA =TC, defined as Device Ambient Temperature). Parameters Sym. Min. Typ. Max. Units Conditions Serial Input/Output and I2C Address Input (ADDR) Input (SCL, SDA, ADDR) High-Level Voltage VIH 0.7 × VDD —— V Low-Level Voltage VIL —— 0.3 × VDD V Input Current ILEAK —— ±2 µA Hysteresis VHYST — 0.05 × VDD —V VDD > 2V Spike Suppression TSP —50 — ns Output (SDA) Low-Level Voltage VOL ——0.4 V IOL= 3 mA High-Level Current (leakage) IOH —— 1 µA VOH = VDD Low-Level Current IOL 6— — mA VOL = 0.6V Capacitance CIN —5 — pF I2C Address Selection Levels (Note 1) Command Byte [1100 000x]VADDR GND — — V Address = 0 Command Byte [1100 001x]VADDR_L (Note 2) VADDR_TYP (Note 2) VADDR_H (Note 2) Address = 1 Command Byte [1100 010x]Address = 2 Command Byte [1100 011x]Address = 3 Command Byte [1100 100x]Address = 4 Command Byte [1100 101x]Address = 5 Command Byte [1100 110x]Address = 6 Command Byte [1100 111x]— — VDD Address = 7 Note 1 The ADDR pin can be tied to VDD or VSS. For additional addresses, a resistive divider network can be used to set voltage levels that are rationed to VDD. The device supports up to eight levels (see Section 6.3.1 “I2C Addressing” for recommended resistor values). 2 VADDR_TYP =Address * VDD/8 + VDD/16, VADDR_L =VADDR_TYP –VDD/32 and VADDR_H =VADDR_TYP +VDD/32 (where: Address = 1, 2, 3, 4, 5, 6). TEMPERATURE CHARACTERISTICS Electrical Specifications: Unless otherwise indicated, VDD = 2.7V to 5.5V, GND = Ground. Parameters Sym. Min. Typ. Max. Units Conditions Temperature Ranges Specified Temperature Range TA -40 — +125 °C Note 1 Operating Temperature Range TA -40 — +125 °C Storage Temperature Range TA -65 — +150 °C Thermal Package Resistances Thermal Resistance, MQFN JA — 38.8 — °C/W Note 1 Operation in this range must not cause TJ to exceed the Maximum Junction Temperature (+150°C). |
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