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TPS51116RGET Datasheet(PDF) 5 Page - Texas Instruments

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Part # TPS51116RGET
Description  COMPLETE DDR, DDR2 AND DDR3 MEMORY POWER SOLUTION SYNCHRONOUS BUCK CONTROLLER, 3-A LDO, BUFFERED REFERENCE
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

TPS51116RGET Datasheet(HTML) 5 Page - Texas Instruments

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TPS51116
www.ti.com................................................................................................................................................................ SLUS609H – MAY 2004 – REVISED JULY 2009
ELECTRICAL CHARACTERISTICS (continued)
over operating free-air temperature range, VV5IN = 5 V, VLDOIN is connected to VDDQ output (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
VTT OUTPUT
VS3 = VS5 = 5 V, VVLDOIN = VVDDQSNS = 2.5 V
1.25
VVTTSNS
Output voltage, VTT
VS3 = VS5 = 5 V, VVLDOIN = VVDDQSNS = 1.8 V
0.9
V
VS3 = VS5 = 5 V, VVLDOIN = VVDDQSNS = 1.5 V
0.75
VVDDQSNS = VVLDOIN = 2.5 V, VS3 = VS5 = 5 V,
-20
20
IVTT = 0 A
VTT output voltage tolerance
VVDDQSNS = VVLDOIN = 2.5 V, VS3 = VS5 = 5 V,
VVTTTOL25
-30
30
mV
to VTTREF
|IVTT| < 1.5 A
VVDDQSNS = VVLDOIN = 2.5 V, VS3 = VS5 = 5 V,
-40
40
|IVTT| < 3 A
VVDDQSNS = VVLDOIN = 1.8 V, VS3 = VS5 = 5 V,
-20
20
IVTT = 0 A
VTT output voltage tolerance
VVDDQSNS = VVLDOIN = 1.8 V, VS3 = VS5 = 5 V,
VVTTTOL18
-30
30
mV
to VTTREF
|IVTT| < 1 A
VVDDQSNS = VVLDOIN = 1.8 V, VS3 = VS5 = 5 V,
-40
40
|IVTT| < 2 A
VVDDQSNS = VVLDOIN = 1.5 V, VS3 = VS5 = 5 V,
-20
20
IVTT = 0 A
VTT output voltage tolerance
VVDDQSNS = VVLDOIN = 1.5 V, VS3 = VS5 = 5 V,
VVTTTOL15
-30
30
mV
to VTTREF
|IVTT| < 1 A
VVDDQSNS = VVLDOIN = 1.5 V, VS3 = VS5 = 5 V,
-40
40
|IVTT| < 2 A
VVDDQSNS = VVLDOIN = 1.2 V, VS3 = VS5 = 5 V,
-20
20
IVTT = 0 A
VTT output voltage tolerance
VVDDQSNS = VVLDOIN = 1.2 V, VS3 = VS5 = 5 V,
VVTTTOL12
-30
30
mV
to VTTREF
|IVTT| < 1 A
VVDDQSNS = VVLDOIN = 1.2 V, VS3 = VS5 = 5 V,
-40
40
|IVTT| < 1.5 A
VVLDOIN = VVDDQSNS = 2.5 V, VVTT = VVTTSNS =
3.0
3.8
6.0
1.19 V, PGOOD = HI
IVTTTOCLSRC
Source current limit, VTT
VVLDOIN = VVDDQSNS = 2.5 V, VVTT = 0 V
1.5
2.2
3.0
A
VVLDOIN = VVDDQSNS = 2.5 V, VVTT = VVTTSNS =
3.0
3.6
6.0
1.31 V, PGOOD = HI
IVTTTOCLSNK
Sink current limit, VTT
VVLDOIN = VVDDQSNS = 2.5 V, VVTT = VVDDQ
1.5
2.2
3.0
IVTTLK
Leakage current, VTT
VS3 = 0 V, VS5 = 5 V, VVTT = VVDDQSNS /2
-10
10
IVTTBIAS
Input bias current, VTTSNS
VS3 = 5 V, VVTTSNS = VVDDQSNS /2
-1
-0.1
1
µA
IVTTSNSLK
Leakage current, VTTSNS
VS3 = 0 V, VS5 = 5 V, VVTT = VVDDQSNS /2
-1
1
TA = 25°C, VS3 = VS5 = VVDDQSNS = 0 V,
IVTTDisch
Discharge current, VTT
10
17
mA
VVTT = 0.5 V
TRANSCONDUCTANCE AMPLIFIER
gm
Gain
TA = 25°C
240
300
360
µS
COMP maximum sink
VS3 = 0 V, VS5 = 5 V, VVDDQSET = 0 V,
ICOMPSNK
13
current
VVDDQSNS = 2.7 V, VCOMP = 1.28 V
µA
COMP maximum source
VS3 = 0 V, VS5 = 5 V, VVDDQSET = 0 V,
ICOMPSRC
-13
current
VVDDQSNS = 2.3 V, VCOMP = 1.28 V
VS3 = 0 V, VS5 = 5 V, VVDDQSET = 0 V,
VCOMPHI
COMP high clamp voltage
1.31
1.34
1.37
VVDDQSNS = 2.3 V, VCS = 0 V
V
VS3 = 0 V, VS5 = 5 V, VVDDQSET = 0 V,
VCOMPLO
COMP low clamp voltage
1.18
1.21
1.24
VVDDQSNS = 2.7 V, VCS = 0 V
Copyright © 2004–2009, Texas Instruments Incorporated
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