We reserve the right to supply higher voltage ratings, tighter capacitance tolerance and higher grade capacitors in the same case size. Voltage substitutions
will be marked with the higher voltage rating.
DIMENSIONS
in inches [millimeters]
L
TW
H
TH Min.
W
P
CASE CODE
A
B
C
D
E
P
EIA SIZE
3216-18
3528-21
6032-28
7343-31
7343-43
2012-12
L
0.126 ± 0.008
[3.2 ± 0.20]
0.138 ± 0.008
[3.5 ± 0.20]
0.236 ± 0.012
[6.0 ± 0.30]
0.287 ± 0.012
[7.3 ± 0.30]
0.287 ± 0.012
[7.3 ± 0.30]
0.079 ± 0.20
[2.0 ± 0.008]
W
0.063 ± 0.008
[1.6 ± 0.20]
0.110 ± 0.008
[2.8 ± 0.20]
0.126 ± 0.012
[3.2 ± 0.30]
0.170 ± 0.012
[4.3 ± 0.30]
0.170 ± 0.012
[4.3 ± 0.30
0.049 ± 0.008
[1.25 ± 0.2]
H
0.063 ± 0.008
[1.6 ± 0.20]
0.075 ± 0.008
[1.9 ± 0.20]
0.098 ± 0.012
[2.5 ± 0.30]
0.110 ± 0.012
[2.8 ± 0.30]
0.158 ± 0.012
[4.0 ± 0.30]
0.047 Max.
[1.2 Max.]
P
0.031 ± 0.012
[0.80 ± 0.30]
0.031 ± 0.012
[0.80 ± 0.30]
0.051 ± 0.012
[1.3 ± 0.30]
0.051 ± 0.012
[1.3 ± 0.30]
0.051 ± 0.012
[1.3 ± 0.30]
0.020 ± 0.008
[0.52 ± 0.20]
TW
0.047 ± 0.004
[1.2 ± 0.10]
0.087 ± 0.004
[2.2 ± 0.10]
0.087 ± 0.004
[2.2 ± 0.10]
0.095 ± 0.004
[2.4 ± 0.10]
0.095 ± 0.004
[2.4 ± 0.10]
0.047 ± 0.004
[1.2 ± 0.10]
T
H
(Min.)
0.028
[0.70]
0.028
[0.70]
0.039
[1.0]
0.039
[1.0]
0.039
[1.0]
0.012
[0.3]
* Pb containing terminations are not RoHS compliant, exemptions may apply
www.vishay.com
1
For technical questions, contact: tantalum@vishay.com
Document Number: 40002
Revision: 16-May-06
293D
Solid Tantalum Chip Capacitors
TANTAMOUNT
®
, Commercial, Surface Mount
RATINGS AND CASE CODES
µF
0.10
0.15
0.22
0.33
0.47
0.68
1.0
1.5
2.2
3.3
4.7
6.8
10
15
22
33
47
68
100
150
220
330
470
680
P
A/P
A/P
A/P
A/B/P
A/B
A/BC
A/B/C
A/B/C
B/C/D
B/C/D
B/C/D
C/D/E
D/E
D/E
E
P
P
A/P
A/P
A/B/P
A/B/P
A/B/C/P
A/B/C
A/B/C
A/B/C
B/C/D
B/C/D
B/C/D
C/D/E
C/D/E
D/E
E
P
A
A/P
A/P
A/B/P
A/B/P
A/B/C
A/B/C
A/B/C
B/C/D
B/C/D
B*/C/D
C/D
D/E
D/E
E
A
A
A/B
A/B
A/B
A/B/C
A/B/C
B/C
B/C/D
B/C/D
C/D
D
D/E
D*/E
A
A
A
A/B
A/B
A/B/C
A/B/C
B/C
B/C/D
B/C/D
C/D
D/E
D/E
E
A
A
A/B
A/B
A/B
A*/B/C
A/B/C
B/C
B/C/D
C/D
D
D/E
E
4V
Std.
6.3 V
Std.
10 V
Std.
16 V
Std.
20 V
Std.
25 V
Std.
35 V
Std.
A
A
A
A
A/B
A/B
A/B
B/C
B/C
B/C
C/D
C/D
C/D
D/E
D/E
50 V
Std.
A
A/B
A/B
A/B
A/B/C
B/C
B/C
B/C
C/D
C/D
D
D/E
D/E
Vishay Sprague
* Preliminary values, contact factory for availability.
MARKING
MARKING
Indicates
Lead (Pb)-free
Voltage
Capacitance
µF
Polarity
Band
Capacitance Code,
pF
Indicates
Lead (Pb)-free
X
X
Vishay
Sprague
Logo
V 104L
22
XX
10L
2
Vishay
Sprague
Logo
Polarity Band
Voltage
Code
Capacitance
Code
Polarity Band
Voltage
Code
Date Code
"P" Case Size
"A" Case Size
"B, C, D, E" Case
Sizes
Document Number: 40002
Revision: 16-May-06
For technical questions, contact: tantalum@vishay.com
www.vishay.com
2
293D
Vishay Sprague
Solid Tantalum Chip Capacitors
TANTAMOUNT
®
, Commercial, Surface Mount
STANDARD/EXTENDED RATINGS
CAPACITANCE
(µF)
2.2
3.3
3.3
4.7
4.7
6.8
6.8
10
10
10
15
15
15
22
22
22
33
33
33
47
47
47
68
68
68
100
100
100
150
150
150
220
220
220
330
330
470
470
680
1.0
1.5
2.2
2.2
3.3
3.3
4.7
4.7
6.8
6.8
6.8
10
10
10
15
15
15
22
22
22
33
33
33
47
47
Max. ESR
Max. DF
MAX. DC
AT + 25 °C
AT + 25 °C
LEAKAGE
CASE CODE
PART NUMBER
100 kHz
120 Hz
AT + 25 °C
(Ohms)
(%)
(µA)
4 WVDC AT + 85 °C, SURGE = 5.2 V . . . 2.7 WVDC AT + 125 °C, SURGE = 3.4 V
P
293D225X_004P2T_E3
0.5
8
12
A
293D335X_004A2_E3
0.5
6
7.6
P
293D335X_004P2_E3
0.5
8
12
A
293D475X_004A2_E3
0.5
6
6.3
P
293D475X_004P2_E3
0.5
8
6.0
A
293D685X_004A2_E3
0.5
6
5.5
P
293D685X_004P2_E3
0.5
10
6.0
A
293D106X_004A2_E3
0.5
6
5.1
B
293D106X_004B2_E3
0.5
6
3.5
P
293D106X_004P2_E3
0.5
10
6.0
A
293D156X_004A2_E3
0.6
6
3.4
B
293D156X_004B2_E3
0.6
6
2.9
P
293D156X_004P2_E3
0.6
6
N/A
A
293D226X_004A2_E3
0.9
6
2.9
B
293D226X_004B2_E3
0.9
6
2.5
C
293D226X_004C2_E3
0.9
6
1.8
A
293D336X_004A2_E3
1.3
6
2.9
B
293D336X_004B2_E3
1.3
6
2.0
C
293D336X_004C2_E3
1.3
6
1.8
A
293D476X_004A2_E3
1.9
14
2.5
B
293D476X_004B2_E3
1.9
6
1.9
C
293D476X_004C2_E3
1.9
6
1.8
B
293D686X_004B2_E3
2.7
6
1.9
C
293D686X_004C2_E3
2.7
6
1.4
D
293D686X_004D2_E3
2.7
6
0.8
B
293D107X_004B2_E3
4.0
8
1.8
C
293D107X_004C2_E3
4.0
6
0.8
D
293D107X_004D2_E3
4.0
6
0.7
B
293D157X_004B2_E3
6.0
14
1.6
C
293D157X_004C2_E3
6.0
12
0.7
D
293D157X_004D2_E3
6.0
8
0.6
C
293D227X_004C2_E3
8.8
8
0.7
D
293D227X_004D2_E3
8.8
8
0.6
E
293D227X_004E2_E3
8.8
8
0.5
D
293D337X_004D2_E3
13.2
8
0.6
E
293D337X_004E2_E3
13.2
8
0.5
D
293D477X_004D2_E3
18.8
10
0.6
E
293D477X_004E2_E3
18.8
10
0.5
E
293D687X_004E2_E3
27.2
12
0.5
6.3 WVDC AT + 85 °C, SURGE = 8 V . . . 4 WVDC AT + 125 °C, SURGE = 5 V
P
293D225X_6R3P2_E3
0.5
8
12
P
293D225X_6R3P2_E3
0.5
8
12
A
293D225X_6R3A2_E3
0.5
6
7.6
P
293D225X_6R3P2_E3
0.5
8
12
A
293D335X_6R3A2_E3
0.5
6
6.3
P
293D335X_6R3P2_E3
0.5
8
12
A
293D475X_6R3A2_E3
0.5
6
5.5
P
293D475X_6R3P2_E3
0.5
8
6.0
A
293D685X_6R3A2_E3
0.5
6
5.0
B
293D685X_6R3B2_E3
0.5
6
3.4
P
293D685X_6R3P2_E3
0.5
10
6.0
A
293D106X_6R3A2_E3
0.6
6
3.4
B
293D106X_6R3B2_E3
0.6
6
2.9
P
293D106X_6R3P2_E3
0.6
10
6.0
A
293D156X_6R3A2_E3
0.9
6
2.9
B
293D156X_6R3B2_E3
0.9
6
2.5
C
293D156X_6R3C2_E3
0.9
6
1.8
A
293D226X_6R3A2_E3
1.3
6
2.9
B
293D226X_6R3B2_E3
1.3
6
2.0
C
293D226X_6R3C2_E3
1.3
6
1.8
A
293D336X_6R3A2_E3
2.0
14
2.5
B
293D336X_6R3B2_E3
2.0
6
1.9
C
293D336X_6R3C2_E3
2.0
6
1.5
B
293D476X_6R3B2_E3
2.8
6
1.9
C
293D476X_6R3C2_E3
2.8
6
1.4
Max. RIPPLE
100 kHz
Irms
(Amps)
0.02
0.10
0.02
0.11
0.06
0.12
0.06
0.12
0.16
0.06
0.15
0.17
N/A
0.16
0.18
0.25
0.16
0.21
0.25
0.17
0.21
0.25
0.21
0.28
0.43
0.22
0.37
0.46
0.23
0.40
0.50
0.40
0.50
0.57
0.50
0.57
0.50
0.57
0.57
0.02
0.02
0.10
0.02
0.11
0.02
0.12
0.06
0.12
0.16
0.06
0.15
0.17
0.06
0.16
0.18
0.25
0.16
0.21
0.25
0.17
0.21
0.27
0.21
0.28
* For 10 % tolerance, specify “9”; for 20 % tolerance, change to “0”.
www.vishay.com
3
For technical questions, contact: tantalum@vishay.com
Document Number: 40002
Revision: 16-May-06
293D
Solid Tantalum Chip Capacitors
TANTAMOUNT
®
, Commercial, Surface Mount
STANDARD/EXTENDED RATINGS
CAPACITANCE
(µF)
MAX. ESR
MAX. DF
MAX. DC
AT + 25 °C
AT + 25 °C
LEAKAGE
CASE CODE
PART NUMBER
100 kHz
120 Hz
AT + 25 °C
(Ohms)
(%)
(µA)
6.3 WVDC AT + 85 °C, SURGE = 8 V . . . 4 WVDC AT + 125 °C, SURGE = 5 V
D
293D476X_6R3D2_E3
2.8
6
0.8
B
293D686X_6R3B2_E3
4.1
6
1.8
C
293D686X_6R3C2_E3
4.1
6
0.8
D
293D686X_6R3D2_E3
4.1
6
0.7
B
293D107X_6R3B2_E3
6.0
15
1.7
C
293D107X_6R3C2_E3
6.0
6
0.8
D
293D107X_6R3D2_E3
6.0
6
0.7
C
293D157X_6R3C2_E3
9.0
8
0.7
D
293D157X_6R3D2_E3
9.0
8
0.6
E
293D157X_6R3E2_E3
9.0
8
0.5
C
293D227X_6R3C2_E3
13.9
14
0.7
D
293D227X_6R3D2_E3
13.2
8
0.6
E
293D227X_6R3E2_E3
13.2
8
0.5
D
293D337X_6R3D2_E3
19.8
8
0.6
E
293D337X_6R3E2_E3
19.8
8
0.5
E
293D477X_6R3E2_E3
28.2
10
0.5
10 WVDC AT + 85 °C, SURGE = 13 V . . . 7 WVDC AT + 125 °C, SURGE = 8 V
P
293D105X_010P2_E3
0.5
8
12
A
293D155X_010A2_E3
0.5
6
8.0
P
293D155X_010P2_E3
0.5
8
12
A
293D225X_010A2_E3
0.5
6
6.3
P
293D225X_010A2_E3
0.5
8
12
A
293D335X_010A2_E3
0.5
6
5.5
P
293D335X_010P2_E3
0.5
8
12
A
293D475X_010A2_E3
0.5
6
5.0
B
293D475X_010B2_E3
0.5
6
3.4
P
293D475X_010P2_E3
0.5
8
6.0
A
293D685X_010A2_E3
0.7
6
4.2
B
293D685X_010B2_E3
0.7
6
2.9
P
293D685X_010P2_E3
0.5
8
6.0
A
293D106X_010A2_E3
1.0
6
3.4
B
293D106X_010B2_E3
1.0
6
2.5
C
293D106X_010C2_E3
1.0
6
1.8
A
293D156X_010A2_E3
1.5
6
2.9
B
293D156X_010B2_E3
1.5
6
2.0
C
293D156X_010C2_E3
1.5
6
1.8
A
293D226X_010A2_E3
2.2
8
2.5
B
293D226X_010B2_E3
2.2
6
1.9
C
293D226X_010C2_E3
2.2
6
1.5
B
293D336X_010B2_E3
3.3
6
1.9
C
293D336X_010C2_E3
3.3
6
1.4
D
293D336X_010D2_E3
3.3
6
0.8
B
293D476X_010B2_E3
4.7
6
1.8
C
293D476X_010C2_E3
4.7
6
1.1
D
293D476X_010D2_E3
4.7
6
0.7
C
293D686X_010C2_E3
6.8
6
1.0
D
293D686X_010D2_E3
6.8
6
0.7
C
293D107X_010C2_E3
10
8
0.9
D
293D107X_010D2_E3
10
8
0.6
D
293D157X_010D2_E3
15
8
0.6
E
293D157X_010E2_E3
15
8
0.5
D
293D227X_010D2_E3
22
8
0.6
E
293D227X_010E2_E3
22
8
0.5
E
293D337X_010E2_E3
33
10
0.5
16 WVDC AT + 85 °C, SURGE = 20 V . . . 10 WVDC AT + 125 °C, SURGE = 12 V
A
293D105X_016A2_E3
0.5
4
9.3
A
293D155X_016A2_E3
0.5
6
6.7
A
293D225X_016A2_E3
0.5
6
5.9
B
293D225X_016B2_E3
0.5
6
4.6
A
293D335X_016A2_E3
0.5
6
5.0
B
293D335X_016B2_E3
0.5
6
3.5
A
293D475X_016A2_E3
0.8
6
5.0
B
293D475X_016B2_E3
0.8
6
2.9
MAX. RIPPLE
100 kHz
Irms
(Amps)
0.43
0.22
0.37
0.46
0.22
0.37
0.46
0.40
0.50
0.57
0.39
0.50
0.57
0.50
0.57
0.57
0.02
0.10
0.02
0.11
0.07
0.12
0.02
0.12
0.16
0.06
0.13
0.17
0.06
0.15
0.18
0.25
0.16
0.21
0.25
0.17
0.21
0.27
0.21
0.28
0.43
0.22
0.32
0.46
0.33
0.46
0.35
0.50
0.50
0.57
0.50
0.57
0.57
0.09
0.11
0.11
0.14
0.12
0.16
0.12
0.17
Vishay Sprague
47
68
68
68
100
100
100
150
150
150
220
220
220
330
330
470
1.0
1.5
1.5
2.2
2.2
3.3
3.3
4.7
4.7
4.7
6.8
6.8
6.8
10
10
10
15
15
15
22
22
22
33
33
33
47
47
47
68
68
100
100
150
150
220
220
330
1.0
1.5
2.2
2.2
3.3
3.3
4.7
4.7
* For 10 % tolerance, specify “9”; for 20 % tolerance, change to “0”.
Document Number: 40002
Revision: 16-May-06
For technical questions, contact: tantalum@vishay.com
www.vishay.com
4
293D
Vishay Sprague
Solid Tantalum Chip Capacitors
TANTAMOUNT
®
, Commercial, Surface Mount
MAX. RIPPLE
100 kHz
Irms
(Amps)
0.13
0.18
0.24
0.16
0.21
0.25
0.21
0.27
0.21
0.28
0.43
0.22
0.32
0.46
0.33
0.46
0.50
0.50
0.52
0.57
0.09
0.09
0.11
0.11
0.16
0.11
0.17
0.12
0.17
0.22
0.13
0.18
0.24
0.18
0.25
0.19
0.27
0.41
0.20
0.32
0.46
0.33
0.46
0.46
0.52
0.46
0.52
0.57
0.08
0.09
0.10
0.13
0.11
0.14
0.11
0.15
0.17
0.22
0.12
0.17
0.24
STANDARD/EXTENDED RATINGS
CAPACITANCE
(µF)
MAX. ESR
MAX. DF
MAX. DC
AT + 25 °C
AT + 25 °C
LEAKAGE
CASE CODE
PART NUMBER
100 kHz
120 Hz
AT + 25 °C
(Ohms)
(%)
(µA)
16 WVDC AT + 85 °C, SURGE = 20 V . . . 10 WVDC AT + 125 °C, SURGE = 12 V
A
293D685X_016A2_E3
1.1
6
4.2
B
293D685X_016B2_E3
1.1
6
2.5
C
293D685X_016C2_E3
1.1
6
1.9
A
293D106X_016A2_E3
1.6
6
3.0
B
293D106X_016B2_E3
1.6
6
2.0
C
293D106X_016C2_E3
1.6
6
1.8
B
293D156X_016B2_E3
2.4
6
2.0
C
293D156X_016C2_E3
2.4
6
1.5
B
293D226X0016B2_E3
3.5
6
1.9
C
293D226X_016C2_E3
3.5
6
1.4
D
293D226X_016D2_E3
3.5
6
0.8
B
293D336X0016B2_E3
5.3
6
1.8
C
293D336X_016C2_E3
5.3
6
1.1
D
293D336X_016D2_E3
5.3
6
0.7
C
293D476X_016C2_E3
7.5
6
1.0
D
293D476X_016D2_E3
7.5
6
0.7
D
293D686X_016D2_E3
10.9
6
0.6
D
293D107X_016D2_E3
16
8
0.6
E
293D107X_016E2_E3
16
8
0.6
E
293D157X_016E2_E3
24
8
0.5
20 WVDC AT + 85 °C, SURGE = 26 V . . . 13 WVDC AT + 125 °C, SURGE = 16 V
A
293D684X_020A2_E3
0.5
4
10
A
293D105X_020A2_E3
0.5
4
8.4
A
293D155X_020A2_E3
0.5
6
6.3
A
293D225X_020A2_E3
0.5
6
5.9
B
293D225X_020B2_E3
0.5
6
3.5
A
293D335X_020A2_E3
0.7
6
5.9
B
293D335X_020B2_E3
0.7
6
3.0
A
293D475X_020A2_E3
0.9
6
5.0
B
293D475X_020B2_E3
0.9
6
2.9
C
293D475X_020C2_E3
0.9
6
2.3
A
293D685X_020A2_E3
1.4
6
4.5
B
293D685X_020B2_E3
1.4
6
2.5
C
293D685X_020C2_E3
1.4
6
1.9
B
293D106X_020B2_E3
2.0
6
2.5
C
293D106X_020C2_E3
2.0
6
1.7
B
293D156X_020B2_E3
3.0
6
2.3
C
293D156X_020C2_E3
3.0
6
1.5
D
293D156X_020D2_E3
3.0
6
0.9
B
293D226X_020B2_E3
4.4
6
2.1
C
293D226X_020C2_E3
4.4
6
1.1
D
293D226X_020D2_E3
4.4
6
0.7
C
293D336X_020C2_E3
6.6
6
1.0
D
293D336X_020D2_E3
6.6
6
0.7
D
293D476X_020D2_E3
9.4
6
0.7
E
293D476X_020E2_E3
9.4
6
0.6
D
293D686X_020D2_E3
13.6
6
0.7
E
293D686X_020E2_E3
13.6
6
0.6
E
293D107X_020E2_E3
20.0
8
0.5
25 WVDC AT + 85 °C, SURGE = 32 V . . . 17 WVDC AT + 125 °C, SURGE = 20 V
A
293D474X_025A2_E3
0.5
4
12
A
293D684X_025A2_E3
0.5
4
8.4
A
293D105X_025A2_E3
0.5
4
7.6
B
293D105X_025B2_E3
0.5
4
5.0
A
293D155X_025A2_E3
0.5
6
6.7
B
293D155X_025B2_E3
0.5
6
4.6
A
293D225X_025A2_E3
0.6
6
6.3
B
293D225X_025B2_E3
0.6
6
3.8
B
293D335X_025B2_E3
0.8
6
3.1
C
293D335X_025C2_E3
0.8
6
2.3
A
293D475X_025A2_E3
1.2
6
5.5
B
293D475X_025B2_E3
1.2
6
2.8
C
293D475X_025C2_E3
1.2
6
2.0
6.8
6.8
6.8
10
10
10
15
15
22
22
22
33
33
33
47
47
68
100
100
150
0.68
1.0
1.5
2.2
2.2
3.3
3.3
4.7
4.7
4.7
6.8
6.8
6.8
10
10
15
15
15
22
22
22
33
33
47
47
68
68
100
0.47
0.68
1.0
1.0
1.5
1.5
2.2
2.2
3.3
3.3
4.7
4.7
4.7
* For 10 % tolerance, specify “9”; for 20 % tolerance, change to “0”.
www.vishay.com
5
For technical questions, contact: tantalum@vishay.com
[size=4]When night comes, you are working and studying under the lamp, and suddenly there is a power outage. It is pitch black around you, and you will be at a loss. You can only grope in the dark to ...
I can embed it into FormView by adding the following code in vc~~ CPropertySheet *m_sheet1=new CPropertySheet; CPropertyPage *m_page1 = new CPropertyPage; m_page1->Construct(IDD_PROPPAGE1); m_sheet1->...
[i=s]This post was last edited by a736015 on 2019-12-6 09:38[/i]IWR1443BOOST unboxing test : https://bbs.eeworld.com.cn/thread-1101610-1-1.html1. Software Download1. mmWave SDK download link: http://w...
I was worried that this connection method would not work: the AC solid-state relay (non-enhanced) is a bidirectional thyristor output, and after a diode is connected in series, the output principle is...
At present, the development of wireless power supply technology for electric vehicles (EVs) is becoming more and more active. In 2012, Volvo of Sweden established Volvo Technology Japan in Tokyo as...[Details]
Automotive applications are particularly sensitive to EMI events, which are unavoidable in a noisy electrical environment consisting of a central battery, bundled wiring harnesses, various inductiv...[Details]
Abstract: In order to generate a stable excitation signal, the design of a digital frequency synthesizer is implemented on FPGA using Verilog hardware language. The design includes accumulator, wav...[Details]
In order to highlight the concept of "energy saving and environmental protection" of intelligent buildings, solar street lights are designed for intelligent communities. The inclination and capacit...[Details]
Although it is relatively easy to check the stability of a simple amplifier at lower frequencies, it may be much more difficult to evaluate the stability of a more complex circuit. This artic...[Details]
Aromatic gases are widely present in food, medicine, cosmetics and various daily chemical products, such as snacks, liquor, spices, Chinese herbal medicines, plasters, perfumes, soaps, shampoos, et...[Details]
I. Introduction
Since RS232 has a short communication distance (only 15 meters according to EAT/TAI-232 standard), and can only perform point-to-point communication, it cannot directly f...[Details]
1 Introduction
Building Automation System (BAS) is a distributed monitoring system (DCS) designed according to distributed information and control theory. It is the result of the mutual de...[Details]
1 Introduction
With the development of control, computer, communication, network technology, etc., a new control technology, namely fieldbus, has emerged in the field of industrial control...[Details]
Digital array radar (DAR) uses digital beam forming (DBF) in both receiving and transmitting modes to achieve flexible distribution and reception of RF signal power in the airspace, obtain excellent t...[Details]
VP2188 is a color STN LCD module produced by Jingdian Pengyuan. This module is a dot matrix transmissive color STN display screen with a color scale of 65 k colors and white LED backlight. Its core...[Details]
This controller uses PIC16C54 single-chip microcomputer as the controller, and it is very easy to use: just connect a telephone line to the loudspeaker through the controller, and you can rem...[Details]
The concept of state machine
State machine is an important concept in software programming. More important than this concept is its flexible application. In a clear and efficient program, ther...[Details]
TC9012F is a universal CMOS large-scale integrated circuit for infrared remote control signal transmission, suitable for remote control of TV, VTR, laser player and other equipment. In the market, ...[Details]
Among the many members of the single-chip microcomputer family, the MCS-51 series of single-chip microcomputers has occupied the main market of industrial measurement and control and automation eng...[Details]