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DI-59 Datasheet(PDF) 2 Page - Power Integrations, Inc.

Part # DI-59
Description  Low Cost 2.5 W CV/CC Charger or Adapter
PDF  2 Pages
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Manufacturer  POWERINT [Power Integrations, Inc.]
Direct Link  http://www.powerint.com
Logo POWERINT - Power Integrations, Inc.

DI-59 Datasheet(HTML) 2 Page - Power Integrations, Inc.

  DI-59 Datasheet HTML 1Page - Power Integrations, Inc. DI-59 Datasheet HTML 2Page - Power Integrations, Inc.  
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www.powerint.com
A
9/03
DI-59
TDK PC40 EE13, A
L = 284 nH/T
2
EE13 Horizontal 8 pin
Core Cancellation: 22T, 34 AWG
Primary: 90T, 36 AWG
Shield: 5T, 3 x 30 AWG
Secondary: 5T, 2 x 30 AWG (TIW)
+ 10T, 30 AWG (TIW)
Core cancellation (2-3, clockwise), tape,
Primary (1-2, clockwise), tape,
Shield (2-open, anti-clockwise), tape,
Secondary (5T: 5-7, anti-clockwise,
10T: 7-6, anti-clockwise)
2.3 mH ± 10%
300 kHz (minimum)
Table 1. Transformer Design Parameters.
Figure 3. No-load Input Power Consumption.
Core
Bobbin
Winding Details
Winding Order
(pin numbers)
Primary
Inductance
Primary Resonant
Frequency
TRANSFORMER PARAMETERS
Figure 2. Load Regulation - CV/CC Characteristics.
60
150 180 210 240
270
120
90
Input Voltage (VAC)
150
100
50
0
200
250
300
350
Typical applications are chargers for cell phones, PDAs,
portable audio devices and shavers or power sources embedded
within home appliances and consumer electronics, such as TV
standby and bias supplies.
Key Design Points
• Set V
OR between 36 V and 60 V (50 V is optimum)
• Transformer primary inductance tolerance must be
≤10%,
to maintain CC limit tolerance of
±25%
• If battery (load) voltage is less than 2 V, then the LinkSwitch
will not come out of its auto-restart mode
• To increase the time period allowed for regulation to be
reached at startup (or into a full-power resistive load), C4
must be increased in value to 1
µF
• To lower the ripple voltage into non-battery loads, an LC
filter or LDO must be added onto the output
10
6
8
0
100
400
500
600
Output Current (A)
0
2
4
200
300
Low Limit
High Limit
V
IN = 85 VAC
V
IN = 265 VAC



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