SGM321/SGM358/SGM324
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
GENERAL DESCRIPTION
FEATURES
The SGM321 (single), SGM358 (dual) and SGM324
• Low Cost
(quad) are low cost, rail-to-rail input and output voltage
• Rail-to-Rail Input and Output
feedback amplifiers. They have a wide input common
0.8mV Typical VOS
mode voltage range and output voltage swing, and take
• Unity Gain Stable
the minimum operating supply voltage down to 2.1V.
• Gain-Bandwidth Product: 1MHz
The maximum recommended supply voltage is 5.5V.
• Very Low Input Bias Current: 10pA
All are specified over the extended -40℃ to +85℃
• Supply Voltage Range: 2.1V to 5.5V
temperature range.
• Input Voltage Range:
The SGM321/358/324 provide 1MHz bandwidth at a
low current consumption of 60μA per amplifier. Very
low input bias currents of 10pA enable SGM321/358/324
to be used for integrators, photodiode amplifiers, and
piezoelectric sensors. Rail-to-rail input and output are
useful to designers for buffering ASIC in single-supply
-0.1V to +5.6V with VS = 5.5V
• Low Supply Current: 60μA/Amplifier
• Small Packaging
SGM321 Available in SOT-23-5 and SC70-5
SGM358 Available in SOIC-8, MSOP-8 and DIP-8
SGM324 Available in SOIC-14 and TSSOP-14
APPLICATIONS
systems.
Applications for this series of amplifiers include safety
monitoring, portable equipment, battery and power
supply control, and signal conditioning and interfacing
ASIC Input or Output Amplifier
Sensor Interface
Piezoelectric Transducer Amplifier
for transducers in very low power systems.
Medical Instrumentation
The SGM321 is available in the Green SOT-23-5 and
Mobile Communication
SC70-5 packages. The SGM358 comes in the Green
Audio Output
SOIC-8, MSOP-8 and DIP-8 packages. The SGM324 is
Portable Systems
offered in the Green
Smoke Detectors
packages.
SOIC-14
and
TSSOP-14
Notebook PC
PCMCIA Cards
Battery-Powered Equipment
DSP Interface
SG Micro Corp
www.sg-micro.com
MARCH 2017 – REV. E. 1
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
PACKAGE/ORDERING INFORMATION
MODEL
SGM321
SGM358
PACKAGE
DESCRIPTION
SPECIFIED
TEMPERATURE
RANGE
ORDERING
NUMBER
PACKAGE
MARKING
PACKING
OPTION
SC70-5
-40℃ to +85℃
SGM321YC5/TR
321
Tape and Reel, 3000
SOT-23-5
-40℃ to +85℃
SGM321YN5/TR
321
Tape and Reel, 3000
SOT-23-5
-40℃ to +85℃
SGM321BYN5/TR
321B
Tape and Reel, 3000
SOIC-8
-40℃ to +85℃
SGM358YS/TR
SGM358YS
XXXXX
Tape and Reel, 4000
MSOP-8
-40℃ to +85℃
SGM358YMS/TR
SGM358
YMS
XXXXX
Tape and Reel, 3000
DIP-8
-40℃ to +85℃
SGM358YP
SGM358YP
XXXXX
20 Tube (1000pcs)
SOIC-14
-40℃ to +85℃
SGM324YS14/TR
SGM324YS14
XXXXX
Tape and Reel, 2500
TSSOP-14
-40℃ to +85℃
SGM324YTS14/TR
SGM324
YTS14
XXXXX
Tape and Reel, 3000
SGM324
NOTE: XXXXX = Date Code and Vendor Code.
Green (RoHS & HSF): SG Micro Corp defines "Green" to mean Pb-Free (RoHS compatible) and free of halogen substances. If
you have additional comments or questions, please contact your SGMICRO representative directly.
ABSOLUTE MAXIMUM RATINGS
OVERSTRESS CAUTION
Supply Voltage, +VS to -VS ................................................ 6V
Common Mode Input Voltage
.................................................... (-VS) - 0.3V to (+VS) + 0.3V
Package Thermal Resistance @ TA = +25℃
Stresses beyond those listed may cause permanent damage
to the device. Functional operation of the device at these or
any other conditions beyond those indicated in the operational
section of the specification is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect
reliability.
SC70-5, θJA .............................................................. 333℃/W
SOT-23-5, θJA .......................................................... 190℃/W
SOIC-8, θJA .............................................................. 125℃/W
MSOP-8, θJA ............................................................ 216℃/W
Storage Temperature Range ........................ -65℃ to +150℃
Junction Temperature .................................................+150℃
Lead Temperature (Soldering 10sec) .........................+260℃
ESD Susceptibility
HBM ............................................................................. 4000V
MM ................................................................................ .400V
RECOMMENDED OPERATING CONDITIONS
Operating Temperature Range ....................... -40℃ to +85℃
ESD SENSITIVITY CAUTION
This integrated circuit can be damaged by ESD if you don’t
pay attention to ESD protection. SGMICRO recommends that
all integrated circuits be handled with appropriate precautions.
Failure to observe proper handling and installation procedures
can cause damage. ESD damage can range from subtle
performance degradation to complete device failure. Precision
integrated circuits may be more susceptible to damage
because very small parametric changes could cause the
device not to meet its published specifications.
DISCLAIMER
SG Micro Corp reserves the right to make any change in
circuit design, specification or other related things if necessary
without notice at any time.
SG Micro Corp
www.sg-micro.com
MARCH 2017
2
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
PIN CONFIGURATIONS
SGM321YN5/
SGM321YC5 (TOP VIEW)
+IN
1
-VS
2
-IN
3
5
4
SGM321BYN5 (TOP VIEW)
+VS
OUT
1
-VS
2
+IN
3
OUT
SOT-23-5/SC70-5
5
+VS
4
-IN
SOT-23-5
SGM324 (TOP VIEW)
SGM358 (TOP VIEW)
OUTA
1
8
+VS
-INA
2
7
OUTB
+INA
3
6
-INB
-VS
4
5
SOIC-8/MSOP-8/DIP-8
OUTA
1
14
OUTD
-INA
2
13
-IND
+INA
3
12
+IND
+VS
4
11
-VS
+INB
5
10
+INC
-INB
6
9
-INC
OUTB
7
8
OUTC
+INB
TSSOP-14/SOIC-14
SG Micro Corp
www.sg-micro.com
MARCH 2017
3
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
ELECTRICAL CHARACTERISTICS
(At VS = +5V, RL = 100kΩ connected to VS/2, and VOUT = VS/2, unless otherwise noted.)
SGM321/358/324
PARAMETER
SYMBOL
CONDITIONS
TYP
MIN/MAX OVER TEMPERATURE
+25℃
+25℃
0.8
5
-40℃ to
+85℃
UNITS
MIN/MAX
mV
MAX
INPUT CHARACTERISTICS
Input Offset Voltage
VOS
VCM = VS/2
5.6
Input Bias Current
IB
10
pA
TYP
Input Offset Current
IOS
10
pA
TYP
Input Common Mode Voltage Range
VCM
-0.1 to +5.6
V
TYP
dB
MIN
dB
MIN
μV/℃
TYP
4.970
V
MIN
Common Mode Rejection Ratio
Open-Loop Voltage Gain
Input Offset Voltage Drift
CMRR
AOL
VS = 5.5V
VS = 5.5V, VCM = -0.1V to 4V
70
62
62
VS = 5.5V, VCM = -0.1V to 5.6V
68
56
55
RL = 5kΩ, VO = +0.1V to +4.9V
80
70
70
RL = 100kΩ, VO = +0.035V to +4.965V
84
80
80
ΔVOS/ΔT
2.7
OUTPUT CHARACTERISTICS
VOH
Output Voltage Swing from Rail
Output Current
RL = 100kΩ
4.997
4.980
VOL
RL = 100kΩ
5
20
30
mV
MAX
VOH
RL = 10kΩ
4.992
4.970
4.960
V
MIN
VOL
RL = 10kΩ
8
30
40
mV
MAX
84
60
45
mA
MIN
75
60
45
ISOURCE
ISINK
RL = 10Ω to VS/2
POWER SUPPLY
2.1
2.5
V
MIN
5.5
5.5
V
MAX
82
60
58
dB
MIN
60
80
86
μA
MAX
1
MHz
TYP
Operating Voltage Range
Power Supply Rejection Ratio
Quiescent Current/Amplifier
PSRR
VS = +2.5V to +5.5V, VCM = +0.5V
IQ
DYNAMIC PERFORMANCE (CL = 100pF)
Gain-Bandwidth Product
Slew Rate
Settling Time to 0.1%
GBP
SR
G = +1, 2V Output Step
0.52
V/μs
TYP
tS
G = +1, 2V Output Step
5.3
μs
TYP
VIN ·Gain = VS
2.6
μs
TYP
f = 1kHz
27
nV/
Hz
TYP
f = 10kHz
20
nV/
Hz
TYP
Overload Recovery Time
NOISE PERFORMANCE
Voltage Noise Density
SG Micro Corp
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en
MARCH 2017
4
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
TYPICAL PERFORMANCE CHARACTERISTICS
At TA = +25℃, VS = +5V, and RL = 100kΩ connected to VS/2, unless otherwise noted.
Small-Signal Step Response
Large-Signal Step Response
G = +1
CL = 100pF
RL = 100kΩ
20mV/div
500mV/div
G = +1
CL = 100pF
RL = 100kΩ
Time (2μs/div)
Time (10μs/div)
Small-Signal Overshoot vs. Load Capacitance
Small-Signal Overshoot vs. Load Capacitance
60
G = -5
RFB = 100kΩ
50
Small-Signal Overshoot (%)
Small-Signal Overshoot (%)
60
40
30
20
10
0
G = -1
RFB = 100kΩ
50
40
30
G = +1
RL = 100kΩ
20
10
0
10
100
1000
10000
10
100
Load Capacitance (pF)
1000
10000
Load Capacitance (pF)
Maximum Output Voltage vs. Frequency
6
Supply Current vs. Supply Voltage
80
V S = 5.5V
70
5
Maximum Output Voltage
w ithout Slew -Rate
Induced Distortion
V S = 5V
4
3
V S = 2.5V
2
1
Supply Current (μA)
Output Voltage (V p-p)
G = -1
RFB = 5kΩ
60
50
40
30
20
10
0
0
1
10
100
Frequency (kHz)
SG Micro Corp
www.sg-micro.com
1000
10000
0
1
2
3
4
5
Supply Voltage (V)
6
7
MARCH 2017
5
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
TYPICAL PERFORMANCE CHARACTERISTICS (continued)
At TA = +25℃, VS = +5V, and RL = 100kΩ connected to VS/2, unless otherwise noted.
Input Voltage Noise Spectral Density
vs. Frequency
100
90
80
70
60
1000
Voltage Noise (nV/√Hz)
CMRR, PSRR (dB
CMRR and PSRR vs. Frequency
CMRR
50
40
30
20
10
0
0.01
PSRR
0.1
1
10
100
100
10
0.01
1000 10000
0.1
Output Voltage (V)
Output Voltage (V)
25℃
-55℃
2.0
V S = 3V
1.5
1.0
0.5
135℃
0
10
20
40
50
-55℃
4
3
V S = 5V
2
-55℃
135℃
0
0
60
20
40
Output Current (mA)
75
110
65
60
55
-25
0
25
50
75
Temperature (℃)
SG Micro Corp
www.sg-micro.com
100 125 150
80
Sinking Current
100 120 140 160
Open-Loop Gain vs. Temperature
120
Open–Loop Gain (dB)
Supply Current (μA)
Supply Current vs. Temperature
70
60
25℃
Output Current (mA)
80
50
-50
25℃
1
-55℃
25℃
Sinking Current
30
100
Sourcing Current
135℃
5
2.5
0.0
6
Sourcing Current
135℃
3.0
10
Output Voltage vs. Output Current
Output Voltage vs. Output Current
3.5
1
Frequency (kHz)
Frequency (kHz)
RL = 5kΩ
RL = 100kΩ
100
90
80
70
60
-50
-25
0
25
50
75
100 125 150
Temperature (℃)
MARCH 2017
6
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
TYPICAL PERFORMANCE CHARACTERISTICS (continued)
At TA = +25℃, VS = +5V, and RL = 100kΩ connected to VS/2, unless otherwise noted.
Common Mode Rejection Ratio
vs. Temperature
Pow er Supply Rejection Ratio vs. Temperature
120
120
-V S < V CM < (+V S ) - 1.5V
100
110
PSRR (dB)
CMRR (dB)
110
90
-V S < V CM < (+V S )
80
100
90
80
70
70
60
-50
-25
0
25
50
75
60
-50
100 125 150
-25
0
25
50
75
100 125 150
Temperature (℃)
Temperature (℃)
Overload Recovery Time
Short-Circuit Current vs. Supply Voltage
120
Short-Circuit Current (mA)
2.5V
VS = 5V
G = -5
VIN = 500mV
0V
500mV
0V
100
80
60
40
20
0
-20
0
Time (2μs/div)
SG Micro Corp
www.sg-micro.com
1
2
3
4
5
6
7
Supply Voltage (V)
MARCH 2017
7
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
APPLICATION NOTES
Driving Capacitive Loads
Power-Supply Bypassing and Layout
The SGM321/SGM358/SGM324 can directly drive
250pF in unity-gain without oscillation. The unity-gain
follower (buffer) is the most sensitive configuration to
capacitive loading. Direct capacitive loading reduces
the phase margin of amplifiers and this results in
ringing or even oscillation. Applications that require
greater capacitive driving capability should use an
isolation resistor between the output and the capacitive
load like the circuit in Figure 1. The isolation resistor
RISO and the load capacitor CL form a zero to increase
stability. The bigger the RISO resistor value, the more
stable VOUT will be. Note that this method results in a
loss of gain accuracy because RISO forms a voltage
divider with the RLOAD.
The SGM321/SGM358/SGM324 can operate from
either a single +2.1V to +5.5V supply or dual ±1.05V to
±2.75V supplies. For single-supply operation, bypass
the power supply +VS with a 0.1µF ceramic capacitor
which should be placed close to the +VS pin. For
dual-supply operation, both the +VS and the -VS
supplies should be bypassed to ground with separate
0.1µF ceramic capacitors. 2.2µF tantalum capacitor
can be added for better performance.
+VS
+VS
10μF
10μF
0.1μF
0.1μF
Vn
Vn
RISO
SGM321
VOUT
VIN
VOUT
SGM321
VOUT
SGM321
Vp
10μF
Vp
CL
Figure 1. Indirectly Driving Heavy Capacitive Load
An improved circuit is shown in Figure 2. It provides DC
accuracy as well as AC stability. RF provides the DC
accuracy by connecting the inverting input with the
output. CF and RIso serve to counteract the loss of
phase margin by feeding the high frequency
component of the output signal back to the amplifier’s
inverting input, thereby preserving phase margin in the
overall feedback loop.
0.1μF
-VS (GND)
-VS
Figure 3. Amplifier with Bypass Capacitors
CF
RF
RISO
SGM321
VIN
VOUT
CL
RL
Figure 2. Indirectly Driving Heavy Capacitive Load with
DC Accuracy
For non-buffer configuration, there are two other ways
to increase the phase margin: (a) by increasing the
amplifier’s closed-loop gain or (b) by placing a
capacitor in parallel with the feedback resistor to
counteract the parasitic capacitance associated with
inverting node.
SG Micro Corp
www.sg-micro.com
MARCH 2017
8
1MHz, 60μA, Rail-to-Rail I/O
CMOS Operational Amplifiers
SGM321/SGM358/SGM324
TYPICAL APPLICATION CIRCUITS
Differential Amplifier
Low-Pass Active Filter
The circuit shown in Figure 4 performs the difference
function. If the resistor ratios are equal to (R4/R3 = R2/R1),
then VOUT = (Vp - Vn) × R2 / R1 + VREF.
The low-pass filter shown in Figure 6 has a DC gain of
(-R2/R1) and the -3dB corner frequency is 1/2πR2C.
Make sure the filter bandwidth is within the bandwidth
of the amplifier. The large values of feedback resistors
can couple with parasitic capacitance and cause
undesired effects such as ringing or oscillation in
high-speed amplifiers. Keep resistor values as low as
possible and consistent with output loading
consideration.
R2
R1
Vn
SGM321
VOUT
Vp
R3
R4
C
VREF
R2
R1
Figure 4. Differential Amplifier
VIN
SGM321
Instrumentation Amplifier
The circuit in Figure 5 performs the same function as
that in Figure 4 but with a high input impedance.
VOUT
R3 = R1 // R2
R2
Figure 6. Low-Pass Active Filter
R1
SGM321
Vn
SGM321
Vp
R3
SGM321
VOUT
R4
VREF
Figure 5. Instrumentation Amplifier
SG Micro Corp
www.sg-micro.com
MARCH 2017
9
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
SOT-23-5
1.90
D
e1
E1
2.59
E
0.99
b
e
0.69
0.95
RECOMMENDED LAND PATTERN (Unit: mm)
L
A
A1
θ
A2
Symbol
Dimensions
In Millimeters
MIN
MAX
c
0.2
Dimensions
In Inches
MIN
MAX
A
1.050
1.250
0.041
0.049
A1
0.000
0.100
0.000
0.004
A2
1.050
1.150
0.041
0.045
b
0.300
0.500
0.012
0.020
c
0.100
0.200
0.004
0.008
D
2.820
3.020
0.111
0.119
E
1.500
1.700
0.059
0.067
E1
2.650
2.950
0.104
0.116
e
0.950 BSC
e1
SG Micro Corp
www.sg-micro.com
0.037 BSC
1.900 BSC
0.075 BSC
L
0.300
0.600
0.012
0.024
θ
0°
8°
0°
8°
TX00033.000
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
SC70-5
D
e1
0.65
e
E1
1.9
E
0.75
b
0.4
1.3
RECOMMENDED LAND PATTERN (Unit: mm)
L
L1
A
θ
A1
c
0.20
A2
Symbol
Dimensions
In Millimeters
MIN
MAX
Dimensions
In Inches
MIN
MAX
A
0.900
1.100
0.035
0.043
A1
0.000
0.100
0.000
0.004
A2
0.900
1.000
0.035
0.039
b
0.150
0.350
0.006
0.014
c
0.080
0.150
0.003
0.006
D
2.000
2.200
0.079
0.087
E
1.150
1.350
0.045
0.053
E1
2.150
2.450
0.085
0.096
e
0.65 TYP
0.026 TYP
e1
1.300 BSC
0.051 BSC
L
0.525 REF
0.021 REF
L1
0.260
0.460
0.010
0.018
θ
0°
8°
0°
8°
SG Micro Corp
www.sg-micro.com
TX00043.000
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
SOIC-8
0.6
D
e
2.2
E1
E
5.2
b
1.27
RECOMMENDED LAND PATTERN (Unit: mm)
L
A
A1
c
θ
A2
Symbol
Dimensions
In Millimeters
MIN
MAX
Dimensions
In Inches
MIN
MAX
A
1.350
1.750
0.053
0.069
A1
0.100
0.250
0.004
0.010
A2
1.350
1.550
0.053
0.061
b
0.330
0.510
0.013
0.020
c
0.170
0.250
0.006
0.010
D
4.700
5.100
0.185
0.200
E
3.800
4.000
0.150
0.157
E1
5.800
6.200
0.228
0.244
e
SG Micro Corp
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1.27 BSC
0.050 BSC
L
0.400
1.270
0.016
0.050
θ
0°
8°
0°
8°
TX00010.000
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
MSOP-8
b
E1
E
4.8
1.02
e
0.41
0.65
RECOMMENDED LAND PATTERN (Unit: mm)
D
L
A
A1
c
θ
A2
Symbol
Dimensions
In Millimeters
MIN
MAX
Dimensions
In Inches
MIN
MAX
A
0.820
1.100
0.032
0.043
A1
0.020
0.150
0.001
0.006
A2
0.750
0.950
0.030
0.037
b
0.250
0.380
0.010
0.015
c
0.090
0.230
0.004
0.009
D
2.900
3.100
0.114
0.122
E
2.900
3.100
0.114
0.122
E1
4.750
5.050
0.187
e
SG Micro Corp
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0.650 BSC
0.199
0.026 BSC
L
0.400
0.800
0.016
0.031
θ
0°
6°
0°
6°
TX00014.000
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
SOIC-14
D
E
5.2
E1
2.2
e
b
0.6
1.27
RECOMMENDED LAND PATTERN (Unit: mm)
L1
R1
R
A3
A A2
h
L2
θ
A1
Symbol
h
L
Dimensions
In Millimeters
MIN
MAX
Dimensions
In Inches
MIN
MAX
A
1.35
1.75
0.053
0.069
A1
0.10
0.25
0.004
0.010
A2
1.25
1.65
0.049
0.065
A3
0.55
0.75
0.022
0.030
b
0.36
0.49
0.014
0.019
D
8.53
8.73
0.336
0.344
E
5.80
6.20
0.228
0.244
E1
3.80
4.00
0.150
e
L
1.27 BSC
0.45
0.157
0.050 BSC
0.80
0.018
0.032
L1
1.04 REF
0.040 REF
L2
0.25 BSC
0.01 BSC
R
0.07
R1
0.07
h
0.30
0.50
0.012
0.020
θ
0°
8°
0°
8°
SG Micro Corp
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0.003
0.003
TX00011.001
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
TSSOP-14
D
E
E1
5.94
1.78
e
b
0.42
0.65
RECOMMENDED LAND PATTERN (Unit: mm)
L
A
A1
θ
A2
Symbol
c
H
Dimensions
In Millimeters
MIN
MAX
Dimensions
In Inches
MIN
MAX
1.200
0.047
A
A1
0.050
0.150
0.002
0.006
A2
0.800
1.050
0.031
0.041
b
0.190
0.300
0.007
0.012
c
0.090
0.200
0.004
0.008
D
4.860
5.100
0.191
0.201
E
4.300
4.500
0.169
0.177
E1
6.250
6.550
0.246
e
L
0.650 BSC
0.500
H
θ
SG Micro Corp
www.sg-micro.com
0.700
0.02
7°
1°
0.25 TYP
1°
0.258
0.026 BSC
0.028
0.01 TYP
7°
TX00019.001
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
DIP-8
E1
b1
e
A2
A
A1
L
b
c
E2
D
E
Symbol
Dimensions
In Millimeters
MIN
MAX
A
3.710
A1
0.510
A2
3.200
3.600
0.126
0.142
b
0.380
0.570
0.015
0.022
b1
4.310
Dimensions
In Inches
MIN
MAX
0.146
0.170
0.020
1.524 BSC
0.060 BSC
c
0.204
0.360
0.008
0.014
D
9.000
9.400
0.354
0.370
E
6.200
6.600
0.244
0.260
E1
7.320
7.920
0.288
0.312
e
2.540 BSC
0.100 BSC
L
3.000
3.600
0.118
0.142
E2
8.400
9.000
0.331
0.354
SG Micro Corp
www.sg-micro.com
TX00051.000
PACKAGE INFORMATION
TAPE AND REEL INFORMATION
REEL DIMENSIONS
TAPE DIMENSIONS
P2
W
P0
Q1
Q2
Q1
Q2
Q1
Q2
Q3
Q4
Q3
Q4
Q3
Q4
B0
Reel Diameter
K0
A0
P1
Reel Width (W1)
DIRECTION OF FEED
NOTE: The picture is only for reference. Please make the object as the standard.
KEY PARAMETER LIST OF TAPE AND REEL
Reel
Diameter
Reel Width
W1
(mm)
A0
(mm)
B0
(mm)
K0
(mm)
P0
(mm)
P1
(mm)
P2
(mm)
W
(mm)
Pin1
Quadrant
SOT-23-5
7″
9.5
3.20
3.20
1.40
4.0
4.0
2.0
8.0
Q3
SC70-5
7″
9.5
2.25
2.55
1.20
4.0
4.0
2.0
8.0
Q3
SOIC-8
13″
12.4
6.40
5.40
2.10
4.0
8.0
2.0
12.0
Q1
MSOP-8
13″
12.4
5.20
3.30
1.50
4.0
8.0
2.0
12.0
Q1
SOIC-14
13″
16.4
6.60
9.30
2.10
4.0
8.0
2.0
16.0
Q1
TSSOP-14
13″
12.4
6.95
5.60
1.20
4.0
8.0
2.0
12.0
Q1
SG Micro Corp
www.sg-micro.com
TX10000.000
DD0001
Package Type
PACKAGE INFORMATION
CARTON BOX DIMENSIONS
NOTE: The picture is only for reference. Please make the object as the standard.
KEY PARAMETER LIST OF CARTON BOX
Length
(mm)
Width
(mm)
Height
(mm)
Pizza/Carton
7″ (Option)
368
227
224
8
7″
442
410
224
18
13″
386
280
370
5
SG Micro Corp
www.sg-micro.com
DD0002
Reel Type
TX20000.000