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HFBR-2522 参数 Datasheet PDF下载

HFBR-2522图片预览
型号: HFBR-2522
PDF下载: 下载PDF文件 查看货源
内容描述: 多功能连接的通用光纤连接 [Versatile Link The Versatile Fiber Optic Connection]
分类和应用: 光纤
文件页数/大小: 19 页 / 195 K
品牌: AVAGO [ AVAGO TECHNOLOGIES LIMITED ]
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HFBR-25X1 Receiver
DO NOT CONNECT
5
1000
4
3
2
1
R
L
V
CC
GROUND
V
O
DO NOT CONNECT
8
Pin #
1
2
3
4
5
8
Function
V
O
Ground
V
CC
R
L
Do not connect
Do not connect
Note:
Pins 5 and 8 are for mounting and retaining
purposes only. Do not electrically connect these pins.
Absolute Maximum Ratings
Parameter
Storage Temperature
Operating Temperature
Lead Soldering Cycle
Symbol
T
S
T
A
Temp.
Time
V
CC
I
OAV
P
OD
V
O
V
P
N
–0.5
Min.
–40
–40
Max.
+85
+85
260
10
7
25
40
18
V
CC
5
Units
°C
°C
°C
sec
V
mA
mW
V
V
Reference
Note 1
Note 2
Supply Voltage
Output Collector Current
Output Collector Power Dissipation
Output Voltage
Pull-up Voltage
Fan Out (TTL)
–0.5
–5
Notes:
1. 1.6 mm below seating plane.
2. It is essential that a bypass capacitor 0.01
µF
be connected from pin 2 to pin 3 of the receiver. Total lead length between both ends of the capacitor
and the pins should not exceed 20 mm.
Receiver Electrical/Optical Characteristics
Parameter
Input Optical Power
Level for Logic “0”
Symbol
P
R(L)
0°C to 70°C, 4.75 V
≤V
CC
≤5.25
V unless otherwise specified
Min.
–21.6
–21.6
Input Optical Power
Level for Logic “1”
High Level Output Current
Low Level Output Current
High Level Supply
Current
Low Level Supply Current
Effective Diameter
Numerical Aperture
Internal Pull-up Resistor
P
R(H)
I
OH
V
OL
I
CCH
I
CCL
D
NA
R
L
5
0.4
3.5
6.2
1
0.5
1000
Typ.
Max.
–9.5
–8.7
–43
250
0.5
6.3
10
dBm
µA
V
mA
mA
mm
1700
Units
dBm
Conditions
V
OL
= 0.5 V
I
OL
= 8 mA
V
OL
= 0.5 V
I
OL
= 8 mA, 25°C
V
OL
= 5.25 V
I
OH
≤250 µA
V
O
= 18 V, P
R
= 0
I
OL
= 8 mA,
P
R
= P
R(L)MIN
V
CC
= 5.25 V,
P
R
= 0
V
CC
= 5.25 V
P
R
= -12.5 dBm
Ref.
Notes 1,
2, 4
Note 1
Note 3
Note 3
Note 3
Note 3
680
Notes:
1. Optical flux, P (dBm) = 10 Log [P (µW)/1000
µW].
2. Measured at the end of the fiber optic cable with large area detector.
3. R
L
is open.
4. Pulsed LED operation at I
F
> 80 mA will cause increased link t
PLH
propagation delay time. This extended t
PLH
time contributes to increased pulse
width distortion of the receiver output signal.
9