Linear Hall Effect Current Sensor IC Allegro A1363LKTTN 2 T Programmable for Automotive Applications
Allegro A1363 Programmable Linear Hall-Effect Current Sensor IC
Product Overview
The Allegro A1363 is a high-accuracy, high-resolution programmable linear Hall-effect current sensor IC designed for demanding applications. It features proprietary linearly interpolated temperature compensation technology, programmed at the factory, ensuring virtually flat sensitivity and offset across the full operating temperature range. With a 120 kHz bandwidth and a voltage output proportional to the magnetic field, it is ideal for HEV inverters, DC-to-DC converters, and electric power steering (EPS) systems. The device offers customer-programmable sensitivity and quiescent output voltage for optimized performance, along with advanced features like broken ground wire detection and selectable output voltage clamps for enhanced reliability in automotive environments.
Product Attributes
- Brand: Allegro
- Technology: BiCMOS interface IC, Hall-effect
- Package: 4-pin SIP (suffix KT)
- Lead Frame Plating: 100% matte tin
- Certifications: AEC-Q100 automotive qualified
- Material: Lead (Pb) free
Technical Specifications
| Characteristic | Symbol | Conditions | Min. | Typ. | Max. | Unit |
|---|---|---|---|---|---|---|
| Supply Voltage | VCC | 4.5 | 5.0 | 5.5 | V | |
| Supply Current | ICC | No load on VOUT | 10 | 15 | mA | |
| Internal Bandwidth | BWi | Small signal 3 dB, CL = 1 nF, TA = 25C | 120 | kHz | ||
| Operating Ambient Temperature | TA | 40 | 150 | C | ||
| Sensitivity Range | SensPR | SENS_COARSE = 00, TA = 25C | 0.6 | 1.3 | mV/G | |
| Sensitivity Range | SensPR | SENS_COARSE = 01, TA = 25C | 1.3 | 2.9 | mV/G | |
| Sensitivity Range | SensPR | SENS_COARSE = 10, TA = 25C | 2.9 | 6.4 | mV/G | |
| Sensitivity Range | SensPR | SENS_COARSE = 11, TA = 25C | 6.4 | 14 | mV/G | |
| Output Voltage Clamp (High) | VCLP(HIGH) | TA = 25C, RL(PULLDWN) = 10 k to GND | 4.55 | 4.85 | V | |
| Output Voltage Clamp (Low) | VCLP(LOW) | TA = 25C, RL(PULLUP) = 10 k to VCC | 0.15 | 0.45 | V | |
| Noise (RMS) | VN | TA = 25C, CL = 1 nF, BWf = BWi | 1.1 | mGRMS/(Hz) | ||
| Noise (Peak-to-Peak) | VN | TA = 25C, CL = 1 nF, Sens = 2 mV/G, BWf = BWi | 6.3 | mVp-p | ||
| Quiescent Voltage Output Programming Range | VOUT(Q)PR | TA = 25C | 2.3 | 2.7 | V | |
| Sensitivity Temperature Coefficient | TCSENS | TA=150C, TA= 40C, calculated relative to 25C | 0 | %/C | ||
| Sensitivity Drift Through Temperature Range | SensTC | TA = 25C to 150C | 2.5 | 2.5 | % | |
| Quiescent Voltage Output Temperature Coefficient | TCQVO | TA = 150C, TA = 40C, calculated relative to 25C | 0 | mV/C | ||
| Quiescent Voltage Output Drift Through Temperature Range | VOUT(Q)TC | TA = 25C to 150C | 15 | 15 | mV | |
| Linearity Sensitivity Error | LinERR | 1 | % | |||
| Symmetry Sensitivity Error | SymERR | 1 | % | |||
| Ratiometry Quiescent Voltage Output Error | RatERRVOUT(Q) | Through supply voltage range (relative to VCC = 5 V) | 1 | 0 | 1 | % |
| Ratiometry Sensitivity Error | RatERRSens | Through supply voltage range (relative to VCC = 5 V) | 1.5 | 1.5 | % | |
| Package Thermal Resistance | RJA | On 1-layer PCB with exposed copper limited to solder pads | 174 | C/W |
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