
TPS7101Q, TPS7133Q, TPS7148Q, TPS7150Q
TPS7101Y, TPS7133Y, TPS7148Y, TPS7150Y
LOW-DROPOUT VOLTAGE REGULATORS
SLVS092F – NOVEMBER 1994 – REVISED JANUARY 1997
10
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
TPS7150 electrical characteristics at I
O
= 10 mA, V
I
= 6 V, EN = 0 V, C
O
= 4.7
μ
F/CSR
= 1
, SENSE
shorted to OUT (unless otherwise noted)
PARAMETER
TEST CONDITIONS
TJ
TPS7150Q
MIN
UNIT
TYP
MAX
Output voltage
VI = 6 V,
6 V
≤
VI
≤
10 V,
IO = 10 mA
5 mA
≤
IO
≤
500 mA
25
°
C
5
V
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
–40
°
C to 125
°
C
25
°
C
4.9
5.1
IO= 10 mA
IO = 10 mA,
VI= 4 88 V
VI = 4.88 V
2.9
6
8
Dropout voltage
IO= 100 mA
IO = 100 mA,
VI= 4 88 V
VI = 4.88 V
27
32
mV
47
IO= 500 mA
IO = 500 mA,
VI= 4 88 V
VI = 4.88 V
146
170
230
Pass element series resistance
Pass-element series resistance
(4.88 V – VO)O,
IO = 500 mA
VI = 4.88 V,
0.29
0.32
0.47
Input regulation
VI= 6 V to 10 V
VI = 6 V to 10 V,
μ
≤
50
A
IO
≤
500 mA
25
mV
32
IO= 5 mA to 500 mA
IO = 5 mA to 500 mA,
≤
6 V
VI
≤
10 V
30
45
mV
Output regulation
86
IO= 50
μ
IO = 50
A to 500 mA,
≤
6 V
VI
≤
10 V
45
65
mV
140
IO= 50
μ
IO = 50
A
45
55
Ripple rejection
f = 120 Hz
40
dB
IO= 500 mA
IO = 500 mA
42
52
36
Output noise-spectral density
f = 120 Hz
2
μ
V/
√
Hz
≤
≤
10 Hz
f
100 kHz,
CSR= 1
CO = 4.7
μ
F
CO = 10
μ
F
CO = 100
μ
F
25
°
C
25
°
C
25
°
C
430
Output noise voltage
345
μ
Vrms
CSR = 1
220
PG trip-threshold voltage
VO voltage decreasing from above VPG
–40
°
C to 125
°
C
4.55
4.75
V
PG hysteresis voltage
25
°
C
25
°
C
53
mV
PG output low voltage
IPG= 1 2 mA
IPG = 1.2 mA,
VI= 4 25 V
VI = 4.25 V
0.2
0.4
0.4
V
–40
°
C to 125
°
C
CSR refers to the total series resistance, including the ESR of the capacitor, any series resistance added externally, and PWB trace resistance
to CO.
Pulse-testing techniques are used to maintain virtual junction temperature as close as possible to ambient temperature; thermal effects must
be taken into account separately.