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 qSLA3005M/3006M/3007M
SLA3005M/3006M/3007M
4-Output, Low Dropout Voltage Dropper Type for USB Hub
sFeatures
* 4 regulators combined in one package * Insulated single inline package * SLA3005M/3006M with 5V/0.5A x 4 outputs and SLA3007M with 5V/0.5A x 3, 3.3V/0.5A x 1 outputs * Low dropout voltage: VDIF0.5V (at IO=0.5A) * Output-independent ON/OFF control terminal compatible with LS-TTL (Active High) * Output-independent overcurrent and thermal protection circuits built in * Open collector flag-output terminals built in to output OCP operation to each output terminal (Active Low) * SLA3005M/3007M (excluding Reg4) for VO shutdown after OCP operation and SLA3006M for continuous OCP operation * Built-in anti-malfunction delay circuit whose time can be set with an external capacitor
sApplications
* USB hub power supplies * Electronic equipment
sAbsolute Maximum Ratings
Parameter DC Input Voltage Voltage of Output Control Terminal DC Output Current Power Dissipation Junction Temperature Ambient Operating Temperature Storage Temperature Thermal Resistance (junction-to-case) Thermal Resistance (junction-to-ambient air) Symbol SLA3005M/3006M VIN VC IO PD1 PD2 Tj TOP Tstg Rt(j-c) Rth(j-a) 20 VIN 0.5 30(With infinite heatsink) 3.36(Without heatsink, stand-alone operation) -30 to +125 -30 to +100 -30 to +125 9.0 29.8(Without heatsink, stand-alone operation)5V/0.5A x 4 Ratings SLA3007M 18 V V A W W C C C C/W C/W Unit
(Ta=25C)
sRecommended Operating Conditions
Parameter DC Input Voltage Range Output Current Range Operating Junction Temperature Range Ambient Operating Temperature Range Symbol VIN IO Tjop Taop Ratings 5.5 to 10 0 to 0.5 -20 to +100 -20 to +85 Unit V A C C
qSLA3005M/3006M/3007M
sElectrical Characteristics
Ratings Parameter SYmbol min. Output Voltage Dropout Voltage Line Regulation Load Regulation Temperature Coefficient of Output Voltage Quiescent Circuit Current*3 Quiescent Circuit Current (Output OFF)*3 Overcurrent Protection Starting Current*1 Control Voltage (Output ON) Control Voltage (Output OFF) VC Control Current Control Current (Output OFF) OCP Detection Voltage Level Delay Threshold Voltage Delay Terminal Runoff Current Flag Output Terminal Before OCP Detection After OCP Detection Terminal*2 (Output ON) VO Conditions VDIF Conditions VOLINE Conditions VOLOAD Conditions VO/Ta Iq Conditions Iq(off) Conditions IS1 Conditions VC. IH VC. IL IC. IH Conditions IC. IL Conditions Voth VDLYth IDLY VFLGh VFLGl Conditions IFLG=1mA 3.7 2.1 35 VIN-0.4 0.5 IFLG=1mA VC=0V 4.0 2.3 50 4.3 2.5 65 3.7 2.1 35 VIN-0.4 0.5 IFLG=1mA VC=2.7V -100 VC=0V 4.0 2.3 50 4.3 2.5 65 3.7 2.1 35 VIN-0.4 0.5 2.0 0.7 50 VC=2.7V -100 VC=0V 4.0 2.3 50 4.3 2.5 65 0.55 VIN=7V 2.0 0.7 50 VC=2.7V -100 VIN=7V, IO=0A 0.5 VIN=7V, VC1 to 4=0V 0.65 0.75 VIN=7V 2.0 0.7 50 0.5 20 VIN=7V, IO=0A 0.5 VIN=7V, VC1 to 4=0V 0.96 0.55 VIN=7V IO0.5A 30 VIN=6 to 15V, IO=0.1A 50 VIN=7V, IO=0 to 0.5A 0.5 VIN=7V, IO=5mA, Tj=-10 to 100C 20 VIN=7V, IO=0A 0.5 VIN=7V, VC1 to 4=0V 0.65 4.85 SLA3005M typ. 5.00 max. 5.15 0.5 IO0.5A 30 VIN=6 to 15V, IO=0.1A 50 VIN=7V, IO=0 to 0.5A 0.5 VIN=7V, IO=5mA, Tj=-10 to 100C 20 min. 4.85 SLA3006M typ. 5.00 max. 5.15 0.5 IO0.5A 30 VIN=6 to 15V, IO=0.1A 50 VIN=7V, IO=0 to 0.5A
Regulator1, 2, 3
(Ta=25C unless otherwise specified)
SLA3007M Regulator4
Unit max. 3.366 2.0 V V mV mV mV/C mA mA
min. 4.85
typ. 5.00
max. 5.15 0.5
min. 3.234
typ. 3.300
VIN=7V, IO=0.1A
VIN=7V, IO=0.1A
VIN=7V, IO=0.1A
VIN=7V, IO=0.1A IO0.5A 30 VIN=6 to 15V, IO=0.1A 30 VIN=7V, IO=0 to 0.2A 0.3 VIN=7V, IO=5mA, Tj=-10 to 100C
Conditions VIN=7V, IO=5mA, Tj=-10 to 100C
0.55 VIN=7V 2.0
0.65
A V
0.7 50 VC=2.7V -100 VC=0V A A V V A V V
Conditions RFLG connected between FLG and VIN RFLG connected between FLG and VIN RFLG connected between FLG and VIN
*1 IS1 is specified at -5(%) drop point of output voltage VO on the condition that VIN = 7V, IO = 0.1A. *2 Output is ON even when output control terminal VC is open. Each input level is equivalent to LS-TTL. Therefore, it may be directly driven by an LS-TTL circuit. *3 Total of four circuits *4 The FLG output latched by delay DLY after OCP detection. (SLA3005M/3007M(Reg1 to 3) shuts down the output voltage simultaneously at latching.) Set the VIN or VC to low to reset latching. Leave a time lag of Cd x 600s or more before restart.
qSLA3005M/3006M/3007M
sOutline Drawing
31
0.2
(unit:mm)
3.2
0.15
24.40.2 16.40.2
3.20.15 x 3.8
4.8
0.2
1.7
0.1
b
+0.2
6.70.5
a
SK JAPAN
2.450.2
1 -0.1
0.65 -0.1
R-END
(3)
* * 17xP1.680.7=28.561
31.3
1 3 5 7
0.2
0.55 -0.1
+0.2
*4
9 11 13 15 17
0.7
+1
+0.2
q w e r t y u i o
VC1 FLG1 DLY1 VO1 VC2 FLG2 DLY2 VO2 VC3
!0 !1 !2 !3 !4 !5 !6 !7 !8
FLG3 a. Part Number DLY b. Lot Number VO3 GND VC4 FLG4(N. C on SLA3007M) DLY4(N. C on SLA3007M) VO4 VIN
160.2 130.2 9.90.2
9.7 -0.5
2
4
6
8 10 12 14 16 18
Weight:Approx. 6g
sBlock Diagram
SLA3005M SLA3006M SLA3007M
VIN
(18pin)
VO1
(4pin)
VIN
(18pin)
VO1
(4pin)
VIN
(18pin)
VO1
(4pin)
VC1
(1pin)
VC1
(1pin)
VC1
(1pin)
Reg1
FLG1
(2pin)
Reset
Latch
+ -
- +
FLG1
(2pin)
Reset
- +
FLG1
(2pin)
Reset
Latch
+ -
- +
Latch
OCP
OCP
TSD
OCP
TSD
TSD
+ -
+ -
+ -
Set
Set
Set
DLY1
(3pin)
DLY1
(3pin)
+ -
DLY1
(3pin)
VO2
(8pin)
VO2
(8pin)
VO2
(8pin)
VC2
(5pin)
VC2
(5pin)
VC2
(5pin)
Reg2
FLG2
(6pin)
Reset
Latch
+ -
- +
FLG2
(6pin)
Reset
- +
FLG2
(6pin)
Reset
Latch
+ -
- +
Latch
OCP
OCP
TSD
OCP
TSD
TSD
+ -
+ -
+ -
Set
Set
Set
DLY2
(7pin)
DLY2
(7pin)
+ -
DLY2
(7pin)
VO3
(12pin)
VO3
(12pin)
VO3
(12pin)
VC3
(9pin)
VC3
(9pin)
VC3
(9pin)
Reg3
FLG3
(10pin)
Reset
Latch
+ -
- +
FLG3
(10pin)
Reset
- +
FLG3
(10pin)
Reset
Latch
+ -
- +
Latch
OCP
OCP
TSD
OCP
TSD
TSD
+ -
+ -
+ -
Set
Set
Set
DLY3
(11pin)
DLY3
(11pin)
+ -
DLY3
(11pin)
VO4
(17pin)
VO4
(17pin)
VO4
(17pin)
VC4
(14pin)
VC4
(14pin)
VC4
(14pin)
Reg4
FLG4
(15pin)
Reset
Latch
+ -
- +
FLG4
(15pin)
Reset
- +
N.C.
(15pin)
Latch
OCP
OCP
TSD
OCP
TSD
TSD
+ -
+ -
+ -
Set
Set
GND
(13pin)
DLY4
(16pin)
GND
(13pin)
DLY4
(16pin)
GND
(13pin)
+ -
N.C.
(16pin)
qSLA3005M/3006M/3007M
sStandard External Circuit
SLA3005M/3006M
+
SLA3007M
VIN VC1 VC1 FLG1 RFLG VC2 VO1 DLY1
VIN
CIN*1 Reg. 1
*4 D1 *3 Cd1
+ +
+
VIN VC1 VC1 FLG1 RFLG *5 VO1 DLY1
VIN VO1
CIN*1 Reg. 1
*4 D1 *3 Cd1
+ +
VO1
FLG1
*2 CO1
VO2
FLG1
*2 CO1
VO2
*5
RFLG
*4 D2
+
*4 D2
+
VC2 FLG2
Reg. 2
VO2 DLY2
VC2 FLG2 RFLG *5
VC2 FLG2
FLG2
*3 Cd2
+
*2 CO2
VO3
Reg. 2
VO2 DLY2
*3 Cd2
+
*2 CO2
VO3
VC3 FLG3
*5 *5
RFLG
*4 D3
+
*4 D3
+
VC3 FLG3
Reg. 3
VO3 DLY3
VC3 FLG3
*3 Cd3
+
*2 CO3
VO4
*5
VC3 FLG3
Reg. 3
VO3 DLY3
RFLG
*3 Cd3
+
*2 CO3
VO4
*4 D4
+
*4 D4
+
VC4
*5
FLG4
VC4 FLG4
Reg. 4
VO4 DLY4
VC4
VC4
RFLG
*3 Cd4
+
*2 CO4
Reg. 4
VO4
*2 CO4
GND
GND
*1 CIN *2 CO *3 Cd
*4 D1 to D4 *5 RFLG
: Input capacitor (Approx. 47F) This capacitor is required if the input line is inductive and in the case of long wiring. : Output capacitor (47 to 220F) : Delay setting capacitor (0.1F or more) Use Cd to set the delay time (tDLY) from when a low VO level due to OCP operation is detected until a flag signal is output. This prevents a rush current from causing malfunction. Approximate calculation: tDLY (Cd x VDLYth)/IDLY[sec] When using soft start on VIN or if CIN has a large capacitance, set tDLY long enough for the output voltage to rise sufficiently Be sure to connect Cd and do not use it for other applications, such as short circuiting Cd. : Reverse biasing protection diode This diode is required for protection against reverse biasing of the input and output. : Set this to limit the inflow current into the FLG terminal to 1mA or less.
sTa-PD Characteristics
4-Circuit Total Power Dissipation PD (W)
40 35 30 25 20 15 10 100x100x2mm (5.2C/W) Heatsink: Aluminum With Silicon Grease: G746 (SHINETSU CHEMICAL INDUSTRIES)
sTiming Charts
SLA3006M
t restart Is1 Io Voth Vo t DLY VDLY VDLYth VDLY Vo t DLY VDLYth Io Voth Is1
SLA3005M/SLA3007M(excluding Reg4)
t restart
Infinite Heatsink (TC=25C)
VFLG
5 75x75x2mm (7.6C/W) 0 -30
VFLG
Without Heatsink
0 25 50 75 100
VC
VC
Ambient Temperature Ta (C)
sCalculating the internal dissipation
PD is calculated as follows: PD=[IO1*(VIN-VO1)]+[IO2*(VIN-VO2)]+[IO3*(VIN-VO3)]+[IO4*(VIN-VO4)]+VIN*IG
sEstimating Tj by heat measurement
1. Measuring position: At the root of pin 13 2. Add the thermal resistance "j-L" between the junction and pin 13 and the Pd product of each channel to the measured temperature. j-L is as follows : j-L1:8C/W, j-L2:7C/W, j-L3:5C/W, j-L4:8C/W The calculation formula is as follows :Tj=j-L1*Pd1+j-L2*Pd2+j-L3*Pd3+j-L4*Pd4+T13pin
qSLA3005M/3006M/3007M
sTypical Characteristics
(Ta=25C)
SLA3005M
Rise Characteristics
6
IO vs. VDIF Characteristics
0.5
Quiescent Circuit Current
500
Quiescent Circuit Current 2 Iq (off) ( A)
VC1, 2, 3, 4=0V 400
Dropout Voltage VDIF (V)
0.4
5
Output Voltage VO(V)
IO=0 to 0.5A 0.1A step 4
0.3
300
3
0.2
200
2
0.1
1
100
0 0
0.1
0.2
0.3
0.4
0.5
0 0
1
2
3
4
5
6
0 0
5
10
15
20
Output Current IO (A)
Input Voltage VIN (V)
Input Voltage VIN (V)
Circuit Current 1-Circuit
60 VC1=Open, VC2, 3, 4=0V IO=0.5 to 0A 0.1A step
Circuit Current 4-Circuits
250 VC1, 2, 3, 4=Open
Overcurrent Protection Characteristics
6
Ground Current IG (mA)
Ground Current IG (mA)
200
5
40
IO=0.5A/C H
150
Output Voltage VO (V)
4
VIN=5.5V 7V 10V
12V 15V
3 Shut-down 2
100
IO=0.25A/CH
20
50
1 IO=0A/CH 0 0 2 4 6 8 10 12 0 0 2 4 6 8 10 12 0 0 0.2 0.4 Cd=0V 0.6 0.8
Input Voltage VIN (V)
Input Voltage VIN (V)
Output Current IO (A)
VIN vs. IS1 Characteristics
Overcurrent Protection Starting Current IS1 (A)
0.80
Line Regulation
5.00
Load Regulation
5.00
0.75
4.98
4.98
0.70
Output Voltage VO (V)
Output Voltage VO (V)
4.96
IO=0 to 0.5A 0.1A step
4.96
0.65
4.94
4.94
0.60
VIN=5.5V 7V 10V 12V 15V 20V
0.55
4.92
4.92
0.50 56
8
10
12
14
16
18
20
4.90 4
6
8
10
12
14
16
18
20
4.90 0
0.1
0.2
0.3
0.4
0.5
Input Voltage VIN (V)
Input Voltage VIN (V)
Output Current IO (A)
ON/OFF Control Characteristics
6
VC Terminal Characteristics
5
Thermal Protection Characteristics
6
ON/OFF Control Voltage IC ( A)
5
0
5
Output Voltage VO (V)
4
VIN=5
-5
3
10V 20V
3
-10
2
2
1
-15
1
0 0
0.5
1.0
1.5
2.0
2.5
3.0
-20 0
1
2
3
4
0 0
20
60
100
140
VIN=7V
.5V 7V
Output Voltage VO (V)
4
180
Output ON/OFF Control Voltage VC (V)
Output ON/OFF Control Voltage VC (V)
Case Temperature (C)
qSLA3005M/3006M/3007M
sTypical Characteristics
(Ta=25C)
SLA3007M
Rise Characteristics
6 ch1~3 only 5 IO=0 to 0.5A 0.1A step 4
IO vs. VDIF Characteristics
0.5 ch1~3 only
Rise Characteristics
4 ch4 only
Dropout Voltage VDIF (V)
0.4
Output Voltage VO(V)
Output Voltage VO(V)
3 IO=0 to 0.5A 0.1A step 2
0.3
3
0.2
2
1
0.1
1
0 0
0.1
0.2
0.3
0.4
0.5
0 0
1
2
3
4
5
6
0 0
1
2
3
4
5
6
Output Current IO (A)
Input Voltage VIN (V)
Input Voltage VIN (V)
Quiescent Circuit Current
500
Circuit Current (ch1 operating)
60 ch1~3 only
Circuit Current (ch4 operating)
40 ch4 only VC1, 2, 3=0V
Quiescent Circuit Current Iq (off) ( A)
VC1, 2, 3, 4=0V
Ground Current IG (mA)
ch1~4total 300
VC1=Open, VC2, 3, 4=0V 40 IO=0.5 to 0A 0.1A step 20
Ground Current IG (mA)
400
30 IO=0.5 to 0A 0.1A step 20
200
10
100
0 0 5 10 15 20
0
0
2
4
6
8
10
12
0 0 2 4 6 8 10 12
Input Voltage VIN (V)
Input Voltage VIN (V)
Input Voltage VIN (V)
6
ch1~3 only
4 ch4 only VIN=5.5V 12V
Overcurrent Protection Starting Current IS1 (A)
Overcurrent Protection Characteristics
Overcurrent Protection Characteristics
VIN vs. IS1 Characteristics
0.80 Same for ch 1-4 0.75 0.70 0.65 0.60 0.55 0.50
5
Output Voltage VO (V)
4 Shut-down
7V 10V 15V
Output Voltage VO (V)
3
VIN=6V, 7V, 8V, 9V 10V 2
3
2
1
1 Cd=0V 0 0 0.2 0.4 0.6 0.8 0 0 0.2 0.4 0.6 0.7
56
8
10
12
14
16
18
20
Output Current IO (A)
Output Current IO (A)
Input Voltage VIN (V)
Line Regulation
5.00 ch1~3 only 4.98
Load Regulation
5.00 ch1~3 only 4.98
Line Regulation
3.32 3.30
Output Voltage VO (V)
Output Voltage VO (V)
Output Voltage VO (V)
4.96
IO=0 to 0.5A 0.1A step
4.96
4.94
4.94
VIN=5.5V 7V 10V 12V 15V 20V
3.28 3.26 3.24 3.22 3.20
IO=0 to 0.5A 0.1A step
ch4 only
4.92
4.92
4.90 4
6
8
10
12
14
16
18
20
4.90
0
0.1
0.2
0.3
0.4
0.5
4
6
8
10
12
14
16
18
Input Voltage VIN (V)
Output Current IO (A)
Input Voltage VIN (V)
qSLA3005M/3006M/3007M
sTypical Characteristics
(Ta=25C)
SLA3007M
ON/OFF Control Characteristics
6 ch1~3
Load Regulation
3.32
VC Terminal Characteristics
5 VIN=5.5V 7V 10V 20V
3.30
5
VIN=5.5V 6V 7V 10V
ON/OFF Control Voltage IC ( A)
0
Output Voltage VO (V)
Output Voltage Vo (V)
3.28
4 ch4 3
-5
3.26
3.24
ch4 only
-10
2
3.22
1
-15
Same for ch 1-4
3.20
0
0.1
0.2
0.3
0.4
0.5
0
0
0.5
1.0
1.5
2.0
2.5
3.0
-20 0
1
2
3
4
Output Current IO (A)
Output ON/OFF Control Voltage VC (V)
Output ON/OFF Control Voltage VC (V)
Thermal Protection Characteristics
6 VIN=7V 5 ch1~3
Output Voltage VO (V)
4 ch4 3
2
1
0 0
20
60
100
140
180
Case Temperature (C)


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