The LMP8640, LMP8640-Q1 and the LMP8640HV are precision current sense amplifiers that detect small differential voltages across a sense resistor in the presence of high input common mode voltages with a supply voltage range from 2.7 V to 12 V.
The LMP8640 and LMP8640-Q1 accept input signals with common mode voltage range from -2 V to 42 V, while the LMP8640HV accepts input signal with common mode voltage range from -2 V to 76 V. The LMP8640 and LMP8640HV have fixed gain for applications that demand accuracy over temperature. The LMP8640 and LMP8640HV come out with three different fixed gains 20 V/V, 50 V/V, 100 V/V ensuring a gain accuracy as low as 0.25%. The output is buffered in order to provide low output impedance. This high side current sense amplifier is ideal for sensing and monitoring currents in DC or battery powered systems, excellent AC and DC specifications over temperature, and keeps errors in the current sense loop to a minimum. The LMP8640 and LMP8640HV are ideal choice for industrial and consumer applications, while the LMP8640-Q1 is an AEC-Q100 grade 1 qualified version of the LMP8640 for automotive applications. The LMP8640-x is available in SOT-23-6 package.
PART NUMBER | PACKAGE | BODY SIZE (NOM) |
---|---|---|
LMP8640 | SOT23 (6) | 2.9 mm x 1.6 mm |
LMP8640-Q1 | ||
LMP8640HV |
Changes from F Revision (April 2013) to G Revision
DEVICE NAME | GAIN | QUALIFICATIONS | MAX COMMON MODE VOLTAGE |
---|---|---|---|
LMP8640-T | x20 | -2 V to +42 V | |
LMP8640-T | x20 | -2 V to +42 V | |
LMP8640-Q1-T | x20 | Automotive AEC-Q100, Grade 1 | -2 V to +42 V |
LMP8640-F | x50 | -2 V to +42 V | |
LMP8640-H | x100 | -2 V to +42 V | |
LMP8640HV-T | x20 | -2 V to +76 V | |
LMP8640HV-F | x50 | -2 V to +76 V | |
LMP8640HV-H | x100 | -2 V to +76 V |
PIN | DESCRIPTION | |
---|---|---|
NUMBER | NAME | |
1 | VOUT | Output |
2 | V- | Negative Supply Voltage |
3 | +IN | Positive Input |
4 | -IN | Negative Input |
5 | NC | Not Internally Connected |
6 | V+ | Positive Supply Voltage |
MIN | MAX | UNIT | |||
---|---|---|---|---|---|
Supply Voltage (VS = V+ - V−) | -0.3 | 13.2 | V | ||
Differential Voltage +IN- (-IN) | -6 | 6 | V | ||
Voltage at pins +IN, -IN | LMP8640HV | -6 | 80 | V | |
LMP8640, LMP8640-Q1 | -6 | 60 | V | ||
Voltage at VOUT pin | V- | V+ | V | ||
Junction Temperature (4) | -40 | 150 | °C |
MIN | MAX | UNIT | ||||
---|---|---|---|---|---|---|
Tstg | Storage temperature range | -65 | 150 | °C | ||
V(ESD) | Electrostatic discharge | Human body model (HBM(1)) | For input pins +IN, -IN | -5000 | 5000 | V |
For all other pins | -2000 | 2000 | ||||
Charged device model (CDM)(2) | All pins | -1250 | 1250 | |||
Machine model (MM) (3) | -200 | 200 |
MIN | MAX | UNIT | ||||
---|---|---|---|---|---|---|
Tstg | Storage temperature range | -65 | 150 | °C | ||
V(ESD) | Electrostatic discharge | Human body model (HBM), per AEC Q100-002(1) | -2000 | 2000 | V | |
Charged device model (CDM), per AEC Q100-011 | All pins | -1000 | 1000 | |||
Machine model (MM) (2) | All pins | -200 | 200 |
MIN | MAX | UNIT | |
---|---|---|---|
Supply Voltage (VS = V+ - V−) | 2.7 | 12 | V |
Operating Junction Temperature Range (4) | -40 | 125 | °C |
THERMAL METRIC(1) | LMP8640 LMP8640HV LMP8640-Q1 |
UNIT | |
---|---|---|---|
THIN SOT-23 | |||
6 PINS | |||
RθJA | Junction-to-ambient thermal resistance (4) | 165 | °C/W |
RθJC(top) | Junction-to-case (top) thermal resistance | 28 | |
RθJB | Junction-to-board thermal resistance | 24.6 | |
ψJT | Junction-to-top characterization parameter | 0.3 | |
ψJB | Junction-to-board characterization parameter | 23.8 |
PARAMETER | TEST CONDITIONS | MIN(3) | TYP(2) | MAX(3) | UNIT | |
---|---|---|---|---|---|---|
VOS | Input Offset Voltage | VCM = 2.1 V | -900 | 900 | µV | |
VCM = 2.1 V, Over Temperature | -1160 | 1160 | ||||
TCVOS | Input Offset Voltage Drift(4)(6) | VCM = 2.1 V | 2.6 | µV/°C | ||
IB | Input Bias Current (7) | VCM = 2.1 V, VSENSE = 0 V | 12 | 20 | µA | |
VCM = 2.1 V, Over Temperature, VSENSE = 0 V | 27 | |||||
eni | Input Voltage Noise (6) | f > 10 kHz | 117 | nV/√Hz | ||
Gain AV | Gain LMP8640-T LMP8640HV-T | 20 | V/V | |||
Gain LMP8640-F LMP8640HV-F | 50 | |||||
Gain LMP8640-H LMP8640HV-H | 100 | |||||
Gain error | VCM = 2.1 V | -0.25% | 0.25% | |||
VCM = 2.1 V, Over Temperature | -0.51% | 0.51% | ||||
Accuracy over temperature(6) | VCM = 2.1V, Over Temperature | 26.2 | ppm/°C | |||
PSRR | Power Supply Rejection Ratio | VCM = 2.1 V, 2.7 V < V+ < 12 V, | 85 | dB | ||
CMRR | Common Mode Rejection Ratio | LMP8640HV 2.1 V < VCM < 42 V LMP8640 2.1 V < VCM< 42 V |
103 | dB | ||
LMP8640HV 2.1 V < VCM < 76 V | 95 | |||||
-2 V <VCM < 2 V, | 60 | |||||
BW | Fixed Gain LMP8640-T LMP8640HV-T (6) | DC VSENSE = 67.5 mV, CL = 30 pF,RL= 1MΩ |
950 | kHz | ||
Fixed Gain LMP8640-F LMP8640HV-F (6) | DC VSENSE =27 mV, CL = 30 pF, RL= 1MΩ |
450 | ||||
Fixed Gain LMP8640-H LMP8640HV-H (6) | DC VSENSE = 13.5 mV, CL = 30 pF ,RL= 1 MΩ |
230 | ||||
SR | Slew Rate (5)(6) | VCM =5 V, CL = 30 pF, RL = 1 MΩ, LMP8640-T LMP8640HV-T VSENSE =100 mVpp, LMP8640-F LMP8640HV-F VSENSE =40 mVpp, LMP8640-H LMP8640HV-H VSENSE =20 mVpp, |
1.4 | V/µs | ||
RIN | Differential Mode Input Impedance(6) | 5 | kΩ | |||
IS | Supply Current | VCM = 2.1 V | 420 | 600 | µA | |
VCM = 2.1 V, Over Temperature | 800 | |||||
VCM = −2 V | 2000 | 2500 | ||||
VCM = −2 V, Over Temperature | 2750 | |||||
VOUT | Maximum Output Voltage | VCM = 2.1 V | 2.65 | V | ||
Minimum Output Voltage | LMP8640-T LMP8640HV-T VCM = 2.1 V |
18.2 | mV | |||
LMP8640-F LMP8640HV-F VCM = 2.1 V |
40 | |||||
LMP8640-H LMP8640HV-H VCM = 2.1 V |
80 | |||||
CLOAD | Max Output Capacitance Load(6) | 30 | pF |
PARAMETER | TEST CONDITIONS | MIN(3) | TYP(2) | MAX(3) | UNIT | |
---|---|---|---|---|---|---|
VOS | Input Offset Voltage | VCM = 2.1 V | -900 | 900 | µV | |
VCM = 2.1 V, Over Temperature | -1160 | 1160 | ||||
TCVOS | Input Offset Voltage Drift(4)(6) | VCM = 2.1 V | 2.6 | µV/°C | ||
IB | Input Bias Current (7) | VCM = 2.1 V, VSENSE = 0 V | 13 | 21 | µA | |
VCM = 2.1 V, Over Temperature,VSENSE = 0 V | 28 | |||||
eni | Input Voltage Noise (6) | f > 10 kHz | 117 | nV/√Hz | ||
Gain AV | Gain LMP8640-T LMP8640HV-T | 20 | V/V | |||
Gain LMP8640-F LMP8640HV-F | 50 | |||||
Gain LMP8640-H LMP8640HV-H | 100 | |||||
Gain error | VCM = 2.1 V | -0.25% | 0.25% | |||
VCM = 2.1 V, Over Temperature | -0.51% | 0.51% | ||||
Accuracy over temperature(6) | −40°C to 125°C, VCM=2.1 V | 26.2 | ppm/°C | |||
PSRR | Power Supply Rejection Ratio | VCM = 2.1 V, 2.7V < V+ < 12 V, | 85 | dB | ||
CMRR | Common Mode Rejection Ratio | LMP8640HV 2.1 V < VCM < 42 V LMP8640 2.1 V < VCM< 42 V |
103 | dB | ||
LMP8640HV 2.1 V < VCM < 76 V | 95 | |||||
-2 V <VCM < 2 V, | 60 | |||||
BW | Fixed Gain LMP8640-T LMP8640HV-T (6) | DC VSENSE = 67.5 mV, CL = 30 pF ,RL= 1 MΩ |
950 | kHz | ||
Fixed Gain LMP8640-F LMP8640HV-F(6) | DC VSENSE =27 mV, CL = 30 pF ,RL= 1 MΩ |
450 | ||||
Fixed Gain LMP8640-H LMP8640HV-H(6) | DC VSENSE = 13.5 mV, CL = 30 pF ,RL= 1MΩ |
230 | ||||
SR | Slew Rate (5)(6) | VCM =5 V, CL = 30 pF, RL = 1MΩ, LMP8640-T LMP8640HV-T VSENSE = 200 mVpp, LMP8640-F LMP8640HV-F VSENSE = 80 mVpp, LMP8640-H LMP8640HV-H VSENSE = 40 mVpp, |
1.6 | V/µs | ||
RIN | Differential Mode Input Impedance(6) | 5 | kΩ | |||
IS | Supply Current | VCM = 2.1 V | 500 | 722 | µA | |
VCM = 2.1 V, Over Temperature | 922 | |||||
VCM = −2 V | 2050 | 2500 | ||||
VCM = −2 V, Over Temperature | 2750 | |||||
VOUT | Maximum Output Voltage | VCM = 2.1 V | 4.95 | V | ||
Minimum Output Voltage | LMP8640-T LMP8640HV-T VCM = 2.1 V |
18.2 | mV | |||
LMP8640-F LMP8640HV-F VCM = 2.1 V |
40 | |||||
LMP8640-H LMP8640HV-H VCM = 2.1 V |
80 | |||||
CLOAD | Max Output Capacitance Load(6) | 30 | pF |
PARAMETER | TEST CONDITIONS | MIN(3) | TYP(2) | MAX(3) | UNIT | |
---|---|---|---|---|---|---|
VOS | Input Offset Voltage | VCM = 2.1 V | -900 | 900 | µV | |
VCM = 2.1 V, Over Temperature | -1160 | 1160 | ||||
TCVOS | Input Offset Voltage Drift(4)(6) | VCM = 2.1 V | 2.6 | µV/°C | ||
IB | Input Bias Current (7) | VCM = 2.1 V, VSENSE = 0 V | 13 | 22 | µA | |
VCM = 2.1 V, Over Temperature, VSENSE = 0 V | 28 | |||||
eni | Input Voltage Noise (6) | f > 10 kHz | 117 | nV/√Hz | ||
Gain AV | Gain LMP8640-T LMP8640HV-T | 20 | V/V | |||
Gain LMP8640-F LMP8640HV-F | 50 | |||||
Gain LMP8640-H LMP8640HV-H | 100 | |||||
Gain error | VCM = 2.1 V | -0.25% | 0.25% | |||
VCM = 2.1 V, Over Temperature | -0.51% | 0.51% | ||||
Accuracy over temperature(6) | −40°C to 125°C, VCM= 2.1 V | 26.2 | ppm/°C | |||
PSRR | Power Supply Rejection Ratio | VCM = 2.1 V, 2.7 V < V+ < 12 V, | 85 | dB | ||
CMRR | Common Mode Rejection Ratio | LMP8640HV 2.1 V < VCM < 42 V LMP8640 2.1 V < VCM< 42 V |
103 | dB | ||
LMP8640HV 2.1 V < VCM < 76 V | 95 | |||||
-2 V < VCM < 2 V, | 60 | |||||
BW | Fixed Gain LMP8640-T LMP8640HV-T (6) | DC VSENSE = 67.5 mV, CL = 30 pF, RL= 1 MΩ |
950 | kHz | ||
Fixed Gain LMP8640-F LMP8640HV-F (6) | DC VSENSE =27 mV, CL = 30 pF, RL= 1 MΩ |
450 | ||||
Fixed Gain LMP8640-H LMP8640HV-H (6) | DC VSENSE = 13.5 mV, CL = 30 pF, RL= 1 MΩ |
230 | ||||
SR | Slew Rate (5)(6) | VCM =5 V, CL = 30 pF, RL = 1 MΩ, LMP8640-T LMP8640HV-T VSENSE = 500 mVpp, LMP8640-F LMP8640HV-F VSENSE =200 mVpp, LMP8640-H LMP8640HV-H VSENSE =100 mVpp, |
1.8 | V/µs | ||
RIN | Differential Mode Input Impedance(6) | 5 | kΩ | |||
IS | Supply Current | VCM = 2.1 V | 720 | 1050 | µA | |
VCM = 2.1 V, Over Temperature | 1250 | |||||
VCM = −2 V | 2300 | 2800 | ||||
VCM = −2 V, Over Temperature | 3000 | |||||
VOUT | Maximum Output Voltage | VCM = 2.1 V | 11.85 | V | ||
Minimum Output Voltage | LMP8640-T LMP8640HV-T VCM = 2.1 V |
18.2 | mV | |||
LMP8640-F LMP8640HV-F VCM = 2.1 V |
40 | |||||
LMP8640-H LMP8640HV-H VCM = 2.1 V |
80 | |||||
CLOAD | Max Output Capacitance Load(6) | 30 | pF |