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RT8207LZQW データシート(PDF) 21 Page - Richtek Technology Corporation

部品番号 RT8207LZQW
部品情報  Complete DDRII/DDRIII/Low-Power DDRIII/DDRIV Memory Power Supply Controller
PDF  27 Pages
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メーカー  RICHTEK [Richtek Technology Corporation]
ホームページ  http://www.richtek.com
Logo RICHTEK - Richtek Technology Corporation

RT8207LZQW データシート(HTML) 21 Page - Richtek Technology Corporation

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21
DS8207L/M-08 September 2016
www.richtek.com
RT8207L/M
©
Copyright 2016 Richtek Technology Corporation. All rights reserved.
is a registered trademark of Richtek Technology Corporation.
Thermal Protection
The RT8207L/M monitors the temperature of itself. If the
temperature exceeds the threshold value, 165
°C (typ.),
the PWM output, VTTREF and VTT will be shut off. The
RT8207L/M is latched once thermal shutdown is triggered
and can only be released by VDD power on reset or S5.
Output Voltage Setting (FB)
The RT8207L/M can be used as DDR2 (VVDDQ = 1.8V)
and DDR3 (VVDDQ = 1.5V) power supply or as an adjustable
output voltage (0.75V < VVDDQ < 3.3V) by connecting the
FB pin according to Table 1.
Table 1. FB and output voltage setting
FB
VDDQ (V)
VTTREF
and VTT
NOTE
VDD
1.8
VVDDQ / 2
DDR2
GND
1.5
VVDDQ /2
DDR3
FB
Resistors
Adjustable VVDDQ / 2
0.75V < VVDDQ
< 3.3V
Connect a resistive voltage divider at FB between VDDQ
and GND to adjust the respective output voltage between
0.75V and 3.3V (Figure 8). Choose R2 to be approximately
10k
Ω and solve for R1 using the equation as follows :







VDDQ
REF
R1
VV
x 1
R2
where VREF is 0.75V (typ.).
PHASE
LGATE
R1
R2
VVDDQ
VIN
UGATE
VDDQ
FB
GND
Figure 8. Setting VDDQ with a Resistive Voltage Divider
VTT Linear Regulator and VTTREF
The RT8207L/M integrates a high performance low dropout
linear regulator that is capable of sourcing and sinking
currents up to 1.5A. This VTT linear regulator employs
ultimate fast response feedback loop so that small ceramic
capacitors are enough for keeping track of VTTREF within
40mV at all conditions, including fast load transient. To
achieve tight regulation with minimum effect of wiring
resistance, a remote sensing terminal, VTTSNS, should
be connected to the positive node of the VTT output
capacitor(s) as a separate trace from the VTT pin. For
stable operation, total capacitance of the VTT output
terminal can be equal to or greater than 20
μF. It is
recommended to attach two 10
μF ceramic capacitors in
parallel to minimize the effect of ESR and ESL. If ESR of
the output capacitor is greater than 2m
Ω, insert an RC
filter between the output and VTTSNS input to achieve
loop stability. The RC filter time constant should be almost
the same or slightly lower than the time constant made
by the output capacitor and its ESR. The VTTREF block
consists of on-chip 1/2 divider, LPF and buffer. This regulator
also has sink and source capability up to 10mA. Bypass
VTTREF to GND with a 33nF ceramic capacitor for stable
operation.
VDD sources the load of VTTREF to follow half voltage of
VDDQ. If VTTREF capacitor is so large that the VTTREF
is unable to follow half VDDQ voltage at time during soft
start period, VTTREF will sink large current from VDDwhich
causes large voltage drop at VDDP to VDD resistor and
has the opportunity of UVLO. The following equation
provides the maximum value of VTTREF capacitor
calculation.
VDDQ
SS
VTTREF
VDD
VDDQ
OUT
SS
IN
ON
DS
VDDQ
OUT
VTTREF
VDDQ
VDD
IN
ON
DS
V
0.03
T
= C
1.1 R
12
2
VC
T
=
V
0.03 t
R2L
VC
0.03
2
C
=
V1.1 R
12
V
0.03 t
R2L






Where RVDD is the resistor between VDDP and VDD pin.
RDS is the turn on resistor of low-side MOSFET. CVTTREF
is the capacitor on the VTTREF pin. TSS is the soft start
time for VDDQ at the no load condition.



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