2N7001 Series
Automotive 1-bit dual-supply buffered voltage signal translator
Manufacturer: Texas Instruments
Catalog(3 parts)
Part | Channels per Circuit▲▼ | Supplier Device Package | Data Rate▲▼ | Voltage - VCCA▲▼ | Voltage - VCCA▲▼ | Output Signal | Input Signal | Voltage - VCCB▲▼ | Voltage - VCCB▲▼ | Translator Type | Output Type | Grade | Qualification | Package / Case | Number of Circuits▲▼ | Operating Temperature▲▼ | Operating Temperature▲▼ | Mounting Type | Channel Type |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments 2N7001TQDCKRQ1Voltage Level Translator Unidirectional 1 Circuit 1 Channel 100Mbps SC-70-5 | 1 ul | SC-70-5 | 104857600 bit/s | 1.649999976158142 V | 3.5999999046325684 V | CMOS | CMOS | 1.649999976158142 V | 3.5999999046325684 V | Voltage Level | Push-Pull | Automotive | AEC-Q100 | 5-TSSOP, SC-70-5, SOT-353 | 1 ul | -40 °C | 125 °C | Surface Mount | Unidirectional |
Texas Instruments 2N7001TDCKRVoltage Level Translator Unidirectional 1 Circuit 1 Channel 100Mbps SC-70-5 | 1 ul | SC-70-5 | 104857600 bit/s | 1.649999976158142 V | 3.5999999046325684 V | CMOS | CMOS | 1.649999976158142 V | 3.5999999046325684 V | Voltage Level | Push-Pull | 5-TSSOP, SC-70-5, SOT-353 | 1 ul | -40 °C | 125 °C | Surface Mount | Unidirectional | ||
Texas Instruments 2N7001TDPWRVoltage Level Translator Unidirectional 1 Circuit 1 Channel 100Mbps 5-X2SON (0.8x0.8) | 1 ul | 5-X2SON (0.8x0.8) | 104857600 bit/s | 1.649999976158142 V | 3.5999999046325684 V | CMOS | CMOS | 1.649999976158142 V | 3.5999999046325684 V | Voltage Level | Push-Pull | 4-XFDFN Exposed Pad | 1 ul | -40 °C | 125 °C | Surface Mount | Unidirectional |
Key Features
• Up and down translation across 1.65 V to 3.6 VAEC-Q100 automotive qualifiedOperating temperature grade 1: –40°C to +125°CMaximum quiescent current (ICCA+ ICCB) of 14 µA (125°C maximum)Up to 100 Mbps support across the full supply rangeVCCIsolation FeatureIf either VCCinput is below 100 mV, the output becomes high-impedanceIoffsupports partial-power-down mode operationLatch-up performance exceeds 100 mA per JESD 78, Class IIESD protection exceeds JEDEC JS-0012000-V human body model1000-V charged-device modelUp and down translation across 1.65 V to 3.6 VAEC-Q100 automotive qualifiedOperating temperature grade 1: –40°C to +125°CMaximum quiescent current (ICCA+ ICCB) of 14 µA (125°C maximum)Up to 100 Mbps support across the full supply rangeVCCIsolation FeatureIf either VCCinput is below 100 mV, the output becomes high-impedanceIoffsupports partial-power-down mode operationLatch-up performance exceeds 100 mA per JESD 78, Class IIESD protection exceeds JEDEC JS-0012000-V human body model1000-V charged-device model
Description
AI
The AEC-Q100 qualified 2N7001T-Q1 device is a single-bit buffered voltage signal converter that uses two separate configurable power-supply rails to up or down translate a unidirectional signal. The device is operational with both VCCAand VCCBsupplies down to 1.65 V and up to 3.60 V. VCCAdefines the input threshold voltage on the A input. VCCBdefines the output drive voltage on the B output.
This device is fully specified for partial-power-down applications using the Ioffcurrent. The Ioffprotection circuitry ensures that no excessive current is drawn from or to an input, output, or combined I/O that is biased to a specific voltage while the device is powered down.
The VCCisolation feature ensures that if either VCCAor VCCBis less than 100 mV, the output port (B) enters a high-impedance state.
The AEC-Q100 qualified 2N7001T-Q1 device is a single-bit buffered voltage signal converter that uses two separate configurable power-supply rails to up or down translate a unidirectional signal. The device is operational with both VCCAand VCCBsupplies down to 1.65 V and up to 3.60 V. VCCAdefines the input threshold voltage on the A input. VCCBdefines the output drive voltage on the B output.
This device is fully specified for partial-power-down applications using the Ioffcurrent. The Ioffprotection circuitry ensures that no excessive current is drawn from or to an input, output, or combined I/O that is biased to a specific voltage while the device is powered down.
The VCCisolation feature ensures that if either VCCAor VCCBis less than 100 mV, the output port (B) enters a high-impedance state.