参数资料
型号: MOC3052SR2M_F132
厂商: Fairchild Semiconductor
文件页数: 5/15页
文件大小: 0K
描述: OPTOCOUPLER TRIAC RANDOM 6-SMD
标准包装: 1,000
电压 - 隔离: 7500Vpk
通道数: 1
电压 - 断路: 600V
输出类型: 交流标准三端双向可控硅开关
电流 - 栅极触发电流 (Igt)(最大): 10mA
电流 - 保持 (Ih): 280µA
电流 - DC 正向(If): 60mA
安装类型: 表面贴装
封装/外壳: 6-SMD
供应商设备封装: 6-SMD
包装: 带卷 (TR)
Typical Performance Curves
1.7
1.6
1.5
1.4
600
400
200
1.3
1.2
1.1
1.0
TA= -40°C
TA= 25°C
TA= 85°C
0
-200
-400
0.9
1
1 0
100
-600
-3
-2
-1 0 1 2
3
F
I - LED FORWARD CURRENT (mA)
Figure 3. LED Forward Voltage vs. Forward Current
V TM - ON-STATE VOLTAGE (V)
Figure 4. On-State Characteristics
1.4
NORMALIZED TO T A = 25°C
15
NORMALIZED TO:
PW IN > 100 μs
1.2
10
1.0
5
0.8
0.6
-40
-20
0 20 40 60
TA- AMBIENT TEMPERATURE (°C)
80
100
0
1
1 0
PW IN - LED TRIGGER PULSE WIDTH (μs)
100
Figure 5. Trigger Current vs. Ambient Temperature
I F vs. Temperature (normalized)
Figure 5 shows the increase of the trigger current when
the device is expected to operate at an ambient temper-
ature below 25°C. Multiply the normalized I FT shown on
this graph with the data sheet guaranteed I FT .
Example:
T A = 25°C, I FT = 10 mA
I FT at -40°C = 10 mA x 1.1 = 11 mA
Phase Control Considerations
LED Trigger Current versus PW (normalized)
Random Phase Triac drivers are designed to be phase
controllable. They may be triggered at any phase angle
within the AC sine wave. Phase control may be accom-
plished by an AC line zero cross detector and a variable
pulse delay generator which is synchronized to the zero
?2005 Fairchild Semiconductor Corporation
MOC3051M, MOC3052M Rev. 1.0.7
5
Figure 6. LED Current Required to Trigger vs. LED Pulse Width
cross detector. The same task can be accomplished by a
microprocessor which is synchronized to the AC zero
crossing. The phase controlled trigger current may be a
very short pulse which saves energy delivered to the
input LED. LED trigger pulse currents shorter than
100 μs must have an increased amplitude as shown on
Figure 6. This graph shows the dependency of the trig-
ger current I FT versus the pulse width can be seen on
the chart delay t(d) versus the LED trigger current.
I FT in the graph I FT versus (PW) is normalized in respect
to the minimum specified I FT for static condition, which is
specified in the device characteristic. The normalized I FT
has to be multiplied with the devices guaranteed static
trigger current.
Example:
Guaranteed I FT = 10 mA, Trigger pulse width PW = 3 μs
I FT (pulsed) = 10 mA x 5 = 50 mA
www.fairchildsemi.com
相关PDF资料
PDF描述
433115-20-0 TERM BARRIER 20CIRC 1 ROW .4375
433110-20-0 TERM BARRIER 20CIRC 1 ROW .4375
433103-20-0 TERM BARRIER 20CIRC 1 ROW .4375
MOC3052SM_F132 OPTOCOUPLER TRIAC RANDOM 6-SMD
4310R-104-161/241L RES NET MULT OHM 16 RES 10-SIP
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