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2

The ISL6560 has a DAC scaled for VRM9.0 codes while the
ISL6562’s DAC is set to VRM8.5 codes. The other major
difference is the Current Comparator threshold voltage.

The typical threshold voltage for the ISL6560 is 157mV while
the ISL6562 is more sensitive and has a threshold voltage of
79mV.

Figure 3 shows the Current Comparator threshold voltage
versus the COMP voltage.

Oscillator

An oscillator drives a divider that reduces the channel
frequency to one half of the oscillator. Each channel is
initiated by the oscillator and terminated by the current
comparator. A maximum duty cycle of 50% is established by
this arrangement.

Power Good

Operation of the controller is monitored by the Power Good
circuitry which controls an open drain N-Channel MOS
transistor. When the CORE voltage is outside the 82% and
124% limits, the MOSFET pulls down an external load. Over
voltage switches both upper PWM power MOSFETs OFF
and pulls down the lower output power MOSFETs to protect
the load.

Over Current

Over current is detected by the output voltage dropping
below the under voltage limit. This results in several
occurrences. First the Current Comparator limit is reduce to
95mV from 157mV for the ISL6560 and 47mV from 79mV for
the ISL6562. This effectively folds back the current, while the
CORE voltage is now set to a lower limit of 400mV to 500mV.
Moreover, the oscillator frequency is reduce to about one
fifth of its normal operating value by reducing the oscillator
charging current to 36

µ

A from its normal operating value of

150

µ

A.

Converter Disable

To disable the converter, the COMP terminal may be pulled
to ground with a NPN transistor, N-Channel MOS transistor

or a switch. This device should be located next the COMP
pin to reduce the possibility of external pickup by the pin.
The oscillator is disabled when the COMP voltage drops
below 0.56V for the ISL6560 and 0.64V for the ISL6562.
Minimum current for the pull down device should be 2mA.
The COMP terminal is brought out as a test point on the
Evaluation Board. A ground terminal and the 3V Reference
terminal are located near the COMP terminal on the
Evaluation Board.

ISL6562 On The Board

As explained earlier the board is designed to be used with
either the ISL6560 or the ISL6562. The boards are usually
shipped with the ISL6560. Boards populated with the
ISL6562 have an additional 5m

 resistor placed in the R15

location.

Evaluation Board Quick Start

To aid in getting the board functioning as quickly as possible,
a sheet similar to Figure 4 is included with each board. This
shows the location of all pertinent parts and test points.

0

20

40

60

80

100

120

140

160

0.5

1.0

1.5

2.0

2.5

3.0

0

V

CS(CL)

   (mV)

V

COMP   (V

olts)

n

i

 = 12.5V / V

FIGURE 3. CURRENT COMPARATOR THRESHOLD

n

i

 = 25V / V

ISL6562

ISL6560

VOLTAGE AS A FUNCTION OF V

COMP

ATX Connector

ATX Power Switch

VID Codes

Pin 1

12V Input for

Controller

Gate Drivers

and Load

Generator

1

5

Note: ATX Supply connected

to use ATX 5V supply for

Main Input. ATX 12V is used

for low power circuitry on board.

Main Supply Input

3.3V or 12V

Scope Probe

10mV/A

Internal

2 Position Switch

Each Position

 20A at 1.500V

Current for

Load Generator

ON - OFF

each Position:

of ISL6560/62

FIGURE 4. PERTIENT POINTS ON ISL6560/62

EVALUATION BOARD

Output to an External Load

C

CALL 1-888 Intersil

ISL6560/62 Evaluation Board

Summary of Contents for ISL6560

Page 1: ...robe connectors monitor the current pulse and output voltage Extra output capacitor locations are available to modify the output capacitor configuration or type of capacitors 22 F ceramic capacitors a...

Page 2: ...o disable the converter the COMP terminal may be pulled to ground with a NPN transistor N Channel MOS transistor or a switch This device should be located next the COMP pin to reduce the possibility o...

Page 3: ...input Note the improvement in efficiency as the output voltage approaches the input voltage with increasing duty cycle Snubber Networks Snubbers are not used in this design but pad locations and conne...

Page 4: ...f Figure 10 The ground con nection pin 9 of the ISL6560 should be connected to the system ground at the load 2 The two voltage sampling lines described in item 1 above should also be routed away from...

Page 5: ...C41 42 R6 R13 R14 C20 R7 C40 C10 C11 R11 R12 R27 C12 C13 C14 C1 C2 C3 C4 L1 L2 L3 1 H C21 C24 28 C19 C30 C34 37 C60 63 C45 49 C39 12V Q1 HUF76139 Q3 HUF76139 Q2 HUF76145 Q4 HUF76145 20 19 18 17 16 14...

Page 6: ...Evaluation Board LED 1 LED 1A GREEN RED R9 120k R8 3 3k R10 3 3k 12V To PWRGD Pin 10 FIGURE 13 SCHEMATIC DIAGRAM OF THE POWER GOOD MONITORING CIRCUIT Q5 2N7002 2N7002 Q6 FIGURE 14 SILK SCREEN CAll 1 8...

Page 7: ...7 ISL6560 62 Evaluation Board FIGURE 15A TOP COPPER FIGURE 15B GROUND PLAN FIGURE 15C POWER PLAN FIGURE 15D BOTTOM COPPER FIGURES 15A D Showing ALL FOUR LAYERS OF THE PC BOARD...

Page 8: ...OS CON 4SP1500M 6 C22 C23 C38 C31 C32 C33 Not Populated 10x20 5 C40 C41 C42 C43 C52 4 7uF 16V Y5V Ceramic P1206 Various 1 C44 10uF 10 6 3V X5R Ceramic P1206 Various 1 C64 Not Populated P1206 2 D1 D2...

Page 9: ...5 Not Populated P2512 2 R22 R24 50m 1 P2512 Vishay WSL2512 0 05 1 1 R23 33 2 1 P0603 Various 1 R27 4 3K 5 P0805 Various 2 R28 R29 10K 5 P0603 Various 2 R30 R31 100 1 P0603 Various 1 SW1 SW DIP 5 DIPSW...

Page 10: ...CURRENT MULTIPLIER FIGURE B CURRENT MULTIPLIER vs DUTY CYCLE Use the curve of Figure B D VOUT VIN 1 8V 12V 0 15 The multiplier from Figure B is 0 24 IRMS 0 24 40A 9 6A Pensioned 470 F 16V Rubdown ZA s...

Page 11: ...r any patent or patent rights of Intersil or its subsidiaries For information regarding Intersil Corporation and its products see www intersil com ISL6560 62 Evaluation Board L gm Amplifier Output Loa...

Page 12: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Intersil ISL6560EVAL1 ISL6562EVAL1...

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