Downloading...
Input Full Swing, Open Drain Output Low Supply Current CMOS Comparator - BU7253SFBU7253SF is low supply current and open drain output comparators that has an expanded operating temperature range. These features low operating supply voltage of +1.8V to +5.5V, Low supply current and extremely low input bias current.
| ||||
* This product is a STANDARD grade product and not recommend for on-vehicle devices. |
Specifications:
Grade | Standard |
Power supply(Min.)[V] | 1.8 |
Power supply(Max.)[V] | 5.5 |
Channel | 2 |
Circuit Current(Typ.)[mA] | 0.035 |
Input Offset Voltage(Max.)[mV] | 11.5 |
Input Bias Current(Typ.)[nA] | 0.0010 |
Input Voltage Range [V] | VSS to VDD |
Response Time(Typ.)[µS] | 0.75 |
Voltage gain (Typ.)[dB] | 90.0 |
Output current(Typ.)[mA] | 6.0 |
PSRR(Typ.)[dB] | 80.0 |
Operating Temperature (Min.)[°C] | -40 |
Operating Temperature (Max.)[°C] | 105 |
Features:
- · Low Operating Supply Voltage
· Low Supply Current
· High Speed Operation
· Input Full Swing
· Open Drain Output Type
Applications:
RELATED PRODUCTS
Other New/Updated Products Relating to Amplifiers & Linear
PART NUMBER | Product Name | Package | Datasheet | Distribution Inventory |
---|---|---|---|---|
BU7233YF-C | Input Full Swing Open Drain Output Low Supply Current CMOS Comparators for Automotive | SOP8 | Buy Sample | |
BU7250G | Input Full Swing, Open Drain Output Low Supply Current CMOS Comparator | SSOP5 | Buy Sample | |
BU7250SG | Input Full Swing, Open Drain Output Low Supply Current CMOS Comparator | SSOP5 | Buy Sample | |
BU7253F | Input Full Swing, Open Drain Output Low Supply Current CMOS Comparator | SOP8 | Buy Sample |
New Products:
Technical Data
Op-Amp / Comparator Tutorial
This application note explains the general terms and basic techniques that are necessary for configuring application circuits with op-amps and comparators. Refer to this note for guidance when using op-amps and comparators.
Thermal Resistance
The definition and how to use thermal resistance and thermal characterization parameter of packages for ROHM’s integrated circuit are described in this application note.
Part Explanation
For ICs