EVQ2177-LE-00A
5.5V, 1A, 2.4MHz, Synchronous
Step-Down Converter with PG and SS
Evaluation Board, AEC-Q100 Qualified
DESCRIPTION
FEATURES
The EVQ2177-LE-00A is an evaluation board
designed to demonstrate the capabilities of the
MPQ2177, a monolithic, step-down switchmode converter with integrated internal power
MOSFETs.
The EVQ2177-LE-00A achieves 1A of
continuous output current (IOUT) across a 2.5V
to 5.5V input voltage (VIN) range, with excellent
load and line regulation. The output voltage
(VOUT) can be regulated to as low as 0.6V. Fault
protections include cycle-by-cycle current
limiting and thermal shutdown.
The EVQ2177-LE-00A is a fully assembled and
tested evaluation board. It generates a 1.2V
VOUT at load currents up to 1A across a 2.5V to
5.5V VIN range.
The MPQ2177 is available in a compact QFN-8
(1.5mmx2mm) package.
ELECTRICAL SPECIFICATIONS
Parameter
Input voltage
Output voltage
Output current
Symbol
Value
Units
VIN
VOUT
IOUT
2.5 to 5.5
1.2
1
V
V
A
Designed for Automotive Applications:
o Wide 2.5V to 5.5V Operating Input
Voltage (VIN) Range
o Up to 1A Output Current
o 1% Feedback (FB) Accuracy
High Performance for Improved
Thermals:
o 75mΩ and 45mΩ Integrated Internal
Power MOSFETs
Optimized for EMC and EMI:
o 2.4MHz Switching Frequency (fSW)
o Forced Continuous Conduction Mode
(CCM) across the Full Load Range
Optimized for Board Size and BOM:
o Integrated Compensation Network
o Available in a Compact QFN-8
(1.5mmx2mm) Package
o Available in AEC-Q100 Grade 1
Additional Features:
o Power Good (PG)
o External Soft-Start (SS) Control
o Output Discharge
o Over-Voltage Protection (OVP) and
Short-Circuit Protection (SCP) with
Hiccup Mode
APPLICATIONS
Automotive Clusters, Telematics, and
Infotainment Systems
Camera Modules
Key Fobs
Industrial Supplies
Battery-Powered Devices
All MPS parts are lead-free, halogen-free, and adhere to the RoHS
directive. For MPS green status, please visit the MPS website under
Quality Assurance. “MPS”, the MPS logo, and “Simple, Easy Solutions” are
trademarks of Monolithic Power Systems, Inc. or its subsidiaries.
EVQ2177-LE-00A Rev. 1.0
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9/29/2021
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1
EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVQ2177-LE-00A EVALUTION BOARD
100
90
80
70
60
50
40
30
20
10
0
VOUT = 1.2V, L = 2.2μH,
(XFL4020-222MEB, DCR = 21.35mΩ)
Vin=2.5V
Vin=3.3V
VIN=5V
VIN=5.5V
EFFICIENCY
POWER LOSS
1
10
100
LOAD CURRENT (mA)
0.30
0.27
0.24
0.21
0.18
0.15
0.12
0.09
0.06
0.03
0.00
1000
POWER LOSS (W)
EFFICIENCY (%)
Efficiency vs. Load Current
vs. Power Loss
LxWxH (6.3cmx6.3cmx0.3cm)
Board Number
MPS IC Number
EVQ2177-LE-00A
MPQ2177GQHE-AEC1
EVQ2177-LE-00A Rev. 1.0
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2
EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
QUICK START GUIDE
1. Preset the power supply between 2.5V and 5.5V.
2. Connect the power supply terminals to:
a. Positive (+): VIN
b. Negative (-): GND
3. Connect the load terminals to:
a. Positive (+): VOUT
b. Negative (-): GND
4. After making connections, turn on the power supply.
5. To use the enable function, apply a digital input to the EN pin. Drive EN above 0.9V to turn the
regulator on; drive EN below 0.65V to turn it off.
6. The external resistor divider sets the output voltage (VOUT). To adjust the MPQ2177’s output, set the
feedback resistor (R5) to be between 10kΩ and 100kΩ. R6 can then be calculated using Equation
(1):
R6
R5
VOUT
1
0.6
(1)
Table 1 shows the recommended resistor values for common output voltages.
Table 1: Resistor Values for Common Output Voltages
VOUT (V)
1.0
1.2
1.8
2.5
3.3
R5 (kΩ)
30.9 (1%)
100 (1%)
36 (1%)
51 (1%)
68 (1%)
R6 (kΩ)
47 (1%)
100 (1%)
18 (1%)
16 (1%)
15 (1%)
EVQ2177-LE-00A Rev. 1.0
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3
EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVALUATION BOARD SCHEMATIC
U1
2.5V to 5.5V
2
VIN
C1B
C1C
C1D
10μF
10μF
0.1μF
0.1μF
R1
100kΩ
5
GND
GND
EN
R3
100kΩ
EN
FB
L1
3
7
0Ω
C5
R5 100kΩ
8
1.2V/1A
VOUT
2.2µH
R4
C2A
C2B
C2C
C2D
10Ω
22μF
NS
0.1μF
NS
GND
R6
R2
100kΩ
100kΩ
1
PG
4
PG
VOUT
MPQ2177
GND
C1A
SW
VIN
SS
C4
NS
6
C3
2.2nF
VOUT (V)
R5 (kΩ)
R6 (kΩ)
1.2
100 (1%)
100 (1%)
1.8
36 (1%)
18 (1%)
3.3
68 (1%)
15 (1%)
Figure 1: Evaluation Board Schematic
EVQ2177-LE-00A Rev. 1.0
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9/29/2021
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4
EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVQ2177-LE-00A BILL OF MATERIALS
Qty
Ref
Value
1
CIN1
22µF
2
C1A, C1B
4.7µF
3
C1C, C1D,
C2C
0.1µF
1
C2A
22µF
1
0
C5
C4
0Ω
NS
1
C3
2.2nF
Ceramic capacitor, 50V,
X7R
0603
TDK
C1608X7R1H222K
100kΩ
Film resistor, 1%
0603
Yageo
RC0603FR-07100KL
Film resistor, 1%
Inductor, RDC =
21.35mΩ, ISAT = 3.7A
0603
Yageo
RC0603FR-0710RL
SMD
Coilcraft
XFL4020-222MEB
Test point 2.0 golden pin
DIP
Custom
Test point 1.0 golden pin
DIP
Custom
QFN-8
(1.5mmx
2mm)
MPS
1
R1, R2, R3,
R5, R6
R4
1
L1
5
4
3
1
VIN, GND,
VOUT, GND
EN, PG,
GND
U1
10Ω
2.2µH
Description
Package Manufacturer
Manufacturer PN
Electrolytic capacitor,
SMD
Jianghai
VTD-63V22
63V
Ceramic capacitor, 16V,
0805
Murata
GCM21BR71C475KA73L
X7R
Ceramic capacitor, 16V,
0603
TDK
C1608X7R1C104K
X7R
Ceramic capacitor, 6.3V,
0805
Murata
GRM21BR60J226ME39L
X5R
Film resistor, 1%
0603
Yageo
RC0603FR-070RL
5.5V, 1A, step-down
MPQ2177
converter, AEC-Q100
-AEC1
qualified
MPQ2177GQHE-AEC1
EVQ2177-LE-00A Rev. 1.0
MonolithicPower.com
9/29/2021
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© 2021 MPS. All Rights Reserved.
5
EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVB TEST RESULTS
Performance curves and waveforms are tested on the evaluation board. VIN = 3.6V, VOUT = 1.2V,
L = 2.2μH, COUT = 22µF, TA = 25°C, unless otherwise noted.
Efficiency vs. Load Current
vs. Power Loss
0.20
0.18
0.16
0.14
0.12
0.10
0.08
0.06
0.04
POWER LOSS
0.02
0.00
10
100 200
LOAD CURRENT (mA)
1
95
EFFICIENCY
90
85
0.32
Vin=2.5V
Vin=3.3V
VIN=5V
VIN=5.5V
80
75
EFFICIENCY
0.08
POWER LOSS
65
0.15
0.10
1
10
0.05
0.00
100 200
VOUT = 1.8V, L = 2.2μH,
(XFL4020-222MEB, DCR = 21.35mΩ)
96
94
92
90
88
86
84
82
80
78
76
EFFICIENCY
Vin=3.3V
VIN=5V
VIN=5.5V
VIN=3V
POWER LOSS
0.04
0.02
Load Regulation
VOUT = 1.8V
VIN=3V
VIN=3.3V
VIN=5V
VIN=5.5V
0.00
-0.02
-0.04
-0.06
-0.08
0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0
LOAD CURRENT (A)
LOAD REGULATION (%)
LOAD REGULATION (%)
Load Regulation
0.06
0.50
0.45
0.40
0.35
0.30
0.25
0.20
0.15
0.10
0.05
0.00
0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0
LOAD CURRENT (A)
LOAD CURRENT (mA)
0.08
0.00
0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0
LOAD CURRENT (A)
0.25
0.20
POWER LOSS
0.16
70
EFFICIENCY (%)
Vin=3.3V
VIN=5V
VIN=5.5V
VIN=3V
0.24
Efficiency vs. Load Current
vs. Power Loss
POWER LOSS (W)
EFFICIENCY (%)
100
90
80
70
60
50
40
30
20
10
0
0.40
EFFICIENCY
Efficiency vs. Load Current
vs. Power Loss
VOUT = 1.8V, L = 2.2μH,
(XFL4020-222MEB, DCR = 21.35mΩ)
0.48
POWER LOSS (W)
Vin=2.5V
Vin=3.3V
VIN=5V
VIN=5.5V
EFFICIENCY (%)
100
90
80
70
60
50
40
30
20
10
0
VOUT = 1.2V, L = 2.2μH,
(XFL4020-222MEB, DCR = 21.35mΩ)
POWER LOSS (W)
VOUT = 1.2V, L = 2.2μH,
(XFL4020-222MEB, DCR = 21.35mΩ)
POWER LOSS (W)
EFFICIENCY (%)
Efficiency vs. Load Current
vs. Power Loss
0.06
VOUT = 1.2V
0.04
VIN=2.5V
VIN=3.3V
VIN=5V
VIN=5.5V
0.02
0.00
-0.02
-0.04
-0.06
0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0
LOAD CURRENT (A)
EVQ2177-LE-00A Rev. 1.0
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EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVB TEST RESULTS (continued)
Performance curves and waveforms are tested on the evaluation board. VIN = 3.6V, VOUT = 1.2V,
L = 2.2μH, COUT = 22µF, TA = 25°C, unless otherwise noted.
Line Regulation
0.30
VOUT = 1.2V
0.25
IOUT=0.1A
0.20
IOUT=0.5A
LINE REGULATION (%)
LINE REGULATION (%)
Line Regulation
IOUT=1A
0.15
0.10
0.05
0.00
-0.05
-0.10
2.5
3.0
3.5
4.0
4.5
INPUT VOLTAGE (V)
5.0
5.5
0.5
0.4
0.3
0.2
0.1
0.0
-0.1
-0.2
-0.3
-0.4
VOUT = 1.8V
IOUT=0.1A
IOUT=0.5A
IOUT=1A
2.5
3.0
3.5
4.0
4.5
INPUT VOLTAGE (V)
EVQ2177-LE-00A Rev. 1.0
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5.0
5.5
7
EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVB TEST RESULTS (continued)
Performance curves and waveforms are tested on the evaluation board. VIN = 3.6V, VOUT = 1.2V,
L = 2.2μH, COUT = 22µF, TA = 25°C, unless otherwise noted.
Steady State
Steady State
IOUT = 0A
IOUT = 1A
CH3: VIN
1V/div.
CH2:
VOUT/AC
2mV/div.
CH2:
VOUT/AC
2mV/div.
CH4: IL
500mA/div.
CH3: VIN
1V/div.
CH1: SW
2V/div.
CH4: IL
500mA/div.
CH1: SW
2V/div.
400ns/div.
400ns/div.
Start-Up through VIN
Start-Up through VIN
IOUT = 0A
IOUT = 1A
CH3: VIN
2V/div.
CH2: VOUT
1V/div.
CH4: IL
500mA/div.
CH3: VIN
2V/div.
CH2: VOUT
1V/div.
CH4: IL
1A/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
1ms/div.
1ms/div.
Shutdown through VIN
Shutdown through VIN
IOUT = 0A
IOUT = 1A
CH3: VIN
2V/div.
CH2: VOUT
1V/div.
CH4: IL
500mA/div.
CH3: VIN
2V/div.
CH2: VOUT
1V/div.
CH4: IL
1A/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
10ms/div.
4ms/div.
EVQ2177-LE-00A Rev. 1.0
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EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVB TEST RESULTS (continued)
Performance curves and waveforms are tested on the evaluation board. VIN = 3.6V, VOUT = 1.2V,
L = 2.2μH, COUT = 22µF, TA = 25°C, unless otherwise noted.
Start-Up through EN
Start-Up through EN
IOUT = 0A
IOUT = 1A
CH3: EN
3V/div.
CH3: EN
3V/div.
CH2: VOUT
1V/div.
CH2: VOUT
1V/div.
CH4: IL
500mA/div.
CH4: IL
1A/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
1ms/div.
1ms/div.
Shutdown through EN
Shutdown through EN
IOUT = 0A
IOUT = 1A
CH3: EN
3V/div.
CH3: EN
3V/div.
CH2: VOUT
1V/div.
CH4: IL
500mA/div.
CH2: VOUT
1V/div.
CH4: IL
1A/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
2ms/div.
20µs/div.
SCP Entry
SCP Entry
IOUT = 0A
IOUT = 1A
CH3: PG
2V/div.
CH2: VOUT
1V/div.
CH3: PG
2V/div.
CH2: VOUT
1V/div.
CH4: IL
2A/div.
CH4: IL
2A/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
200µs/div.
200µs/div.
EVQ2177-LE-00A Rev. 1.0
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EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVB TEST RESULTS (continued)
Performance curves and waveforms are tested on the evaluation board. VIN = 3.6V, VOUT = 1.2V,
L = 2.2μH, COUT = 22µF, TA = 25°C, unless otherwise noted.
SCP Recovery
SCP Recovery
IOUT = 0A
IOUT = 1A
CH2: VOUT
1V/div.
CH3: PG
2V/div.
CH2: VOUT
1V/div.
CH3: PG
2V/div.
CH4: IL
2A/div.
CH4: IL
2A/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
400µs/div.
400µs/div.
Short Circuit
PG in Start-Up through VIN
IOUT = 1A
CH2: VOUT
1V/div.
CH3: PG
2V/div.
CH3: VIN
2V/div.
CH2: VOUT
1V/div.
CH4: IL
1A/div.
CH4: PG
2V/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
200µs/div.
1ms/div.
PG in Shutdown through VIN
PG in Start-Up through EN
IOUT = 1A
IOUT = 1A
CH3: EN
3V/div.
CH3: VIN
2V/div.
CH2: VOUT
1V/div.
CH2: VOUT
1V/div.
CH4: PG
2V/div.
CH4: PG
2V/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
4ms/div.
1ms/div.
EVQ2177-LE-00A Rev. 1.0
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EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
EVB TEST RESULTS (continued)
Performance curves and waveforms are tested on the evaluation board. VIN = 3.6V, VOUT = 1.2V,
L = 2.2μH, COUT = 22µF, TA = 25°C, unless otherwise noted.
PG in Shutdown through EN
Load Transient
IOUT = 1A
IOUT = 0.5A to 1A, 1A/µs
CH3: EN
3V/div.
CH3: PG
2V/div.
CH2:
VOUT/AC
50mV/div.
CH2: VOUT
1V/div.
CH4: PG
2V/div.
CH4: IOUT
500mA/div.
CH1: SW
2V/div.
CH1: SW
2V/div.
40µs/div.
80µs/div.
EVQ2177-LE-00A Rev. 1.0
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11
EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
PCB LAYOUT
Figure 2: Top Silk and Top Layer
Figure 3: Mid-Layer 1
Figure 4: Mid-Layer 2
Figure 5: Bottom Layer and Bottom Silk
EVQ2177-LE-00A Rev. 1.0
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EVQ2177-LE-00A – 5.5V, 1A, STEP-DOWN CONVERTER EVAL BOARD, AEC-Q100
REVISION HISTORY
Revision #
1.0
Revision Date
09/29/2021
Description
Initial Release
Pages Updated
-
Notice: The information in this document is subject to change without notice. Please contact MPS for current specifications.
Users should warrant and guarantee that third-party Intellectual Property rights are not infringed upon when integrating MPS
products into any application. MPS will not assume any legal responsibility for any said applications.
EVQ2177-LE-00A Rev. 1.0
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13