SLVSD64 December 2015 TPS7A6650H-Q1
PRODUCTION DATA.
MIN | MAX | UNIT | ||
---|---|---|---|---|
Vin, EN | Unregulated input(2) (3) | –0.3 | 45 | V |
Vout | Regulated output | –0.3 | 7 | V |
CT | –0.3 | 25 | V | |
PG | –0.3 | Vout | V | |
TJ | Operating junction temperature range | –40 | 160 | °C |
Tstg | Storage temperature range | –65 | 160 | °C |
VALUE | UNIT | ||||
---|---|---|---|---|---|
V(ESD) | Electrostatic discharge | Human body model (HBM), per AEC Q100-002(1) | ±4000 | V | |
Charged device model (CDM), per AEC Q100-011 | All pins | ±1000 | |||
Corner pins (1, 4, 5, and 8) | ±1000 |
spacer
MIN | MAX | UNIT | ||
---|---|---|---|---|
Vin | Unregulated input | 4 | 40 | V |
EN | 0 | 40 | V | |
CT | 0 | 20 | V | |
Vout | 1.5 | 5.5 | V | |
PG | Low voltage (I/O) | 0 | 5.5 | V |
TA | Operating ambient temperature | –40 | 150 | °C |
THERMAL METRIC(1) | TPS7A6650H-Q1 | UNIT | |
---|---|---|---|
DGN (HVSSOP) | |||
8 PINS | |||
RθJA | Junction-to-ambient thermal resistance | 63.4 | °C/W |
RθJC(top) | Junction-to-case (top) thermal resistance | 53 | °C/W |
RθJB | Junction-to-board thermal resistance(2) | 37.4 | °C/W |
ψJT | Junction-to-top characterization parameter | 3.7 | °C/W |
ψJB | Junction-to-board characterization parameter | 37.1 | °C/W |
RθJC(bot) | Junction-to-case (bottom) thermal resistance | 13.5 | °C/W |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |
---|---|---|---|---|---|---|
SUPPLY VOLTAGE AND CURRENT (Vin) | ||||||
V(Vin) | Input voltage | IO = 1 mA | 5.5 | 40 | V | |
I(q) | Quiescent current | V(Vin) = 5.5 V to 40 V, EN = ON, IO = 0.2 mA | 12 | 22 | µA | |
I(Sleep) | Input sleep current | No load current and EN = OFF | 4 | µA | ||
I(EN) | EN pin current | V(EN) = 40 V | 1 | µA | ||
V(VinUVLO) | Undervoltage detection | Ramp V(Vin) down until output turns OFF | 2.6 | V | ||
V(UVLOhys) | Undervoltage hysteresis | 1 | V | |||
ENABLE INPUT (EN) | ||||||
VIL | Logic input low level | 0 | 0.4 | V | ||
VIH | Logic input high level | 1.7 | V | |||
REGULATED OUTPUT (Vout) | ||||||
V(Vout) | Regulated output | IO = 1 mA, TJ = 25°C | –1% | 1% | ||
V(Vin) = 6 V to 40 V, IO = 1 mA to 50 mA | –2% | 2% | ||||
V(line-reg) | Line regulation | V(Vin) = 5.5 V to 40 V, IO = 50 mA | 5 | mV | ||
V(load-reg) | Load regulation | IO = 1 mA to 50 mA | 20 | mV | ||
V(dropout) | Dropout voltage | V(dropout) = V(Vin) – V(Vout), IOUT = 50 mA | 130 | 240 | mV | |
IO | Output current | V(Vout) in regulation | 0 | 50 | mA | |
I(lreg-CL) | Output current limit | V(Vout) short to ground | 500 | 800 | mA | |
PSRR | Power supply ripple rejection(1) | V(Vin) = 12 V, IL = 10 mA, output capacitance = 2.2 µF, | ||||
V(Vin) = 12 V, IL = 10 mA, output capacitance = 2.2 µF, frequency = 100 Hz | 60 | dB | ||||
V(Vin) = 12 V, IL = 10 mA, output capacitance = 2.2 µF, frequency = 100 kHz | 40 | dB | ||||
RESET (PG) | ||||||
VOL | Reset output, low voltage | IOL = 0.5 mA | 0.4 | V | ||
Ilkg | Leakage current | Reset pulled Vout through 10-kΩ resistor | 1 | µA | ||
V(TH-POR) | Power-on-reset threshold | V(Vout) increasing | 89.6 | 91.6 | 93.6 | % of Vout |
V(Thres) | Hysteresis | 2 | % of Vout | |||
RESET DELAY (CT) | ||||||
I(Chg) | Delay-capacitor charging current | V(CT) = 0 V | 1.4 | µA | ||
V(th) | Threshold to release PG high | 1 | V | |||
OPERATING TEMPERATURE RANGE | ||||||
TJ | Junction temperature | –40 | 160 | °C | ||
T(shutdown) | Junction shutdown temperature | 175 | °C | |||
T(hyst) | Hysteresis of thermal shutdown | 20 | °C |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |
---|---|---|---|---|---|---|
TIMING FOR RESET (PG) | ||||||
t(POR) | Power-on-reset delay | Where C = delay capacitor value; capacitance C = 100 nF(1) | 50 | 100 | 180 | ms |
t(POR-fixed) | No capacitor on pin | 100 | 290 | 650 | µs | |
t(Deglitch) | Reset deglitch time | 20 | 250 | µs |
The TPS7A6650H-Q1 device has passed all the Grade 0 level qualification items required in AEC-Q100 with one exception: High temperature storage lifetime (HTSL). For the HTSL item, the Grade 0 level requirement is passing 175ºC for 1000 hours of stress. For this device, it passed at 160°C for 1000 hours stress.
Vin = 14 V | No Load |
Vin = 14 V |
Vin = 14 V |
Vin = 14 V | IL = 1 mA |
IL = 0 |
Vin = 4 V |