ETC TD5860

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DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
汪工 TEL:13828719410 QQ:1929794238
General Description Features The TD5860/TD5860A linear regulator is designed to
provide a regulated voltage with bi-direction output
current for DDRSDRAM termination voltage. The
TD5860 integrates two power transistors to source or
sink load current up to 1.5A/2A. It also features internal
soft-start, current-limit, thermal shutdown and enable
control functions into a single chip.
The internal soft-start controls the rising rate of the
output voltage to prevent inrush current during start-up.
The current-limit circuit detects the output current and
limits the current during short-circuit or current overload
conditions. The on-chip thermal shutdown provides
thermal protection against any combination of overload
that would create excessive junction temperatures.
The output voltage of TD5860/TD5860A is regulated to
track the voltage on VREF pin. An proper resistor divider
connected to VIN, GND, and VREF pins is used to
provide a half voltage of VIN to VREF pin. In addition,
connect an external ceramic capacitor and a open-drain
transistor to VREF pin for external soft-start and
shutdown control.
Pulling and holding the voltage on VREF below the
enable voltage threshold shuts down the output. The
output of TD5860/TD5860A will be high impedance after
being shut down by VREF or the thermal shutdown
function. z
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Provide Bi-direction Output Currents
Sourcing and Sinking Current up to 1.5A/2A Built-in
Soft-Start
Power-On-Reset Monitoring on VCNTL and VIN
pins
Fast Transient Response
Stable with Ceramic Output Capacitors ±20mV High
System Output Accuracy over Load and
Temperature Ranges
Adjustable Output Voltage by External Resistors
Current-Limit Protection
On-Chip Thermal Shutdown
Shutdown for Standby or Suspend Mode
SimpleSOP-8 with Exposed Pad(SOP8-PP)
Packages
Lead Free and Green Devices Available(RoHS
Compliant)
Applications z
z
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DDRII/III SDRAM Termination Voltage
Motherboard and VGA Card Power Supplies
Setop Box
SSTL-2/3 Termination Voltage
Package Types Figure 1. Package Types of TD6821 Figure 1 Package Types of TD5860/TD5860A December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
1 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Pin Configurations Figure 2 Pin Configuration of TD5860/TD5860A (Top View) Pin Description Pin Number
1
2
3
Pin Name
Description
VIN
Main Power Input Pin. Connect this pin to a voltage source and an input
capacitor. The TD5860/TD5860A sources current to VOUT pin by controlling the
upper pass MOSFET, providing a current path from VIN to VOUT.
GND
Power and Signal Ground. Connect this pin to system ground plane with shortest
traces. The TD5860/TD5860A sinks current from VOUT pin by controlling the
lower pass MOSFET, providing a current path from VOUT to GND. This pin is
also the ground path for internal control circuitry.
VREF
Reference Voltage Input and Active-high Enable Control Pin. Apply a voltage to
this pin as a reference voltage for the TD5860/TD5860A. Connect this pin to a
resistor diver, between VIN and GND, and a capacitor for filtering noise purpose.
Applying and holding the voltage below the enable voltage threshold on this pin
by an open-drain transistor shuts down the output. During shutdown, the VOUT
pin has high input impedance.
I Output Pin of The Regulator. Connect this pin to load and output capacitors
4
VOUT
5,7,8
NC
(>8μF MLCC is necessary) required for stability and improving transient
response. The output voltage is regulated to track the reference voltage and
capable of sourcing or sinking current up to 1.5A/2A.
No Internal Connection.
6
VCNTL
Power Input Pin for Internal Control Circuitry. Connect this pin to a voltage
source, providing a bias for the internal control circuitry. A decoupling capacitor is
connected near this pin.
Exposed Pin
GND
Chip Substrate Connection of The Chip. Connect this pad to system ground plane
for good thermal conductivity.
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2 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Ordering Information TD5860 □ □ Circuit Type Packing:
Blank:Tube
Blank:1.5A
R:Type and Reel
A:2A
Absolute Maximum Ratings Note1: Stresses greater than those listed under Maximum Ratings may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operation is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability. Parameter
Symbol
Value
Unit
VCNTL
-0.3 to 7
V
VIN
-0.3 to 7
V
VREF Input Voltage(VREF to GND)
VREF
-0.3 to 7
V
VOUT Output Voltage(VOUT to GND)
VOUT
-0.3 to Vin+0.3
V
Power Dissipation
PD
Internally Limited
mW
Operating Junction Temperature
TJ
150
ºC
Storage Temperature
TSTG
-65 to 150
ºC
Lead Temperature (Soldering, 10 sec)
TLEAD
260
ºC
2000
V
VCNTL Supply Voltage(VCNTL to GND)
VIN Supply voltage(VIN to GND)
ESD (HBM)
MSL
Level3
Thermal Resistance-Junction to Ambient
Thermal Resistance-Junction to Case
RθJA
RθJC
55
20
ºC / W
ºC / W
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DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Recommended Operating Conditions Parameter Symbol
Min.
Max.
Unit
VCNTL
3
5.5
V
VIN
1.2
5.5
V
Voltage
VREF
0.7
VCNTL-2.2
V
VOUT Output Voltage
VOUT
VREF±0.02
V
VCNTL Supply Voltage
VIN Supply Voltage
VREF Input
VOUT Output Current(TD5860)
VOUT Output Current(TD5860A)
Capacitance of Input Capacitor
Equivalent Series Resistor(ESR) of Input Capacitor
Capacitance of Output Multi-layer Ceramic
Capacitor(MLCC)
IOUT
CIN
COUT
Total Output Capacitance
-1.5
1.5
-2
2
10
100
uF
0
200
mΩ
8
47
uF
10
330
uF
A
Operating Junction Temperature
TJ
-40
125
ºC
Operating Ambient Temperature
TA
-40
85
ºC
December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
4 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Electrical Characteristics Refer to the typical application circuit. These specifications apply over VCNTL=5V, VIN=1.8V or 1.5V, VREF=0.5VIN, CIN=10μF, COUT=10μF (MLCC) and TA=
-40~85°C, unless otherwise specified. Typical values are at TA=25°C.
Parameters
Symbol
Test Condition
Min.
Typ.
Max.
Unit
1
2
uA
VREF=0V(Shutdown)
5
uA
VREF=GND(Shutdown)
5
uA
2.9
V
SUPPLY CURRENT
IOUT=0A
VCNTL Supply Current
VIN Supply Current at Shutdown
ICNTL
IFB
POWER-ON-RESET(POR)
Rising VCNTL POR Threshold
VCNTL Rising
2.5
VCNTL POR Hysteresis
2.75
0.35
Rising VIN POR Threshold
VIN Rising
0.7
VIN POR Hysteresis
0.9
V
1.05
V
0.3
V
VREF
V
OUTPUT VOLTAGE
VOUT Output Voltage
VOUT
IOUT=0A,VREF=0.7~2.8V
Over temperature and
System Accuracy
load current ranges
IOUT=10mA
VOUT Offset Voltage(VOUT-VREF)
-20
-7
20
mV
-1
VOS
mV
IOUT=-10mA
IOUT=10mA~1.5A
8
-13
12
-8
Load Regulation
mV
IOUT=-10mA~-1.5A
4
8
December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
5 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Electrical Characteristics(Cont.) Refer to the typical application circuit. These specifications apply over VCNTL=5V, VIN=1.8V or 1.5V, VREF=0.5VIN, CIN=10μF, COUT=10μF (MLCC) and TA=
-40~85°C, unless otherwise specified. Typical values are at TA=25°C.
Parameters
Symbol
Test Condition
Min.
Typ.
Max.
1.8
2
3
2.2
3
4
-2
-2.2
-3
-3
-2.8
4
1.6
1.8
2.0
-2
-2.2
3
-1.6
-1.8
-2.6
-2
-2.2
-3.6
Unit
PROTECTIONS
Sourcing
TJ=25℃
Current(VIN
=1.8V)
Sinking
TJ=125℃
TJ=25℃
Current(VIN
Current-Limit(TD5860
TD5860A)
=1.8V)
TJ=125℃
Sourcing
TJ=25℃
ILIM
Current(VIN
=1.5V)
Sinking
TJ=125℃
TJ=25℃
Current(VIN
=1.5V)
Thermal Shutdown Temperature
TJ=125℃
1.6
2
A
-1.6
-2
1.1
1.4
A
-1.1
TJ rising
150
TSD
℃
Thermal Shutdown Hysteresis
40
VREF Enable Voltage Threshold
0.15
VREF Bias Current
IVREF
-100
Soft-Start Interval
TSS
0.1
0.3
0.2
0.4
V
100
nA
0.4
ms
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6 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Type Application Circuit Figure 3. Type Application Circuit of TD5860/TD5860A December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
7 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Typical Operating Characteristics VOUT Offset Voltage vs.
Junction Temperature Sourcing Current-Limit vs.
Junction Temperature Sinking Current-Limit vs.
Junction Temperature VCNTL Power Supply
Rejection Ratio (PSRR) December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
8 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Typical Operating Characteristics(Cont.) Sourcing Current-Limit vs.
Junction Temperature Sinking Current-Limit vs.
Junction Temp December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
9 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Function Description Power­On­Reset A Power-On-Reset (POR) circuit monitors both input
voltages at VCNTL and VIN pins to prevent wrong
logic ontrols. The POR function initiates a soft-start
process fter both of the supply voltages exceed their
rising POR oltage thresholds during powering on.
Output Voltage Regulation The VREF pin is a multi-function input pin which is the
reference voltage input pin and the enable control input
pin. Applying and holding the voltage (VREF) on VREF below 0.3V (typical) shuts down the output of the regulator. In
the typical application, an NPN transistor or N-channel
MOSFET is used to pull down the VREF while applying a
“high” signal to turn on the transistor. When shutdown
function is active, both of the internal power MOSFETs are
turned off and the impedance of the VOUT pin is larger
than 10MΩ.
Internal and External Soft­Start The output voltage on VOUT pin is regulated to track the
eference voltage applied on VREF pin. Two internal Nchannel
ower MOSFETs controlled by high bandwidth ror amplifiers
regulate the output voltage by sourcing urrent from VIN pin or
sinking current to GND pin. An nternal output voltage sense
pad is bonded to the VOUT in with a bonding wire for perfect
load regulation.For preventing the two power MOSFETs from
shootthrough, small voltage offset between the positive
inputs f the two error amplifiers is designed. It results in igher
output voltage while the regulator sinks light or eavy load
current.
The TD5860/TD5860A provides very fast load transient
response t small output capacitance to save total cost.
The TD5860/TD5860A is designed with an internal
soft-start function to control the rise rate of the output
voltage to prevent inrush current during start-up.
When release the pull-low transistor connected with VREF
pin, the current via the resistor divider charges the external
soft-start capacitor (C4) and the VREF starts to rise up.The
IC starts a soft-start process when the VREF reaches the
enable voltage threshold. The output voltage is regulated
to follow the lower voltage, which is either the internal
soft-start voltage ramp or the VREF voltage, to rise up.
The external soft-start interval is programmable by the
resistor-divider and the soft-start capacitor (C4).
Current­Limit Thermal Shutdown The TD5860/TD5860A monitors the output current,
both sourcing nd sinking current, and limits the
maximum output current o prevent damages during
current overload or shortcircuit shorted from VOUT to
GND or VIN) conditions.
The thermal shutdown circuit limits the junction
temperature of the TD5860/TD5860A. When the junction
temperature exceeds 150oC, a thermal sensor turns off the
both pass transistors, allowing the device to cool down.
The thermal sensor allows the regulator to regulate again
after the junction temperature cools by 40oC, resulting in a
pulsed output during continuous thermal overload
conditions. The thermal limit is designed with a 40oC
hysteresis to lower the average TJ Enable during continuous thermal overload conditions,
increasing lifetime of the TD5860/TD5860A. December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
10 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Application Information Power Sequencing The input sequence of powers applied for VIN and
VCNTL is not necessary to be concerned.
Reference Voltage A reference voltage is applied at the VREF pin by a
resistor divider between VIN and GND pins. An
external bypass capacitor is also connected to VREF.
The capacitor and the resistor divider form a low-pass
filter to reduce the inherent reference noise from VIN.
The capacitor is a 0.1μF or greater ceramic capacitor
and connected as close to VREF as possible. More
capacitance and large resistor divider will increase the
soft-start interval. Do not place any additional loading
on this reference input pin
Output Capacitor The TD5860/TD5860A needs a proper output capacitor to
maintain circuit stability and improve transient response. In
order to insure the circuit stability, a 10μF X5R or X7R
MLCC output capacitor is sufficient at all operating
temperatures and it must be placed near the VOUT. The
maximum distance from output capacitor to VOUT must
within 10mm. Total output capacitors value including
MLCC and aluminum electrolytic capacitors should be
larger than 10μF
Table 1 provides the suitable output capacitors for TD5860
Operation Region and Power Input Capacitor Dissipation The TD5860/TD5860A requires proper input
capacitors to supply current surge during stepping
load transients to prevent the input rail from dropping.
Because the parasitic inductors from the voltage
sources or other bulk capacitors to the VIN pin limit
the slew rate of the input current, more parasitic
inductance needs more input capacitance. For the
TD5860, the total capacitance of input capacitors
value including MLCC and aluminum electrolytic
The TD5860/TD5860A maximum power dissipation
depends on the thermal resistance and temperature
difference between the die junction and ambient air. The
power dissipation PD across the device is:
capacitors should be larger than 10μF. For VCNTL
pin, a capacitor of 0.47μF (MLCC) or above is
recommended for noise decoupling.
Where (TJ-TA) is the temperature difference between the
junction and ambient air. θJA is the thermal resistance
between junction and ambient air. Assuming the TA=25oC
and maximum TJ=150oC (typical thermal limit threshold),
the maximum power dissipation is calculated as: December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
11 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
For normal operation, do not exceed the maximum
junction temperature of TJ = 125oC. The calculated
power dissipation should less than:
Figure 4 PCB Layout Consideration Figure 1 illustrates the layout. Below is a checklist for
your layout:
1. Please place the input capacitors close to the VIN.
2. Please place the output capacitors close to the
VOUT,
a MLCC capacitor larger than 8μF must be placed
near the VOUT. The distance from VOUT to output
MLCC must be less than 10mm.
3. To place TD5860/TD5860A and output capacitors
near the load is good for load transient response.
4. Large current paths, the bold lines in Figure 4, must
have wide tracks.
5. For SOP-8P package, please solder the thermal
pad to the TD5860/TD5860A to top-layer ground
plane. Numerous
vias 0.254mm in diameter should be used to connect
both top-layer and internal ground planes. The ground
planes and PCB form a heat sink to channel major
power dissipation of the TD5860/TD5860A into
ambient air.
Large ground plane is good for heatsinking. Optimum
performance can only be achieved when the device is
mounted on a PC board according to the board layout
diagrams which are shown as Figure 5. Figure5 December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
12 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Package Information SOP8­PP Package Outline Dimensions December, 20, 2005. Techcode Semiconductor Limited www.tongchuangwei.com
13 Techcode®
DATASHEET
Source and Sink 1.5A/2A Fast Transient Response Line Regulator
TD5860(A)
Design Notes
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